@@ -1,1211 +1,1211 | |||||
1 | ''' |
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1 | ''' | |
2 | Created on Feb 7, 2012 |
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2 | Created on Feb 7, 2012 | |
3 |
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3 | |||
4 | @autor $Author: dsuarez $ |
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4 | @autor $Author: dsuarez $ | |
5 | @version $Id: BaseGraph.py 117 2012-09-04 21:16:59Z dsuarez $ |
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5 | @version $Id: BaseGraph.py 117 2012-09-04 21:16:59Z dsuarez $ | |
6 |
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6 | |||
7 | ''' |
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7 | ''' | |
8 | #from __future__ import division |
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8 | #from __future__ import division | |
9 | #import os |
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9 | #import os | |
10 | import numpy |
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10 | import numpy | |
11 | #import sys |
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11 | #import sys | |
12 | import time |
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12 | import time | |
13 | import datetime |
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13 | import datetime | |
14 |
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14 | |||
15 | #import plplot |
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15 | #import plplot | |
16 | import matplotlib as mpl |
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16 | import matplotlib as mpl | |
17 |
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17 | mpl.use('TKAgg') | |
18 | import matplotlib.pyplot as plt |
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18 | import matplotlib.pyplot as plt | |
19 |
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19 | |||
20 |
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20 | import scitools.numpyutils as sn | |
21 |
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21 | |||
22 | def cmap1_init(colormap='gray'): |
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22 | def cmap1_init(colormap='gray'): | |
23 |
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23 | |||
24 | # if colormap == None: |
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24 | # if colormap == None: | |
25 | # return |
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25 | # return | |
26 | # |
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26 | # | |
27 | # ncolor = None |
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27 | # ncolor = None | |
28 | # rgb_lvl = None |
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28 | # rgb_lvl = None | |
29 | # |
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29 | # | |
30 | # # Routine for defining a specific color map 1 in HLS space. |
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30 | # # Routine for defining a specific color map 1 in HLS space. | |
31 | # # if gray is true, use basic grayscale variation from half-dark to light. |
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31 | # # if gray is true, use basic grayscale variation from half-dark to light. | |
32 | # # otherwise use false color variation from blue (240 deg) to red (360 deg). |
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32 | # # otherwise use false color variation from blue (240 deg) to red (360 deg). | |
33 | # |
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33 | # | |
34 | # # Independent variable of control points. |
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34 | # # Independent variable of control points. | |
35 | # i = numpy.array((0., 1.)) |
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35 | # i = numpy.array((0., 1.)) | |
36 | # if colormap=='gray': |
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36 | # if colormap=='gray': | |
37 | # ncolor = 256 |
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37 | # ncolor = 256 | |
38 | # # Hue for control points. Doesn't matter since saturation is zero. |
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38 | # # Hue for control points. Doesn't matter since saturation is zero. | |
39 | # h = numpy.array((0., 0.)) |
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39 | # h = numpy.array((0., 0.)) | |
40 | # # Lightness ranging from half-dark (for interest) to light. |
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40 | # # Lightness ranging from half-dark (for interest) to light. | |
41 | # l = numpy.array((0.5, 1.)) |
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41 | # l = numpy.array((0.5, 1.)) | |
42 | # # Gray scale has zero saturation |
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42 | # # Gray scale has zero saturation | |
43 | # s = numpy.array((0., 0.)) |
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43 | # s = numpy.array((0., 0.)) | |
44 | # |
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44 | # | |
45 | # # number of cmap1 colours is 256 in this case. |
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45 | # # number of cmap1 colours is 256 in this case. | |
46 | # plplot.plscmap1n(ncolor) |
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46 | # plplot.plscmap1n(ncolor) | |
47 | # # Interpolate between control points to set up cmap1. |
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47 | # # Interpolate between control points to set up cmap1. | |
48 | # plplot.plscmap1l(0, i, h, l, s) |
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48 | # plplot.plscmap1l(0, i, h, l, s) | |
49 | # |
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49 | # | |
50 | # return None |
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50 | # return None | |
51 | # |
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51 | # | |
52 | # if colormap == 'jet': |
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52 | # if colormap == 'jet': | |
53 | # ncolor = 256 |
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53 | # ncolor = 256 | |
54 | # pos = numpy.zeros((ncolor)) |
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54 | # pos = numpy.zeros((ncolor)) | |
55 | # r = numpy.zeros((ncolor)) |
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55 | # r = numpy.zeros((ncolor)) | |
56 | # g = numpy.zeros((ncolor)) |
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56 | # g = numpy.zeros((ncolor)) | |
57 | # b = numpy.zeros((ncolor)) |
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57 | # b = numpy.zeros((ncolor)) | |
58 | # |
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58 | # | |
59 | # for i in range(ncolor): |
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59 | # for i in range(ncolor): | |
60 | # if(i <= 35.0/100*(ncolor-1)): rf = 0.0 |
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60 | # if(i <= 35.0/100*(ncolor-1)): rf = 0.0 | |
61 | # elif (i <= 66.0/100*(ncolor-1)): rf = (100.0/31)*i/(ncolor-1) - 35.0/31 |
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61 | # elif (i <= 66.0/100*(ncolor-1)): rf = (100.0/31)*i/(ncolor-1) - 35.0/31 | |
62 | # elif (i <= 89.0/100*(ncolor-1)): rf = 1.0 |
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62 | # elif (i <= 89.0/100*(ncolor-1)): rf = 1.0 | |
63 | # else: rf = (-100.0/22)*i/(ncolor-1) + 111.0/22 |
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63 | # else: rf = (-100.0/22)*i/(ncolor-1) + 111.0/22 | |
64 | # |
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64 | # | |
65 | # if(i <= 12.0/100*(ncolor-1)): gf = 0.0 |
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65 | # if(i <= 12.0/100*(ncolor-1)): gf = 0.0 | |
66 | # elif(i <= 38.0/100*(ncolor-1)): gf = (100.0/26)*i/(ncolor-1) - 12.0/26 |
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66 | # elif(i <= 38.0/100*(ncolor-1)): gf = (100.0/26)*i/(ncolor-1) - 12.0/26 | |
67 | # elif(i <= 64.0/100*(ncolor-1)): gf = 1.0 |
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67 | # elif(i <= 64.0/100*(ncolor-1)): gf = 1.0 | |
68 | # elif(i <= 91.0/100*(ncolor-1)): gf = (-100.0/27)*i/(ncolor-1) + 91.0/27 |
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68 | # elif(i <= 91.0/100*(ncolor-1)): gf = (-100.0/27)*i/(ncolor-1) + 91.0/27 | |
69 | # else: gf = 0.0 |
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69 | # else: gf = 0.0 | |
70 | # |
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70 | # | |
71 | # if(i <= 11.0/100*(ncolor-1)): bf = (50.0/11)*i/(ncolor-1) + 0.5 |
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71 | # if(i <= 11.0/100*(ncolor-1)): bf = (50.0/11)*i/(ncolor-1) + 0.5 | |
72 | # elif(i <= 34.0/100*(ncolor-1)): bf = 1.0 |
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72 | # elif(i <= 34.0/100*(ncolor-1)): bf = 1.0 | |
73 | # elif(i <= 65.0/100*(ncolor-1)): bf = (-100.0/31)*i/(ncolor-1) + 65.0/31 |
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73 | # elif(i <= 65.0/100*(ncolor-1)): bf = (-100.0/31)*i/(ncolor-1) + 65.0/31 | |
74 | # else: bf = 0 |
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74 | # else: bf = 0 | |
75 | # |
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75 | # | |
76 | # r[i] = rf |
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76 | # r[i] = rf | |
77 | # g[i] = gf |
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77 | # g[i] = gf | |
78 | # b[i] = bf |
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78 | # b[i] = bf | |
79 | # |
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79 | # | |
80 | # pos[i] = float(i)/float(ncolor-1) |
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80 | # pos[i] = float(i)/float(ncolor-1) | |
81 | # |
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81 | # | |
82 | # |
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82 | # | |
83 | # plplot.plscmap1n(ncolor) |
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83 | # plplot.plscmap1n(ncolor) | |
84 | # plplot.plscmap1l(1, pos, r, g, b) |
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84 | # plplot.plscmap1l(1, pos, r, g, b) | |
85 | # |
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85 | # | |
86 | # |
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86 | # | |
87 | # |
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87 | # | |
88 | # if colormap=='br_green': |
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88 | # if colormap=='br_green': | |
89 | # ncolor = 256 |
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89 | # ncolor = 256 | |
90 | # # Hue ranges from blue (240 deg) to red (0 or 360 deg) |
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90 | # # Hue ranges from blue (240 deg) to red (0 or 360 deg) | |
91 | # h = numpy.array((240., 0.)) |
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91 | # h = numpy.array((240., 0.)) | |
92 | # # Lightness and saturation are constant (values taken from C example). |
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92 | # # Lightness and saturation are constant (values taken from C example). | |
93 | # l = numpy.array((0.6, 0.6)) |
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93 | # l = numpy.array((0.6, 0.6)) | |
94 | # s = numpy.array((0.8, 0.8)) |
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94 | # s = numpy.array((0.8, 0.8)) | |
95 | # |
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95 | # | |
96 | # # number of cmap1 colours is 256 in this case. |
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96 | # # number of cmap1 colours is 256 in this case. | |
97 | # plplot.plscmap1n(ncolor) |
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97 | # plplot.plscmap1n(ncolor) | |
98 | # # Interpolate between control points to set up cmap1. |
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98 | # # Interpolate between control points to set up cmap1. | |
99 | # plplot.plscmap1l(0, i, h, l, s) |
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99 | # plplot.plscmap1l(0, i, h, l, s) | |
100 | # |
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100 | # | |
101 | # return None |
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101 | # return None | |
102 | # |
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102 | # | |
103 | # if colormap=='tricolor': |
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103 | # if colormap=='tricolor': | |
104 | # ncolor = 3 |
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104 | # ncolor = 3 | |
105 | # # Hue ranges from blue (240 deg) to red (0 or 360 deg) |
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105 | # # Hue ranges from blue (240 deg) to red (0 or 360 deg) | |
106 | # h = numpy.array((240., 0.)) |
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106 | # h = numpy.array((240., 0.)) | |
107 | # # Lightness and saturation are constant (values taken from C example). |
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107 | # # Lightness and saturation are constant (values taken from C example). | |
108 | # l = numpy.array((0.6, 0.6)) |
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108 | # l = numpy.array((0.6, 0.6)) | |
109 | # s = numpy.array((0.8, 0.8)) |
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109 | # s = numpy.array((0.8, 0.8)) | |
110 | # |
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110 | # | |
111 | # # number of cmap1 colours is 256 in this case. |
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111 | # # number of cmap1 colours is 256 in this case. | |
112 | # plplot.plscmap1n(ncolor) |
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112 | # plplot.plscmap1n(ncolor) | |
113 | # # Interpolate between control points to set up cmap1. |
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113 | # # Interpolate between control points to set up cmap1. | |
114 | # plplot.plscmap1l(0, i, h, l, s) |
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114 | # plplot.plscmap1l(0, i, h, l, s) | |
115 | # |
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115 | # | |
116 | # return None |
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116 | # return None | |
117 | # |
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117 | # | |
118 | # if colormap == 'rgb' or colormap == 'rgb666': |
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118 | # if colormap == 'rgb' or colormap == 'rgb666': | |
119 | # |
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119 | # | |
120 | # color_sz = 6 |
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120 | # color_sz = 6 | |
121 | # ncolor = color_sz*color_sz*color_sz |
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121 | # ncolor = color_sz*color_sz*color_sz | |
122 | # pos = numpy.zeros((ncolor)) |
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122 | # pos = numpy.zeros((ncolor)) | |
123 | # r = numpy.zeros((ncolor)) |
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123 | # r = numpy.zeros((ncolor)) | |
124 | # g = numpy.zeros((ncolor)) |
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124 | # g = numpy.zeros((ncolor)) | |
125 | # b = numpy.zeros((ncolor)) |
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125 | # b = numpy.zeros((ncolor)) | |
126 | # ind = 0 |
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126 | # ind = 0 | |
127 | # for ri in range(color_sz): |
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127 | # for ri in range(color_sz): | |
128 | # for gi in range(color_sz): |
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128 | # for gi in range(color_sz): | |
129 | # for bi in range(color_sz): |
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129 | # for bi in range(color_sz): | |
130 | # r[ind] = ri/(color_sz-1.0) |
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130 | # r[ind] = ri/(color_sz-1.0) | |
131 | # g[ind] = gi/(color_sz-1.0) |
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131 | # g[ind] = gi/(color_sz-1.0) | |
132 | # b[ind] = bi/(color_sz-1.0) |
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132 | # b[ind] = bi/(color_sz-1.0) | |
133 | # pos[ind] = ind/(ncolor-1.0) |
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133 | # pos[ind] = ind/(ncolor-1.0) | |
134 | # ind += 1 |
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134 | # ind += 1 | |
135 | # rgb_lvl = [6,6,6] #Levels for RGB colors |
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135 | # rgb_lvl = [6,6,6] #Levels for RGB colors | |
136 | # |
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136 | # | |
137 | # if colormap == 'rgb676': |
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137 | # if colormap == 'rgb676': | |
138 | # ncolor = 6*7*6 |
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138 | # ncolor = 6*7*6 | |
139 | # pos = numpy.zeros((ncolor)) |
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139 | # pos = numpy.zeros((ncolor)) | |
140 | # r = numpy.zeros((ncolor)) |
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140 | # r = numpy.zeros((ncolor)) | |
141 | # g = numpy.zeros((ncolor)) |
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141 | # g = numpy.zeros((ncolor)) | |
142 | # b = numpy.zeros((ncolor)) |
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142 | # b = numpy.zeros((ncolor)) | |
143 | # ind = 0 |
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143 | # ind = 0 | |
144 | # for ri in range(8): |
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144 | # for ri in range(8): | |
145 | # for gi in range(8): |
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145 | # for gi in range(8): | |
146 | # for bi in range(4): |
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146 | # for bi in range(4): | |
147 | # r[ind] = ri/(6-1.0) |
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147 | # r[ind] = ri/(6-1.0) | |
148 | # g[ind] = gi/(7-1.0) |
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148 | # g[ind] = gi/(7-1.0) | |
149 | # b[ind] = bi/(6-1.0) |
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149 | # b[ind] = bi/(6-1.0) | |
150 | # pos[ind] = ind/(ncolor-1.0) |
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150 | # pos[ind] = ind/(ncolor-1.0) | |
151 | # ind += 1 |
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151 | # ind += 1 | |
152 | # rgb_lvl = [6,7,6] #Levels for RGB colors |
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152 | # rgb_lvl = [6,7,6] #Levels for RGB colors | |
153 | # |
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153 | # | |
154 | # if colormap == 'rgb685': |
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154 | # if colormap == 'rgb685': | |
155 | # ncolor = 6*8*5 |
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155 | # ncolor = 6*8*5 | |
156 | # pos = numpy.zeros((ncolor)) |
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156 | # pos = numpy.zeros((ncolor)) | |
157 | # r = numpy.zeros((ncolor)) |
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157 | # r = numpy.zeros((ncolor)) | |
158 | # g = numpy.zeros((ncolor)) |
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158 | # g = numpy.zeros((ncolor)) | |
159 | # b = numpy.zeros((ncolor)) |
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159 | # b = numpy.zeros((ncolor)) | |
160 | # ind = 0 |
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160 | # ind = 0 | |
161 | # for ri in range(8): |
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161 | # for ri in range(8): | |
162 | # for gi in range(8): |
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162 | # for gi in range(8): | |
163 | # for bi in range(4): |
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163 | # for bi in range(4): | |
164 | # r[ind] = ri/(6-1.0) |
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164 | # r[ind] = ri/(6-1.0) | |
165 | # g[ind] = gi/(8-1.0) |
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165 | # g[ind] = gi/(8-1.0) | |
166 | # b[ind] = bi/(5-1.0) |
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166 | # b[ind] = bi/(5-1.0) | |
167 | # pos[ind] = ind/(ncolor-1.0) |
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167 | # pos[ind] = ind/(ncolor-1.0) | |
168 | # ind += 1 |
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168 | # ind += 1 | |
169 | # rgb_lvl = [6,8,5] #Levels for RGB colors |
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169 | # rgb_lvl = [6,8,5] #Levels for RGB colors | |
170 | # |
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170 | # | |
171 | # if colormap == 'rgb884': |
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171 | # if colormap == 'rgb884': | |
172 | # ncolor = 8*8*4 |
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172 | # ncolor = 8*8*4 | |
173 | # pos = numpy.zeros((ncolor)) |
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173 | # pos = numpy.zeros((ncolor)) | |
174 | # r = numpy.zeros((ncolor)) |
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174 | # r = numpy.zeros((ncolor)) | |
175 | # g = numpy.zeros((ncolor)) |
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175 | # g = numpy.zeros((ncolor)) | |
176 | # b = numpy.zeros((ncolor)) |
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176 | # b = numpy.zeros((ncolor)) | |
177 | # ind = 0 |
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177 | # ind = 0 | |
178 | # for ri in range(8): |
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178 | # for ri in range(8): | |
179 | # for gi in range(8): |
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179 | # for gi in range(8): | |
180 | # for bi in range(4): |
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180 | # for bi in range(4): | |
181 | # r[ind] = ri/(8-1.0) |
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181 | # r[ind] = ri/(8-1.0) | |
182 | # g[ind] = gi/(8-1.0) |
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182 | # g[ind] = gi/(8-1.0) | |
183 | # b[ind] = bi/(4-1.0) |
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183 | # b[ind] = bi/(4-1.0) | |
184 | # pos[ind] = ind/(ncolor-1.0) |
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184 | # pos[ind] = ind/(ncolor-1.0) | |
185 | # ind += 1 |
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185 | # ind += 1 | |
186 | # rgb_lvl = [8,8,4] #Levels for RGB colors |
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186 | # rgb_lvl = [8,8,4] #Levels for RGB colors | |
187 | # |
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187 | # | |
188 | # if ncolor == None: |
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188 | # if ncolor == None: | |
189 | # raise ValueError, 'The colormap selected is not valid' |
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189 | # raise ValueError, 'The colormap selected is not valid' | |
190 | # |
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190 | # | |
191 | # plplot.plscmap1n(ncolor) |
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191 | # plplot.plscmap1n(ncolor) | |
192 | # plplot.plscmap1l(1, pos, r, g, b) |
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192 | # plplot.plscmap1l(1, pos, r, g, b) | |
193 | # |
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193 | # | |
194 | # return rgb_lvl |
|
194 | # return rgb_lvl | |
195 | pass |
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195 | pass | |
196 |
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196 | |||
197 | def setColormap(colormap='jet'): |
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197 | def setColormap(colormap='jet'): | |
198 | # cmap1_init(colormap) |
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198 | # cmap1_init(colormap) | |
199 | pass |
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199 | pass | |
200 |
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200 | |||
201 | def savePlplot(filename,width,height): |
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201 | def savePlplot(filename,width,height): | |
202 | # curr_strm = plplot.plgstrm() |
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202 | # curr_strm = plplot.plgstrm() | |
203 | # save_strm = plplot.plmkstrm() |
|
203 | # save_strm = plplot.plmkstrm() | |
204 | # plplot.plsetopt('geometry', '%dx%d'%(width,height)) |
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204 | # plplot.plsetopt('geometry', '%dx%d'%(width,height)) | |
205 | # plplot.plsdev('png') |
|
205 | # plplot.plsdev('png') | |
206 | # plplot.plsfnam(filename) |
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206 | # plplot.plsfnam(filename) | |
207 | # plplot.plcpstrm(curr_strm,0) |
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207 | # plplot.plcpstrm(curr_strm,0) | |
208 | # plplot.plreplot() |
|
208 | # plplot.plreplot() | |
209 | # plplot.plend1() |
|
209 | # plplot.plend1() | |
210 | # plplot.plsstrm(curr_strm) |
|
210 | # plplot.plsstrm(curr_strm) | |
211 | pass |
|
211 | pass | |
212 |
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212 | |||
213 | def initMatplotlib(indexFig,ncol,nrow,winTitle,width,height): |
|
213 | def initMatplotlib(indexFig,ncol,nrow,winTitle,width,height): | |
214 |
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214 | |||
215 | plt.ioff() |
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215 | plt.ioff() | |
216 | fig = plt.figure(indexFig) |
|
216 | fig = plt.figure(indexFig) | |
217 | fig.canvas.manager.set_window_title(winTitle) |
|
217 | fig.canvas.manager.set_window_title(winTitle) | |
218 | fig.canvas.manager.resize(width,height) |
|
218 | fig.canvas.manager.resize(width,height) | |
219 | # fig.add_subplot(nrow,ncol,1) |
|
219 | # fig.add_subplot(nrow,ncol,1) | |
220 | plt.ion() |
|
220 | plt.ion() | |
221 |
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221 | |||
222 | def setNewPage(): |
|
222 | def setNewPage(): | |
223 | # plplot.plbop() |
|
223 | # plplot.plbop() | |
224 | # plplot.pladv(0) |
|
224 | # plplot.pladv(0) | |
225 | plt.clf() |
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225 | plt.clf() | |
226 |
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226 | |||
227 | def closePage(): |
|
227 | def closePage(): | |
228 | # plplot.pleop() |
|
228 | # plplot.pleop() | |
229 | pass |
|
229 | pass | |
230 |
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230 | |||
231 | def clearData(objGraph): |
|
231 | def clearData(objGraph): | |
232 | objGraph.plotBox(objGraph.xrange[0], objGraph.xrange[1], objGraph.yrange[0], objGraph.yrange[1], 'bc', 'bc') |
|
232 | objGraph.plotBox(objGraph.xrange[0], objGraph.xrange[1], objGraph.yrange[0], objGraph.yrange[1], 'bc', 'bc') | |
233 |
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233 | |||
234 | objGraph.setColor(15) #Setting Line Color to White |
|
234 | objGraph.setColor(15) #Setting Line Color to White | |
235 |
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235 | |||
236 | if objGraph.datatype == 'complex': |
|
236 | if objGraph.datatype == 'complex': | |
237 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata.real) |
|
237 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata.real) | |
238 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata.imag) |
|
238 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata.imag) | |
239 |
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239 | |||
240 | if objGraph.datatype == 'real': |
|
240 | if objGraph.datatype == 'real': | |
241 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata) |
|
241 | objGraph.basicXYPlot(objGraph.xdata,objGraph.ydata) | |
242 |
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242 | |||
243 | objGraph.setColor(1) #Setting Line Color to Black |
|
243 | objGraph.setColor(1) #Setting Line Color to Black | |
244 | # objGraph.setLineStyle(2) |
|
244 | # objGraph.setLineStyle(2) | |
245 | # objGraph.plotBox(objGraph.xrange[0], objGraph.xrange[1], objGraph.yrange[0], objGraph.yrange[1], 'bcntg', 'bc') |
|
245 | # objGraph.plotBox(objGraph.xrange[0], objGraph.xrange[1], objGraph.yrange[0], objGraph.yrange[1], 'bcntg', 'bc') | |
246 | # objGraph.setLineStyle(1) |
|
246 | # objGraph.setLineStyle(1) | |
247 |
|
247 | |||
248 | def setFigure(indexFig): |
|
248 | def setFigure(indexFig): | |
249 | # plplot.plsstrm(indexFig) |
|
249 | # plplot.plsstrm(indexFig) | |
250 | plt.figure(indexFig) |
|
250 | plt.figure(indexFig) | |
251 |
|
251 | |||
252 | def refresh(): |
|
252 | def refresh(): | |
253 | # plplot.refresh() |
|
253 | # plplot.refresh() | |
254 | plt.draw() |
|
254 | plt.draw() | |
255 |
|
255 | |||
256 | def show(): |
|
256 | def show(): | |
257 | # plplot.plspause(True) |
|
257 | # plplot.plspause(True) | |
258 | # plplot.plend() |
|
258 | # plplot.plend() | |
259 | plt.ioff() |
|
259 | plt.ioff() | |
260 | plt.show() |
|
260 | plt.show() | |
261 | plt.ion() |
|
261 | plt.ion() | |
262 |
|
262 | |||
263 | def setPlTitle(pltitle,color, szchar=0.7): |
|
263 | def setPlTitle(pltitle,color, szchar=0.7): | |
264 | # setSubpages(1, 0) |
|
264 | # setSubpages(1, 0) | |
265 | # plplot.pladv(0) |
|
265 | # plplot.pladv(0) | |
266 | # plplot.plvpor(0., 1., 0., 1.) |
|
266 | # plplot.plvpor(0., 1., 0., 1.) | |
267 | # |
|
267 | # | |
268 | # if color == 'black': |
|
268 | # if color == 'black': | |
269 | # plplot.plcol0(1) |
|
269 | # plplot.plcol0(1) | |
270 | # if color == 'white': |
|
270 | # if color == 'white': | |
271 | # plplot.plcol0(15) |
|
271 | # plplot.plcol0(15) | |
272 | # |
|
272 | # | |
273 | # plplot.plschr(0.0,szchar) |
|
273 | # plplot.plschr(0.0,szchar) | |
274 | # plplot.plmtex('t',-1., 0.5, 0.5, pltitle) |
|
274 | # plplot.plmtex('t',-1., 0.5, 0.5, pltitle) | |
275 | pass |
|
275 | pass | |
276 |
|
276 | |||
277 | def setSubpages(ncol,nrow): |
|
277 | def setSubpages(ncol,nrow): | |
278 | # plplot.plssub(ncol,nrow) |
|
278 | # plplot.plssub(ncol,nrow) | |
279 | pass |
|
279 | pass | |
280 |
|
280 | |||
281 | class BaseGraph: |
|
281 | class BaseGraph: | |
282 |
|
282 | |||
283 | __name = None |
|
283 | __name = None | |
284 | __xpos = None |
|
284 | __xpos = None | |
285 | __ypos = None |
|
285 | __ypos = None | |
286 | __subplot = None |
|
286 | __subplot = None | |
287 | __xg = None |
|
287 | __xg = None | |
288 | __yg = None |
|
288 | __yg = None | |
289 | __axesId = None |
|
289 | __axesId = None | |
290 | xdata = None |
|
290 | xdata = None | |
291 | ydata = None |
|
291 | ydata = None | |
292 | getGrid = True |
|
292 | getGrid = True | |
293 | xaxisIsTime = False |
|
293 | xaxisIsTime = False | |
294 | deltax = None |
|
294 | deltax = None | |
295 | xmin = None |
|
295 | xmin = None | |
296 | xmax = None |
|
296 | xmax = None | |
297 |
|
297 | |||
298 | def __init__(self,name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange=None,deltax=1.0): |
|
298 | def __init__(self,name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange=None,deltax=1.0): | |
299 |
|
299 | |||
300 | self.setName(name) |
|
300 | self.setName(name) | |
301 | self.setScreenPos(xpos, ypos) |
|
301 | self.setScreenPos(xpos, ypos) | |
302 | self.setSubPlot(subplot) |
|
302 | self.setSubPlot(subplot) | |
303 | self.setXYZrange(xrange,yrange,zrange) |
|
303 | self.setXYZrange(xrange,yrange,zrange) | |
304 | self.setSizeOfChar(szchar) |
|
304 | self.setSizeOfChar(szchar) | |
305 | self.setLabels(xlabel,ylabel,title) |
|
305 | self.setLabels(xlabel,ylabel,title) | |
306 | self.getGrid = True |
|
306 | self.getGrid = True | |
307 | self.xaxisIsTime = False |
|
307 | self.xaxisIsTime = False | |
308 | self.deltax = deltax |
|
308 | self.deltax = deltax | |
309 | pass |
|
309 | pass | |
310 |
|
310 | |||
311 | def makeAxes(self,indexFig,nrow,ncol,subplot): |
|
311 | def makeAxes(self,indexFig,nrow,ncol,subplot): | |
312 | fig = plt.figure(indexFig) |
|
312 | fig = plt.figure(indexFig) | |
313 | self.__axesId = fig.add_subplot(nrow,ncol,subplot) |
|
313 | self.__axesId = fig.add_subplot(nrow,ncol,subplot) | |
314 |
|
314 | |||
315 | def setParentAxesId(self,parent): |
|
315 | def setParentAxesId(self,parent): | |
316 | self.__axesId = parent.__axesId |
|
316 | self.__axesId = parent.__axesId | |
317 |
|
317 | |||
318 | def setName(self, name): |
|
318 | def setName(self, name): | |
319 | self.__name = name |
|
319 | self.__name = name | |
320 |
|
320 | |||
321 | def setScreenPos(self,xpos,ypos): |
|
321 | def setScreenPos(self,xpos,ypos): | |
322 | self.__xpos = xpos |
|
322 | self.__xpos = xpos | |
323 | self.__ypos = ypos |
|
323 | self.__ypos = ypos | |
324 |
|
324 | |||
325 | def setSubPlot(self,subplot): |
|
325 | def setSubPlot(self,subplot): | |
326 | self.__subplot = subplot |
|
326 | self.__subplot = subplot | |
327 |
|
327 | |||
328 | def setXYZrange(self,xrange,yrange,zrange): |
|
328 | def setXYZrange(self,xrange,yrange,zrange): | |
329 | self.xrange = xrange |
|
329 | self.xrange = xrange | |
330 | self.yrange = yrange |
|
330 | self.yrange = yrange | |
331 | self.zrange = zrange |
|
331 | self.zrange = zrange | |
332 |
|
332 | |||
333 | def setSizeOfChar(self,szchar): |
|
333 | def setSizeOfChar(self,szchar): | |
334 | self.__szchar = szchar |
|
334 | self.__szchar = szchar | |
335 |
|
335 | |||
336 | def setLabels(self,xlabel=None,ylabel=None,title=None): |
|
336 | def setLabels(self,xlabel=None,ylabel=None,title=None): | |
337 | if xlabel != None: self.xlabel = xlabel |
|
337 | if xlabel != None: self.xlabel = xlabel | |
338 | if ylabel != None: self.ylabel = ylabel |
|
338 | if ylabel != None: self.ylabel = ylabel | |
339 | if title != None: self.title = title |
|
339 | if title != None: self.title = title | |
340 |
|
340 | |||
341 | def setXYData(self,xdata=None,ydata=None,datatype='real'): |
|
341 | def setXYData(self,xdata=None,ydata=None,datatype='real'): | |
342 | if ((xdata != None) and (ydata != None)): |
|
342 | if ((xdata != None) and (ydata != None)): | |
343 | self.xdata = xdata |
|
343 | self.xdata = xdata | |
344 | self.ydata = ydata |
|
344 | self.ydata = ydata | |
345 | self.datatype = datatype |
|
345 | self.datatype = datatype | |
346 | if ((self.xdata == None) and (self.ydata == None)): |
|
346 | if ((self.xdata == None) and (self.ydata == None)): | |
347 | return None |
|
347 | return None | |
348 | return 1 |
|
348 | return 1 | |
349 |
|
349 | |||
350 | def setLineStyle(self, style): |
|
350 | def setLineStyle(self, style): | |
351 | # plplot.pllsty(style) |
|
351 | # plplot.pllsty(style) | |
352 | pass |
|
352 | pass | |
353 |
|
353 | |||
354 | def setColor(self, color): |
|
354 | def setColor(self, color): | |
355 | # plplot.plcol0(color) |
|
355 | # plplot.plcol0(color) | |
356 | pass |
|
356 | pass | |
357 |
|
357 | |||
358 | def setXAxisAsTime(self, value=False): |
|
358 | def setXAxisAsTime(self, value=False): | |
359 | self.xaxisIsTime = value |
|
359 | self.xaxisIsTime = value | |
360 |
|
360 | |||
361 | def basicLineTimePlot(self, x, y, colline=1): |
|
361 | def basicLineTimePlot(self, x, y, colline=1): | |
362 | # plplot.plcol0(colline) |
|
362 | # plplot.plcol0(colline) | |
363 | # plplot.plline(x, y) |
|
363 | # plplot.plline(x, y) | |
364 | # plplot.plcol0(1) |
|
364 | # plplot.plcol0(1) | |
365 | ax = self.__axesId |
|
365 | ax = self.__axesId | |
366 | if self.setXYData() == None: |
|
366 | if self.setXYData() == None: | |
367 | ax.plot(x,y) |
|
367 | ax.plot(x,y) | |
368 | else: |
|
368 | else: | |
369 | ax.lines[0].set_data(x,y) |
|
369 | ax.lines[0].set_data(x,y) | |
370 |
|
370 | |||
371 | def basicXYPlot(self, x, y): |
|
371 | def basicXYPlot(self, x, y): | |
372 | # plplot.plline(x, y) |
|
372 | # plplot.plline(x, y) | |
373 | ax = self.__axesId |
|
373 | ax = self.__axesId | |
374 | if self.setXYData() == None: |
|
374 | if self.setXYData() == None: | |
375 | ax.plot(x,y) |
|
375 | ax.plot(x,y) | |
376 | else: |
|
376 | else: | |
377 | ax.lines[0].set_data(x,y) |
|
377 | ax.lines[0].set_data(x,y) | |
378 |
|
378 | |||
379 | def basicPcolorPlot(self, data, x, y, xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None): |
|
379 | def basicPcolorPlot(self, data, x, y, xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None): | |
380 | # |
|
380 | # | |
381 | # if xmin == None: xmin = x[0] |
|
381 | # if xmin == None: xmin = x[0] | |
382 | # if xmax == None: xmax = x[-1] |
|
382 | # if xmax == None: xmax = x[-1] | |
383 | # if ymin == None: ymin = y[0] |
|
383 | # if ymin == None: ymin = y[0] | |
384 | # if ymax == None: ymax = y[-1] |
|
384 | # if ymax == None: ymax = y[-1] | |
385 | # if zmin == None: zmin = numpy.nanmin(data) |
|
385 | # if zmin == None: zmin = numpy.nanmin(data) | |
386 | # if zmax == None: zmax = numpy.nanmax(data) |
|
386 | # if zmax == None: zmax = numpy.nanmax(data) | |
387 | # |
|
387 | # | |
388 | # plplot.plimage(data, |
|
388 | # plplot.plimage(data, | |
389 | # float(x[0]), |
|
389 | # float(x[0]), | |
390 | # float(x[-1]), |
|
390 | # float(x[-1]), | |
391 | # float(y[0]), |
|
391 | # float(y[0]), | |
392 | # float(y[-1]), |
|
392 | # float(y[-1]), | |
393 | # float(zmin), |
|
393 | # float(zmin), | |
394 | # float(zmax), |
|
394 | # float(zmax), | |
395 | # float(xmin), |
|
395 | # float(xmin), | |
396 | # float(xmax), |
|
396 | # float(xmax), | |
397 | # float(ymin), |
|
397 | # float(ymin), | |
398 | # float(ymax) |
|
398 | # float(ymax) | |
399 | # ) |
|
399 | # ) | |
400 | pass |
|
400 | pass | |
401 |
|
401 | |||
402 | def __getBoxpltr(self, x, y, deltax=None, deltay=None): |
|
402 | def __getBoxpltr(self, x, y, deltax=None, deltay=None): | |
403 |
|
403 | |||
404 | # if not(len(x)>0 and len(y)>0): |
|
404 | # if not(len(x)>0 and len(y)>0): | |
405 | # raise ValueError, 'x axis and y axis are empty' |
|
405 | # raise ValueError, 'x axis and y axis are empty' | |
406 | # |
|
406 | # | |
407 | # if deltax == None: deltax = x[-1] - x[-2] |
|
407 | # if deltax == None: deltax = x[-1] - x[-2] | |
408 | # if deltay == None: deltay = y[-1] - y[-2] |
|
408 | # if deltay == None: deltay = y[-1] - y[-2] | |
409 | # |
|
409 | # | |
410 | # x1 = numpy.append(x, x[-1] + deltax) |
|
410 | # x1 = numpy.append(x, x[-1] + deltax) | |
411 | # y1 = numpy.append(y, y[-1] + deltay) |
|
411 | # y1 = numpy.append(y, y[-1] + deltay) | |
412 | # |
|
412 | # | |
413 | # xg = (numpy.multiply.outer(x1, numpy.ones(len(y1)))) |
|
413 | # xg = (numpy.multiply.outer(x1, numpy.ones(len(y1)))) | |
414 | # yg = (numpy.multiply.outer(numpy.ones(len(x1)), y1)) |
|
414 | # yg = (numpy.multiply.outer(numpy.ones(len(x1)), y1)) | |
415 | # |
|
415 | # | |
416 | # self.__xg = xg |
|
416 | # self.__xg = xg | |
417 | # self.__yg = yg |
|
417 | # self.__yg = yg | |
418 | # |
|
418 | # | |
419 | # return xg, yg |
|
419 | # return xg, yg | |
420 | pass |
|
420 | pass | |
421 |
|
421 | |||
422 | def advPcolorPlot(self, data, x, y, xmin=None, xmax=None, ymin=None, ymax=None, zmin=0., zmax=0., deltax=1.0, deltay=None, getGrid = True): |
|
422 | def advPcolorPlot(self, data, x, y, xmin=None, xmax=None, ymin=None, ymax=None, zmin=0., zmax=0., deltax=1.0, deltay=None, getGrid = True): | |
423 | # if getGrid: |
|
423 | # if getGrid: | |
424 | # xg, yg = self.__getBoxpltr(x, y, deltax, deltay) |
|
424 | # xg, yg = self.__getBoxpltr(x, y, deltax, deltay) | |
425 | # else: |
|
425 | # else: | |
426 | # xg = self.__xg |
|
426 | # xg = self.__xg | |
427 | # yg = self.__yg |
|
427 | # yg = self.__yg | |
428 | # |
|
428 | # | |
429 | # plplot.plimagefr(data, |
|
429 | # plplot.plimagefr(data, | |
430 | # float(xmin), |
|
430 | # float(xmin), | |
431 | # float(xmax), |
|
431 | # float(xmax), | |
432 | # float(ymin), |
|
432 | # float(ymin), | |
433 | # float(ymax), |
|
433 | # float(ymax), | |
434 | # 0., |
|
434 | # 0., | |
435 | # 0., |
|
435 | # 0., | |
436 | # float(zmin), |
|
436 | # float(zmin), | |
437 | # float(zmax), |
|
437 | # float(zmax), | |
438 | # plplot.pltr2, |
|
438 | # plplot.pltr2, | |
439 | # xg, |
|
439 | # xg, | |
440 | # yg) |
|
440 | # yg) | |
441 |
|
441 | |||
442 | ax = self.__axesId |
|
442 | ax = self.__axesId | |
443 | # if self.setXYData() == None: |
|
443 | # if self.setXYData() == None: | |
444 | ax.pcolormesh(x,y,data.T,vmin=zmin,vmax=zmax) |
|
444 | ax.pcolormesh(x,y,data.T,vmin=zmin,vmax=zmax) | |
445 | # else: |
|
445 | # else: | |
446 | # ax.lines[0].set_data(x,y) |
|
446 | # ax.lines[0].set_data(x,y) | |
447 |
|
447 | |||
448 |
|
448 | |||
449 | def colorbarPlot(self, xmin=0., xmax=1., ymin=0., ymax=1.): |
|
449 | def colorbarPlot(self, xmin=0., xmax=1., ymin=0., ymax=1.): | |
450 | # data = numpy.arange(256) |
|
450 | # data = numpy.arange(256) | |
451 | # data = numpy.reshape(data, (1,-1)) |
|
451 | # data = numpy.reshape(data, (1,-1)) | |
452 | # plplot.plimage(data, |
|
452 | # plplot.plimage(data, | |
453 | # float(xmin), |
|
453 | # float(xmin), | |
454 | # float(xmax), |
|
454 | # float(xmax), | |
455 | # float(ymin), |
|
455 | # float(ymin), | |
456 | # float(ymax), |
|
456 | # float(ymax), | |
457 | # 0., |
|
457 | # 0., | |
458 | # 255., |
|
458 | # 255., | |
459 | # float(xmin), |
|
459 | # float(xmin), | |
460 | # float(xmax), |
|
460 | # float(xmax), | |
461 | # float(ymin), |
|
461 | # float(ymin), | |
462 | # float(ymax)) |
|
462 | # float(ymax)) | |
463 | ax = self.__axesId |
|
463 | ax = self.__axesId | |
464 | cax, kw = mpl.colorbar.make_axes(ax) |
|
464 | cax, kw = mpl.colorbar.make_axes(ax) | |
465 | norm = mpl.colors.Normalize(vmin=ymin, vmax=ymax) |
|
465 | norm = mpl.colors.Normalize(vmin=ymin, vmax=ymax) | |
466 | cb = mpl.colorbar.ColorbarBase(cax,norm=norm,**kw) |
|
466 | cb = mpl.colorbar.ColorbarBase(cax,norm=norm,**kw) | |
467 | self.__colorbarId = cb |
|
467 | self.__colorbarId = cb | |
468 | cb.set_label(self.title) |
|
468 | cb.set_label(self.title) | |
469 |
|
469 | |||
470 | def plotBox(self, xmin, xmax, ymin, ymax, xopt, yopt, nolabels=False): |
|
470 | def plotBox(self, xmin, xmax, ymin, ymax, xopt, yopt, nolabels=False): | |
471 |
|
471 | |||
472 | # plplot.plschr(0.0,self.__szchar-0.05) |
|
472 | # plplot.plschr(0.0,self.__szchar-0.05) | |
473 | # plplot.pladv(self.__subplot) |
|
473 | # plplot.pladv(self.__subplot) | |
474 | # plplot.plvpor(self.__xpos[0], self.__xpos[1], self.__ypos[0], self.__ypos[1]) |
|
474 | # plplot.plvpor(self.__xpos[0], self.__xpos[1], self.__ypos[0], self.__ypos[1]) | |
475 | # plplot.plwind(float(xmin), # self.xrange[0] |
|
475 | # plplot.plwind(float(xmin), # self.xrange[0] | |
476 | # float(xmax), # self.xrange[1] |
|
476 | # float(xmax), # self.xrange[1] | |
477 | # float(ymin), # self.yrange[0] |
|
477 | # float(ymin), # self.yrange[0] | |
478 | # float(ymax) # self.yrange[1] |
|
478 | # float(ymax) # self.yrange[1] | |
479 | # ) |
|
479 | # ) | |
480 | # |
|
480 | # | |
481 | # |
|
481 | # | |
482 | # |
|
482 | # | |
483 | # if self.xaxisIsTime: |
|
483 | # if self.xaxisIsTime: | |
484 | # plplot.pltimefmt('%H:%M') |
|
484 | # plplot.pltimefmt('%H:%M') | |
485 | # timedelta = (xmax - xmin + 1)/8. |
|
485 | # timedelta = (xmax - xmin + 1)/8. | |
486 | # plplot.plbox(xopt, timedelta, 3, yopt, 0.0, 0) |
|
486 | # plplot.plbox(xopt, timedelta, 3, yopt, 0.0, 0) | |
487 | # else: |
|
487 | # else: | |
488 | # plplot.plbox(xopt, 0.0, 0, yopt, 0.0, 0) |
|
488 | # plplot.plbox(xopt, 0.0, 0, yopt, 0.0, 0) | |
489 | # |
|
489 | # | |
490 | # |
|
490 | # | |
491 | # if not(nolabels): |
|
491 | # if not(nolabels): | |
492 | # plplot.pllab(self.xlabel, self.ylabel, self.title) |
|
492 | # plplot.pllab(self.xlabel, self.ylabel, self.title) | |
493 |
|
493 | |||
494 | ax = self.__axesId |
|
494 | ax = self.__axesId | |
495 | ax.set_xlim([xmin,xmax]) |
|
495 | ax.set_xlim([xmin,xmax]) | |
496 | ax.set_ylim([ymin,ymax]) |
|
496 | ax.set_ylim([ymin,ymax]) | |
497 |
|
497 | |||
498 | if not(nolabels): |
|
498 | if not(nolabels): | |
499 | ax.set_xlabel(self.xlabel) |
|
499 | ax.set_xlabel(self.xlabel) | |
500 | ax.set_ylabel(self.ylabel) |
|
500 | ax.set_ylabel(self.ylabel) | |
501 | ax.set_title(self.title) |
|
501 | ax.set_title(self.title) | |
502 |
|
502 | |||
503 | # fig = plt.gcf() |
|
503 | # fig = plt.gcf() | |
504 | # nrows = self. |
|
504 | # nrows = self. | |
505 | # fig.add_subplot |
|
505 | # fig.add_subplot | |
506 |
|
506 | |||
507 | pass |
|
507 | pass | |
508 |
|
508 | |||
509 | def delLabels(self): |
|
509 | def delLabels(self): | |
510 | # self.setColor(15) #Setting Line Color to White |
|
510 | # self.setColor(15) #Setting Line Color to White | |
511 | # plplot.pllab(self.xlabel, self.ylabel, self.title) |
|
511 | # plplot.pllab(self.xlabel, self.ylabel, self.title) | |
512 | # self.setColor(1) #Setting Line Color to Black |
|
512 | # self.setColor(1) #Setting Line Color to Black | |
513 | pass |
|
513 | pass | |
514 |
|
514 | |||
515 | def plotImage(self,x,y,z,xrange,yrange,zrange): |
|
515 | def plotImage(self,x,y,z,xrange,yrange,zrange): | |
516 | # xi = x[0] |
|
516 | # xi = x[0] | |
517 | # xf = x[-1] |
|
517 | # xf = x[-1] | |
518 | # yi = y[0] |
|
518 | # yi = y[0] | |
519 | # yf = y[-1] |
|
519 | # yf = y[-1] | |
520 | # |
|
520 | # | |
521 | # plplot.plimage(z, |
|
521 | # plplot.plimage(z, | |
522 | # float(xi), |
|
522 | # float(xi), | |
523 | # float(xf), |
|
523 | # float(xf), | |
524 | # float(yi), |
|
524 | # float(yi), | |
525 | # float(yf), |
|
525 | # float(yf), | |
526 | # float(zrange[0]), |
|
526 | # float(zrange[0]), | |
527 | # float(zrange[1]), |
|
527 | # float(zrange[1]), | |
528 | # float(xi), |
|
528 | # float(xi), | |
529 | # float(xf), |
|
529 | # float(xf), | |
530 | # float(yrange[0]), |
|
530 | # float(yrange[0]), | |
531 | # yrange[1]) |
|
531 | # yrange[1]) | |
532 | pass |
|
532 | pass | |
533 |
|
533 | |||
534 | class LinearPlot: |
|
534 | class LinearPlot: | |
535 |
|
535 | |||
536 | linearObjDic = {} |
|
536 | linearObjDic = {} | |
537 | __xpos = None |
|
537 | __xpos = None | |
538 | __ypos = None |
|
538 | __ypos = None | |
539 |
|
539 | |||
540 | def __init__(self,indexFig,nsubplot,winTitle): |
|
540 | def __init__(self,indexFig,nsubplot,winTitle): | |
541 | self.width = 700 |
|
541 | self.width = 700 | |
542 | self.height = 150 |
|
542 | self.height = 150 | |
543 | self.indexFig = indexFig |
|
543 | self.indexFig = indexFig | |
544 | self.ncol = 1 |
|
544 | self.ncol = 1 | |
545 | self.nrow = nsubplot |
|
545 | self.nrow = nsubplot | |
546 | initMatplotlib(indexFig,self.ncol,self.nrow,winTitle,self.width,self.height) |
|
546 | initMatplotlib(indexFig,self.ncol,self.nrow,winTitle,self.width,self.height) | |
547 |
|
547 | |||
548 | def setFigure(self,indexFig): |
|
548 | def setFigure(self,indexFig): | |
549 | setFigure(indexFig) |
|
549 | setFigure(indexFig) | |
550 |
|
550 | |||
551 | def setPosition(self): |
|
551 | def setPosition(self): | |
552 |
|
552 | |||
553 | xi = 0.07; xf = 0.9 #0.8,0.7,0.5 |
|
553 | xi = 0.07; xf = 0.9 #0.8,0.7,0.5 | |
554 | yi = 0.15; yf = 0.8 |
|
554 | yi = 0.15; yf = 0.8 | |
555 |
|
555 | |||
556 | xpos = [xi,xf] |
|
556 | xpos = [xi,xf] | |
557 | ypos = [yi,yf] |
|
557 | ypos = [yi,yf] | |
558 |
|
558 | |||
559 | self.__xpos = xpos |
|
559 | self.__xpos = xpos | |
560 | self.__ypos = ypos |
|
560 | self.__ypos = ypos | |
561 |
|
561 | |||
562 | return xpos,ypos |
|
562 | return xpos,ypos | |
563 |
|
563 | |||
564 | def show(self): |
|
564 | def show(self): | |
565 | show() |
|
565 | show() | |
566 |
|
566 | |||
567 | def refresh(self): |
|
567 | def refresh(self): | |
568 | refresh() |
|
568 | refresh() | |
569 |
|
569 | |||
570 | def setup(self,subplot,xmin,xmax,ymin,ymax,title,xlabel,ylabel): |
|
570 | def setup(self,subplot,xmin,xmax,ymin,ymax,title,xlabel,ylabel): | |
571 | szchar = 1.10 |
|
571 | szchar = 1.10 | |
572 | name = 'linear' |
|
572 | name = 'linear' | |
573 | key = name + '%d'%subplot |
|
573 | key = name + '%d'%subplot | |
574 | xrange = [xmin,xmax] |
|
574 | xrange = [xmin,xmax] | |
575 | yrange = [ymin,ymax] |
|
575 | yrange = [ymin,ymax] | |
576 |
|
576 | |||
577 | xpos,ypos = self.setPosition() |
|
577 | xpos,ypos = self.setPosition() | |
578 | linearObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange) |
|
578 | linearObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange) | |
579 | linearObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) |
|
579 | linearObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) | |
580 | linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcnst', 'bcnstv') |
|
580 | linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcnst', 'bcnstv') | |
581 | self.linearObjDic[key] = linearObj |
|
581 | self.linearObjDic[key] = linearObj | |
582 |
|
582 | |||
583 |
|
583 | |||
584 | def plot(self,subplot,x,y,type='abs'): |
|
584 | def plot(self,subplot,x,y,type='abs'): | |
585 | name = 'linear' |
|
585 | name = 'linear' | |
586 | key = name + '%d'%subplot |
|
586 | key = name + '%d'%subplot | |
587 |
|
587 | |||
588 | linearObj = self.linearObjDic[key] |
|
588 | linearObj = self.linearObjDic[key] | |
589 | #linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcst', 'bcst') |
|
589 | #linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcst', 'bcst') | |
590 |
|
590 | |||
591 | # if linearObj.setXYData() != None: |
|
591 | # if linearObj.setXYData() != None: | |
592 | # clearData(linearObj) |
|
592 | # clearData(linearObj) | |
593 | # else: |
|
593 | # else: | |
594 | # if type.lower() == 'simple': |
|
594 | # if type.lower() == 'simple': | |
595 | # linearObj.setXYData(x,y,'real') |
|
595 | # linearObj.setXYData(x,y,'real') | |
596 | # if type.lower() == 'power': |
|
596 | # if type.lower() == 'power': | |
597 | # linearObj.setXYData(x,abs(y),'real') |
|
597 | # linearObj.setXYData(x,abs(y),'real') | |
598 | # if type.lower() == 'iq': |
|
598 | # if type.lower() == 'iq': | |
599 | # linearObj.setXYData(x,y,'complex') |
|
599 | # linearObj.setXYData(x,y,'complex') | |
600 |
|
600 | |||
601 | if type.lower() == 'simple': |
|
601 | if type.lower() == 'simple': | |
602 | colline = 9 |
|
602 | colline = 9 | |
603 | linearObj.basicLineTimePlot(x, y) |
|
603 | linearObj.basicLineTimePlot(x, y) | |
604 | linearObj.setXYData(x,y,'real') |
|
604 | linearObj.setXYData(x,y,'real') | |
605 |
|
605 | |||
606 | if type.lower() == 'abs': |
|
606 | if type.lower() == 'abs': | |
607 | colline = 9 |
|
607 | colline = 9 | |
608 | linearObj.basicLineTimePlot(x, abs(y), colline) |
|
608 | linearObj.basicLineTimePlot(x, abs(y), colline) | |
609 | linearObj.setXYData(x,abs(y),'real') |
|
609 | linearObj.setXYData(x,abs(y),'real') | |
610 |
|
610 | |||
611 | if type.lower() == 'iq': |
|
611 | if type.lower() == 'iq': | |
612 | colline = 9 |
|
612 | colline = 9 | |
613 | linearObj.basicLineTimePlot(x=x, y=y.real, colline=colline) |
|
613 | linearObj.basicLineTimePlot(x=x, y=y.real, colline=colline) | |
614 | colline = 13 |
|
614 | colline = 13 | |
615 | linearObj.basicLineTimePlot(x=x, y=y.imag, colline=colline) |
|
615 | linearObj.basicLineTimePlot(x=x, y=y.imag, colline=colline) | |
616 | linearObj.setXYData(x,y,'complex') |
|
616 | linearObj.setXYData(x,y,'complex') | |
617 |
|
617 | |||
618 | # linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcst', 'bcst') |
|
618 | # linearObj.plotBox(linearObj.xrange[0], linearObj.xrange[1], linearObj.yrange[0], linearObj.yrange[1], 'bcst', 'bcst') | |
619 |
|
619 | |||
620 | pass |
|
620 | pass | |
621 |
|
621 | |||
622 |
|
622 | |||
623 | class PcolorPlot: |
|
623 | class PcolorPlot: | |
624 |
|
624 | |||
625 | pcolorObjDic = {} |
|
625 | pcolorObjDic = {} | |
626 | colorbarObjDic = {} |
|
626 | colorbarObjDic = {} | |
627 | pwprofileObjDic = {} |
|
627 | pwprofileObjDic = {} | |
628 | showColorbar = None |
|
628 | showColorbar = None | |
629 | showPowerProfile = None |
|
629 | showPowerProfile = None | |
630 | XAxisAsTime = None |
|
630 | XAxisAsTime = None | |
631 | width = None |
|
631 | width = None | |
632 | height = None |
|
632 | height = None | |
633 | __spcxpos = None |
|
633 | __spcxpos = None | |
634 | __spcypos = None |
|
634 | __spcypos = None | |
635 | __cmapxpos = None |
|
635 | __cmapxpos = None | |
636 | __cmapypos = None |
|
636 | __cmapypos = None | |
637 | __profxpos = None |
|
637 | __profxpos = None | |
638 | __profypos = None |
|
638 | __profypos = None | |
639 | __lastTitle = None |
|
639 | __lastTitle = None | |
640 |
|
640 | |||
641 | def __init__(self,indexFig,nsubplot,winTitle,colormap,showColorbar,showPowerProfile,XAxisAsTime): |
|
641 | def __init__(self,indexFig,nsubplot,winTitle,colormap,showColorbar,showPowerProfile,XAxisAsTime): | |
642 |
|
642 | |||
643 | self.width = 460 |
|
643 | self.width = 460 | |
644 | self.height = 300 |
|
644 | self.height = 300 | |
645 | self.showColorbar = showColorbar |
|
645 | self.showColorbar = showColorbar | |
646 | self.showPowerProfile = showPowerProfile |
|
646 | self.showPowerProfile = showPowerProfile | |
647 | self.XAxisAsTime = XAxisAsTime |
|
647 | self.XAxisAsTime = XAxisAsTime | |
648 |
|
648 | |||
649 | ncol = int(numpy.sqrt(nsubplot)+0.9) |
|
649 | ncol = int(numpy.sqrt(nsubplot)+0.9) | |
650 | nrow = int(nsubplot*1./ncol + 0.9) |
|
650 | nrow = int(nsubplot*1./ncol + 0.9) | |
651 |
|
651 | |||
652 | self.ncol = ncol |
|
652 | self.ncol = ncol | |
653 | self.nrow = nrow |
|
653 | self.nrow = nrow | |
654 | self.indexFig = indexFig |
|
654 | self.indexFig = indexFig | |
655 |
|
655 | |||
656 | initMatplotlib(indexFig,ncol,nrow,winTitle,self.width,self.height) |
|
656 | initMatplotlib(indexFig,ncol,nrow,winTitle,self.width,self.height) | |
657 | setColormap(colormap) |
|
657 | setColormap(colormap) | |
658 |
|
658 | |||
659 | def setFigure(self,indexFig): |
|
659 | def setFigure(self,indexFig): | |
660 | setFigure(indexFig) |
|
660 | setFigure(indexFig) | |
661 |
|
661 | |||
662 | def setSpectraPos(self): #modificar valores de acuerdo al colorbar y pwprofile |
|
662 | def setSpectraPos(self): #modificar valores de acuerdo al colorbar y pwprofile | |
663 | if self.showPowerProfile: xi = 0.09; xf = 0.6 #0.075 |
|
663 | if self.showPowerProfile: xi = 0.09; xf = 0.6 #0.075 | |
664 | else: xi = 0.15; xf = 0.8 #0.8,0.7,0.5 |
|
664 | else: xi = 0.15; xf = 0.8 #0.8,0.7,0.5 | |
665 | yi = 0.15; yf = 0.80 |
|
665 | yi = 0.15; yf = 0.80 | |
666 |
|
666 | |||
667 | xpos = [xi,xf] |
|
667 | xpos = [xi,xf] | |
668 | ypos = [yi,yf] |
|
668 | ypos = [yi,yf] | |
669 |
|
669 | |||
670 | self.__spcxpos = xpos |
|
670 | self.__spcxpos = xpos | |
671 | self.__spcypos = ypos |
|
671 | self.__spcypos = ypos | |
672 |
|
672 | |||
673 | return xpos,ypos |
|
673 | return xpos,ypos | |
674 |
|
674 | |||
675 | def setColorbarScreenPos(self): |
|
675 | def setColorbarScreenPos(self): | |
676 |
|
676 | |||
677 | xi = self.__spcxpos[1] + 0.03; xf = xi + 0.03 |
|
677 | xi = self.__spcxpos[1] + 0.03; xf = xi + 0.03 | |
678 | yi = self.__spcypos[0]; yf = self.__spcypos[1] |
|
678 | yi = self.__spcypos[0]; yf = self.__spcypos[1] | |
679 |
|
679 | |||
680 | xpos = [xi,xf] |
|
680 | xpos = [xi,xf] | |
681 | ypos = [yi,yf] |
|
681 | ypos = [yi,yf] | |
682 |
|
682 | |||
683 | self.__cmapxpos = xpos |
|
683 | self.__cmapxpos = xpos | |
684 | self.__cmapypos = ypos |
|
684 | self.__cmapypos = ypos | |
685 |
|
685 | |||
686 | return xpos,ypos |
|
686 | return xpos,ypos | |
687 |
|
687 | |||
688 | def setPowerprofileScreenPos(self): |
|
688 | def setPowerprofileScreenPos(self): | |
689 |
|
689 | |||
690 | xi = self.__cmapxpos[1] + 0.07; xf = xi + 0.25 |
|
690 | xi = self.__cmapxpos[1] + 0.07; xf = xi + 0.25 | |
691 | yi = self.__spcypos[0]; yf = self.__spcypos[1] |
|
691 | yi = self.__spcypos[0]; yf = self.__spcypos[1] | |
692 |
|
692 | |||
693 | xpos = [xi,xf] |
|
693 | xpos = [xi,xf] | |
694 | ypos = [yi,yf] |
|
694 | ypos = [yi,yf] | |
695 |
|
695 | |||
696 | self.__profxpos = [xi,xf] |
|
696 | self.__profxpos = [xi,xf] | |
697 | self.__profypos = [yi,yf] |
|
697 | self.__profypos = [yi,yf] | |
698 |
|
698 | |||
699 | return xpos,ypos |
|
699 | return xpos,ypos | |
700 |
|
700 | |||
701 | def createObjects(self,subplot,xmin,xmax,ymin,ymax,zmin,zmax,title,xlabel,ylabel): |
|
701 | def createObjects(self,subplot,xmin,xmax,ymin,ymax,zmin,zmax,title,xlabel,ylabel): | |
702 |
|
702 | |||
703 | ''' |
|
703 | ''' | |
704 | Crea los objetos necesarios para un subplot |
|
704 | Crea los objetos necesarios para un subplot | |
705 | ''' |
|
705 | ''' | |
706 |
|
706 | |||
707 | # Config Spectra plot |
|
707 | # Config Spectra plot | |
708 |
|
708 | |||
709 | szchar = 0.7 |
|
709 | szchar = 0.7 | |
710 | name = 'spc' |
|
710 | name = 'spc' | |
711 | key = name + '%d'%subplot |
|
711 | key = name + '%d'%subplot | |
712 | xrange = [xmin,xmax] |
|
712 | xrange = [xmin,xmax] | |
713 | yrange = [ymin,ymax] |
|
713 | yrange = [ymin,ymax] | |
714 | zrange = [zmin,zmax] |
|
714 | zrange = [zmin,zmax] | |
715 |
|
715 | |||
716 | xpos,ypos = self.setSpectraPos() |
|
716 | xpos,ypos = self.setSpectraPos() | |
717 | pcolorObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange) |
|
717 | pcolorObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange) | |
718 | #pcolorObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) |
|
718 | #pcolorObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) | |
719 | self.pcolorObjDic[key] = pcolorObj |
|
719 | self.pcolorObjDic[key] = pcolorObj | |
720 |
|
720 | |||
721 | # Config Colorbar |
|
721 | # Config Colorbar | |
722 | if self.showColorbar: |
|
722 | if self.showColorbar: | |
723 | szchar = 0.65 |
|
723 | szchar = 0.65 | |
724 | name = 'colorbar' |
|
724 | name = 'colorbar' | |
725 | key = name + '%d'%subplot |
|
725 | key = name + '%d'%subplot | |
726 |
|
726 | |||
727 | xpos,ypos = self.setColorbarScreenPos() |
|
727 | xpos,ypos = self.setColorbarScreenPos() | |
728 | xrange = [0.,1.] |
|
728 | xrange = [0.,1.] | |
729 | yrange = [zmin,zmax] |
|
729 | yrange = [zmin,zmax] | |
730 | cmapObj = BaseGraph(name,subplot,xpos,ypos,'','','dB',szchar,xrange,yrange) |
|
730 | cmapObj = BaseGraph(name,subplot,xpos,ypos,'','','dB',szchar,xrange,yrange) | |
731 | self.colorbarObjDic[key] = cmapObj |
|
731 | self.colorbarObjDic[key] = cmapObj | |
732 |
|
732 | |||
733 | # Config Power profile |
|
733 | # Config Power profile | |
734 | if self.showPowerProfile: |
|
734 | if self.showPowerProfile: | |
735 | szchar = 0.55 |
|
735 | szchar = 0.55 | |
736 | name = 'pwprofile' |
|
736 | name = 'pwprofile' | |
737 | key = name + '%d'%subplot |
|
737 | key = name + '%d'%subplot | |
738 |
|
738 | |||
739 | xpos,ypos = self.setPowerprofileScreenPos() |
|
739 | xpos,ypos = self.setPowerprofileScreenPos() | |
740 | xrange = [zmin,zmax] |
|
740 | xrange = [zmin,zmax] | |
741 | yrange = [ymin,ymax] |
|
741 | yrange = [ymin,ymax] | |
742 | powObj = BaseGraph(name,subplot,xpos,ypos,'dB','','Power Profile',szchar,xrange,yrange) |
|
742 | powObj = BaseGraph(name,subplot,xpos,ypos,'dB','','Power Profile',szchar,xrange,yrange) | |
743 | #powObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) |
|
743 | #powObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) | |
744 | self.pwprofileObjDic[key] = powObj |
|
744 | self.pwprofileObjDic[key] = powObj | |
745 |
|
745 | |||
746 | def setNewPage(self, pltitle='No title'): |
|
746 | def setNewPage(self, pltitle='No title'): | |
747 | szchar = 0.7 |
|
747 | szchar = 0.7 | |
748 | setNewPage() |
|
748 | setNewPage() | |
749 | setPlTitle(pltitle,'black', szchar=szchar) |
|
749 | setPlTitle(pltitle,'black', szchar=szchar) | |
750 | setSubpages(self.ncol, self.nrow) |
|
750 | setSubpages(self.ncol, self.nrow) | |
751 |
|
751 | |||
752 | def closePage(self): |
|
752 | def closePage(self): | |
753 | closePage() |
|
753 | closePage() | |
754 |
|
754 | |||
755 | def show(self): |
|
755 | def show(self): | |
756 | show() |
|
756 | show() | |
757 |
|
757 | |||
758 | def iniPlot(self,subplot): |
|
758 | def iniPlot(self,subplot): | |
759 | ''' |
|
759 | ''' | |
760 | Inicializa los subplots con su frame, titulo, etc |
|
760 | Inicializa los subplots con su frame, titulo, etc | |
761 | ''' |
|
761 | ''' | |
762 |
|
762 | |||
763 | # Config Spectra plot |
|
763 | # Config Spectra plot | |
764 | name = 'spc' |
|
764 | name = 'spc' | |
765 | key = name + '%d'%subplot |
|
765 | key = name + '%d'%subplot | |
766 |
|
766 | |||
767 | pcolorObj = self.pcolorObjDic[key] |
|
767 | pcolorObj = self.pcolorObjDic[key] | |
768 | pcolorObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) |
|
768 | pcolorObj.makeAxes(self.indexFig,self.nrow,self.ncol,subplot) | |
769 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcnst', 'bcnstv') |
|
769 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcnst', 'bcnstv') | |
770 |
|
770 | |||
771 | # Config Colorbar |
|
771 | # Config Colorbar | |
772 | if self.showColorbar: |
|
772 | if self.showColorbar: | |
773 | name = 'colorbar' |
|
773 | name = 'colorbar' | |
774 | key = name + '%d'%subplot |
|
774 | key = name + '%d'%subplot | |
775 |
|
775 | |||
776 | cmapObj = self.colorbarObjDic[key] |
|
776 | cmapObj = self.colorbarObjDic[key] | |
777 | cmapObj.setParentAxesId(pcolorObj) |
|
777 | cmapObj.setParentAxesId(pcolorObj) | |
778 | # cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') |
|
778 | # cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') | |
779 | cmapObj.colorbarPlot(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1]) |
|
779 | cmapObj.colorbarPlot(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1]) | |
780 | # cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') |
|
780 | # cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') | |
781 |
|
781 | |||
782 | # Config Power profile |
|
782 | # Config Power profile | |
783 | if self.showPowerProfile: |
|
783 | if self.showPowerProfile: | |
784 | name = 'pwprofile' |
|
784 | name = 'pwprofile' | |
785 | key = name + '%d'%subplot |
|
785 | key = name + '%d'%subplot | |
786 |
|
786 | |||
787 | powObj = self.pwprofileObjDic[key] |
|
787 | powObj = self.pwprofileObjDic[key] | |
788 | powObj.setLineStyle(2) |
|
788 | powObj.setLineStyle(2) | |
789 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') |
|
789 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') | |
790 | powObj.setLineStyle(1) |
|
790 | powObj.setLineStyle(1) | |
791 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') |
|
791 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') | |
792 |
|
792 | |||
793 | def printTitle(self,pltitle): |
|
793 | def printTitle(self,pltitle): | |
794 | # if self.__lastTitle != None: |
|
794 | # if self.__lastTitle != None: | |
795 | # setPlTitle(self.__lastTitle,'white') |
|
795 | # setPlTitle(self.__lastTitle,'white') | |
796 | # |
|
796 | # | |
797 | # self.__lastTitle = pltitle |
|
797 | # self.__lastTitle = pltitle | |
798 |
|
798 | |||
799 | setPlTitle(pltitle,'black') |
|
799 | setPlTitle(pltitle,'black') | |
800 |
|
800 | |||
801 | # setSubpages(self.ncol,self.nrow) |
|
801 | # setSubpages(self.ncol,self.nrow) | |
802 |
|
802 | |||
803 | def plot(self,subplot,x,y,z,subtitle=''): |
|
803 | def plot(self,subplot,x,y,z,subtitle=''): | |
804 | # Spectra plot |
|
804 | # Spectra plot | |
805 |
|
805 | |||
806 | name = 'spc' |
|
806 | name = 'spc' | |
807 | key = name + '%d'%subplot |
|
807 | key = name + '%d'%subplot | |
808 |
|
808 | |||
809 | # newx = [x[0],x[-1]] |
|
809 | # newx = [x[0],x[-1]] | |
810 | pcolorObj = self.pcolorObjDic[key] |
|
810 | pcolorObj = self.pcolorObjDic[key] | |
811 | # pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcst', 'bcst') |
|
811 | # pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcst', 'bcst') | |
812 |
|
812 | |||
813 | #pcolorObj.delLabels() |
|
813 | #pcolorObj.delLabels() | |
814 | pcolorObj.setLabels(title=subtitle) |
|
814 | pcolorObj.setLabels(title=subtitle) | |
815 |
|
815 | |||
816 | deltax = None; deltay = None |
|
816 | deltax = None; deltay = None | |
817 |
|
817 | |||
818 | pcolorObj.advPcolorPlot(z, |
|
818 | pcolorObj.advPcolorPlot(z, | |
819 | x, |
|
819 | x, | |
820 | y, |
|
820 | y, | |
821 | xmin=pcolorObj.xrange[0], |
|
821 | xmin=pcolorObj.xrange[0], | |
822 | xmax=pcolorObj.xrange[1], |
|
822 | xmax=pcolorObj.xrange[1], | |
823 | ymin=pcolorObj.yrange[0], |
|
823 | ymin=pcolorObj.yrange[0], | |
824 | ymax=pcolorObj.yrange[1], |
|
824 | ymax=pcolorObj.yrange[1], | |
825 | zmin=pcolorObj.zrange[0], |
|
825 | zmin=pcolorObj.zrange[0], | |
826 | zmax=pcolorObj.zrange[1], |
|
826 | zmax=pcolorObj.zrange[1], | |
827 | deltax=deltax, |
|
827 | deltax=deltax, | |
828 | deltay=deltay, |
|
828 | deltay=deltay, | |
829 | getGrid=pcolorObj.getGrid) |
|
829 | getGrid=pcolorObj.getGrid) | |
830 |
|
830 | |||
831 | #Solo se calcula la primera vez que se ingresa a la funcion |
|
831 | #Solo se calcula la primera vez que se ingresa a la funcion | |
832 | pcolorObj.getGrid = False |
|
832 | pcolorObj.getGrid = False | |
833 |
|
833 | |||
834 | #pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcst', 'bcst', nolabels=True) |
|
834 | #pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], 'bcst', 'bcst', nolabels=True) | |
835 |
|
835 | |||
836 | # Power Profile |
|
836 | # Power Profile | |
837 | if self.showPowerProfile: |
|
837 | if self.showPowerProfile: | |
838 | power = numpy.average(z, axis=0) |
|
838 | power = numpy.average(z, axis=0) | |
839 | name = 'pwprofile' |
|
839 | name = 'pwprofile' | |
840 | key = name + '%d'%subplot |
|
840 | key = name + '%d'%subplot | |
841 | powObj = self.pwprofileObjDic[key] |
|
841 | powObj = self.pwprofileObjDic[key] | |
842 |
|
842 | |||
843 | if powObj.setXYData() != None: |
|
843 | if powObj.setXYData() != None: | |
844 | #clearData(powObj) |
|
844 | #clearData(powObj) | |
845 | powObj.setLineStyle(2) |
|
845 | powObj.setLineStyle(2) | |
846 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') |
|
846 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') | |
847 | powObj.setLineStyle(1) |
|
847 | powObj.setLineStyle(1) | |
848 | else: |
|
848 | else: | |
849 | powObj.setXYData(power,y) |
|
849 | powObj.setXYData(power,y) | |
850 |
|
850 | |||
851 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') |
|
851 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') | |
852 | powObj.basicXYPlot(power,y) |
|
852 | powObj.basicXYPlot(power,y) | |
853 | powObj.setXYData(power,y) |
|
853 | powObj.setXYData(power,y) | |
854 |
|
854 | |||
855 | def savePlot(self,indexFig,filename): |
|
855 | def savePlot(self,indexFig,filename): | |
856 |
|
856 | |||
857 | width = self.width*self.ncol |
|
857 | width = self.width*self.ncol | |
858 | hei = self.height*self.nrow |
|
858 | hei = self.height*self.nrow | |
859 | savePlplot(filename,width,hei) |
|
859 | savePlplot(filename,width,hei) | |
860 |
|
860 | |||
861 | def refresh(self): |
|
861 | def refresh(self): | |
862 | refresh() |
|
862 | refresh() | |
863 |
|
863 | |||
864 |
|
864 | |||
865 | class RtiPlot: |
|
865 | class RtiPlot: | |
866 |
|
866 | |||
867 | pcolorObjDic = {} |
|
867 | pcolorObjDic = {} | |
868 | colorbarObjDic = {} |
|
868 | colorbarObjDic = {} | |
869 | pwprofileObjDic = {} |
|
869 | pwprofileObjDic = {} | |
870 | showColorbar = None |
|
870 | showColorbar = None | |
871 | showPowerProfile = None |
|
871 | showPowerProfile = None | |
872 | XAxisAsTime = None |
|
872 | XAxisAsTime = None | |
873 | widht = None |
|
873 | widht = None | |
874 | height = None |
|
874 | height = None | |
875 | __rtixpos = None |
|
875 | __rtixpos = None | |
876 | __rtiypos = None |
|
876 | __rtiypos = None | |
877 | __cmapxpos = None |
|
877 | __cmapxpos = None | |
878 | __cmapypos = None |
|
878 | __cmapypos = None | |
879 | __profxpos = None |
|
879 | __profxpos = None | |
880 | __profypos = None |
|
880 | __profypos = None | |
881 |
|
881 | |||
882 | def __init__(self,indexFig,nsubplot,winTitle,colormap,showColorbar,showPowerProfile,XAxisAsTime): |
|
882 | def __init__(self,indexFig,nsubplot,winTitle,colormap,showColorbar,showPowerProfile,XAxisAsTime): | |
883 | self.width = 700 |
|
883 | self.width = 700 | |
884 | self.height = 150 |
|
884 | self.height = 150 | |
885 | self.showColorbar = showColorbar |
|
885 | self.showColorbar = showColorbar | |
886 | self.showPowerProfile = showPowerProfile |
|
886 | self.showPowerProfile = showPowerProfile | |
887 | self.XAxisAsTime = XAxisAsTime |
|
887 | self.XAxisAsTime = XAxisAsTime | |
888 |
|
888 | |||
889 | ncol = 1 |
|
889 | ncol = 1 | |
890 | nrow = nsubplot |
|
890 | nrow = nsubplot | |
891 | initMatplotlib(indexFig,ncol,nrow,winTitle,self.width,self.height) |
|
891 | initMatplotlib(indexFig,ncol,nrow,winTitle,self.width,self.height) | |
892 | setColormap(colormap) |
|
892 | setColormap(colormap) | |
893 | self.ncol = ncol |
|
893 | self.ncol = ncol | |
894 | self.nrow = nrow |
|
894 | self.nrow = nrow | |
895 |
|
895 | |||
896 | def setFigure(self,indexFig): |
|
896 | def setFigure(self,indexFig): | |
897 | setFigure(indexFig) |
|
897 | setFigure(indexFig) | |
898 |
|
898 | |||
899 | def setRtiScreenPos(self): |
|
899 | def setRtiScreenPos(self): | |
900 |
|
900 | |||
901 | if self.showPowerProfile: xi = 0.07; xf = 0.65 |
|
901 | if self.showPowerProfile: xi = 0.07; xf = 0.65 | |
902 | else: xi = 0.07; xf = 0.9 |
|
902 | else: xi = 0.07; xf = 0.9 | |
903 | yi = 0.15; yf = 0.80 |
|
903 | yi = 0.15; yf = 0.80 | |
904 |
|
904 | |||
905 | xpos = [xi,xf] |
|
905 | xpos = [xi,xf] | |
906 | ypos = [yi,yf] |
|
906 | ypos = [yi,yf] | |
907 |
|
907 | |||
908 | self.__rtixpos = xpos |
|
908 | self.__rtixpos = xpos | |
909 | self.__rtiypos = ypos |
|
909 | self.__rtiypos = ypos | |
910 |
|
910 | |||
911 | return xpos,ypos |
|
911 | return xpos,ypos | |
912 |
|
912 | |||
913 | def setColorbarScreenPos(self): |
|
913 | def setColorbarScreenPos(self): | |
914 |
|
914 | |||
915 | xi = self.__rtixpos[1] + 0.03; xf = xi + 0.03 |
|
915 | xi = self.__rtixpos[1] + 0.03; xf = xi + 0.03 | |
916 |
|
916 | |||
917 | yi = self.__rtiypos[0]; yf = self.__rtiypos[1] |
|
917 | yi = self.__rtiypos[0]; yf = self.__rtiypos[1] | |
918 |
|
918 | |||
919 | xpos = [xi,xf] |
|
919 | xpos = [xi,xf] | |
920 | ypos = [yi,yf] |
|
920 | ypos = [yi,yf] | |
921 |
|
921 | |||
922 | self.__cmapxpos = xpos |
|
922 | self.__cmapxpos = xpos | |
923 | self.__cmapypos = ypos |
|
923 | self.__cmapypos = ypos | |
924 |
|
924 | |||
925 | return xpos,ypos |
|
925 | return xpos,ypos | |
926 |
|
926 | |||
927 | def setPowerprofileScreenPos(self): |
|
927 | def setPowerprofileScreenPos(self): | |
928 |
|
928 | |||
929 | xi = self.__cmapxpos[1] + 0.05; xf = xi + 0.20 |
|
929 | xi = self.__cmapxpos[1] + 0.05; xf = xi + 0.20 | |
930 |
|
930 | |||
931 | yi = self.__rtiypos[0]; yf = self.__rtiypos[1] |
|
931 | yi = self.__rtiypos[0]; yf = self.__rtiypos[1] | |
932 |
|
932 | |||
933 | xpos = [xi,xf] |
|
933 | xpos = [xi,xf] | |
934 | ypos = [yi,yf] |
|
934 | ypos = [yi,yf] | |
935 |
|
935 | |||
936 | self.__profxpos = [xi,xf] |
|
936 | self.__profxpos = [xi,xf] | |
937 | self.__profypos = [yi,yf] |
|
937 | self.__profypos = [yi,yf] | |
938 |
|
938 | |||
939 | return xpos,ypos |
|
939 | return xpos,ypos | |
940 |
|
940 | |||
941 | def setup(self,subplot,xmin,xmax,ymin,ymax,zmin,zmax,title,xlabel,ylabel,timedata,timezone='lt',npoints=100): |
|
941 | def setup(self,subplot,xmin,xmax,ymin,ymax,zmin,zmax,title,xlabel,ylabel,timedata,timezone='lt',npoints=100): | |
942 | # Config Rti plot |
|
942 | # Config Rti plot | |
943 | szchar = 1.10 |
|
943 | szchar = 1.10 | |
944 | name = 'rti' |
|
944 | name = 'rti' | |
945 | key = name + '%d'%subplot |
|
945 | key = name + '%d'%subplot | |
946 |
|
946 | |||
947 | # xmin, xmax --> minHour, max Hour : valores que definen el ejex x=[horaInicio,horaFinal] |
|
947 | # xmin, xmax --> minHour, max Hour : valores que definen el ejex x=[horaInicio,horaFinal] | |
948 | thisDateTime = datetime.datetime.fromtimestamp(timedata) |
|
948 | thisDateTime = datetime.datetime.fromtimestamp(timedata) | |
949 | startDateTime = datetime.datetime(thisDateTime.year,thisDateTime.month,thisDateTime.day,xmin,0,0) |
|
949 | startDateTime = datetime.datetime(thisDateTime.year,thisDateTime.month,thisDateTime.day,xmin,0,0) | |
950 | endDateTime = datetime.datetime(thisDateTime.year,thisDateTime.month,thisDateTime.day,xmax,59,59) |
|
950 | endDateTime = datetime.datetime(thisDateTime.year,thisDateTime.month,thisDateTime.day,xmax,59,59) | |
951 | deltaTime = 0 |
|
951 | deltaTime = 0 | |
952 | if timezone == 'lt': |
|
952 | if timezone == 'lt': | |
953 | deltaTime = time.timezone |
|
953 | deltaTime = time.timezone | |
954 | startTimeInSecs = time.mktime(startDateTime.timetuple()) - deltaTime |
|
954 | startTimeInSecs = time.mktime(startDateTime.timetuple()) - deltaTime | |
955 | endTimeInSecs = time.mktime(endDateTime.timetuple()) - deltaTime |
|
955 | endTimeInSecs = time.mktime(endDateTime.timetuple()) - deltaTime | |
956 |
|
956 | |||
957 | xrange = [startTimeInSecs,endTimeInSecs] |
|
957 | xrange = [startTimeInSecs,endTimeInSecs] | |
958 | totalTimeInXrange = endTimeInSecs - startTimeInSecs + 1. |
|
958 | totalTimeInXrange = endTimeInSecs - startTimeInSecs + 1. | |
959 | deltax = totalTimeInXrange / npoints |
|
959 | deltax = totalTimeInXrange / npoints | |
960 |
|
960 | |||
961 | yrange = [ymin,ymax] |
|
961 | yrange = [ymin,ymax] | |
962 | zrange = [zmin,zmax] |
|
962 | zrange = [zmin,zmax] | |
963 |
|
963 | |||
964 | xpos,ypos = self.setRtiScreenPos() |
|
964 | xpos,ypos = self.setRtiScreenPos() | |
965 | pcolorObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange,deltax) |
|
965 | pcolorObj = BaseGraph(name,subplot,xpos,ypos,xlabel,ylabel,title,szchar,xrange,yrange,zrange,deltax) | |
966 | if self.XAxisAsTime: |
|
966 | if self.XAxisAsTime: | |
967 | pcolorObj.setXAxisAsTime(self.XAxisAsTime) |
|
967 | pcolorObj.setXAxisAsTime(self.XAxisAsTime) | |
968 | xopt = 'bcnstd' |
|
968 | xopt = 'bcnstd' | |
969 | yopt = 'bcnstv' |
|
969 | yopt = 'bcnstv' | |
970 | else: |
|
970 | else: | |
971 | xopt = 'bcnst' |
|
971 | xopt = 'bcnst' | |
972 | yopt = 'bcnstv' |
|
972 | yopt = 'bcnstv' | |
973 |
|
973 | |||
974 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], xopt, yopt) |
|
974 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], xopt, yopt) | |
975 | self.pcolorObjDic[key] = pcolorObj |
|
975 | self.pcolorObjDic[key] = pcolorObj | |
976 |
|
976 | |||
977 |
|
977 | |||
978 | # Config Colorbar |
|
978 | # Config Colorbar | |
979 | if self.showColorbar: |
|
979 | if self.showColorbar: | |
980 | szchar = 0.9 |
|
980 | szchar = 0.9 | |
981 | name = 'colorbar' |
|
981 | name = 'colorbar' | |
982 | key = name + '%d'%subplot |
|
982 | key = name + '%d'%subplot | |
983 |
|
983 | |||
984 | xpos,ypos = self.setColorbarScreenPos() |
|
984 | xpos,ypos = self.setColorbarScreenPos() | |
985 | xrange = [0.,1.] |
|
985 | xrange = [0.,1.] | |
986 | yrange = [zmin,zmax] |
|
986 | yrange = [zmin,zmax] | |
987 | cmapObj = BaseGraph(name,subplot,xpos,ypos,'','','dB',szchar,xrange,yrange) |
|
987 | cmapObj = BaseGraph(name,subplot,xpos,ypos,'','','dB',szchar,xrange,yrange) | |
988 | cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcm') |
|
988 | cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcm') | |
989 | cmapObj.colorbarPlot(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1]) |
|
989 | cmapObj.colorbarPlot(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1]) | |
990 | cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') |
|
990 | cmapObj.plotBox(cmapObj.xrange[0], cmapObj.xrange[1], cmapObj.yrange[0], cmapObj.yrange[1], 'bc', 'bcmtsv') | |
991 | self.colorbarObjDic[key] = cmapObj |
|
991 | self.colorbarObjDic[key] = cmapObj | |
992 |
|
992 | |||
993 |
|
993 | |||
994 | # Config Power profile |
|
994 | # Config Power profile | |
995 | if self.showPowerProfile: |
|
995 | if self.showPowerProfile: | |
996 | szchar = 0.8 |
|
996 | szchar = 0.8 | |
997 | name = 'pwprofile' |
|
997 | name = 'pwprofile' | |
998 | key = name + '%d'%subplot |
|
998 | key = name + '%d'%subplot | |
999 |
|
999 | |||
1000 | xpos,ypos = self.setPowerprofileScreenPos() |
|
1000 | xpos,ypos = self.setPowerprofileScreenPos() | |
1001 | xrange = [zmin,zmax] |
|
1001 | xrange = [zmin,zmax] | |
1002 | yrange = [ymin,ymax] |
|
1002 | yrange = [ymin,ymax] | |
1003 | powObj = BaseGraph(name,subplot,xpos,ypos,'dB','','Power Profile',szchar,xrange,yrange) |
|
1003 | powObj = BaseGraph(name,subplot,xpos,ypos,'dB','','Power Profile',szchar,xrange,yrange) | |
1004 | powObj.setLineStyle(2) |
|
1004 | powObj.setLineStyle(2) | |
1005 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') |
|
1005 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') | |
1006 | powObj.setLineStyle(1) |
|
1006 | powObj.setLineStyle(1) | |
1007 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') |
|
1007 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') | |
1008 | self.pwprofileObjDic[key] = powObj |
|
1008 | self.pwprofileObjDic[key] = powObj | |
1009 |
|
1009 | |||
1010 |
|
1010 | |||
1011 | def plot(self,subplot,x,y,z): |
|
1011 | def plot(self,subplot,x,y,z): | |
1012 | # RTI plot |
|
1012 | # RTI plot | |
1013 | name = 'rti' |
|
1013 | name = 'rti' | |
1014 | key = name + '%d'%subplot |
|
1014 | key = name + '%d'%subplot | |
1015 |
|
1015 | |||
1016 | data = numpy.reshape(z, (1,-1)) |
|
1016 | data = numpy.reshape(z, (1,-1)) | |
1017 | data = numpy.abs(data) |
|
1017 | data = numpy.abs(data) | |
1018 | data = 10*numpy.log10(data) |
|
1018 | data = 10*numpy.log10(data) | |
1019 | newx = [x,x+1] |
|
1019 | newx = [x,x+1] | |
1020 |
|
1020 | |||
1021 | pcolorObj = self.pcolorObjDic[key] |
|
1021 | pcolorObj = self.pcolorObjDic[key] | |
1022 |
|
1022 | |||
1023 | if pcolorObj.xaxisIsTime: |
|
1023 | if pcolorObj.xaxisIsTime: | |
1024 | xopt = 'bcstd' |
|
1024 | xopt = 'bcstd' | |
1025 | yopt = 'bcst' |
|
1025 | yopt = 'bcst' | |
1026 | else: |
|
1026 | else: | |
1027 | xopt = 'bcst' |
|
1027 | xopt = 'bcst' | |
1028 | yopt = 'bcst' |
|
1028 | yopt = 'bcst' | |
1029 |
|
1029 | |||
1030 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], xopt, yopt) |
|
1030 | pcolorObj.plotBox(pcolorObj.xrange[0], pcolorObj.xrange[1], pcolorObj.yrange[0], pcolorObj.yrange[1], xopt, yopt) | |
1031 |
|
1031 | |||
1032 | deltax = pcolorObj.deltax |
|
1032 | deltax = pcolorObj.deltax | |
1033 | deltay = None |
|
1033 | deltay = None | |
1034 |
|
1034 | |||
1035 | if pcolorObj.xmin == None and pcolorObj.xmax == None: |
|
1035 | if pcolorObj.xmin == None and pcolorObj.xmax == None: | |
1036 | pcolorObj.xmin = x |
|
1036 | pcolorObj.xmin = x | |
1037 | pcolorObj.xmax = x |
|
1037 | pcolorObj.xmax = x | |
1038 |
|
1038 | |||
1039 | if x >= pcolorObj.xmax: |
|
1039 | if x >= pcolorObj.xmax: | |
1040 | xmin = x |
|
1040 | xmin = x | |
1041 | xmax = x + deltax |
|
1041 | xmax = x + deltax | |
1042 | x = [x] |
|
1042 | x = [x] | |
1043 | pcolorObj.advPcolorPlot(data, |
|
1043 | pcolorObj.advPcolorPlot(data, | |
1044 | x, |
|
1044 | x, | |
1045 | y, |
|
1045 | y, | |
1046 | xmin=xmin, |
|
1046 | xmin=xmin, | |
1047 | xmax=xmax, |
|
1047 | xmax=xmax, | |
1048 | ymin=pcolorObj.yrange[0], |
|
1048 | ymin=pcolorObj.yrange[0], | |
1049 | ymax=pcolorObj.yrange[1], |
|
1049 | ymax=pcolorObj.yrange[1], | |
1050 | zmin=pcolorObj.zrange[0], |
|
1050 | zmin=pcolorObj.zrange[0], | |
1051 | zmax=pcolorObj.zrange[1], |
|
1051 | zmax=pcolorObj.zrange[1], | |
1052 | deltax=deltax, |
|
1052 | deltax=deltax, | |
1053 | deltay=deltay, |
|
1053 | deltay=deltay, | |
1054 | getGrid=pcolorObj.getGrid) |
|
1054 | getGrid=pcolorObj.getGrid) | |
1055 |
|
1055 | |||
1056 | pcolorObj.xmin = xmin |
|
1056 | pcolorObj.xmin = xmin | |
1057 | pcolorObj.xmax = xmax |
|
1057 | pcolorObj.xmax = xmax | |
1058 |
|
1058 | |||
1059 |
|
1059 | |||
1060 | # Power Profile |
|
1060 | # Power Profile | |
1061 | if self.showPowerProfile: |
|
1061 | if self.showPowerProfile: | |
1062 | data = numpy.reshape(data,(numpy.size(data))) |
|
1062 | data = numpy.reshape(data,(numpy.size(data))) | |
1063 | name = 'pwprofile' |
|
1063 | name = 'pwprofile' | |
1064 | key = name + '%d'%subplot |
|
1064 | key = name + '%d'%subplot | |
1065 | powObj = self.pwprofileObjDic[key] |
|
1065 | powObj = self.pwprofileObjDic[key] | |
1066 |
|
1066 | |||
1067 | if powObj.setXYData() != None: |
|
1067 | if powObj.setXYData() != None: | |
1068 | clearData(powObj) |
|
1068 | clearData(powObj) | |
1069 | powObj.setLineStyle(2) |
|
1069 | powObj.setLineStyle(2) | |
1070 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') |
|
1070 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bcntg', 'bc') | |
1071 | powObj.setLineStyle(1) |
|
1071 | powObj.setLineStyle(1) | |
1072 | else: |
|
1072 | else: | |
1073 | powObj.setXYData(data,y) |
|
1073 | powObj.setXYData(data,y) | |
1074 |
|
1074 | |||
1075 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') |
|
1075 | powObj.plotBox(powObj.xrange[0], powObj.xrange[1], powObj.yrange[0], powObj.yrange[1], 'bc', 'bc') | |
1076 | powObj.basicXYPlot(data,y) |
|
1076 | powObj.basicXYPlot(data,y) | |
1077 | powObj.setXYData(data,y) |
|
1077 | powObj.setXYData(data,y) | |
1078 |
|
1078 | |||
1079 | def savePlot(self,indexFig,filename): |
|
1079 | def savePlot(self,indexFig,filename): | |
1080 |
|
1080 | |||
1081 | width = self.width*self.ncol |
|
1081 | width = self.width*self.ncol | |
1082 | hei = self.height*self.nrow |
|
1082 | hei = self.height*self.nrow | |
1083 | savePlplot(filename,width,hei) |
|
1083 | savePlplot(filename,width,hei) | |
1084 |
|
1084 | |||
1085 | def refresh(self): |
|
1085 | def refresh(self): | |
1086 | refresh() |
|
1086 | refresh() | |
1087 |
|
1087 | |||
1088 |
|
1088 | |||
1089 | if __name__ == '__main__': |
|
1089 | if __name__ == '__main__': | |
1090 |
|
1090 | |||
1091 | """ |
|
1091 | """ | |
1092 | Ejemplo1 |
|
1092 | Ejemplo1 | |
1093 | """ |
|
1093 | """ | |
1094 | #Setting the signal |
|
1094 | #Setting the signal | |
1095 | fs = 8000 |
|
1095 | fs = 8000 | |
1096 | f0 = 200 |
|
1096 | f0 = 200 | |
1097 | f1 = 400 |
|
1097 | f1 = 400 | |
1098 | T = 1./fs |
|
1098 | T = 1./fs | |
1099 | x = numpy.arange(160) |
|
1099 | x = numpy.arange(160) | |
1100 | y1 = numpy.sin(2*numpy.pi*f0*x*T) |
|
1100 | y1 = numpy.sin(2*numpy.pi*f0*x*T) | |
1101 | y2 = numpy.sin(2*numpy.pi*f1*x*T) |
|
1101 | y2 = numpy.sin(2*numpy.pi*f1*x*T) | |
1102 | signalList = [y1,y2] |
|
1102 | signalList = [y1,y2] | |
1103 |
|
1103 | |||
1104 | xmin = numpy.min(x) |
|
1104 | xmin = numpy.min(x) | |
1105 | xmax = numpy.max(x) |
|
1105 | xmax = numpy.max(x) | |
1106 | ymin = numpy.min(y1) |
|
1106 | ymin = numpy.min(y1) | |
1107 | ymax = numpy.max(y1) |
|
1107 | ymax = numpy.max(y1) | |
1108 |
|
1108 | |||
1109 | # Creating Object |
|
1109 | # Creating Object | |
1110 | indexPlot = 1 |
|
1110 | indexPlot = 1 | |
1111 | nsubplot = 2 |
|
1111 | nsubplot = 2 | |
1112 | winTitle = "mi grafico v1" |
|
1112 | winTitle = "mi grafico v1" | |
1113 |
|
1113 | |||
1114 | subplotTitle = "subplot - No." |
|
1114 | subplotTitle = "subplot - No." | |
1115 | xlabel = "" |
|
1115 | xlabel = "" | |
1116 | ylabel = "" |
|
1116 | ylabel = "" | |
1117 |
|
1117 | |||
1118 | linearObj = LinearPlot(indexPlot,nsubplot,winTitle) |
|
1118 | linearObj = LinearPlot(indexPlot,nsubplot,winTitle) | |
1119 |
|
1119 | |||
1120 | #Config SubPlots |
|
1120 | #Config SubPlots | |
1121 | for subplot in range(nsubplot): |
|
1121 | for subplot in range(nsubplot): | |
1122 | indexplot = subplot + 1 |
|
1122 | indexplot = subplot + 1 | |
1123 | title = subplotTitle + '%d'%indexplot |
|
1123 | title = subplotTitle + '%d'%indexplot | |
1124 | linearObj.setup(indexplot, xmin, xmax, ymin, ymax, title, xlabel, ylabel) |
|
1124 | linearObj.setup(indexplot, xmin, xmax, ymin, ymax, title, xlabel, ylabel) | |
1125 |
|
1125 | |||
1126 | #Plotting |
|
1126 | #Plotting | |
1127 | type = "simple" |
|
1127 | type = "simple" | |
1128 | for subplot in range(nsubplot): |
|
1128 | for subplot in range(nsubplot): | |
1129 | indexplot = subplot + 1 |
|
1129 | indexplot = subplot + 1 | |
1130 | y = signalList[subplot] |
|
1130 | y = signalList[subplot] | |
1131 | linearObj.plot(indexplot, x, y, type) |
|
1131 | linearObj.plot(indexplot, x, y, type) | |
1132 |
|
1132 | |||
1133 | linearObj.refresh() |
|
1133 | linearObj.refresh() | |
1134 | linearObj.show() |
|
1134 | # linearObj.show() | |
1135 |
|
1135 | |||
1136 |
|
1136 | |||
1137 |
|
|
1137 | """ | |
1138 |
|
|
1138 | Ejemplo2 | |
1139 |
|
|
1139 | """ | |
1140 | # |
|
1140 | ||
1141 |
|
|
1141 | # make these smaller to increase the resolution | |
1142 |
|
|
1142 | dx, dy = 0.05, 0.05 | |
1143 |
|
|
1143 | x = numpy.arange(-3.0, 3.0001, dx) | |
1144 |
|
|
1144 | y = numpy.arange(-2.0, 2.0001, dy) | |
1145 |
|
|
1145 | # X,Y = numpy.meshgrid(x, y) | |
1146 |
|
|
1146 | X,Y = sn.ndgrid(x, y) | |
1147 |
|
|
1147 | Z = (1- X/2 + X**5 + Y**3)*numpy.exp(-X**2-Y**2) | |
1148 |
|
|
1148 | ||
1149 |
|
|
1149 | # Creating Object | |
1150 |
|
|
1150 | indexPlot = 2 | |
1151 |
|
|
1151 | nsubplot = 1 | |
1152 |
|
|
1152 | winTitle = "mi grafico pcolor" | |
1153 |
|
|
1153 | colormap = "br_green" | |
1154 |
|
|
1154 | showColorbar = True | |
1155 |
|
|
1155 | showPowerProfile = False | |
1156 |
|
|
1156 | XAxisAsTime = False | |
1157 |
|
|
1157 | ||
1158 |
|
|
1158 | subplotTitle = "subplot no. " | |
1159 |
|
|
1159 | xlabel = "" | |
1160 |
|
|
1160 | ylabel = "" | |
1161 |
|
|
1161 | ||
1162 |
|
|
1162 | xmin = -3.0 | |
1163 |
|
|
1163 | xmax = 3.0 | |
1164 |
|
|
1164 | ymin = -2.0 | |
1165 |
|
|
1165 | ymax = 2.0 | |
1166 |
|
|
1166 | zmin = -0.3 | |
1167 |
|
|
1167 | zmax = 1.0 | |
1168 |
|
|
1168 | ||
1169 |
|
|
1169 | isPlotIni = False | |
1170 |
|
|
1170 | isPlotConfig = False | |
1171 |
|
|
1171 | ntimes = 10 | |
1172 |
|
|
1172 | ||
1173 |
|
|
1173 | ||
1174 |
|
|
1174 | for i in range(ntimes): | |
1175 |
|
|
1175 | ||
1176 |
|
|
1176 | # Instancia del objeto | |
1177 |
|
|
1177 | if not(isPlotConfig): | |
1178 |
|
|
1178 | pcolorObj = PcolorPlot(indexPlot, nsubplot, winTitle, colormap, showColorbar, showPowerProfile, XAxisAsTime) | |
1179 |
|
|
1179 | isPlotConfig = True | |
1180 |
|
|
1180 | ||
1181 |
|
|
1181 | # Crea los subplots | |
1182 |
|
|
1182 | if not(isPlotIni): | |
1183 |
|
|
1183 | for index in range(nsubplot): | |
1184 |
|
|
1184 | indexplot = index + 1 | |
1185 |
|
|
1185 | title = subplotTitle + '%d'%indexplot | |
1186 |
|
|
1186 | subplot = index | |
1187 |
|
|
1187 | pcolorObj.createObjects(indexplot,xmin,xmax,ymin,ymax,zmin,zmax,title,xlabel,ylabel) | |
1188 |
|
|
1188 | isPlotIni = True | |
1189 |
|
|
1189 | ||
1190 |
|
|
1190 | # Inicializa el grafico en cada iteracion | |
1191 |
|
|
1191 | pcolorObj.setFigure(indexPlot) | |
1192 |
|
|
1192 | pcolorObj.setNewPage("") | |
1193 |
|
|
1193 | ||
1194 |
|
|
1194 | for index in range(nsubplot): | |
1195 |
|
|
1195 | subplot = index | |
1196 |
|
|
1196 | pcolorObj.iniPlot(subplot+1) | |
1197 |
|
|
1197 | ||
1198 |
|
|
1198 | #plotea los datos | |
1199 |
|
|
1199 | for channel in range(nsubplot): | |
1200 |
|
|
1200 | data = Z+0.1*numpy.random.randn(len(x),len(y)) | |
1201 |
|
|
1201 | pcolorObj.plot(channel+1, x, y, data) | |
1202 |
|
|
1202 | ||
1203 |
|
|
1203 | pcolorObj.refresh() | |
1204 |
|
|
1204 | ||
1205 |
|
|
1205 | # pcolorObj.closePage() #descomentar esta linea para mas iteraciones | |
1206 |
|
|
1206 | ||
1207 |
|
|
1207 | time.sleep(1) | |
1208 |
|
|
1208 | ||
1209 |
|
|
1209 | pcolorObj.show() | |
1210 | # |
|
1210 | ||
1211 |
|
|
1211 | print "end" No newline at end of file |
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