| 12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211121212131214121512161217121812191220122112221223122412251226122712281229123012311232123312341235123612371238123912401241124212431244124512461247124812491250125112521253125412551256125712581259126012611262126312641265126612671268126912701271127212731274127512761277127812791280128112821283128412851286128712881289129012911292129312941295129612971298129913001301130213031304130513061307130813091310131113121313131413151316131713181319132013211322132313241325132613271328132913301331133213331334133513361337133813391340134113421343134413451346134713481349135013511352135313541355135613571358135913601361136213631364136513661367136813691370137113721373137413751376137713781379138013811382138313841385138613871388138913901391139213931394139513961397139813991400140114021403140414051406140714081409141014111412141314141415141614171418141914201421142214231424142514261427142814291430143114321433143414351436143714381439144014411442144314441445144614471448144914501451145214531454145514561457145814591460146114621463146414651466146714681469147014711472147314741475147614771478147914801481148214831484148514861487148814891490149114921493149414951496149714981499150015011502150315041505150615071508150915101511151215131514151515161517151815191520152115221523152415251526152715281529153015311532153315341535153615371538153915401541154215431544154515461547154815491550155115521553155415551556155715581559156015611562156315641565156615671568156915701571157215731574157515761577157815791580158115821583158415851586158715881589159015911592159315941595159615971598159916001601160216031604160516061607160816091610161116121613161416151616161716181619162016211622162316241625162616271628162916301631163216331634163516361637163816391640164116421643164416451646164716481649165016511652165316541655165616571658165916601661166216631664166516661667166816691670167116721673167416751676167716781679168016811682168316841685168616871688168916901691169216931694169516961697169816991700170117021703170417051706170717081709171017111712171317141715171617171718171917201721172217231724172517261727172817291730173117321733173417351736173717381739174017411742174317441745174617471748174917501751175217531754175517561757175817591760176117621763176417651766 | using OINA.Extender;using OINA.Extender.Acquisition;using OINA.Extender.Acquisition.Ed;using OINA.Extender.Acquisition.Image;using OINA.Extender.Data;using OINA.Extender.Data.Ed;using OINA.Extender.Data.Image;using OINA.Extender.MicroscopeControl;using OINA.Extender.Processing;using OINA.Extender.Processing.Ed;using OINA.Extender.Processing.Quant;using System;using System.Collections.Generic;using System.Drawing;using System.Drawing.Imaging;using System.IO;using System.Linq;using System.Text;using System.Threading;using System.Windows.Forms;using static OxfordExtenderWrapper.ExtenderIpcUI;namespace OxfordExtenderWrapper{    enum OxfordControllerState    {        READY = 0,        WORKING = 1,        SUCCEEDED = 2,        FAILED = 3,        ABORT = 4    };    [Serializable]    public class Segment    {        private int m_nX;        private int m_nY;        private int m_nLength;        public int X        {            get { return m_nX; }            set            {                if (value > 0)                {                    m_nX = value;                }            }        }        public int Y        {            get { return m_nY; }            set            {                if (value > 0)                {                    m_nY = value;                }            }        }        public int Length        {            get { return m_nLength; }            set            {                if (value > 0)                {                    m_nLength = value;                }            }        }    };    /// <summary>    /// Enum EDSConst definition.    /// </summary>    enum EDSConst    {        MAX_XRAY_BATCH = 1024,        XANA_CHANNELS = 2000,        XANA_CHANNELS_MAX = 4192,        MAX_AMPTIME_CONSTANTS = 10,        MAX_EV_PER_CHANNELS = 5,        MAX_ANALYZERS = 5,        MAX_LEN_ANALYZER_NAME = 16    };    [Serializable]    struct OxfordChord    {        public long m_nX;        public long m_nY;        public long m_nLength;    };    enum OxfordCommandType    {                GetMagnification = 0,        SetMagnification = 1,               GetWorkingDistance = 2,        SetWorkingDistance = 3,             GetBrightness = 4,        SetBrightness = 5,              GetContrast = 6,        SetContrast = 7,            GetSEMVoltage = 8,        SetSEMVoltage = 9,        //样品台                GetStagePosition = 10,        SetStagePosition = 11,        GetStageAtX = 12,        GetStageAtY = 13,        GetStageAtZ = 14,        GetStageAtT = 15,        GetStageAtR = 16,        SetStageGotoX = 17,        SetStageGotoY = 18,        SetStageGotoZ = 19,        SetStageGotoT = 20,        SetStageGotoR = 21,        MoveStageXY = 22,        //拍图        ImageAquisition = 23,        //采集参数设置        SetImageAcquistionSetting = 24,        //获取分辨率        GetImageResolution = 25,        //设置分辨率        SetImageResolution= 26,        //获取bitmap        GetBitmap = 27,        //X-ray        //点采集        XrayPointCollection = 29,        COLLECT_XRAYPOINTS=30,        //面采集        XrayAreaCollection = 31,        COLLECT_XRAYFEATURES = 32,        Exit = 100,    }    [Serializable]    public class ImageAquistionParam    {        public ImageAquistionParam()        {            this.ImageData = new byte[width * height];        }        //in        public int width;        public int height;        public double DwellTime;        public ImageInputSourceType sourceType;        //out        public byte[] ImageData;    }    [Serializable]    public class PointXrayParam    {        public PointXrayParam()        {            this.XrayData = new uint[2000];            this.listElement = new Dictionary<string, double>();        }        public double dMilliSecondsTime;        public double x;        public double y;        //out        public uint[] XrayData;        public Dictionary<string, double> listElement;        public bool b_quant;    }    [Serializable]    public class AreaXrayParam    {        public AreaXrayParam()        {            this.XrayData = new uint[2000];            this.listElement = new Dictionary<string, double>();        }        public double dMilliSecondsTime;        public List<Segment> a_listChord=new List<Segment>();        public uint[] XrayData;        public Dictionary<string, double> listElement;        public bool b_quant;    }    [Serializable]    public struct MoveStageParam    {        public float x;        public float y;    }    struct oxfordCommandData    {        public OxfordCommandType commandType;        public bool returnType;        public MoveStageParam moveStagePrm;        public ImageAquistionParam grabImgParam;        public PointXrayParam pointXrayPrm;        public AreaXrayParam areaXrayPrm;        public List<PointXrayParam> XrayPrmForPoints;        public int PointXrayDataReceived;        public List<AreaXrayParam> XrayPrmForFeatures;        public int AreaXrayDataReceived;    }    public class ExtenderWrapper:MarshalByRefObject    {        NLog.Logger log = NLog.LogManager.GetCurrentClassLogger();        private oxfordCommandData currentCommand;               //控制电镜        private IMicroscopeController microscopeController = null;        /// <summary>        /// IImageAcquisitionController object        /// </summary>        private IImageAcquisitionController imageAcquisitionController = null;        /// <summary>        /// IImageSettings object        /// </summary>        private IImageAcquisitionSettings imageAcquisitionSettings = null;        //控制器        private IEdSpectrumAcquisitionController EdSpectrumAcquisitionController = null;        private IEdSpectrumSettings EdSpectrumSettings = null;        private IEdSpectrumProcessing EdSpectrumProcessing = null;        // Use the autoIdSettings to define elements that are known or elements that you want to exclude. They also list elements that cannot be identified        private IAutoIdSettings autoIdSettings = null;        private ISEMQuantSettings quantSettings = null;        //private IEdChordListAcquisitionController _edsChordListController = null;           private IEdChordListSettings _edsChordListSetting;        private int XRayChannelLength = 2000;        private int EDSColletionTimeOut = 10000;             const int g_nOxfordControllerProcessTime = 4;        const int g_nOxfordControllerEnergyRange = 20;        private bool m_bXrayDone = false;        //电压        private double m_dHighVoltage;        //放大倍数        private double m_dMagnification;        //工作距离        private double m_dWorkingDistance;        //亮度        private double m_dBirghtness;        //对比度        private double m_dContrast;        //BeamOn        private bool m_bBeamOn;        //FilamentOn        private bool m_bFilamentOn;        //样品台位置        private double m_dStageX;        private double m_dStageY;        private double m_dStageZ;        private double m_dStageR;        private double m_dStageT;                   private byte[] m_ImageBit = null;        private long m_nImageWidth = 0;        private long m_nImageHeight = 0;        private double m_dImagePixelsize = 0;//it will be initialized when we get an image from the EDS.        bool m_bAcquistionDone = false;        private bool m_StageUpdated;        private bool m_CollumnUpdated;        private bool m_ExternalScanUpdated;               //构造函数        public ExtenderWrapper()        {                   }        public bool ConnectToEDSHardware()        {            try            {                InitMicroscopeController();                InitImageAcquisition();                InitXrayAcquistion();                               return true;            }            catch (Exception e)            {                log.Error(e.Message);                return false;            }                   }               //结束        public void CloseExtender()        {                            CloseMicroscopeController();                CloseImageAcquisition();                CloseXrayAcquistion();                              }               public bool AquisitionImage(ref ImageAquistionParam p)        {            currentCommand.grabImgParam = p;            currentCommand.commandType = OxfordCommandType.ImageAquisition;            SetImageAcquistionSetting(p.DwellTime, p.sourceType, p.width);            try            {                int lastingTime = 0;                m_bAcquistionDone = false;                imageAcquisitionController.BeginMultipleAcquisition();                IEnumerable<IElectronImage> images = imageAcquisitionController.StartAcquisition(imageAcquisitionSettings);                int time1 = Environment.TickCount;                while (true)                {                    if (m_bAcquistionDone)                    {                        p.ImageData = m_ImageBit;                        currentCommand.returnType = true;                        break;                    }                                     Application.DoEvents();                    int time2;                                            time2 = Environment.TickCount;                        if (time2 - time1 > EDSColletionTimeOut*6)                        {                            currentCommand.returnType = false;                            break;                        }                                   }            }            catch (InvalidSettingsException settingsException)            {                var sb = new StringBuilder(@"Invalid settings have been supplied: ");                sb.AppendLine();                settingsException.ValidationResults.ValidationErrors.ToList().ForEach(ve => sb.AppendFormat("{0}{1}", Environment.NewLine, ve));                NLog.LogManager.GetCurrentClassLogger().Error(sb.ToString());            }            catch (AcquisitionStartException startException)            {                string msg = string.Format(@"AcquisitionStartException: {0}", startException.Message);                NLog.LogManager.GetCurrentClassLogger().Error(msg);            }                        if (currentCommand.returnType == true)            {                return true;            }            else            {                return false;            }        }        public bool MoveStageXY(float x, float y)        {            currentCommand.moveStagePrm = new MoveStageParam();            currentCommand.moveStagePrm.x = x;            currentCommand.moveStagePrm.y = y;            currentCommand.commandType = OxfordCommandType.MoveStageXY;                      var stageDictionary = new Dictionary<Stage, double>                            {                                { Stage.StageX, (double)x/1000.0 },                                { Stage.StageY, (double)y /1000.0}                            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            currentCommand.returnType = true;                      int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                                            time2 = Environment.TickCount;                if (time2-time1 > 60000)                {                    currentCommand.returnType = false;                    break;                }            }            if (currentCommand.returnType == true)            {                return true;            }            else            {                return false;            }        }        public bool XrayAreaCollecting(ref AreaXrayParam p)        {                       currentCommand.areaXrayPrm = p;            currentCommand.commandType = OxfordCommandType.XrayAreaCollection;            m_bXrayDone = false;            SetXrayAcquisitionParam(p.dMilliSecondsTime);            List<Chord> Chords = new List<Chord>();            foreach (Segment seg in p.a_listChord)            {                Chord chord = new Chord(seg.X, seg.Y, seg.Length);                Chords.Add(chord);            }           var chordsList = new ChordList(Chords, m_dImagePixelsize);            EdSpectrumSettings.ScanSettings.AcquisitionRegion.CreateChordListRegion(chordsList);            try            {                                IEdSpectrum edSpectrum = EdSpectrumAcquisitionController.StartAcquisition(EdSpectrumSettings);                var time1 = Environment.TickCount;                while (true)                {                    if (m_bXrayDone)                    {                        currentCommand.returnType = true;                        break;                    }                                       Application.DoEvents();                    var time2 = Environment.TickCount;                    if (time2-time1 > EDSColletionTimeOut * 6)                    {                        currentCommand.returnType = false;                        break;                    }                }            }            catch (InvalidSettingsException invalidSettingsException)            {                string msg = string.Format(@"Invalid Settings Exception:{0}, {1}",                    invalidSettingsException.Message,                    invalidSettingsException.ValidationResults.ValidationErrors);                log.Error(msg);            }            catch (AcquisitionStartException acquisitionStartException)            {                string msg = string.Format(@"Acquisition Start Exception:{0}", acquisitionStartException.Message);                log.Error(msg);            }                       if (currentCommand.returnType == true)            {                return true;            }            else            {                return false;            }        }        public bool XrayPointCollecting(ref PointXrayParam p)        {                        currentCommand.pointXrayPrm = p;            currentCommand.commandType = OxfordCommandType.XrayPointCollection;            m_bXrayDone = false;            p.XrayData = new uint[XRayChannelLength];            p.listElement = new Dictionary<string, double>();            SetXrayAcquisitionParam(p.dMilliSecondsTime);                       EdSpectrumSettings.ScanSettings.AcquisitionRegion.CreatePointRegion(new System.Windows.Point(p.x * m_dImagePixelsize, p.y * m_dImagePixelsize));              try            {                m_bXrayDone = false;                               IEdSpectrum edSpectrum = EdSpectrumAcquisitionController.StartAcquisition(EdSpectrumSettings);                var time1 = Environment.TickCount;                while (true)                {                    if (m_bXrayDone)                    {                        currentCommand.returnType = true;                        break;                    }                    Application.DoEvents();                    var time2 = Environment.TickCount;                    if (time2-time1 > EDSColletionTimeOut * 6)                    {                        EdSpectrumAcquisitionController.EndMultipleAcquisition();                        log.Warn("XrayStartAcquisition 超时!");                        currentCommand.returnType = false;                    }                }            }            catch (InvalidSettingsException invalidSettingsException)            {                string msg = string.Format(@"Invalid Settings Exception:{0}, {1}",                    invalidSettingsException.Message,                    invalidSettingsException.ValidationResults.ValidationErrors);                log.Error(msg);            }            catch (AcquisitionStartException acquisitionStartException)            {                string msg = string.Format(@"Acquisition Start Exception:{0}", acquisitionStartException.Message);                log.Error(msg);            }                  if (currentCommand.returnType == true)            {                return true;            }            else            {                return false;            }        }        public bool CollectXrayByPoints(ref List<PointXrayParam> a_listPoints, uint a_nXRayAQTime, bool a_bElementInfo)        {            currentCommand.XrayPrmForPoints = a_listPoints;            currentCommand.commandType = OxfordCommandType.COLLECT_XRAYPOINTS;                      //log.Info("线程:开始采集多点xray");            var PointXrayDatas = currentCommand.XrayPrmForPoints;            currentCommand.PointXrayDataReceived = 0;            m_bXrayDone = false;                        var dMilliSecondsTime = PointXrayDatas[0].dMilliSecondsTime;            SetXrayAcquisitionParam(dMilliSecondsTime);            foreach (var prm in PointXrayDatas)            {                prm.b_quant = a_bElementInfo;                EdSpectrumSettings.ScanSettings.AcquisitionRegion.CreatePointRegion(new System.Windows.Point(prm.x * m_dImagePixelsize, prm.y * m_dImagePixelsize));                try                {                    m_bXrayDone = false;                    IEdSpectrum edSpectrum = EdSpectrumAcquisitionController.StartAcquisition(EdSpectrumSettings);                }                catch (InvalidSettingsException invalidSettingsException)                {                    string msg = string.Format(@"Invalid Settings Exception:{0}, {1}",                        invalidSettingsException.Message,                        invalidSettingsException.ValidationResults.ValidationErrors);                    log.Error(msg);                }                catch (AcquisitionStartException acquisitionStartException)                {                    string msg = string.Format(@"Acquisition Start Exception:{0}", acquisitionStartException.Message);                    log.Error(msg);                }            }            var time1 = Environment.TickCount;            while (true)            {                if (m_bXrayDone)                {                    currentCommand.returnType = true;                    EdSpectrumAcquisitionController.EndMultipleAcquisition();                    break;                }                Application.DoEvents();                var time2 = Environment.TickCount;                                if (time2-time1 > EDSColletionTimeOut * PointXrayDatas.Count)                {                    EdSpectrumAcquisitionController.EndMultipleAcquisition();                                       currentCommand.returnType = false;                }            }            if (currentCommand.returnType == true)            {                             return true;            }            else            {                return false;            }        }        public bool CollectXrayByFeatures(ref List<AreaXrayParam> a_listFeatures, double a_nXRayAQTime, bool a_bElementInfo)        {            currentCommand.XrayPrmForFeatures = a_listFeatures;            currentCommand.commandType = OxfordCommandType.COLLECT_XRAYFEATURES;            var p = currentCommand.XrayPrmForFeatures;            currentCommand.AreaXrayDataReceived = 0;                                m_bXrayDone = false;                       var dMilliSecondsTime = p[0].dMilliSecondsTime;            SetXrayAcquisitionParam(p[0].dMilliSecondsTime);            foreach (var prm in p)            {                prm.b_quant = a_bElementInfo;                List<Chord> Chords = new List<Chord>();                foreach (Segment seg in prm.a_listChord)                {                    Chord chord = new Chord(seg.X, seg.Y, seg.Length);                    Chords.Add(chord);                }                var chordsList = new ChordList(Chords, m_dImagePixelsize);                EdSpectrumSettings.ScanSettings.AcquisitionRegion.CreateChordListRegion(chordsList);                try                {                    m_bXrayDone = false;                    IEdSpectrum edSpectrum = EdSpectrumAcquisitionController.StartAcquisition(EdSpectrumSettings);                }                catch (InvalidSettingsException invalidSettingsException)                {                    string msg = string.Format(@"Invalid Settings Exception:{0}, {1}",                        invalidSettingsException.Message,                        invalidSettingsException.ValidationResults.ValidationErrors);                    log.Error(msg);                }                catch (AcquisitionStartException acquisitionStartException)                {                    string msg = string.Format(@"Acquisition Start Exception:{0}", acquisitionStartException.Message);                    log.Error(msg);                }            }            var time1 = Environment.TickCount;            while (true)            {                if (m_bXrayDone)                {                    currentCommand.returnType = true;                    EdSpectrumAcquisitionController.EndMultipleAcquisition();                    break;                }                Application.DoEvents();                             var time2 = Environment.TickCount;                if (time2-time1 > EDSColletionTimeOut * p.Count)                {                    EdSpectrumAcquisitionController.EndMultipleAcquisition();                                                     currentCommand.returnType = false;                    break;                }            }            if (currentCommand.returnType == true)            {                a_listFeatures = currentCommand.XrayPrmForFeatures;                return true;            }            else            {                return false;            }        }                 //控制电镜初始化        void InitMicroscopeController()        {            this.microscopeController = AcquireFactory.CreateMicroscopeControl();            this.microscopeController.ColumnChange += this.OnMicroscopeColumnChange;            this.microscopeController.StageChange += this.OnMicroscopeStageChange;            this.microscopeController.ColumnConnected += this.OnMicroscopeColumnConnected;            this.microscopeController.StageConnected += this.OnMicroscopeStageConnected;            this.microscopeController.ChangeCompleted += this.OnMicroscopeChangeCompleted;                       ReadMicroscopeColumn();            ReadStage();        }        //控制电镜释放        void CloseMicroscopeController()        {            if (microscopeController != null)            {                              this.microscopeController.ColumnChange -= this.OnMicroscopeColumnChange;                this.microscopeController.StageChange -= this.OnMicroscopeStageChange;                this.microscopeController.ColumnConnected -= this.OnMicroscopeColumnConnected;                this.microscopeController.StageConnected -= this.OnMicroscopeStageConnected;                this.microscopeController.ChangeCompleted -= this.OnMicroscopeChangeCompleted;                microscopeController = null;            }                   }        //读取当前的电镜控制值        private void ReadMicroscopeColumn()        {            var columnCapabilities = this.microscopeController.ColumnCapabilities;            var columnConditions = this.microscopeController.ColumnConditions;            if (columnCapabilities.Magnification.CanRead)            {                m_dMagnification = columnConditions.Magnification;            }            if (columnCapabilities.WorkingDistance.CanRead)            {                m_dWorkingDistance = columnConditions.WorkingDistance;            }            if (columnCapabilities.HighVoltage.CanRead)            {                m_dHighVoltage = columnConditions.HighVoltage;            }            if (columnCapabilities.Brightness.CanRead)            {                m_dBirghtness = columnConditions.Brightness;            }            if (columnCapabilities.Contrast.CanRead)            {                m_dContrast = columnConditions.Contrast;            }            if (columnCapabilities.BeamOn.CanRead)            {                m_bBeamOn = Convert.ToBoolean(columnConditions.BeamOn);            }            if (columnCapabilities.FilamentOn.CanRead)            {                m_bFilamentOn = Convert.ToBoolean(columnConditions.FilamentOn);            }        }        //读取样品台位置        private void ReadStage()        {            var stageCapabilities = this.microscopeController.StageCapabilities;            var stageConditions = this.microscopeController.StageConditions;            while (!stageCapabilities.StageX.CanRead)            {                Thread.Sleep(100);            }            if (stageCapabilities.StageX.CanRead)            {                this.m_dStageX = stageConditions.StageX*1000.0;            }            if (stageCapabilities.StageY.CanRead)            {                this.m_dStageY = stageConditions.StageY*1000.0;            }            if (stageCapabilities.StageZ.CanRead)            {                this.m_dStageZ = stageConditions.StageZ;            }            if (stageCapabilities.StageT.CanRead)            {                this.m_dStageT = stageConditions.StageT;            }            if (stageCapabilities.StageR.CanRead)            {                this.m_dStageR = stageConditions.StageR;            }        }        //电镜控制改变事件        private void OnMicroscopeColumnChange(object sender, EventArgs e)        {                      ReadMicroscopeColumn();        }        //样品台控制改变事件        private void OnMicroscopeStageChange(object sender, EventArgs e)        {                       ReadStage();        }        //镜筒控制连接或断开时的事件        private void OnMicroscopeColumnConnected(object sender, EventArgs e)        {            ReadMicroscopeColumn();        }        //样品台控制连接或断开时的事件        private void OnMicroscopeStageConnected(object sender, EventArgs e)        {                      ReadStage();        }        //样品台控制、电镜控制、外围控制的事件改变完成        private void OnMicroscopeChangeCompleted(object sender, CompletedEventArgs e)        {            if (e.Control == MicroscopeControlType.Stage)            {                if (e.Success)                {                                     m_StageUpdated = true;                                 }            }            else if (e.Control == MicroscopeControlType.Column)            {                if (e.Success)                {                    m_CollumnUpdated = true;                }            }            else if (e.Control == MicroscopeControlType.ExternalScan)            {                if (e.Success)                {                    m_ExternalScanUpdated = true;                }                        }            ReadMicroscopeColumn();            ReadStage();        }        public float GetMagnification()        {            ReadMicroscopeColumn();            return (float)m_dMagnification;        }        public Boolean SetMagnification(float set)        {            Dictionary<Column, double> columnDictionary = new Dictionary<Column, double>            {                { Column.Magnification, (double)set }            };            m_CollumnUpdated = false;            this.microscopeController.SetColumnConditions(columnDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_CollumnUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 10000)                {                    currentCommand.returnType = false;                    return false;                                   }            }            return true;        }        //焦距        public float GetWorkingDistance()        {            ReadMicroscopeColumn();            return (float)m_dWorkingDistance;        }        public Boolean SetWorkingDistance(float set)        {            Dictionary<Column, double> columnDictionary = new Dictionary<Column, double>            {                { Column.WorkingDistance, (double)set }            };            m_CollumnUpdated = false;            this.microscopeController.SetColumnConditions(columnDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_CollumnUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 10000)                {                    currentCommand.returnType = false;                    return false;                                  }            }            return true;        }        //亮度        public float GetBrightness()        {            ReadMicroscopeColumn();            return (float)m_dBirghtness;        }        public Boolean SetBrightness(float set)        {            Dictionary<Column, double> columnDictionary = new Dictionary<Column, double>            {                { Column.Brightness, (double)set }            };            m_CollumnUpdated = false;            this.microscopeController.SetColumnConditions(columnDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_CollumnUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 2000)                {                    currentCommand.returnType = false;                    return false;                                   }            }            return true;        }        //对比度        public float GetContrast()        {            ReadMicroscopeColumn();            return (float)m_dContrast;        }        public Boolean SetContrast(float set)        {            Dictionary<Column, double> columnDictionary = new Dictionary<Column, double>            {                { Column.Contrast, (double)set }            };            m_CollumnUpdated = false;            this.microscopeController.SetColumnConditions(columnDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_CollumnUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 2000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        //SEM电压        public float GetSEMVoltage()        {            ReadMicroscopeColumn();            return (float)m_dHighVoltage;        }        public Boolean SetSEMVoltage(float set)        {            Dictionary<Column, double> columnDictionary = new Dictionary<Column, double>            {                { Column.HighVoltage, (double)set }            };                       m_CollumnUpdated = false;            this.microscopeController.SetColumnConditions(columnDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_CollumnUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 10000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        public bool SetSemScanExternal(bool b)        {            m_ExternalScanUpdated = false;            this.microscopeController.SetExternalScan(b);            int time1 = Environment.TickCount;            int time2;            while (!m_ExternalScanUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 2000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }               //样品台        public float[] GetStagePosition()        {            ReadStage();            float[] ret = new float[5];            ret[0] = (float)m_dStageX;            ret[1] = (float)m_dStageY;            ret[2] = (float)m_dStageZ;            ret[3] = (float)m_dStageT;            ret[4] = (float)m_dStageR;            return ret;        }        public Boolean SetStagePosition(float[] set)        {            double stageX = (double)set[0];                       double stageY = (double)set[1];                        double stageZ = (double)set[2];                        double stageT = (double)set[3];                       double stageR = (double)set[4];                       var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageX, (double)stageX/1000.0 },                { Stage.StageY, (double)stageY/1000.0 },                { Stage.StageZ, (double)stageZ },                { Stage.StageT, (double)stageT },                { Stage.StageR, (double)stageR }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        public float GetStageAtX()        {            ReadStage();            return (float)m_dStageX;        }        public float GetStageAtY()        {            ReadStage();            return (float)m_dStageY;        }        public float GetStageAtZ()        {            ReadStage();            return (float)m_dStageZ;        }        public float GetStageAtT()        {            ReadStage();            return (float)m_dStageT;        }        public float GetStageAtR()        {            ReadStage();            return (float)m_dStageR;        }        public Boolean SetStageGotoX(float set)        {            double stageX = (double)set;                       var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageX, (double)stageX/1000.0 }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        public Boolean SetStageGotoY(float set)        {            double stageY = (double)set;                var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageY, (double)stageY/1000.0 }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        public Boolean SetStageGotoZ(float set)        {            double stageZ = (double)set;              var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageZ, (double)stageZ }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }        public Boolean SetStageGotoT(float set)        {            double stageT = (double)set;            var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageT, (double)stageT }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                                  }            }            return true;        }        public Boolean SetStageGotoR(float set)        {            double stageR = (double)set;                   var stageDictionary = new Dictionary<Stage, double>            {                { Stage.StageR, (double)stageR }            };            m_StageUpdated = false;            this.microscopeController.SetStageConditions(stageDictionary);            int time1 = Environment.TickCount;            int time2;            while (!m_StageUpdated)            {                Application.DoEvents();                time2 = Environment.TickCount;                if (time2 - time1 > 20000)                {                    currentCommand.returnType = false;                    return false;                    //break;                }            }            return true;        }              #region 拍图               //图像扫描尺寸        public double[] ImageScanSize =        {            32,            64,            128,            256,            512,            704,            768,            1024,            2048,            4096,            8192        };        public double GetDImagePixelsize()        {            return m_dImagePixelsize;        }        public void SetDImagePixelsize(double value)        {            m_dImagePixelsize = value;        }        void InitImageAcquisition()        {            imageAcquisitionController = AcquireFactory.CreateImageServer();            imageAcquisitionSettings = AcquireFactory.CreateImageSettings();                     imageAcquisitionController.ExperimentStarted += this.OnImageExperimentStarted;            imageAcquisitionController.ExperimentFinished += this.OnImageExperimentFinished;                  }        void InitXrayAcquistion()        {            EdSpectrumSettings = AcquireFactory.CreateEdSpectrumSettings();            EdSpectrumAcquisitionController = AcquireFactory.CreateEdSpectrumServer();            EdSpectrumProcessing = ProcessingFactory.CreateSpectrumProcessing();            // Use the autoIdSettings to define elements that are known or elements that you want to exclude. They also list elements that cannot be identified            autoIdSettings = ProcessingFactory.CreateAutoIdSettings();            quantSettings = ProcessingFactory.CreateSEMQuantSettings();            EdSpectrumAcquisitionController.ExperimentFinished += this.OnEdSpectrumExperimentFinished;            //EdSpectrumAcquisitionController.ExperimentStarted += this.OnEdSpectrumExperimentStarted;                  }        //控制电镜释放        void CloseImageAcquisition()        {            if (imageAcquisitionController != null)            {                imageAcquisitionController.ExperimentStarted -= this.OnImageExperimentStarted;                imageAcquisitionController.ExperimentFinished -= this.OnImageExperimentFinished;                imageAcquisitionController = null;            }                    }        void CloseXrayAcquistion()        {            if (EdSpectrumAcquisitionController != null)            {                EdSpectrumAcquisitionController.ExperimentFinished -= this.OnEdSpectrumExperimentFinished;                //EdSpectrumAcquisitionController.ExperimentStarted -= this.OnEdSpectrumExperimentStarted;                EdSpectrumAcquisitionController = null;            }        }        /// <summary>        /// OnImageExperimentStarted        /// </summary>        private void OnImageExperimentStarted(object sender, AcquisitionStartedEventArgs<IElectronImage[]> e)        {            NLog.Logger log = NLog.LogManager.GetCurrentClassLogger();            log.Info("拍图开始事件!");        }        //int m_nState;        /// <summary>        /// OnImageExperimentFinished        /// </summary>        private void OnImageExperimentFinished(object sender, AcquisitionFinishedEventArgs<IElectronImage[]> e)        {            IElectronImage electronImage = e.Value[0];            if (!ReadImageData(electronImage, out m_ImageBit, out m_nImageWidth, out m_nImageHeight, out m_dImagePixelsize))            {                             NLog.LogManager.GetCurrentClassLogger().Error("图像采集完成,获取图像像素失败!");            }            if (m_ImageBit != null && m_ImageBit.Length == m_nImageWidth * m_nImageHeight)            {                m_bAcquistionDone = true;            }        }        bool ReadImageData(IElectronImage a_electronImage, out Byte[] a_pImageBits, out long a_nImageHeight, out long a_nImageWidth, out double a_nPixelSize)        {            a_nImageHeight = 0;            a_nImageWidth = 0;            a_nPixelSize = 0;            a_pImageBits = null;            if (a_electronImage == null)            {                return false;            }            a_nImageHeight = a_electronImage.Height;            a_nImageWidth = a_electronImage.Width;            a_nPixelSize = a_electronImage.PixelSize;            int nBytesPerPixel = a_electronImage.BytesPerPixel;            long nImageSize = a_nImageHeight * a_nImageWidth;            long nBufferSize = nImageSize * nBytesPerPixel;            Byte[] imageData = new Byte[nBufferSize];            a_electronImage.GetData(imageData);            a_pImageBits = new Byte[nImageSize];            // default, oxford will return short image, we need to convert to byte            if (nBytesPerPixel == 2)            {                int nBSEValue = 0;                for (int i = 0; i < nImageSize; ++i)                {                    nBSEValue = imageData[0 + i * nBytesPerPixel] + imageData[1 + i * nBytesPerPixel] * 255;                    a_pImageBits[i] = (Byte)(nBSEValue / 128.0 + 0.5);                }            }            else            {                string msg = string.Format("image byte per pixel other than 2({0}), image convert may wrong", nBytesPerPixel);                NLog.LogManager.GetCurrentClassLogger().Error(msg);                int nOffset = nBytesPerPixel - 1;                for (int i = 0; i < nImageSize; ++i)                {                    a_pImageBits[i] = imageData[nOffset + i * nBytesPerPixel];                }            }            return true;        }        //a_dDwellTime : 1~100000之间的数         //a_sImageType : 1: SE, 2: Bse        //a_dImageScanSize : 图像分辨率,图像的高        public bool SetImageAcquistionSetting(double a_dDwellTime, ImageInputSourceType a_nImageType, double a_dImageScanSize)        {            IImageSettings imageSettings = imageAcquisitionSettings.ImageSettings;            IImageCapabilities imageCapabilities = imageAcquisitionSettings.ImageCapabilities;            IImageScanSettings scanSettings = imageAcquisitionSettings.ScanSettings;            if (a_dDwellTime > imageCapabilities.MaximumImageDwellMicroseconds)            {                imageSettings.DwellTimeMicroSeconds = imageCapabilities.MaximumImageDwellMicroseconds;            }            if (a_dDwellTime < imageCapabilities.MinimumImageDwellMicroseconds)            {                imageSettings.DwellTimeMicroSeconds = imageCapabilities.MinimumImageDwellMicroseconds;            }            else            {                imageSettings.DwellTimeMicroSeconds = a_dDwellTime;            }            imageSettings.InputSources.ToList().ForEach(i => imageSettings.EnableInputSource(i.Key, false));            imageSettings.EnableInputSource((ImageInputSources)a_nImageType, true);            if (!ImageScanSize.Contains(a_dImageScanSize))            {                NLog.LogManager.GetCurrentClassLogger().Error("图像尺寸输入无效");                return false;            }            var pixelSize = 1d / a_dImageScanSize;            scanSettings.AcquisitionRegion.CreateFullFieldRegion(pixelSize);                        return true;        }               #endregion        #region X-ray                    void SetXrayAcquisitionParam(double a_dMilliSecondsTime)        {            EdSpectrumSettings.EdSettings.AcquisitionMode = EdAcquireMode.LiveTime; // RealTime or LiveTime            EdSpectrumSettings.EdSettings.AcquisitionTime = TimeSpan.FromMilliseconds(a_dMilliSecondsTime);            EdSpectrumSettings.EdSettings.ProcessTime = 4;            EdSpectrumSettings.EdSettings.EnergyRange = 20;            EdSpectrumSettings.EdSettings.NumberOfChannels = 4096;                  }         /// <summary>        /// Called when IEdSpectrumAcquisitionController Experiment Finished        /// </summary>        /// <param name="sender">sender object</param>        /// <param name="e">The instance containing the event data.</param>        private void OnEdSpectrumExperimentFinished(object sender, AcquisitionFinishedEventArgs<IEdSpectrum> e)        {            IEdSpectrumAcquisitionController edSpectrumAcquisitionController = sender as IEdSpectrumAcquisitionController;             uint[] m_XrayData;            NLog.Logger log = NLog.LogManager.GetCurrentClassLogger();            IEdSpectrum edSpectrum = e.Value;            if (!ReadXrayData(edSpectrum, out m_XrayData, XRayChannelLength))            {                NLog.LogManager.GetCurrentClassLogger().Error("Xray采集完成,获取xray失败!");            }            long nXraycount = 0;            for (int i = 0; i < 2000; i++)            {                nXraycount += m_XrayData[i];            }            //Quantify processing            bool bquant=false;            if (currentCommand.commandType == OxfordCommandType.XrayPointCollection)            {                bquant = currentCommand.pointXrayPrm.b_quant;            }            else if (currentCommand.commandType == OxfordCommandType.XrayAreaCollection)            {                bquant = currentCommand.areaXrayPrm.b_quant;            }            else if (currentCommand.commandType == OxfordCommandType.COLLECT_XRAYPOINTS)            {                var curXrayData = currentCommand.XrayPrmForPoints[currentCommand.PointXrayDataReceived];                bquant = curXrayData.b_quant;            }            else if (currentCommand.commandType == OxfordCommandType.COLLECT_XRAYFEATURES)            {                var curXrayData = currentCommand.XrayPrmForFeatures[currentCommand.AreaXrayDataReceived];                bquant = curXrayData.b_quant;            }            var m_listElement = new Dictionary<string, double>();            if (bquant)            {                EdSpectrumProcessing.IdentifyElements(e.Value, autoIdSettings);                // While it is possible to choose other elements, Oxygen is the only supported element by stoichiometry.                quantSettings.CombinedElement = 8;                quantSettings.Normalised = true;                ISEMQuantStatus quantStatus = EdSpectrumProcessing.SEMQuantifySpectrum(e.Value, quantSettings);//(a_nChannelData, OIHelper::SEMQuantSettings);                IEnumerable<ISEMQuantResult> Results = quantStatus.Results;                var ie = Results.GetEnumerator();                               while (ie.MoveNext())                {                    ISEMQuantResult result = ie.Current;                    if (result.WeightPercent != 0)                    {                        m_listElement.Add(ElementProperties.GetElementSymbol(result.AtomicNumber), result.WeightPercent);                    }                }            }            //------------------------            if (m_XrayData != null && m_XrayData.Length == XRayChannelLength)            {                if (currentCommand.commandType == OxfordCommandType.XrayPointCollection)                {                    currentCommand.pointXrayPrm.XrayData = m_XrayData;                    currentCommand.pointXrayPrm.listElement = m_listElement;                    m_bXrayDone = true;                }                else if (currentCommand.commandType == OxfordCommandType.XrayAreaCollection)                {                    currentCommand.areaXrayPrm.XrayData = m_XrayData;                    currentCommand.areaXrayPrm.listElement = m_listElement;                    m_bXrayDone = true;                }                else if (currentCommand.commandType == OxfordCommandType.COLLECT_XRAYPOINTS)                {                    var curXrayData = currentCommand.XrayPrmForPoints[currentCommand.PointXrayDataReceived];                    curXrayData.XrayData = m_XrayData;                    curXrayData.listElement = m_listElement;                    currentCommand.PointXrayDataReceived += 1;                    if (currentCommand.PointXrayDataReceived == currentCommand.XrayPrmForPoints.Count)                    {                        m_bXrayDone = true;                    }                }                else if (currentCommand.commandType == OxfordCommandType.COLLECT_XRAYFEATURES)                {                    var curXrayData = currentCommand.XrayPrmForFeatures[currentCommand.AreaXrayDataReceived];                    curXrayData.XrayData = m_XrayData;                    curXrayData.listElement = m_listElement;                    currentCommand.AreaXrayDataReceived += 1;                    if (currentCommand.AreaXrayDataReceived == currentCommand.XrayPrmForFeatures.Count)                    {                        m_bXrayDone = true;                    }                }                           }        }        bool ReadXrayData(IEdSpectrum a_spectrum, out uint[] a_pSpectrumData, int a_nBufferSize)        {            a_pSpectrumData = new uint[a_nBufferSize];            int[] xrayData = new int[a_spectrum.NumberOfChannels];            a_spectrum.GetChannelData(xrayData);            double dZeroChannelValue = a_spectrum.ZeroChannelValue;            int nChannelStart = 0;            if (dZeroChannelValue < 0)  // zero channel value should less than zero            {                nChannelStart = (int)(-dZeroChannelValue / a_spectrum.ChannelWidth + 0.5);            }            int nDataLength = (int)(a_spectrum.EnergyRange * 1000 / a_spectrum.ChannelWidth + 0.5);            double dStep1 = 1.0 / nDataLength;            double dStep2 = 1.0 / a_nBufferSize;            for (int i = 0; i < nDataLength; ++i)            {                uint nValue = (uint)(xrayData[i + nChannelStart] > 0 ? xrayData[i + nChannelStart] : 0);                double dBinPos = i * dStep1;                long nLeftBin = (long)(dBinPos / dStep2);                // calculate % into left bin                double dLeft_Percent = (double)(nLeftBin + 1) - dBinPos / dStep2; // ((nLeftBin + 1)*dStep2 - dBinPos)/dStep2                // calculate data into the left bin                uint nValueToLeftBin = (uint)((double)nValue * dLeft_Percent + 0.5);                // put data into bins                a_pSpectrumData[nLeftBin] += nValueToLeftBin;                if ((nLeftBin + 1) < a_nBufferSize)                {                    a_pSpectrumData[nLeftBin + 1] += (nValue - nValueToLeftBin);                }            }            return true;        }            public bool IsAcquiringSpectrum()        {            return EdSpectrumAcquisitionController.IsAcquiring;        }              public void BeginMultipleAquisition()        {            EdSpectrumAcquisitionController.BeginMultipleAcquisition();        }        public void EndMultipleAquisition()        {            EdSpectrumAcquisitionController.EndMultipleAcquisition();        }               public bool GetSemBeamOn()        {            var beamon = microscopeController.ColumnConditions.BeamOn;            if (beamon == 1)            {                return true;            }            else             {                return false;                        }                   }        public void StopXrayAquisition()        {            EdSpectrumAcquisitionController.StopAcquisition();        }        #endregion    }}
 |