@@ -1,174 +1,174 | |||
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1 | 1 | ''' |
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2 | 2 | Created on Feb 7, 2012 |
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3 | 3 | |
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4 | 4 | @author $Author$ |
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5 | 5 | @version $Id$ |
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6 | 6 | ''' |
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7 | 7 | |
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8 | 8 | import os, sys |
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9 | 9 | import numpy |
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10 | 10 | import datetime |
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11 | 11 | import plplot |
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12 | 12 | |
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13 | 13 | path = os.path.split(os.getcwd())[0] |
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14 | 14 | sys.path.append(path) |
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15 | 15 | |
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16 | 16 | from Graphics.BaseGraph import * |
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17 | 17 | from Model.Spectra import Spectra |
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18 | 18 | |
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19 | 19 | class Spectrum(): |
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20 | 20 | |
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21 | 21 | def __init__(self, Spectra, index=0): |
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22 | 22 | |
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23 | 23 | """ |
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24 | 24 | |
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25 | 25 | Inputs: |
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26 | 26 | |
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27 | 27 | type: "power" ->> Potencia |
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28 | 28 | "iq" ->> Real + Imaginario |
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29 | 29 | """ |
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30 | 30 | |
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31 | 31 | self.__isPlotConfig = False |
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32 | 32 | |
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33 | 33 | self.__isPlotIni = False |
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34 | 34 | |
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35 | 35 | self.__xrange = None |
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36 | 36 | |
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37 | 37 | self.__yrange = None |
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38 | 38 | |
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39 | 39 | self.nGraphs = 0 |
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40 | 40 | |
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41 | 41 | self.indexPlot = index |
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42 | 42 | |
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43 | 43 | self.graphObjList = [] |
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44 | 44 | |
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45 | 45 | self.m_Spectra = Spectra |
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46 | 46 | |
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47 | 47 | |
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48 | 48 | def __addGraph(self, subpage, title="", xlabel="", ylabel="", showColorbar=False, showPowerProfile=True, XAxisAsTime=False): |
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49 | 49 | |
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50 | 50 | graphObj = ColorPlot() |
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51 | 51 | graphObj.setup(subpage, |
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52 | 52 | title, |
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53 | 53 | xlabel, |
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54 | 54 | ylabel, |
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55 | 55 | showColorbar=showColorbar, |
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56 | 56 | showPowerProfile=showPowerProfile, |
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57 | 57 | XAxisAsTime=XAxisAsTime) |
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58 | 58 | |
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59 | 59 | self.graphObjList.append(graphObj) |
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60 | 60 | |
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61 | 61 | |
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62 | 62 | def setup(self, titleList=None, xlabelList=None, ylabelList=None, showColorbar=False, showPowerProfile=True, XAxisAsTime=False): |
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63 | 63 | |
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64 | 64 | nChan = int(self.m_Spectra.m_SystemHeader.numChannels) |
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65 | 65 | channels = range(nChan) |
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66 | 66 | |
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67 | 67 | myXlabel = "Radial Velocity (m/s)" |
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68 | 68 | myYlabel = "Range (km)" |
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69 | 69 | |
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70 | 70 | for i in channels: |
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71 | 71 | if titleList != None: |
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72 | 72 | myTitle = titleList[i] |
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73 | 73 | myXlabel = xlabelList[i] |
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74 | 74 | myYlabel = ylabelList[i] |
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75 | 75 | |
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76 | 76 | # if self.m_Spectra.m_NoiseObj != None: |
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77 | 77 | # noise = '%4.2fdB' %(self.m_Spectra.m_NoiseObj[i]) |
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78 | 78 | # else: |
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79 | 79 | noise = '--' |
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80 | 80 | |
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81 | 81 | myTitle = "Channel: %d - Noise: %s" %(i, noise) |
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82 | 82 | |
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83 | 83 | self.__addGraph(i+1, |
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84 | 84 | title=myTitle, |
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85 | 85 | xlabel=myXlabel, |
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86 | 86 | ylabel=myYlabel, |
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87 | 87 | showColorbar=showColorbar, |
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88 | 88 | showPowerProfile=showPowerProfile, |
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89 | 89 | XAxisAsTime=XAxisAsTime) |
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90 | 90 | |
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91 | 91 | self.nGraphs = nChan |
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92 | 92 | self.__isPlotConfig = True |
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93 | 93 | |
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94 | 94 | def iniPlot(self, winTitle=""): |
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95 | 95 | |
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96 | 96 | nx = int(numpy.sqrt(self.nGraphs)+1) |
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97 | 97 | #ny = int(self.nGraphs/nx) |
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98 | 98 | |
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99 | 99 | plplot.plsstrm(self.indexPlot) |
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100 | 100 | plplot.plparseopts([winTitle], plplot.PL_PARSE_FULL) |
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101 | 101 | plplot.plsetopt("geometry", "%dx%d" %(300*nx, 240*nx)) |
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102 | 102 | plplot.plsdev("xwin") |
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103 | 103 | plplot.plscolbg(255,255,255) |
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104 | 104 | plplot.plscol0(1,0,0,0) |
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105 | 105 | plplot.plinit() |
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106 | 106 | plplot.plspause(False) |
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107 | 107 | plplot.pladv(0) |
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108 | 108 | plplot.plssub(nx, nx) |
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109 | 109 | |
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110 | 110 | self.__nx = nx |
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111 | 111 | self.__ny = nx |
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112 | 112 | self.__isPlotIni = True |
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113 | 113 | |
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114 | 114 | |
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115 | 115 | def plotData(self, xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None, titleList=None, xlabelList=None, ylabelList=None, showColorbar=False, showPowerProfile=True, XAxisAsTime=False, winTitle="Spectra"): |
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116 | 116 | |
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117 | 117 | if not(self.__isPlotConfig): |
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118 | 118 | self.setup(titleList, |
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119 | 119 | xlabelList, |
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120 | 120 | ylabelList, |
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121 | 121 | showColorbar, |
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122 | 122 | showPowerProfile, |
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123 | 123 | XAxisAsTime) |
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124 | 124 | |
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125 | 125 | if not(self.__isPlotIni): |
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126 | self.iniPlot() | |
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126 | self.iniPlot(winTitle) | |
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127 | 127 | |
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128 | 128 | plplot.plsstrm(self.indexPlot) |
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129 | 129 | |
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130 | 130 | data = 10.*numpy.log10(self.m_Spectra.data_spc) |
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131 | 131 | |
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132 | 132 | nX, nY, nChan = numpy.shape(data) |
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133 | 133 | |
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134 | 134 | x = numpy.arange(nX) |
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135 | 135 | y = self.m_Spectra.heights |
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136 | 136 | |
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137 | 137 | thisDatetime = datetime.datetime.fromtimestamp(self.m_Spectra.m_BasicHeader.utc) |
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138 | 138 | txtDate = "Self Spectra - Date: %s" %(thisDatetime.strftime("%d-%b-%Y %H:%M:%S")) |
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139 | 139 | |
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140 | 140 | if xmin == None: xmin = x[0] |
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141 | 141 | if xmax == None: xmax = x[-1] |
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142 | 142 | if ymin == None: ymin = y[0] |
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143 | 143 | if ymax == None: ymax = y[-1] |
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144 | 144 | if zmin == None: zmin = numpy.nanmin(abs(data)) |
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145 | 145 | if zmax == None: zmax = numpy.nanmax(abs(data)) |
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146 | 146 | |
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147 | 147 | plplot.plbop() |
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148 | 148 | |
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149 | 149 | plplot.plssub(self.__nx, self.__ny) |
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150 | 150 | for i in range(self.nGraphs): |
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151 | 151 | self.graphObjList[i].iniSubpage() |
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152 | 152 | self.graphObjList[i].plotData(data[i,:,:], |
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153 | 153 | x, |
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154 | 154 | y, |
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155 | 155 | xmin=xmin, |
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156 | 156 | xmax=xmax, |
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157 | 157 | ymin=ymin, |
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158 | 158 | ymax=ymax, |
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159 | 159 | zmin=zmin, |
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160 | 160 | zmax=zmax) |
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161 | 161 | |
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162 | 162 | plplot.plssub(1,0) |
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163 | 163 | plplot.pladv(0) |
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164 | 164 | plplot.plvpor(0., 1., 0., 1.) |
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165 | 165 | plplot.plmtex("t",-1., 0.5, 0.5, txtDate) |
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166 | 166 | plplot.plflush() |
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167 | 167 | plplot.pleop() |
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168 | 168 | |
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169 | 169 | def end(self): |
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170 | 170 | plplot.plend() |
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171 | 171 | |
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172 | 172 | |
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173 | 173 | if __name__ == '__main__': |
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174 | 174 | pass No newline at end of file |
@@ -1,182 +1,182 | |||
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1 | 1 | ''' |
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2 | 2 | Created on Feb 7, 2012 |
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3 | 3 | |
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4 | 4 | @author $Author$ |
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5 | 5 | @version $Id$ |
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6 | 6 | ''' |
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7 | 7 | import os, sys |
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8 | 8 | import numpy |
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9 | 9 | import plplot |
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10 | 10 | |
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11 | 11 | path = os.path.split(os.getcwd())[0] |
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12 | 12 | sys.path.append(path) |
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13 | 13 | |
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14 | 14 | from Graphics.BaseGraph import * |
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15 | 15 | from Model.Voltage import Voltage |
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16 | 16 | |
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17 | 17 | class Osciloscope(): |
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18 | 18 | |
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19 | 19 | def __init__(self, Voltage, index=0): |
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20 | 20 | |
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21 | 21 | """ |
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22 | 22 | |
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23 | 23 | Inputs: |
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24 | 24 | |
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25 | 25 | type: "power" ->> Potencia |
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26 | 26 | "iq" ->> Real + Imaginario |
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27 | 27 | """ |
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28 | 28 | |
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29 | 29 | self.__isPlotConfig = False |
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30 | 30 | |
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31 | 31 | self.__isPlotIni = False |
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32 | 32 | |
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33 | 33 | self.__xrange = None |
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34 | 34 | |
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35 | 35 | self.__yrange = None |
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36 | 36 | |
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37 | 37 | self.m_Voltage = None |
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38 | 38 | |
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39 | 39 | self.nGraphs = 0 |
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40 | 40 | |
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41 | 41 | self.indexPlot = index |
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42 | 42 | |
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43 | 43 | self.graphObjList = [] |
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44 | 44 | |
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45 | 45 | self.m_Voltage = Voltage |
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46 | 46 | |
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47 | 47 | |
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48 | 48 | def __addGraph(self, subpage, title="", xlabel="", ylabel="", XAxisAsTime=False): |
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49 | 49 | |
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50 | 50 | graphObj = LinearPlot() |
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51 | 51 | graphObj.setup(subpage, title="", xlabel="", ylabel="", XAxisAsTime=False) |
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52 | 52 | #graphObj.setScreenPos() |
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53 | 53 | |
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54 | 54 | self.graphObjList.append(graphObj) |
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55 | 55 | |
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56 | 56 | del graphObj |
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57 | 57 | |
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58 | 58 | # def setXRange(self, xmin, xmax): |
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59 | 59 | # self.__xrange = (xmin, xmax) |
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60 | 60 | # |
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61 | 61 | # def setYRange(self, ymin, ymax): |
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62 | 62 | # self.__yrange = (ymin, ymax) |
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63 | 63 | |
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64 | 64 | |
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65 | 65 | def setup(self, titleList=None, xlabelList=None, ylabelList=None, XAxisAsTime=False): |
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66 | 66 | |
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67 | 67 | nChan = int(self.m_Voltage.m_SystemHeader.numChannels) |
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68 | 68 | |
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69 | 69 | myTitle = "" |
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70 | 70 | myXlabel = "" |
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71 | 71 | myYlabel = "" |
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72 | 72 | |
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73 | 73 | for i in range(nChan): |
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74 | 74 | if titleList != None: |
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75 | 75 | myTitle = titleList[i] |
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76 | 76 | myXlabel = xlabelList[i] |
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77 | 77 | myYlabel = ylabelList[i] |
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78 | 78 | |
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79 | 79 | self.__addGraph(i+1, title=myTitle, xlabel=myXlabel, ylabel=myYlabel, XAxisAsTime=XAxisAsTime) |
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80 | 80 | |
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81 | 81 | self.nGraphs = nChan |
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82 | 82 | self.__isPlotConfig = True |
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83 | 83 | |
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84 | 84 | def iniPlot(self, winTitle=""): |
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85 | 85 | |
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86 | 86 | plplot.plsstrm(self.indexPlot) |
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87 | 87 | plplot.plparseopts([winTitle], plplot.PL_PARSE_FULL) |
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88 | 88 | plplot.plsetopt("geometry", "%dx%d" %(700, 115*self.nGraphs)) |
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89 | 89 | plplot.plsdev("xwin") |
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90 | 90 | plplot.plscolbg(255,255,255) |
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91 | 91 | plplot.plscol0(1,0,0,0) |
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92 | 92 | plplot.plinit() |
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93 | 93 | plplot.plspause(False) |
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94 | 94 | plplot.plssub(1, self.nGraphs) |
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95 | 95 | |
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96 | 96 | self.__isPlotIni = True |
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97 | 97 | |
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98 | 98 | def plotData(self, xmin=None, xmax=None, ymin=None, ymax=None, idProfile=None, titleList=None, xlabelList=None, ylabelList=None, XAxisAsTime=False, type='iq', winTitle="Voltage"): |
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99 | 99 | |
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100 | 100 | if idProfile != None and idProfile != self.m_Voltage.idProfile: |
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101 | 101 | return |
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102 | 102 | |
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103 | 103 | if not(self.__isPlotConfig): |
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104 | 104 | self.setup(titleList, xlabelList, ylabelList, XAxisAsTime) |
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105 | 105 | |
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106 | 106 | if not(self.__isPlotIni): |
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107 | self.iniPlot() | |
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107 | self.iniPlot(winTitle) | |
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108 | 108 | |
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109 | 109 | plplot.plsstrm(self.indexPlot) |
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110 | 110 | |
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111 | 111 | data = self.m_Voltage.data |
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112 | 112 | |
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113 | 113 | x = self.m_Voltage.heights |
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114 | 114 | |
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115 | 115 | if xmin == None: xmin = x[0] |
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116 | 116 | if xmax == None: xmax = x[-1] |
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117 | 117 | if ymin == None: ymin = numpy.nanmin(abs(data)) |
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118 | 118 | if ymax == None: ymax = numpy.nanmax(abs(data)) |
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119 | 119 | |
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120 | 120 | plplot.plbop() |
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121 | 121 | for i in range(self.nGraphs): |
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122 | 122 | y = data[:,i] |
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123 | 123 | |
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124 | 124 | self.graphObjList[i].iniSubpage() |
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125 | 125 | self.graphObjList[i].plotComplexData(x, y, xmin, xmax, ymin, ymax, 8, type) |
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126 | 126 | |
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127 | 127 | plplot.plflush() |
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128 | 128 | plplot.pleop() |
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129 | 129 | |
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130 | 130 | def end(self): |
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131 | 131 | plplot.plend() |
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132 | 132 | |
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133 | 133 | class VoltagePlot(object): |
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134 | 134 | ''' |
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135 | 135 | classdocs |
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136 | 136 | ''' |
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137 | 137 | |
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138 | 138 | __m_Voltage = None |
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139 | 139 | |
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140 | 140 | def __init__(self, m_Voltage): |
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141 | 141 | ''' |
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142 | 142 | Constructor |
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143 | 143 | ''' |
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144 | 144 | self.__m_Voltage = m_Voltage |
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145 | 145 | |
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146 | 146 | def setup(self): |
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147 | 147 | pass |
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148 | 148 | |
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149 | 149 | def addGraph(self, type, xrange=None, yrange=None, zrange=None): |
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150 | 150 | pass |
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151 | 151 | |
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152 | 152 | def plotData(self): |
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153 | 153 | pass |
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154 | 154 | |
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155 | 155 | if __name__ == '__main__': |
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156 | 156 | |
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157 | 157 | import numpy |
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158 | 158 | |
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159 | 159 | plplot.plsetopt("geometry", "%dx%d" %(450*2, 200*2)) |
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160 | 160 | plplot.plsdev("xcairo") |
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161 | 161 | plplot.plscolbg(255,255,255) |
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162 | 162 | plplot.plscol0(1,0,0,0) |
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163 | 163 | plplot.plinit() |
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164 | 164 | plplot.plssub(1, 2) |
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165 | 165 | |
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166 | 166 | nx = 64 |
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167 | 167 | ny = 100 |
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168 | 168 | |
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169 | 169 | data = numpy.random.uniform(-50,50,(nx,ny)) |
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170 | 170 | |
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171 | 171 | baseObj = RTI() |
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172 | 172 | baseObj.setup(1, "Spectrum", "Frequency", "Range", "br_green", False, False) |
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173 | 173 | baseObj.plotData(data) |
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174 | 174 | |
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175 | 175 | data = numpy.random.uniform(-50,50,(nx,ny)) |
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176 | 176 | |
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177 | 177 | base2Obj = RTI() |
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178 | 178 | base2Obj.setup(2, "Spectrum", "Frequency", "Range", "br_green", True, True) |
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179 | 179 | base2Obj.plotData(data) |
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180 | 180 | |
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181 | 181 | plplot.plend() |
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182 | 182 | exit(0) No newline at end of file |
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