Surface NMR processing and inversion GUI
Vous ne pouvez pas sélectionner plus de 25 sujets Les noms de sujets doivent commencer par une lettre ou un nombre, peuvent contenir des tirets ('-') et peuvent comporter jusqu'à 35 caractères.

akvoGUI.py 86KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211121212131214121512161217121812191220122112221223122412251226122712281229123012311232123312341235123612371238123912401241124212431244124512461247124812491250125112521253125412551256125712581259126012611262126312641265126612671268126912701271127212731274127512761277127812791280128112821283128412851286128712881289129012911292129312941295129612971298129913001301130213031304130513061307130813091310131113121313131413151316131713181319132013211322132313241325132613271328132913301331133213331334133513361337133813391340134113421343134413451346134713481349135013511352135313541355135613571358135913601361136213631364136513661367136813691370137113721373137413751376137713781379138013811382138313841385138613871388138913901391139213931394139513961397139813991400140114021403140414051406140714081409141014111412141314141415141614171418141914201421142214231424142514261427142814291430143114321433143414351436143714381439144014411442144314441445144614471448144914501451145214531454145514561457145814591460146114621463146414651466146714681469147014711472147314741475147614771478147914801481148214831484148514861487148814891490149114921493149414951496149714981499150015011502150315041505150615071508150915101511151215131514151515161517151815191520152115221523152415251526152715281529153015311532153315341535153615371538153915401541154215431544154515461547154815491550155115521553155415551556155715581559156015611562156315641565156615671568156915701571157215731574157515761577157815791580158115821583158415851586158715881589159015911592159315941595159615971598159916001601160216031604160516061607160816091610161116121613161416151616161716181619162016211622162316241625162616271628162916301631163216331634163516361637163816391640164116421643164416451646164716481649165016511652165316541655165616571658165916601661166216631664166516661667166816691670167116721673167416751676167716781679168016811682168316841685168616871688168916901691169216931694169516961697169816991700170117021703170417051706170717081709171017111712171317141715171617171718171917201721172217231724172517261727172817291730173117321733173417351736173717381739174017411742174317441745174617471748174917501751175217531754175517561757175817591760176117621763176417651766176717681769177017711772177317741775177617771778177917801781178217831784178517861787178817891790179117921793179417951796179717981799180018011802180318041805180618071808180918101811181218131814181518161817181818191820182118221823182418251826182718281829183018311832183318341835183618371838183918401841184218431844184518461847184818491850185118521853185418551856185718581859186018611862186318641865186618671868186918701871187218731874187518761877187818791880188118821883188418851886188718881889189018911892189318941895189618971898189919001901190219031904190519061907190819091910191119121913191419151916191719181919192019211922192319241925192619271928192919301931193219331934193519361937193819391940194119421943194419451946194719481949195019511952195319541955195619571958195919601961196219631964196519661967196819691970197119721973197419751976
  1. #/usr/bin/env python
  2. import sys
  3. import matplotlib
  4. matplotlib.use("QT5Agg")
  5. from PyQt5 import QtCore, QtGui, QtWidgets #, uic
  6. import numpy as np
  7. import time
  8. import os
  9. from copy import deepcopy
  10. from matplotlib.backends.backend_qt5 import NavigationToolbar2QT #as NavigationToolbar
  11. import datetime, time
  12. import pkg_resources # part of setuptools
  13. from collections import OrderedDict
  14. from ruamel import yaml
  15. from akvo.gui.main_ui import Ui_MainWindow
  16. from akvo.gui.addCircularLoop_ui import Ui_circularLoopAdd
  17. from akvo.gui.addFigure8Loop_ui import Ui_figure8LoopAdd
  18. from akvo.gui.addPolygonalLoop_ui import Ui_polygonalLoopAdd
  19. from akvo.gui.redirect_ui import Ui_callScript
  20. from akvo.gui.callScript import callScript
  21. from akvo.tressel import mrsurvey
  22. from pyLemma import LemmaCore
  23. from pyLemma import FDEM1D
  24. from pyLemma import Merlin
  25. VERSION = pkg_resources.require("Akvo")[0].version
  26. GAMMAH = 42.577478518 * 1e-3 # Hz nT
  27. # Writes out numpy arrays into Eigen vectors as serialized by Lemma
  28. class MatrixXr(yaml.YAMLObject):
  29. yaml_tag = u'MatrixXr'
  30. def __init__(self, rows, cols, data):
  31. self.rows = rows
  32. self.cols = cols
  33. self.data = np.zeros((rows,cols))
  34. def __repr__(self):
  35. return "%s(rows=%r, cols=%r, data=%r)" % (self.__class__.__name__, self.rows, self.cols, self.data)
  36. class VectorXr(yaml.YAMLObject):
  37. yaml_tag = r'VectorXr'
  38. def __init__(self, array):
  39. self.size = np.shape(array)[0]
  40. self.data = array.tolist()
  41. def __repr__(self):
  42. # Converts to numpy array on import
  43. return "np.array(%r)" % (self.data)
  44. def setup_yaml():
  45. """ https://stackoverflow.com/a/8661021 """
  46. represent_dict_order = lambda self, data: self.represent_mapping('tag:yaml.org,2002:map', data.items())
  47. yaml.add_representer(OrderedDict, represent_dict_order)
  48. setup_yaml()
  49. class AkvoYamlNode(yaml.YAMLObject):
  50. yaml_tag = u'AkvoData'
  51. def __init__(self):
  52. self.Akvo_VERSION = VERSION
  53. self.Import = OrderedDict() # {}
  54. self.Processing = [] # OrderedDict()
  55. self.Stacking = OrderedDict()
  56. self.META = OrderedDict()
  57. def __repr__(self):
  58. return "%s(name=%r, Akvo_VERSION=%r, Import=%r, Processing=%r, self.Stacking=%r, self.META=%r)" % (
  59. self.__class__.__name__, self.Akvo_VERSION, self.Import, self.Processing, self.Stacking, self.META )
  60. try:
  61. import thread
  62. except ImportError:
  63. import _thread as thread #Py3K compatibility
  64. class MyPopup(QtWidgets.QWidget):
  65. def __init__(self, name):
  66. super().__init__()
  67. self.name = name
  68. self.initUI()
  69. def initUI(self):
  70. lblName = QtWidgets.QLabel(self.name, self)
  71. class ApplicationWindow(QtWidgets.QMainWindow):
  72. def __init__(self):
  73. super().__init__()
  74. #QtWidgets.QMainWindow.__init__(self)
  75. self.setAttribute(QtCore.Qt.WA_DeleteOnClose)
  76. # alternative to calling pyuic
  77. #self.ui = uic.loadUi('main.ui', self)
  78. self.ui = Ui_MainWindow()
  79. self.ui.setupUi(self)
  80. self.RAWDataProc = None
  81. self.YamlNode = AkvoYamlNode()
  82. # initialise some stuff
  83. self.ui.lcdNumberTauPulse2.setEnabled(0)
  84. self.ui.lcdNumberTauPulse1.setEnabled(0)
  85. self.ui.lcdNumberNuTx.setEnabled(0)
  86. self.ui.lcdNumberTuneuF.setEnabled(0)
  87. self.ui.lcdNumberSampFreq.setEnabled(0)
  88. self.ui.lcdNumberTauDelay.setEnabled(0)
  89. self.ui.lcdNumberNQ.setEnabled(0)
  90. self.logText = []
  91. #######################
  92. ##################### #
  93. ## Make connections # #
  94. ##################### #
  95. #######################
  96. ##############
  97. # Menu items #
  98. ##############
  99. self.ui.actionOpen_GMR.triggered.connect(self.openGMRRAWDataset)
  100. self.ui.actionSave_Preprocessed_Dataset.triggered.connect(self.SavePreprocess)
  101. self.ui.actionExport_Preprocessed_Dataset.triggered.connect(self.ExportPreprocess)
  102. self.ui.actionExport_Preprocessed_Dataset.setEnabled(False)
  103. self.ui.actionOpen_Preprocessed_Dataset.triggered.connect(self.OpenPreprocess)
  104. self.ui.actionAboutAkvo.triggered.connect(self.about)
  105. ###########
  106. # Buttons #
  107. ###########
  108. self.ui.loadDataPushButton.pressed.connect(self.loadRAW)
  109. self.ui.sumDataGO.pressed.connect( self.sumDataChans )
  110. self.ui.bandPassGO.pressed.connect( self.bandPassFilter )
  111. self.ui.filterDesignPushButton.pressed.connect( self.designFilter )
  112. self.ui.fdDesignPushButton.pressed.connect( self.designFDFilter )
  113. self.ui.downSampleGO.pressed.connect( self.downsample )
  114. self.ui.windowFilterGO.pressed.connect( self.windowFilter )
  115. self.ui.adaptGO.pressed.connect( self.adaptFilter )
  116. self.ui.adaptFDGO.pressed.connect( self.adaptFilterFD )
  117. self.ui.qdGO.pressed.connect( self.quadDet )
  118. self.ui.gateIntegrateGO.pressed.connect( self.gateIntegrate )
  119. self.ui.calcQGO.pressed.connect( self.calcQ )
  120. self.ui.FDSmartStackGO.pressed.connect( self.FDSmartStack )
  121. self.ui.harmonicGO.pressed.connect( self.harmonicModel )
  122. self.ui.K0Data.pressed.connect( self.K0DataSelect )
  123. self.ui.invDataButton.pressed.connect( self.invDataSelect )
  124. self.ui.invKernelButton.pressed.connect( self.invKernelSelect )
  125. self.ui.f0K1Spin.valueChanged.connect( self.LCDHarmonics )
  126. self.ui.f0KNSpin.valueChanged.connect( self.LCDHarmonics )
  127. self.ui.f0KsSpin.valueChanged.connect( self.LCDHarmonics )
  128. self.ui.f0Spin.valueChanged.connect( self.LCDHarmonics )
  129. self.ui.NHarmonicsFreqsSpin.valueChanged.connect( self.LCDHarmonics2 )
  130. self.ui.f1K1Spin.valueChanged.connect( self.LCDHarmonics2 )
  131. self.ui.f1KNSpin.valueChanged.connect( self.LCDHarmonics2 )
  132. self.ui.f1KsSpin.valueChanged.connect( self.LCDHarmonics2 )
  133. self.ui.f1Spin.valueChanged.connect( self.LCDHarmonics2 )
  134. self.ui.plotQD.setEnabled(False)
  135. self.ui.plotQD.pressed.connect( self.plotQD )
  136. self.ui.plotGI.setEnabled(False)
  137. self.ui.plotGI.pressed.connect( self.plotGI )
  138. # balance the Larmor frequency info and Tx off resonance info
  139. self.ui.intensitySpinBox.valueChanged.connect( self.adjustLarmor )
  140. self.ui.txv.valueChanged.connect( self.adjustB0 )
  141. self.ui.larmorv.valueChanged.connect( self.adjustB02 )
  142. # Kernel
  143. self.ui.calcK0.pressed.connect( self.calcK0 )
  144. # Inversion
  145. self.ui.invertButton.pressed.connect( self.QTInv )
  146. # META
  147. self.ui.locEdit.editingFinished.connect( self.logSite )
  148. self.ui.UTMzone.currentIndexChanged.connect( self.logSite )
  149. self.ui.latBand.currentIndexChanged.connect( self.logSite )
  150. self.ui.ellipsoid.currentIndexChanged.connect( self.logSite )
  151. self.ui.incSpinBox.valueChanged.connect( self.logSite )
  152. self.ui.decSpinBox.valueChanged.connect( self.logSite )
  153. self.ui.intensitySpinBox.valueChanged.connect( self.logSite )
  154. self.ui.tempSpinBox.valueChanged.connect( self.logSite )
  155. self.ui.timeEdit.timeChanged.connect( self.logSite )
  156. self.ui.dateEdit.dateChanged.connect( self.logSite )
  157. # this may call the yaml stuff too often...
  158. self.ui.txtComments.textChanged.connect( self.logSite )
  159. self.ui.plotLoops.pressed.connect( self.plotLoops2 )
  160. self.ui.removeLoopButton.pressed.connect( self.removeLoop )
  161. # Loops
  162. self.ui.addLoopButton.pressed.connect( self.loopAdd )
  163. self.loops = {}
  164. # hide header info box
  165. #self.ui.headerFileBox.setVisible(False)
  166. self.ui.headerFileBox.clicked.connect( self.headerBoxShrink )
  167. self.ui.headerBox2.setVisible(False)
  168. # Clean up the tab widget
  169. self.ui.actionPreprocessing.triggered.connect(self.addPreProc)
  170. self.ui.actionModelling.triggered.connect(self.addModelling)
  171. self.ui.actionInversion.triggered.connect(self.addInversion)
  172. # tabs
  173. #self.ui.ProcTabs.tabCloseRequested.connect( self.closeTabs )
  174. #self.ui.ProcTabs.tabBar().setTabButton(7, QtWidgets.QTabBar.RightSide,None)
  175. self.ui.ProcTabs.removeTab(4)
  176. self.ui.ProcTabs.removeTab(4)
  177. self.ui.ProcTabs.removeTab(4)
  178. self.ui.ProcTabs.removeTab(4)
  179. #self.ui.LoadTab.close( )
  180. # Add progressbar to statusbar
  181. self.ui.barProgress = QtWidgets.QProgressBar()
  182. self.ui.statusbar.addPermanentWidget(self.ui.barProgress, 0);
  183. self.ui.barProgress.setMaximumSize(100, 16777215);
  184. self.ui.barProgress.hide();
  185. self.ui.mplwidget_navigator.setCanvas(self.ui.mplwidget)
  186. #self.ui.mplwidget_navigator_2.setCanvas(self.ui.mplwidget)
  187. self.ui.txRxTable.setColumnCount(4)
  188. self.ui.txRxTable.setRowCount(0)
  189. self.ui.txRxTable.setHorizontalHeaderLabels( ["Label", "Geom.","Turns","Tx/Rx"] )
  190. ##########################################################################
  191. # layer Table
  192. self.ui.layerTableWidget.setRowCount(80)
  193. self.ui.layerTableWidget.setColumnCount(3)
  194. self.ui.layerTableWidget.setHorizontalHeaderLabels( [r"top [m]", r"bottom [m]", "ρ [Ωm]" ] )
  195. # do we want this
  196. self.ui.layerTableWidget.setDragDropOverwriteMode(False)
  197. self.ui.layerTableWidget.setDragEnabled(True)
  198. self.ui.layerTableWidget.setDragDropMode(QtWidgets.QAbstractItemView.InternalMove)
  199. pCell0 = QtWidgets.QTableWidgetItem()
  200. pCell0.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  201. pCell0.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  202. pCell0.setForeground( QtGui.QColor("black") )
  203. pCell0.setText(str("0"))
  204. self.ui.layerTableWidget.setItem(0, 0, pCell0)
  205. pCell1 = QtWidgets.QTableWidgetItem()
  206. #pCell1.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  207. pCell1.setBackground( QtGui.QColor("lightblue") ) #.lighter(110) )
  208. pCell1.setForeground( QtGui.QColor("black") )
  209. self.ui.layerTableWidget.setItem(0, 1, pCell1)
  210. pCell2 = QtWidgets.QTableWidgetItem()
  211. #pCell1.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  212. pCell2.setBackground( QtGui.QColor("white") ) #.lighter(110) )
  213. pCell2.setForeground( QtGui.QColor("black") )
  214. self.ui.layerTableWidget.setItem(0, 2, pCell2)
  215. for ir in range(1, self.ui.layerTableWidget.rowCount() ):
  216. for ic in range(0, self.ui.layerTableWidget.columnCount() ):
  217. pCell = QtWidgets.QTableWidgetItem()
  218. #pCell.setFlags(QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsSelectable)
  219. pCell.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  220. pCell.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  221. pCell.setForeground( QtGui.QColor("black"))
  222. self.ui.layerTableWidget.setItem(ir, ic, pCell)
  223. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  224. def LCDHarmonics(self):
  225. self.ui.lcdH1F.setEnabled(True)
  226. self.ui.lcdH1F.display( self.ui.f0Spin.value() * self.ui.f0K1Spin.value() )
  227. self.ui.lcdHNF.setEnabled(True)
  228. self.ui.lcdHNF.display( self.ui.f0Spin.value() * self.ui.f0KNSpin.value() )
  229. self.ui.lcdf0NK.setEnabled(True)
  230. self.ui.lcdf0NK.display( (self.ui.f0KNSpin.value()+1-self.ui.f0K1Spin.value()) * self.ui.f0KsSpin.value() )
  231. def LCDHarmonics2(self):
  232. if self.ui.NHarmonicsFreqsSpin.value() == 2:
  233. self.ui.lcdH1F2.setEnabled(True)
  234. self.ui.lcdH1F2.display( self.ui.f1Spin.value() * self.ui.f1K1Spin.value() )
  235. self.ui.lcdHNF2.setEnabled(True)
  236. self.ui.lcdHNF2.display( self.ui.f1Spin.value() * self.ui.f1KNSpin.value() )
  237. self.ui.lcdf0NK2.setEnabled(True)
  238. self.ui.lcdf0NK2.display( (self.ui.f1KNSpin.value()+1-self.ui.f1K1Spin.value()) * self.ui.f1KsSpin.value() )
  239. else:
  240. self.ui.lcdH1F2.setEnabled(False)
  241. self.ui.lcdHNF2.setEnabled(False)
  242. self.ui.lcdf0NK2.setEnabled(False)
  243. def adjustLarmor(self):
  244. """ Triggers when the B0 intensity spin box is cycled
  245. """
  246. self.ui.larmorv.setValue( self.ui.intensitySpinBox.value() * GAMMAH )
  247. self.ui.txv.setValue( self.RAWDataProc.transFreq - self.ui.larmorv.value() )
  248. def adjustB0(self):
  249. """ Triggers when tx frequency offset is cycled
  250. """
  251. self.ui.intensitySpinBox.setValue( (self.RAWDataProc.transFreq - self.ui.txv.value()) / GAMMAH )
  252. def adjustB02(self):
  253. """ Triggers when Larmor frequency spin box is cycled o
  254. """
  255. self.ui.intensitySpinBox.setValue( (self.ui.larmorv.value()) / GAMMAH )
  256. def closeTabs(self):
  257. #self.ui.ProcTabs.removeTab(idx)
  258. self.ui.ProcTabs.clear( )
  259. def addPreProc(self):
  260. if self.ui.actionPreprocessing.isChecked():
  261. self.ui.actionModelling.setChecked(False)
  262. self.ui.actionInversion.setChecked(False)
  263. self.ui.ProcTabs.clear( )
  264. self.ui.ProcTabs.insertTab( 0, self.ui.LoadTab, "Load" )
  265. self.ui.ProcTabs.insertTab( 1, self.ui.NCTab, "Noise removal" )
  266. self.ui.ProcTabs.insertTab( 2, self.ui.QCTab, "QC" )
  267. self.ui.ProcTabs.insertTab( 3, self.ui.METATab, "META" )
  268. self.ui.ProcTabs.insertTab( 4, self.ui.LogTab, "Log" )
  269. else:
  270. self.ui.ProcTabs.removeTab(0)
  271. self.ui.ProcTabs.removeTab(0)
  272. self.ui.ProcTabs.removeTab(0)
  273. self.ui.ProcTabs.removeTab(0)
  274. def addModelling(self):
  275. if self.ui.actionModelling.isChecked():
  276. self.ui.actionPreprocessing.setChecked(False)
  277. self.ui.actionInversion.setChecked(False)
  278. self.ui.ProcTabs.clear( )
  279. self.ui.ProcTabs.insertTab( 0, self.ui.KernTab, "Kernel" )
  280. self.ui.ProcTabs.insertTab( 1, self.ui.ModelTab, "Modelling" )
  281. #self.ui.ProcTabs.insertTab( 2, self.ui.LogTab, "Log" )
  282. else:
  283. self.ui.ProcTabs.removeTab(0)
  284. self.ui.ProcTabs.removeTab(0)
  285. def addInversion(self, idx):
  286. if self.ui.actionInversion.isChecked():
  287. self.ui.actionPreprocessing.setChecked(False)
  288. self.ui.actionModelling.setChecked(False)
  289. self.ui.ProcTabs.clear( )
  290. self.ui.ProcTabs.insertTab( 0, self.ui.InvertTab, "QT Inversion" )
  291. self.ui.ProcTabs.insertTab( 1, self.ui.AppraiseTab, "Appraisal" )
  292. #self.ui.ProcTabs.insertTab( 2, self.ui.LogTab, "Log" )
  293. else:
  294. self.ui.ProcTabs.removeTab(0)
  295. self.ui.ProcTabs.removeTab(0)
  296. def invDataSelect(self):
  297. try:
  298. with open('.akvo.last.path') as f:
  299. fpath = f.readline()
  300. pass
  301. except IOError as e:
  302. fpath = '.'
  303. self.akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.akvoProcData *.yaml)")[0]
  304. self.ui.dataText.clear()
  305. self.ui.dataText.append( self.akvoDataFile )
  306. def K0DataSelect(self):
  307. try:
  308. with open('.akvo.last.path') as f:
  309. fpath = f.readline()
  310. pass
  311. except IOError as e:
  312. fpath = '.'
  313. self.K0akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.akvoProcData *.yaml)")[0]
  314. # populate combo box with loops
  315. if os.path.isfile( self.K0akvoDataFile ):
  316. self.ui.K0DataText.clear()
  317. self.ui.K0DataText.append( self.K0akvoDataFile )
  318. with open(self.K0akvoDataFile) as f:
  319. parse = yaml.load( f, Loader=yaml.Loader )
  320. self.ui.txListWidget.clear()
  321. self.ui.rxListWidget.clear()
  322. for loop in parse.META["Loops"]:
  323. print(loop)
  324. self.ui.txListWidget.addItem( parse.META["Loops"][loop] )
  325. self.ui.rxListWidget.addItem( parse.META["Loops"][loop] )
  326. # TODO, why are these necessary
  327. self.ui.txListWidget.setCurrentRow(0)
  328. self.ui.rxListWidget.setCurrentRow(0)
  329. # else do nothing
  330. def invKernelSelect(self):
  331. try:
  332. with open('.akvo.last.path') as f:
  333. fpath = f.readline()
  334. pass
  335. except IOError as e:
  336. fpath = '.'
  337. self.K0file = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Kernel File', fpath, r"Akvo kernels (*.akvoK0)")[0]
  338. self.ui.kernelText.clear()
  339. self.ui.kernelText.append(self.K0file)
  340. def QTInv(self):
  341. print("Big RED INVERT BUTTON")
  342. try:
  343. with open('.akvo.last.path') as f:
  344. fpath = f.readline()
  345. pass
  346. except IOError as e:
  347. fpath = '.'
  348. #K0file = self.ui.kernelText.text()
  349. #akvoDataFile = self.ui.dataText.text()
  350. T2lo = self.ui.T2low.value()
  351. T2hi = self.ui.T2hi.value()
  352. NT2 = self.ui.NT2.value()
  353. dataChan = self.ui.invChan.currentText()
  354. t2Obj = self.ui.T2Objective.currentText()
  355. depthObj = self.ui.depthObjective.currentText()
  356. alpha_0 = self.ui.initialAlpha.value()
  357. invDict = dict()
  358. invDict["data"] = dict()
  359. invDict["data"] = dict()
  360. invDict["data"][self.akvoDataFile] = dict()
  361. invDict["data"][self.akvoDataFile]["channels"] = [dataChan,]
  362. invDict["K0"] = [self.K0file,]
  363. invDict["T2Bins"] = dict()
  364. invDict["T2Bins"]["low"] = T2lo
  365. invDict["T2Bins"]["high"] = T2hi
  366. invDict["T2Bins"]["number"] = NT2
  367. node = yaml.YAML()
  368. kpo = open( "invert.yml", 'w' )
  369. node.dump(invDict, kpo)
  370. callBox = callScript( ) #QtWidgets.QDialog()
  371. callBox.ui = Ui_callScript()
  372. callBox.ui.setupUi( callBox )
  373. callBox.setupQTInv( "invert.yml" )
  374. callBox.exec_()
  375. callBox.show()
  376. def calcK0(self):
  377. try:
  378. with open('.akvo.last.path') as f:
  379. fpath = f.readline()
  380. pass
  381. except IOError as e:
  382. fpath = '.'
  383. #self.K0akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  384. #akvoData = QtWidgets.QFileDialog.getOpenFileName(self, 'Open Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  385. txCoilList = self.ui.txListWidget.selectedItems() #currentItem().text()
  386. txCoils = []
  387. for txCoil in txCoilList:
  388. print("txCoil", txCoil.text())
  389. txCoils.append(txCoil.text())
  390. rxCoilList = self.ui.txListWidget.selectedItems() #currentItem().text()
  391. rxCoils = []
  392. for rxCoil in rxCoilList:
  393. print("rxCoil", rxCoil.text())
  394. rxCoils.append(rxCoil.text())
  395. saveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save kernel as", fpath, r"Merlin KernelV0 (*.akvoK0)")[0]
  396. intDict = dict()
  397. intDict["origin_n"] = self.ui.originN.value()
  398. intDict["origin_e"] = self.ui.originE.value()
  399. intDict["origin_d"] = self.ui.originD.value()
  400. intDict["size_n"] = self.ui.sizeN.value()
  401. intDict["size_e"] = self.ui.sizeE.value()
  402. intDict["size_d"] = self.ui.sizeD.value()
  403. intDict["nLay"] = self.ui.NLayers.value()
  404. intDict["thick1"] = self.ui.thick1.value()
  405. intDict["thickN"] = self.ui.thickN.value()
  406. intDict["Lspacing"] = self.ui.layerSpacing.currentText()
  407. intDict["minLevel"] = self.ui.minLevel.value()
  408. intDict["maxLevel"] = self.ui.maxLevel.value()
  409. intDict["branchTol"] = self.ui.branchTol.value()
  410. intDict["txCoils"] = txCoils
  411. intDict["rxCoils"] = rxCoils
  412. # conductivity model...
  413. #tops = self.ui.layerTableWidget.col(0)
  414. #print("Tops", tops)
  415. tops = []
  416. itop = 0
  417. while self.ui.layerTableWidget.item(itop, 0).text():
  418. tops.append( float(self.ui.layerTableWidget.item(itop,0).text()) )
  419. itop += 1
  420. bots = []
  421. ibot = 0
  422. while self.ui.layerTableWidget.item(ibot, 1).text():
  423. bots.append( float(self.ui.layerTableWidget.item(ibot, 1).text()) )
  424. ibot += 1
  425. sigs = []
  426. isig = 0
  427. while self.ui.layerTableWidget.item(isig, 2).text():
  428. sigs.append( 1./float(self.ui.layerTableWidget.item(isig, 2).text()) )
  429. isig += 1
  430. intDict["tops"] = tops
  431. intDict["bots"] = bots
  432. intDict["sigs"] = sigs
  433. node = yaml.YAML()
  434. kpo = open( "kparams.yml", 'w' )
  435. node.dump(intDict, kpo)
  436. callBox = callScript( ) #QtWidgets.QDialog()
  437. callBox.ui = Ui_callScript()
  438. callBox.ui.setupUi( callBox )
  439. callBox.setupCB( self.K0akvoDataFile, "kparams.yml", saveStr )
  440. callBox.exec_()
  441. callBox.show()
  442. def loopAdd(self):
  443. #print(self.ui.loopLabel.text())
  444. #print(self.ui.loopGeom.currentText())
  445. #print(self.ui.loopType.currentText())
  446. #print( "label len", len(self.ui.loopLabel.text()) )
  447. if len(self.ui.loopLabel.text().strip()) == 0:
  448. Error = QtWidgets.QMessageBox()
  449. Error.setWindowTitle("Error!")
  450. Error.setText("Loop label cannot be blank or repeated")
  451. Error.setDetailedText("Each loop label must be unique and comprise at least one character. Leading and trailing whitespace will be trimmed.")
  452. Error.exec_()
  453. else:
  454. ### Circular loop
  455. if self.ui.loopGeom.currentText() == "Circular":
  456. dialog = QtWidgets.QDialog()
  457. dialog.ui = Ui_circularLoopAdd()
  458. dialog.ui.setupUi(dialog)
  459. dialog.exec_()
  460. dialog.show()
  461. if dialog.result():
  462. cn = dialog.ui.centreNorth.value()
  463. ce = dialog.ui.centreEast.value()
  464. ht = dialog.ui.loopHeight.value()
  465. rad = dialog.ui.loopRadius.value()
  466. turns = dialog.ui.loopTurns.value()
  467. ns = dialog.ui.segments.value()
  468. cwise = dialog.ui.cwiseBox.currentIndex()
  469. #print("cwise", cwise)
  470. #dip = dialog.ui.dip.value()
  471. #azimuth = dialog.ui.az.value()
  472. self.loops[self.ui.loopLabel.text()] = FDEM1D.PolygonalWireAntenna()
  473. self.loops[self.ui.loopLabel.text()].SetNumberOfPoints( dialog.ui.segments.value() + 1 )
  474. self.loops[self.ui.loopLabel.text()].SetNumberOfTurns( dialog.ui.loopTurns.value() )
  475. points = np.linspace(0, 2*np.pi, dialog.ui.segments.value()+1)
  476. for iseg, ipt in enumerate(points):
  477. if cwise == 0:
  478. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( cn+rad*np.sin(ipt), ce+rad*np.cos(ipt), ht) )
  479. else:
  480. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( cn-rad*np.sin(ipt), ce+rad*np.cos(ipt), ht) )
  481. self.loops[self.ui.loopLabel.text()].SetNumberOfFrequencies(1)
  482. self.loops[self.ui.loopLabel.text()].SetCurrent(1.)
  483. if self.ui.loopGeom.currentText() == "figure-8":
  484. dialog = QtWidgets.QDialog()
  485. dialog.ui = Ui_figure8LoopAdd()
  486. dialog.ui.setupUi(dialog)
  487. dialog.exec_()
  488. dialog.show()
  489. if dialog.result():
  490. cn1 = dialog.ui.centreNorth1.value()
  491. ce1 = dialog.ui.centreEast1.value()
  492. cn2 = dialog.ui.centreNorth2.value()
  493. ce2 = dialog.ui.centreEast2.value()
  494. ht = dialog.ui.loopHeight.value()
  495. rad = dialog.ui.loopRadius.value()
  496. turns = dialog.ui.loopTurns.value()
  497. ns = dialog.ui.segments.value()
  498. cwise = dialog.ui.cwiseBox.currentIndex()
  499. self.loops[self.ui.loopLabel.text()] = FDEM1D.PolygonalWireAntenna()
  500. self.loops[self.ui.loopLabel.text()].SetNumberOfPoints( 2*dialog.ui.segments.value() + 1 )
  501. self.loops[self.ui.loopLabel.text()].SetNumberOfTurns( dialog.ui.loopTurns.value() )
  502. # first loop
  503. points = np.linspace(0, 2*np.pi, dialog.ui.segments.value())
  504. ptsL = []
  505. for iseg, ipt in enumerate(points):
  506. ptsL.append( np.array( [cn1+rad*np.sin(ipt), ce1+rad*np.cos(ipt)] ))
  507. lenP = len(points)
  508. # search for closest point, ugly and not efficient, but it's not critical here
  509. closest = 1e8
  510. iclosest = -1
  511. for iseg, ipt in enumerate(points):
  512. p2 = np.array([cn2-rad*np.sin(ipt), ce2-rad*np.cos(ipt)])
  513. for p1 in ptsL:
  514. dist = np.linalg.norm(p1-p2)
  515. if dist < closest:
  516. closest = dist
  517. iclosest = iseg
  518. points = np.concatenate([points[iclosest::],points[0:iclosest]])
  519. point1 = False
  520. for iseg, ipt in enumerate(points):
  521. if cwise == 0:
  522. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( cn1+rad*np.sin(ipt), ce1+rad*np.cos(ipt), ht) )
  523. if not point1:
  524. point1 = ( cn1+rad*np.sin(ipt), ce1+rad*np.cos(ipt), ht)
  525. else:
  526. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( cn1-rad*np.sin(ipt), ce1+rad*np.cos(ipt), ht) )
  527. if not point1:
  528. point1 = ( cn1-rad*np.sin(ipt), ce1+rad*np.cos(ipt), ht)
  529. lenP = len(points)
  530. # fill
  531. for iseg, ipt in enumerate(points):
  532. if cwise == 0:
  533. self.loops[self.ui.loopLabel.text()].SetPoint(lenP+iseg, ( cn2-rad*np.cos(ipt), ce2-rad*np.sin(ipt), ht) )
  534. else:
  535. self.loops[self.ui.loopLabel.text()].SetPoint(lenP+iseg, ( cn2+rad*np.cos(ipt), ce2+rad*np.sin(ipt), ht) )
  536. # close loop
  537. self.loops[self.ui.loopLabel.text()].SetPoint(lenP+iseg+1, point1)
  538. self.loops[self.ui.loopLabel.text()].SetNumberOfFrequencies(1)
  539. self.loops[self.ui.loopLabel.text()].SetCurrent(1.)
  540. if self.ui.loopGeom.currentText() == "polygon":
  541. dialog = QtWidgets.QDialog()
  542. dialog.ui = Ui_polygonalLoopAdd()
  543. dialog.ui.setupUi(dialog)
  544. ##########################################################################
  545. # Loop Table
  546. dialog.ui.loopTableWidget.setRowCount(80)
  547. dialog.ui.loopTableWidget.setColumnCount(3)
  548. #dialog.ui.loopTableWidget.horizontalHeader().setSectionResizeMode(0, QtGui.Qt.QHeaderView.Stretch)
  549. dialog.ui.loopTableWidget.setHorizontalHeaderLabels( \
  550. ["Northing [m]","Easting [m]","Height [m]"])
  551. for ir in range(0, dialog.ui.loopTableWidget.rowCount() ):
  552. for ic in range(0, 3): #dialog.ui.loopTableWidget.columnCount() ):
  553. pCell = QtWidgets.QTableWidgetItem()
  554. #pCell.setFlags(QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsSelectable)
  555. #pCell.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  556. #pCell.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  557. dialog.ui.loopTableWidget.setItem(ir, ic, pCell)
  558. #dialog.ui.loopTableWidget.cellChanged.connect(self.loopCellChanged)
  559. #dialog.ui.loopTableWidget.itemClicked.connect(self.loopCellClicked)
  560. #self.ui.loopTableWidget.cellPressed.connect(self.loopCellChanged)
  561. #self.ui.loopTableWidget.cellPressed.connect(self.loopCellClicked)
  562. dialog.ui.loopTableWidget.setDragDropOverwriteMode(False)
  563. dialog.ui.loopTableWidget.setDragEnabled(False)
  564. #self.ui.loopTableWidget.setDragDropMode(QtWidgets.QAbstractItemView.InternalMove)
  565. dialog.ui.loopTableWidget.resizeColumnsToContents()
  566. dialog.exec_()
  567. dialog.show()
  568. if dialog.result():
  569. self.loops[self.ui.loopLabel.text()] = FDEM1D.PolygonalWireAntenna()
  570. self.loops[self.ui.loopLabel.text()].SetNumberOfTurns( dialog.ui.loopTurns.value() )
  571. npts = 0
  572. for ir in range(0, dialog.ui.loopTableWidget.rowCount() ):
  573. if len(dialog.ui.loopTableWidget.item(ir, 0).text()) == 0:
  574. break
  575. npts += 1
  576. self.loops[self.ui.loopLabel.text()].SetNumberOfPoints( npts )
  577. for ir in range( 0, npts ):
  578. self.loops[self.ui.loopLabel.text()].SetPoint(ir, eval(dialog.ui.loopTableWidget.item(ir, 0).text()), \
  579. eval(dialog.ui.loopTableWidget.item(ir, 1).text()), \
  580. eval(dialog.ui.loopTableWidget.item(ir, 2).text()) \
  581. )
  582. self.loops[self.ui.loopLabel.text()].SetNumberOfFrequencies(1)
  583. self.loops[self.ui.loopLabel.text()].SetCurrent(1.)
  584. # general across all types
  585. if dialog.result():
  586. yml = open( self.ui.loopLabel.text() + ".pwa", 'w' )
  587. print( self.loops[self.ui.loopLabel.text()], file=yml)
  588. # update the table
  589. self.ui.txRxTable.setRowCount( len(self.loops.keys()) )
  590. pCell = QtWidgets.QTableWidgetItem()
  591. pCell.setText( self.ui.loopLabel.text() )
  592. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled )
  593. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 0, pCell)
  594. gCell = QtWidgets.QTableWidgetItem()
  595. gCell.setText( self.ui.loopGeom.currentText() )
  596. gCell.setFlags( QtCore.Qt.ItemIsEnabled )
  597. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 1, gCell)
  598. tCell = QtWidgets.QTableWidgetItem()
  599. tCell.setText( str(dialog.ui.loopTurns.value()) )
  600. tCell.setFlags( QtCore.Qt.ItemIsEnabled )
  601. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 2, tCell)
  602. txCell = QtWidgets.QTableWidgetItem()
  603. txCell.setText( str(self.ui.loopType.currentText()) )
  604. txCell.setFlags( QtCore.Qt.ItemIsEnabled )
  605. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 3, txCell)
  606. def headerBoxShrink(self):
  607. #self.ui.headerFileBox.setVisible(False)
  608. if self.ui.headerFileBox.isChecked( ):
  609. #self.ui.headerFileBox.setMinimumSize(460,250)
  610. self.ui.headerBox2.setVisible(True)
  611. else:
  612. #self.ui.headerFileBox.setMinimumSize(460,50)
  613. self.ui.headerBox2.setVisible(False)
  614. def sigmaCellChanged(self):
  615. self.ui.layerTableWidget.cellChanged.disconnect(self.sigmaCellChanged)
  616. # TODO consider building the model whenever this is called. Would be nice to be able to
  617. # do that. Would require instead dist of T2 I guess.
  618. jj = self.ui.layerTableWidget.currentColumn()
  619. ii = self.ui.layerTableWidget.currentRow()
  620. val = "class 'NoneType'>"
  621. try:
  622. val = eval (str( self.ui.layerTableWidget.item(ii, jj).text() ))
  623. except:
  624. #if jj != 0:
  625. # Error = QtWidgets.QMessageBox()
  626. # Error.setWindowTitle("Error!")
  627. # Error.setText("Non-numeric value encountered")
  628. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  629. return
  630. if jj == 1:
  631. #item.setFlags(QtCore.Qt.ItemIsEnabled)
  632. pCell = self.ui.layerTableWidget.item(ii, jj)
  633. pCell.setBackground( QtGui.QColor("white"))
  634. pCell = self.ui.layerTableWidget.item(ii+1, jj-1)
  635. if str(type(pCell)) == "<class 'NoneType'>":
  636. pCell = QtWidgets.QTableWidgetItem()
  637. pCell.setFlags(QtCore.Qt.ItemIsEnabled)
  638. self.ui.layerTableWidget.setItem(ii+1, jj-1, pCell)
  639. if ii == 0:
  640. pCell.setText(str(val))
  641. #pCell3 = self.ui.layerTableWidget.item(ii+1, jj)
  642. #print ("setting", ii, jj, type(pCell3))
  643. #print ( "setting", ii, jj, type(pCell3))
  644. #pCell3.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  645. #pCell3.setFlags( QtCore.Qt.ItemIsEditable )
  646. elif ii > 0:
  647. val2 = eval (str( self.ui.layerTableWidget.item(ii-1, jj).text() ))
  648. #print ("val2", val2, val, type(val))
  649. #if str(type(pCell)) == "<class 'NoneType'>":
  650. if type(val) == str or val > val2:
  651. pCell.setText(str(val))
  652. else:
  653. Error = QtWidgets.QMessageBox()
  654. Error.setWindowTitle("Error!")
  655. Error.setText("Non-increasing layer detected")
  656. Error.setDetailedText("Each layer interface must be below the one above it.")
  657. Error.exec_()
  658. #err_msg = "Quadrature detection has already been done!"
  659. #reply =QtWidgets.QMessageBox.critical(self, 'Error',
  660. # err_msg)
  661. pCell2 = self.ui.layerTableWidget.item(ii, jj)
  662. pCell2.setText(str(""))
  663. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  664. return
  665. # enable next layer
  666. pCell4 = self.ui.layerTableWidget.item(ii+1, jj)
  667. pCell4.setBackground( QtGui.QColor("lightblue") ) #.lighter(110))
  668. pCell4.setForeground( QtGui.QColor("black"))
  669. pCell4.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  670. pCell5 = self.ui.layerTableWidget.item(ii+1, jj+1)
  671. pCell5.setBackground( QtGui.QColor("white"))
  672. pCell5.setForeground( QtGui.QColor("black"))
  673. pCell5.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  674. if ii == 0 and jj == 0:
  675. pCell = self.ui.layerTableWidget.item(0, 1)
  676. pCell.setBackground(QtGui.QColor("lightblue")) #.lighter(110) )
  677. pCell.setForeground( QtGui.QColor("black"))
  678. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  679. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  680. def plotLoops2(self):
  681. self.ui.mplwidget.reAxH(1)
  682. for loop in self.loops:
  683. POINTS = self.loops[loop].GetPoints().T
  684. self.ui.mplwidget.ax1.plot( POINTS[:,1], POINTS[:,0], label=loop )
  685. self.ui.mplwidget.ax1.spines['right'].set_visible(False)
  686. self.ui.mplwidget.ax1.spines['top'].set_visible(False)
  687. self.ui.mplwidget.ax1.set_xlabel("easting (m)")
  688. self.ui.mplwidget.ax1.set_ylabel("northing (m)")
  689. self.ui.mplwidget.ax1.legend()
  690. self.ui.mplwidget.ax1.set_aspect('equal') #, adjustable='box')
  691. self.ui.mplwidget.draw()
  692. def removeLoop(self):
  693. del self.loops[ self.ui.txRxTable.item( self.ui.txRxTable.currentRow(), 0).text() ]
  694. self.ui.txRxTable.removeRow(self.ui.txRxTable.currentRow())
  695. def about(self):
  696. # TODO proper popup with info
  697. #self.w = MyPopup("""About Akvo \n
  698. # Akvo is an open source project developed primarily by Trevor Irons.
  699. #""")
  700. #self.w.setGeometry(100, 100, 400, 200)
  701. #self.w.show()
  702. #print("ABOUT")
  703. # Just a splash screen for now
  704. logo = pkg_resources.resource_filename(__name__, 'akvo-about.png')
  705. pixmap = QtGui.QPixmap(logo)
  706. self.splash = QtWidgets.QSplashScreen(pixmap, QtCore.Qt.WindowStaysOnTopHint)
  707. self.splash.show()
  708. def connectGMRDataProcessor(self):
  709. self.RAWDataProc = mrsurvey.GMRDataProcessor()
  710. self.RAWDataProc.progressTrigger.connect(self.updateProgressBar)
  711. self.RAWDataProc.enableDSPTrigger.connect(self.enableDSP)
  712. self.RAWDataProc.doneTrigger.connect(self.doneStatus)
  713. self.RAWDataProc.updateProcTrigger.connect(self.updateProc)
  714. def openGMRRAWDataset(self):
  715. """ Opens a GMR header file
  716. """
  717. try:
  718. with open('.gmr.last.path') as f:
  719. fpath = f.readline()
  720. pass
  721. except IOError as e:
  722. fpath = '.'
  723. self.headerstr = QtWidgets.QFileDialog.getOpenFileName(self, 'Open File', fpath)[0] # arg2 = File Type 'All Files (*)'
  724. self.ui.headerFileTextBrowser.clear()
  725. self.ui.headerFileTextBrowser.append(self.headerstr)
  726. if len(self.headerstr) == 0:
  727. return
  728. # clear the processing log
  729. self.ui.logTextBrowser.clear()
  730. self.logText = [] #MAK 20170126
  731. path,filen=os.path.split(str(self.headerstr))
  732. f = open('.gmr.last.path', 'w')
  733. f.write( str(self.headerstr) ) # prompt last file
  734. self.connectGMRDataProcessor()
  735. self.RAWDataProc.readHeaderFile(str(self.headerstr))
  736. # If we got this far, enable all the widgets
  737. self.ui.lcdNumberTauPulse1.setEnabled(True)
  738. self.ui.lcdNumberNuTx.setEnabled(True)
  739. self.ui.lcdNumberTuneuF.setEnabled(True)
  740. self.ui.lcdNumberSampFreq.setEnabled(True)
  741. self.ui.lcdNumberNQ.setEnabled(True)
  742. self.ui.headerFileBox.setEnabled(True)
  743. self.ui.headerFileBox.setChecked( True )
  744. self.ui.headerBox2.setVisible(True)
  745. self.ui.inputRAWParametersBox.setEnabled(True)
  746. self.ui.loadDataPushButton.setEnabled(True)
  747. # make plots as you import the dataset
  748. self.ui.plotImportCheckBox.setEnabled(True)
  749. self.ui.plotImportCheckBox.setChecked(True)
  750. # Update info from the header into the GUI
  751. self.ui.pulseTypeTextBrowser.clear()
  752. self.ui.pulseTypeTextBrowser.append(self.RAWDataProc.pulseType)
  753. self.ui.lcdNumberNuTx.display(self.RAWDataProc.transFreq)
  754. self.ui.lcdNumberTauPulse1.display(1e3*self.RAWDataProc.pulseLength[0])
  755. self.ui.lcdNumberTuneuF.display(self.RAWDataProc.TuneCapacitance)
  756. self.ui.lcdNumberSampFreq.display(self.RAWDataProc.samp)
  757. self.ui.lcdNumberNQ.display(self.RAWDataProc.nPulseMoments)
  758. self.ui.DeadTimeSpinBox.setValue(1e3*self.RAWDataProc.deadTime)
  759. self.ui.CentralVSpinBox.setValue( self.RAWDataProc.transFreq )
  760. # set the B0 field according to Tx as an initial guess
  761. self.ui.intensitySpinBox.setValue( self.RAWDataProc.transFreq/GAMMAH )
  762. if self.RAWDataProc.pulseType != "FID":
  763. self.ui.lcdNumberTauPulse2.setEnabled(1)
  764. self.ui.lcdNumberTauPulse2.display(1e3*self.RAWDataProc.pulseLength[1])
  765. self.ui.lcdNumberTauDelay.setEnabled(1)
  766. self.ui.lcdNumberTauDelay.display(1e3*self.RAWDataProc.interpulseDelay)
  767. self.ui.FIDProcComboBox.clear()
  768. if self.RAWDataProc.pulseType == "4PhaseT1" or self.RAWDataProc.pulseType == "T1":
  769. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1")
  770. self.ui.FIDProcComboBox.insertItem(1, "Pulse 2")
  771. self.ui.FIDProcComboBox.insertItem(2, "Both")
  772. self.ui.FIDProcComboBox.setCurrentIndex (1)
  773. elif self.RAWDataProc.pulseType == "FID":
  774. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1")
  775. self.ui.FIDProcComboBox.setCurrentIndex (0)
  776. def ExportPreprocess(self):
  777. """ This method exports to YAML
  778. """
  779. try:
  780. with open('.akvo.last.yaml.path') as f:
  781. fpath = f.readline()
  782. pass
  783. except IOError as e:
  784. fpath = '.'
  785. fdir = os.path.dirname(fpath)
  786. # Pickle the preprocessed data dictionary
  787. SaveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save as", fdir, r"Processed data (*.akvoProcData)")[0]
  788. spath,filen=os.path.split(str(SaveStr))
  789. f = open('.akvo.last.yaml.path', 'w')
  790. f.write( str(spath) ) # prompt last file
  791. INFO = {}
  792. INFO["headerstr"] = str(self.headerstr)
  793. INFO["pulseType"] = self.RAWDataProc.pulseType
  794. INFO["transFreq"] = self.RAWDataProc.transFreq.tolist()
  795. INFO["pulseLength"] = self.RAWDataProc.pulseLength.tolist()
  796. INFO["TuneCapacitance"] = self.RAWDataProc.TuneCapacitance.tolist()
  797. #INFO["samp"] = self.RAWDataProc.samp
  798. INFO["nPulseMoments"] = self.RAWDataProc.nPulseMoments
  799. #INFO["deadTime"] = self.RAWDataProc.deadTime
  800. INFO["processed"] = "Akvo v" + VERSION + ", on " + time.strftime("%d/%m/%Y")
  801. # Pulse current info
  802. ip = 0
  803. INFO["Pulses"] = {}
  804. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  805. qq = []
  806. qv = []
  807. for ipm in range(self.RAWDataProc.DATADICT["nPulseMoments"]):
  808. #for istack in self.RAWDataProc.DATADICT["stacks"]:
  809. # print ("stack q", self.RAWDataProc.DATADICT[pulse]["Q"][ipm,istack-1])
  810. qq.append(np.mean( self.RAWDataProc.DATADICT[pulse]["Q"][ipm,:]) )
  811. qv.append(np.std( self.RAWDataProc.DATADICT[pulse]["Q"][ipm,:]/self.RAWDataProc.pulseLength[ip] ))
  812. qq = np.array(qq)
  813. qv = np.array(qv)
  814. iQ = np.argsort(np.array(qq))
  815. qq = np.array(qq)[iQ]
  816. qv = np.array(qv)[iQ]
  817. INFO["Pulses"][pulse] = {}
  818. INFO["Pulses"][pulse]["units"] = "A"
  819. INFO["Pulses"][pulse]["current"] = VectorXr(qq/self.RAWDataProc.pulseLength[ip])
  820. INFO["Pulses"][pulse]["variance"] = VectorXr(qv)
  821. ip += 1
  822. # Data
  823. if self.RAWDataProc.gated == True:
  824. INFO["Gated"] = {}
  825. INFO["Gated"]["abscissa units"] = "ms"
  826. INFO["Gated"]["data units"] = "nT"
  827. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  828. INFO["Gated"][pulse] = {}
  829. INFO["Gated"][pulse]["abscissa"] = VectorXr( self.RAWDataProc.GATEDABSCISSA )
  830. INFO["Gated"][pulse]["windows"] = VectorXr( self.RAWDataProc.GATEDWINDOW )
  831. for ichan in self.RAWDataProc.DATADICT[pulse]["chan"]:
  832. INFO["Gated"][pulse]["Chan. " + str(ichan)] = {}
  833. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["STD"] = VectorXr( np.std(self.RAWDataProc.GATED[ichan]["NR"], axis=0) )
  834. INFO["Gated"][pulse]["Chan. " + str(ichan)]["STD"] = VectorXr( np.average(self.RAWDataProc.GATED[ichan]["BN"], axis=0) )
  835. for ipm in range(self.RAWDataProc.DATADICT["nPulseMoments"]):
  836. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " CA"] = VectorXr(self.RAWDataProc.GATED[ichan]["CA"][ipm])
  837. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " RE"] = VectorXr(self.RAWDataProc.GATED[ichan]["RE"][ipm])
  838. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " IM"] = VectorXr(self.RAWDataProc.GATED[ichan]["IM"][ipm])
  839. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " IP"] = VectorXr(self.RAWDataProc.GATED[ichan]["IP"][ipm])
  840. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " NR"] = VectorXr(self.RAWDataProc.GATED[ichan]["NR"][ipm])
  841. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " STD" ] = VectorXr(self.RAWDataProc.GATED[ichan]["SIGMA"][ipm])
  842. # we have gated data
  843. # Window edges
  844. # Window centres
  845. with open(SaveStr, 'w') as outfile:
  846. #for line in self.logText:
  847. # outfile.write(line+"\n")
  848. yaml.dump(self.YamlNode, outfile)
  849. yaml.dump(INFO, outfile) #, default_flow_style=False)
  850. def SavePreprocess(self):
  851. #if "Saved" not in self.YamlNode.Processing.keys():
  852. # self.YamlNode.Processing["Saved"] = []
  853. #self.YamlNode.Processing["Saved"].append(datetime.datetime.now().isoformat())
  854. #self.Log()
  855. import pickle, os
  856. try:
  857. with open('.akvo.last.path') as f:
  858. fpath = f.readline()
  859. pass
  860. except IOError as e:
  861. fpath = '.'
  862. fdir = os.path.dirname(fpath)
  863. # Pickle the preprocessed data dictionary
  864. SaveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save as", fdir, r"Pickle (*.dmp)")
  865. spath,filen=os.path.split(str(SaveStr[0]))
  866. f = open('.akvo.last.path', 'w')
  867. f.write( str(spath) ) # prompt last file
  868. save = open(SaveStr[0], 'wb')
  869. # Add some extra info
  870. INFO = {}
  871. INFO["pulseType"] = self.RAWDataProc.pulseType
  872. INFO["prePulseDelay"] = self.RAWDataProc.prePulseDelay
  873. INFO["interpulseDelay"] = self.RAWDataProc.interpulseDelay
  874. INFO["transFreq"] = self.RAWDataProc.transFreq
  875. INFO["pulseLength"] = self.RAWDataProc.pulseLength
  876. INFO["TuneCapacitance"] = self.RAWDataProc.TuneCapacitance
  877. INFO["samp"] = self.RAWDataProc.samp
  878. INFO["nPulseMoments"] = self.RAWDataProc.nPulseMoments
  879. INFO["deadTime"] = self.RAWDataProc.deadTime
  880. INFO["transFreq"] = self.RAWDataProc.transFreq
  881. INFO["headerstr"] = str(self.headerstr)
  882. INFO["nDAQVersion"] = self.RAWDataProc.nDAQVersion
  883. INFO["log"] = yaml.dump( self.YamlNode )
  884. TXRX = []
  885. for ir in range(0, self.ui.txRxTable.rowCount() ):
  886. txrx = []
  887. for ic in range(0, self.ui.txRxTable.columnCount() ):
  888. txrx.append( self.ui.txRxTable.item(ir, ic).text() )
  889. TXRX.append(txrx)
  890. INFO["TXRX"] = TXRX
  891. if "Stacking" in self.YamlNode.Stacking.keys():
  892. INFO["sigma"] = self.RawDataProc.sigma
  893. if "Gate integrate" in self.YamlNode.Stacking.keys():
  894. INFO["GATED"] = self.RAWDataProc.GATED
  895. print("META SAVE")
  896. print("INFO log", INFO["log"])
  897. self.RAWDataProc.DATADICT["INFO"] = INFO
  898. pickle.dump(self.RAWDataProc.DATADICT, save)
  899. save.close()
  900. # Export XML file suitable for USGS ScienceBase Data Release
  901. def ExportXML(self):
  902. """ This is a filler function for use by USGS collaborators
  903. """
  904. return 42
  905. def OpenPreprocess(self):
  906. import pickle
  907. try:
  908. with open('.akvo.last.path') as f:
  909. fpath = f.readline()
  910. pass
  911. except IOError as e:
  912. fpath = '.'
  913. #filename = QtWidgets.QFileDialog.getOpenFileName(self, 'Open File', '.')
  914. fpath = QtWidgets.QFileDialog.getOpenFileName(self, 'Open preprocessed file', fpath, r"Pickle Files (*.dmp)")[0]
  915. f = open('.akvo.last.path', 'w')
  916. f.write( str(fpath) ) # prompt last file
  917. self.ui.logTextBrowser.clear()
  918. self.logText = []
  919. if len(fpath) == 0:
  920. return
  921. pfile = open(fpath,'rb')
  922. unpickle = pickle.Unpickler(pfile)
  923. self.connectGMRDataProcessor()
  924. self.RAWDataProc.DATADICT = unpickle.load()
  925. # This line causes Akvo to crash, if the header file is no longer there. We don't need to load the
  926. # file. TODO, need to disable "Load Data" in Load command though, as that is no longer possible.
  927. #self.RAWDataProc.readHeaderFile(self.RAWDataProc.DATADICT["INFO"]["headerstr"])
  928. self.headerstr = self.RAWDataProc.DATADICT["INFO"]["headerstr"]
  929. self.RAWDataProc.pulseType = self.RAWDataProc.DATADICT["INFO"]["pulseType"]
  930. self.RAWDataProc.transFreq = self.RAWDataProc.DATADICT["INFO"]["transFreq"]
  931. self.RAWDataProc.pulseLength = self.RAWDataProc.DATADICT["INFO"]["pulseLength"]
  932. self.RAWDataProc.TuneCapacitance = self.RAWDataProc.DATADICT["INFO"]["TuneCapacitance"]
  933. self.RAWDataProc.samp = self.RAWDataProc.DATADICT["INFO"]["samp"]
  934. self.RAWDataProc.nPulseMoments = self.RAWDataProc.DATADICT["INFO"]["nPulseMoments"]
  935. self.RAWDataProc.deadTime = self.RAWDataProc.DATADICT["INFO"]["deadTime"]
  936. self.RAWDataProc.transFreq = self.RAWDataProc.DATADICT["INFO"]["transFreq"]
  937. self.RAWDataProc.nDAQVersion = self.RAWDataProc.DATADICT["INFO"]["nDAQVersion"]
  938. #self.RAWDataProc.prePulseDelay = self.RAWDataProc.DATADICT["INFO"]["prePulseDelay"]
  939. self.RAWDataProc.dt = 1./self.RAWDataProc.samp
  940. self.dataChan = self.RAWDataProc.DATADICT[ self.RAWDataProc.DATADICT["PULSES"][0] ]["chan"]
  941. # Keep backwards compatibility with prior saved pickles???
  942. #self.ui.logTextBrowser.clear()
  943. #self.ui.logTextBrowser.append( yaml.dump(self.YamlNode)) #, default_flow_style=False) )
  944. #for a in self.logText:
  945. # self.ui.logTextBrowser.append(str(a))
  946. #self.ui.logTextBrowser
  947. #self.ui.logTextBrowser.clear()
  948. #print ( self.RAWDataProc.DATADICT["INFO"]["log"] )
  949. if "TXRX" in self.RAWDataProc.DATADICT["INFO"].keys():
  950. TXRX = self.RAWDataProc.DATADICT["INFO"]["TXRX"]
  951. self.ui.txRxTable.setRowCount( len(TXRX))
  952. for irow, row in enumerate(TXRX):
  953. for icol, val in enumerate(row):
  954. pCell = QtWidgets.QTableWidgetItem()
  955. pCell.setText( val )
  956. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled )
  957. self.ui.txRxTable.setItem(irow, icol, pCell)
  958. self.logText = self.RAWDataProc.DATADICT["INFO"]["log"] # YAML
  959. parse = yaml.load( self.logText, Loader=yaml.Loader )
  960. self.YamlNode = AkvoYamlNode( ) #self.logText )
  961. self.YamlNode.Akvo_VERSION = (yaml.load( self.logText, Loader=yaml.Loader )).Akvo_VERSION
  962. AKVO_VERSION = np.array(self.YamlNode.Akvo_VERSION.split("."), dtype=int)
  963. if AKVO_VERSION[0] >= 1 and AKVO_VERSION[1] >= 2 and AKVO_VERSION[2] >= 3:
  964. self.RAWDataProc.interpulseDelay = self.RAWDataProc.DATADICT["INFO"]["interpulseDelay"]
  965. self.YamlNode.Import = OrderedDict(parse.Import)
  966. self.YamlNode.Processing = list(parse.Processing)
  967. self.YamlNode.Stacking = OrderedDict(parse.Stacking)
  968. self.YamlNode.META = OrderedDict(parse.META)
  969. self.logGUI()
  970. self.Log()
  971. #self.ui.logTextBrowser.append( yaml.dump(self.YamlNode)) #, default_flow_style=False) )
  972. #except KeyError:
  973. # pass
  974. # Remove "Saved" and "Loaded" from processing flow
  975. #if "Loaded" not in self.YamlNode.Processing.keys():
  976. # self.YamlNode.Processing["Loaded"] = []
  977. #self.YamlNode.Processing["Loaded"].append(datetime.datetime.now().isoformat())
  978. #self.Log()
  979. if "Stacking" in self.YamlNode.Stacking.keys():
  980. self.RAWDataProc.sigma = self.RAWDataProc.DATADICT["sigma"]
  981. # check to see if gate integration has been done, and it's ready to send to Merlin
  982. if "Gate integrate" in self.YamlNode.Stacking.keys():
  983. self.RAWDataProc.GATED = self.RAWDataProc.DATADICT["GATED"]
  984. self.ui.actionExport_Preprocessed_Dataset.setEnabled(True)
  985. #self.ui.plotGI.setEnabled(True)
  986. # If we got this far, enable all the widgets
  987. self.ui.lcdNumberTauPulse1.setEnabled(True)
  988. self.ui.lcdNumberNuTx.setEnabled(True)
  989. self.ui.lcdNumberTuneuF.setEnabled(True)
  990. self.ui.lcdNumberSampFreq.setEnabled(True)
  991. self.ui.lcdNumberNQ.setEnabled(True)
  992. self.ui.headerFileBox.setEnabled(True)
  993. self.ui.headerFileBox.setChecked( True )
  994. self.headerBoxShrink()
  995. #self.ui.headerBox2.setVisible(True)
  996. self.ui.inputRAWParametersBox.setEnabled(False)
  997. self.ui.loadDataPushButton.setEnabled(True)
  998. # make plots as you import the datasetmost
  999. self.ui.plotImportCheckBox.setEnabled(True)
  1000. self.ui.plotImportCheckBox.setChecked(True)
  1001. # enable the LCDs
  1002. self.ui.lcdNumberFID1Length.setEnabled(1)
  1003. self.ui.lcdNumberFID2Length.setEnabled(1)
  1004. self.ui.lcdNumberResampFreq.setEnabled(1)
  1005. self.ui.lcdTotalDeadTime.setEnabled(1)
  1006. # enable META tab
  1007. self.ui.METATab.setEnabled(1)
  1008. self.ui.siteBox.setEnabled(1)
  1009. #self.ui.lcdTotalDeadTime.display( 1e3*self.RAWDataProc.DATADICT["INFO"]["deadTime"] )
  1010. self.ui.headerFileTextBrowser.clear( )
  1011. self.ui.headerFileTextBrowser.append( self.RAWDataProc.DATADICT["INFO"]["headerstr"] )
  1012. if u"Pulse 1" in self.RAWDataProc.DATADICT.keys():
  1013. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  1014. self.ui.lcdTotalDeadTime.display( round(1e3*(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1]), 3) )
  1015. #print("CALC DEAD", (1e3*(self.RAWDataProc.prePulseDelay))) # - (self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1])), 3) )
  1016. if u"Pulse 2" in self.RAWDataProc.DATADICT.keys():
  1017. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  1018. self.ui.lcdTotalDeadTime.display( 1e3 * (self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 2"]["PULSE_TIMES"][-1]) )
  1019. # Update info from the header into the GUI
  1020. self.ui.pulseTypeTextBrowser.clear()
  1021. self.ui.pulseTypeTextBrowser.append(self.RAWDataProc.pulseType)
  1022. self.ui.lcdNumberNuTx.display(self.RAWDataProc.transFreq)
  1023. self.ui.lcdNumberTauPulse1.display(1e3*self.RAWDataProc.pulseLength[0])
  1024. self.ui.lcdNumberTuneuF.display(self.RAWDataProc.TuneCapacitance)
  1025. self.ui.lcdNumberResampFreq.display(self.RAWDataProc.samp)
  1026. self.ui.lcdNumberSampFreq.display(50000) # TODO, if non GMR is supported, query
  1027. self.ui.lcdNumberNQ.display(self.RAWDataProc.nPulseMoments)
  1028. self.ui.DeadTimeSpinBox.setValue(1e3*self.RAWDataProc.deadTime)
  1029. self.ui.CentralVSpinBox.setValue( self.RAWDataProc.transFreq )
  1030. if self.RAWDataProc.pulseType != "FID":
  1031. self.ui.lcdNumberTauPulse2.setEnabled(1)
  1032. self.ui.lcdNumberTauPulse2.display(1e3*self.RAWDataProc.pulseLength[1])
  1033. self.ui.lcdNumberTauDelay.setEnabled(1)
  1034. self.ui.lcdNumberTauDelay.display(1e3*self.RAWDataProc.interpulseDelay)
  1035. self.ui.FIDProcComboBox.clear()
  1036. if self.RAWDataProc.pulseType == "4PhaseT1" or self.RAWDataProc.pulseType == "T1":
  1037. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1") #, const QVariant & userData = QVariant() )
  1038. self.ui.FIDProcComboBox.insertItem(1, "Pulse 2") #, const QVariant & userData = QVariant() )
  1039. self.ui.FIDProcComboBox.insertItem(2, "Both") #, const QVariant & userData = QVariant() )
  1040. if len( self.RAWDataProc.DATADICT["PULSES"]) == 2:
  1041. self.ui.FIDProcComboBox.setCurrentIndex (2)
  1042. elif self.RAWDataProc.DATADICT["PULSES"][0] == "Pulse 1":
  1043. self.ui.FIDProcComboBox.setCurrentIndex (0)
  1044. else:
  1045. self.ui.FIDProcComboBox.setCurrentIndex (1)
  1046. elif self.RAWDataProc.pulseType == "FID":
  1047. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1") #, const QVariant & userData = QVariant() )
  1048. self.ui.FIDProcComboBox.setCurrentIndex (0)
  1049. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("updateProgress(int)"), self.updateProgressBar)
  1050. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("enableDSP()"), self.enableDSP)
  1051. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("doneStatus()"), self.doneStatus)
  1052. self.RAWDataProc.progressTrigger.connect(self.updateProgressBar)
  1053. self.RAWDataProc.enableDSPTrigger.connect(self.enableDSP)
  1054. self.RAWDataProc.doneTrigger.connect(self.doneStatus)
  1055. self.enableAll()
  1056. def loadRAW(self):
  1057. #################################################
  1058. # Check to make sure we are ready to process
  1059. # Header
  1060. if self.RAWDataProc == None:
  1061. err_msg = "You need to load a header first."
  1062. reply = QtGui.QMessageBox.critical(self, 'Error',
  1063. err_msg) #, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  1064. return
  1065. # Stacks
  1066. try:
  1067. self.procStacks = np.array(eval(str("np.r_["+self.ui.stacksLineEdit.text())+"]"))
  1068. except:
  1069. err_msg = "You need to set your stacks correctly.\n" + \
  1070. "This should be a Python Numpy interpretable list\n" + \
  1071. "of stack indices. For example 1:24 or 1:4,8:24"
  1072. QtGui.QMessageBox.critical(self, 'Error', err_msg)
  1073. return
  1074. # Data Channels
  1075. #Chan = np.arange(0,9,1)
  1076. try:
  1077. self.dataChan = np.array(eval(str("np.r_["+self.ui.dataChanLineEdit.text())+"]"))
  1078. except:
  1079. #QMessageBox messageBox;
  1080. #messageBox.critical(0,"Error","An error has occured !");
  1081. #messageBox.setFixedSize(500,200);
  1082. #quit_msg = "Are you sure you want to exit the program?"
  1083. #reply = QtGui.QMessageBox.question(self, 'Message',
  1084. # quit_msg, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  1085. err_msg = "You need to set your data channels correctly.\n" + \
  1086. "This should be a Python Numpy interpretable list\n" + \
  1087. "of indices. For example 1 or 1:3 or 1:3 5\n\n" + \
  1088. "valid GMR data channels fall between 1 and 8. Note that\n" +\
  1089. "1:3 is not inclusive of 3 and is the same as 1,2 "
  1090. reply = QtGui.QMessageBox.critical(self, 'Error',
  1091. err_msg) #, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  1092. return
  1093. #############################
  1094. # Reference Channels
  1095. # TODO make sure no overlap between data and ref channels
  1096. self.refChan = np.array( () )
  1097. if str(self.ui.refChanLineEdit.text()): # != "none":
  1098. try:
  1099. self.refChan = np.array(eval(str("np.r_["+self.ui.refChanLineEdit.text())+"]"))
  1100. except:
  1101. err_msg = "You need to set your reference channels correctly.\n" + \
  1102. "This should be a Python Numpy interpretable list\n" + \
  1103. "of indices. For example 1 or 1:3 or 1:3 5\n\n" + \
  1104. "valid GMR data channels fall between 1 and 8. Note that\n" +\
  1105. "1:3 is not inclusive of 3 and is the same as 1,2 "
  1106. QtGui.QMessageBox.critical(self, 'Error', err_msg)
  1107. return
  1108. #####################################################
  1109. # Load data
  1110. self.lock("loading RAW GMR dataset")
  1111. if self.RAWDataProc.pulseType == "FID":
  1112. self.procThread = thread.start_new_thread(self.RAWDataProc.loadFIDData, \
  1113. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1114. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1115. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1116. elif self.RAWDataProc.pulseType == "4PhaseT1":
  1117. self.procThread = thread.start_new_thread(self.RAWDataProc.load4PhaseT1Data, \
  1118. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1119. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1120. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1121. elif self.RAWDataProc.pulseType == "T1":
  1122. self.procThread = thread.start_new_thread(self.RAWDataProc.loadT1Data, \
  1123. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1124. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1125. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1126. #self.procThread = thread.start_new_thread(self.RAWDataProc.load4PhaseT1Data, \
  1127. # (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1128. # str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1129. # 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1130. self.YamlNode.Import["GMR Header"] = self.headerstr
  1131. self.YamlNode.Import["opened"] = datetime.datetime.now().isoformat()
  1132. self.YamlNode.Import["pulse Type"] = str(self.RAWDataProc.pulseType)
  1133. self.YamlNode.Import["stacks"] = self.procStacks.tolist()
  1134. self.YamlNode.Import["data channels"] = self.dataChan.tolist()
  1135. self.YamlNode.Import["reference channels"] = self.refChan.tolist()
  1136. self.YamlNode.Import["pulse records"] = str(self.ui.FIDProcComboBox.currentText())
  1137. self.YamlNode.Import["instrument dead time"] = (1e-3 * self.ui.DeadTimeSpinBox.value( ))
  1138. self.Log ( )
  1139. # enable META tab
  1140. self.ui.METATab.setEnabled(1)
  1141. self.ui.siteBox.setEnabled(1)
  1142. # should be already done
  1143. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("updateProgress(int)"), self.updateProgressBar)
  1144. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("enableDSP()"), self.enableDSP)
  1145. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("doneStatus()"), self.doneStatus)
  1146. #self.ui.ProcessedBox.setEnabled(True)
  1147. self.ui.lcdNumberFID1Length.setEnabled(1)
  1148. self.ui.lcdNumberFID2Length.setEnabled(1)
  1149. self.ui.lcdNumberResampFreq.setEnabled(1)
  1150. self.ui.lcdTotalDeadTime.setEnabled(1)
  1151. self.ui.lcdTotalDeadTime.display( self.ui.DeadTimeSpinBox.value( ) )
  1152. #self.ui.lcdTotalDeadTime.display( round(1e3*(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1]), 3) )
  1153. #self.ui.lcdNumberFID1Length.display(0)
  1154. #self.ui.lcdNumberFID2Length.display(0)
  1155. #self.ui.lcdNumberResampFreq.display( self.RAWDataProc.samp )
  1156. self.mpl_toolbar = NavigationToolbar2QT(self.ui.mplwidget, self.ui.mplwidget)
  1157. self.ui.mplwidget.draw()
  1158. def Log(self):
  1159. #for line in yaml.dump(self.YamlNode, default_flow_style=False):
  1160. #for line in nlogText:
  1161. # self.ui.logTextBrowser.append( line )
  1162. # self.logText.append( line )
  1163. self.ui.logTextBrowser.clear()
  1164. self.ui.logTextBrowser.append( yaml.dump(self.YamlNode ))
  1165. def disable(self):
  1166. self.ui.inputRAWParametersBox.setEnabled(False)
  1167. self.ui.BandPassBox.setEnabled(False)
  1168. self.ui.downSampleGroupBox.setEnabled(False)
  1169. self.ui.windowFilterGroupBox.setEnabled(False)
  1170. self.ui.harmonicBox.setEnabled(False)
  1171. # self.ui.despikeGroupBox.setEnabled(False)
  1172. self.ui.adaptBox.setEnabled(False)
  1173. self.ui.adaptFDBox.setEnabled(False)
  1174. self.ui.qCalcGroupBox.setEnabled(False)
  1175. self.ui.FDSmartStackGroupBox.setEnabled(False)
  1176. self.ui.sumDataBox.setEnabled(False)
  1177. self.ui.qdGroupBox.setEnabled(False)
  1178. self.ui.gateBox.setEnabled(False)
  1179. def enableAll(self):
  1180. self.enableDSP()
  1181. self.enableQC()
  1182. def enableDSP(self):
  1183. # Bandpass filter
  1184. self.ui.BandPassBox.setEnabled(True)
  1185. self.ui.BandPassBox.setChecked(True)
  1186. self.ui.bandPassGO.setEnabled(False) # need to design first
  1187. self.ui.plotBP.setEnabled(True)
  1188. self.ui.plotBP.setChecked(True)
  1189. # downsample
  1190. self.ui.downSampleGroupBox.setEnabled(True)
  1191. self.ui.downSampleGroupBox.setChecked(True)
  1192. # window
  1193. self.ui.windowFilterGroupBox.setEnabled(True)
  1194. self.ui.windowFilterGroupBox.setChecked(True)
  1195. # Despike
  1196. # self.ui.despikeGroupBox.setEnabled(True)
  1197. # self.ui.despikeGroupBox.setChecked(False)
  1198. # Adaptive filtering
  1199. self.ui.adaptBox.setEnabled(True)
  1200. self.ui.adaptBox.setChecked(True)
  1201. # FD Adaptive filtering
  1202. self.ui.adaptFDBox.setEnabled(True)
  1203. self.ui.adaptFDBox.setChecked(False)
  1204. # Harmonic
  1205. self.ui.harmonicBox.setEnabled(True)
  1206. self.ui.harmonicBox.setChecked(True)
  1207. self.LCDHarmonics()
  1208. self.LCDHarmonics2()
  1209. # sum group box
  1210. try:
  1211. if len(self.dataChan) > 1:
  1212. self.ui.sumDataBox.setEnabled(True)
  1213. self.ui.sumDataBox.setChecked(False)
  1214. except:
  1215. pass
  1216. # Quadrature Detect
  1217. self.ui.qdGroupBox.setEnabled(True)
  1218. self.ui.qdGroupBox.setChecked(True)
  1219. self.enableQC()
  1220. def enableQC(self):
  1221. # Q calc
  1222. self.ui.qCalcGroupBox.setEnabled(True)
  1223. self.ui.qCalcGroupBox.setChecked(True)
  1224. # FD SmartStack
  1225. self.ui.FDSmartStackGroupBox.setEnabled(True)
  1226. self.ui.FDSmartStackGroupBox.setChecked(True)
  1227. # Quadrature detect
  1228. try:
  1229. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  1230. np.shape(self.RAWDataProc.DATADICT[pulse]["Q"])
  1231. self.RAWDataProc.DATADICT["stack"]
  1232. self.ui.qdGroupBox.setEnabled(True)
  1233. self.ui.qdGroupBox.setChecked(True)
  1234. except:
  1235. self.ui.qdGroupBox.setEnabled(False)
  1236. self.ui.qdGroupBox.setChecked(False)
  1237. # Gating
  1238. try:
  1239. self.RAWDataProc.DATADICT["CA"]
  1240. self.ui.gateBox.setEnabled(True)
  1241. self.ui.gateBox.setChecked(True)
  1242. except:
  1243. self.ui.gateBox.setEnabled(False)
  1244. self.ui.gateBox.setChecked(False)
  1245. def despikeFilter(self):
  1246. self.lock("despike filter")
  1247. thread.start_new_thread(self.RAWDataProc.despike, \
  1248. (self.ui.windowSpinBox.value(), \
  1249. self.ui.thresholdSpinBox.value(), \
  1250. str(self.ui.replComboBox.currentText()), \
  1251. self.ui.rollOnSpinBox.value(), \
  1252. self.ui.despikeInterpWinSpinBox.value(),
  1253. self.ui.mplwidget))
  1254. def calcQ(self):
  1255. if "Calc Q" not in self.YamlNode.Stacking.keys():
  1256. #print("In CalcQ", yaml.dump(self.YamlNode.Processing) )
  1257. self.YamlNode.Stacking["Calc Q"] = True
  1258. #print( yaml.dump(self.YamlNode.Processing) )
  1259. self.Log()
  1260. else:
  1261. err_msg = "Q values have already been calculated"
  1262. reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1263. err_msg)
  1264. return
  1265. self.lock("pulse moment calculation")
  1266. thread.start_new_thread(self.RAWDataProc.effectivePulseMoment, \
  1267. (self.ui.CentralVSpinBox.value(), \
  1268. self.ui.mplwidget))
  1269. def harmonicModel(self):
  1270. self.lock("harmonic noise modelling")
  1271. Harm = OrderedDict()
  1272. Harm["STEP " + str(len(self.YamlNode.Processing))] = "Harmonic modelling"
  1273. Harm["NF"] = str( self.ui.NHarmonicsFreqsSpin.value() )
  1274. Harm["Segments"] = str( self.ui.NSegments.value() )
  1275. Harm["Proc. ref."] = self.ui.harmRef.isChecked()
  1276. if self.ui.searchAll.currentText() == "All":
  1277. Harm["search"] = self.ui.searchAll.currentText()
  1278. Search = False
  1279. else:
  1280. #Harm["search"] = self.ui.searchAll.currentText()
  1281. Harm["search"] = str(self.ui.Nsearch.value())
  1282. Search = self.ui.Nsearch.value()
  1283. if self.ui.boundsCheck.isChecked():
  1284. Harm["Bounds"] = str(self.ui.bounds.value())
  1285. Bounds = self.ui.bounds.value()
  1286. else:
  1287. Harm["Bounds"] = self.ui.boundsCheck.isChecked()
  1288. Bounds = 0
  1289. Harm["f0K1"] = str( self.ui.f0K1Spin.value() )
  1290. Harm["f0KN"] = str( self.ui.f0KNSpin.value() )
  1291. Harm["f0Ks"] = str( self.ui.f0KsSpin.value() )
  1292. Harm["f0"] = str( self.ui.f0Spin.value() )
  1293. if self.ui.NHarmonicsFreqsSpin.value() > 1:
  1294. Harm["f1K1"] = str( self.ui.f1K1Spin.value() )
  1295. Harm["f1KN"] = str( self.ui.f1KNSpin.value() )
  1296. Harm["f1Ks"] = str( self.ui.f1KsSpin.value() )
  1297. Harm["f1"] = str( self.ui.f1Spin.value() )
  1298. self.YamlNode.Processing.append(Harm)
  1299. self.Log()
  1300. thread.start_new_thread(self.RAWDataProc.harmonicModel, \
  1301. ( \
  1302. self.ui.NHarmonicsFreqsSpin.value(), \
  1303. self.ui.f0Spin.value(), \
  1304. self.ui.f0K1Spin.value(), \
  1305. self.ui.f0KNSpin.value(), \
  1306. self.ui.f0KsSpin.value(), \
  1307. self.ui.NSegments.value(), \
  1308. self.ui.f1Spin.value(), \
  1309. self.ui.f1K1Spin.value(), \
  1310. self.ui.f1KNSpin.value(), \
  1311. self.ui.f1KsSpin.value(), \
  1312. Search, \
  1313. Bounds, \
  1314. self.ui.harmRef.isChecked(), \
  1315. self.ui.plotHarmonic.isChecked(), \
  1316. self.ui.mplwidget \
  1317. ) \
  1318. )
  1319. def FDSmartStack(self):
  1320. if "TD stack" not in self.YamlNode.Stacking.keys():
  1321. self.YamlNode.Stacking["TD stack"] = {}
  1322. self.YamlNode.Stacking["TD stack"]["outlier"] = str( self.ui.outlierTestCB.currentText() )
  1323. self.YamlNode.Stacking["TD stack"]["cutoff"] = str( self.ui.MADCutoff.value() )
  1324. self.Log()
  1325. else:
  1326. err_msg = "TD noise cancellation has already been applied!"
  1327. reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1328. err_msg)
  1329. return
  1330. self.lock("time-domain smart stack")
  1331. thread.start_new_thread(self.RAWDataProc.TDSmartStack, \
  1332. (str(self.ui.outlierTestCB.currentText()), \
  1333. self.ui.MADCutoff.value(),
  1334. self.ui.mplwidget))
  1335. def adaptFilter(self):
  1336. self.lock("TD noise cancellation filter")
  1337. # Log processing
  1338. Adapt = OrderedDict()
  1339. Adapt["STEP " + str(len(self.YamlNode.Processing)) ] = "TD noise cancellation"
  1340. #print(Adapt) # this locks STEP in as first...
  1341. Adapt["n_Taps"] = self.ui.MTapsSpinBox.value()
  1342. Adapt["lambda"] = self.ui.adaptLambdaSpinBox.value()
  1343. Adapt["truncate"] = self.ui.adaptTruncateSpinBox.value()
  1344. Adapt["mu"] = self.ui.adaptMuSpinBox.value()
  1345. Adapt["PCA"] = self.ui.PCAComboBox.currentText()
  1346. #Adapt # this locsk in the dict ordering...
  1347. #print(Adapt) # this locks in the dict...
  1348. self.YamlNode.Processing.append(Adapt)
  1349. self.Log( )
  1350. thread.start_new_thread(self.RAWDataProc.adaptiveFilter, \
  1351. (self.ui.MTapsSpinBox.value(), \
  1352. self.ui.adaptLambdaSpinBox.value(), \
  1353. self.ui.adaptTruncateSpinBox.value(), \
  1354. self.ui.adaptMuSpinBox.value(), \
  1355. str(self.ui.PCAComboBox.currentText()), \
  1356. self.ui.mplwidget))
  1357. def sumDataChans(self):
  1358. self.lock("Summing data channels")
  1359. Sum = OrderedDict()
  1360. Sum["STEP " + str(len(self.YamlNode.Processing))] = "Channel sum"
  1361. self.YamlNode.Processing.append(Sum)
  1362. self.Log( )
  1363. self.dataChan = [self.dataChan[0]]
  1364. self.ui.sumDataBox.setEnabled(False)
  1365. thread.start_new_thread( self.RAWDataProc.sumData, ( self.ui.mplwidget, 7 ) )
  1366. def adaptFilterFD(self):
  1367. self.lock("FD noise cancellation filter")
  1368. thread.start_new_thread(self.RAWDataProc.adaptiveFilterFD, \
  1369. (str(self.ui.windowTypeComboBox.currentText()), \
  1370. self.ui.windowBandwidthSpinBox.value(), \
  1371. self.ui.CentralVSpinBox.value(), \
  1372. self.ui.mplwidget))
  1373. def logGUI(self):
  1374. # You have a race condiditon where the GUI is modifying the Yaml node while you are updating it
  1375. # hence, we need to cache these. More elegant solutions exist
  1376. if "B_0" in self.YamlNode.META:
  1377. B0 = self.YamlNode.META["B_0"]["intensity"]
  1378. Bdec = self.YamlNode.META["B_0"]["dec"]
  1379. Binc = self.YamlNode.META["B_0"]["inc"]
  1380. if "DateTime" in self.YamlNode.META:
  1381. [Date,Time] = self.YamlNode.META["DateTime"].split("T")
  1382. year,month,day = Date.split("-")
  1383. if "Temp" in self.YamlNode.META:
  1384. temp = float(self.YamlNode.META["Temp"])
  1385. if "Coordinates" in self.YamlNode.META:
  1386. UTM = self.YamlNode.META["Coordinates"]["UTM"]
  1387. LatBand = self.YamlNode.META["Coordinates"]["LatBand"]
  1388. Ellipsoid = self.YamlNode.META["Coordinates"]["ellipsoid"]
  1389. # and set
  1390. if "Location" in self.YamlNode.META:
  1391. self.ui.locEdit.setText( self.YamlNode.META["Location"] )
  1392. if "Field Notes" in self.YamlNode.META:
  1393. self.ui.txtComments.setText( self.YamlNode.META["Field Notes"] )
  1394. if "B_0" in self.YamlNode.META:
  1395. self.ui.incSpinBox.setValue( Binc )
  1396. self.ui.decSpinBox.setValue( Bdec )
  1397. self.ui.intensitySpinBox.setValue( B0 )
  1398. if "DateTime" in self.YamlNode.META:
  1399. self.ui.dateEdit.setDate( datetime.date(int(year), int(month), int(day)) )
  1400. self.ui.timeEdit.setTime( datetime.time.fromisoformat( Time ) )
  1401. if "Temp" in self.YamlNode.META:
  1402. self.ui.tempSpinBox.setValue(temp)
  1403. if "Coordinates" in self.YamlNode.META:
  1404. self.ui.UTMzone.setCurrentText(UTM)
  1405. self.ui.latBand.setCurrentText(LatBand)
  1406. self.ui.ellipsoid.setCurrentText(Ellipsoid)
  1407. def logSite(self):
  1408. self.YamlNode.META["Location"] = self.ui.locEdit.text()
  1409. self.YamlNode.META["Coordinates"] = OrderedDict()
  1410. self.YamlNode.META["Coordinates"]["UTM"] = self.ui.UTMzone.currentText()
  1411. self.YamlNode.META["Coordinates"]["LatBand"] = self.ui.latBand.currentText()
  1412. self.YamlNode.META["Coordinates"]["ellipsoid"] = self.ui.ellipsoid.currentText()
  1413. self.YamlNode.META["DateTime"] = self.ui.dateEdit.date().toString("yyyy-MM-dd") + "T" + str( self.ui.timeEdit.time().toString("hh:mm") )
  1414. self.YamlNode.META["Temp"] = self.ui.tempSpinBox.value()
  1415. self.YamlNode.META["B_0"] = OrderedDict()
  1416. self.YamlNode.META["B_0"]["inc"] = self.ui.incSpinBox.value()
  1417. self.YamlNode.META["B_0"]["dec"] = self.ui.decSpinBox.value()
  1418. self.YamlNode.META["B_0"]["intensity"] = self.ui.intensitySpinBox.value()
  1419. self.YamlNode.META["Field Notes"] = self.ui.txtComments.toPlainText()
  1420. self.YamlNode.META["Loops"] = OrderedDict()
  1421. for loop in self.loops:
  1422. print(self.loops[loop])
  1423. self.YamlNode.META["Loops"][loop] = loop + ".pwa"
  1424. self.Log()
  1425. def bandPassFilter(self):
  1426. self.lock("bandpass filter")
  1427. # Log processing
  1428. Band = OrderedDict()
  1429. Band["STEP " + str(len(self.YamlNode.Processing))] = "Bandpass filter"
  1430. Band["central_nu"] = str(self.ui.CentralVSpinBox.value())
  1431. Band["passband"] = str(self.ui.passBandSpinBox.value())
  1432. Band["stopband"] = str(self.ui.stopBandSpinBox.value())
  1433. Band["gpass"] = str(self.ui.gpassSpinBox.value())
  1434. Band["gstop"] = str(self.ui.gstopSpinBox.value())
  1435. Band["type"] = str(self.ui.fTypeComboBox.currentText())
  1436. self.YamlNode.Processing.append(Band)
  1437. self.Log( )
  1438. nv = self.ui.lcdTotalDeadTime.value( ) + self.ui.lcdNumberFTauDead.value()
  1439. self.ui.lcdTotalDeadTime.display( nv )
  1440. thread.start_new_thread(self.RAWDataProc.bandpassFilter, \
  1441. (self.ui.mplwidget, 0, self.ui.plotBP.isChecked() ))
  1442. def downsample(self):
  1443. self.lock("resampling")
  1444. # Log processing
  1445. Resample = OrderedDict()
  1446. Resample["STEP "+ str(len(self.YamlNode.Processing))] = "Resample"
  1447. Resample["downsample factor"] = str(self.ui.downSampleSpinBox.value())
  1448. Resample["truncate length"] = str(self.ui.truncateSpinBox.value())
  1449. self.YamlNode.Processing.append(Resample)
  1450. self.Log( )
  1451. thread.start_new_thread(self.RAWDataProc.downsample, \
  1452. (self.ui.truncateSpinBox.value(), \
  1453. self.ui.downSampleSpinBox.value(), \
  1454. self.ui.dsPlot.isChecked(), \
  1455. self.ui.mplwidget))
  1456. def quadDet(self):
  1457. method = ['trf','dogbox','lm'][int(self.ui.QDMethod.currentIndex())]
  1458. loss = ['linear','soft_l1','cauchy','huber'][int(self.ui.QDLoss.currentIndex())]
  1459. # allow overwrite of Quad Det.
  1460. self.YamlNode.Stacking["Quadrature detection"] = {}
  1461. self.YamlNode.Stacking["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1462. self.YamlNode.Stacking["Quadrature detection"]["method"] = method
  1463. self.YamlNode.Stacking["Quadrature detection"]["loss"] = loss
  1464. self.Log()
  1465. #if "Quadrature detection" not in self.YamlNode.Processing.keys():
  1466. # self.YamlNode.Processing["Quadrature detection"] = {}
  1467. # self.YamlNode.Processing["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1468. # self.Log()
  1469. #else:
  1470. # self.YamlNode.Processing["Quadrature detection"] = {}
  1471. # self.YamlNode.Processing["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1472. # self.Log()
  1473. #err_msg = "Quadrature detection has already been done!"
  1474. #reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1475. # err_msg)
  1476. #return
  1477. self.lock("quadrature detection")
  1478. thread.start_new_thread(self.RAWDataProc.quadDet, \
  1479. (self.ui.trimSpin.value(), method, loss, self.ui.mplwidget))
  1480. self.ui.plotQD.setEnabled(True)
  1481. def plotQD(self):
  1482. self.lock("plot QD")
  1483. thread.start_new_thread(self.RAWDataProc.plotQuadDet, \
  1484. (self.ui.trimSpin.value(), int(self.ui.QDType.currentIndex()), self.ui.mplwidget))
  1485. def gateIntegrate(self):
  1486. if "Gate integrate" not in self.YamlNode.Stacking.keys():
  1487. self.YamlNode.Stacking["Gate integrate"] = {}
  1488. self.YamlNode.Stacking["Gate integrate"]["gpd"] = str(self.ui.GPDspinBox.value( ) )
  1489. self.Log()
  1490. self.lock("gate integration")
  1491. thread.start_new_thread(self.RAWDataProc.gateIntegrate, \
  1492. (self.ui.GPDspinBox.value(), self.ui.trimSpin.value(), self.ui.mplwidget))
  1493. self.ui.actionExport_Preprocessed_Dataset.setEnabled(True)
  1494. self.ui.plotGI.setEnabled(True)
  1495. def plotGI(self):
  1496. self.lock("plot gate integrate")
  1497. thread.start_new_thread(self.RAWDataProc.plotGateIntegrate, \
  1498. (self.ui.GPDspinBox.value(), self.ui.trimSpin.value(), \
  1499. self.ui.QDType_2.currentIndex(), self.ui.mplwidget))
  1500. def designFilter(self):
  1501. [bord, fe] = self.RAWDataProc.designFilter( \
  1502. self.ui.CentralVSpinBox.value(), \
  1503. self.ui.passBandSpinBox.value(), \
  1504. self.ui.stopBandSpinBox.value(), \
  1505. self.ui.gpassSpinBox.value(), \
  1506. self.ui.gstopSpinBox.value(), \
  1507. str(self.ui.fTypeComboBox.currentText()),
  1508. self.ui.mplwidget
  1509. )
  1510. self.ui.lcdNumberFilterOrder.display(bord)
  1511. self.ui.lcdNumberFTauDead.display(1e3*fe)
  1512. self.ui.bandPassGO.setEnabled(1)
  1513. ################################################################
  1514. # Hack for MacOS to force refresh of group box and plot
  1515. # this has an undesirable effect that it causes the groupbox to 'jump' up
  1516. # TODO come up with a better solution
  1517. self.ui.mplwidget.hide()
  1518. self.ui.mplwidget.show()
  1519. self.ui.BandPassBox.hide()
  1520. self.ui.BandPassBox.show()
  1521. def windowFilter(self):
  1522. self.lock("window filter")
  1523. # Log processing
  1524. Window = OrderedDict()
  1525. Window["STEP " + str(len(self.YamlNode.Processing))] = "Window filter"
  1526. Window["type"] = str(self.ui.windowTypeComboBox.currentText())
  1527. Window["width"] = str(self.ui.windowBandwidthSpinBox.value())
  1528. Window["centre"] = str(self.ui.CentralVSpinBox.value() )
  1529. Window["trim"] = str(self.ui.windowTrim.isChecked())
  1530. self.YamlNode.Processing.append(Window)
  1531. self.Log( )
  1532. if self.ui.windowTrim.isChecked():
  1533. nv = self.ui.lcdTotalDeadTime.value( ) + self.ui.lcdWinDead.value()
  1534. self.ui.lcdTotalDeadTime.display( nv )
  1535. thread.start_new_thread(self.RAWDataProc.windowFilter, \
  1536. (str(self.ui.windowTypeComboBox.currentText()), \
  1537. self.ui.windowBandwidthSpinBox.value(), \
  1538. self.ui.CentralVSpinBox.value(), \
  1539. self.ui.windowTrim.isChecked(), \
  1540. self.ui.mplwidget))
  1541. def designFDFilter(self):
  1542. mPulse = "None"
  1543. if u"Pulse 1" in self.RAWDataProc.DATADICT.keys():
  1544. mPulse = u"Pulse 1"
  1545. elif u"Pulse 2" in self.RAWDataProc.DATADICT.keys():
  1546. mPulse = u"Pulse 2"
  1547. a,b,c,d,dead,ndead = self.RAWDataProc.computeWindow( \
  1548. mPulse,
  1549. self.ui.windowBandwidthSpinBox.value(), \
  1550. self.ui.CentralVSpinBox.value(), \
  1551. str(self.ui.windowTypeComboBox.currentText()), \
  1552. self.ui.mplwidget )
  1553. self.ui.lcdWinDead.display(dead)
  1554. ################################################################
  1555. # Hack for MacOS to force refresh of group box and plot
  1556. # this has an undesirable effect that it causes the groupbox to 'jump' up
  1557. # TODO come up with a better solution
  1558. self.ui.mplwidget.hide()
  1559. self.ui.mplwidget.show()
  1560. self.ui.windowFilterGroupBox.hide()
  1561. self.ui.windowFilterGroupBox.show()
  1562. def updateProgressBar(self, percent):
  1563. self.ui.barProgress.setValue(percent)
  1564. def updateProc(self):
  1565. if str(self.ui.FIDProcComboBox.currentText()) == "Pulse 1":
  1566. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  1567. elif str(self.ui.FIDProcComboBox.currentText()) == "Pulse 2":
  1568. self.ui.lcdNumberFID2Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  1569. else:
  1570. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  1571. self.ui.lcdNumberFID2Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  1572. self.ui.lcdNumberResampFreq.display( self.RAWDataProc.samp )
  1573. def doneStatus(self): # unlocks GUI
  1574. self.ui.statusbar.clearMessage ( )
  1575. self.ui.barProgress.hide()
  1576. self.updateProc()
  1577. self.enableAll()
  1578. def lock(self, string):
  1579. self.ui.statusbar.showMessage ( string )
  1580. self.ui.barProgress.show()
  1581. self.ui.barProgress.setValue(0)
  1582. self.disable()
  1583. def unlock(self):
  1584. self.ui.statusbar.clearMessage ( )
  1585. self.ui.barProgress.hide()
  1586. self.enableAll()
  1587. def done(self):
  1588. self.ui.statusbar.showMessage ( "" )
  1589. ################################################################
  1590. ################################################################
  1591. # Boiler plate main function
  1592. import pkg_resources
  1593. from pkg_resources import resource_string
  1594. import matplotlib.image as mpimg
  1595. import matplotlib.pyplot as plt
  1596. from akvo.gui.logo import plotLogo
  1597. def main():
  1598. # splash screen logo
  1599. logo = pkg_resources.resource_filename(__name__, 'akvo.png')
  1600. logo2 = pkg_resources.resource_filename(__name__, 'akvo2.png')
  1601. qApp = QtWidgets.QApplication(sys.argv)
  1602. ssplash = True
  1603. if ssplash:
  1604. pixmap = QtGui.QPixmap(logo)
  1605. splash = QtWidgets.QSplashScreen(pixmap, QtCore.Qt.WindowStaysOnTopHint)
  1606. splash.show()
  1607. aw = ApplicationWindow()
  1608. #img=mpimg.imread(logo)
  1609. for ax in [ aw.ui.mplwidget ]:
  1610. ax.fig.clear()
  1611. subplot = ax.fig.add_subplot(211)
  1612. # old logo plot
  1613. ax.fig.patch.set_facecolor( None )
  1614. ax.fig.patch.set_alpha( .0 )
  1615. #subplot.imshow(img)
  1616. #ax.fig.patch.set_visible(False)
  1617. subplot.axis('off')
  1618. plotLogo(subplot)
  1619. subplot.xaxis.set_major_locator(plt.NullLocator())
  1620. subplot.yaxis.set_major_locator(plt.NullLocator())
  1621. subplot2 = ax.fig.add_subplot(212)
  1622. subplot2.text(0.5, 1.,'surface NMR workbench',
  1623. horizontalalignment='center',
  1624. verticalalignment='center',
  1625. size=22,
  1626. transform = subplot2.transAxes)
  1627. subplot2.xaxis.set_major_locator(plt.NullLocator())
  1628. subplot2.yaxis.set_major_locator(plt.NullLocator())
  1629. subplot2.axis('off')
  1630. ax.draw()
  1631. if ssplash:
  1632. splash.showMessage("Loading modules")
  1633. splash.finish(aw)
  1634. #time.sleep(1)
  1635. aw.setWindowTitle("Akvo v"+str(VERSION))
  1636. aw.show()
  1637. qApp.setWindowIcon(QtGui.QIcon(logo2))
  1638. sys.exit(qApp.exec_())
  1639. if __name__ == "__main__":
  1640. main()