i.spectral.py 6.5 KB

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  1. #!/usr/bin/env python
  2. ############################################################################
  3. #
  4. # MODULE: i.spectral
  5. # AUTHOR(S): Markus Neteler, 18. August 1998
  6. # Converted to Python by Glynn Clements
  7. # PURPOSE: Displays spectral response at user specified locations in
  8. # group or raster images
  9. # COPYRIGHT: (C) 1999-2013 by the GRASS Development Team
  10. #
  11. # This program is free software under the GNU General Public
  12. # License (>=v2). Read the file COPYING that comes with GRASS
  13. # for details.
  14. #
  15. #############################################################################
  16. #
  17. # this script needs gnuplot for pretty rendering
  18. # TODO: use PyPlot like the wxGUI Profiling tool
  19. #
  20. # written by Markus Neteler 18. August 1998
  21. # neteler geog.uni-hannover.de
  22. #
  23. # bugfix: 25. Nov.98/20. Jan. 1999
  24. # 3 March 2006: Added multiple images and group support by Francesco Pirotti - CIRGEO
  25. #
  26. #%Module
  27. #% description: Displays spectral response at user specified locations in group or images.
  28. #% keywords: imagery
  29. #% keywords: querying
  30. #% keywords: raster
  31. #% keywords: multispectral
  32. #%End
  33. #%option G_OPT_I_GROUP
  34. #% required : no
  35. #% guisection: Input
  36. #%end
  37. #%option G_OPT_R_INPUTS
  38. #% key: raster
  39. #% required : no
  40. #% guisection: Input
  41. #%end
  42. #%option G_OPT_M_COORDS
  43. #% multiple: yes
  44. #% required: yes
  45. #% guisection: Input
  46. #%end
  47. #%option G_OPT_F_OUTPUT
  48. #% key: output
  49. #% description: Name for output image
  50. #% guisection: Output
  51. #% required : no
  52. #%end
  53. #%Option
  54. #% key: format
  55. #% type: string
  56. #% description: Graphics format for output file
  57. #% options: png,eps,svg
  58. #% answer: png
  59. #% multiple: no
  60. #% guisection: Output
  61. #%End
  62. #%flag
  63. #% key: c
  64. #% description: Show sampling coordinates instead of numbering in the legend
  65. #%end
  66. #% flag
  67. #% key: g
  68. #% description: Use gnuplot for display
  69. #%end
  70. import os
  71. import atexit
  72. from grass.script import core as grass
  73. def cleanup():
  74. grass.try_rmdir(tmp_dir)
  75. def draw_gnuplot(what, xlabels, output, img_format, coord_legend):
  76. xrange = 0
  77. for i, row in enumerate(what):
  78. outfile = os.path.join(tmp_dir, 'data_%d' % i)
  79. outf = open(outfile, 'w')
  80. xrange = max(xrange, len(row) - 2)
  81. for j, val in enumerate(row[3:]):
  82. outf.write("%d %s\n" % (j + 1, val))
  83. outf.close()
  84. # build gnuplot script
  85. lines = []
  86. if output:
  87. if img_format == 'png':
  88. term_opts = "png truecolor large size 825,550"
  89. elif img_format == 'eps':
  90. term_opts = "postscript eps color solid size 6,4"
  91. elif img_format == 'svg':
  92. term_opts = "svg size 825,550 dynamic solid"
  93. else:
  94. grass.fatal(_("Programmer error (%s)") % img_format)
  95. lines += [
  96. "set term " + term_opts,
  97. "set output '%s'" % output
  98. ]
  99. lines += [
  100. "set xtics (%s)" % xlabels,
  101. "set grid",
  102. "set title 'Spectral signatures'",
  103. "set xrange [0.5 : %d - 0.5]" % xrange,
  104. "set noclabel",
  105. "set xlabel 'Bands'",
  106. "set xtics rotate by -40",
  107. "set ylabel 'DN Value'",
  108. "set style data lines"
  109. ]
  110. cmd = []
  111. for i, row in enumerate(what):
  112. if not coord_legend:
  113. title = 'Pick ' + str(i + 1)
  114. else:
  115. title = str(tuple(row[0:2]))
  116. x_datafile = os.path.join(tmp_dir, 'data_%d' % i)
  117. cmd.append(" '%s' title '%s'" % (x_datafile, title))
  118. cmd = ','.join(cmd)
  119. cmd = ' '.join(['plot', cmd, "with linespoints pt 779"])
  120. lines.append(cmd)
  121. plotfile = os.path.join(tmp_dir, 'spectrum.gnuplot')
  122. plotf = open(plotfile, 'w')
  123. for line in lines:
  124. plotf.write(line + '\n')
  125. plotf.close()
  126. if output:
  127. grass.call(['gnuplot', plotfile])
  128. else:
  129. grass.call(['gnuplot', '-persist', plotfile])
  130. def draw_linegraph(what):
  131. yfiles = []
  132. xfile = os.path.join(tmp_dir, 'data_x')
  133. xf = open(xfile, 'w')
  134. for j, val in enumerate(what[0][3:]):
  135. xf.write("%d\n" % (j + 1))
  136. xf.close()
  137. for i, row in enumerate(what):
  138. yfile = os.path.join(tmp_dir, 'data_y_%d' % i)
  139. yf = open(yfile, 'w')
  140. for j, val in enumerate(row[3:]):
  141. yf.write("%s\n" % val)
  142. yf.close()
  143. yfiles.append(yfile)
  144. sienna = '#%02x%02x%02x' % (160, 82, 45)
  145. coral = '#%02x%02x%02x' % (255, 127, 80)
  146. gp_colors = ['red', 'green', 'blue', 'magenta', 'cyan', sienna, 'orange',
  147. coral]
  148. colors = gp_colors
  149. while len(what) > len(colors):
  150. colors += gp_colors
  151. colors = colors[0:len(what)]
  152. grass.run_command('d.linegraph', x_file=xfile, y_file=yfiles,
  153. y_color=colors, title='Spectral signatures',
  154. x_title='Bands', y_title='DN Value')
  155. def main():
  156. group = options['group']
  157. raster = options['raster']
  158. output = options['output']
  159. coords = options['coordinates']
  160. img_fmt = options['format']
  161. coord_legend = flags['c']
  162. gnuplot = flags['g']
  163. global tmp_dir
  164. tmp_dir = grass.tempdir()
  165. if not group and not raster:
  166. grass.fatal(_("Either group= or raster= is required"))
  167. if group and raster:
  168. grass.fatal(_("group= and raster= are mutually exclusive"))
  169. # check if gnuplot is present
  170. if gnuplot and not grass.find_program('gnuplot'):
  171. grass.fatal(_("gnuplot required, please install first"))
  172. # get data from group listing and set the x-axis labels
  173. if group:
  174. # Parse the group list output
  175. s = grass.read_command('i.group', flags='g', group=group, quiet=True)
  176. rastermaps = s.splitlines()
  177. else:
  178. # get data from list of files and set the x-axis labels
  179. rastermaps = raster.split(',')
  180. xlabels = ["'%s' %d" % (n, i + 1) for i, n in enumerate(rastermaps)]
  181. xlabels = ','.join(xlabels)
  182. # get y-data for gnuplot-data file
  183. what = []
  184. s = grass.read_command('r.what', map=rastermaps, coordinates=coords,
  185. null='0', quiet=True)
  186. if len(s) is 0:
  187. grass.fatal(_('No data returned from query'))
  188. for l in s.splitlines():
  189. f = l.split('|')
  190. for i, v in enumerate(f):
  191. if v in ['', '*']:
  192. f[i] = 0
  193. else:
  194. f[i] = float(v)
  195. what.append(f)
  196. # build data files
  197. if gnuplot:
  198. draw_gnuplot(what, xlabels, output, img_fmt, coord_legend)
  199. else:
  200. draw_linegraph(what)
  201. if __name__ == "__main__":
  202. options, flags = grass.parser()
  203. atexit.register(cleanup)
  204. main()