Surface NMR processing and inversion GUI
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akvoGUI.py 82KB

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  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_qt4 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. # Writes out numpy arrays into Eigen vectors as serialized by Lemma
  27. class MatrixXr(yaml.YAMLObject):
  28. yaml_tag = u'MatrixXr'
  29. def __init__(self, rows, cols, data):
  30. self.rows = rows
  31. self.cols = cols
  32. self.data = np.zeros((rows,cols))
  33. def __repr__(self):
  34. return "%s(rows=%r, cols=%r, data=%r)" % (self.__class__.__name__, self.rows, self.cols, self.data)
  35. class VectorXr(yaml.YAMLObject):
  36. yaml_tag = r'VectorXr'
  37. def __init__(self, array):
  38. self.size = np.shape(array)[0]
  39. self.data = array.tolist()
  40. def __repr__(self):
  41. # Converts to numpy array on import
  42. return "np.array(%r)" % (self.data)
  43. def setup_yaml():
  44. """ https://stackoverflow.com/a/8661021 """
  45. represent_dict_order = lambda self, data: self.represent_mapping('tag:yaml.org,2002:map', data.items())
  46. yaml.add_representer(OrderedDict, represent_dict_order)
  47. setup_yaml()
  48. class AkvoYamlNode(yaml.YAMLObject):
  49. yaml_tag = u'AkvoData'
  50. def __init__(self):
  51. self.Akvo_VERSION = VERSION
  52. self.Import = OrderedDict() # {}
  53. self.Processing = [] # OrderedDict()
  54. self.Stacking = OrderedDict()
  55. self.META = OrderedDict()
  56. def __repr__(self):
  57. return "%s(name=%r, Akvo_VERSION=%r, Import=%r, Processing=%r, self.Stacking=%r, self.META=%r)" % (
  58. self.__class__.__name__, self.Akvo_VERSION, self.Import, self.Processing, self.Stacking, self.META )
  59. try:
  60. import thread
  61. except ImportError:
  62. import _thread as thread #Py3K compatibility
  63. class MyPopup(QtWidgets.QWidget):
  64. def __init__(self, name):
  65. super().__init__()
  66. self.name = name
  67. self.initUI()
  68. def initUI(self):
  69. lblName = QtWidgets.QLabel(self.name, self)
  70. class ApplicationWindow(QtWidgets.QMainWindow):
  71. def __init__(self):
  72. super().__init__()
  73. #QtWidgets.QMainWindow.__init__(self)
  74. self.setAttribute(QtCore.Qt.WA_DeleteOnClose)
  75. # alternative to calling pyuic
  76. #self.ui = uic.loadUi('main.ui', self)
  77. self.ui = Ui_MainWindow()
  78. self.ui.setupUi(self)
  79. self.RAWDataProc = None
  80. self.YamlNode = AkvoYamlNode()
  81. # initialise some stuff
  82. self.ui.lcdNumberTauPulse2.setEnabled(0)
  83. self.ui.lcdNumberTauPulse1.setEnabled(0)
  84. self.ui.lcdNumberNuTx.setEnabled(0)
  85. self.ui.lcdNumberTuneuF.setEnabled(0)
  86. self.ui.lcdNumberSampFreq.setEnabled(0)
  87. self.ui.lcdNumberTauDelay.setEnabled(0)
  88. self.ui.lcdNumberNQ.setEnabled(0)
  89. self.logText = []
  90. #######################
  91. ##################### #
  92. ## Make connections # #
  93. ##################### #
  94. #######################
  95. ##############
  96. # Menu items #
  97. ##############
  98. self.ui.actionOpen_GMR.triggered.connect(self.openGMRRAWDataset)
  99. self.ui.actionSave_Preprocessed_Dataset.triggered.connect(self.SavePreprocess)
  100. self.ui.actionExport_Preprocessed_Dataset.triggered.connect(self.ExportPreprocess)
  101. self.ui.actionExport_Preprocessed_Dataset.setEnabled(False)
  102. self.ui.actionOpen_Preprocessed_Dataset.triggered.connect(self.OpenPreprocess)
  103. self.ui.actionAboutAkvo.triggered.connect(self.about)
  104. ###########
  105. # Buttons #
  106. ###########
  107. self.ui.loadDataPushButton.pressed.connect(self.loadRAW)
  108. self.ui.sumDataGO.pressed.connect( self.sumDataChans )
  109. self.ui.bandPassGO.pressed.connect( self.bandPassFilter )
  110. self.ui.filterDesignPushButton.pressed.connect( self.designFilter )
  111. self.ui.fdDesignPushButton.pressed.connect( self.designFDFilter )
  112. self.ui.downSampleGO.pressed.connect( self.downsample )
  113. self.ui.windowFilterGO.pressed.connect( self.windowFilter )
  114. self.ui.adaptGO.pressed.connect( self.adaptFilter )
  115. self.ui.adaptFDGO.pressed.connect( self.adaptFilterFD )
  116. self.ui.qdGO.pressed.connect( self.quadDet )
  117. self.ui.gateIntegrateGO.pressed.connect( self.gateIntegrate )
  118. self.ui.calcQGO.pressed.connect( self.calcQ )
  119. self.ui.FDSmartStackGO.pressed.connect( self.FDSmartStack )
  120. self.ui.harmonicGO.pressed.connect( self.harmonicModel )
  121. self.ui.K0Data.pressed.connect( self.K0DataSelect )
  122. self.ui.invDataButton.pressed.connect( self.invDataSelect )
  123. self.ui.invKernelButton.pressed.connect( self.invKernelSelect )
  124. self.ui.f0K1Spin.valueChanged.connect( self.LCDHarmonics )
  125. self.ui.f0KNSpin.valueChanged.connect( self.LCDHarmonics )
  126. self.ui.f0KsSpin.valueChanged.connect( self.LCDHarmonics )
  127. self.ui.f0Spin.valueChanged.connect( self.LCDHarmonics )
  128. self.ui.NHarmonicsFreqsSpin.valueChanged.connect( self.LCDHarmonics2 )
  129. self.ui.f1K1Spin.valueChanged.connect( self.LCDHarmonics2 )
  130. self.ui.f1KNSpin.valueChanged.connect( self.LCDHarmonics2 )
  131. self.ui.f1KsSpin.valueChanged.connect( self.LCDHarmonics2 )
  132. self.ui.f1Spin.valueChanged.connect( self.LCDHarmonics2 )
  133. self.ui.plotQD.setEnabled(False)
  134. self.ui.plotQD.pressed.connect( self.plotQD )
  135. self.ui.plotGI.setEnabled(False)
  136. self.ui.plotGI.pressed.connect( self.plotGI )
  137. # Kernel
  138. self.ui.calcK0.pressed.connect( self.calcK0 )
  139. # Inversion
  140. self.ui.invertButton.pressed.connect( self.QTInv )
  141. # META
  142. self.ui.locEdit.editingFinished.connect( self.logSite )
  143. self.ui.UTMzone.currentIndexChanged.connect( self.logSite )
  144. self.ui.latBand.currentIndexChanged.connect( self.logSite )
  145. self.ui.ellipsoid.currentIndexChanged.connect( self.logSite )
  146. self.ui.incSpinBox.valueChanged.connect( self.logSite )
  147. self.ui.decSpinBox.valueChanged.connect( self.logSite )
  148. self.ui.intensitySpinBox.valueChanged.connect( self.logSite )
  149. self.ui.tempSpinBox.valueChanged.connect( self.logSite )
  150. self.ui.timeEdit.timeChanged.connect( self.logSite )
  151. self.ui.dateEdit.dateChanged.connect( self.logSite )
  152. # this may call the yaml stuff too often...
  153. self.ui.txtComments.textChanged.connect( self.logSite )
  154. self.ui.plotLoops.pressed.connect( self.plotLoops2 )
  155. self.ui.removeLoopButton.pressed.connect( self.removeLoop )
  156. # Loops
  157. self.ui.addLoopButton.pressed.connect( self.loopAdd )
  158. self.loops = {}
  159. # hide header info box
  160. #self.ui.headerFileBox.setVisible(False)
  161. self.ui.headerFileBox.clicked.connect( self.headerBoxShrink )
  162. self.ui.headerBox2.setVisible(False)
  163. # Clean up the tab widget
  164. self.ui.actionPreprocessing.triggered.connect(self.addPreProc)
  165. self.ui.actionModelling.triggered.connect(self.addModelling)
  166. self.ui.actionInversion.triggered.connect(self.addInversion)
  167. # tabs
  168. #self.ui.ProcTabs.tabCloseRequested.connect( self.closeTabs )
  169. #self.ui.ProcTabs.tabBar().setTabButton(7, QtWidgets.QTabBar.RightSide,None)
  170. self.ui.ProcTabs.removeTab(4)
  171. self.ui.ProcTabs.removeTab(4)
  172. self.ui.ProcTabs.removeTab(4)
  173. self.ui.ProcTabs.removeTab(4)
  174. #self.ui.LoadTab.close( )
  175. # Add progressbar to statusbar
  176. self.ui.barProgress = QtWidgets.QProgressBar()
  177. self.ui.statusbar.addPermanentWidget(self.ui.barProgress, 0);
  178. self.ui.barProgress.setMaximumSize(100, 16777215);
  179. self.ui.barProgress.hide();
  180. self.ui.mplwidget_navigator.setCanvas(self.ui.mplwidget)
  181. #self.ui.mplwidget_navigator_2.setCanvas(self.ui.mplwidget)
  182. self.ui.txRxTable.setColumnCount(4)
  183. self.ui.txRxTable.setRowCount(0)
  184. self.ui.txRxTable.setHorizontalHeaderLabels( ["Label", "Geom.","Turns","Tx/Rx"] )
  185. ##########################################################################
  186. # layer Table
  187. self.ui.layerTableWidget.setRowCount(80)
  188. self.ui.layerTableWidget.setColumnCount(3)
  189. self.ui.layerTableWidget.setHorizontalHeaderLabels( [r"top [m]", r"bottom [m]", "ρ [Ωm]" ] )
  190. # do we want this
  191. self.ui.layerTableWidget.setDragDropOverwriteMode(False)
  192. self.ui.layerTableWidget.setDragEnabled(True)
  193. self.ui.layerTableWidget.setDragDropMode(QtWidgets.QAbstractItemView.InternalMove)
  194. pCell0 = QtWidgets.QTableWidgetItem()
  195. pCell0.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  196. pCell0.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  197. pCell0.setForeground( QtGui.QColor("black") )
  198. pCell0.setText(str("0"))
  199. self.ui.layerTableWidget.setItem(0, 0, pCell0)
  200. pCell1 = QtWidgets.QTableWidgetItem()
  201. #pCell1.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  202. pCell1.setBackground( QtGui.QColor("lightblue") ) #.lighter(110) )
  203. pCell1.setForeground( QtGui.QColor("black") )
  204. self.ui.layerTableWidget.setItem(0, 1, pCell1)
  205. pCell2 = QtWidgets.QTableWidgetItem()
  206. #pCell1.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  207. pCell2.setBackground( QtGui.QColor("white") ) #.lighter(110) )
  208. pCell2.setForeground( QtGui.QColor("black") )
  209. self.ui.layerTableWidget.setItem(0, 2, pCell2)
  210. for ir in range(1, self.ui.layerTableWidget.rowCount() ):
  211. for ic in range(0, self.ui.layerTableWidget.columnCount() ):
  212. pCell = QtWidgets.QTableWidgetItem()
  213. #pCell.setFlags(QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsSelectable)
  214. pCell.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  215. pCell.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  216. pCell.setForeground( QtGui.QColor("black"))
  217. self.ui.layerTableWidget.setItem(ir, ic, pCell)
  218. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  219. def LCDHarmonics(self):
  220. self.ui.lcdH1F.setEnabled(True)
  221. self.ui.lcdH1F.display( self.ui.f0Spin.value() * self.ui.f0K1Spin.value() )
  222. self.ui.lcdHNF.setEnabled(True)
  223. self.ui.lcdHNF.display( self.ui.f0Spin.value() * self.ui.f0KNSpin.value() )
  224. self.ui.lcdf0NK.setEnabled(True)
  225. self.ui.lcdf0NK.display( (self.ui.f0KNSpin.value()+1-self.ui.f0K1Spin.value()) * self.ui.f0KsSpin.value() )
  226. def LCDHarmonics2(self):
  227. if self.ui.NHarmonicsFreqsSpin.value() == 2:
  228. self.ui.lcdH1F2.setEnabled(True)
  229. self.ui.lcdH1F2.display( self.ui.f1Spin.value() * self.ui.f1K1Spin.value() )
  230. self.ui.lcdHNF2.setEnabled(True)
  231. self.ui.lcdHNF2.display( self.ui.f1Spin.value() * self.ui.f1KNSpin.value() )
  232. self.ui.lcdf0NK2.setEnabled(True)
  233. self.ui.lcdf0NK2.display( (self.ui.f1KNSpin.value()+1-self.ui.f1K1Spin.value()) * self.ui.f1KsSpin.value() )
  234. else:
  235. self.ui.lcdH1F2.setEnabled(False)
  236. self.ui.lcdHNF2.setEnabled(False)
  237. self.ui.lcdf0NK2.setEnabled(False)
  238. def closeTabs(self):
  239. #self.ui.ProcTabs.removeTab(idx)
  240. self.ui.ProcTabs.clear( )
  241. def addPreProc(self):
  242. if self.ui.actionPreprocessing.isChecked():
  243. self.ui.actionModelling.setChecked(False)
  244. self.ui.actionInversion.setChecked(False)
  245. self.ui.ProcTabs.clear( )
  246. self.ui.ProcTabs.insertTab( 0, self.ui.LoadTab, "Load" )
  247. self.ui.ProcTabs.insertTab( 1, self.ui.NCTab, "Noise removal" )
  248. self.ui.ProcTabs.insertTab( 2, self.ui.QCTab, "QC" )
  249. self.ui.ProcTabs.insertTab( 3, self.ui.METATab, "META" )
  250. self.ui.ProcTabs.insertTab( 4, self.ui.LogTab, "Log" )
  251. else:
  252. self.ui.ProcTabs.removeTab(0)
  253. self.ui.ProcTabs.removeTab(0)
  254. self.ui.ProcTabs.removeTab(0)
  255. self.ui.ProcTabs.removeTab(0)
  256. def addModelling(self):
  257. if self.ui.actionModelling.isChecked():
  258. self.ui.actionPreprocessing.setChecked(False)
  259. self.ui.actionInversion.setChecked(False)
  260. self.ui.ProcTabs.clear( )
  261. self.ui.ProcTabs.insertTab( 0, self.ui.KernTab, "Kernel" )
  262. self.ui.ProcTabs.insertTab( 1, self.ui.ModelTab, "Modelling" )
  263. #self.ui.ProcTabs.insertTab( 2, self.ui.LogTab, "Log" )
  264. else:
  265. self.ui.ProcTabs.removeTab(0)
  266. self.ui.ProcTabs.removeTab(0)
  267. def addInversion(self, idx):
  268. if self.ui.actionInversion.isChecked():
  269. self.ui.actionPreprocessing.setChecked(False)
  270. self.ui.actionModelling.setChecked(False)
  271. self.ui.ProcTabs.clear( )
  272. self.ui.ProcTabs.insertTab( 0, self.ui.InvertTab, "QT Inversion" )
  273. self.ui.ProcTabs.insertTab( 1, self.ui.AppraiseTab, "Appraisal" )
  274. #self.ui.ProcTabs.insertTab( 2, self.ui.LogTab, "Log" )
  275. else:
  276. self.ui.ProcTabs.removeTab(0)
  277. self.ui.ProcTabs.removeTab(0)
  278. def invDataSelect(self):
  279. try:
  280. with open('.akvo.last.path') as f:
  281. fpath = f.readline()
  282. pass
  283. except IOError as e:
  284. fpath = '.'
  285. self.akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  286. self.ui.dataText.clear()
  287. self.ui.dataText.append( self.akvoDataFile )
  288. def K0DataSelect(self):
  289. try:
  290. with open('.akvo.last.path') as f:
  291. fpath = f.readline()
  292. pass
  293. except IOError as e:
  294. fpath = '.'
  295. self.K0akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  296. self.ui.K0DataText.clear()
  297. self.ui.K0DataText.append( self.K0akvoDataFile )
  298. # populate combo box with loops
  299. with open(self.K0akvoDataFile) as f:
  300. parse = yaml.load( f, Loader=yaml.Loader )
  301. self.ui.txListWidget.clear()
  302. self.ui.rxListWidget.clear()
  303. for loop in parse.META["Loops"]:
  304. print(loop)
  305. self.ui.txListWidget.addItem( parse.META["Loops"][loop] )
  306. self.ui.rxListWidget.addItem( parse.META["Loops"][loop] )
  307. self.ui.txListWidget.setCurrentRow(0)
  308. self.ui.rxListWidget.setCurrentRow(0)
  309. def invKernelSelect(self):
  310. try:
  311. with open('.akvo.last.path') as f:
  312. fpath = f.readline()
  313. pass
  314. except IOError as e:
  315. fpath = '.'
  316. self.K0file = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Kernel File', fpath, r"Akvo kernels (*.yml)")[0]
  317. self.ui.kernelText.clear()
  318. self.ui.kernelText.append(self.K0file)
  319. def QTInv(self):
  320. print("Big RED INVERT BUTTON")
  321. try:
  322. with open('.akvo.last.path') as f:
  323. fpath = f.readline()
  324. pass
  325. except IOError as e:
  326. fpath = '.'
  327. #K0file = self.ui.kernelText.text()
  328. #akvoDataFile = self.ui.dataText.text()
  329. T2lo = self.ui.T2low.value()
  330. T2hi = self.ui.T2hi.value()
  331. NT2 = self.ui.NT2.value()
  332. dataChan = self.ui.invChan.currentText()
  333. t2Obj = self.ui.T2Objective.currentText()
  334. depthObj = self.ui.depthObjective.currentText()
  335. alpha_0 = self.ui.initialAlpha.value()
  336. invDict = dict()
  337. invDict["data"] = dict()
  338. invDict["data"] = dict()
  339. invDict["data"][self.akvoDataFile] = dict()
  340. invDict["data"][self.akvoDataFile]["channels"] = [dataChan,]
  341. invDict["K0"] = [self.K0file,]
  342. invDict["T2Bins"] = dict()
  343. invDict["T2Bins"]["low"] = T2lo
  344. invDict["T2Bins"]["high"] = T2hi
  345. invDict["T2Bins"]["number"] = NT2
  346. node = yaml.YAML()
  347. kpo = open( "invert.yml", 'w' )
  348. node.dump(invDict, kpo)
  349. callBox = callScript( ) #QtWidgets.QDialog()
  350. callBox.ui = Ui_callScript()
  351. callBox.ui.setupUi( callBox )
  352. callBox.setupQTInv( "invert.yml" )
  353. callBox.exec_()
  354. callBox.show()
  355. def calcK0(self):
  356. try:
  357. with open('.akvo.last.path') as f:
  358. fpath = f.readline()
  359. pass
  360. except IOError as e:
  361. fpath = '.'
  362. #self.K0akvoDataFile = QtWidgets.QFileDialog.getOpenFileName(self, 'Select Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  363. #akvoData = QtWidgets.QFileDialog.getOpenFileName(self, 'Open Datafile File', fpath, r"Akvo datafiles (*.yaml)")[0]
  364. txCoilList = self.ui.txListWidget.selectedItems() #currentItem().text()
  365. txCoils = []
  366. for txCoil in txCoilList:
  367. print("txCoil", txCoil.text())
  368. txCoils.append(txCoil.text())
  369. rxCoilList = self.ui.txListWidget.selectedItems() #currentItem().text()
  370. rxCoils = []
  371. for rxCoil in rxCoilList:
  372. print("rxCoil", rxCoil.text())
  373. rxCoils.append(rxCoil.text())
  374. saveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save kernel as", fpath, r"Merlin KernelV0 (*.yml)")[0]
  375. intDict = dict()
  376. intDict["origin_n"] = self.ui.originN.value()
  377. intDict["origin_e"] = self.ui.originE.value()
  378. intDict["origin_d"] = self.ui.originD.value()
  379. intDict["size_n"] = self.ui.sizeN.value()
  380. intDict["size_e"] = self.ui.sizeE.value()
  381. intDict["size_d"] = self.ui.sizeD.value()
  382. intDict["nLay"] = self.ui.NLayers.value()
  383. intDict["thick1"] = self.ui.thick1.value()
  384. intDict["thickN"] = self.ui.thickN.value()
  385. intDict["Lspacing"] = self.ui.layerSpacing.currentText()
  386. intDict["minLevel"] = self.ui.minLevel.value()
  387. intDict["maxLevel"] = self.ui.maxLevel.value()
  388. intDict["branchTol"] = self.ui.branchTol.value()
  389. intDict["txCoils"] = txCoils
  390. intDict["rxCoils"] = rxCoils
  391. # conductivity model...
  392. #tops = self.ui.layerTableWidget.col(0)
  393. #print("Tops", tops)
  394. tops = []
  395. itop = 0
  396. while self.ui.layerTableWidget.item(itop, 0).text():
  397. tops.append( float(self.ui.layerTableWidget.item(itop,0).text()) )
  398. itop += 1
  399. bots = []
  400. ibot = 0
  401. while self.ui.layerTableWidget.item(ibot, 1).text():
  402. bots.append( float(self.ui.layerTableWidget.item(ibot, 1).text()) )
  403. ibot += 1
  404. sigs = []
  405. isig = 0
  406. while self.ui.layerTableWidget.item(isig, 2).text():
  407. sigs.append( 1./float(self.ui.layerTableWidget.item(isig, 2).text()) )
  408. isig += 1
  409. intDict["tops"] = tops
  410. intDict["bots"] = bots
  411. intDict["sigs"] = sigs
  412. node = yaml.YAML()
  413. kpo = open( "kparams.yml", 'w' )
  414. node.dump(intDict, kpo)
  415. callBox = callScript( ) #QtWidgets.QDialog()
  416. callBox.ui = Ui_callScript()
  417. callBox.ui.setupUi( callBox )
  418. callBox.setupCB( self.K0akvoDataFile, "kparams.yml", saveStr )
  419. callBox.exec_()
  420. callBox.show()
  421. def loopAdd(self):
  422. #print(self.ui.loopLabel.text())
  423. #print(self.ui.loopGeom.currentText())
  424. #print(self.ui.loopType.currentText())
  425. #print( "label len", len(self.ui.loopLabel.text()) )
  426. if len(self.ui.loopLabel.text().strip()) == 0:
  427. Error = QtWidgets.QMessageBox()
  428. Error.setWindowTitle("Error!")
  429. Error.setText("Loop label cannot be blank or repeated")
  430. Error.setDetailedText("Each loop label must be unique and comprise at least one character. Leading and trailing whitespace will be trimmed.")
  431. Error.exec_()
  432. else:
  433. ### Circular loop
  434. if self.ui.loopGeom.currentText() == "Circular":
  435. dialog = QtWidgets.QDialog()
  436. dialog.ui = Ui_circularLoopAdd()
  437. dialog.ui.setupUi(dialog)
  438. dialog.exec_()
  439. dialog.show()
  440. if dialog.result():
  441. cn = dialog.ui.centreNorth.value()
  442. ce = dialog.ui.centreEast.value()
  443. ht = dialog.ui.loopHeight.value()
  444. rad = dialog.ui.loopRadius.value()
  445. turns = dialog.ui.loopTurns.value()
  446. ns = dialog.ui.segments.value()
  447. cwise = dialog.ui.cwiseBox.currentIndex()
  448. #print("cwise", cwise)
  449. #dip = dialog.ui.dip.value()
  450. #azimuth = dialog.ui.az.value()
  451. self.loops[self.ui.loopLabel.text()] = FDEM1D.PolygonalWireAntenna()
  452. self.loops[self.ui.loopLabel.text()].SetNumberOfPoints( dialog.ui.segments.value() + 1 )
  453. self.loops[self.ui.loopLabel.text()].SetNumberOfTurns( dialog.ui.loopTurns.value() )
  454. points = np.linspace(0, 2*np.pi, dialog.ui.segments.value()+1)
  455. for iseg, ipt in enumerate(points):
  456. if cwise == 0:
  457. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( cn+rad*np.sin(ipt), ce+rad*np.cos(ipt), ht) )
  458. else:
  459. self.loops[self.ui.loopLabel.text()].SetPoint(iseg, ( -cn+rad*np.sin(ipt), ce+rad*np.cos(ipt), ht) )
  460. self.loops[self.ui.loopLabel.text()].SetNumberOfFrequencies(1)
  461. self.loops[self.ui.loopLabel.text()].SetCurrent(1.)
  462. if self.ui.loopGeom.currentText() == "figure-8":
  463. dialog = QtWidgets.QDialog()
  464. dialog.ui = Ui_figure8LoopAdd()
  465. dialog.ui.setupUi(dialog)
  466. dialog.exec_()
  467. dialog.show()
  468. if dialog.result():
  469. cn1 = dialog.ui.centreNorth1.value()
  470. ce1 = dialog.ui.centreEast1.value()
  471. cn2 = dialog.ui.centreNorth2.value()
  472. ce2 = dialog.ui.centreEast2.value()
  473. ht = dialog.ui.loopHeight.value()
  474. rad = dialog.ui.loopRadius.value()
  475. turns = dialog.ui.loopTurns.value()
  476. ns = dialog.ui.segments.value()
  477. #cwise = dialog.ui.cwiseBox.currentIndex()
  478. print(cn1, ce1, cn2, ce2, ht, rad, turns, ns)
  479. if self.ui.loopGeom.currentText() == "polygon":
  480. dialog = QtWidgets.QDialog()
  481. dialog.ui = Ui_polygonalLoopAdd()
  482. dialog.ui.setupUi(dialog)
  483. ##########################################################################
  484. # Loop Table
  485. dialog.ui.loopTableWidget.setRowCount(80)
  486. dialog.ui.loopTableWidget.setColumnCount(3)
  487. #dialog.ui.loopTableWidget.horizontalHeader().setSectionResizeMode(0, QtGui.Qt.QHeaderView.Stretch)
  488. dialog.ui.loopTableWidget.setHorizontalHeaderLabels( \
  489. ["Northing [m]","Easting [m]","Height [m]"])
  490. for ir in range(0, dialog.ui.loopTableWidget.rowCount() ):
  491. for ic in range(0, 3): #dialog.ui.loopTableWidget.columnCount() ):
  492. pCell = QtWidgets.QTableWidgetItem()
  493. #pCell.setFlags(QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsSelectable)
  494. #pCell.setFlags(QtCore.Qt.NoItemFlags) # not selectable
  495. #pCell.setBackground( QtGui.QColor("lightgrey").lighter(110) )
  496. dialog.ui.loopTableWidget.setItem(ir, ic, pCell)
  497. #dialog.ui.loopTableWidget.cellChanged.connect(self.loopCellChanged)
  498. #dialog.ui.loopTableWidget.itemClicked.connect(self.loopCellClicked)
  499. #self.ui.loopTableWidget.cellPressed.connect(self.loopCellChanged)
  500. #self.ui.loopTableWidget.cellPressed.connect(self.loopCellClicked)
  501. dialog.ui.loopTableWidget.setDragDropOverwriteMode(False)
  502. dialog.ui.loopTableWidget.setDragEnabled(False)
  503. #self.ui.loopTableWidget.setDragDropMode(QtWidgets.QAbstractItemView.InternalMove)
  504. dialog.ui.loopTableWidget.resizeColumnsToContents()
  505. dialog.exec_()
  506. dialog.show()
  507. if dialog.result():
  508. self.loops[self.ui.loopLabel.text()] = FDEM1D.PolygonalWireAntenna()
  509. self.loops[self.ui.loopLabel.text()].SetNumberOfTurns( dialog.ui.loopTurns.value() )
  510. npts = 0
  511. for ir in range(0, dialog.ui.loopTableWidget.rowCount() ):
  512. if len(dialog.ui.loopTableWidget.item(ir, 0).text()) == 0:
  513. break
  514. npts += 1
  515. self.loops[self.ui.loopLabel.text()].SetNumberOfPoints( npts )
  516. for ir in range( 0, npts ):
  517. self.loops[self.ui.loopLabel.text()].SetPoint(ir, eval(dialog.ui.loopTableWidget.item(ir, 0).text()), \
  518. eval(dialog.ui.loopTableWidget.item(ir, 1).text()), \
  519. eval(dialog.ui.loopTableWidget.item(ir, 2).text()) \
  520. )
  521. self.loops[self.ui.loopLabel.text()].SetNumberOfFrequencies(1)
  522. self.loops[self.ui.loopLabel.text()].SetCurrent(1.)
  523. # general across all types
  524. if dialog.result():
  525. yml = open( self.ui.loopLabel.text() + ".yml", 'w' )
  526. print( self.loops[self.ui.loopLabel.text()], file=yml)
  527. # update the table
  528. self.ui.txRxTable.setRowCount( len(self.loops.keys()) )
  529. pCell = QtWidgets.QTableWidgetItem()
  530. pCell.setText( self.ui.loopLabel.text() )
  531. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled )
  532. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 0, pCell)
  533. gCell = QtWidgets.QTableWidgetItem()
  534. gCell.setText( self.ui.loopGeom.currentText() )
  535. gCell.setFlags( QtCore.Qt.ItemIsEnabled )
  536. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 1, gCell)
  537. tCell = QtWidgets.QTableWidgetItem()
  538. tCell.setText( str(dialog.ui.loopTurns.value()) )
  539. tCell.setFlags( QtCore.Qt.ItemIsEnabled )
  540. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 2, tCell)
  541. txCell = QtWidgets.QTableWidgetItem()
  542. txCell.setText( str(self.ui.loopType.currentText()) )
  543. txCell.setFlags( QtCore.Qt.ItemIsEnabled )
  544. self.ui.txRxTable.setItem( len(self.loops.keys())-1, 3, txCell)
  545. def headerBoxShrink(self):
  546. #self.ui.headerFileBox.setVisible(False)
  547. if self.ui.headerFileBox.isChecked( ):
  548. #self.ui.headerFileBox.setMinimumSize(460,250)
  549. self.ui.headerBox2.setVisible(True)
  550. else:
  551. #self.ui.headerFileBox.setMinimumSize(460,50)
  552. self.ui.headerBox2.setVisible(False)
  553. def sigmaCellChanged(self):
  554. self.ui.layerTableWidget.cellChanged.disconnect(self.sigmaCellChanged)
  555. # TODO consider building the model whenever this is called. Would be nice to be able to
  556. # do that. Would require instead dist of T2 I guess.
  557. jj = self.ui.layerTableWidget.currentColumn()
  558. ii = self.ui.layerTableWidget.currentRow()
  559. val = "class 'NoneType'>"
  560. try:
  561. val = eval (str( self.ui.layerTableWidget.item(ii, jj).text() ))
  562. except:
  563. #if jj != 0:
  564. # Error = QtWidgets.QMessageBox()
  565. # Error.setWindowTitle("Error!")
  566. # Error.setText("Non-numeric value encountered")
  567. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  568. return
  569. if jj == 1:
  570. #item.setFlags(QtCore.Qt.ItemIsEnabled)
  571. pCell = self.ui.layerTableWidget.item(ii, jj)
  572. pCell.setBackground( QtGui.QColor("white"))
  573. pCell = self.ui.layerTableWidget.item(ii+1, jj-1)
  574. if str(type(pCell)) == "<class 'NoneType'>":
  575. pCell = QtWidgets.QTableWidgetItem()
  576. pCell.setFlags(QtCore.Qt.ItemIsEnabled)
  577. self.ui.layerTableWidget.setItem(ii+1, jj-1, pCell)
  578. if ii == 0:
  579. pCell.setText(str(val))
  580. #pCell3 = self.ui.layerTableWidget.item(ii+1, jj)
  581. #print ("setting", ii, jj, type(pCell3))
  582. #print ( "setting", ii, jj, type(pCell3))
  583. #pCell3.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  584. #pCell3.setFlags( QtCore.Qt.ItemIsEditable )
  585. elif ii > 0:
  586. val2 = eval (str( self.ui.layerTableWidget.item(ii-1, jj).text() ))
  587. #print ("val2", val2, val, type(val))
  588. #if str(type(pCell)) == "<class 'NoneType'>":
  589. if type(val) == str or val > val2:
  590. pCell.setText(str(val))
  591. else:
  592. Error = QtWidgets.QMessageBox()
  593. Error.setWindowTitle("Error!")
  594. Error.setText("Non-increasing layer detected")
  595. Error.setDetailedText("Each layer interface must be below the one above it.")
  596. Error.exec_()
  597. #err_msg = "Quadrature detection has already been done!"
  598. #reply =QtWidgets.QMessageBox.critical(self, 'Error',
  599. # err_msg)
  600. pCell2 = self.ui.layerTableWidget.item(ii, jj)
  601. pCell2.setText(str(""))
  602. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  603. return
  604. # enable next layer
  605. pCell4 = self.ui.layerTableWidget.item(ii+1, jj)
  606. pCell4.setBackground( QtGui.QColor("lightblue") ) #.lighter(110))
  607. pCell4.setForeground( QtGui.QColor("black"))
  608. pCell4.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  609. pCell5 = self.ui.layerTableWidget.item(ii+1, jj+1)
  610. pCell5.setBackground( QtGui.QColor("white"))
  611. pCell5.setForeground( QtGui.QColor("black"))
  612. pCell5.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  613. if ii == 0 and jj == 0:
  614. pCell = self.ui.layerTableWidget.item(0, 1)
  615. pCell.setBackground(QtGui.QColor("lightblue")) #.lighter(110) )
  616. pCell.setForeground( QtGui.QColor("black"))
  617. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsEnabled )
  618. self.ui.layerTableWidget.cellChanged.connect(self.sigmaCellChanged)
  619. def plotLoops2(self):
  620. self.ui.mplwidget.reAxH(1)
  621. for loop in self.loops:
  622. POINTS = self.loops[loop].GetPoints().T
  623. self.ui.mplwidget.ax1.plot( POINTS[:,1], POINTS[:,0], label=loop )
  624. self.ui.mplwidget.ax1.spines['right'].set_visible(False)
  625. self.ui.mplwidget.ax1.spines['top'].set_visible(False)
  626. self.ui.mplwidget.ax1.set_xlabel("easting (m)")
  627. self.ui.mplwidget.ax1.set_ylabel("northing (m)")
  628. self.ui.mplwidget.ax1.legend()
  629. self.ui.mplwidget.ax1.set_aspect('equal') #, adjustable='box')
  630. self.ui.mplwidget.draw()
  631. def removeLoop(self):
  632. del self.loops[ self.ui.txRxTable.item( self.ui.txRxTable.currentRow(), 0).text() ]
  633. self.ui.txRxTable.removeRow(self.ui.txRxTable.currentRow())
  634. def about(self):
  635. # TODO proper popup with info
  636. #self.w = MyPopup("""About Akvo \n
  637. # Akvo is an open source project developed primarily by Trevor Irons.
  638. #""")
  639. #self.w.setGeometry(100, 100, 400, 200)
  640. #self.w.show()
  641. #print("ABOUT")
  642. # Just a splash screen for now
  643. logo = pkg_resources.resource_filename(__name__, 'akvo-about.png')
  644. pixmap = QtGui.QPixmap(logo)
  645. self.splash = QtWidgets.QSplashScreen(pixmap, QtCore.Qt.WindowStaysOnTopHint)
  646. self.splash.show()
  647. def connectGMRDataProcessor(self):
  648. self.RAWDataProc = mrsurvey.GMRDataProcessor()
  649. self.RAWDataProc.progressTrigger.connect(self.updateProgressBar)
  650. self.RAWDataProc.enableDSPTrigger.connect(self.enableDSP)
  651. self.RAWDataProc.doneTrigger.connect(self.doneStatus)
  652. self.RAWDataProc.updateProcTrigger.connect(self.updateProc)
  653. def openGMRRAWDataset(self):
  654. """ Opens a GMR header file
  655. """
  656. try:
  657. with open('.gmr.last.path') as f:
  658. fpath = f.readline()
  659. pass
  660. except IOError as e:
  661. fpath = '.'
  662. self.headerstr = QtWidgets.QFileDialog.getOpenFileName(self, 'Open File', fpath)[0] # arg2 = File Type 'All Files (*)'
  663. self.ui.headerFileTextBrowser.clear()
  664. self.ui.headerFileTextBrowser.append(self.headerstr)
  665. if len(self.headerstr) == 0:
  666. return
  667. # clear the processing log
  668. self.ui.logTextBrowser.clear()
  669. self.logText = [] #MAK 20170126
  670. path,filen=os.path.split(str(self.headerstr))
  671. f = open('.gmr.last.path', 'w')
  672. f.write( str(self.headerstr) ) # prompt last file
  673. self.connectGMRDataProcessor()
  674. self.RAWDataProc.readHeaderFile(str(self.headerstr))
  675. # If we got this far, enable all the widgets
  676. self.ui.lcdNumberTauPulse1.setEnabled(True)
  677. self.ui.lcdNumberNuTx.setEnabled(True)
  678. self.ui.lcdNumberTuneuF.setEnabled(True)
  679. self.ui.lcdNumberSampFreq.setEnabled(True)
  680. self.ui.lcdNumberNQ.setEnabled(True)
  681. self.ui.headerFileBox.setEnabled(True)
  682. self.ui.headerFileBox.setChecked( True )
  683. self.ui.headerBox2.setVisible(True)
  684. self.ui.inputRAWParametersBox.setEnabled(True)
  685. self.ui.loadDataPushButton.setEnabled(True)
  686. # make plots as you import the dataset
  687. self.ui.plotImportCheckBox.setEnabled(True)
  688. self.ui.plotImportCheckBox.setChecked(True)
  689. # Update info from the header into the GUI
  690. self.ui.pulseTypeTextBrowser.clear()
  691. self.ui.pulseTypeTextBrowser.append(self.RAWDataProc.pulseType)
  692. self.ui.lcdNumberNuTx.display(self.RAWDataProc.transFreq)
  693. self.ui.lcdNumberTauPulse1.display(1e3*self.RAWDataProc.pulseLength[0])
  694. self.ui.lcdNumberTuneuF.display(self.RAWDataProc.TuneCapacitance)
  695. self.ui.lcdNumberSampFreq.display(self.RAWDataProc.samp)
  696. self.ui.lcdNumberNQ.display(self.RAWDataProc.nPulseMoments)
  697. self.ui.DeadTimeSpinBox.setValue(1e3*self.RAWDataProc.deadTime)
  698. self.ui.CentralVSpinBox.setValue( self.RAWDataProc.transFreq )
  699. if self.RAWDataProc.pulseType != "FID":
  700. self.ui.lcdNumberTauPulse2.setEnabled(1)
  701. self.ui.lcdNumberTauPulse2.display(1e3*self.RAWDataProc.pulseLength[1])
  702. self.ui.lcdNumberTauDelay.setEnabled(1)
  703. self.ui.lcdNumberTauDelay.display(1e3*self.RAWDataProc.interpulseDelay)
  704. self.ui.FIDProcComboBox.clear()
  705. if self.RAWDataProc.pulseType == "4PhaseT1" or self.RAWDataProc.pulseType == "T1":
  706. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1")
  707. self.ui.FIDProcComboBox.insertItem(1, "Pulse 2")
  708. self.ui.FIDProcComboBox.insertItem(2, "Both")
  709. self.ui.FIDProcComboBox.setCurrentIndex (1)
  710. elif self.RAWDataProc.pulseType == "FID":
  711. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1")
  712. self.ui.FIDProcComboBox.setCurrentIndex (0)
  713. def ExportPreprocess(self):
  714. """ This method exports to YAML
  715. """
  716. try:
  717. with open('.akvo.last.yaml.path') as f:
  718. fpath = f.readline()
  719. pass
  720. except IOError as e:
  721. fpath = '.'
  722. fdir = os.path.dirname(fpath)
  723. # Pickle the preprocessed data dictionary
  724. SaveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save as", fdir, r"Processed data (*.yaml)")[0]
  725. spath,filen=os.path.split(str(SaveStr))
  726. f = open('.akvo.last.yaml.path', 'w')
  727. f.write( str(spath) ) # prompt last file
  728. INFO = {}
  729. INFO["headerstr"] = str(self.headerstr)
  730. INFO["pulseType"] = self.RAWDataProc.pulseType
  731. INFO["transFreq"] = self.RAWDataProc.transFreq.tolist()
  732. INFO["pulseLength"] = self.RAWDataProc.pulseLength.tolist()
  733. INFO["TuneCapacitance"] = self.RAWDataProc.TuneCapacitance.tolist()
  734. #INFO["samp"] = self.RAWDataProc.samp
  735. INFO["nPulseMoments"] = self.RAWDataProc.nPulseMoments
  736. #INFO["deadTime"] = self.RAWDataProc.deadTime
  737. INFO["processed"] = "Akvo v" + VERSION + ", on " + time.strftime("%d/%m/%Y")
  738. # Pulse current info
  739. ip = 0
  740. INFO["Pulses"] = {}
  741. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  742. qq = []
  743. qv = []
  744. for ipm in range(self.RAWDataProc.DATADICT["nPulseMoments"]):
  745. #for istack in self.RAWDataProc.DATADICT["stacks"]:
  746. # print ("stack q", self.RAWDataProc.DATADICT[pulse]["Q"][ipm,istack-1])
  747. qq.append(np.mean( self.RAWDataProc.DATADICT[pulse]["Q"][ipm,:]) )
  748. qv.append(np.std( self.RAWDataProc.DATADICT[pulse]["Q"][ipm,:]/self.RAWDataProc.pulseLength[ip] ))
  749. qq = np.array(qq)
  750. qv = np.array(qv)
  751. iQ = np.argsort(np.array(qq))
  752. qq = np.array(qq)[iQ]
  753. qv = np.array(qv)[iQ]
  754. INFO["Pulses"][pulse] = {}
  755. INFO["Pulses"][pulse]["units"] = "A"
  756. INFO["Pulses"][pulse]["current"] = VectorXr(qq/self.RAWDataProc.pulseLength[ip])
  757. INFO["Pulses"][pulse]["variance"] = VectorXr(qv)
  758. ip += 1
  759. # Data
  760. if self.RAWDataProc.gated == True:
  761. INFO["Gated"] = {}
  762. INFO["Gated"]["abscissa units"] = "ms"
  763. INFO["Gated"]["data units"] = "nT"
  764. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  765. INFO["Gated"][pulse] = {}
  766. INFO["Gated"][pulse]["abscissa"] = VectorXr( self.RAWDataProc.GATEDABSCISSA )
  767. INFO["Gated"][pulse]["windows"] = VectorXr( self.RAWDataProc.GATEDWINDOW )
  768. for ichan in self.RAWDataProc.DATADICT[pulse]["chan"]:
  769. INFO["Gated"][pulse]["Chan. " + str(ichan)] = {}
  770. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["STD"] = VectorXr( np.std(self.RAWDataProc.GATED[ichan]["NR"], axis=0) )
  771. INFO["Gated"][pulse]["Chan. " + str(ichan)]["STD"] = VectorXr( np.average(self.RAWDataProc.GATED[ichan]["BN"], axis=0) )
  772. for ipm in range(self.RAWDataProc.DATADICT["nPulseMoments"]):
  773. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " CA"] = VectorXr(self.RAWDataProc.GATED[ichan]["CA"][ipm])
  774. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " RE"] = VectorXr(self.RAWDataProc.GATED[ichan]["RE"][ipm])
  775. INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " IM"] = VectorXr(self.RAWDataProc.GATED[ichan]["IM"][ipm])
  776. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " IP"] = VectorXr(self.RAWDataProc.GATED[ichan]["IP"][ipm])
  777. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " NR"] = VectorXr(self.RAWDataProc.GATED[ichan]["NR"][ipm])
  778. #INFO["Gated"][pulse]["Chan. " + str(ichan)]["Q-"+str(ipm) + " STD" ] = VectorXr(self.RAWDataProc.GATED[ichan]["SIGMA"][ipm])
  779. # we have gated data
  780. # Window edges
  781. # Window centres
  782. with open(SaveStr, 'w') as outfile:
  783. #for line in self.logText:
  784. # outfile.write(line+"\n")
  785. yaml.dump(self.YamlNode, outfile)
  786. yaml.dump(INFO, outfile) #, default_flow_style=False)
  787. def SavePreprocess(self):
  788. #if "Saved" not in self.YamlNode.Processing.keys():
  789. # self.YamlNode.Processing["Saved"] = []
  790. #self.YamlNode.Processing["Saved"].append(datetime.datetime.now().isoformat())
  791. #self.Log()
  792. import pickle, os
  793. try:
  794. with open('.akvo.last.path') as f:
  795. fpath = f.readline()
  796. pass
  797. except IOError as e:
  798. fpath = '.'
  799. fdir = os.path.dirname(fpath)
  800. # Pickle the preprocessed data dictionary
  801. SaveStr = QtWidgets.QFileDialog.getSaveFileName(self, "Save as", fdir, r"Pickle (*.dmp)")
  802. spath,filen=os.path.split(str(SaveStr[0]))
  803. f = open('.akvo.last.path', 'w')
  804. f.write( str(spath) ) # prompt last file
  805. save = open(SaveStr[0], 'wb')
  806. # Add some extra info
  807. INFO = {}
  808. INFO["pulseType"] = self.RAWDataProc.pulseType
  809. INFO["prePulseDelay"] = self.RAWDataProc.prePulseDelay
  810. INFO["interpulseDelay"] = self.RAWDataProc.interpulseDelay
  811. INFO["transFreq"] = self.RAWDataProc.transFreq
  812. INFO["pulseLength"] = self.RAWDataProc.pulseLength
  813. INFO["TuneCapacitance"] = self.RAWDataProc.TuneCapacitance
  814. INFO["samp"] = self.RAWDataProc.samp
  815. INFO["nPulseMoments"] = self.RAWDataProc.nPulseMoments
  816. INFO["deadTime"] = self.RAWDataProc.deadTime
  817. INFO["transFreq"] = self.RAWDataProc.transFreq
  818. INFO["headerstr"] = str(self.headerstr)
  819. INFO["nDAQVersion"] = self.RAWDataProc.nDAQVersion
  820. INFO["log"] = yaml.dump( self.YamlNode )
  821. TXRX = []
  822. for ir in range(0, self.ui.txRxTable.rowCount() ):
  823. txrx = []
  824. for ic in range(0, self.ui.txRxTable.columnCount() ):
  825. txrx.append( self.ui.txRxTable.item(ir, ic).text() )
  826. TXRX.append(txrx)
  827. INFO["TXRX"] = TXRX
  828. #
  829. print("META SAVE")
  830. print("INFO log", INFO["log"])
  831. self.RAWDataProc.DATADICT["INFO"] = INFO
  832. pickle.dump(self.RAWDataProc.DATADICT, save)
  833. save.close()
  834. # Export XML file suitable for USGS ScienceBase Data Release
  835. def ExportXML(self):
  836. """ This is a filler function for use by USGS collaborators
  837. """
  838. return 42
  839. def OpenPreprocess(self):
  840. import pickle
  841. try:
  842. with open('.akvo.last.path') as f:
  843. fpath = f.readline()
  844. pass
  845. except IOError as e:
  846. fpath = '.'
  847. #filename = QtWidgets.QFileDialog.getOpenFileName(self, 'Open File', '.')
  848. fpath = QtWidgets.QFileDialog.getOpenFileName(self, 'Open preprocessed file', fpath, r"Pickle Files (*.dmp)")[0]
  849. f = open('.akvo.last.path', 'w')
  850. f.write( str(fpath) ) # prompt last file
  851. self.ui.logTextBrowser.clear()
  852. self.logText = []
  853. if len(fpath) == 0:
  854. return
  855. pfile = open(fpath,'rb')
  856. unpickle = pickle.Unpickler(pfile)
  857. self.connectGMRDataProcessor()
  858. self.RAWDataProc.DATADICT = unpickle.load()
  859. # This line causes Akvo to crash, if the header file is no longer there. We don't need to load the
  860. # file. TODO, need to disable "Load Data" in Load command though, as that is no longer possible.
  861. #self.RAWDataProc.readHeaderFile(self.RAWDataProc.DATADICT["INFO"]["headerstr"])
  862. self.headerstr = self.RAWDataProc.DATADICT["INFO"]["headerstr"]
  863. self.RAWDataProc.pulseType = self.RAWDataProc.DATADICT["INFO"]["pulseType"]
  864. self.RAWDataProc.transFreq = self.RAWDataProc.DATADICT["INFO"]["transFreq"]
  865. self.RAWDataProc.pulseLength = self.RAWDataProc.DATADICT["INFO"]["pulseLength"]
  866. self.RAWDataProc.TuneCapacitance = self.RAWDataProc.DATADICT["INFO"]["TuneCapacitance"]
  867. self.RAWDataProc.samp = self.RAWDataProc.DATADICT["INFO"]["samp"]
  868. self.RAWDataProc.nPulseMoments = self.RAWDataProc.DATADICT["INFO"]["nPulseMoments"]
  869. self.RAWDataProc.deadTime = self.RAWDataProc.DATADICT["INFO"]["deadTime"]
  870. self.RAWDataProc.transFreq = self.RAWDataProc.DATADICT["INFO"]["transFreq"]
  871. self.RAWDataProc.nDAQVersion = self.RAWDataProc.DATADICT["INFO"]["nDAQVersion"]
  872. #self.RAWDataProc.prePulseDelay = self.RAWDataProc.DATADICT["INFO"]["prePulseDelay"]
  873. self.RAWDataProc.dt = 1./self.RAWDataProc.samp
  874. self.dataChan = self.RAWDataProc.DATADICT[ self.RAWDataProc.DATADICT["PULSES"][0] ]["chan"]
  875. # Keep backwards compatibility with prior saved pickles???
  876. #self.ui.logTextBrowser.clear()
  877. #self.ui.logTextBrowser.append( yaml.dump(self.YamlNode)) #, default_flow_style=False) )
  878. #for a in self.logText:
  879. # self.ui.logTextBrowser.append(str(a))
  880. #self.ui.logTextBrowser
  881. #self.ui.logTextBrowser.clear()
  882. #print ( self.RAWDataProc.DATADICT["INFO"]["log"] )
  883. if "TXRX" in self.RAWDataProc.DATADICT["INFO"].keys():
  884. TXRX = self.RAWDataProc.DATADICT["INFO"]["TXRX"]
  885. self.ui.txRxTable.setRowCount( len(TXRX))
  886. for irow, row in enumerate(TXRX):
  887. for icol, val in enumerate(row):
  888. pCell = QtWidgets.QTableWidgetItem()
  889. pCell.setText( val )
  890. pCell.setFlags( QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled )
  891. self.ui.txRxTable.setItem(irow, icol, pCell)
  892. self.logText = self.RAWDataProc.DATADICT["INFO"]["log"] # YAML
  893. parse = yaml.load( self.logText, Loader=yaml.Loader )
  894. self.YamlNode = AkvoYamlNode( ) #self.logText )
  895. self.YamlNode.Akvo_VERSION = (yaml.load( self.logText, Loader=yaml.Loader )).Akvo_VERSION
  896. AKVO_VERSION = np.array(self.YamlNode.Akvo_VERSION.split("."), dtype=int)
  897. if AKVO_VERSION[0] >= 1 and AKVO_VERSION[1] >= 2 and AKVO_VERSION[2] >= 3:
  898. self.RAWDataProc.interpulseDelay = self.RAWDataProc.DATADICT["INFO"]["interpulseDelay"]
  899. self.YamlNode.Import = OrderedDict(parse.Import)
  900. self.YamlNode.Processing = list(parse.Processing)
  901. self.YamlNode.Stacking = OrderedDict(parse.Stacking)
  902. self.YamlNode.META = OrderedDict(parse.META)
  903. self.logGUI()
  904. self.Log()
  905. #self.ui.logTextBrowser.append( yaml.dump(self.YamlNode)) #, default_flow_style=False) )
  906. #except KeyError:
  907. # pass
  908. # Remove "Saved" and "Loaded" from processing flow
  909. #if "Loaded" not in self.YamlNode.Processing.keys():
  910. # self.YamlNode.Processing["Loaded"] = []
  911. #self.YamlNode.Processing["Loaded"].append(datetime.datetime.now().isoformat())
  912. #self.Log()
  913. # If we got this far, enable all the widgets
  914. self.ui.lcdNumberTauPulse1.setEnabled(True)
  915. self.ui.lcdNumberNuTx.setEnabled(True)
  916. self.ui.lcdNumberTuneuF.setEnabled(True)
  917. self.ui.lcdNumberSampFreq.setEnabled(True)
  918. self.ui.lcdNumberNQ.setEnabled(True)
  919. self.ui.headerFileBox.setEnabled(True)
  920. self.ui.headerFileBox.setChecked( True )
  921. self.headerBoxShrink()
  922. #self.ui.headerBox2.setVisible(True)
  923. self.ui.inputRAWParametersBox.setEnabled(False)
  924. self.ui.loadDataPushButton.setEnabled(True)
  925. # make plots as you import the datasetmost
  926. self.ui.plotImportCheckBox.setEnabled(True)
  927. self.ui.plotImportCheckBox.setChecked(True)
  928. # enable the LCDs
  929. self.ui.lcdNumberFID1Length.setEnabled(1)
  930. self.ui.lcdNumberFID2Length.setEnabled(1)
  931. self.ui.lcdNumberResampFreq.setEnabled(1)
  932. self.ui.lcdTotalDeadTime.setEnabled(1)
  933. # enable META tab
  934. self.ui.METATab.setEnabled(1)
  935. self.ui.siteBox.setEnabled(1)
  936. #self.ui.lcdTotalDeadTime.display( 1e3*self.RAWDataProc.DATADICT["INFO"]["deadTime"] )
  937. self.ui.headerFileTextBrowser.clear( )
  938. self.ui.headerFileTextBrowser.append( self.RAWDataProc.DATADICT["INFO"]["headerstr"] )
  939. if u"Pulse 1" in self.RAWDataProc.DATADICT.keys():
  940. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  941. self.ui.lcdTotalDeadTime.display( round(1e3*(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1]), 3) )
  942. print("CALC DEAD", (1e3*(self.RAWDataProc.prePulseDelay))) # - (self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1])), 3) )
  943. if u"Pulse 2" in self.RAWDataProc.DATADICT.keys():
  944. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  945. self.ui.lcdTotalDeadTime.display( 1e3 * (self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 2"]["PULSE_TIMES"][-1]) )
  946. # Update info from the header into the GUI
  947. self.ui.pulseTypeTextBrowser.clear()
  948. self.ui.pulseTypeTextBrowser.append(self.RAWDataProc.pulseType)
  949. self.ui.lcdNumberNuTx.display(self.RAWDataProc.transFreq)
  950. self.ui.lcdNumberTauPulse1.display(1e3*self.RAWDataProc.pulseLength[0])
  951. self.ui.lcdNumberTuneuF.display(self.RAWDataProc.TuneCapacitance)
  952. self.ui.lcdNumberResampFreq.display(self.RAWDataProc.samp)
  953. self.ui.lcdNumberSampFreq.display(50000) # TODO, if non GMR is supported, query
  954. self.ui.lcdNumberNQ.display(self.RAWDataProc.nPulseMoments)
  955. self.ui.DeadTimeSpinBox.setValue(1e3*self.RAWDataProc.deadTime)
  956. self.ui.CentralVSpinBox.setValue( self.RAWDataProc.transFreq )
  957. if self.RAWDataProc.pulseType != "FID":
  958. self.ui.lcdNumberTauPulse2.setEnabled(1)
  959. self.ui.lcdNumberTauPulse2.display(1e3*self.RAWDataProc.pulseLength[1])
  960. self.ui.lcdNumberTauDelay.setEnabled(1)
  961. self.ui.lcdNumberTauDelay.display(1e3*self.RAWDataProc.interpulseDelay)
  962. self.ui.FIDProcComboBox.clear()
  963. if self.RAWDataProc.pulseType == "4PhaseT1" or self.RAWDataProc.pulseType == "T1":
  964. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1") #, const QVariant & userData = QVariant() )
  965. self.ui.FIDProcComboBox.insertItem(1, "Pulse 2") #, const QVariant & userData = QVariant() )
  966. self.ui.FIDProcComboBox.insertItem(2, "Both") #, const QVariant & userData = QVariant() )
  967. if len( self.RAWDataProc.DATADICT["PULSES"]) == 2:
  968. self.ui.FIDProcComboBox.setCurrentIndex (2)
  969. elif self.RAWDataProc.DATADICT["PULSES"][0] == "Pulse 1":
  970. self.ui.FIDProcComboBox.setCurrentIndex (0)
  971. else:
  972. self.ui.FIDProcComboBox.setCurrentIndex (1)
  973. elif self.RAWDataProc.pulseType == "FID":
  974. self.ui.FIDProcComboBox.insertItem(0, "Pulse 1") #, const QVariant & userData = QVariant() )
  975. self.ui.FIDProcComboBox.setCurrentIndex (0)
  976. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("updateProgress(int)"), self.updateProgressBar)
  977. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("enableDSP()"), self.enableDSP)
  978. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("doneStatus()"), self.doneStatus)
  979. self.RAWDataProc.progressTrigger.connect(self.updateProgressBar)
  980. self.RAWDataProc.enableDSPTrigger.connect(self.enableDSP)
  981. self.RAWDataProc.doneTrigger.connect(self.doneStatus)
  982. self.enableAll()
  983. def loadRAW(self):
  984. #################################################
  985. # Check to make sure we are ready to process
  986. # Header
  987. if self.RAWDataProc == None:
  988. err_msg = "You need to load a header first."
  989. reply = QtGui.QMessageBox.critical(self, 'Error',
  990. err_msg) #, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  991. return
  992. # Stacks
  993. try:
  994. self.procStacks = np.array(eval(str("np.r_["+self.ui.stacksLineEdit.text())+"]"))
  995. except:
  996. err_msg = "You need to set your stacks correctly.\n" + \
  997. "This should be a Python Numpy interpretable list\n" + \
  998. "of stack indices. For example 1:24 or 1:4,8:24"
  999. QtGui.QMessageBox.critical(self, 'Error', err_msg)
  1000. return
  1001. # Data Channels
  1002. #Chan = np.arange(0,9,1)
  1003. try:
  1004. self.dataChan = np.array(eval(str("np.r_["+self.ui.dataChanLineEdit.text())+"]"))
  1005. except:
  1006. #QMessageBox messageBox;
  1007. #messageBox.critical(0,"Error","An error has occured !");
  1008. #messageBox.setFixedSize(500,200);
  1009. #quit_msg = "Are you sure you want to exit the program?"
  1010. #reply = QtGui.QMessageBox.question(self, 'Message',
  1011. # quit_msg, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  1012. err_msg = "You need to set your data channels correctly.\n" + \
  1013. "This should be a Python Numpy interpretable list\n" + \
  1014. "of indices. For example 1 or 1:3 or 1:3 5\n\n" + \
  1015. "valid GMR data channels fall between 1 and 8. Note that\n" +\
  1016. "1:3 is not inclusive of 3 and is the same as 1,2 "
  1017. reply = QtGui.QMessageBox.critical(self, 'Error',
  1018. err_msg) #, QtGui.QMessageBox.Yes, QtGui.QMessageBox.No)
  1019. return
  1020. #############################
  1021. # Reference Channels
  1022. # TODO make sure no overlap between data and ref channels
  1023. self.refChan = np.array( () )
  1024. if str(self.ui.refChanLineEdit.text()): # != "none":
  1025. try:
  1026. self.refChan = np.array(eval(str("np.r_["+self.ui.refChanLineEdit.text())+"]"))
  1027. except:
  1028. err_msg = "You need to set your reference channels correctly.\n" + \
  1029. "This should be a Python Numpy interpretable list\n" + \
  1030. "of indices. For example 1 or 1:3 or 1:3 5\n\n" + \
  1031. "valid GMR data channels fall between 1 and 8. Note that\n" +\
  1032. "1:3 is not inclusive of 3 and is the same as 1,2 "
  1033. QtGui.QMessageBox.critical(self, 'Error', err_msg)
  1034. return
  1035. #####################################################
  1036. # Load data
  1037. self.lock("loading RAW GMR dataset")
  1038. if self.RAWDataProc.pulseType == "FID":
  1039. self.procThread = thread.start_new_thread(self.RAWDataProc.loadFIDData, \
  1040. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1041. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1042. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1043. elif self.RAWDataProc.pulseType == "4PhaseT1":
  1044. self.procThread = thread.start_new_thread(self.RAWDataProc.load4PhaseT1Data, \
  1045. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1046. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1047. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1048. elif self.RAWDataProc.pulseType == "T1":
  1049. self.procThread = thread.start_new_thread(self.RAWDataProc.loadT1Data, \
  1050. (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1051. str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1052. 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1053. #self.procThread = thread.start_new_thread(self.RAWDataProc.load4PhaseT1Data, \
  1054. # (str(self.headerstr), self.procStacks, self.dataChan, self.refChan, \
  1055. # str(self.ui.FIDProcComboBox.currentText()), self.ui.mplwidget, \
  1056. # 1e-3 * self.ui.DeadTimeSpinBox.value( ), self.ui.plotImportCheckBox.isChecked() )) #, self))
  1057. self.YamlNode.Import["GMR Header"] = self.headerstr
  1058. self.YamlNode.Import["opened"] = datetime.datetime.now().isoformat()
  1059. self.YamlNode.Import["pulse Type"] = str(self.RAWDataProc.pulseType)
  1060. self.YamlNode.Import["stacks"] = self.procStacks.tolist()
  1061. self.YamlNode.Import["data channels"] = self.dataChan.tolist()
  1062. self.YamlNode.Import["reference channels"] = self.refChan.tolist()
  1063. self.YamlNode.Import["pulse records"] = str(self.ui.FIDProcComboBox.currentText())
  1064. self.YamlNode.Import["instrument dead time"] = (1e-3 * self.ui.DeadTimeSpinBox.value( ))
  1065. self.Log ( )
  1066. # enable META tab
  1067. self.ui.METATab.setEnabled(1)
  1068. self.ui.siteBox.setEnabled(1)
  1069. # should be already done
  1070. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("updateProgress(int)"), self.updateProgressBar)
  1071. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("enableDSP()"), self.enableDSP)
  1072. # QtCore.QObject.connect(self.RAWDataProc, QtCore.SIGNAL("doneStatus()"), self.doneStatus)
  1073. #self.ui.ProcessedBox.setEnabled(True)
  1074. self.ui.lcdNumberFID1Length.setEnabled(1)
  1075. self.ui.lcdNumberFID2Length.setEnabled(1)
  1076. self.ui.lcdNumberResampFreq.setEnabled(1)
  1077. self.ui.lcdTotalDeadTime.setEnabled(1)
  1078. self.ui.lcdTotalDeadTime.display( self.ui.DeadTimeSpinBox.value( ) )
  1079. #self.ui.lcdTotalDeadTime.display( round(1e3*(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0]-self.RAWDataProc.DATADICT["Pulse 1"]["PULSE_TIMES"][-1]), 3) )
  1080. #self.ui.lcdNumberFID1Length.display(0)
  1081. #self.ui.lcdNumberFID2Length.display(0)
  1082. #self.ui.lcdNumberResampFreq.display( self.RAWDataProc.samp )
  1083. self.mpl_toolbar = NavigationToolbar2QT(self.ui.mplwidget, self.ui.mplwidget)
  1084. self.ui.mplwidget.draw()
  1085. def Log(self):
  1086. #for line in yaml.dump(self.YamlNode, default_flow_style=False):
  1087. #for line in nlogText:
  1088. # self.ui.logTextBrowser.append( line )
  1089. # self.logText.append( line )
  1090. self.ui.logTextBrowser.clear()
  1091. self.ui.logTextBrowser.append( yaml.dump(self.YamlNode ))
  1092. def disable(self):
  1093. self.ui.inputRAWParametersBox.setEnabled(False)
  1094. self.ui.BandPassBox.setEnabled(False)
  1095. self.ui.downSampleGroupBox.setEnabled(False)
  1096. self.ui.windowFilterGroupBox.setEnabled(False)
  1097. self.ui.harmonicBox.setEnabled(False)
  1098. # self.ui.despikeGroupBox.setEnabled(False)
  1099. self.ui.adaptBox.setEnabled(False)
  1100. self.ui.adaptFDBox.setEnabled(False)
  1101. self.ui.qCalcGroupBox.setEnabled(False)
  1102. self.ui.FDSmartStackGroupBox.setEnabled(False)
  1103. self.ui.sumDataBox.setEnabled(False)
  1104. self.ui.qdGroupBox.setEnabled(False)
  1105. self.ui.gateBox.setEnabled(False)
  1106. def enableAll(self):
  1107. self.enableDSP()
  1108. self.enableQC()
  1109. def enableDSP(self):
  1110. # Bandpass filter
  1111. self.ui.BandPassBox.setEnabled(True)
  1112. self.ui.BandPassBox.setChecked(True)
  1113. self.ui.bandPassGO.setEnabled(False) # need to design first
  1114. self.ui.plotBP.setEnabled(True)
  1115. self.ui.plotBP.setChecked(True)
  1116. # downsample
  1117. self.ui.downSampleGroupBox.setEnabled(True)
  1118. self.ui.downSampleGroupBox.setChecked(True)
  1119. # window
  1120. self.ui.windowFilterGroupBox.setEnabled(True)
  1121. self.ui.windowFilterGroupBox.setChecked(True)
  1122. # Despike
  1123. # self.ui.despikeGroupBox.setEnabled(True)
  1124. # self.ui.despikeGroupBox.setChecked(False)
  1125. # Adaptive filtering
  1126. self.ui.adaptBox.setEnabled(True)
  1127. self.ui.adaptBox.setChecked(True)
  1128. # FD Adaptive filtering
  1129. self.ui.adaptFDBox.setEnabled(True)
  1130. self.ui.adaptFDBox.setChecked(False)
  1131. # Harmonic
  1132. self.ui.harmonicBox.setEnabled(True)
  1133. self.ui.harmonicBox.setChecked(True)
  1134. self.LCDHarmonics()
  1135. self.LCDHarmonics2()
  1136. # sum group box
  1137. try:
  1138. if len(self.dataChan) > 1:
  1139. self.ui.sumDataBox.setEnabled(True)
  1140. self.ui.sumDataBox.setChecked(False)
  1141. except:
  1142. pass
  1143. # Quadrature Detect
  1144. self.ui.qdGroupBox.setEnabled(True)
  1145. self.ui.qdGroupBox.setChecked(True)
  1146. self.enableQC()
  1147. def enableQC(self):
  1148. # Q calc
  1149. self.ui.qCalcGroupBox.setEnabled(True)
  1150. self.ui.qCalcGroupBox.setChecked(True)
  1151. # FD SmartStack
  1152. self.ui.FDSmartStackGroupBox.setEnabled(True)
  1153. self.ui.FDSmartStackGroupBox.setChecked(True)
  1154. # Quadrature detect
  1155. try:
  1156. for pulse in self.RAWDataProc.DATADICT["PULSES"]:
  1157. np.shape(self.RAWDataProc.DATADICT[pulse]["Q"])
  1158. self.RAWDataProc.DATADICT["stack"]
  1159. self.ui.qdGroupBox.setEnabled(True)
  1160. self.ui.qdGroupBox.setChecked(True)
  1161. except:
  1162. self.ui.qdGroupBox.setEnabled(False)
  1163. self.ui.qdGroupBox.setChecked(False)
  1164. # Gating
  1165. try:
  1166. self.RAWDataProc.DATADICT["CA"]
  1167. self.ui.gateBox.setEnabled(True)
  1168. self.ui.gateBox.setChecked(True)
  1169. except:
  1170. self.ui.gateBox.setEnabled(False)
  1171. self.ui.gateBox.setChecked(False)
  1172. def despikeFilter(self):
  1173. self.lock("despike filter")
  1174. thread.start_new_thread(self.RAWDataProc.despike, \
  1175. (self.ui.windowSpinBox.value(), \
  1176. self.ui.thresholdSpinBox.value(), \
  1177. str(self.ui.replComboBox.currentText()), \
  1178. self.ui.rollOnSpinBox.value(), \
  1179. self.ui.despikeInterpWinSpinBox.value(),
  1180. self.ui.mplwidget))
  1181. def calcQ(self):
  1182. if "Calc Q" not in self.YamlNode.Stacking.keys():
  1183. #print("In CalcQ", yaml.dump(self.YamlNode.Processing) )
  1184. self.YamlNode.Stacking["Calc Q"] = True
  1185. #print( yaml.dump(self.YamlNode.Processing) )
  1186. self.Log()
  1187. else:
  1188. err_msg = "Q values have already been calculated"
  1189. reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1190. err_msg)
  1191. return
  1192. self.lock("pulse moment calculation")
  1193. thread.start_new_thread(self.RAWDataProc.effectivePulseMoment, \
  1194. (self.ui.CentralVSpinBox.value(), \
  1195. self.ui.mplwidget))
  1196. def harmonicModel(self):
  1197. self.lock("harmonic noise modelling")
  1198. Harm = OrderedDict()
  1199. Harm["STEP " + str(len(self.YamlNode.Processing))] = "Harmonic modelling"
  1200. Harm["NF"] = str( self.ui.NHarmonicsFreqsSpin.value() )
  1201. Harm["Segments"] = str( self.ui.NSegments.value() )
  1202. Harm["Proc. ref."] = self.ui.harmRef.isChecked()
  1203. if self.ui.searchAll.currentText() == "All":
  1204. Harm["search"] = self.ui.searchAll.currentText()
  1205. Search = False
  1206. else:
  1207. #Harm["search"] = self.ui.searchAll.currentText()
  1208. Harm["search"] = str(self.ui.Nsearch.value())
  1209. Search = self.ui.Nsearch.value()
  1210. if self.ui.boundsCheck.isChecked():
  1211. Harm["Bounds"] = str(self.ui.bounds.value())
  1212. Bounds = self.ui.bounds.value()
  1213. else:
  1214. Harm["Bounds"] = self.ui.boundsCheck.isChecked()
  1215. Bounds = 0
  1216. Harm["f0K1"] = str( self.ui.f0K1Spin.value() )
  1217. Harm["f0KN"] = str( self.ui.f0KNSpin.value() )
  1218. Harm["f0Ks"] = str( self.ui.f0KsSpin.value() )
  1219. Harm["f0"] = str( self.ui.f0Spin.value() )
  1220. if self.ui.NHarmonicsFreqsSpin.value() > 1:
  1221. Harm["f1K1"] = str( self.ui.f1K1Spin.value() )
  1222. Harm["f1KN"] = str( self.ui.f1KNSpin.value() )
  1223. Harm["f1Ks"] = str( self.ui.f1KsSpin.value() )
  1224. Harm["f1"] = str( self.ui.f1Spin.value() )
  1225. self.YamlNode.Processing.append(Harm)
  1226. self.Log()
  1227. thread.start_new_thread(self.RAWDataProc.harmonicModel, \
  1228. ( \
  1229. self.ui.NHarmonicsFreqsSpin.value(), \
  1230. self.ui.f0Spin.value(), \
  1231. self.ui.f0K1Spin.value(), \
  1232. self.ui.f0KNSpin.value(), \
  1233. self.ui.f0KsSpin.value(), \
  1234. self.ui.NSegments.value(), \
  1235. self.ui.f1Spin.value(), \
  1236. self.ui.f1K1Spin.value(), \
  1237. self.ui.f1KNSpin.value(), \
  1238. self.ui.f1KsSpin.value(), \
  1239. Search, \
  1240. Bounds, \
  1241. self.ui.harmRef.isChecked(), \
  1242. self.ui.plotHarmonic.isChecked(), \
  1243. self.ui.mplwidget \
  1244. ) \
  1245. )
  1246. def FDSmartStack(self):
  1247. if "TD stack" not in self.YamlNode.Stacking.keys():
  1248. self.YamlNode.Stacking["TD stack"] = {}
  1249. self.YamlNode.Stacking["TD stack"]["outlier"] = str( self.ui.outlierTestCB.currentText() )
  1250. self.YamlNode.Stacking["TD stack"]["cutoff"] = str( self.ui.MADCutoff.value() )
  1251. self.Log()
  1252. else:
  1253. err_msg = "TD noise cancellation has already been applied!"
  1254. reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1255. err_msg)
  1256. return
  1257. self.lock("time-domain smart stack")
  1258. thread.start_new_thread(self.RAWDataProc.TDSmartStack, \
  1259. (str(self.ui.outlierTestCB.currentText()), \
  1260. self.ui.MADCutoff.value(),
  1261. self.ui.mplwidget))
  1262. def adaptFilter(self):
  1263. self.lock("TD noise cancellation filter")
  1264. # Log processing
  1265. Adapt = OrderedDict()
  1266. Adapt["STEP " + str(len(self.YamlNode.Processing)) ] = "TD noise cancellation"
  1267. #print(Adapt) # this locks STEP in as first...
  1268. Adapt["n_Taps"] = self.ui.MTapsSpinBox.value()
  1269. Adapt["lambda"] = self.ui.adaptLambdaSpinBox.value()
  1270. Adapt["truncate"] = self.ui.adaptTruncateSpinBox.value()
  1271. Adapt["mu"] = self.ui.adaptMuSpinBox.value()
  1272. Adapt["PCA"] = self.ui.PCAComboBox.currentText()
  1273. #Adapt # this locsk in the dict ordering...
  1274. #print(Adapt) # this locks in the dict...
  1275. self.YamlNode.Processing.append(Adapt)
  1276. self.Log( )
  1277. thread.start_new_thread(self.RAWDataProc.adaptiveFilter, \
  1278. (self.ui.MTapsSpinBox.value(), \
  1279. self.ui.adaptLambdaSpinBox.value(), \
  1280. self.ui.adaptTruncateSpinBox.value(), \
  1281. self.ui.adaptMuSpinBox.value(), \
  1282. str(self.ui.PCAComboBox.currentText()), \
  1283. self.ui.mplwidget))
  1284. def sumDataChans(self):
  1285. self.lock("Summing data channels")
  1286. Sum = OrderedDict()
  1287. Sum["STEP " + str(len(self.YamlNode.Processing))] = "Channel sum"
  1288. self.YamlNode.Processing.append(Sum)
  1289. self.Log( )
  1290. self.dataChan = [self.dataChan[0]]
  1291. self.ui.sumDataBox.setEnabled(False)
  1292. thread.start_new_thread( self.RAWDataProc.sumData, ( self.ui.mplwidget, 7 ) )
  1293. def adaptFilterFD(self):
  1294. self.lock("FD noise cancellation filter")
  1295. thread.start_new_thread(self.RAWDataProc.adaptiveFilterFD, \
  1296. (str(self.ui.windowTypeComboBox.currentText()), \
  1297. self.ui.windowBandwidthSpinBox.value(), \
  1298. self.ui.CentralVSpinBox.value(), \
  1299. self.ui.mplwidget))
  1300. def logGUI(self):
  1301. # You have a race condiditon where the GUI is modifying the Yaml node while you are updating it
  1302. # hence, we need to cache these. More elegant solutions exist
  1303. if "B_0" in self.YamlNode.META:
  1304. B0 = self.YamlNode.META["B_0"]["intensity"]
  1305. Bdec = self.YamlNode.META["B_0"]["dec"]
  1306. Binc = self.YamlNode.META["B_0"]["inc"]
  1307. if "DateTime" in self.YamlNode.META:
  1308. [Date,Time] = self.YamlNode.META["DateTime"].split("T")
  1309. year,month,day = Date.split("-")
  1310. if "Temp" in self.YamlNode.META:
  1311. temp = float(self.YamlNode.META["Temp"])
  1312. if "Coordinates" in self.YamlNode.META:
  1313. UTM = self.YamlNode.META["Coordinates"]["UTM"]
  1314. LatBand = self.YamlNode.META["Coordinates"]["LatBand"]
  1315. Ellipsoid = self.YamlNode.META["Coordinates"]["ellipsoid"]
  1316. # and set
  1317. if "Location" in self.YamlNode.META:
  1318. self.ui.locEdit.setText( self.YamlNode.META["Location"] )
  1319. if "Field Notes" in self.YamlNode.META:
  1320. self.ui.txtComments.setText( self.YamlNode.META["Field Notes"] )
  1321. if "B_0" in self.YamlNode.META:
  1322. self.ui.incSpinBox.setValue( Binc )
  1323. self.ui.decSpinBox.setValue( Bdec )
  1324. self.ui.intensitySpinBox.setValue( B0 )
  1325. if "DateTime" in self.YamlNode.META:
  1326. self.ui.dateEdit.setDate( datetime.date(int(year), int(month), int(day)) )
  1327. self.ui.timeEdit.setTime( datetime.time.fromisoformat( Time ) )
  1328. if "Temp" in self.YamlNode.META:
  1329. self.ui.tempSpinBox.setValue(temp)
  1330. if "Coordinates" in self.YamlNode.META:
  1331. self.ui.UTMzone.setCurrentText(UTM)
  1332. self.ui.latBand.setCurrentText(LatBand)
  1333. self.ui.ellipsoid.setCurrentText(Ellipsoid)
  1334. def logSite(self):
  1335. self.YamlNode.META["Location"] = self.ui.locEdit.text()
  1336. self.YamlNode.META["Coordinates"] = OrderedDict()
  1337. self.YamlNode.META["Coordinates"]["UTM"] = self.ui.UTMzone.currentText()
  1338. self.YamlNode.META["Coordinates"]["LatBand"] = self.ui.latBand.currentText()
  1339. self.YamlNode.META["Coordinates"]["ellipsoid"] = self.ui.ellipsoid.currentText()
  1340. self.YamlNode.META["DateTime"] = self.ui.dateEdit.date().toString("yyyy-MM-dd") + "T" + str( self.ui.timeEdit.time().toString("hh:mm") )
  1341. self.YamlNode.META["Temp"] = self.ui.tempSpinBox.value()
  1342. self.YamlNode.META["B_0"] = OrderedDict()
  1343. self.YamlNode.META["B_0"]["inc"] = self.ui.incSpinBox.value()
  1344. self.YamlNode.META["B_0"]["dec"] = self.ui.decSpinBox.value()
  1345. self.YamlNode.META["B_0"]["intensity"] = self.ui.intensitySpinBox.value()
  1346. self.YamlNode.META["Field Notes"] = self.ui.txtComments.toPlainText()
  1347. self.YamlNode.META["Loops"] = OrderedDict()
  1348. for loop in self.loops:
  1349. print(self.loops[loop])
  1350. self.YamlNode.META["Loops"][loop] = loop + ".yml"
  1351. self.Log()
  1352. def bandPassFilter(self):
  1353. self.lock("bandpass filter")
  1354. # Log processing
  1355. Band = OrderedDict()
  1356. Band["STEP " + str(len(self.YamlNode.Processing))] = "Bandpass filter"
  1357. Band["central_nu"] = str(self.ui.CentralVSpinBox.value())
  1358. Band["passband"] = str(self.ui.passBandSpinBox.value())
  1359. Band["stopband"] = str(self.ui.stopBandSpinBox.value())
  1360. Band["gpass"] = str(self.ui.gpassSpinBox.value())
  1361. Band["gstop"] = str(self.ui.gstopSpinBox.value())
  1362. Band["type"] = str(self.ui.fTypeComboBox.currentText())
  1363. self.YamlNode.Processing.append(Band)
  1364. self.Log( )
  1365. nv = self.ui.lcdTotalDeadTime.value( ) + self.ui.lcdNumberFTauDead.value()
  1366. self.ui.lcdTotalDeadTime.display( nv )
  1367. thread.start_new_thread(self.RAWDataProc.bandpassFilter, \
  1368. (self.ui.mplwidget, 0, self.ui.plotBP.isChecked() ))
  1369. def downsample(self):
  1370. self.lock("resampling")
  1371. # Log processing
  1372. Resample = OrderedDict()
  1373. Resample["STEP "+ str(len(self.YamlNode.Processing))] = "Resample"
  1374. Resample["downsample factor"] = str(self.ui.downSampleSpinBox.value())
  1375. Resample["truncate length"] = str(self.ui.truncateSpinBox.value())
  1376. self.YamlNode.Processing.append(Resample)
  1377. self.Log( )
  1378. thread.start_new_thread(self.RAWDataProc.downsample, \
  1379. (self.ui.truncateSpinBox.value(), \
  1380. self.ui.downSampleSpinBox.value(), \
  1381. self.ui.dsPlot.isChecked(), \
  1382. self.ui.mplwidget))
  1383. def quadDet(self):
  1384. method = ['trf','dogbox','lm'][int(self.ui.QDMethod.currentIndex())]
  1385. loss = ['linear','soft_l1','cauchy','huber'][int(self.ui.QDLoss.currentIndex())]
  1386. # allow overwrite of Quad Det.
  1387. self.YamlNode.Stacking["Quadrature detection"] = {}
  1388. self.YamlNode.Stacking["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1389. self.YamlNode.Stacking["Quadrature detection"]["method"] = method
  1390. self.YamlNode.Stacking["Quadrature detection"]["loss"] = loss
  1391. self.Log()
  1392. #if "Quadrature detection" not in self.YamlNode.Processing.keys():
  1393. # self.YamlNode.Processing["Quadrature detection"] = {}
  1394. # self.YamlNode.Processing["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1395. # self.Log()
  1396. #else:
  1397. # self.YamlNode.Processing["Quadrature detection"] = {}
  1398. # self.YamlNode.Processing["Quadrature detection"]["trim"] = str( self.ui.trimSpin.value() )
  1399. # self.Log()
  1400. #err_msg = "Quadrature detection has already been done!"
  1401. #reply =QtWidgets.QMessageBox.critical(self, 'Error',
  1402. # err_msg)
  1403. #return
  1404. self.lock("quadrature detection")
  1405. thread.start_new_thread(self.RAWDataProc.quadDet, \
  1406. (self.ui.trimSpin.value(), method, loss, self.ui.mplwidget))
  1407. self.ui.plotQD.setEnabled(True)
  1408. def plotQD(self):
  1409. self.lock("plot QD")
  1410. thread.start_new_thread(self.RAWDataProc.plotQuadDet, \
  1411. (self.ui.trimSpin.value(), int(self.ui.QDType.currentIndex()), self.ui.mplwidget))
  1412. def gateIntegrate(self):
  1413. if "Gate integrate" not in self.YamlNode.Stacking.keys():
  1414. self.YamlNode.Stacking["Gate integrate"] = {}
  1415. self.YamlNode.Stacking["Gate integrate"]["gpd"] = str(self.ui.GPDspinBox.value( ) )
  1416. self.Log()
  1417. self.lock("gate integration")
  1418. thread.start_new_thread(self.RAWDataProc.gateIntegrate, \
  1419. (self.ui.GPDspinBox.value(), self.ui.trimSpin.value(), self.ui.mplwidget))
  1420. self.ui.actionExport_Preprocessed_Dataset.setEnabled(True)
  1421. self.ui.plotGI.setEnabled(True)
  1422. def plotGI(self):
  1423. self.lock("plot gate integrate")
  1424. thread.start_new_thread(self.RAWDataProc.plotGateIntegrate, \
  1425. (self.ui.GPDspinBox.value(), self.ui.trimSpin.value(), \
  1426. self.ui.QDType_2.currentIndex(), self.ui.mplwidget))
  1427. def designFilter(self):
  1428. [bord, fe] = self.RAWDataProc.designFilter( \
  1429. self.ui.CentralVSpinBox.value(), \
  1430. self.ui.passBandSpinBox.value(), \
  1431. self.ui.stopBandSpinBox.value(), \
  1432. self.ui.gpassSpinBox.value(), \
  1433. self.ui.gstopSpinBox.value(), \
  1434. str(self.ui.fTypeComboBox.currentText()),
  1435. self.ui.mplwidget
  1436. )
  1437. self.ui.lcdNumberFilterOrder.display(bord)
  1438. self.ui.lcdNumberFTauDead.display(1e3*fe)
  1439. self.ui.bandPassGO.setEnabled(1)
  1440. ################################################################
  1441. # Hack for MacOS to force refresh of group box and plot
  1442. # this has an undesirable effect that it causes the groupbox to 'jump' up
  1443. # TODO come up with a better solution
  1444. self.ui.mplwidget.hide()
  1445. self.ui.mplwidget.show()
  1446. self.ui.BandPassBox.hide()
  1447. self.ui.BandPassBox.show()
  1448. def windowFilter(self):
  1449. self.lock("window filter")
  1450. # Log processing
  1451. Window = OrderedDict()
  1452. Window["STEP " + str(len(self.YamlNode.Processing))] = "Window filter"
  1453. Window["type"] = str(self.ui.windowTypeComboBox.currentText())
  1454. Window["width"] = str(self.ui.windowBandwidthSpinBox.value())
  1455. Window["centre"] = str(self.ui.CentralVSpinBox.value() )
  1456. Window["trim"] = str(self.ui.windowTrim.isChecked())
  1457. self.YamlNode.Processing.append(Window)
  1458. self.Log( )
  1459. if self.ui.windowTrim.isChecked():
  1460. nv = self.ui.lcdTotalDeadTime.value( ) + self.ui.lcdWinDead.value()
  1461. self.ui.lcdTotalDeadTime.display( nv )
  1462. thread.start_new_thread(self.RAWDataProc.windowFilter, \
  1463. (str(self.ui.windowTypeComboBox.currentText()), \
  1464. self.ui.windowBandwidthSpinBox.value(), \
  1465. self.ui.CentralVSpinBox.value(), \
  1466. self.ui.windowTrim.isChecked(), \
  1467. self.ui.mplwidget))
  1468. def designFDFilter(self):
  1469. mPulse = "None"
  1470. if u"Pulse 1" in self.RAWDataProc.DATADICT.keys():
  1471. mPulse = u"Pulse 1"
  1472. elif u"Pulse 2" in self.RAWDataProc.DATADICT.keys():
  1473. mPulse = u"Pulse 2"
  1474. a,b,c,d,dead,ndead = self.RAWDataProc.computeWindow( \
  1475. mPulse,
  1476. self.ui.windowBandwidthSpinBox.value(), \
  1477. self.ui.CentralVSpinBox.value(), \
  1478. str(self.ui.windowTypeComboBox.currentText()), \
  1479. self.ui.mplwidget )
  1480. self.ui.lcdWinDead.display(dead)
  1481. ################################################################
  1482. # Hack for MacOS to force refresh of group box and plot
  1483. # this has an undesirable effect that it causes the groupbox to 'jump' up
  1484. # TODO come up with a better solution
  1485. self.ui.mplwidget.hide()
  1486. self.ui.mplwidget.show()
  1487. self.ui.windowFilterGroupBox.hide()
  1488. self.ui.windowFilterGroupBox.show()
  1489. def updateProgressBar(self, percent):
  1490. self.ui.barProgress.setValue(percent)
  1491. def updateProc(self):
  1492. if str(self.ui.FIDProcComboBox.currentText()) == "Pulse 1":
  1493. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  1494. elif str(self.ui.FIDProcComboBox.currentText()) == "Pulse 2":
  1495. self.ui.lcdNumberFID2Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  1496. else:
  1497. self.ui.lcdNumberFID1Length.display(self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 1"]["TIMES"][0])
  1498. self.ui.lcdNumberFID2Length.display(self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][-1]- self.RAWDataProc.DATADICT["Pulse 2"]["TIMES"][0])
  1499. self.ui.lcdNumberResampFreq.display( self.RAWDataProc.samp )
  1500. def doneStatus(self): # unlocks GUI
  1501. self.ui.statusbar.clearMessage ( )
  1502. self.ui.barProgress.hide()
  1503. self.updateProc()
  1504. self.enableAll()
  1505. def lock(self, string):
  1506. self.ui.statusbar.showMessage ( string )
  1507. self.ui.barProgress.show()
  1508. self.ui.barProgress.setValue(0)
  1509. self.disable()
  1510. def unlock(self):
  1511. self.ui.statusbar.clearMessage ( )
  1512. self.ui.barProgress.hide()
  1513. self.enableAll()
  1514. def done(self):
  1515. self.ui.statusbar.showMessage ( "" )
  1516. ################################################################
  1517. ################################################################
  1518. # Boiler plate main function
  1519. import pkg_resources
  1520. from pkg_resources import resource_string
  1521. import matplotlib.image as mpimg
  1522. import matplotlib.pyplot as plt
  1523. from akvo.gui.logo import plotLogo
  1524. def main():
  1525. # splash screen logo
  1526. logo = pkg_resources.resource_filename(__name__, 'akvo.png')
  1527. logo2 = pkg_resources.resource_filename(__name__, 'akvo2.png')
  1528. qApp = QtWidgets.QApplication(sys.argv)
  1529. ssplash = True
  1530. if ssplash:
  1531. pixmap = QtGui.QPixmap(logo)
  1532. splash = QtWidgets.QSplashScreen(pixmap, QtCore.Qt.WindowStaysOnTopHint)
  1533. splash.show()
  1534. aw = ApplicationWindow()
  1535. #img=mpimg.imread(logo)
  1536. for ax in [ aw.ui.mplwidget ]:
  1537. ax.fig.clear()
  1538. subplot = ax.fig.add_subplot(211)
  1539. # old logo plot
  1540. ax.fig.patch.set_facecolor( None )
  1541. ax.fig.patch.set_alpha( .0 )
  1542. #subplot.imshow(img)
  1543. #ax.fig.patch.set_visible(False)
  1544. subplot.axis('off')
  1545. plotLogo(subplot)
  1546. subplot.xaxis.set_major_locator(plt.NullLocator())
  1547. subplot.yaxis.set_major_locator(plt.NullLocator())
  1548. subplot2 = ax.fig.add_subplot(212)
  1549. subplot2.text(0.5, 1.,'surface NMR workbench',
  1550. horizontalalignment='center',
  1551. verticalalignment='center',
  1552. size=22,
  1553. transform = subplot2.transAxes)
  1554. subplot2.xaxis.set_major_locator(plt.NullLocator())
  1555. subplot2.yaxis.set_major_locator(plt.NullLocator())
  1556. subplot2.axis('off')
  1557. ax.draw()
  1558. if ssplash:
  1559. splash.showMessage("Loading modules")
  1560. splash.finish(aw)
  1561. #time.sleep(1)
  1562. aw.setWindowTitle("Akvo v"+str(VERSION))
  1563. aw.show()
  1564. qApp.setWindowIcon(QtGui.QIcon(logo2))
  1565. sys.exit(qApp.exec_())
  1566. if __name__ == "__main__":
  1567. main()