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..

60 Commits

Author SHA1 Message Date
Andrew Welker
c53cad8119 Merge pull request #1086 from PepperDash/hotfix/pd-core-update-ssh-issues
Update PD Core to 1.2.1 DEV
2023-04-07 11:52:23 -06:00
Andrew Welker
82e8b4b203 Merge branch 'development' into hotfix/pd-core-update-ssh-issues 2023-04-07 11:37:31 -06:00
Andrew Welker
8c3b891255 Merge pull request #1082 from PepperDash/feature/vc4-fileio
Update VC4 file handling
2023-04-07 11:25:01 -06:00
Andrew Welker
51bd95937a build: update PD Core version
SSH issues were found in PD Core 1.2.0 that were causing
issues with manual disconnection/reconnection instead of
using the autoreconnect timer. The fix for this issue
was added in PD COre 1.2.1
2023-04-07 11:20:08 -06:00
jtalborough
10fc8ee30b Merge remote-tracking branch 'origin/feature/vc4-fileio' into development 2023-03-28 16:26:32 -04:00
Andrew Welker
8da8b8c584 Merge pull request #1080 from PepperDash/hotfix/dge-hdcp
Add HDCP & Bridging support for DGE Devices DEV
2023-03-27 16:40:39 -06:00
Andrew Welker
c7e0326b8c Merge branch 'development' into hotfix/dge-hdcp 2023-03-27 16:27:16 -06:00
Neil Dorin
845978c741 Merge pull request #1079 from PepperDash/hotfix/dge-hdcp
Add HDCP & Bridging support for DGE Devices
2023-03-27 15:01:54 -06:00
Andrew Welker
ba511067d3 fix: add missing feedback links 2023-03-27 14:13:15 -06:00
Andrew Welker
a9fe8bbb10 refactor: move DGE200 factory out of DGE200 class 2023-03-27 13:59:13 -06:00
Andrew Welker
bc64ee37cb feat: Add bridging & HDCP support for DGE 2023-03-27 13:58:46 -06:00
Andrew Welker
b2646f50cb feat: add DGE Join map 2023-03-27 13:57:25 -06:00
Neil Dorin
465aa947cf Merge pull request #1078 from PepperDash/release/1.13.0
1.13.0 DEV
2023-03-24 13:08:18 -06:00
Neil Dorin
16b78d27b9 Merge pull request #1077 from PepperDash/release/1.13.0
1.13.0
2023-03-24 13:05:33 -06:00
Andrew Welker
4e56213dad Merge pull request #1066 from thombrooks/main
Delete IEssentialsHuddleSpaceRoom.cs
2023-03-23 12:44:14 -06:00
Neil Dorin
668fc89eb2 Merge pull request #1076 from PepperDash/feature/DisplayPortHdcp
Add support for DisplayPort HDCP Control to DM-TX-4Kz-302C
2023-03-22 12:56:29 -06:00
Andrew Welker
e623c482a9 refactor: modify feedback for HDCP capability 2023-03-22 11:40:02 -06:00
Trevor Payne
243c7cc3ee feat: Add HDCP capability feedback and setting to Displayport Input on 4xz302 endpoint
feat: Resolve #1073
2023-03-22 11:39:57 -06:00
Andrew Welker
615598c8a6 Merge pull request #1075 from PepperDash/feature/AM3200
Add support for Crestron AM3200
2023-03-22 11:35:52 -06:00
Andrew Welker
3b25108a26 Merge branch 'development' into feature/AM3200 2023-03-22 11:05:43 -06:00
Andrew Welker
f253abd0ae fix; add check for HdmiIn being null
Not all Airmedia devices that might use this class have
an HDMI input. This check should prevent null ref
exceptions from happening.
2023-03-22 10:53:57 -06:00
Andrew Welker
e04f6d0396 refactor: move to switch for event 2023-03-22 10:53:36 -06:00
Andrew Welker
eb4c7ff605 Merge pull request #1063 from PepperDash/feature/dmps-dm-fixes
Various DMPS fixes
2023-03-22 10:52:18 -06:00
Andrew Welker
d0688cbc16 refactor: simplify feedback & event subscription 2023-03-22 10:36:10 -06:00
Andrew Welker
961af69aae chore: update PD Core version 2023-03-22 10:35:48 -06:00
Andrew Welker
df402ce498 Merge branch 'development' into feature/dmps-dm-fixes 2023-03-22 10:20:56 -06:00
Andrew Welker
e524bf358a Merge pull request #1070 from PepperDash/feature/system-monitor-bridge-updates
System Monitor Bridge updates
2023-03-22 10:20:42 -06:00
Andrew Welker
3abd195c57 Merge branch 'development' into feature/system-monitor-bridge-updates 2023-03-22 09:59:30 -06:00
Andrew Welker
a3615d8d1b Merge pull request #1069 from PepperDash/feature/cws
Feature/cws
2023-03-22 09:59:16 -06:00
Andrew Welker
6a461a6923 Merge branch 'development' into feature/cws 2023-03-22 09:42:39 -06:00
Andrew Welker
77776f3258 Merge pull request #1068 from PepperDash/feature/ConsoleImprovements
Update console commands to use ConsoleCommandResponse
2023-03-22 09:36:26 -06:00
Trevor Payne
701513d30e feat: add AM3200 to AirMediaController factory type list
fix: adjust event callback to recognize events thrown by AM3x00 devices
2023-03-16 17:11:44 -05:00
Trevor Payne
cad677ae89 feat: updated all console responses in SetDeviceStreamDebugging to use ConsoleResponse 2023-02-17 23:07:16 -06:00
Trevor Payne
b057d3de18 feat: update GetRoutingPorts to use ConsoleResponse 2023-02-17 23:06:15 -06:00
Trevor Payne
1920d37488 feat: update reportVersions command to use ConsoleResponse
feat: update gettypes to use ConsoleResponse
2023-02-17 23:02:54 -06:00
Trevor Payne
e005a30383 feat: improved console responses in JoinMapBase 2023-02-17 22:59:20 -06:00
Andrew Welker
058b3820be Merge branch 'development' into feature/dmps-dm-fixes 2023-02-17 09:07:13 -07:00
Andrew Welker
8a77b134e4 Merge pull request #1067 from PepperDash/feature/joinmapReportingImprovements
Cleanup getjoinmap console return
2023-02-17 09:02:04 -07:00
Trevor Payne
88f843250a feat: cleanup getjoinmap console return
resolves: Issue #928
2023-02-17 00:47:50 -06:00
thombrooks
772369bcd6 Delete IEssentialsHuddleSpaceRoom.cs
Redundant - correct definitions are in the Interfaces subfolder.
2023-02-14 20:16:01 -06:00
Alex Johnson
cef29af1ba Add register for basic DM endpoints to constructor stage due to requirement they are registered before parent devices. 2023-02-08 20:59:30 -05:00
Alex Johnson
8cc6cfafe9 Fixes CEvent in InitializeSystem() to properly wait for initialization until all devices are registered, if the system is a DMPS. This fixes an issue where HDBaseT type endpoints were not working on a DMPS3 non-4K unit. 2023-02-08 16:19:17 -05:00
Andrew Welker
89ba4627ea Merge pull request #1060 from PepperDash/feature/cws
Add support for EWS to Essentials
2023-02-07 09:58:08 -07:00
Andrew Welker
e05186defd chore: update packages to use 1.1.5-beta-317 2023-02-07 09:33:46 -07:00
Andrew Welker
83b0aec227 Merge branch 'feature/cws' of https://github.com/PepperDash/Essentials into feature/cws 2023-02-07 09:23:53 -07:00
Andrew Welker
a3ba014c0f Merge branch 'development' into feature/cws 2023-02-07 09:06:45 -07:00
jdevito
4919a863c3 System Monitor Bridge updates
Add processor reboot to join map and controller class.

Add program reset to join map and controller class.
2023-02-02 17:58:08 -06:00
Neil Dorin
2228bc1a1e Merge pull request #1057 from PepperDash/hotfix/video-codec-base-updateDirectoryXsig
fix: updates to resolve directory issues DEV
2023-02-02 11:48:57 -07:00
Neil Dorin
1411add591 Merge pull request #1056 from PepperDash/hotfix/video-codec-base-updateDirectoryXsig
fix: updates to resolve directory issues
2023-02-02 11:48:36 -07:00
jdevito
cbec2f2119 fix: updates to resolve directory issues
updateDirectoryXsig logic to resolve showing contacts in root when
folders are in use (ZoomRooms).

LinkVideoCodecDirectoryToApi to resolve analog value driving
total number of contacts when folders are in use (ZoomRooms).

ConvertZoomContactsToGeneric to reference roomFolder.FolderId and
contactFolder.FolderId in foreach loops.
2023-02-02 12:31:11 -06:00
Neil Dorin
23af38aefa Merge pull request #1054 from PepperDash/hotfix/project-workflow
feature: add workflow to push to project
2023-01-30 15:26:16 -07:00
jta
1bae7dc91b feature: add workflow to push to project 2023-01-30 15:19:14 -05:00
Alex Johnson
5de4382cd0 Fixes for hdbaset endpoints on DMPS3 non-4k chassis. Adds ability to connect Essentials room volumes to DMPS volume control. 2023-01-18 15:45:42 -05:00
Neil Dorin
300c675341 Merge pull request #1052 from PepperDash/release/v1.12.7
Release/v1.12.7
2023-01-11 13:30:43 -07:00
Neil Dorin
a4290e68b1 Merge branch 'main' into release/v1.12.7 2023-01-11 13:05:09 -07:00
Trevor Payne
c14e5fe449 fix: issue registering versiport digital outputs 2023-01-11 13:57:25 -06:00
jta
3b2fa8aec5 fix: issue with file path on four sereis
refactor: remove redundnet /
2023-01-09 17:16:03 -05:00
jta
ffa864c71b Merge remote-tracking branch 'origin/development' into feature/vc4-fileio 2023-01-09 15:45:38 -05:00
Neil Dorin
2677d63553 Merge pull request #1049 from PepperDash/hotfix/zoom-phonebook-issues
Fix Empty Zoom Phonebook
2022-12-22 13:52:45 -07:00
jta
112a2b7382 feature: fileio now uses Global.FilePathPrefix as its directory
All read wirtes now use the current working essentials directory. This resolves issues between 3 series, 4 series, and VC-4
2022-12-20 15:16:18 -05:00
41 changed files with 2646 additions and 2036 deletions

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@@ -0,0 +1,37 @@
name: Add bugs to bugs project
on:
issues:
types:
- opened
- labeled
jobs:
check-secret:
runs-on: ubuntu-latest
outputs:
my-key: ${{ steps.my-key.outputs.defined }}
steps:
- id: my-key
if: "${{ env.MY_KEY != '' }}"
run: echo "::set-output name=defined::true"
env:
MY_KEY: ${{ secrets.PROJECT_URL }}
throw-error:
name: Check
runs-on: ubuntu-latest
needs: [check-secret]
if: needs.check-secret.outputs.my-key != 'true'
steps:
- run: echo "The Project URL Repo Secret is empty"
add-to-project:
name: Add issue to project
runs-on: ubuntu-latest
needs: [check-secret]
if: needs.check-secret.outputs.my-key == 'true'
steps:
- uses: actions/add-to-project@main
with:
project-url: ${{ secrets.PROJECT_URL }}
github-token: ${{ secrets.GH_PROJECTS_PASSWORD }}

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@@ -55,7 +55,7 @@ namespace PepperDash.Essentials
return null;
}
// DSP format: deviceKey--levelName, biampTesira-1--master
// DSP/DMPS format: deviceKey--levelName, biampTesira-1--master
match = Regex.Match(DeviceKey, @"([-_\w]+)--(.+)");
if (match.Success)
{
@@ -67,6 +67,27 @@ namespace PepperDash.Essentials
if (dsp.LevelControlPoints.ContainsKey(levelTag)) // should always...
return dsp.LevelControlPoints[levelTag];
}
var dmps = DeviceManager.GetDeviceForKey(devKey) as DmpsAudioOutputController;
if (dmps != null)
{
var levelTag = match.Groups[2].Value;
switch (levelTag)
{
case "master":
return dmps.MasterVolumeLevel;
case "source":
return dmps.SourceVolumeLevel;
case "micsmaster":
return dmps.MicsMasterVolumeLevel;
case "codec1":
return dmps.Codec1VolumeLevel;
case "codec2":
return dmps.Codec2VolumeLevel;
default:
return dmps.MasterVolumeLevel;
}
}
// No volume for some reason. We have failed as developers
return null;
}

View File

@@ -47,28 +47,29 @@ namespace PepperDash.Essentials
/// </summary>
public override void InitializeSystem()
{
_startTimer = new CTimer(StartSystem,StartupTime);
// If the control system is a DMPS type, we need to wait to exit this method until all devices have had time to activate
// to allow any HD-BaseT DM endpoints to register first.
if (Global.ControlSystemIsDmpsType)
bool preventInitializationComplete = Global.ControlSystemIsDmpsType;
if (preventInitializationComplete)
{
Debug.Console(1, "******************* InitializeSystem() Entering **********************");
_initializeEvent = new CEvent();
_startTimer = new CTimer(StartSystem, preventInitializationComplete, StartupTime);
_initializeEvent = new CEvent(true, false);
DeviceManager.AllDevicesRegistered += (o, a) =>
{
_initializeEvent.Set();
Debug.Console(1, "******************* InitializeSystem() Exiting **********************");
};
_initializeEvent.Wait(30000);
Debug.Console(1, "******************* InitializeSystem() Exiting **********************");
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
}
else
{
_startTimer = new CTimer(StartSystem, preventInitializationComplete, StartupTime);
}
}
private void StartSystem(object obj)
private void StartSystem(object preventInitialization)
{
DeterminePlatform();
@@ -80,7 +81,7 @@ namespace PepperDash.Essentials
CrestronConsole.AddNewConsoleCommand(PluginLoader.ReportAssemblyVersions, "reportversions", "Reports the versions of the loaded assemblies", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(PepperDash.Essentials.Core.DeviceFactory.GetDeviceFactoryTypes, "gettypes", "Gets the device types that can be built. Accepts a filter string.", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(Core.DeviceFactory.GetDeviceFactoryTypes, "gettypes", "Gets the device types that can be built. Accepts a filter string.", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(BridgeHelper.PrintJoinMap, "getjoinmap", "map(s) for bridge or device on bridge [brKey [devKey]]", ConsoleAccessLevelEnum.AccessOperator);
@@ -125,7 +126,10 @@ namespace PepperDash.Essentials
return;
}
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
if (!(bool)preventInitialization)
{
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
}
}
/// <summary>

View File

@@ -1,44 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.DeviceTypeInterfaces;
using PepperDash.Essentials.Room.Config;
using PepperDash.Essentials.Core.Devices;
using PepperDash.Essentials.Devices.Common.Codec;
using PepperDash.Essentials.Devices.Common.VideoCodec;
using PepperDash.Essentials.Devices.Common.AudioCodec;
using PepperDash.Core;
namespace PepperDash.Essentials
{
public interface IEssentialsHuddleSpaceRoom : IEssentialsRoom, IHasCurrentSourceInfoChange, IRunRouteAction, IHasDefaultDisplay
{
bool ExcludeFromGlobalFunctions { get; }
void RunRouteAction(string routeKey);
EssentialsHuddleRoomPropertiesConfig PropertiesConfig { get; }
IBasicVolumeControls CurrentVolumeControls { get; }
event EventHandler<VolumeDeviceChangeEventArgs> CurrentVolumeDeviceChange;
}
public interface IEssentialsHuddleVtc1Room : IEssentialsRoom, IHasCurrentSourceInfoChange,
IHasCurrentVolumeControls, IRunRouteAction, IRunDefaultCallRoute, IHasVideoCodec, IHasAudioCodec, IHasDefaultDisplay
{
EssentialsHuddleVtc1PropertiesConfig PropertiesConfig { get; }
void RunRouteAction(string routeKey);
IHasScheduleAwareness ScheduleSource { get; }
string DefaultCodecRouteString { get; }
}
}

View File

@@ -64,6 +64,11 @@ namespace PepperDash.Essentials.Core.Bridges
public JoinDataComplete VgaContrast = new JoinDataComplete(new JoinData { JoinNumber = 7, JoinSpan = 1 },
new JoinMetadata { Description = "DM TX Online", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Analog });
[JoinName("Port3HdcpState")]
public JoinDataComplete Port3HdcpState = new JoinDataComplete(new JoinData { JoinNumber = 8, JoinSpan = 1 },
new JoinMetadata { Description = "DM TX Port 3 HDCP State Set / Get", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Analog });
/// <summary>
/// Constructor to use when instantiating this Join Map without inheriting from it
/// </summary>

View File

@@ -0,0 +1,34 @@
using System;
namespace PepperDash.Essentials.Core.Bridges
{
public class IAnalogInputJoinMap : JoinMapBaseAdvanced
{
[JoinName("InputValue")]
public JoinDataComplete InputValue = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "Input Value", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Analog });
[JoinName("MinimumChange")]
public JoinDataComplete MinimumChange = new JoinDataComplete(new JoinData { JoinNumber = 2, JoinSpan = 1 },
new JoinMetadata { Description = "Minimum voltage change required to reflect a change", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Analog });
/// <summary>
/// Constructor to use when instantiating this Join Map without inheriting from it
/// </summary>
/// <param name="joinStart">Join this join map will start at</param>
public IAnalogInputJoinMap(uint joinStart)
: this(joinStart, typeof(IAnalogInputJoinMap))
{
}
/// <summary>
/// Constructor to use when extending this Join map
/// </summary>
/// <param name="joinStart">Join this join map will start at</param>
/// <param name="type">Type of the child join map</param>
protected IAnalogInputJoinMap(uint joinStart, Type type)
: base(joinStart, type)
{
}
}
}

View File

@@ -7,7 +7,7 @@ namespace PepperDash.Essentials.Core.Bridges
[JoinName("InputState")]
public JoinDataComplete InputState = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "Room Email Url", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
new JoinMetadata { Description = "Input State", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
/// <summary>
/// Constructor to use when instantiating this Join Map without inheriting from it

View File

@@ -47,7 +47,7 @@ namespace PepperDash.Essentials.Core.Bridges
[JoinName("ProgramOffsetJoin")]
public JoinDataComplete ProgramOffsetJoin = new JoinDataComplete(new JoinData { JoinNumber = 5, JoinSpan = 5 },
new JoinMetadata { Description = "All Program Data is offset between slots by 5 - First Joins Start at 11", JoinCapabilities = eJoinCapabilities.None, JoinType = eJoinType.None });
[JoinName("ProgramStart")]
public JoinDataComplete ProgramStart = new JoinDataComplete(new JoinData { JoinNumber = 11, JoinSpan = 1 },
new JoinMetadata { Description = "Processor Program Start / Fb", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
@@ -132,6 +132,23 @@ namespace PepperDash.Essentials.Core.Bridges
public JoinDataComplete DhcpStatus = new JoinDataComplete(new JoinData { JoinNumber = 86, JoinSpan = 1 },
new JoinMetadata { Description = "Processor Ethernet Dhcp Status", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("ProcessorRebot")]
public JoinDataComplete ProcessorReboot = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "Reboot processor", JoinCapabilities = eJoinCapabilities.FromSIMPL, JoinType = eJoinType.Digital });
[JoinName("IsAppliance")]
public JoinDataComplete IsAppliance = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "Is appliance Fb", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("IsServer")]
public JoinDataComplete IsServer = new JoinDataComplete(new JoinData { JoinNumber = 2, JoinSpan = 1 },
new JoinMetadata { Description = "Is server Fb", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("ProgramReset")]
public JoinDataComplete ProgramReset = new JoinDataComplete(new JoinData { JoinNumber = 15, JoinSpan = 1 },
new JoinMetadata { Description = "Resets the program", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
/// <summary>
/// Constructor to use when instantiating this Join Map without inheriting from it
/// </summary>

View File

@@ -15,5 +15,7 @@ namespace PepperDash.Essentials.Core.CrestronIO
public uint PortNumber { get; set; }
[JsonProperty("disablePullUpResistor")]
public bool DisablePullUpResistor { get; set; }
[JsonProperty("minimumChange")]
public int MinimumChange { get; set; }
}
}

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@@ -0,0 +1,208 @@
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.Config;
using PepperDash.Essentials.Core.Bridges;
using Newtonsoft.Json;
namespace PepperDash.Essentials.Core.CrestronIO
{
/// <summary>
/// Represents a generic digital input deviced tied to a versiport
/// </summary>
public class GenericVersiportAnalogInputDevice : EssentialsBridgeableDevice, IAnalogInput
{
public Versiport InputPort { get; private set; }
public IntFeedback InputValueFeedback { get; private set; }
public IntFeedback InputMinimumChangeFeedback { get; private set; }
Func<int> InputValueFeedbackFunc
{
get
{
return () => InputPort.AnalogIn;
}
}
Func<int> InputMinimumChangeFeedbackFunc
{
get { return () => InputPort.AnalogMinChange; }
}
public GenericVersiportAnalogInputDevice(string key, string name, Func<IOPortConfig, Versiport> postActivationFunc, IOPortConfig config) :
base(key, name)
{
InputValueFeedback = new IntFeedback(InputValueFeedbackFunc);
InputMinimumChangeFeedback = new IntFeedback(InputMinimumChangeFeedbackFunc);
AddPostActivationAction(() =>
{
InputPort = postActivationFunc(config);
InputPort.Register();
InputPort.SetVersiportConfiguration(eVersiportConfiguration.AnalogInput);
InputPort.AnalogMinChange = (ushort)(config.MinimumChange > 0 ? config.MinimumChange : 655);
if (config.DisablePullUpResistor)
InputPort.DisablePullUpResistor = true;
InputPort.VersiportChange += InputPort_VersiportChange;
Debug.Console(1, this, "Created GenericVersiportAnalogInputDevice on port '{0}'. DisablePullUpResistor: '{1}'", config.PortNumber, InputPort.DisablePullUpResistor);
});
}
/// <summary>
/// Set minimum voltage change for device to update voltage changed method
/// </summary>
/// <param name="value">valid values range from 0 - 65535, representing the full 100% range of the processor voltage source. Check processor documentation for details</param>
public void SetMinimumChange(ushort value)
{
InputPort.AnalogMinChange = value;
}
void InputPort_VersiportChange(Versiport port, VersiportEventArgs args)
{
Debug.Console(1, this, "Versiport change: {0}", args.Event);
if(args.Event == eVersiportEvent.AnalogInChange)
InputValueFeedback.FireUpdate();
if (args.Event == eVersiportEvent.AnalogMinChangeChange)
InputMinimumChangeFeedback.FireUpdate();
}
#region Bridge Linking
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new IAnalogInputJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<IAnalogInputJoinMap>(joinMapSerialized);
if (bridge != null)
{
bridge.AddJoinMap(Key, joinMap);
}
else
{
Debug.Console(0, this, "Please update config to use 'eiscapiadvanced' to get all join map features for this device.");
}
try
{
Debug.Console(1, this, "Linking to Trilist '{0}'", trilist.ID.ToString("X"));
// Link feedback for input state
InputValueFeedback.LinkInputSig(trilist.UShortInput[joinMap.InputValue.JoinNumber]);
InputMinimumChangeFeedback.LinkInputSig(trilist.UShortInput[joinMap.MinimumChange.JoinNumber]);
trilist.SetUShortSigAction(joinMap.MinimumChange.JoinNumber, SetMinimumChange);
}
catch (Exception e)
{
Debug.Console(1, this, "Unable to link device '{0}'. Input is null", Key);
Debug.Console(1, this, "Error: {0}", e);
}
trilist.OnlineStatusChange += (d, args) =>
{
if (!args.DeviceOnLine) return;
InputValueFeedback.FireUpdate();
InputMinimumChangeFeedback.FireUpdate();
};
}
void trilist_OnlineStatusChange(GenericBase currentDevice, OnlineOfflineEventArgs args)
{
throw new NotImplementedException();
}
#endregion
public static Versiport GetVersiportDigitalInput(IOPortConfig dc)
{
IIOPorts ioPortDevice;
if (dc.PortDeviceKey.Equals("processor"))
{
if (!Global.ControlSystem.SupportsVersiport)
{
Debug.Console(0, "GetVersiportAnalogInput: Processor does not support Versiports");
return null;
}
ioPortDevice = Global.ControlSystem;
}
else
{
var ioPortDev = DeviceManager.GetDeviceForKey(dc.PortDeviceKey) as IIOPorts;
if (ioPortDev == null)
{
Debug.Console(0, "GetVersiportAnalogInput: Device {0} is not a valid device", dc.PortDeviceKey);
return null;
}
ioPortDevice = ioPortDev;
}
if (ioPortDevice == null)
{
Debug.Console(0, "GetVersiportAnalogInput: Device '0' is not a valid IIOPorts Device", dc.PortDeviceKey);
return null;
}
if (dc.PortNumber > ioPortDevice.NumberOfVersiPorts)
{
Debug.Console(0, "GetVersiportAnalogInput: Device {0} does not contain a port {1}", dc.PortDeviceKey, dc.PortNumber);
return null;
}
if(!ioPortDevice.VersiPorts[dc.PortNumber].SupportsAnalogInput)
{
Debug.Console(0, "GetVersiportAnalogInput: Device {0} does not support AnalogInput on port {1}", dc.PortDeviceKey, dc.PortNumber);
return null;
}
return ioPortDevice.VersiPorts[dc.PortNumber];
}
}
public class GenericVersiportAbalogInputDeviceFactory : EssentialsDeviceFactory<GenericVersiportAnalogInputDevice>
{
public GenericVersiportAbalogInputDeviceFactory()
{
TypeNames = new List<string>() { "versiportanaloginput" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new Generic Versiport Device");
var props = JsonConvert.DeserializeObject<IOPortConfig>(dc.Properties.ToString());
if (props == null) return null;
var portDevice = new GenericVersiportAnalogInputDevice(dc.Key, dc.Name, GenericVersiportAnalogInputDevice.GetVersiportDigitalInput, props);
return portDevice;
}
}
}

View File

@@ -0,0 +1,14 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.Core.CrestronIO
{
public interface IAnalogInput
{
IntFeedback InputValueFeedback { get; }
}
}

View File

@@ -42,18 +42,19 @@ namespace PepperDash.Essentials.Core.CrestronIO
OutputPort = postActivationFunc(config);
OutputPort.Register();
if (!OutputPort.SupportsDigitalOutput)
{
Debug.Console(0, this, "Device does not support configuration as a Digital Output");
return;
}
OutputPort.SetVersiportConfiguration(eVersiportConfiguration.DigitalOutput);
OutputPort.VersiportChange += OutputPort_VersiportChange;
Debug.Console(1, this, "Created GenericVersiportDigitalOutputDevice on port '{0}'.", config.PortNumber);
});
}
@@ -72,7 +73,18 @@ namespace PepperDash.Essentials.Core.CrestronIO
/// <param name="state">value to set the output to</param>
public void SetOutput(bool state)
{
OutputPort.DigitalOut = state;
if (OutputPort.SupportsDigitalOutput)
{
Debug.Console(0, this, "Passed the Check");
OutputPort.DigitalOut = state;
}
else
{
Debug.Console(0, this, "Versiport does not support Digital Output Mode");
}
}
#region Bridge Linking
@@ -115,40 +127,40 @@ namespace PepperDash.Essentials.Core.CrestronIO
public static Versiport GetVersiportDigitalOutput(IOPortConfig dc)
{
IIOPorts ioPortDevice;
if (dc.PortDeviceKey.Equals("processor"))
{
if (!Global.ControlSystem.SupportsVersiport)
IIOPorts ioPortDevice;
if (dc.PortDeviceKey.Equals("processor"))
{
Debug.Console(0, "GetVersiportDigitalOuptut: Processor does not support Versiports");
if (!Global.ControlSystem.SupportsVersiport)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Processor does not support Versiports");
return null;
}
ioPortDevice = Global.ControlSystem;
}
else
{
var ioPortDev = DeviceManager.GetDeviceForKey(dc.PortDeviceKey) as IIOPorts;
if (ioPortDev == null)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Device {0} is not a valid device", dc.PortDeviceKey);
return null;
}
ioPortDevice = ioPortDev;
}
if (ioPortDevice == null)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Device '0' is not a valid IOPorts Device", dc.PortDeviceKey);
return null;
}
ioPortDevice = Global.ControlSystem;
}
else
{
var ioPortDev = DeviceManager.GetDeviceForKey(dc.PortDeviceKey) as IIOPorts;
if (ioPortDev == null)
if (dc.PortNumber > ioPortDevice.NumberOfVersiPorts)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Device {0} is not a valid device", dc.PortDeviceKey);
return null;
Debug.Console(0, "GetVersiportDigitalOuptut: Device {0} does not contain a port {1}", dc.PortDeviceKey, dc.PortNumber);
}
ioPortDevice = ioPortDev;
}
if (ioPortDevice == null)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Device '0' is not a valid IIOPorts Device", dc.PortDeviceKey);
return null;
}
if (dc.PortNumber > ioPortDevice.NumberOfVersiPorts)
{
Debug.Console(0, "GetVersiportDigitalOuptut: Device {0} does not contain a port {1}", dc.PortDeviceKey, dc.PortNumber);
}
return ioPortDevice.VersiPorts[dc.PortNumber];
var port = ioPortDevice.VersiPorts[dc.PortNumber];
return port;
}
}

View File

@@ -388,20 +388,18 @@ namespace PepperDash.Essentials.Core
var outputPorts = ((device as IRoutingOutputs) != null) ? (device as IRoutingOutputs).OutputPorts : null;
if (inputPorts != null)
{
Debug.Console(0, "Device {0} has {1} Input Ports:", s, inputPorts.Count);
CrestronConsole.ConsoleCommandResponse("Device {0} has {1} Input Ports:", s, inputPorts.Count);
foreach (var routingInputPort in inputPorts)
{
Debug.Console(0, "{0}", routingInputPort.Key);
}
}
if (outputPorts != null)
{
Debug.Console(0, "Device {0} has {1} Output Ports:", s, outputPorts.Count);
foreach (var routingOutputPort in outputPorts)
{
Debug.Console(0, "{0}", routingOutputPort.Key);
CrestronConsole.ConsoleCommandResponse("{0}", routingInputPort.Key);
}
}
if (outputPorts == null) return;
CrestronConsole.ConsoleCommandResponse("Device {0} has {1} Output Ports:", s, outputPorts.Count);
foreach (var routingOutputPort in outputPorts)
{
CrestronConsole.ConsoleCommandResponse("{0}", routingOutputPort.Key);
}
}
/// <summary>
@@ -435,7 +433,7 @@ namespace PepperDash.Essentials.Core
if (device == null)
{
Debug.Console(0, "Unable to get device with key: {0}", deviceKey);
CrestronConsole.ConsoleCommandResponse("Unable to get device with key: {0}", deviceKey);
return;
}
@@ -447,7 +445,7 @@ namespace PepperDash.Essentials.Core
}
catch
{
Debug.Console(0, "Unable to convert setting value. Please use off/rx/tx/both");
CrestronConsole.ConsoleCommandResponse("Unable to convert setting value. Please use off/rx/tx/both");
return;
}
@@ -458,18 +456,18 @@ namespace PepperDash.Essentials.Core
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);
CrestronConsole.ConsoleCommandResponse("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);
CrestronConsole.ConsoleCommandResponse("Unable to convert minutes or settings value. Please use an integer value for minutes. Error: {0}", e);
}
}
else
{
device.StreamDebugging.SetDebuggingWithDefaultTimeout(debugSetting);
Debug.Console(0, "Device: '{0}' debug level set to {1} for default time (30 minutes)", deviceKey, debugSetting);
CrestronConsole.ConsoleCommandResponse("Device: '{0}' debug level set to {1} for default time (30 minutes)", deviceKey, debugSetting);
}
}

View File

@@ -172,21 +172,14 @@ namespace PepperDash.Essentials.Core
/// <summary>
/// Prints the type names and associated metadata from the FactoryMethods collection.
/// </summary>
/// <param name="command"></param>
/// <param name="filter"></param>
public static void GetDeviceFactoryTypes(string filter)
{
Dictionary<string, DeviceFactoryWrapper> types = new Dictionary<string, DeviceFactoryWrapper>();
var types = !string.IsNullOrEmpty(filter)
? FactoryMethods.Where(k => k.Key.Contains(filter)).ToDictionary(k => k.Key, k => k.Value)
: FactoryMethods;
if (!string.IsNullOrEmpty(filter))
{
types = FactoryMethods.Where(k => k.Key.Contains(filter)).ToDictionary(k => k.Key, k => k.Value);
}
else
{
types = FactoryMethods;
}
Debug.Console(0, "Device Types:");
CrestronConsole.ConsoleCommandResponse("Device Types:");
foreach (var type in types.OrderBy(t => t.Key))
{
@@ -198,7 +191,7 @@ namespace PepperDash.Essentials.Core
cType = type.Value.CType.FullName;
}
Debug.Console(0,
CrestronConsole.ConsoleCommandResponse(
@"Type: '{0}'
CType: '{1}'
Description: {2}", type.Key, cType, description);

View File

@@ -21,35 +21,37 @@ namespace PepperDash.Essentials.Core
/// </summary>
/// <param name="fileName"></param>
/// <returns></returns>
public static FileInfo[] GetFiles(string fileName)
{
DirectoryInfo dirInfo = new DirectoryInfo(Path.GetDirectoryName(fileName));
var files = dirInfo.GetFiles(Path.GetFileName(fileName));
Debug.Console(0, "FileIO found: {0}, {1}", files.Count(), fileName);
if (files.Count() > 0)
{
return files;
}
else
{
return null;
}
}
public static FileInfo[] GetFiles(string fileName)
{
string fullFilePath = Global.FilePathPrefix + fileName;
DirectoryInfo dirInfo = new DirectoryInfo(Path.GetDirectoryName(fullFilePath));
var files = dirInfo.GetFiles(Path.GetFileName(fullFilePath));
Debug.Console(0, "FileIO found: {0}, {1}", files.Count(), fullFilePath);
if (files.Count() > 0)
{
return files;
}
else
{
return null;
}
}
public static FileInfo GetFile(string fileName)
{
DirectoryInfo dirInfo = new DirectoryInfo(Path.GetDirectoryName(fileName));
var files = dirInfo.GetFiles(Path.GetFileName(fileName));
Debug.Console(0, "FileIO found: {0}, {1}", files.Count(), fileName);
if (files.Count() > 0)
{
return files.FirstOrDefault();
}
else
{
return null;
}
}
public static FileInfo GetFile(string fileName)
{
string fullFilePath = Global.FilePathPrefix + fileName;
DirectoryInfo dirInfo = new DirectoryInfo(Path.GetDirectoryName(fullFilePath));
var files = dirInfo.GetFiles(Path.GetFileName(fullFilePath));
Debug.Console(0, "FileIO found: {0}, {1}", files.Count(), fullFilePath);
if (files.Count() > 0)
{
return files.FirstOrDefault();
}
else
{
return null;
}
}
/// <summary>
@@ -81,7 +83,7 @@ namespace PepperDash.Essentials.Core
{
if (fileLock.TryEnter())
{
DirectoryInfo dirInfo = new DirectoryInfo(file.Name);
DirectoryInfo dirInfo = new DirectoryInfo(file.DirectoryName);
Debug.Console(2, "FileIO Getting Data {0}", file.FullName);
if (File.Exists(file.FullName))
@@ -202,7 +204,7 @@ namespace PepperDash.Essentials.Core
public static void WriteDataToFile(string data, string filePath)
{
Thread _WriteFileThread;
_WriteFileThread = new Thread((O) => _WriteFileMethod(data, filePath), null, Thread.eThreadStartOptions.CreateSuspended);
_WriteFileThread = new Thread((O) => _WriteFileMethod(data, Global.FilePathPrefix + "/" + filePath), null, Thread.eThreadStartOptions.CreateSuspended);
_WriteFileThread.Priority = Thread.eThreadPriority.LowestPriority;
_WriteFileThread.Start();
Debug.Console(0, Debug.ErrorLogLevel.Notice, "New WriteFile Thread");
@@ -217,7 +219,8 @@ namespace PepperDash.Essentials.Core
{
if (fileLock.TryEnter())
{
using (StreamWriter sw = new StreamWriter(filePath))
using (StreamWriter sw = new StreamWriter(filePath))
{
sw.Write(data);
sw.Flush();

View File

@@ -1,9 +1,7 @@
using System;
using System.Collections.Generic;
using System.Data;
using System.Globalization;
using System.Linq;
using System.Runtime.InteropServices;
using System.Text;
using Crestron.SimplSharp.Reflection;
using Crestron.SimplSharp.CrestronIO;
@@ -103,22 +101,22 @@ namespace PepperDash.Essentials.Core
/// </summary>
public void PrintJoinMapInfo()
{
Debug.Console(0, "{0}:\n", GetType().Name);
CrestronConsole.ConsoleCommandResponse("{0}:\n", GetType().Name);
// Get the joins of each type and print them
Debug.Console(0, "Digitals:");
CrestronConsole.ConsoleCommandResponse("Digitals:");
var digitals = Joins.Where(j => (j.Value.JoinType & eJoinType.Digital) == eJoinType.Digital).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Digital Joins", digitals.Count);
CrestronConsole.ConsoleCommandResponse("Found {0} Digital Joins", digitals.Count);
PrintJoinList(GetSortedJoins(digitals));
Debug.Console(0, "Analogs:");
CrestronConsole.ConsoleCommandResponse("Analogs:");
var analogs = Joins.Where(j => (j.Value.JoinType & eJoinType.Analog) == eJoinType.Analog).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Analog Joins", analogs.Count);
CrestronConsole.ConsoleCommandResponse("Found {0} Analog Joins", analogs.Count);
PrintJoinList(GetSortedJoins(analogs));
Debug.Console(0, "Serials:");
CrestronConsole.ConsoleCommandResponse("Serials:");
var serials = Joins.Where(j => (j.Value.JoinType & eJoinType.Serial) == eJoinType.Serial).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Serial Joins", serials.Count);
CrestronConsole.ConsoleCommandResponse("Found {0} Serial Joins", serials.Count);
PrintJoinList(GetSortedJoins(serials));
}
@@ -141,7 +139,7 @@ namespace PepperDash.Essentials.Core
{
foreach (var join in joins)
{
Debug.Console(0,
CrestronConsole.ConsoleCommandResponse(
@"Join Number: {0} | Label: '{1}' | JoinSpan: '{2}' | Type: '{3}' | Capabilities: '{4}'",
join.Value.JoinNumber,
join.Value.Label,
@@ -236,25 +234,45 @@ namespace PepperDash.Essentials.Core
/// </summary>
public void PrintJoinMapInfo()
{
Debug.Console(0, "{0}:\n", GetType().Name);
var sb = JoinmapStringBuilder();
CrestronConsole.ConsoleCommandResponse(sb.ToString());
}
private StringBuilder JoinmapStringBuilder()
{
var sb = new StringBuilder();
// Get the joins of each type and print them
Debug.Console(0, "Digitals:");
var digitals = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Digital) == eJoinType.Digital).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Digital Joins", digitals.Count);
PrintJoinList(GetSortedJoins(digitals));
sb.AppendLine(String.Format("# {0}", GetType().Name));
sb.AppendLine();
sb.AppendLine("## Digitals");
sb.AppendLine();
// Get the joins of each type and print them
var digitals =
Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Digital) == eJoinType.Digital)
.ToDictionary(j => j.Key, j => j.Value);
var digitalSb = AppendJoinList(GetSortedJoins(digitals));
digitalSb.AppendLine("## Analogs");
digitalSb.AppendLine();
Debug.Console(0, "Analogs:");
var analogs = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Analog) == eJoinType.Analog).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Analog Joins", analogs.Count);
PrintJoinList(GetSortedJoins(analogs));
var analogs =
Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Analog) == eJoinType.Analog)
.ToDictionary(j => j.Key, j => j.Value);
var analogSb = AppendJoinList(GetSortedJoins(analogs));
analogSb.AppendLine("## Serials");
analogSb.AppendLine();
Debug.Console(0, "Serials:");
var serials = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Serial) == eJoinType.Serial).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Serial Joins", serials.Count);
PrintJoinList(GetSortedJoins(serials));
var serials =
Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Serial) == eJoinType.Serial)
.ToDictionary(j => j.Key, j => j.Value);
var serialSb = AppendJoinList(GetSortedJoins(serials));
sb.EnsureCapacity(sb.Length + digitalSb.Length + analogSb.Length + serialSb.Length);
sb.Append(digitalSb).Append(analogSb).Append(serialSb);
return sb;
}
/// <summary>
/// Prints the join information to console
/// </summary>
@@ -262,37 +280,11 @@ namespace PepperDash.Essentials.Core
{
var pluginType = GetType().Name;
Debug.Console(0, "{0}:\n", pluginType);
CrestronConsole.ConsoleCommandResponse("{0}:\n", pluginType);
var sb = new StringBuilder();
sb.AppendLine(String.Format("# {0}", GetType().Name));
sb.AppendLine(String.Format("Generated from '{0}' on bridge '{1}'", deviceKey, bridgeKey));
sb.AppendLine();
sb.AppendLine("## Digitals");
// Get the joins of each type and print them
var digitals = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Digital) == eJoinType.Digital).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Digital Joins", digitals.Count);
var digitalSb = AppendJoinList(GetSortedJoins(digitals));
digitalSb.AppendLine("## Analogs");
digitalSb.AppendLine();
Debug.Console(0, "Analogs:");
var analogs = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Analog) == eJoinType.Analog).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Analog Joins", analogs.Count);
var analogSb = AppendJoinList(GetSortedJoins(analogs));
analogSb.AppendLine("## Serials");
analogSb.AppendLine();
Debug.Console(0, "Serials:");
var serials = Joins.Where(j => (j.Value.Metadata.JoinType & eJoinType.Serial) == eJoinType.Serial).ToDictionary(j => j.Key, j => j.Value);
Debug.Console(2, "Found {0} Serial Joins", serials.Count);
var serialSb = AppendJoinList(GetSortedJoins(serials));
sb.EnsureCapacity(sb.Length + digitalSb.Length + analogSb.Length + serialSb.Length);
sb.Append(digitalSb).Append(analogSb).Append(serialSb);
WriteJoinmapMarkdown(sb, pluginType, bridgeKey, deviceKey);
WriteJoinmapMarkdown(JoinmapStringBuilder(), pluginType, bridgeKey, deviceKey);
}
@@ -303,7 +295,7 @@ namespace PepperDash.Essentials.Core
using (var sw = new StreamWriter(fileName))
{
sw.WriteLine(stringBuilder.ToString());
Debug.Console(0, "Joinmap Readme generated and written to {0}", fileName);
CrestronConsole.ConsoleCommandResponse("Joinmap Readme generated and written to {0}", fileName);
}
}
@@ -313,7 +305,7 @@ namespace PepperDash.Essentials.Core
/// </summary>
/// <param name="joins"></param>
/// <returns></returns>
List<KeyValuePair<string, JoinDataComplete>> GetSortedJoins(Dictionary<string, JoinDataComplete> joins)
static List<KeyValuePair<string, JoinDataComplete>> GetSortedJoins(Dictionary<string, JoinDataComplete> joins)
{
var sortedJoins = joins.ToList();
@@ -322,20 +314,6 @@ namespace PepperDash.Essentials.Core
return sortedJoins;
}
void PrintJoinList(List<KeyValuePair<string, JoinDataComplete>> joins)
{
foreach (var join in joins)
{
Debug.Console(0,
@"Join Number: {0} | JoinSpan: '{1}' | JoinName: {2} | Description: '{3}' | Type: '{4}' | Capabilities: '{5}'",
join.Value.JoinNumber,
join.Value.JoinSpan,
join.Key,
String.IsNullOrEmpty(join.Value.AttributeName) ? join.Value.Metadata.Label : join.Value.AttributeName,
join.Value.Metadata.JoinType.ToString(),
join.Value.Metadata.JoinCapabilities.ToString());
}
}
static StringBuilder AppendJoinList(List<KeyValuePair<string, JoinDataComplete>> joins)
{

View File

@@ -43,7 +43,20 @@ namespace PepperDash.Essentials.Core.Monitoring
public StringFeedback UptimeFeedback { get; set; }
public StringFeedback LastStartFeedback { get; set; }
public SystemMonitorController(string key)
public BoolFeedback IsApplianceFeedback { get; protected set; }
private bool _isApplianceFb
{
get { return CrestronEnvironment.DevicePlatform == eDevicePlatform.Appliance; }
}
public BoolFeedback IsServerFeedback { get; protected set; }
private bool _isServerFb
{
get { return CrestronEnvironment.DevicePlatform == eDevicePlatform.Server; }
}
public SystemMonitorController(string key)
: base(key)
{
Debug.Console(2, this, "Adding SystemMonitorController.");
@@ -63,6 +76,9 @@ namespace PepperDash.Essentials.Core.Monitoring
UptimeFeedback = new StringFeedback(() => _uptime);
LastStartFeedback = new StringFeedback(()=> _lastStart);
IsApplianceFeedback = new BoolFeedback(() => _isApplianceFb);
IsServerFeedback = new BoolFeedback(() => _isServerFb);
ProgramStatusFeedbackCollection = new Dictionary<uint, ProgramStatusFeedbacks>();
foreach (var prog in SystemMonitor.ProgramCollection)
@@ -123,6 +139,26 @@ namespace PepperDash.Essentials.Core.Monitoring
_uptime = uptimeRaw.Substring(forIndex + 4);
}
private static void ProcessorReboot()
{
if (CrestronEnvironment.DevicePlatform == eDevicePlatform.Server) return;
var response = string.Empty;
CrestronConsole.SendControlSystemCommand("reboot", ref response);
}
private static void ProgramReset(uint index)
{
if (CrestronEnvironment.DevicePlatform == eDevicePlatform.Server) return;
if (index <= 0 || index > 10) return;
var cmd = string.Format("progreset -p:{0}", index);
var response = string.Empty;
CrestronConsole.SendControlSystemCommand(cmd, ref response);
}
private void CrestronEnvironmentOnEthernetEventHandler(EthernetEventArgs ethernetEventArgs)
{
if (ethernetEventArgs.EthernetEventType != eEthernetEventType.LinkUp) return;
@@ -185,6 +221,9 @@ namespace PepperDash.Essentials.Core.Monitoring
SerialNumberFeedback.FireUpdate();
ModelFeedback.FireUpdate();
IsApplianceFeedback.FireUpdate();
IsServerFeedback.FireUpdate();
OnSystemMonitorPropertiesChanged();
}
@@ -237,6 +276,11 @@ namespace PepperDash.Essentials.Core.Monitoring
UptimeFeedback.LinkInputSig(trilist.StringInput[joinMap.Uptime.JoinNumber]);
LastStartFeedback.LinkInputSig(trilist.StringInput[joinMap.LastBoot.JoinNumber]);
trilist.SetSigHeldAction(joinMap.ProcessorReboot.JoinNumber, 10000, ProcessorReboot);
IsApplianceFeedback.LinkInputSig(trilist.BooleanInput[joinMap.IsAppliance.JoinNumber]);
IsServerFeedback.LinkInputSig(trilist.BooleanInput[joinMap.IsServer.JoinNumber]);
// iterate the program status feedback collection and map all the joins
LinkProgramInfoJoins(this, trilist, joinMap);
@@ -301,11 +345,13 @@ namespace PepperDash.Essentials.Core.Monitoring
p.Value.AggregatedProgramInfoFeedback.LinkInputSig(
trilist.StringInput[programSlotJoinStart + joinMap.AggregatedProgramInfo.JoinNumber]);
trilist.SetSigHeldAction(programSlotJoinStart + joinMap.ProgramReset.JoinNumber, 10000, () => ProgramReset(programNumber));
programSlotJoinStart = programSlotJoinStart + joinMap.ProgramOffsetJoin.JoinSpan;
}
}
}
//// Sets the time zone
//// Sets the time zone
//public void SetTimeZone(int timeZone)
//{
// SystemMonitor.TimeZoneInformation.TimeZoneNumber = timeZone;

View File

@@ -94,7 +94,7 @@
</Reference>
<Reference Include="SimplSharpCWSHelperInterface, Version=2.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\ProgramData\Crestron\SDK\SimplSharpCWSHelperInterface.dll</HintPath>
<HintPath>..\..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SimplSharpCWSHelperInterface.dll</HintPath>
</Reference>
<Reference Include="SimplSharpHelperInterface, Version=1.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
@@ -127,6 +127,7 @@
<Compile Include="Bridges\IBridge.cs" />
<Compile Include="Bridges\JoinMaps\AirMediaControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\AppleTvJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IAnalogInputJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IDigitalOutputJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\PduJoinMapBase.cs" />
<Compile Include="Bridges\JoinMaps\C2nRthsControllerJoinMap.cs" />
@@ -186,8 +187,10 @@
<Compile Include="Crestron IO\DinCenCn\IHasCresnetBranches.cs" />
<Compile Include="Crestron IO\DinIo8\DinIo8Controller.cs" />
<Compile Include="Crestron IO\Inputs\CenIoDigIn104Controller.cs" />
<Compile Include="Crestron IO\Inputs\GenericVersiportAnalogInputDevice.cs" />
<Compile Include="Crestron IO\Inputs\GenericDigitalInputDevice.cs" />
<Compile Include="Crestron IO\Inputs\GenericVersiportInputDevice.cs" />
<Compile Include="Crestron IO\Inputs\IAnalogInput.cs" />
<Compile Include="Crestron IO\Inputs\IDigitalInput.cs" />
<Compile Include="Crestron IO\IOPortConfig.cs" />
<Compile Include="Crestron IO\Ir\CenIoIr104Controller.cs" />

View File

@@ -194,10 +194,11 @@ namespace PepperDash.Essentials
/// <param name="command"></param>
public static void ReportAssemblyVersions(string command)
{
Debug.Console(0, "Loaded Assemblies:");
CrestronConsole.ConsoleCommandResponse("Loaded Assemblies:");
foreach (var assembly in LoadedAssemblies)
{
Debug.Console(0, "{0} Version: {1}", assembly.Name, assembly.Version);
CrestronConsole.ConsoleCommandResponse("{0} Version: {1}", assembly.Name, assembly.Version);
}
}

View File

@@ -1,425 +1,425 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public class RouteRequest
{
public IRoutingSink Destination {get; set;}
public IRoutingOutputs Source {get; set;}
public eRoutingSignalType SignalType {get; set;}
public void HandleCooldown(object sender, FeedbackEventArgs args)
{
var coolingDevice = sender as IWarmingCooling;
if(args.BoolValue == false)
{
Destination.ReleaseAndMakeRoute(Source, SignalType);
if(sender == null) return;
coolingDevice.IsCoolingDownFeedback.OutputChange -= HandleCooldown;
}
}
}
/// <summary>
/// Extensions added to any IRoutingInputs classes to provide discovery-based routing
/// on those destinations.
/// </summary>
public static class IRoutingInputsExtensions
{
private static Dictionary<string, RouteRequest> RouteRequests = new Dictionary<string, RouteRequest>();
/// <summary>
/// Gets any existing RouteDescriptor for a destination, clears it using ReleaseRoute
/// and then attempts a new Route and if sucessful, stores that RouteDescriptor
/// in RouteDescriptorCollection.DefaultCollection
/// </summary>
public static void ReleaseAndMakeRoute(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
var routeRequest = new RouteRequest {
Destination = destination,
Source = source,
SignalType = signalType
};
var coolingDevice = destination as IWarmingCooling;
RouteRequest existingRouteRequest;
//We already have a route request for this device, and it's a cooling device and is cooling
if (RouteRequests.TryGetValue(destination.Key, out existingRouteRequest) && coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == true)
{
coolingDevice.IsCoolingDownFeedback.OutputChange -= existingRouteRequest.HandleCooldown;
coolingDevice.IsCoolingDownFeedback.OutputChange += routeRequest.HandleCooldown;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public class RouteRequest
{
public IRoutingSink Destination {get; set;}
public IRoutingOutputs Source {get; set;}
public eRoutingSignalType SignalType {get; set;}
public void HandleCooldown(object sender, FeedbackEventArgs args)
{
var coolingDevice = sender as IWarmingCooling;
if(args.BoolValue == false)
{
Destination.ReleaseAndMakeRoute(Source, SignalType);
if(sender == null) return;
coolingDevice.IsCoolingDownFeedback.OutputChange -= HandleCooldown;
}
}
}
/// <summary>
/// Extensions added to any IRoutingInputs classes to provide discovery-based routing
/// on those destinations.
/// </summary>
public static class IRoutingInputsExtensions
{
private static Dictionary<string, RouteRequest> RouteRequests = new Dictionary<string, RouteRequest>();
/// <summary>
/// Gets any existing RouteDescriptor for a destination, clears it using ReleaseRoute
/// and then attempts a new Route and if sucessful, stores that RouteDescriptor
/// in RouteDescriptorCollection.DefaultCollection
/// </summary>
public static void ReleaseAndMakeRoute(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
var routeRequest = new RouteRequest {
Destination = destination,
Source = source,
SignalType = signalType
};
var coolingDevice = destination as IWarmingCooling;
RouteRequest existingRouteRequest;
//We already have a route request for this device, and it's a cooling device and is cooling
if (RouteRequests.TryGetValue(destination.Key, out existingRouteRequest) && coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == true)
{
coolingDevice.IsCoolingDownFeedback.OutputChange -= existingRouteRequest.HandleCooldown;
coolingDevice.IsCoolingDownFeedback.OutputChange += routeRequest.HandleCooldown;
RouteRequests[destination.Key] = routeRequest;
Debug.Console(2, "******************************************************** Device: {0} is cooling down and already has a routing request stored. Storing new route request to route to source key: {1}", destination.Key, routeRequest.Source.Key);
return;
}
//New Request
if (coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == true)
{
coolingDevice.IsCoolingDownFeedback.OutputChange -= routeRequest.HandleCooldown;
coolingDevice.IsCoolingDownFeedback.OutputChange += routeRequest.HandleCooldown;
Debug.Console(2, "******************************************************** Device: {0} is cooling down and already has a routing request stored. Storing new route request to route to source key: {1}", destination.Key, routeRequest.Source.Key);
return;
}
//New Request
if (coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == true)
{
coolingDevice.IsCoolingDownFeedback.OutputChange -= routeRequest.HandleCooldown;
coolingDevice.IsCoolingDownFeedback.OutputChange += routeRequest.HandleCooldown;
RouteRequests.Add(destination.Key, routeRequest);
Debug.Console(2, "******************************************************** Device: {0} is cooling down. Storing route request to route to source key: {1}", destination.Key, routeRequest.Source.Key);
return;
}
if (RouteRequests.ContainsKey(destination.Key) && coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == false)
{
return;
}
if (RouteRequests.ContainsKey(destination.Key) && coolingDevice != null && coolingDevice.IsCoolingDownFeedback.BoolValue == false)
{
RouteRequests.Remove(destination.Key);
Debug.Console(2, "******************************************************** Device: {0} is NOT cooling down. Removing stored route request and routing to source key: {1}", destination.Key, routeRequest.Source.Key);
}
destination.ReleaseRoute();
RunRouteRequest(routeRequest);
}
public static void RunRouteRequest(RouteRequest request)
{
if (request.Source == null) return;
var newRoute = request.Destination.GetRouteToSource(request.Source, request.SignalType);
if (newRoute == null) return;
RouteDescriptorCollection.DefaultCollection.AddRouteDescriptor(newRoute);
Debug.Console(2, request.Destination, "Executing full route");
newRoute.ExecuteRoutes();
}
/// <summary>
/// Will release the existing route on the destination, if it is found in
/// RouteDescriptorCollection.DefaultCollection
/// </summary>
/// <param name="destination"></param>
public static void ReleaseRoute(this IRoutingSink destination)
{
RouteRequest existingRequest;
if (RouteRequests.TryGetValue(destination.Key, out existingRequest) && destination is IWarmingCooling)
{
var coolingDevice = destination as IWarmingCooling;
coolingDevice.IsCoolingDownFeedback.OutputChange -= existingRequest.HandleCooldown;
}
RouteRequests.Remove(destination.Key);
var current = RouteDescriptorCollection.DefaultCollection.RemoveRouteDescriptor(destination);
if (current != null)
{
Debug.Console(1, destination, "Releasing current route: {0}", current.Source.Key);
current.ReleaseRoutes();
}
}
/// <summary>
/// Builds a RouteDescriptor that contains the steps necessary to make a route between devices.
/// Routes of type AudioVideo will be built as two separate routes, audio and video. If
/// a route is discovered, a new RouteDescriptor is returned. If one or both parts
/// of an audio/video route are discovered a route descriptor is returned. If no route is
/// discovered, then null is returned
/// </summary>
public static RouteDescriptor GetRouteToSource(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
var routeDescr = new RouteDescriptor(source, destination, signalType);
// if it's a single signal type, find the route
if ((signalType & (eRoutingSignalType.Audio & eRoutingSignalType.Video)) == (eRoutingSignalType.Audio & eRoutingSignalType.Video))
{
Debug.Console(1, destination, "Attempting to build source route from {0}", source.Key);
if (!destination.GetRouteToSource(source, null, null, signalType, 0, routeDescr))
routeDescr = null;
}
// otherwise, audioVideo needs to be handled as two steps.
else
{
Debug.Console(1, destination, "Attempting to build audio and video routes from {0}", source.Key);
var audioSuccess = destination.GetRouteToSource(source, null, null, eRoutingSignalType.Audio, 0, routeDescr);
if (!audioSuccess)
Debug.Console(1, destination, "Cannot find audio route to {0}", source.Key);
var videoSuccess = destination.GetRouteToSource(source, null, null, eRoutingSignalType.Video, 0, routeDescr);
if (!videoSuccess)
Debug.Console(1, destination, "Cannot find video route to {0}", source.Key);
if (!audioSuccess && !videoSuccess)
routeDescr = null;
}
//Debug.Console(1, destination, "Route{0} discovered", routeDescr == null ? " NOT" : "");
return routeDescr;
}
/// <summary>
/// The recursive part of this. Will stop on each device, search its inputs for the
/// desired source and if not found, invoke this function for the each input port
/// hoping to find the source.
/// </summary>
/// <param name="destination"></param>
/// <param name="source"></param>
/// <param name="outputPortToUse">The RoutingOutputPort whose link is being checked for a route</param>
/// <param name="alreadyCheckedDevices">Prevents Devices from being twice-checked</param>
/// <param name="signalType">This recursive function should not be called with AudioVideo</param>
/// <param name="cycle">Just an informational counter</param>
/// <param name="routeTable">The RouteDescriptor being populated as the route is discovered</param>
/// <returns>true if source is hit</returns>
static bool GetRouteToSource(this IRoutingInputs destination, IRoutingOutputs source,
RoutingOutputPort outputPortToUse, List<IRoutingInputsOutputs> alreadyCheckedDevices,
eRoutingSignalType signalType, int cycle, RouteDescriptor routeTable)
{
cycle++;
Debug.Console(2, "GetRouteToSource: {0} {1}--> {2}", cycle, source.Key, destination.Key);
RoutingInputPort goodInputPort = null;
var destDevInputTies = TieLineCollection.Default.Where(t =>
t.DestinationPort.ParentDevice == destination && (t.Type == signalType || (t.Type & (eRoutingSignalType.Audio | eRoutingSignalType.Video)) == (eRoutingSignalType.Audio | eRoutingSignalType.Video)));
// find a direct tie
var directTie = destDevInputTies.FirstOrDefault(
t => t.DestinationPort.ParentDevice == destination
&& t.SourcePort.ParentDevice == source);
if (directTie != null) // Found a tie directly to the source
{
goodInputPort = directTie.DestinationPort;
}
else // no direct-connect. Walk back devices.
{
Debug.Console(2, destination, "is not directly connected to {0}. Walking down tie lines", source.Key);
// No direct tie? Run back out on the inputs' attached devices...
// Only the ones that are routing devices
var attachedMidpoints = destDevInputTies.Where(t => t.SourcePort.ParentDevice is IRoutingInputsOutputs);
//Create a list for tracking already checked devices to avoid loops, if it doesn't already exist from previous iteration
if (alreadyCheckedDevices == null)
alreadyCheckedDevices = new List<IRoutingInputsOutputs>();
alreadyCheckedDevices.Add(destination as IRoutingInputsOutputs);
foreach (var inputTieToTry in attachedMidpoints)
{
var upstreamDeviceOutputPort = inputTieToTry.SourcePort;
var upstreamRoutingDevice = upstreamDeviceOutputPort.ParentDevice as IRoutingInputsOutputs;
Debug.Console(2, destination, "Trying to find route on {0}", upstreamRoutingDevice.Key);
// Check if this previous device has already been walked
if (alreadyCheckedDevices.Contains(upstreamRoutingDevice))
{
Debug.Console(2, destination, "Skipping input {0} on {1}, this was already checked", upstreamRoutingDevice.Key, destination.Key);
continue;
}
// haven't seen this device yet. Do it. Pass the output port to the next
// level to enable switching on success
var upstreamRoutingSuccess = upstreamRoutingDevice.GetRouteToSource(source, upstreamDeviceOutputPort,
alreadyCheckedDevices, signalType, cycle, routeTable);
if (upstreamRoutingSuccess)
{
Debug.Console(2, destination, "Upstream device route found");
goodInputPort = inputTieToTry.DestinationPort;
break; // Stop looping the inputs in this cycle
}
}
}
// we have a route on corresponding inputPort. *** Do the route ***
if (goodInputPort != null)
{
//Debug.Console(2, destination, "adding RouteDescriptor");
if (outputPortToUse == null)
{
// it's a sink device
routeTable.Routes.Add(new RouteSwitchDescriptor(goodInputPort));
}
else if (destination is IRouting)
{
routeTable.Routes.Add(new RouteSwitchDescriptor (outputPortToUse, goodInputPort));
}
else // device is merely IRoutingInputOutputs
Debug.Console(2, destination, " No routing. Passthrough device");
//Debug.Console(2, destination, "Exiting cycle {0}", cycle);
return true;
}
Debug.Console(2, destination, "No route found to {0}", source.Key);
return false;
}
}
// MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE
/// <summary>
/// A collection of RouteDescriptors - typically the static DefaultCollection is used
/// </summary>
public class RouteDescriptorCollection
{
public static RouteDescriptorCollection DefaultCollection
{
get
{
if (_DefaultCollection == null)
_DefaultCollection = new RouteDescriptorCollection();
return _DefaultCollection;
}
}
static RouteDescriptorCollection _DefaultCollection;
List<RouteDescriptor> RouteDescriptors = new List<RouteDescriptor>();
/// <summary>
/// Adds a RouteDescriptor to the list. If an existing RouteDescriptor for the
/// destination exists already, it will not be added - in order to preserve
/// proper route releasing.
/// </summary>
/// <param name="descriptor"></param>
public void AddRouteDescriptor(RouteDescriptor descriptor)
{
if (RouteDescriptors.Any(t => t.Destination == descriptor.Destination))
{
Debug.Console(1, descriptor.Destination,
"Route to [{0}] already exists in global routes table", descriptor.Source.Key);
return;
}
RouteDescriptors.Add(descriptor);
}
/// <summary>
/// Gets the RouteDescriptor for a destination
/// </summary>
/// <returns>null if no RouteDescriptor for a destination exists</returns>
public RouteDescriptor GetRouteDescriptorForDestination(IRoutingInputs destination)
{
return RouteDescriptors.FirstOrDefault(rd => rd.Destination == destination);
}
/// <summary>
/// Returns the RouteDescriptor for a given destination AND removes it from collection.
/// Returns null if no route with the provided destination exists.
/// </summary>
public RouteDescriptor RemoveRouteDescriptor(IRoutingInputs destination)
{
var descr = GetRouteDescriptorForDestination(destination);
if (descr != null)
RouteDescriptors.Remove(descr);
return descr;
}
}
/// <summary>
/// Represents an collection of individual route steps between Source and Destination
/// </summary>
public class RouteDescriptor
{
public IRoutingInputs Destination { get; private set; }
public IRoutingOutputs Source { get; private set; }
public eRoutingSignalType SignalType { get; private set; }
public List<RouteSwitchDescriptor> Routes { get; private set; }
public RouteDescriptor(IRoutingOutputs source, IRoutingInputs destination, eRoutingSignalType signalType)
{
Destination = destination;
Source = source;
SignalType = signalType;
Routes = new List<RouteSwitchDescriptor>();
}
/// <summary>
/// Executes all routes described in this collection. Typically called via
/// extension method IRoutingInputs.ReleaseAndMakeRoute()
/// </summary>
public void ExecuteRoutes()
{
foreach (var route in Routes)
{
Debug.Console(2, "ExecuteRoutes: {0}", route.ToString());
if (route.SwitchingDevice is IRoutingSink)
{
var device = route.SwitchingDevice as IRoutingSinkWithSwitching;
if (device == null)
continue;
device.ExecuteSwitch(route.InputPort.Selector);
}
else if (route.SwitchingDevice is IRouting)
{
(route.SwitchingDevice as IRouting).ExecuteSwitch(route.InputPort.Selector, route.OutputPort.Selector, SignalType);
route.OutputPort.InUseTracker.AddUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Output port {0} routing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
}
}
/// <summary>
/// Releases all routes in this collection. Typically called via
/// extension method IRoutingInputs.ReleaseAndMakeRoute()
/// </summary>
public void ReleaseRoutes()
{
foreach (var route in Routes)
{
if (route.SwitchingDevice is IRouting)
{
// Pull the route from the port. Whatever is watching the output's in use tracker is
// responsible for responding appropriately.
route.OutputPort.InUseTracker.RemoveUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Port {0} releasing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
}
}
public override string ToString()
{
var routesText = Routes.Select(r => r.ToString()).ToArray();
return string.Format("Route table from {0} to {1}:\r{2}", Source.Key, Destination.Key, string.Join("\r", routesText));
}
}
/// <summary>
/// Represents an individual link for a route
/// </summary>
public class RouteSwitchDescriptor
{
public IRoutingInputs SwitchingDevice { get { return InputPort.ParentDevice; } }
public RoutingOutputPort OutputPort { get; set; }
public RoutingInputPort InputPort { get; set; }
public RouteSwitchDescriptor(RoutingInputPort inputPort)
{
InputPort = inputPort;
}
public RouteSwitchDescriptor(RoutingOutputPort outputPort, RoutingInputPort inputPort)
{
InputPort = inputPort;
OutputPort = outputPort;
}
public override string ToString()
{
if(SwitchingDevice is IRouting)
return string.Format("{0} switches output '{1}' to input '{2}'", SwitchingDevice.Key, OutputPort.Selector, InputPort.Selector);
else
return string.Format("{0} switches to input '{1}'", SwitchingDevice.Key, InputPort.Selector);
}
}
}
destination.ReleaseRoute();
RunRouteRequest(routeRequest);
}
public static void RunRouteRequest(RouteRequest request)
{
if (request.Source == null) return;
var newRoute = request.Destination.GetRouteToSource(request.Source, request.SignalType);
if (newRoute == null) return;
RouteDescriptorCollection.DefaultCollection.AddRouteDescriptor(newRoute);
Debug.Console(2, request.Destination, "Executing full route");
newRoute.ExecuteRoutes();
}
/// <summary>
/// Will release the existing route on the destination, if it is found in
/// RouteDescriptorCollection.DefaultCollection
/// </summary>
/// <param name="destination"></param>
public static void ReleaseRoute(this IRoutingSink destination)
{
RouteRequest existingRequest;
if (RouteRequests.TryGetValue(destination.Key, out existingRequest) && destination is IWarmingCooling)
{
var coolingDevice = destination as IWarmingCooling;
coolingDevice.IsCoolingDownFeedback.OutputChange -= existingRequest.HandleCooldown;
}
RouteRequests.Remove(destination.Key);
var current = RouteDescriptorCollection.DefaultCollection.RemoveRouteDescriptor(destination);
if (current != null)
{
Debug.Console(1, destination, "Releasing current route: {0}", current.Source.Key);
current.ReleaseRoutes();
}
}
/// <summary>
/// Builds a RouteDescriptor that contains the steps necessary to make a route between devices.
/// Routes of type AudioVideo will be built as two separate routes, audio and video. If
/// a route is discovered, a new RouteDescriptor is returned. If one or both parts
/// of an audio/video route are discovered a route descriptor is returned. If no route is
/// discovered, then null is returned
/// </summary>
public static RouteDescriptor GetRouteToSource(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
var routeDescr = new RouteDescriptor(source, destination, signalType);
// if it's a single signal type, find the route
if ((signalType & (eRoutingSignalType.Audio & eRoutingSignalType.Video)) == (eRoutingSignalType.Audio & eRoutingSignalType.Video))
{
Debug.Console(1, destination, "Attempting to build source route from {0}", source.Key);
if (!destination.GetRouteToSource(source, null, null, signalType, 0, routeDescr))
routeDescr = null;
}
// otherwise, audioVideo needs to be handled as two steps.
else
{
Debug.Console(1, destination, "Attempting to build audio and video routes from {0}", source.Key);
var audioSuccess = destination.GetRouteToSource(source, null, null, eRoutingSignalType.Audio, 0, routeDescr);
if (!audioSuccess)
Debug.Console(1, destination, "Cannot find audio route to {0}", source.Key);
var videoSuccess = destination.GetRouteToSource(source, null, null, eRoutingSignalType.Video, 0, routeDescr);
if (!videoSuccess)
Debug.Console(1, destination, "Cannot find video route to {0}", source.Key);
if (!audioSuccess && !videoSuccess)
routeDescr = null;
}
//Debug.Console(1, destination, "Route{0} discovered", routeDescr == null ? " NOT" : "");
return routeDescr;
}
/// <summary>
/// The recursive part of this. Will stop on each device, search its inputs for the
/// desired source and if not found, invoke this function for the each input port
/// hoping to find the source.
/// </summary>
/// <param name="destination"></param>
/// <param name="source"></param>
/// <param name="outputPortToUse">The RoutingOutputPort whose link is being checked for a route</param>
/// <param name="alreadyCheckedDevices">Prevents Devices from being twice-checked</param>
/// <param name="signalType">This recursive function should not be called with AudioVideo</param>
/// <param name="cycle">Just an informational counter</param>
/// <param name="routeTable">The RouteDescriptor being populated as the route is discovered</param>
/// <returns>true if source is hit</returns>
static bool GetRouteToSource(this IRoutingInputs destination, IRoutingOutputs source,
RoutingOutputPort outputPortToUse, List<IRoutingInputsOutputs> alreadyCheckedDevices,
eRoutingSignalType signalType, int cycle, RouteDescriptor routeTable)
{
cycle++;
Debug.Console(2, "GetRouteToSource: {0} {1}--> {2}", cycle, source.Key, destination.Key);
RoutingInputPort goodInputPort = null;
var destDevInputTies = TieLineCollection.Default.Where(t =>
t.DestinationPort.ParentDevice == destination && (t.Type == signalType || (t.Type & (eRoutingSignalType.Audio | eRoutingSignalType.Video)) == (eRoutingSignalType.Audio | eRoutingSignalType.Video)));
// find a direct tie
var directTie = destDevInputTies.FirstOrDefault(
t => t.DestinationPort.ParentDevice == destination
&& t.SourcePort.ParentDevice == source);
if (directTie != null) // Found a tie directly to the source
{
goodInputPort = directTie.DestinationPort;
}
else // no direct-connect. Walk back devices.
{
Debug.Console(2, destination, "is not directly connected to {0}. Walking down tie lines", source.Key);
// No direct tie? Run back out on the inputs' attached devices...
// Only the ones that are routing devices
var attachedMidpoints = destDevInputTies.Where(t => t.SourcePort.ParentDevice is IRoutingInputsOutputs);
//Create a list for tracking already checked devices to avoid loops, if it doesn't already exist from previous iteration
if (alreadyCheckedDevices == null)
alreadyCheckedDevices = new List<IRoutingInputsOutputs>();
alreadyCheckedDevices.Add(destination as IRoutingInputsOutputs);
foreach (var inputTieToTry in attachedMidpoints)
{
var upstreamDeviceOutputPort = inputTieToTry.SourcePort;
var upstreamRoutingDevice = upstreamDeviceOutputPort.ParentDevice as IRoutingInputsOutputs;
Debug.Console(2, destination, "Trying to find route on {0}", upstreamRoutingDevice.Key);
// Check if this previous device has already been walked
if (alreadyCheckedDevices.Contains(upstreamRoutingDevice))
{
Debug.Console(2, destination, "Skipping input {0} on {1}, this was already checked", upstreamRoutingDevice.Key, destination.Key);
continue;
}
// haven't seen this device yet. Do it. Pass the output port to the next
// level to enable switching on success
var upstreamRoutingSuccess = upstreamRoutingDevice.GetRouteToSource(source, upstreamDeviceOutputPort,
alreadyCheckedDevices, signalType, cycle, routeTable);
if (upstreamRoutingSuccess)
{
Debug.Console(2, destination, "Upstream device route found");
goodInputPort = inputTieToTry.DestinationPort;
break; // Stop looping the inputs in this cycle
}
}
}
// we have a route on corresponding inputPort. *** Do the route ***
if (goodInputPort != null)
{
//Debug.Console(2, destination, "adding RouteDescriptor");
if (outputPortToUse == null)
{
// it's a sink device
routeTable.Routes.Add(new RouteSwitchDescriptor(goodInputPort));
}
else if (destination is IRouting)
{
routeTable.Routes.Add(new RouteSwitchDescriptor (outputPortToUse, goodInputPort));
}
else // device is merely IRoutingInputOutputs
Debug.Console(2, destination, " No routing. Passthrough device");
//Debug.Console(2, destination, "Exiting cycle {0}", cycle);
return true;
}
Debug.Console(2, destination, "No route found to {0}", source.Key);
return false;
}
}
// MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE MOVE
/// <summary>
/// A collection of RouteDescriptors - typically the static DefaultCollection is used
/// </summary>
public class RouteDescriptorCollection
{
public static RouteDescriptorCollection DefaultCollection
{
get
{
if (_DefaultCollection == null)
_DefaultCollection = new RouteDescriptorCollection();
return _DefaultCollection;
}
}
static RouteDescriptorCollection _DefaultCollection;
List<RouteDescriptor> RouteDescriptors = new List<RouteDescriptor>();
/// <summary>
/// Adds a RouteDescriptor to the list. If an existing RouteDescriptor for the
/// destination exists already, it will not be added - in order to preserve
/// proper route releasing.
/// </summary>
/// <param name="descriptor"></param>
public void AddRouteDescriptor(RouteDescriptor descriptor)
{
if (RouteDescriptors.Any(t => t.Destination == descriptor.Destination))
{
Debug.Console(1, descriptor.Destination,
"Route to [{0}] already exists in global routes table", descriptor.Source.Key);
return;
}
RouteDescriptors.Add(descriptor);
}
/// <summary>
/// Gets the RouteDescriptor for a destination
/// </summary>
/// <returns>null if no RouteDescriptor for a destination exists</returns>
public RouteDescriptor GetRouteDescriptorForDestination(IRoutingInputs destination)
{
return RouteDescriptors.FirstOrDefault(rd => rd.Destination == destination);
}
/// <summary>
/// Returns the RouteDescriptor for a given destination AND removes it from collection.
/// Returns null if no route with the provided destination exists.
/// </summary>
public RouteDescriptor RemoveRouteDescriptor(IRoutingInputs destination)
{
var descr = GetRouteDescriptorForDestination(destination);
if (descr != null)
RouteDescriptors.Remove(descr);
return descr;
}
}
/// <summary>
/// Represents an collection of individual route steps between Source and Destination
/// </summary>
public class RouteDescriptor
{
public IRoutingInputs Destination { get; private set; }
public IRoutingOutputs Source { get; private set; }
public eRoutingSignalType SignalType { get; private set; }
public List<RouteSwitchDescriptor> Routes { get; private set; }
public RouteDescriptor(IRoutingOutputs source, IRoutingInputs destination, eRoutingSignalType signalType)
{
Destination = destination;
Source = source;
SignalType = signalType;
Routes = new List<RouteSwitchDescriptor>();
}
/// <summary>
/// Executes all routes described in this collection. Typically called via
/// extension method IRoutingInputs.ReleaseAndMakeRoute()
/// </summary>
public void ExecuteRoutes()
{
foreach (var route in Routes)
{
Debug.Console(2, "ExecuteRoutes: {0}", route.ToString());
if (route.SwitchingDevice is IRoutingSink)
{
var device = route.SwitchingDevice as IRoutingSinkWithSwitching;
if (device == null)
continue;
device.ExecuteSwitch(route.InputPort.Selector);
}
else if (route.SwitchingDevice is IRouting)
{
(route.SwitchingDevice as IRouting).ExecuteSwitch(route.InputPort.Selector, route.OutputPort.Selector, SignalType);
route.OutputPort.InUseTracker.AddUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Output port {0} routing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
}
}
/// <summary>
/// Releases all routes in this collection. Typically called via
/// extension method IRoutingInputs.ReleaseAndMakeRoute()
/// </summary>
public void ReleaseRoutes()
{
foreach (var route in Routes)
{
if (route.SwitchingDevice is IRouting)
{
// Pull the route from the port. Whatever is watching the output's in use tracker is
// responsible for responding appropriately.
route.OutputPort.InUseTracker.RemoveUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Port {0} releasing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
}
}
public override string ToString()
{
var routesText = Routes.Select(r => r.ToString()).ToArray();
return string.Format("Route table from {0} to {1}:\r{2}", Source.Key, Destination.Key, string.Join("\r", routesText));
}
}
/// <summary>
/// Represents an individual link for a route
/// </summary>
public class RouteSwitchDescriptor
{
public IRoutingInputs SwitchingDevice { get { return InputPort.ParentDevice; } }
public RoutingOutputPort OutputPort { get; set; }
public RoutingInputPort InputPort { get; set; }
public RouteSwitchDescriptor(RoutingInputPort inputPort)
{
InputPort = inputPort;
}
public RouteSwitchDescriptor(RoutingOutputPort outputPort, RoutingInputPort inputPort)
{
InputPort = inputPort;
OutputPort = outputPort;
}
public override string ToString()
{
if(SwitchingDevice is IRouting)
return string.Format("{0} switches output '{1}' to input '{2}'", SwitchingDevice.Key, OutputPort.Selector, InputPort.Selector);
else
return string.Format("{0} switches to input '{1}'", SwitchingDevice.Key, InputPort.Selector);
}
}
}

View File

@@ -19,7 +19,7 @@ namespace PepperDash.Essentials.DM.AirMedia
[Description("Wrapper class for an AM-200 or AM-300")]
public class AirMediaController : CrestronGenericBridgeableBaseDevice, IRoutingNumericWithFeedback, IIROutputPorts, IComPorts
{
public AmX00 AirMedia { get; private set; }
public Am3x00 AirMedia { get; private set; }
public DeviceConfig DeviceConfig { get; private set; }
@@ -44,7 +44,7 @@ namespace PepperDash.Essentials.DM.AirMedia
public StringFeedback SerialNumberFeedback { get; private set; }
public BoolFeedback AutomaticInputRoutingEnabledFeedback { get; private set; }
public AirMediaController(string key, string name, AmX00 device, DeviceConfig dc, AirMediaPropertiesConfig props)
public AirMediaController(string key, string name, Am3x00 device, DeviceConfig dc, AirMediaPropertiesConfig props)
: base(key, name, device)
{
@@ -95,24 +95,31 @@ namespace PepperDash.Essentials.DM.AirMedia
AirMedia.AirMedia.AirMediaChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(AirMedia_AirMediaChange);
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));
ConnectionAddressFeedback = new StringFeedback(new Func<string>(() => AirMedia.AirMedia.ConnectionAddressFeedback.StringValue));
HostnameFeedback = new StringFeedback(new Func<string>(() => AirMedia.AirMedia.HostNameFeedback.StringValue));
IsInSessionFeedback = new BoolFeedback(() => AirMedia.AirMedia.StatusFeedback.UShortValue == 0);
ErrorFeedback = new IntFeedback(() => AirMedia.AirMedia.ErrorFeedback.UShortValue);
NumberOfUsersConnectedFeedback = new IntFeedback(() => AirMedia.AirMedia.NumberOfUsersConnectedFeedback.UShortValue);
LoginCodeFeedback = new IntFeedback(() => AirMedia.AirMedia.LoginCodeFeedback.UShortValue);
ConnectionAddressFeedback = new StringFeedback(() => AirMedia.AirMedia.ConnectionAddressFeedback.StringValue);
HostnameFeedback = new StringFeedback(() => AirMedia.AirMedia.HostNameFeedback.StringValue);
// TODO: Figure out if we can actually get the TSID/Serial
SerialNumberFeedback = new StringFeedback(new Func<string>(() => "unknown"));
SerialNumberFeedback = new StringFeedback(() => "unknown");
AirMedia.DisplayControl.DisplayControlChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(DisplayControl_DisplayControlChange);
AirMedia.DisplayControl.DisplayControlChange += DisplayControl_DisplayControlChange;
VideoOutFeedback = new IntFeedback(new Func<int>(() => Convert.ToInt16(AirMedia.DisplayControl.VideoOutFeedback)));
AutomaticInputRoutingEnabledFeedback = new BoolFeedback(new Func<bool>(() => AirMedia.DisplayControl.EnableAutomaticRoutingFeedback.BoolValue));
VideoOutFeedback = new IntFeedback(() => Convert.ToInt16(AirMedia.DisplayControl.VideoOutFeedback));
AutomaticInputRoutingEnabledFeedback = new BoolFeedback(() => AirMedia.DisplayControl.EnableAutomaticRoutingFeedback.BoolValue);
AirMedia.HdmiIn.StreamChange += new Crestron.SimplSharpPro.DeviceSupport.StreamEventHandler(HdmiIn_StreamChange);
// Not all AirMedia versions support HDMI In like the 3200
if (AirMedia.HdmiIn != null)
{
AirMedia.HdmiIn.StreamChange += HdmiIn_StreamChange;
HdmiVideoSyncDetectedFeedback = new BoolFeedback(() => AirMedia.HdmiIn.SyncDetectedFeedback.BoolValue);
return;
}
HdmiVideoSyncDetectedFeedback = new BoolFeedback(new Func<bool>(() => AirMedia.HdmiIn.SyncDetectedFeedback.BoolValue));
// Return false if the AirMedia device doesn't support HDMI Input
HdmiVideoSyncDetectedFeedback = new BoolFeedback(() => false);
}
public override bool CustomActivate()
@@ -122,7 +129,7 @@ namespace PepperDash.Essentials.DM.AirMedia
else
AirMedia.DisplayControl.DisableAutomaticRouting();
return base.CustomActivate();
return true;
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
@@ -179,31 +186,53 @@ namespace PepperDash.Essentials.DM.AirMedia
/// <param name="e">Arguments defined as IKeyName sender, output, input, and eRoutingSignalType</param>
private void OnSwitchChange(RoutingNumericEventArgs e)
{
var newEvent = NumericSwitchChange;
if (newEvent != null) newEvent(this, e);
}
var handler = NumericSwitchChange;
if (handler == null) return;
handler(this, e);
}
void AirMedia_AirMediaChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
if (args.EventId == AirMediaInputSlot.AirMediaStatusFeedbackEventId)
IsInSessionFeedback.FireUpdate();
else if (args.EventId == AirMediaInputSlot.AirMediaErrorFeedbackEventId)
ErrorFeedback.FireUpdate();
else if (args.EventId == AirMediaInputSlot.AirMediaNumberOfUserConnectedEventId)
NumberOfUsersConnectedFeedback.FireUpdate();
else if (args.EventId == AirMediaInputSlot.AirMediaLoginCodeEventId)
LoginCodeFeedback.FireUpdate();
else if (args.EventId == AirMediaInputSlot.AirMediaConnectionAddressFeedbackEventId)
ConnectionAddressFeedback.FireUpdate();
else if (args.EventId == AirMediaInputSlot.AirMediaHostNameFeedbackEventId)
HostnameFeedback.FireUpdate();
switch (args.EventId)
{
case AirMediaInputSlot.AirMediaStatusFeedbackEventId:
{
IsInSessionFeedback.FireUpdate();
break;
}
case AirMediaInputSlot.AirMediaErrorFeedbackEventId:
{
ErrorFeedback.FireUpdate();
break;
}
case AirMediaInputSlot.AirMediaNumberOfUserConnectedEventId:
{
NumberOfUsersConnectedFeedback.FireUpdate();
break;
}
case AirMediaInputSlot.AirMediaLoginCodeEventId:
{
LoginCodeFeedback.FireUpdate();
break;
}
case AirMediaInputSlot.AirMediaConnectionAddressFeedbackEventId:
{
ConnectionAddressFeedback.FireUpdate();
break;
}
case AirMediaInputSlot.AirMediaHostNameFeedbackEventId:
{
HostnameFeedback.FireUpdate();
break;
}
}
}
void DisplayControl_DisplayControlChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
if (args.EventId == AmX00.VideoOutFeedbackEventId)
{
VideoOutFeedback.FireUpdate();
var localInputPort =
@@ -211,8 +240,7 @@ namespace PepperDash.Essentials.DM.AirMedia
OnSwitchChange(new RoutingNumericEventArgs(1, VideoOutFeedback.UShortValue, OutputPorts.First(),
localInputPort, eRoutingSignalType.AudioVideo));
}
else if (args.EventId == AmX00.EnableAutomaticRoutingFeedbackEventId)
AutomaticInputRoutingEnabledFeedback.FireUpdate();
}
@@ -342,7 +370,7 @@ namespace PepperDash.Essentials.DM.AirMedia
{
public AirMediaControllerFactory()
{
TypeNames = new List<string>() { "am200", "am300" };
TypeNames = new List<string>() { "am200", "am300", "am3200" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
@@ -351,12 +379,26 @@ namespace PepperDash.Essentials.DM.AirMedia
Debug.Console(1, "Factory Attempting to create new AirMedia Device");
var props = JsonConvert.DeserializeObject<AirMediaPropertiesConfig>(dc.Properties.ToString());
AmX00 amDevice = null;
if (type == "am200")
amDevice = new Crestron.SimplSharpPro.DM.AirMedia.Am200(props.Control.IpIdInt, Global.ControlSystem);
else if (type == "am300")
amDevice = new Crestron.SimplSharpPro.DM.AirMedia.Am300(props.Control.IpIdInt, Global.ControlSystem);
var props = dc.Properties.ToObject<AirMediaPropertiesConfig>();
Am3x00 amDevice = null;
switch (type)
{
case "am200" :
{
amDevice = new Am200(props.Control.IpIdInt, Global.ControlSystem);
break;
}
case "am300" :
{
amDevice = new Am300(props.Control.IpIdInt, Global.ControlSystem);
break;
}
case "am3200" :
{
amDevice = new Am3200(props.Control.IpIdInt, Global.ControlSystem);
break;
}
}
return new AirMediaController(dc.Key, dc.Name, amDevice, dc, props);

View File

@@ -17,11 +17,12 @@ using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
using Crestron.SimplSharpPro.DeviceSupport;
using PepperDash.Essentials.Core.DeviceInfo;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM.Endpoints.DGEs
{
[Description("Wrapper class for DGE-100")]
public class Dge100Controller : CrestronGenericBaseDevice, IComPorts, IIROutputPorts, IHasBasicTriListWithSmartObject, ICec, IDeviceInfoProvider
public class Dge100Controller : CrestronGenericBaseDevice, IComPorts, IIROutputPorts, IHasBasicTriListWithSmartObject, ICec, IDeviceInfoProvider, IBridgeAdvanced
{
private const int CtpPort = 41795;
private readonly Dge100 _dge;
@@ -30,9 +31,12 @@ namespace PepperDash.Essentials.DM.Endpoints.DGEs
public BasicTriListWithSmartObject Panel { get { return _dge; } }
private DeviceConfig _dc;
private DeviceConfig _dc;
public VideoStatusOutputs VideoStatusFeedbacks { get; private set; }
CrestronTouchpanelPropertiesConfig PropertiesConfig;
CrestronTouchpanelPropertiesConfig PropertiesConfig;
public Dge100Controller(string key, string name, Dge100 device, DeviceConfig dc, CrestronTouchpanelPropertiesConfig props)
:base(key, name, device)
@@ -48,8 +52,20 @@ namespace PepperDash.Essentials.DM.Endpoints.DGEs
_dc = dc;
PropertiesConfig = props;
}
PropertiesConfig = props;
var videoStatusFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () => _dge.HdmiIn.HdcpSupportOnFeedback.BoolValue,
VideoResolutionFeedbackFunc = () => _dge.HdmiIn.VideoAttributes.GetVideoResolutionString(),
VideoSyncFeedbackFunc = () => _dge.HdmiIn.SyncDetectedFeedback.BoolValue,
};
VideoStatusFeedbacks = new VideoStatusOutputs(videoStatusFuncs);
_dge.HdmiIn.StreamChange += (s,a) => VideoStatusFeedbacks.FireAll();
_dge.HdmiIn.VideoAttributes.AttributeChange += (o, a) => VideoStatusFeedbacks.FireAll();
}
#region IComPorts Members
@@ -187,6 +203,63 @@ namespace PepperDash.Essentials.DM.Endpoints.DGEs
handler(this, new DeviceInfoEventArgs(DeviceInfo));
}
#endregion
#region IBridgeAdvanced Members
public void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new DgeJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<DgeJoinMap>(joinMapSerialized);
if (bridge != null)
{
bridge.AddJoinMap(Key, joinMap);
}
else
{
Debug.Console(0, this, "Please update config to use 'eiscapiadvanced' to get all join map features for this device.");
}
Debug.Console(1, this, "Linking to Trilist '{0}'", trilist.ID.ToString("X"));
//Presses
trilist.SetSigTrueAction(joinMap.HdmiInHdcpOn.JoinNumber, () => _dge.HdmiIn.HdcpSupportOn());
trilist.SetSigTrueAction(joinMap.HdmiInHdcpOff.JoinNumber,() => _dge.HdmiIn.HdcpSupportOff());
trilist.SetSigTrueAction(joinMap.HdmiInHdcpToggle.JoinNumber, () => {
if(_dge.HdmiIn.HdcpSupportOnFeedback.BoolValue)
{
_dge.HdmiIn.HdcpSupportOff();
return;
}
_dge.HdmiIn.HdcpSupportOn();
});
// Feedbacks
VideoStatusFeedbacks.HdcpActiveFeedback.LinkInputSig(trilist.BooleanInput[joinMap.HdmiInHdcpOn.JoinNumber]);
VideoStatusFeedbacks.HdcpActiveFeedback.LinkComplementInputSig(trilist.BooleanInput[joinMap.HdmiInHdcpOff.JoinNumber]);
VideoStatusFeedbacks.VideoResolutionFeedback.LinkInputSig(trilist.StringInput[joinMap.CurrentInputResolution.JoinNumber]);
VideoStatusFeedbacks.VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.SyncDetected.JoinNumber]);
IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
trilist.OnlineStatusChange += (o, a) =>
{
if (!a.DeviceOnLine) return;
VideoStatusFeedbacks.FireAll();
};
}
#endregion
}

View File

@@ -0,0 +1,50 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.DM.Endpoints.DGEs
{
public class DgeJoinMap : JoinMapBaseAdvanced
{
[JoinName("IsOnline")]
public JoinDataComplete IsOnline = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "DGE Online", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("CurrentInputResolution")]
public JoinDataComplete CurrentInputResolution = new JoinDataComplete(new JoinData { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata { Description = "DGE Current Input Resolution", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("SyncDetected")]
public JoinDataComplete SyncDetected = new JoinDataComplete(new JoinData { JoinNumber = 2, JoinSpan = 1 },
new JoinMetadata { Description = "DGE Sync Detected", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("HdmiHdcpOn")]
public JoinDataComplete HdmiInHdcpOn = new JoinDataComplete(new JoinData { JoinNumber = 3, JoinSpan = 1 },
new JoinMetadata { Description = "DGE HDMI HDCP State On", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("HdmiHdcpOff")]
public JoinDataComplete HdmiInHdcpOff = new JoinDataComplete(new JoinData { JoinNumber = 4, JoinSpan = 1 },
new JoinMetadata { Description = "DGE HDMI HDCP State Off", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("HdmiHdcpToggle")]
public JoinDataComplete HdmiInHdcpToggle = new JoinDataComplete(new JoinData { JoinNumber = 5, JoinSpan = 1 },
new JoinMetadata { Description = "DGE HDMI HDCP State Toggle", JoinCapabilities = eJoinCapabilities.FromSIMPL, JoinType = eJoinType.Digital });
public DgeJoinMap(uint joinStart)
: this(joinStart, typeof(DgeJoinMap))
{
}
/// <summary>
/// Constructor to use when extending this Join map
/// </summary>
/// <param name="joinStart">Join this join map will start at</param>
/// <param name="type">Type of the child join map</param>
protected DgeJoinMap(uint joinStart, Type type) : base(joinStart, type)
{
}
}
}

View File

@@ -58,37 +58,37 @@ namespace PepperDash.Essentials.DM.Endpoints.DGEs
HdmiOut.Port = _dge.HdmiOut; ;
}
public class DmDge200CControllerFactory : EssentialsDeviceFactory<DmDge200CController>
{
public DmDge200CControllerFactory()
{
TypeNames = new List<string>() { "dmdge200c" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
var typeName = dc.Type.ToLower();
var comm = CommFactory.GetControlPropertiesConfig(dc);
var props = JsonConvert.DeserializeObject<CrestronTouchpanelPropertiesConfig>(dc.Properties.ToString());
Debug.Console(1, "Factory Attempting to create new DgeController Device");
DmDge200C dgeDevice = null;
if (typeName == "dmdge200c")
dgeDevice = new DmDge200C(comm.IpIdInt, Global.ControlSystem);
if (dgeDevice == null)
{
Debug.Console(1, "Unable to create DGE device");
return null;
}
var dgeController = new DmDge200CController(dc.Key , dc.Name, dgeDevice, dc, props);
return dgeController;
}
}
}
public class DmDge200CControllerFactory : EssentialsDeviceFactory<DmDge200CController>
{
public DmDge200CControllerFactory()
{
TypeNames = new List<string>() { "dmdge200c" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
var typeName = dc.Type.ToLower();
var comm = CommFactory.GetControlPropertiesConfig(dc);
var props = JsonConvert.DeserializeObject<CrestronTouchpanelPropertiesConfig>(dc.Properties.ToString());
Debug.Console(1, "Factory Attempting to create new DgeController Device");
DmDge200C dgeDevice = null;
if (typeName == "dmdge200c")
dgeDevice = new DmDge200C(comm.IpIdInt, Global.ControlSystem);
if (dgeDevice == null)
{
Debug.Console(1, "Unable to create DGE device");
return null;
}
var dgeController = new DmDge200CController(dc.Key, dc.Name, dgeDevice, dc, props);
return dgeController;
}
}
}

View File

@@ -28,6 +28,8 @@ namespace PepperDash.Essentials.DM
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HDBaseTSink};
PreventRegistration = true;
rmc.Register();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)

View File

@@ -1,99 +1,99 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints.Receivers;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints.Receivers;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
[Description("Wrapper Class for DM-RMC-150-S")]
public class DmRmc150SController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc150S _rmc;
public RoutingInputPort DmIn { get; private set; }
public RoutingOutputPort HdmiOut { get; private set; }
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get; private set;
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get;
private set ;
}
/// <summary>
/// Make a Crestron RMC and put it in here
/// </summary>
public DmRmc150SController(string key, string name, DmRmc150S rmc)
: base(key, name, rmc)
{
_rmc = rmc;
DmIn = new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, 0, this);
HdmiOut = new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this);
EdidManufacturerFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Manufacturer.StringValue);
EdidNameFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Name.StringValue);
EdidPreferredTimingFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.PreferredTiming.StringValue);
EdidSerialNumberFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.SerialNumber.StringValue);
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
// Set Ports for CEC
HdmiOut.Port = _rmc.HdmiOutput;
}
void ConnectedDevice_DeviceInformationChange(ConnectedDeviceInformation connectedDevice, ConnectedDeviceEventArgs args)
{
switch (args.EventId)
{
case ConnectedDeviceEventIds.ManufacturerEventId:
EdidManufacturerFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.NameEventId:
EdidNameFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.PreferredTimingEventId:
EdidPreferredTimingFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.SerialNumberEventId:
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDmRmcToApi(this, trilist, joinStart, joinMapKey, bridge);
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return _rmc.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return _rmc.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return _rmc.ComPorts; } }
public int NumberOfComPorts { get { return _rmc.NumberOfComPorts; } }
#endregion
#region ICec Members
public Cec StreamCec { get { return _rmc.HdmiOutput.StreamCec; } }
#endregion
}
[Description("Wrapper Class for DM-RMC-150-S")]
public class DmRmc150SController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc150S _rmc;
public RoutingInputPort DmIn { get; private set; }
public RoutingOutputPort HdmiOut { get; private set; }
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get; private set;
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get;
private set ;
}
/// <summary>
/// Make a Crestron RMC and put it in here
/// </summary>
public DmRmc150SController(string key, string name, DmRmc150S rmc)
: base(key, name, rmc)
{
_rmc = rmc;
DmIn = new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, 0, this);
HdmiOut = new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this);
EdidManufacturerFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Manufacturer.StringValue);
EdidNameFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Name.StringValue);
EdidPreferredTimingFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.PreferredTiming.StringValue);
EdidSerialNumberFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.SerialNumber.StringValue);
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
// Set Ports for CEC
HdmiOut.Port = _rmc.HdmiOutput;
}
void ConnectedDevice_DeviceInformationChange(ConnectedDeviceInformation connectedDevice, ConnectedDeviceEventArgs args)
{
switch (args.EventId)
{
case ConnectedDeviceEventIds.ManufacturerEventId:
EdidManufacturerFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.NameEventId:
EdidNameFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.PreferredTimingEventId:
EdidPreferredTimingFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.SerialNumberEventId:
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDmRmcToApi(this, trilist, joinStart, joinMapKey, bridge);
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return _rmc.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return _rmc.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return _rmc.ComPorts; } }
public int NumberOfComPorts { get { return _rmc.NumberOfComPorts; } }
#endregion
#region ICec Members
public Cec StreamCec { get { return _rmc.HdmiOutput.StreamCec; } }
#endregion
}
}

View File

@@ -1,111 +1,111 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Receivers;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Receivers;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
[Description("Wrapper Class for DM-RMC-200-C")]
public class DmRmc200CController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc200C _rmc;
public RoutingInputPort DmIn { get; private set; }
public class DmRmc200CController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc200C _rmc;
public RoutingInputPort DmIn { get; private set; }
public RoutingOutputPort HdmiOut { get; private set; }
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get; private set;
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get; private set;
}
/// <summary>
/// Make a Crestron RMC and put it in here
/// </summary>
public DmRmc200CController(string key, string name, DmRmc200C rmc)
: base(key, name, rmc)
{
_rmc = rmc;
DmIn = new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, 0, this);
HdmiOut = new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this);
EdidManufacturerFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Manufacturer.StringValue);
EdidNameFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Name.StringValue);
EdidPreferredTimingFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.PreferredTiming.StringValue);
EdidSerialNumberFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.SerialNumber.StringValue);
VideoOutputResolutionFeedback = new StringFeedback(() => _rmc.HdmiOutput.GetVideoResolutionString());
_rmc.HdmiOutput.OutputStreamChange += HdmiOutput_OutputStreamChange;
_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
// Set Ports for CEC
HdmiOut.Port = _rmc.HdmiOutput;
}
void HdmiOutput_OutputStreamChange(EndpointOutputStream outputStream, EndpointOutputStreamEventArgs args)
{
if (args.EventId == EndpointOutputStreamEventIds.HorizontalResolutionFeedbackEventId || args.EventId == EndpointOutputStreamEventIds.VerticalResolutionFeedbackEventId ||
args.EventId == EndpointOutputStreamEventIds.FramesPerSecondFeedbackEventId)
{
VideoOutputResolutionFeedback.FireUpdate();
}
}
void ConnectedDevice_DeviceInformationChange(ConnectedDeviceInformation connectedDevice, ConnectedDeviceEventArgs args)
{
switch (args.EventId)
{
case ConnectedDeviceEventIds.ManufacturerEventId:
EdidManufacturerFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.NameEventId:
EdidNameFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.PreferredTimingEventId:
EdidPreferredTimingFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.SerialNumberEventId:
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDmRmcToApi(this, trilist, joinStart, joinMapKey, bridge);
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return _rmc.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return _rmc.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return _rmc.ComPorts; } }
public int NumberOfComPorts { get { return _rmc.NumberOfComPorts; } }
#endregion
#region ICec Members
public Cec StreamCec { get { return _rmc.HdmiOutput.StreamCec; } }
#endregion
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get; private set;
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get; private set;
}
/// <summary>
/// Make a Crestron RMC and put it in here
/// </summary>
public DmRmc200CController(string key, string name, DmRmc200C rmc)
: base(key, name, rmc)
{
_rmc = rmc;
DmIn = new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, 0, this);
HdmiOut = new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this);
EdidManufacturerFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Manufacturer.StringValue);
EdidNameFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.Name.StringValue);
EdidPreferredTimingFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.PreferredTiming.StringValue);
EdidSerialNumberFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.SerialNumber.StringValue);
VideoOutputResolutionFeedback = new StringFeedback(() => _rmc.HdmiOutput.GetVideoResolutionString());
_rmc.HdmiOutput.OutputStreamChange += HdmiOutput_OutputStreamChange;
_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
// Set Ports for CEC
HdmiOut.Port = _rmc.HdmiOutput;
}
void HdmiOutput_OutputStreamChange(EndpointOutputStream outputStream, EndpointOutputStreamEventArgs args)
{
if (args.EventId == EndpointOutputStreamEventIds.HorizontalResolutionFeedbackEventId || args.EventId == EndpointOutputStreamEventIds.VerticalResolutionFeedbackEventId ||
args.EventId == EndpointOutputStreamEventIds.FramesPerSecondFeedbackEventId)
{
VideoOutputResolutionFeedback.FireUpdate();
}
}
void ConnectedDevice_DeviceInformationChange(ConnectedDeviceInformation connectedDevice, ConnectedDeviceEventArgs args)
{
switch (args.EventId)
{
case ConnectedDeviceEventIds.ManufacturerEventId:
EdidManufacturerFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.NameEventId:
EdidNameFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.PreferredTimingEventId:
EdidPreferredTimingFeedback.FireUpdate();
break;
case ConnectedDeviceEventIds.SerialNumberEventId:
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDmRmcToApi(this, trilist, joinStart, joinMapKey, bridge);
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return _rmc.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return _rmc.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return _rmc.ComPorts; } }
public int NumberOfComPorts { get { return _rmc.NumberOfComPorts; } }
#endregion
#region ICec Members
public Cec StreamCec { get { return _rmc.HdmiOutput.StreamCec; } }
#endregion
}
}

View File

@@ -32,7 +32,9 @@ namespace PepperDash.Essentials.DM
eRoutingPortConnectionType.Hdmi, null, this) {Port = _rmc};
InputPorts = new RoutingPortCollection<RoutingInputPort> {DmIn};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
OutputPorts = new RoutingPortCollection<RoutingOutputPort> {HdmiOut};
PreventRegistration = true;
rmc.Register();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)

View File

@@ -329,6 +329,9 @@ namespace PepperDash.Essentials.DM
DmRmcPropertiesConfig props, string pKey, uint ipid)
{
var parentDev = DeviceManager.GetDeviceForKey(pKey);
CrestronGenericBaseDevice rx;
bool useChassisForOfflineFeedback = false;
if (parentDev is DmpsRoutingController)
{
var dmps = parentDev as DmpsRoutingController;
@@ -342,22 +345,33 @@ namespace PepperDash.Essentials.DM
return null;
}
// Must use different constructor for DMPS4K types. No IPID
if (Global.ControlSystemIsDmps4kType || typeName == "hdbasetrx" || typeName == "dmrmc4k100c1g")
if (Global.ControlSystemIsDmps4kType)
{
var rmc = GetDmRmcControllerForDmps4k(key, name, typeName, dmps, props.ParentOutputNumber);
Debug.Console(0, "DM endpoint output {0} is for Dmps4k, changing online feedback to chassis", num);
rmc.IsOnline.SetValueFunc(() => dmps.OutputEndpointOnlineFeedbacks[num].BoolValue);
rx = GetDmRmcControllerForDmps4k(key, name, typeName, dmps, props.ParentOutputNumber);
useChassisForOfflineFeedback = true;
}
else
{
rx = GetDmRmcControllerForDmps(key, name, typeName, ipid, dmps, props.ParentOutputNumber);
if (typeName == "hdbasetrx" || typeName == "dmrmc4k100c1g")
{
useChassisForOfflineFeedback = true;
}
}
if (useChassisForOfflineFeedback)
{
Debug.Console(0, "DM endpoint output {0} does not have direct online feedback, changing online feedback to chassis", num);
rx.IsOnline.SetValueFunc(() => dmps.OutputEndpointOnlineFeedbacks[num].BoolValue);
dmps.OutputEndpointOnlineFeedbacks[num].OutputChange += (o, a) =>
{
foreach (var feedback in rmc.Feedbacks)
foreach (var feedback in rx.Feedbacks)
{
if (feedback != null)
feedback.FireUpdate();
}
};
return rmc;
}
return GetDmRmcControllerForDmps(key, name, typeName, ipid, dmps, props.ParentOutputNumber);
return rx;
}
else if (parentDev is DmChassisController)
{
@@ -380,23 +394,33 @@ namespace PepperDash.Essentials.DM
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
|| typeName == "hdbasetrx" || typeName == "dmrmc4k100c1g")
chassis is DmMd128x128 || chassis is DmMd64x64)
{
var rmc = GetDmRmcControllerForCpu3Chassis(key, name, typeName, chassis, num, parentDev);
Debug.Console(0, "DM endpoint output {0} is for Cpu3, changing online feedback to chassis", num);
rmc.IsOnline.SetValueFunc(() => controller.OutputEndpointOnlineFeedbacks[num].BoolValue);
controller.OutputEndpointOnlineFeedbacks[num].OutputChange += (o, a) =>
{
foreach (var feedback in rmc.Feedbacks)
{
if (feedback != null)
feedback.FireUpdate();
}
};
return rmc;
rx = GetDmRmcControllerForCpu3Chassis(key, name, typeName, chassis, num, parentDev);
useChassisForOfflineFeedback = true;
}
return GetDmRmcControllerForCpu2Chassis(key, name, typeName, ipid, chassis, num, parentDev);
else
{
rx = GetDmRmcControllerForCpu2Chassis(key, name, typeName, ipid, chassis, num, parentDev);
if (typeName == "hdbasetrx" || typeName == "dmrmc4k100c1g")
{
useChassisForOfflineFeedback = true;
}
}
if (useChassisForOfflineFeedback)
{
Debug.Console(0, "DM endpoint output {0} does not have direct online feedback, changing online feedback to chassis", num);
rx.IsOnline.SetValueFunc(() => controller.OutputEndpointOnlineFeedbacks[num].BoolValue);
controller.OutputEndpointOnlineFeedbacks[num].OutputChange += (o, a) =>
{
foreach (var feedback in rx.Feedbacks)
{
if (feedback != null)
feedback.FireUpdate();
}
};
}
return rx;
}
catch (Exception e)
{
@@ -499,9 +523,7 @@ namespace PepperDash.Essentials.DM
Debug.Console(0, "[{0}] WARNING: Cannot create DM-RMC device: {1}", key, e.Message);
return null;
}
}
}
}
public class DmRmcControllerFactory : EssentialsDeviceFactory<DmRmcControllerBase>

View File

@@ -1,41 +1,41 @@
using System;
using System.Linq;
using Crestron.SimplSharpPro;
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 = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
using Crestron.SimplSharpPro;
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 = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-200-C")]
public class DmTx200Controller : DmTxControllerBase, ITxRoutingWithFeedback, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx200C2G Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiInput { get; private set; }
public RoutingInputPortWithVideoStatuses VgaInput { get; private set; }
public RoutingOutputPort DmOutput { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiInHdcpCapabilityFeedback { get; protected set; } //actually state
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public BoolFeedback VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public class DmTx200Controller : DmTxControllerBase, ITxRoutingWithFeedback, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx200C2G Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiInput { get; private set; }
public RoutingInputPortWithVideoStatuses VgaInput { get; private set; }
public RoutingOutputPort DmOutput { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiInHdcpCapabilityFeedback { get; protected set; } //actually state
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public BoolFeedback VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public IntFeedback VgaContrastFeedback { get; protected set; }
//IroutingNumericEvent
@@ -49,57 +49,57 @@ namespace PepperDash.Essentials.DM
{
var newEvent = NumericSwitchChange;
if (newEvent != null) newEvent(this, e);
}
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public DmTx200Base.eSourceSelection ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Digital ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Analog ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Disable)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Digital;
return Tx.VgaInput.SyncDetectedFeedback.BoolValue ? DmTx200Base.eSourceSelection.Analog : DmTx200Base.eSourceSelection.Disable;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiInput,
VgaInput,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOutput };
}
}
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="tx"></param>
public DmTx200Controller(string key, string name, DmTx200C2G tx, bool preventRegistration)
: base(key, name, tx)
{
}
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public DmTx200Base.eSourceSelection ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Digital ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Analog ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Disable)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Digital;
return Tx.VgaInput.SyncDetectedFeedback.BoolValue ? DmTx200Base.eSourceSelection.Analog : DmTx200Base.eSourceSelection.Disable;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiInput,
VgaInput,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOutput };
}
}
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="tx"></param>
public DmTx200Controller(string key, string name, DmTx200C2G tx, bool preventRegistration)
: base(key, name, tx)
{
Tx = tx;
PreventRegistration = preventRegistration;
@@ -116,300 +116,300 @@ namespace PepperDash.Essentials.DM
VideoStatusHelper.GetVgaInputStatusFuncs(tx.VgaInput))
{
FeedbackMatchObject = DmTx200Base.eSourceSelection.Analog
};
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInput.InputStreamChange += InputStreamChangeEvent;
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += Tx_OnlineStatusChange;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
};
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInput.InputStreamChange += InputStreamChangeEvent;
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += Tx_OnlineStatusChange;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () => tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0);
//setting this on the base class so that we can get it easily on the chassis.
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;
HdmiVideoSyncFeedback = new BoolFeedback(() => tx.HdmiInput.SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += VideoControls_ControlChange;
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () => ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital ? tx.HdmiInput.VideoAttributes.HdcpStateFeedback.ToString() : "",
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital)
return tx.HdmiInput.VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog ? tx.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog
&& tx.VgaInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Auto
&& (tx.VgaInput.SyncDetectedFeedback.BoolValue || tx.HdmiInput.SyncDetectedFeedback.BoolValue))
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOutput = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiInHdcpCapabilityFeedback, HdmiVideoSyncFeedback,
VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiInput.Port = Tx.HdmiInput;
VgaInput.Port = Tx.VgaInput;
DmOutput.Port = Tx.DmOutput;
}
private void VgaInputOnInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
switch (args.EventId)
{
case EndpointInputStreamEventIds.FreeRunFeedbackEventId:
FreeRunEnabledFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
VgaVideoSyncFeedback.FireUpdate();
break;
}
}
void VideoControls_ControlChange(object sender, GenericEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case VideoControlsEventIds.BrightnessFeedbackEventId:
VgaBrightnessFeedback.FireUpdate();
break;
case VideoControlsEventIds.ContrastFeedbackEventId:
VgaContrastFeedback.FireUpdate();
break;
}
}
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;
HdmiVideoSyncFeedback = new BoolFeedback(() => tx.HdmiInput.SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += VideoControls_ControlChange;
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () => ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital ? tx.HdmiInput.VideoAttributes.HdcpStateFeedback.ToString() : "",
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital)
return tx.HdmiInput.VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog ? tx.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog
&& tx.VgaInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Auto
&& (tx.VgaInput.SyncDetectedFeedback.BoolValue || tx.HdmiInput.SyncDetectedFeedback.BoolValue))
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOutput = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiInHdcpCapabilityFeedback, HdmiVideoSyncFeedback,
VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiInput.Port = Tx.HdmiInput;
VgaInput.Port = Tx.VgaInput;
DmOutput.Port = Tx.DmOutput;
}
private void VgaInputOnInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
switch (args.EventId)
{
case EndpointInputStreamEventIds.FreeRunFeedbackEventId:
FreeRunEnabledFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
VgaVideoSyncFeedback.FireUpdate();
break;
}
}
void VideoControls_ControlChange(object sender, GenericEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case VideoControlsEventIds.BrightnessFeedbackEventId:
VgaBrightnessFeedback.FireUpdate();
break;
case VideoControlsEventIds.ContrastFeedbackEventId:
VgaContrastFeedback.FireUpdate();
break;
}
}
void Tx_OnlineStatusChange(GenericBase currentDevice, OnlineOfflineEventArgs args)
{
var localVideoInputPort =
InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection) p.Selector == Tx.VideoSourceFeedback);
var localAudioInputPort =
InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection) p.Selector == Tx.AudioSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection) p.Selector == Tx.AudioSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
AudioSourceNumericFeedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(1, VideoSourceNumericFeedback.UShortValue, OutputPorts.First(), localVideoInputPort, eRoutingSignalType.Video));
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localAudioInputPort, eRoutingSignalType.Audio));
}
public override bool CustomActivate()
{
Tx.HdmiInput.InputStreamChange += (o, a) => FowardInputStreamChange(HdmiInput, a.EventId);
Tx.HdmiInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(HdmiInput, a.EventId);
Tx.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaInput, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(VgaInput, 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 (HdmiVideoSyncFeedback != null)
{
HdmiVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
{
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
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(DmTx200Base.eSourceSelection.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiInput.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(VgaInput.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(DmTx200Base.eSourceSelection.Disable, null, type);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (DmTx200Base.eSourceSelection)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (DmTx200Base.eSourceSelection)inputSelector;
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localAudioInputPort, eRoutingSignalType.Audio));
}
public override bool CustomActivate()
{
Tx.HdmiInput.InputStreamChange += (o, a) => FowardInputStreamChange(HdmiInput, a.EventId);
Tx.HdmiInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(HdmiInput, a.EventId);
Tx.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaInput, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(VgaInput, 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 (HdmiVideoSyncFeedback != null)
{
HdmiVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
{
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
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(DmTx200Base.eSourceSelection.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiInput.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(VgaInput.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(DmTx200Base.eSourceSelection.Disable, null, type);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (DmTx200Base.eSourceSelection)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (DmTx200Base.eSourceSelection)inputSelector;
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
var localVideoInputPort = InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection)p.Selector == Tx.VideoSourceFeedback);
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
var localVideoInputPort = InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection)p.Selector == Tx.VideoSourceFeedback);
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(1, VideoSourceNumericFeedback.UShortValue, OutputPorts.First(), localVideoInputPort, eRoutingSignalType.Video));
break;
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
var localInputAudioPort = InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection)p.Selector == Tx.AudioSourceFeedback);
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
var localInputAudioPort = InputPorts.FirstOrDefault(p => (DmTx200Base.eSourceSelection)p.Selector == Tx.AudioSourceFeedback);
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localInputAudioPort, eRoutingSignalType.Audio));
break;
}
}
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:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
HdmiVideoSyncFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void FireVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
}
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localInputAudioPort, eRoutingSignalType.Audio));
break;
}
}
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:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
HdmiVideoSyncFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void FireVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
}
}

View File

@@ -8,33 +8,33 @@ using System.Linq;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-201-C")]
public class DmTx201CController : DmTxControllerBase, ITxRoutingWithFeedback, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx201C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiInput { get; private set; }
public RoutingInputPortWithVideoStatuses VgaInput { get; private set; }
public RoutingOutputPort DmOutput { 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 HdmiInHdcpCapabilityFeedback { get; protected set; }
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public BoolFeedback VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public class DmTx201CController : DmTxControllerBase, ITxRoutingWithFeedback, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx201C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiInput { get; private set; }
public RoutingInputPortWithVideoStatuses VgaInput { get; private set; }
public RoutingOutputPort DmOutput { 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 HdmiInHdcpCapabilityFeedback { get; protected set; }
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public BoolFeedback VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public IntFeedback VgaContrastFeedback { get; protected set; }
//IroutingNumericEvent
@@ -48,61 +48,61 @@ namespace PepperDash.Essentials.DM
{
var newEvent = NumericSwitchChange;
if (newEvent != null) newEvent(this, e);
}
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public DmTx200Base.eSourceSelection ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Digital ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Analog ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Disable)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Digital;
else if (Tx.VgaInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Analog;
else
return DmTx200Base.eSourceSelection.Disable;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiInput,
VgaInput,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOutput, HdmiLoopOut };
}
}
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
}
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public DmTx200Base.eSourceSelection ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Digital ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Analog ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Disable)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Digital;
else if (Tx.VgaInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Analog;
else
return DmTx200Base.eSourceSelection.Disable;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiInput,
VgaInput,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOutput, HdmiLoopOut };
}
}
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="tx"></param>
public DmTx201CController(string key, string name, DmTx201C tx, bool preventRegistration)
: base(key, name, tx)
{
public DmTx201CController(string key, string name, DmTx201C tx, bool preventRegistration)
: base(key, name, tx)
{
Tx = tx;
PreventRegistration = preventRegistration;
@@ -119,89 +119,89 @@ namespace PepperDash.Essentials.DM
VideoStatusHelper.GetVgaInputStatusFuncs(tx.VgaInput))
{
FeedbackMatchObject = DmTx200Base.eSourceSelection.Analog
};
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
};
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInput.InputStreamChange += InputStreamChangeEvent;
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += new OnlineStatusChangeEventHandler(Tx_OnlineStatusChange);
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += new OnlineStatusChangeEventHandler(Tx_OnlineStatusChange);
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () =>
(tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0));
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdmiVideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInput.SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => (bool)tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += VideoControls_ControlChange;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdcpStateFeedbackFunc = () => ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital ?
tx.HdmiInput.VideoAttributes.HdcpStateFeedback.ToString() : "",
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital)
return tx.HdmiInput.VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog ?
tx.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog
&& tx.VgaInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Auto
&& (tx.VgaInput.SyncDetectedFeedback.BoolValue || tx.HdmiInput.SyncDetectedFeedback.BoolValue))
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOutput = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DmCat, null, this);
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, HdmiInHdcpCapabilityFeedback, HdmiVideoSyncFeedback,
VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiInput.Port = Tx.HdmiInput;
VgaInput.Port = Tx.VgaInput;
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOutput.Port = Tx.DmOutput;
}
void VideoControls_ControlChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
var id = args.EventId;
HdmiVideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInput.SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => (bool)tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += VideoControls_ControlChange;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () => ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital ?
tx.HdmiInput.VideoAttributes.HdcpStateFeedback.ToString() : "",
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital)
return tx.HdmiInput.VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog ?
tx.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog
&& tx.VgaInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Auto
&& (tx.VgaInput.SyncDetectedFeedback.BoolValue || tx.HdmiInput.SyncDetectedFeedback.BoolValue))
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOutput = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DmCat, null, this);
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, HdmiInHdcpCapabilityFeedback, HdmiVideoSyncFeedback,
VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiInput.Port = Tx.HdmiInput;
VgaInput.Port = Tx.VgaInput;
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOutput.Port = Tx.DmOutput;
}
void VideoControls_ControlChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
@@ -212,7 +212,7 @@ namespace PepperDash.Essentials.DM
case VideoControlsEventIds.ContrastFeedbackEventId:
VgaContrastFeedback.FireUpdate();
break;
}
}
}
void Tx_OnlineStatusChange(GenericBase currentDevice, OnlineOfflineEventArgs args)
@@ -228,7 +228,7 @@ namespace PepperDash.Essentials.DM
AudioSourceNumericFeedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(1, VideoSourceNumericFeedback.UShortValue, OutputPorts.First(), localVideoInputPort, eRoutingSignalType.Video));
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localAudioInputPort, eRoutingSignalType.Audio));
}
}
private void VgaInputOnInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
@@ -241,107 +241,107 @@ namespace PepperDash.Essentials.DM
VgaVideoSyncFeedback.FireUpdate();
break;
}
}
public override bool CustomActivate()
{
Tx.HdmiInput.InputStreamChange += (o, a) => FowardInputStreamChange(HdmiInput, a.EventId);
Tx.HdmiInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(HdmiInput, a.EventId);
Tx.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaInput, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(VgaInput, 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 (HdmiVideoSyncFeedback != null)
{
HdmiVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
{
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
}
public override bool CustomActivate()
{
Tx.HdmiInput.InputStreamChange += (o, a) => FowardInputStreamChange(HdmiInput, a.EventId);
Tx.HdmiInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(HdmiInput, a.EventId);
Tx.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaInput, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(VgaInput, 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)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
/// <summary>
/// Switches the audio/video source based on the integer value (0-Auto, 1-HDMI, 2-VGA, 3-Disable)
/// </summary>
/// <param name="input"></param>
/// <param name="output"></param>
/// <param name="type"></param>
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(DmTx200Base.eSourceSelection.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiInput.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(VgaInput.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(DmTx200Base.eSourceSelection.Disable, null, type);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (DmTx200Base.eSourceSelection)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (DmTx200Base.eSourceSelection)inputSelector;
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (HdmiVideoSyncFeedback != null)
{
HdmiVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
{
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
/// <summary>
/// Switches the audio/video source based on the integer value (0-Auto, 1-HDMI, 2-VGA, 3-Disable)
/// </summary>
/// <param name="input"></param>
/// <param name="output"></param>
/// <param name="type"></param>
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(DmTx200Base.eSourceSelection.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiInput.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(VgaInput.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(DmTx200Base.eSourceSelection.Disable, null, type);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (DmTx200Base.eSourceSelection)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (DmTx200Base.eSourceSelection)inputSelector;
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
@@ -361,11 +361,11 @@ namespace PepperDash.Essentials.DM
AudioSourceNumericFeedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localInputAudioPort, eRoutingSignalType.Audio));
break;
}
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
}
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
@@ -379,52 +379,52 @@ namespace PepperDash.Essentials.DM
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
HdmiVideoSyncFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void FireVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
}
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void FireVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
}
}

View File

@@ -78,6 +78,8 @@ namespace PepperDash.Essentials.DM
IsOnline.SetValueFunc(() => controller.InputEndpointOnlineFeedbacks[num].BoolValue);
controller.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => IsOnline.FireUpdate();
}
PreventRegistration = true;
tx.Register();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)

View File

@@ -1,49 +1,49 @@
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 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-302-C")]
public class DmTx4k302CController : DmTxControllerBase, ITxRoutingWithFeedback, IHasFeedback,
IIROutputPorts, IComPorts, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx4k302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses VgaIn { 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 VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public class DmTx4k302CController : DmTxControllerBase, ITxRoutingWithFeedback, IHasFeedback,
IIROutputPorts, IComPorts, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx4k302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses VgaIn { 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 VgaVideoSyncFeedback { get; protected set; }
public BoolFeedback FreeRunEnabledFeedback { get; protected set; }
public IntFeedback VgaBrightnessFeedback { get; protected set; }
public IntFeedback VgaContrastFeedback { get; protected set; }
//IroutingNumericEvent
@@ -57,92 +57,92 @@ namespace PepperDash.Essentials.DM
{
var newEvent = NumericSwitchChange;
if (newEvent != null) newEvent(this, e);
}
/// <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.VgaInput.SyncDetectedFeedback.BoolValue)
return eVst.Vga;
else
return eVst.AllDisabled;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
VgaIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
/// <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.VgaInput.SyncDetectedFeedback.BoolValue)
return eVst.Vga;
else
return eVst.AllDisabled;
}
}
}
public DmTx4k302CController(string key, string name, DmTx4k302C tx, bool preventRegistration)
: base(key, name, tx)
{
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
VgaIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4k302CController(string key, string name, DmTx4k302C tx, bool preventRegistration)
: base(key, name, tx)
{
Tx = tx;
PreventRegistration = preventRegistration;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
PreventRegistration = preventRegistration;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]))
{
FeedbackMatchObject = eVst.Hdmi1
};
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
};
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]))
{
FeedbackMatchObject = eVst.Hdmi2
};
VgaIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Video, eRoutingPortConnectionType.Vga, eVst.Vga, this,
VgaIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Video, eRoutingPortConnectionType.Vga, eVst.Vga, this,
VideoStatusHelper.GetVgaInputStatusFuncs(tx.VgaInput))
{
FeedbackMatchObject = eVst.Vga
};
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += Tx_OnlineStatusChange;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
Tx.VgaInput.InputStreamChange += VgaInputOnInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += Tx_OnlineStatusChange;
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);
HdcpStateFeedback =
@@ -150,77 +150,77 @@ namespace PepperDash.Essentials.DM
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int)tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => (bool)tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(VideoControls_ControlChange);
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();
: (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);
VgaVideoSyncFeedback = new BoolFeedback(() => (bool)tx.VgaInput.SyncDetectedFeedback.BoolValue);
FreeRunEnabledFeedback = new BoolFeedback(() => tx.VgaInput.FreeRunFeedback == eDmFreeRunSetting.Enabled);
VgaBrightnessFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.BrightnessFeedback.UShortValue);
VgaContrastFeedback = new IntFeedback(() => tx.VgaInput.VideoControls.ContrastFeedback.UShortValue);
tx.VgaInput.VideoControls.ControlChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(VideoControls_ControlChange);
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();
},
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.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.VgaInput.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, VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.VgaInput.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, VgaVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
void VgaInputOnInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
@@ -234,13 +234,13 @@ namespace PepperDash.Essentials.DM
VgaVideoSyncFeedback.FireUpdate();
break;
}
}
void VideoControls_ControlChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
}
void VideoControls_ControlChange(object sender, Crestron.SimplSharpPro.DeviceSupport.GenericEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case VideoControlsEventIds.BrightnessFeedbackEventId:
@@ -249,76 +249,76 @@ namespace PepperDash.Essentials.DM
case VideoControlsEventIds.ContrastFeedbackEventId:
VgaContrastFeedback.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.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaIn, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(VgaIn, 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)
}
}
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.VgaInput.InputStreamChange += (o, a) => FowardInputStreamChange(VgaIn, a.EventId);
Tx.VgaInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(VgaIn, 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)
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (VgaVideoSyncFeedback != null)
{
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
VgaVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
@@ -326,76 +326,76 @@ namespace PepperDash.Essentials.DM
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(VgaIn.Selector, null, type);
break;
}
case 4:
{
ExecuteSwitch(eVst.AllDisabled, null, type);
break;
}
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(VgaIn.Selector, null, type);
break;
}
case 4:
{
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.AudioIn, null, type);
break;
}
case 4:
{
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
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.AudioIn, null, type);
break;
}
case 4:
{
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
}
break;
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (eAst)inputSelector;
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
@@ -405,7 +405,7 @@ namespace PepperDash.Essentials.DM
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
case EndpointInputStreamEventIds.HdcpCapabilityFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
HdcpStateFeedback.FireUpdate();
break;
@@ -450,57 +450,57 @@ namespace PepperDash.Essentials.DM
OnSwitchChange(new RoutingNumericEventArgs(1, AudioSourceNumericFeedback.UShortValue, OutputPorts.First(), localInputAudioPort, eRoutingSignalType.Audio));
break;
}
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
/// <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();
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
}
}
/// <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

@@ -72,6 +72,7 @@ namespace PepperDash.Essentials.DM
HdmiIn.Port = Tx;
PreventRegistration = true;
tx.Register();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)

View File

@@ -18,7 +18,7 @@ namespace PepperDash.Essentials.DM
[Description("Wrapper class for DM-TX-4K-Z-302-C")]
public class DmTx4kz302CController : DmTxControllerBase, ITxRoutingWithFeedback, IHasFeedback,
public class DmTx4kz302CController : DmTxControllerBase, ITxRoutingWithFeedback,
IIROutputPorts, IComPorts
{
public DmTx4kz302C Tx { get; private set; }
@@ -34,6 +34,7 @@ namespace PepperDash.Essentials.DM
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public IntFeedback DisplayPortInHdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
public BoolFeedback DisplayPortVideoSyncFeedback { get; protected set; }
@@ -131,12 +132,25 @@ namespace PepperDash.Essentials.DM
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
DisplayPortInHdcpCapabilityFeedback = new IntFeedback("DisplayPortHdcpCapability",
() => (int) tx.DisplayPortInput.HdcpCapabilityFeedback);
/*
HdcpStateFeedback =
new IntFeedback(
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int)tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
*/
//yeah this is gross - but it's the quickest way to do this...
HdcpStateFeedback = new IntFeedback(() => {
var states = new[] {(int) tx.DisplayPortInput.HdcpCapabilityFeedback, (int) tx.HdmiInputs[1].HdcpCapabilityFeedback, (int) tx.HdmiInputs[2].HdcpCapabilityFeedback};
return states.Max();
});
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
@@ -146,7 +160,6 @@ namespace PepperDash.Essentials.DM
DisplayPortVideoSyncFeedback = new BoolFeedback(() => (bool)tx.DisplayPortInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
@@ -411,8 +424,7 @@ namespace PepperDash.Essentials.DM
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }

View File

@@ -126,6 +126,7 @@ namespace PepperDash.Essentials.DM
var parentDev = DeviceManager.GetDeviceForKey(pKey);
DMInput dmInput;
BasicDmTxControllerBase tx;
bool useChassisForOfflineFeedback = false;
if (parentDev is DmChassisController)
{
@@ -155,15 +156,23 @@ namespace PepperDash.Essentials.DM
chassis is DmMd128x128 || chassis is DmMd64x64)
{
tx = GetDmTxForChassisWithoutIpId(key, name, typeName, dmInput);
Debug.Console(0, "DM endpoint output {0} is for Cpu3, changing online feedback to chassis", num);
tx.IsOnline.SetValueFunc(() => switchDev.InputEndpointOnlineFeedbacks[num].BoolValue);
switchDev.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => tx.IsOnline.FireUpdate();
return tx;
useChassisForOfflineFeedback = true;
}
else
{
return GetDmTxForChassisWithIpId(key, name, typeName, ipid, dmInput);
tx = GetDmTxForChassisWithIpId(key, name, typeName, ipid, dmInput);
if (typeName == "hdbasettx" || typeName == "dmtx4k100c1g")
{
useChassisForOfflineFeedback = true;
}
}
if (useChassisForOfflineFeedback)
{
Debug.Console(0, "DM endpoint output {0} does not have direct online feedback, changing online feedback to chassis", num);
tx.IsOnline.SetValueFunc(() => switchDev.InputEndpointOnlineFeedbacks[num].BoolValue);
switchDev.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => tx.IsOnline.FireUpdate();
}
return tx;
}
catch (Exception e)
{
@@ -203,15 +212,23 @@ namespace PepperDash.Essentials.DM
if(Global.ControlSystemIsDmps4kType)
{
tx = GetDmTxForChassisWithoutIpId(key, name, typeName, dmInput);
Debug.Console(0, "DM endpoint output {0} is for DMPS3-4K, changing online feedback to chassis", num);
tx.IsOnline.SetValueFunc(() => dmpsDev.InputEndpointOnlineFeedbacks[num].BoolValue);
dmpsDev.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => tx.IsOnline.FireUpdate();
return tx;
useChassisForOfflineFeedback = true;
}
else
{
return GetDmTxForChassisWithIpId(key, name, typeName, ipid, dmInput);
tx = GetDmTxForChassisWithIpId(key, name, typeName, ipid, dmInput);
if (typeName == "hdbasettx" || typeName == "dmtx4k100c1g")
{
useChassisForOfflineFeedback = true;
}
}
if (useChassisForOfflineFeedback)
{
Debug.Console(0, "DM endpoint output {0} does not have direct online feedback, changing online feedback to chassis", num);
tx.IsOnline.SetValueFunc(() => dmpsDev.InputEndpointOnlineFeedbacks[num].BoolValue);
dmpsDev.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => tx.IsOnline.FireUpdate();
}
return tx;
}
catch (Exception e)
{
@@ -377,6 +394,26 @@ namespace PepperDash.Essentials.DM
}
}
if (txR.InputPorts[DmPortName.DisplayPortIn] != null)
{
var inputPort = txR.InputPorts[DmPortName.DisplayPortIn];
if (tx.Feedbacks["DisplayPortInHdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["DisplayPortInHdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port3HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointDisplayPortInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port3HdcpState.JoinNumber, trilist);
}
}
}
var txFreeRun = tx as IHasFreeRun;
@@ -424,6 +461,20 @@ namespace PepperDash.Essentials.DM
});
}
}
private void SetHdcpCapabilityAction(bool hdcpTypeSimple, EndpointDisplayPortInput port, uint join,
BasicTriList trilist)
{
trilist.SetUShortSigAction(join,
s =>
{
port.HdcpCapability = (eHdcpCapabilityType) s;
});
}
}
public class DmTxControllerFactory : EssentialsDeviceFactory<DmTxControllerBase>

View File

@@ -52,6 +52,9 @@ namespace PepperDash.Essentials.DM
IsOnline.SetValueFunc(() => controller.InputEndpointOnlineFeedbacks[num].BoolValue);
controller.InputEndpointOnlineFeedbacks[num].OutputChange += (o, a) => IsOnline.FireUpdate();
}
PreventRegistration = true;
tx.Register();
}
#region IRoutingInputs Members

View File

@@ -105,6 +105,7 @@
<Compile Include="Chassis\HdMdNxM4kEBridgeableController.cs" />
<Compile Include="Chassis\HdMdNxM4kEController.cs" />
<Compile Include="Config\InputPropertiesConfig.cs" />
<Compile Include="Endpoints\DGEs\DgeJoinMap.cs" />
<Compile Include="Endpoints\DGEs\DmDge200CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZ100CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZScalerCController.cs" />

View File

@@ -1004,7 +1004,9 @@ namespace PepperDash.Essentials.Devices.Common.VideoCodec
if (codec.DirectoryRoot != null)
{
trilist.SetUshort(joinMap.DirectoryRowCount.JoinNumber, (ushort)codec.DirectoryRoot.CurrentDirectoryResults.Count);
var contactsCount = codec.DirectoryRoot.CurrentDirectoryResults.Where(c => c.ParentFolderId.Equals("root")).ToList().Count;
trilist.SetUshort(joinMap.DirectoryRowCount.JoinNumber, (ushort)contactsCount);
Debug.Console(2, this, ">>> contactsCount: {0}", contactsCount);
var clearBytes = XSigHelpers.ClearOutputs();
@@ -1020,7 +1022,13 @@ namespace PepperDash.Essentials.Devices.Common.VideoCodec
codec.DirectoryResultReturned += (sender, args) =>
{
trilist.SetUshort(joinMap.DirectoryRowCount.JoinNumber, (ushort)args.Directory.CurrentDirectoryResults.Count);
var isRoot = codec.CurrentDirectoryResultIsNotDirectoryRoot.BoolValue == false;
var argsCount = isRoot
? args.Directory.CurrentDirectoryResults.Where(a => a.ParentFolderId.Equals("root")).ToList().Count
: args.Directory.CurrentDirectoryResults.Count;
trilist.SetUshort(joinMap.DirectoryRowCount.JoinNumber, (ushort)argsCount);
Debug.Console(2, this, ">>> argsCount: {0}", argsCount);
var clearBytes = XSigHelpers.ClearOutputs();
@@ -1184,46 +1192,47 @@ namespace PepperDash.Essentials.Devices.Common.VideoCodec
return GetXSigString(tokenArray);
}
private string UpdateDirectoryXSig(CodecDirectory directory, bool isRoot)
{
var xSigMaxIndex = 1023;
var tokenArray = new XSigToken[directory.CurrentDirectoryResults.Count > xSigMaxIndex
? xSigMaxIndex
: directory.CurrentDirectoryResults.Count];
private string UpdateDirectoryXSig(CodecDirectory directory, bool isRoot)
{
var xSigMaxIndex = 1023;
var tokenArray = new XSigToken[directory.CurrentDirectoryResults.Count > xSigMaxIndex
? xSigMaxIndex
: directory.CurrentDirectoryResults.Count];
Debug.Console(2, this, "IsRoot: {0}, Directory Count: {1}, TokenArray.Length: {2}", isRoot,
directory.CurrentDirectoryResults.Count, tokenArray.Length);
Debug.Console(2, this, "IsRoot: {0}, Directory Count: {1}, TokenArray.Length: {2}", isRoot, directory.CurrentDirectoryResults.Count, tokenArray.Length);
var contacts = directory.CurrentDirectoryResults.Count > xSigMaxIndex
? directory.CurrentDirectoryResults.Take(xSigMaxIndex)
: directory.CurrentDirectoryResults;
var contacts = directory.CurrentDirectoryResults.Count > xSigMaxIndex
? directory.CurrentDirectoryResults.Take(xSigMaxIndex)
: directory.CurrentDirectoryResults;
var counterIndex = 1;
foreach (var entry in contacts)
{
var arrayIndex = counterIndex - 1;
var entryIndex = counterIndex;
var contactsToDisplay = isRoot
? contacts.Where(c => c.ParentFolderId == "root")
: contacts.Where(c => c.ParentFolderId != "root");
Debug.Console(2, this, "Entry{2:0000} Name: {0}, Folder ID: {1}", entry.Name, entry.FolderId, entryIndex);
var counterIndex = 1;
foreach (var entry in contactsToDisplay)
{
var arrayIndex = counterIndex - 1;
var entryIndex = counterIndex;
if (entry is DirectoryFolder && entry.ParentFolderId == "root")
{
tokenArray[arrayIndex] = new XSigSerialToken(entryIndex, String.Format("[+] {0}", entry.Name));
Debug.Console(2, this, "Entry{2:0000} Name: {0}, Folder ID: {1}, Type: {3}, ParentFolderId: {4}",
entry.Name, entry.FolderId, entryIndex, entry.GetType().GetCType().FullName, entry.ParentFolderId);
counterIndex++;
counterIndex++;
if (entry is DirectoryFolder)
{
tokenArray[arrayIndex] = new XSigSerialToken(entryIndex, String.Format("[+] {0}", entry.Name));
continue;
}
counterIndex++;
tokenArray[arrayIndex] = new XSigSerialToken(entryIndex, entry.Name);
continue;
}
counterIndex++;
}
return GetXSigString(tokenArray);
tokenArray[arrayIndex] = new XSigSerialToken(entryIndex, entry.Name);
counterIndex++;
}
return GetXSigString(tokenArray);
}
private void LinkVideoCodecCallControlsToApi(BasicTriList trilist, VideoCodecControllerJoinMap joinMap)

View File

@@ -303,11 +303,19 @@ namespace PepperDash.Essentials.Devices.Common.VideoCodec.ZoomRoom
{
var contact = new InvitableDirectoryContact { Name = c.ScreenName, ContactId = c.Jid };
contact.ContactMethods.Add(new ContactMethod() { Number = c.Jid, Device = eContactMethodDevice.Video, CallType = eContactMethodCallType.Video, ContactMethodId = c.Jid });
contact.ContactMethods.Add(new ContactMethod()
{
Number = c.Jid,
Device = eContactMethodDevice.Video,
CallType = eContactMethodCallType.Video,
ContactMethodId = c.Jid
});
if (folders.Count > 0)
{
contact.ParentFolderId = c.IsZoomRoom ? "rooms" : "contacts";
contact.ParentFolderId = c.IsZoomRoom
? roomFolder.FolderId // "rooms"
: contactFolder.FolderId; // "contacts"
}
contacts.Add(contact);

View File

@@ -1,3 +1,3 @@
<packages>
<package id="PepperDashCore" version="1.1.5-alpha-322" targetFramework="net35" allowedVersions="[1.0,2.0)"/>
</packages>
<package id="PepperDashCore" version="1.2.1" targetFramework="net35" allowedVersions="[1.0,2.0)"/>
</packages>