stds_export.py 13 KB

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  1. """!@package grass.temporal
  2. @brief GRASS Python scripting module (temporal GIS functions)
  3. Temporal GIS export functions to be used in temporal modules
  4. Usage:
  5. @code
  6. import grass.temporal as tgis
  7. input="temp_1950_2012@PERMANENT"
  8. output="/tmp/temp_1950_2012.tar.gz"
  9. compression="gzip"
  10. workdir="/tmp"
  11. where=None
  12. format_="GTiff"
  13. type_="strds"
  14. tgis.export_stds(input, output, compression, workdir, where, format_, type_)
  15. ...
  16. @endcode
  17. (C) 2008-2011 by the GRASS Development Team
  18. This program is free software under the GNU General Public
  19. License (>=v2). Read the file COPYING that comes with GRASS
  20. for details.
  21. @author Soeren Gebbert
  22. """
  23. import shutil
  24. import os
  25. import tarfile
  26. import tempfile
  27. from space_time_datasets import *
  28. from factory import *
  29. from open import *
  30. proj_file_name = "proj.txt"
  31. init_file_name = "init.txt"
  32. metadata_file_name = "metadata.txt"
  33. read_file_name = "readme.txt"
  34. list_file_name = "list.txt"
  35. tmp_tar_file_name = "archive"
  36. # This global variable is for unique vector map export,
  37. # since single vector maps may have several layer
  38. # and therefore several attribute tables
  39. exported_maps = {}
  40. ############################################################################
  41. def _export_raster_maps_as_geotiff(rows, tar, list_file, new_cwd, fs):
  42. for row in rows:
  43. name = row["name"]
  44. start = row["start_time"]
  45. end = row["end_time"]
  46. max_val = row["max"]
  47. min_val = row["min"]
  48. datatype = row["datatype"]
  49. if not end:
  50. end = start
  51. string = "%s%s%s%s%s\n" % (name, fs, start, fs, end)
  52. # Write the filename, the start_time and the end_time
  53. list_file.write(string)
  54. # Export the raster map with r.out.gdal as tif
  55. out_name = name + ".tif"
  56. if datatype == "CELL":
  57. nodata = max_val + 1
  58. if nodata < 256 and min_val >= 0:
  59. gdal_type = "Byte"
  60. elif nodata < 65536 and min_val >= 0:
  61. gdal_type = "UInt16"
  62. elif min_val >= 0:
  63. gdal_type = "UInt32"
  64. else:
  65. gdal_type = "Int32"
  66. ret = core.run_command("r.out.gdal", flags="c", input=name,
  67. output=out_name, nodata=nodata,
  68. type=gdal_type, format="GTiff")
  69. else:
  70. ret = core.run_command("r.out.gdal", flags="c",
  71. input=name, output=out_name, format="GTiff")
  72. if ret != 0:
  73. shutil.rmtree(new_cwd)
  74. tar.close()
  75. core.fatal(_("Unable to export raster map <%s>" % name))
  76. tar.add(out_name)
  77. # Export the color rules
  78. out_name = name + ".color"
  79. ret = core.run_command("r.colors.out", map=name, rules=out_name)
  80. if ret != 0:
  81. shutil.rmtree(new_cwd)
  82. tar.close()
  83. core.fatal(_("Unable to export color rules for raster "
  84. "map <%s> r.out.gdal" % name))
  85. tar.add(out_name)
  86. ############################################################################
  87. def _export_raster_maps(rows, tar, list_file, new_cwd, fs):
  88. for row in rows:
  89. name = row["name"]
  90. start = row["start_time"]
  91. end = row["end_time"]
  92. if not end:
  93. end = start
  94. string = "%s%s%s%s%s\n" % (name, fs, start, fs, end)
  95. # Write the filename, the start_time and the end_time
  96. list_file.write(string)
  97. # Export the raster map with r.pack
  98. ret = core.run_command("r.pack", input=name, flags="c")
  99. if ret != 0:
  100. shutil.rmtree(new_cwd)
  101. tar.close()
  102. core.fatal(_("Unable to export raster map <%s> with r.pack" %
  103. name))
  104. tar.add(name + ".pack")
  105. ############################################################################
  106. def _export_vector_maps_as_gml(rows, tar, list_file, new_cwd, fs):
  107. for row in rows:
  108. name = row["name"]
  109. start = row["start_time"]
  110. end = row["end_time"]
  111. layer = row["layer"]
  112. if not layer:
  113. layer = 1
  114. if not end:
  115. end = start
  116. string = "%s%s%s%s%s\n" % (name, fs, start, fs, end)
  117. # Write the filename, the start_time and the end_time
  118. list_file.write(string)
  119. # Export the vector map with v.out.ogr
  120. ret = core.run_command("v.out.ogr", input=name, dsn=(name + ".xml"),
  121. layer=layer, format="GML")
  122. if ret != 0:
  123. shutil.rmtree(new_cwd)
  124. tar.close()
  125. core.fatal(_("Unable to export vector map <%s> as "
  126. "GML with v.out.ogr" % name))
  127. tar.add(name + ".xml")
  128. tar.add(name + ".xsd")
  129. ############################################################################
  130. def _export_vector_maps(rows, tar, list_file, new_cwd, fs):
  131. for row in rows:
  132. name = row["name"]
  133. start = row["start_time"]
  134. end = row["end_time"]
  135. layer = row["layer"]
  136. # Export unique maps only
  137. if name in exported_maps:
  138. continue
  139. if not layer:
  140. layer = 1
  141. if not end:
  142. end = start
  143. string = "%s:%s%s%s%s%s\n" % (name, layer, fs, start, fs, end)
  144. # Write the filename, the start_time and the end_time
  145. list_file.write(string)
  146. # Export the vector map with v.pack
  147. ret = core.run_command("v.pack", input=name, flags="c")
  148. if ret != 0:
  149. shutil.rmtree(new_cwd)
  150. tar.close()
  151. core.fatal(_("Unable to export vector map <%s> with v.pack" %
  152. name))
  153. tar.add(name + ".pack")
  154. exported_maps[name] = name
  155. ############################################################################
  156. def _export_raster3d_maps(rows, tar, list_file, new_cwd, fs):
  157. for row in rows:
  158. name = row["name"]
  159. start = row["start_time"]
  160. end = row["end_time"]
  161. if not end:
  162. end = start
  163. string = "%s%s%s%s%s\n" % (name, fs, start, fs, end)
  164. # Write the filename, the start_time and the end_time
  165. list_file.write(string)
  166. # Export the raster map with r3.pack
  167. ret = core.run_command("r3.pack", input=name, flags="c")
  168. if ret != 0:
  169. shutil.rmtree(new_cwd)
  170. tar.close()
  171. core.fatal(_("Unable to export raster map <%s> with r3.pack" %
  172. name))
  173. tar.add(name + ".pack")
  174. ############################################################################
  175. def export_stds(input, output, compression, workdir, where, format_="pack",
  176. type_="strds"):
  177. """
  178. !Export space time datasets as tar archive with optional compression
  179. This method should be used to export space time datasets
  180. of type raster and vector as tar archive that can be reimported
  181. with the method import_stds().
  182. @param input The name of the space time dataset to export
  183. @param output The name of the archive file
  184. @param compression The compression of the archive file:
  185. - "no" no compression
  186. - "gzip" GNU zip compression
  187. - "bzip2" Bzip compression
  188. @param workdir The working directory used for extraction and packing
  189. @param where The temporal WHERE SQL statement to select a subset
  190. of maps from the space time dataset
  191. @param format_ The export format:
  192. - "GTiff" Geotiff format, only for raster maps
  193. - "pack" The GRASS raster, 3D raster or vector Pack format,
  194. this is the default setting
  195. - "GML" GML file export format, only for vector maps,
  196. v.out.ogr export option
  197. @param type_ The space time dataset type
  198. - "strds" Space time raster dataset
  199. - "str3ds" Space time 3D raster dataset
  200. - "stvds" Space time vector dataset
  201. """
  202. # Save current working directory path
  203. old_cwd = os.getcwd()
  204. # Create the temporary directory and jump into it
  205. new_cwd = tempfile.mkdtemp(dir=workdir)
  206. os.chdir(new_cwd)
  207. if type_ == "strds":
  208. columns = "name,start_time,end_time,min,max,datatype"
  209. elif type_ == "stvds":
  210. columns = "name,start_time,end_time,layer"
  211. else:
  212. columns = "name,start_time,end_time"
  213. sp = open_old_space_time_dataset(input, type_)
  214. rows = sp.get_registered_maps(columns, where, "start_time", None)
  215. if compression == "gzip":
  216. flag = "w:gz"
  217. elif compression == "bzip2":
  218. flag = "w:bz2"
  219. else:
  220. flag = "w:"
  221. # Open the tar archive to add the files
  222. tar = tarfile.open(tmp_tar_file_name, flag)
  223. list_file = open(list_file_name, "w")
  224. fs = "|"
  225. if rows:
  226. if type_ == "strds":
  227. if format_ == "GTiff":
  228. _export_raster_maps_as_geotiff(
  229. rows, tar, list_file, new_cwd, fs)
  230. else:
  231. _export_raster_maps(rows, tar, list_file, new_cwd, fs)
  232. elif type_ == "stvds":
  233. if format_ == "GML":
  234. _export_vector_maps_as_gml(rows, tar, list_file, new_cwd, fs)
  235. else:
  236. _export_vector_maps(rows, tar, list_file, new_cwd, fs)
  237. elif type_ == "str3ds":
  238. _export_raster3d_maps(rows, tar, list_file, new_cwd, fs)
  239. list_file.close()
  240. # Write projection and metadata
  241. proj = core.read_command("g.proj", flags="j")
  242. proj_file = open(proj_file_name, "w")
  243. proj_file.write(proj)
  244. proj_file.close()
  245. init_file = open(init_file_name, "w")
  246. # Create the init string
  247. string = ""
  248. # This is optional, if not present strds will be assumed for backward
  249. # compatibility
  250. string += "%s=%s\n" % ("stds_type", sp.get_type())
  251. # This is optional, if not present gtiff will be assumed for
  252. # backward compatibility
  253. string += "%s=%s\n" % ("format", format_)
  254. string += "%s=%s\n" % ("temporal_type", sp.get_temporal_type())
  255. string += "%s=%s\n" % ("semantic_type", sp.get_semantic_type())
  256. if sp.is_time_relative():
  257. string += "%s=%s\n" % ("relative_time_unit",
  258. sp.get_relative_time_unit())
  259. string += "%s=%s\n" % ("number_of_maps", sp.metadata.get_number_of_maps())
  260. north, south, east, west, top, bottom = sp.get_spatial_extent_as_tuple()
  261. string += "%s=%s\n" % ("north", north)
  262. string += "%s=%s\n" % ("south", south)
  263. string += "%s=%s\n" % ("east", east)
  264. string += "%s=%s\n" % ("west", west)
  265. init_file.write(string)
  266. init_file.close()
  267. metadata = core.read_command("t.info", type=type_, input=sp.get_id())
  268. metadata_file = open(metadata_file_name, "w")
  269. metadata_file.write(metadata)
  270. metadata_file.close()
  271. read_file = open(read_file_name, "w")
  272. if type_ == "strds":
  273. read_file.write("This space time raster dataset was exported with "
  274. "t.rast.export of GRASS GIS 7\n")
  275. elif type_ == "stvds":
  276. read_file.write("This space time vector dataset was exported with "
  277. "t.vect.export of GRASS GIS 7\n")
  278. elif type_ == "str3ds":
  279. read_file.write("This space time 3D raster dataset was exported "
  280. "with t.rast3d.export of GRASS GIS 7\n")
  281. read_file.write("\n")
  282. read_file.write("Files:\n")
  283. if type_ == "strds":
  284. if format_ == "GTiff":
  285. #123456789012345678901234567890
  286. read_file.write(" *.tif -- GeoTIFF raster files\n")
  287. read_file.write(" *.color -- GRASS GIS raster color rules\n")
  288. elif format_ == "pack":
  289. read_file.write(" *.pack -- GRASS raster files packed with r.pack\n")
  290. elif type_ == "stvds":
  291. #123456789012345678901234567890
  292. if format_ == "GML":
  293. read_file.write(" *.xml -- Vector GML files\n")
  294. else:
  295. read_file.write(" *.pack -- GRASS vector files packed with v.pack\n")
  296. elif type_ == "str3ds":
  297. read_file.write(" *.pack -- GRASS 3D raster files packed with r3.pack\n")
  298. read_file.write("%13s -- Projection information in PROJ.4 format\n" %
  299. (proj_file_name))
  300. read_file.write("%13s -- GRASS GIS space time %s dataset information\n" %
  301. (init_file_name, sp.get_new_map_instance(None).get_type()))
  302. read_file.write("%13s -- Time series file, lists all maps by name "
  303. "with interval\n" % (list_file_name))
  304. read_file.write(" time stamps in ISO-Format. Field separator is |\n")
  305. read_file.write("%13s -- The output of t.info\n" %
  306. (metadata_file_name))
  307. read_file.write("%13s -- This file\n" % (read_file_name))
  308. read_file.close()
  309. # Append the file list
  310. tar.add(list_file_name)
  311. tar.add(proj_file_name)
  312. tar.add(init_file_name)
  313. tar.add(read_file_name)
  314. tar.add(metadata_file_name)
  315. tar.close()
  316. os.chdir(old_cwd)
  317. # Move the archive to its destination
  318. shutil.move(os.path.join(new_cwd, tmp_tar_file_name), output)
  319. # Remove the temporary created working directory
  320. shutil.rmtree(new_cwd)