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path: root/Software/Visual_Studio/MachineStudio/Modules/Tango.MachineStudio.Technician/TechItems/PidItem.cs
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using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
using System.Windows.Media;
using System.Xml.Serialization;
using Tango.Core.Commands;
using Tango.BL.Entities;
using Tango.SharedUI.Helpers;
using System.Collections.ObjectModel;

namespace Tango.MachineStudio.Technician.TechItems
{
    /// <summary>
    /// Represents a PID controller item.
    /// </summary>
    /// <seealso cref="Tango.MachineStudio.Technician.TechItems.TechItem" />
    [TechItem(12)]
    public class PidItem : TechItem
    {
        private static List<HardwarePidControl> _pidConfigurations;
        /// <summary>
        /// Gets or sets the pid configurations.
        /// </summary>
        public static List<HardwarePidControl> PidConfigurations
        {
            get { return _pidConfigurations; }
            set { _pidConfigurations = value; }
        }

        static PidItem()
        {
            PidConfigurations = new List<HardwarePidControl>();

            foreach (var pidType in BL.ObservablesStaticCollections.Instance.HardwarePidControlTypes)
            {
                PidConfigurations.Add(new HardwarePidControl() { HardwarePidControlType = pidType });
            }
        }

        private HardwarePidControlType _hardwarePidType;
        /// <summary>
        /// Gets or sets the type of the hardware pid.
        /// </summary>
        [XmlIgnore]
        public HardwarePidControlType HardwarePidType
        {
            get { return _hardwarePidType; }
            set
            {
                _hardwarePidType = value; RaisePropertyChangedAuto(); TechName = _hardwarePidType != null ? _hardwarePidType.Description : null; ItemGuid = value != null ? value.Guid : null;

                if (_hardwarePidType != null)
                {
                    HardwarePid = PidConfigurations.SingleOrDefault(x => x.HardwarePidControlType == _hardwarePidType);
                }
            }
        }

        private HardwarePidControl _hardwarePid;
        /// <summary>
        /// Gets or sets the hardware pid.
        /// </summary>
        [XmlIgnore]
        public HardwarePidControl HardwarePid
        {
            get { return _hardwarePid; }
            set { _hardwarePid = value; RaisePropertyChangedAuto(); }
        }

        /// <summary>
        /// Initializes a new instance of the <see cref="PidItem"/> class.
        /// </summary>
        public PidItem() : base()
        {
            Name = "PID";
            Description = "PID Controller";
            Image = ResourceHelper.GetImageFromResources("Images/function.png");
            Color = Colors.White;
            HardwarePid = new HardwarePidControl();
        }

        /// <summary>
        /// Initializes a new instance of the <see cref="PidItem"/> class.
        /// </summary>
        /// <param name="pidType">Type of the pid.</param>
        public PidItem(HardwarePidControlType pidType) : this()
        {
            HardwarePidType = pidType;
        }

        /// <summary>
        /// Clones this instance.
        /// </summary>
        /// <returns></returns>
        public override TechItem Clone()
        {
            PidItem cloned = base.Clone() as PidItem;
            cloned.HardwarePidType = HardwarePidType;
            return cloned;
        }
    }
}
/// </summary> event EventHandler<IMessage> ResponseSent; /// <summary> /// Occurs when a request has failed. /// </summary> event EventHandler<RequestFailedEventArgs> RequestFailed; /// <summary> /// Occurs when there is new diagnostics data available. /// </summary> event EventHandler<StartDiagnosticsResponse> DiagnosticsDataAvailable; /// <summary> /// Occurs when an events notification has been received from the embedded device. /// </summary> event EventHandler<StartEventsNotificationResponse> EventsNotification; /// <summary> /// Occurs when a new debug log is available. /// </summary> event EventHandler<StartDebugLogResponse> DebugLogAvailable; /// <summary> /// Gets or sets a value indicating whether direct the embedded device to send diagnostics messages. /// </summary> bool EnableDiagnostics { get; set; } /// <summary> /// Gets or sets a value indicating whether direct the embedded device to send events notification messages. /// </summary> bool EnableEventsNotification { get; set; } /// <summary> /// Gets or sets a value indicating whether to allow incoming debugging messages. /// </summary> bool EnableEmbeddedDebugging { get; set; } /// <summary> /// Gets the last process parameters table sent to the embedded device. /// </summary> ProcessParametersTable CurrentProcessParameters { get; } /// <summary> /// Gets the last hardware configuration sent to the embedded device. /// </summary> HardwareConfiguration CurrentHardwareConfiguration { get; } /// <summary> /// Gets or sets the embedded device information. /// </summary> DeviceInformation DeviceInformation { get; } /// <summary> /// Gets or sets the machine events state provider used to get notifications about current machine events and errors. /// </summary> IMachineEventsStateProvider MachineEventsStateProvider { get; set; } /// <summary> /// Prints the specified job. /// The process parameters table will be calculated using color conversion gamut region. /// This method cannot accept brush stops with 'Volume' as color space. /// </summary> /// <param name="job">The job.</param> /// <returns></returns> JobHandler Print(Job job); /// <summary> /// Prints the specified job using the specified job parameters. /// </summary> /// <param name="job">The job.</param> /// <param name="processParameters">Process parameters table</param> /// <returns></returns> JobHandler Print(Job job, ProcessParametersTable processParameters); /// <summary> /// Uploads the specified process parameters to the embedded device. /// </summary> /// <param name="processParameters">The process parameters.</param> /// <returns></returns> Task<UploadProcessParametersResponse> UploadProcessParameters(ProcessParametersTable processParameters); /// <summary> /// Uploads the specified hardware configuration to the embedded device. /// </summary> /// <param name="hardwareVersion">Machine version.</param> /// <param name="configuration">Machine configuration.</param> /// <returns></returns> Task<UploadHardwareConfigurationResponse> UploadHardwareConfiguration(HardwareVersion hardwareVersion, Configuration configuration); /// <summary> /// Starts jogging the specified motor. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<MotorJoggingResponse> StartMotorJogging(MotorJoggingRequest request); /// <summary> /// Stops jogging the specified motor. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<MotorAbortJoggingResponse> StopMotorJogging(MotorAbortJoggingRequest request); /// <summary> /// Starts homing the specified motor. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> IObservable<MotorHomingResponse> StartMotorHoming(MotorHomingRequest request); /// <summary> /// Stops homing the specified motor. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<MotorAbortHomingResponse> StopMotorHoming(MotorAbortHomingRequest request); /// <summary> /// Starts jogging the specified dispenser. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<DispenserJoggingResponse> StartDispenserJogging(DispenserJoggingRequest request); /// <summary> /// Stops jogging the specified dispenser. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<DispenserAbortJoggingResponse> StopDispenserJogging(DispenserAbortJoggingRequest request); /// <summary> /// Starts homing the specified dispenser. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> IObservable<DispenserHomingResponse> StartDispenserHoming(DispenserHomingRequest request); /// <summary> /// Stops homing the specified dispenser. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<DispenserAbortHomingResponse> StopDispenserHoming(DispenserAbortHomingRequest request); /// <summary> /// Turn on/off the specified digital output pin. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<SetDigitalOutResponse> SetDigitalOut(SetDigitalOutRequest request); /// <summary> /// Starts jogging the thread motion system. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<ThreadJoggingResponse> StartThreadJogging(ThreadJoggingRequest request); /// <summary> /// Stops jogging the thread motion system. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<ThreadAbortJoggingResponse> StopThreadJogging(ThreadAbortJoggingRequest request); /// <summary> /// Sets the specified component value. /// </summary> /// <param name="request">The request.</param> /// <returns></returns> Task<SetComponentValueResponse> SetComponentValue(SetComponentValueRequest request); /// <summary> /// Sets the state of the specified heater type. /// </summary> /// <param name="heater">The heater.</param> /// <param name="setPoint">Set point temperature.</param> /// <returns></returns> Task<SetHeaterStateResponse> SetHeaterState(HeaterType heater, double setPoint); /// <summary> /// Resolves the specified event type. /// </summary> /// <param name="eventType">Type of the event.</param> /// <returns></returns> Task<ResolveEventResponse> ResolveEvent(PMR.Diagnostics.EventType eventType); /// <summary> /// Resets the embedded device. /// </summary> /// <returns></returns> Task<StubFpgaWriteRegResponse> Reset(); } }