wms_base.py 24 KB

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  1. """!
  2. @brief Preparation of parameters for drivers, which download it, and managing downloaded data.
  3. List of classes:
  4. - wms_base::WMSBase
  5. - wms_base::GRASSImporter
  6. - wms_base::WMSDriversInfo
  7. (C) 2012-2016 by the GRASS Development Team
  8. This program is free software under the GNU General Public License
  9. (>=v2). Read the file COPYING that comes with GRASS for details.
  10. @author Stepan Turek <stepan.turek seznam.cz> (Mentor: Martin Landa)
  11. """
  12. import os
  13. from math import ceil
  14. import base64
  15. try:
  16. from urllib2 import Request, urlopen, HTTPError
  17. from httplib import HTTPException
  18. except ImportError:
  19. from urllib.request import Request, urlopen
  20. from urllib.error import HTTPError
  21. from http.client import HTTPException
  22. import grass.script as grass
  23. from grass.exceptions import CalledModuleError
  24. class WMSBase:
  25. def __init__(self):
  26. # these variables are information for destructor
  27. self.temp_files_to_cleanup = []
  28. self.params = {}
  29. self.tile_size = {'bbox': None}
  30. self.temp_map = None
  31. self.temp_warpmap = None
  32. def __del__(self):
  33. # tries to remove temporary files, all files should be
  34. # removed before, implemented just in case of unexpected
  35. # stop of module
  36. for temp_file in self.temp_files_to_cleanup:
  37. grass.try_remove(temp_file)
  38. def _debug(self, fn, msg):
  39. grass.debug("%s.%s: %s" %
  40. (self.__class__.__name__, fn, msg))
  41. def _initializeParameters(self, options, flags):
  42. self._debug("_initialize_parameters", "started")
  43. # initialization of module parameters (options, flags)
  44. self.params['driver'] = options['driver']
  45. drv_info = WMSDriversInfo()
  46. driver_props = drv_info.GetDrvProperties(options['driver'])
  47. self._checkIgnoeredParams(options, flags, driver_props)
  48. self.params['capfile'] = options['capfile'].strip()
  49. for key in ['url', 'layers', 'styles', 'method']:
  50. self.params[key] = options[key].strip()
  51. self.flags = flags
  52. if self.flags['o']:
  53. self.params['transparent'] = 'FALSE'
  54. else:
  55. self.params['transparent'] = 'TRUE'
  56. for key in ['password', 'username', 'urlparams']:
  57. self.params[key] = options[key]
  58. if (self.params ['password'] and self.params ['username'] == '') or \
  59. (self.params['password'] == '' and self.params['username']):
  60. grass.fatal(_("Please insert both %s and %s parameters or none of them." %
  61. ('password', 'username')))
  62. self.params['bgcolor'] = options['bgcolor'].strip()
  63. if options['format'] == "jpeg" and \
  64. not 'format' in driver_props['ignored_params']:
  65. if not flags['o'] and \
  66. 'WMS' in self.params['driver']:
  67. grass.warning(_("JPEG format does not support transparency"))
  68. self.params['format'] = drv_info.GetFormat(options['format'])
  69. if not self.params['format']:
  70. self.params['format'] = self.params['format']
  71. # TODO: get srs from Tile Service file in OnEarth_GRASS driver
  72. self.params['srs'] = int(options['srs'])
  73. if self.params['srs'] <= 0 and not 'srs' in driver_props['ignored_params']:
  74. grass.fatal(_("Invalid EPSG code %d") % self.params['srs'])
  75. self.params['wms_version'] = options['wms_version']
  76. if "CRS" in GetSRSParamVal(self.params['srs']) and self.params['wms_version'] == "1.1.1":
  77. self.params['wms_version'] = "1.3.0"
  78. grass.warning(
  79. _("WMS version <1.3.0> will be used, because version <1.1.1> does not support <%s>projection") %
  80. GetSRSParamVal(
  81. self.params['srs']))
  82. if self.params['wms_version'] == "1.3.0":
  83. self.params['proj_name'] = "CRS"
  84. else:
  85. self.params['proj_name'] = "SRS"
  86. # read projection info
  87. self.proj_location = grass.read_command('g.proj',
  88. flags='jf').rstrip('\n')
  89. self.proj_location = self._modifyProj(self.proj_location)
  90. if self.params['srs'] in [3857, 900913]:
  91. # HACK: epsg 3857 def: http://spatialreference.org/ref/sr-org/7483/
  92. # g.proj can return: ...+a=6378137 +rf=298.257223563... (WGS84 elipsoid def instead of sphere), it can make 20km shift in Y, when raster is transformed
  93. # needed to be tested on more servers
  94. self.proj_srs = '+proj=merc +lat_ts=0.0 +lon_0=0.0 +x_0=0.0 +y_0=0 +k=1.0 +no_defs +a=6378137 +b=6378137 +nadgrids=@null +to_meter=1'
  95. else:
  96. self.proj_srs = grass.read_command('g.proj',
  97. flags='jf',
  98. epsg=str(GetEpsg(self.params['srs']))).rstrip('\n')
  99. self.proj_srs = self._modifyProj(self.proj_srs)
  100. if not self.proj_srs or not self.proj_location:
  101. grass.fatal(_("Unable to get projection info"))
  102. self.region = options['region']
  103. min_tile_size = 100
  104. maxcols = int(options['maxcols'])
  105. if maxcols <= min_tile_size:
  106. grass.fatal(_("Maxcols must be greater than 100"))
  107. maxrows = int(options['maxrows'])
  108. if maxrows <= min_tile_size:
  109. grass.fatal(_("Maxrows must be greater than 100"))
  110. # setting optimal tile size according to maxcols and maxrows constraint
  111. # and region cols and rows
  112. self.tile_size['cols'] = int(
  113. self.region['cols'] /
  114. ceil(
  115. self.region['cols'] /
  116. float(maxcols)))
  117. self.tile_size['rows'] = int(
  118. self.region['rows'] /
  119. ceil(
  120. self.region['rows'] /
  121. float(maxrows)))
  122. # default format for GDAL library
  123. self.gdal_drv_format = "GTiff"
  124. self._debug("_initialize_parameters", "finished")
  125. def _modifyProj(self, proj):
  126. """!Modify proj.4 string for usage in this module"""
  127. # add +wktext parameter to avoid droping of +nadgrids parameter (if presented) in gdalwarp
  128. if '+nadgrids=' in proj and ' +wktext' not in proj:
  129. proj += ' +wktext'
  130. return proj
  131. def _checkIgnoeredParams(self, options, flags, driver_props):
  132. """!Write warnings for set parameters and flags, which chosen driver does not use."""
  133. not_relevant_params = []
  134. for i_param in driver_props['ignored_params']:
  135. if i_param in options and \
  136. options[i_param] and \
  137. i_param not in ['srs', 'wms_version', 'format']: # params with default value
  138. not_relevant_params.append('<' + i_param + '>')
  139. if len(not_relevant_params) > 0:
  140. grass.warning(_("These parameter are ignored: %s\n\
  141. %s driver does not support the parameters." %
  142. (','.join(not_relevant_params), options['driver'])))
  143. not_relevant_flags = []
  144. for i_flag in driver_props['ignored_flags']:
  145. if flags[i_flag]:
  146. not_relevant_flags.append('<' + i_flag + '>')
  147. if len(not_relevant_flags) > 0:
  148. grass.warning(_("These flags are ignored: %s\n\
  149. %s driver does not support the flags." %
  150. (','.join(not_relevant_flags), options['driver'])))
  151. def GetMap(self, options, flags):
  152. """!Download data from WMS server."""
  153. self._initializeParameters(options, flags)
  154. self.bbox = self._computeBbox()
  155. self.temp_map = self._download()
  156. if not self.temp_map:
  157. return
  158. self._reprojectMap()
  159. return self.temp_warpmap
  160. def _fetchCapabilities(self, options):
  161. """!Download capabilities from WMS server
  162. """
  163. cap_url = options['url'].strip()
  164. if "?" in cap_url:
  165. cap_url += "&"
  166. else:
  167. cap_url += "?"
  168. if 'WMTS' in options['driver']:
  169. cap_url += "SERVICE=WMTS&REQUEST=GetCapabilities&VERSION=1.0.0"
  170. elif 'OnEarth' in options['driver']:
  171. cap_url += "REQUEST=GetTileService"
  172. else:
  173. cap_url += "SERVICE=WMS&REQUEST=GetCapabilities&VERSION=" + options['wms_version']
  174. if options['urlparams']:
  175. cap_url += "&" + options['urlparams']
  176. grass.debug('Fetching capabilities file.\n%s' % cap_url)
  177. try:
  178. cap = self._fetchDataFromServer(cap_url, options['username'], options['password'])
  179. except (IOError, HTTPException) as e:
  180. if isinstance(e, HTTPError) and e.code == 401:
  181. grass.fatal(
  182. _("Authorization failed to <%s> when fetching capabilities") %
  183. options['url'])
  184. else:
  185. msg = _("Unable to fetch capabilities from <{0}>. Reason: ").format(
  186. options['url'])
  187. if hasattr(e, 'reason'):
  188. msg += '{0}'.format(e.reason)
  189. else:
  190. msg += '{0}'.format(e)
  191. grass.fatal(msg)
  192. grass.debug('Fetching capabilities OK')
  193. return cap
  194. def _fetchDataFromServer(self, url, username=None, password=None):
  195. """!Fetch data from server
  196. """
  197. request = Request(url)
  198. if username and password:
  199. base64string = base64.encodestring('%s:%s' % (username, password)).replace('\n', '')
  200. request.add_header("Authorization", "Basic %s" % base64string)
  201. try:
  202. return urlopen(request)
  203. except ValueError as error:
  204. grass.fatal("%s" % error)
  205. def GetCapabilities(self, options):
  206. """!Get capabilities from WMS server
  207. """
  208. cap = self._fetchCapabilities(options)
  209. capfile_output = options['capfile_output'].strip()
  210. # save to file
  211. if capfile_output:
  212. try:
  213. temp = open(capfile_output, "w")
  214. temp.write(cap.read())
  215. temp.close()
  216. return
  217. except IOError as error:
  218. grass.fatal(_("Unabble to open file '%s'.\n%s\n" % (cap_file, error)))
  219. # print to output
  220. cap_lines = cap.readlines()
  221. for line in cap_lines:
  222. print(line.rstrip())
  223. def _computeBbox(self):
  224. """!Get region extent for WMS query (bbox)
  225. """
  226. self._debug("_computeBbox", "started")
  227. bbox_region_items = {'maxy': 'n', 'miny': 's', 'maxx': 'e', 'minx': 'w'}
  228. bbox = {}
  229. if self.proj_srs == self.proj_location: # TODO: do it better
  230. for bbox_item, region_item in bbox_region_items.items():
  231. bbox[bbox_item] = self.region[region_item]
  232. # if location projection and wms query projection are
  233. # different, corner points of region are transformed into wms
  234. # projection and then bbox is created from extreme coordinates
  235. # of the transformed points
  236. else:
  237. for bbox_item, region_item in bbox_region_items.items():
  238. bbox[bbox_item] = None
  239. temp_region = self._tempfile()
  240. try:
  241. temp_region_opened = open(temp_region, 'w')
  242. temp_region_opened.write("%f %f\n%f %f\n%f %f\n%f %f\n" %
  243. (self.region['e'], self.region['n'],
  244. self.region['w'], self.region['n'],
  245. self.region['w'], self.region['s'],
  246. self.region['e'], self.region['s']))
  247. except IOError:
  248. grass.fatal(_("Unable to write data into tempfile"))
  249. finally:
  250. temp_region_opened.close()
  251. points = grass.read_command('m.proj', flags='d',
  252. proj_out=self.proj_srs,
  253. proj_in=self.proj_location,
  254. input=temp_region,
  255. quiet=True) # TODO: stdin
  256. grass.try_remove(temp_region)
  257. if not points:
  258. grass.fatal(_("Unable to determine region, %s failed") % 'm.proj')
  259. points = points.splitlines()
  260. if len(points) != 4:
  261. grass.fatal(_("Region definition: 4 points required"))
  262. for point in points:
  263. try:
  264. point = list(map(float, point.split("|")))
  265. except ValueError:
  266. grass.fatal(_('Reprojection of region using m.proj failed.'))
  267. if not bbox['maxy']:
  268. bbox['maxy'] = point[1]
  269. bbox['miny'] = point[1]
  270. bbox['maxx'] = point[0]
  271. bbox['minx'] = point[0]
  272. continue
  273. if bbox['maxy'] < point[1]:
  274. bbox['maxy'] = point[1]
  275. elif bbox['miny'] > point[1]:
  276. bbox['miny'] = point[1]
  277. if bbox['maxx'] < point[0]:
  278. bbox['maxx'] = point[0]
  279. elif bbox['minx'] > point[0]:
  280. bbox['minx'] = point[0]
  281. self._debug("_computeBbox", "finished -> %s" % bbox)
  282. # Ordering of coordinates axis of geographic coordinate
  283. # systems in WMS 1.3.0 is flipped. If self.tile_size['flip_coords'] is
  284. # True, coords in bbox need to be flipped in WMS query.
  285. return bbox
  286. def _reprojectMap(self):
  287. """!Reproject data using gdalwarp if needed
  288. """
  289. # reprojection of raster
  290. if self.proj_srs != self.proj_location: # TODO: do it better
  291. grass.message(_("Reprojecting raster..."))
  292. self.temp_warpmap = grass.tempfile()
  293. if int(os.getenv('GRASS_VERBOSE', '2')) <= 2:
  294. nuldev = file(os.devnull, 'w+')
  295. else:
  296. nuldev = None
  297. if self.params['method'] == "nearest":
  298. gdal_method = "near"
  299. elif self.params['method'] == "linear":
  300. gdal_method = "bilinear"
  301. else:
  302. gdal_method = self.params['method']
  303. #"+proj=merc +a=6378137 +b=6378137 +lat_ts=0.0 +lon_0=0.0 +x_0=0.0 +y_0=0 +k=1.0 +units=m +nadgrids=@null +no_defs"
  304. # RGB rasters - alpha layer is added for cropping edges of projected raster
  305. try:
  306. if self.temp_map_bands_num == 3:
  307. ps = grass.Popen(['gdalwarp',
  308. '-s_srs', '%s' % self.proj_srs,
  309. '-t_srs', '%s' % self.proj_location,
  310. '-r', gdal_method, '-dstalpha',
  311. self.temp_map, self.temp_warpmap], stdout=nuldev)
  312. # RGBA rasters
  313. else:
  314. ps = grass.Popen(['gdalwarp',
  315. '-s_srs', '%s' % self.proj_srs,
  316. '-t_srs', '%s' % self.proj_location,
  317. '-r', gdal_method,
  318. self.temp_map, self.temp_warpmap], stdout=nuldev)
  319. ps.wait()
  320. except OSError as e:
  321. grass.fatal('%s \nThis can be caused by missing %s utility. ' % (e, 'gdalwarp'))
  322. if nuldev:
  323. nuldev.close()
  324. if ps.returncode != 0:
  325. grass.fatal(_('%s failed') % 'gdalwarp')
  326. grass.try_remove(self.temp_map)
  327. # raster projection is same as projection of location
  328. else:
  329. self.temp_warpmap = self.temp_map
  330. self.temp_files_to_cleanup.remove(self.temp_map)
  331. return self.temp_warpmap
  332. def _tempfile(self):
  333. """!Create temp_file and append list self.temp_files_to_cleanup
  334. with path of file
  335. @return string path to temp_file
  336. """
  337. temp_file = grass.tempfile()
  338. if temp_file is None:
  339. grass.fatal(_("Unable to create temporary files"))
  340. # list of created tempfiles for destructor
  341. self.temp_files_to_cleanup.append(temp_file)
  342. return temp_file
  343. class GRASSImporter:
  344. def __init__(self, opt_output):
  345. self.cleanup_mask = False
  346. self.cleanup_layers = False
  347. # output map name
  348. self.opt_output = opt_output
  349. # suffix for existing mask (during overriding will be saved
  350. # into raster named:self.opt_output + this suffix)
  351. self.original_mask_suffix = "_temp_MASK"
  352. # check names of temporary rasters, which module may create
  353. maps = []
  354. for suffix in ('.red', '.green', '.blue', '.alpha', self.original_mask_suffix):
  355. rast = self.opt_output + suffix
  356. if grass.find_file(rast, element='cell', mapset='.')['file']:
  357. maps.append(rast)
  358. if len(maps) != 0:
  359. grass.fatal(_("Please change output name, or change names of these rasters: %s, "
  360. "module needs to create this temporary maps during execution.") % ",".join(maps))
  361. def __del__(self):
  362. # removes temporary mask, used for import transparent or warped temp_map
  363. if self.cleanup_mask:
  364. # clear temporary mask, which was set by module
  365. try:
  366. grass.run_command('r.mask', quiet=True, flags='r')
  367. except CalledModuleError:
  368. grass.fatal(_('%s failed') % 'r.mask')
  369. # restore original mask, if exists
  370. if grass.find_file(self.opt_output + self.original_mask_suffix,
  371. element='cell', mapset='.')['name']:
  372. try:
  373. mask_copy = self.opt_output + self.original_mask_suffix
  374. grass.run_command('g.copy', quiet=True,
  375. raster=mask_copy + ',MASK')
  376. except CalledModuleError:
  377. grass.fatal(_('%s failed') % 'g.copy')
  378. # remove temporary created rasters
  379. if self.cleanup_layers:
  380. maps = []
  381. for suffix in ('.red', '.green', '.blue', '.alpha', self.original_mask_suffix):
  382. rast = self.opt_output + suffix
  383. if grass.find_file(rast, element='cell', mapset='.')['file']:
  384. maps.append(rast)
  385. if maps:
  386. grass.run_command('g.remove',
  387. quiet=True,
  388. flags='fb',
  389. type='raster',
  390. name=','.join(maps))
  391. # delete environmental variable which overrides region
  392. if 'GRASS_REGION' in os.environ.keys():
  393. os.environ.pop('GRASS_REGION')
  394. def ImportMapIntoGRASS(self, raster):
  395. """!Import raster into GRASS.
  396. """
  397. # importing temp_map into GRASS
  398. try:
  399. grass.run_command('r.in.gdal',
  400. quiet=True, overwrite=True,
  401. input=raster, output=self.opt_output)
  402. except CalledModuleError:
  403. grass.fatal(_('%s failed') % 'r.in.gdal')
  404. # information for destructor to cleanup temp_layers, created
  405. # with r.in.gdal
  406. self.cleanup_layers = True
  407. # setting region for full extend of imported raster
  408. if grass.find_file(self.opt_output + '.red', element='cell', mapset='.')['file']:
  409. region_map = self.opt_output + '.red'
  410. else:
  411. region_map = self.opt_output
  412. os.environ['GRASS_REGION'] = grass.region_env(rast=region_map)
  413. # mask created from alpha layer, which describes real extend
  414. # of warped layer (may not be a rectangle), also mask contains
  415. # transparent parts of raster
  416. if grass.find_file(self.opt_output + '.alpha', element='cell', mapset='.')['name']:
  417. # saving current mask (if exists) into temp raster
  418. if grass.find_file('MASK', element='cell', mapset='.')['name']:
  419. try:
  420. mask_copy = self.opt_output + self.original_mask_suffix
  421. grass.run_command('g.copy', quiet=True,
  422. raster='MASK,' + mask_copy)
  423. except CalledModuleError:
  424. grass.fatal(_('%s failed') % 'g.copy')
  425. # info for destructor
  426. self.cleanup_mask = True
  427. try:
  428. grass.run_command('r.mask',
  429. quiet=True, overwrite=True,
  430. maskcats="0",
  431. flags='i',
  432. raster=self.opt_output + '.alpha')
  433. except CalledModuleError:
  434. grass.fatal(_('%s failed') % 'r.mask')
  435. # TODO one band + alpha band?
  436. if grass.find_file(self.opt_output + '.red', element='cell', mapset='.')['file']:
  437. try:
  438. grass.run_command('r.composite',
  439. quiet=True, overwrite=True,
  440. red=self.opt_output + '.red',
  441. green=self.opt_output + '.green',
  442. blue=self.opt_output + '.blue',
  443. output=self.opt_output)
  444. except CalledModuleError:
  445. grass.fatal(_('%s failed') % 'r.composite')
  446. grass.message(_('<%s> created.') % self.opt_output)
  447. class WMSDriversInfo:
  448. def __init__(self):
  449. """!Provides information about driver parameters.
  450. """
  451. # format labels
  452. self.f_labels = ["geotiff", "tiff", "png", "jpeg", "gif", "png8"]
  453. # form for request
  454. self.formats = [
  455. "image/geotiff",
  456. "image/tiff",
  457. "image/png",
  458. "image/jpeg",
  459. "image/gif",
  460. "image/png8"]
  461. self.srs = ("epsg", "crs")
  462. def GetDrvProperties(self, driver):
  463. """!Get information about driver parameters.
  464. """
  465. if driver == 'WMS_GDAL':
  466. return self._GDALDrvProperties()
  467. if 'WMS' in driver:
  468. return self._WMSProperties()
  469. if 'WMTS' in driver:
  470. return self._WMTSProperties()
  471. if 'OnEarth' in driver:
  472. return self._OnEarthProperties()
  473. def _OnEarthProperties(self):
  474. props = {}
  475. props['ignored_flags'] = ['o']
  476. props['ignored_params'] = ['bgcolor', 'styles', 'capfile_output',
  477. 'format', 'srs', 'wms_version']
  478. props['req_multiple_layers'] = False
  479. return props
  480. def _WMSProperties(self):
  481. props = {}
  482. props['ignored_params'] = ['capfile']
  483. props['ignored_flags'] = []
  484. props['req_multiple_layers'] = True
  485. return props
  486. def _WMTSProperties(self):
  487. props = {}
  488. props['ignored_flags'] = ['o']
  489. props['ignored_params'] = ['urlparams', 'bgcolor', 'wms_version']
  490. props['req_multiple_layers'] = False
  491. return props
  492. def _GDALDrvProperties(self):
  493. props = {}
  494. props['ignored_flags'] = []
  495. props['ignored_params'] = ['urlparams', 'bgcolor', 'capfile', 'capfile_output',
  496. 'username', 'password']
  497. props['req_multiple_layers'] = True
  498. return props
  499. def GetFormatLabel(self, format):
  500. """!Convert format request form to value in parameter 'format'.
  501. """
  502. if format in self.formats:
  503. return self.f_labels[self.formats.index(format)]
  504. return None
  505. def GetFormat(self, label):
  506. """!Convert value in parameter 'format' to format request form.
  507. """
  508. if label in self.f_labels:
  509. return self.formats[self.f_labels.index(label)]
  510. return None
  511. def GetSrs(self):
  512. """!Get supported srs prefixes (e.g. epsg/crs)
  513. @todo filter according to version and driver params
  514. """
  515. return self.srs
  516. # TODO move to utils?
  517. def GetSRSParamVal(srs):
  518. """!Decides whether to use CRS or EPSG prefix according to srs number.
  519. """
  520. if srs in [84, 83, 27]:
  521. return "CRS:%d" % srs
  522. else:
  523. return "EPSG:%d" % srs
  524. def GetEpsg(srs):
  525. """
  526. @return EPSG number
  527. If srs is CRS number, return EPSG number which corresponds to CRS number.
  528. """
  529. if srs == 84:
  530. return 4326
  531. if srs == 83:
  532. return 4269
  533. if srs == 27:
  534. return 4267
  535. return srs