wms_drv.py 35 KB

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  1. """!
  2. @brief WMS, WMTS and NASA OnEarth drivers implemented in GRASS using GDAL Python bindings.
  3. List of classes:
  4. - wms_drv::WMSDrv
  5. - wms_drv::BaseRequestMgr
  6. - wms_drv::WMSRequestMgr
  7. - wms_drv::WMTSRequestMgr
  8. - wms_drv::OnEarthRequestMgr
  9. (C) 2012 by the GRASS Development Team
  10. This program is free software under the GNU General Public License
  11. (>=v2). Read the file COPYING that comes with GRASS for details.
  12. @author Stepan Turek <stepan.turek seznam.cz> (Mentor: Martin Landa)
  13. """
  14. import socket
  15. import grass.script as grass
  16. from time import sleep
  17. try:
  18. from osgeo import gdal
  19. from osgeo import gdalconst
  20. except:
  21. grass.fatal(_("Unable to load GDAL python bindings"))
  22. import numpy as Numeric
  23. Numeric.arrayrange = Numeric.arange
  24. from math import pi, floor
  25. from urllib2 import HTTPError
  26. from httplib import HTTPException
  27. try:
  28. from xml.etree.ElementTree import ParseError
  29. except ImportError: # < Python 2.7
  30. from xml.parsers.expat import ExpatError as ParseError
  31. from wms_base import WMSBase, GetSRSParamVal
  32. from wms_cap_parsers import WMTSCapabilitiesTree, OnEarthCapabilitiesTree
  33. from srs import Srs
  34. class WMSDrv(WMSBase):
  35. def _download(self):
  36. """!Downloads data from WMS server using own driver
  37. @return temp_map with downloaded data
  38. """
  39. grass.message(_("Downloading data from WMS server..."))
  40. if "?" in self.params["url"]:
  41. self.params["url"] += "&"
  42. else:
  43. self.params["url"] += "?"
  44. if not self.params['capfile']:
  45. self.cap_file = self._fetchCapabilities(self.params)
  46. else:
  47. self.cap_file = self.params['capfile']
  48. # initialize correct manager according to chosen OGC service
  49. if self.params['driver'] == 'WMTS_GRASS':
  50. req_mgr = WMTSRequestMgr(self.params, self.bbox, self.region, self.proj_srs, self.cap_file)
  51. elif self.params['driver'] == 'WMS_GRASS':
  52. req_mgr = WMSRequestMgr(self.params, self.bbox, self.region, self.tile_size, self.proj_srs)
  53. elif self.params['driver'] == 'OnEarth_GRASS':
  54. req_mgr = OnEarthRequestMgr(self.params, self.bbox, self.region, self.proj_srs, self.cap_file)
  55. # get information about size in pixels and bounding box of raster, where all tiles will be joined
  56. map_region = req_mgr.GetMapRegion()
  57. init = True
  58. temp_map = None
  59. fetch_try = 0
  60. # iterate through all tiles and download them
  61. while True:
  62. if fetch_try == 0:
  63. # get url for request the tile and information for placing the tile into raster with other tiles
  64. tile = req_mgr.GetNextTile()
  65. # if last tile has been already downloaded
  66. if not tile:
  67. break
  68. # url for request the tile
  69. query_url = tile[0]
  70. # the tile size and offset in pixels for placing it into raster where tiles are joined
  71. tile_ref = tile[1]
  72. grass.debug(query_url, 2)
  73. try:
  74. wms_data = self._fetchDataFromServer(query_url, self.params['username'], self.params['password'])
  75. except (IOError, HTTPException) as e:
  76. if HTTPError == type(e) and e.code == 401:
  77. grass.fatal(_("Authorization failed to '%s' when fetching data.\n%s") % (self.params['url'], str(e)))
  78. else:
  79. grass.fatal(_("Unable to fetch data from: '%s'\n%s") % (self.params['url'], str(e)))
  80. temp_tile = self._tempfile()
  81. # download data into temporary file
  82. try:
  83. temp_tile_opened = open(temp_tile, 'wb')
  84. temp_tile_opened.write(wms_data.read())
  85. except IOError as e:
  86. # some servers are not happy with many subsequent requests for tiles done immediately,
  87. # if immediate request was unsuccessful, try to repeat the request after 5s and 30s breaks
  88. # TODO probably servers can return more kinds of errors related to this problem (not only 104)
  89. if socket.error == type(e) and e[0] == 104 and fetch_try < 2:
  90. fetch_try += 1
  91. if fetch_try == 1:
  92. sleep_time = 5
  93. elif fetch_try == 2:
  94. sleep_time = 30
  95. grass.warning(_("Server refused to send data for a tile.\nRequest will be repeated after %d s.") % sleep_time)
  96. sleep(sleep_time)
  97. continue
  98. else:
  99. grass.fatal(_("Unable to write data into tempfile.\n%s") % str(e))
  100. finally:
  101. temp_tile_opened.close()
  102. fetch_try = 0
  103. tile_dataset_info = gdal.Open(temp_tile, gdal.GA_ReadOnly)
  104. if tile_dataset_info is None:
  105. # print error xml returned from server
  106. try:
  107. error_xml_opened = open(temp_tile, 'rb')
  108. err_str = error_xml_opened.read()
  109. except IOError as e:
  110. grass.fatal(_("Unable to read data from tempfile.\n%s") % str(e))
  111. finally:
  112. error_xml_opened.close()
  113. if err_str is not None:
  114. grass.fatal(_("WMS server error: %s") % err_str)
  115. else:
  116. grass.fatal(_("WMS server unknown error") )
  117. temp_tile_pct2rgb = None
  118. if tile_dataset_info.RasterCount == 1 and \
  119. tile_dataset_info.GetRasterBand(1).GetRasterColorTable() is not None:
  120. # expansion of color table into bands
  121. temp_tile_pct2rgb = self._tempfile()
  122. tile_dataset = self._pct2rgb(temp_tile, temp_tile_pct2rgb)
  123. else:
  124. tile_dataset = tile_dataset_info
  125. # initialization of temp_map_dataset, where all tiles are merged
  126. if init:
  127. temp_map = self._tempfile()
  128. driver = gdal.GetDriverByName(self.gdal_drv_format)
  129. metadata = driver.GetMetadata()
  130. if not metadata.has_key(gdal.DCAP_CREATE) or \
  131. metadata[gdal.DCAP_CREATE] == 'NO':
  132. grass.fatal(_('Driver %s does not supports Create() method') % drv_format)
  133. self.temp_map_bands_num = tile_dataset.RasterCount
  134. temp_map_dataset = driver.Create(temp_map, map_region['cols'], map_region['rows'],
  135. self.temp_map_bands_num,
  136. tile_dataset.GetRasterBand(1).DataType)
  137. init = False
  138. # tile is written into temp_map
  139. tile_to_temp_map = tile_dataset.ReadRaster(0, 0, tile_ref['sizeX'], tile_ref['sizeY'],
  140. tile_ref['sizeX'], tile_ref['sizeY'])
  141. temp_map_dataset.WriteRaster(tile_ref['t_cols_offset'], tile_ref['t_rows_offset'],
  142. tile_ref['sizeX'], tile_ref['sizeY'], tile_to_temp_map)
  143. tile_dataset = None
  144. tile_dataset_info = None
  145. grass.try_remove(temp_tile)
  146. grass.try_remove(temp_tile_pct2rgb)
  147. if not temp_map:
  148. return temp_map
  149. # georeferencing and setting projection of temp_map
  150. projection = grass.read_command('g.proj',
  151. flags = 'wf',
  152. epsg =self.params['srs']).rstrip('\n')
  153. temp_map_dataset.SetProjection(projection)
  154. pixel_x_length = (map_region['maxx'] - map_region['minx']) / int(map_region['cols'])
  155. pixel_y_length = (map_region['miny'] - map_region['maxy']) / int(map_region['rows'])
  156. geo_transform = [map_region['minx'] , pixel_x_length , 0.0 , map_region['maxy'] , 0.0 , pixel_y_length]
  157. temp_map_dataset.SetGeoTransform(geo_transform )
  158. temp_map_dataset = None
  159. return temp_map
  160. def _pct2rgb(self, src_filename, dst_filename):
  161. """!Create new dataset with data in dst_filename with bands according to src_filename
  162. raster color table - modified code from gdal utility pct2rgb
  163. @return new dataset
  164. """
  165. out_bands = 4
  166. band_number = 1
  167. # open source file
  168. src_ds = gdal.Open(src_filename)
  169. if src_ds is None:
  170. grass.fatal(_('Unable to open %s ' % src_filename))
  171. src_band = src_ds.GetRasterBand(band_number)
  172. # Build color table
  173. lookup = [ Numeric.arrayrange(256),
  174. Numeric.arrayrange(256),
  175. Numeric.arrayrange(256),
  176. Numeric.ones(256)*255 ]
  177. ct = src_band.GetRasterColorTable()
  178. if ct is not None:
  179. for i in range(min(256,ct.GetCount())):
  180. entry = ct.GetColorEntry(i)
  181. for c in range(4):
  182. lookup[c][i] = entry[c]
  183. # create the working file
  184. gtiff_driver = gdal.GetDriverByName(self.gdal_drv_format)
  185. tif_ds = gtiff_driver.Create(dst_filename,
  186. src_ds.RasterXSize, src_ds.RasterYSize, out_bands)
  187. # do the processing one scanline at a time
  188. for iY in range(src_ds.RasterYSize):
  189. src_data = src_band.ReadAsArray(0,iY,src_ds.RasterXSize,1)
  190. for iBand in range(out_bands):
  191. band_lookup = lookup[iBand]
  192. dst_data = Numeric.take(band_lookup,src_data)
  193. tif_ds.GetRasterBand(iBand+1).WriteArray(dst_data,0,iY)
  194. return tif_ds
  195. class BaseRequestMgr:
  196. """!Base class for request managers.
  197. """
  198. def _computeRequestData(self, bbox, tl_corner, tile_span, tile_size, mat_num_bbox):
  199. """!Initialize data needed for iteration through tiles. Used by WMTS_GRASS and OnEarth_GRASS drivers.
  200. """
  201. epsilon = 1e-15
  202. # request data bbox specified in row and col number
  203. self.t_num_bbox = {}
  204. self.t_num_bbox['min_col'] = int(floor((bbox['minx'] - tl_corner['minx']) / tile_span['x'] + epsilon))
  205. self.t_num_bbox['max_col'] = int(floor((bbox['maxx'] - tl_corner['minx']) / tile_span['x'] - epsilon))
  206. self.t_num_bbox['min_row'] = int(floor((tl_corner['maxy'] - bbox['maxy']) / tile_span['y'] + epsilon))
  207. self.t_num_bbox['max_row'] = int(floor((tl_corner['maxy'] - bbox['miny']) / tile_span['y'] - epsilon))
  208. # Does required bbox intersects bbox of data available on server?
  209. self.intersects = False
  210. for col in ['min_col', 'max_col']:
  211. for row in ['min_row', 'max_row']:
  212. if (self.t_num_bbox['min_row'] <= self.t_num_bbox[row] and self.t_num_bbox[row] <= mat_num_bbox['max_row']) and \
  213. (self.t_num_bbox['min_col'] <= self.t_num_bbox[col] and self.t_num_bbox[col] <= mat_num_bbox['max_col']):
  214. self.intersects = True
  215. if not self.intersects:
  216. grass.warning(_('Region is out of server data extend.'))
  217. self.map_region = None
  218. return
  219. # crop request bbox to server data bbox extend
  220. if self.t_num_bbox['min_col'] < (mat_num_bbox['min_col']):
  221. self.t_num_bbox['min_col'] = int(mat_num_bbox['min_col'])
  222. if self.t_num_bbox['max_col'] > (mat_num_bbox['max_col']):
  223. self.t_num_bbox['max_col'] = int(mat_num_bbox['max_col'])
  224. if self.t_num_bbox['min_row'] < (mat_num_bbox['min_row']):
  225. self.t_num_bbox['min_row'] = int(mat_num_bbox['min_row'])
  226. if self.t_num_bbox['max_row'] > (mat_num_bbox['max_row']):
  227. self.t_num_bbox['max_row'] = int(mat_num_bbox['max_row'])
  228. num_tiles = (self.t_num_bbox['max_col'] - self.t_num_bbox['min_col'] + 1) * (self.t_num_bbox['max_row'] - self.t_num_bbox['min_row'] + 1)
  229. grass.message(_('Fetching %d tiles with %d x %d pixel size per tile...') % (num_tiles, tile_size['x'], tile_size['y']))
  230. # georeference of raster, where tiles will be merged
  231. self.map_region = {}
  232. self.map_region['minx'] = self.t_num_bbox['min_col'] * tile_span['x'] + tl_corner['minx']
  233. self.map_region['maxy'] = tl_corner['maxy'] - (self.t_num_bbox['min_row']) * tile_span['y']
  234. self.map_region['maxx'] = (self.t_num_bbox['max_col'] + 1) * tile_span['x'] + tl_corner['minx']
  235. self.map_region['miny'] = tl_corner['maxy'] - (self.t_num_bbox['max_row'] + 1) * tile_span['y']
  236. # size of raster, where tiles will be merged
  237. self.map_region['cols'] = int(tile_size['x'] * (self.t_num_bbox['max_col'] - self.t_num_bbox['min_col'] + 1))
  238. self.map_region['rows'] = int(tile_size['y'] * (self.t_num_bbox['max_row'] - self.t_num_bbox['min_row'] + 1))
  239. # hold information about current column and row during iteration
  240. self.i_col = self.t_num_bbox['min_col']
  241. self.i_row = self.t_num_bbox['min_row']
  242. # bbox for first tile request
  243. self.query_bbox = {
  244. 'minx' : tl_corner['minx'],
  245. 'maxy' : tl_corner['maxy'],
  246. 'maxx' : tl_corner['minx'] + tile_span['x'],
  247. 'miny' : tl_corner['maxy'] - tile_span['y'],
  248. }
  249. self.tile_ref = {
  250. 'sizeX' : tile_size['x'],
  251. 'sizeY' : tile_size['y']
  252. }
  253. def _isGeoProj(self, proj):
  254. """!Is it geographic projection?
  255. """
  256. if (proj.find("+proj=latlong") != -1 or \
  257. proj.find("+proj=longlat") != -1):
  258. return True
  259. return False
  260. class WMSRequestMgr(BaseRequestMgr):
  261. def __init__(self, params, bbox, region, tile_size, proj_srs, cap_file = None):
  262. """!Initialize data needed for iteration through tiles.
  263. """
  264. self.version = params['wms_version']
  265. self.srs_param = params['srs']
  266. proj = params['proj_name'] + "=" + GetSRSParamVal(params['srs'])
  267. self.url = params['url'] + ("SERVICE=WMS&REQUEST=GetMap&VERSION=%s&LAYERS=%s&WIDTH=%s&HEIGHT=%s&STYLES=%s&TRANSPARENT=%s" % \
  268. (params['wms_version'], params['layers'], tile_size['cols'], tile_size['rows'], params['styles'], \
  269. params['transparent']))
  270. if params['bgcolor']:
  271. self.url += "&BGCOLOR=" + params['bgcolor']
  272. self.url += "&" +proj+ "&" + "FORMAT=" + params['format']
  273. self.bbox = bbox
  274. self.proj_srs = proj_srs
  275. self.tile_rows = tile_size['rows']
  276. self.tile_cols = tile_size['cols']
  277. if params['urlparams'] != "":
  278. self.url += "&" + params['urlparams']
  279. cols = int(region['cols'])
  280. rows = int(region['rows'])
  281. # computes parameters of tiles
  282. self.num_tiles_x = cols / self.tile_cols
  283. self.last_tile_x_size = cols % self.tile_cols
  284. self.tile_length_x = float(self.tile_cols) / float(cols) * (self.bbox['maxx'] - self.bbox['minx'])
  285. self.last_tile_x = False
  286. if self.last_tile_x_size != 0:
  287. self.last_tile_x = True
  288. self.num_tiles_x = self.num_tiles_x + 1
  289. self.num_tiles_y = rows / self.tile_rows
  290. self.last_tile_y_size = rows % self.tile_rows
  291. self.tile_length_y = float(self.tile_rows) / float(rows) * (self.bbox['maxy'] - self.bbox['miny'])
  292. self.last_tile_y = False
  293. if self.last_tile_y_size != 0:
  294. self.last_tile_y = True
  295. self.num_tiles_y = self.num_tiles_y + 1
  296. self.tile_bbox = dict(self.bbox)
  297. self.tile_bbox['maxx'] = self.bbox['minx'] + self.tile_length_x
  298. self.i_x = 0
  299. self.i_y = 0
  300. self.map_region = self.bbox
  301. self.map_region['cols'] = cols
  302. self.map_region['rows'] = rows
  303. def GetMapRegion(self):
  304. """!Get size in pixels and bounding box of raster where all tiles will be merged.
  305. """
  306. return self.map_region
  307. def GetNextTile(self):
  308. """!Get url for tile request from server and information for merging the tile with other tiles
  309. """
  310. tile_ref = {}
  311. if self.i_x >= self.num_tiles_x:
  312. return None
  313. tile_ref['sizeX'] = self.tile_cols
  314. if self.i_x == self.num_tiles_x - 1 and self.last_tile_x:
  315. tile_ref['sizeX'] = self.last_tile_x_size
  316. # set bbox for tile (N, S)
  317. if self.i_y != 0:
  318. self.tile_bbox['miny'] -= self.tile_length_y
  319. self.tile_bbox['maxy'] -= self.tile_length_y
  320. else:
  321. self.tile_bbox['maxy'] = self.bbox['maxy']
  322. self.tile_bbox['miny'] = self.bbox['maxy'] - self.tile_length_y
  323. tile_ref['sizeY'] = self.tile_rows
  324. if self.i_y == self.num_tiles_y - 1 and self.last_tile_y:
  325. tile_ref['sizeY'] = self.last_tile_y_size
  326. query_bbox = self._getQueryBbox(self.tile_bbox, self.proj_srs, self.srs_param, self.version)
  327. query_url = self.url + "&" + "BBOX=%s,%s,%s,%s" % ( query_bbox['minx'], query_bbox['miny'], query_bbox['maxx'], query_bbox['maxy'])
  328. tile_ref['t_cols_offset'] = int(self.tile_cols * self.i_x)
  329. tile_ref['t_rows_offset'] = int(self.tile_rows * self.i_y)
  330. if self.i_y >= self.num_tiles_y - 1:
  331. self.i_y = 0
  332. self.i_x += 1
  333. # set bbox for next tile (E, W)
  334. self.tile_bbox['maxx'] += self.tile_length_x
  335. self.tile_bbox['minx'] += self.tile_length_x
  336. else:
  337. self.i_y += 1
  338. return query_url, tile_ref
  339. def _getQueryBbox(self, bbox, proj, srs_param, version):
  340. """!Creates query bbox (used in request URL)
  341. Mostly bbox is not modified but if WMS standard is 1.3.0 and
  342. projection is geographic, the bbox x and y are in most cases flipped.
  343. """
  344. # CRS:84 and CRS:83 are exception (CRS:83 and CRS:27 need to be tested)
  345. if srs_param in [84, 83] or version != '1.3.0':
  346. return bbox
  347. elif Srs('epsg:' + str(srs_param)).axisorder == 'yx':
  348. return self._flipBbox(bbox)
  349. return bbox
  350. def _flipBbox(self, bbox):
  351. """
  352. Flips bbox values between this keys:
  353. maxy -> maxx
  354. maxx -> maxy
  355. miny -> minx
  356. minx -> miny
  357. @return copy of bbox with flipped coordinates
  358. """
  359. temp_bbox = dict(bbox)
  360. new_bbox = {}
  361. new_bbox['maxy'] = temp_bbox['maxx']
  362. new_bbox['miny'] = temp_bbox['minx']
  363. new_bbox['maxx'] = temp_bbox['maxy']
  364. new_bbox['minx'] = temp_bbox['miny']
  365. return new_bbox
  366. class WMTSRequestMgr(BaseRequestMgr):
  367. def __init__(self, params, bbox, region, proj_srs, cap_file = None):
  368. """!Initializes data needed for iteration through tiles.
  369. """
  370. self.proj_srs = proj_srs
  371. self.meters_per_unit = None
  372. # constant defined in WMTS standard (in meters)
  373. self.pixel_size = 0.00028
  374. # parse capabilities file
  375. try:
  376. # checks all elements needed by this class,
  377. # invalid elements are removed
  378. cap_tree = WMTSCapabilitiesTree(cap_file)
  379. except ParseError as error:
  380. grass.fatal(_("Unable to parse tile service file.\n%s\n") % str(error))
  381. self.xml_ns = cap_tree.getxmlnshandler()
  382. root = cap_tree.getroot()
  383. # get layer tile matrix sets with required projection
  384. mat_sets = self._getMatSets(root, params['layers'], params['srs']) #[[TileMatrixSet, TileMatrixSetLink], ....]
  385. # TODO: what if more tile matrix sets have required srs (returned more than 1)?
  386. mat_set = mat_sets[0][0]
  387. mat_set_link = mat_sets[0][1]
  388. params['tile_matrix_set'] = mat_set.find(self.xml_ns.NsOws('Identifier')).text
  389. # find tile matrix with resolution closest and smaller to wanted resolution
  390. tile_mat = self._findTileMats(mat_set.findall(self.xml_ns.NsWmts('TileMatrix')), region, bbox)
  391. # get extend of data available on server expressed in max/min rows and cols of tile matrix
  392. mat_num_bbox = self._getMatSize(tile_mat, mat_set_link)
  393. # initialize data needed for iteration through tiles
  394. self._computeRequestData(tile_mat, params, bbox, mat_num_bbox)
  395. def GetMapRegion(self):
  396. """!Get size in pixels and bounding box of raster where all tiles will be merged.
  397. """
  398. return self.map_region
  399. def _getMatSets(self, root, layer_name, srs):
  400. """!Get matrix sets which are available for chosen layer and have required EPSG.
  401. """
  402. contents = root.find(self.xml_ns.NsWmts('Contents'))
  403. layers = contents.findall(self.xml_ns.NsWmts('Layer'))
  404. ch_layer = None
  405. for layer in layers:
  406. layer_id = layer.find(self.xml_ns.NsOws('Identifier')).text
  407. if layer_id == layer_name:
  408. ch_layer = layer
  409. break
  410. if ch_layer is None:
  411. grass.fatal(_("Layer '%s' was not found in capabilities file") % layer_name)
  412. mat_set_links = ch_layer.findall(self.xml_ns.NsWmts('TileMatrixSetLink'))
  413. suitable_mat_sets = []
  414. tileMatrixSets = contents.findall(self.xml_ns.NsWmts('TileMatrixSet'))
  415. for link in mat_set_links:
  416. mat_set_link_id = link.find(self.xml_ns.NsWmts('TileMatrixSet')).text
  417. for mat_set in tileMatrixSets:
  418. mat_set_id = mat_set.find(self.xml_ns.NsOws('Identifier')).text
  419. if mat_set_id != mat_set_link_id:
  420. continue
  421. mat_set_srs = mat_set.find(self.xml_ns.NsOws('SupportedCRS')).text
  422. if mat_set_srs.lower() == ("EPSG:"+ str(srs)).lower():
  423. suitable_mat_sets.append([mat_set, link])
  424. if not suitable_mat_sets:
  425. grass.fatal(_("Layer '%s' is not available with %s code.") % (layer_name, "EPSG:" + str(srs)))
  426. return suitable_mat_sets # [[TileMatrixSet, TileMatrixSetLink], ....]
  427. def _findTileMats(self, tile_mats, region, bbox):
  428. """!Find best tile matrix set for requested resolution.
  429. """
  430. scale_dens = []
  431. scale_dens.append((bbox['maxy'] - bbox['miny']) / region['rows'] * self._getMetersPerUnit() / self.pixel_size)
  432. scale_dens.append((bbox['maxx'] - bbox['minx']) / region['cols'] * self._getMetersPerUnit() / self.pixel_size)
  433. scale_den = min(scale_dens)
  434. first = True
  435. for t_mat in tile_mats:
  436. mat_scale_den = float(t_mat.find(self.xml_ns.NsWmts('ScaleDenominator')).text)
  437. if first:
  438. best_scale_den = mat_scale_den
  439. best_t_mat = t_mat
  440. first = False
  441. continue
  442. best_diff = best_scale_den - scale_den
  443. mat_diff = mat_scale_den - scale_den
  444. if (best_diff < mat_diff and mat_diff < 0) or \
  445. (best_diff > mat_diff and best_diff > 0):
  446. best_t_mat = t_mat
  447. best_scale_den = mat_scale_den
  448. return best_t_mat
  449. def _getMetersPerUnit(self):
  450. """!Get coefficient which allows to convert units of request projection into meters.
  451. """
  452. if self.meters_per_unit:
  453. return self.meters_per_unit
  454. # for geographic projection
  455. if self._isGeoProj(self.proj_srs):
  456. proj_params = self.proj_srs.split(' ')
  457. for param in proj_params:
  458. if '+a' in param:
  459. a = float(param.split('=')[1])
  460. break
  461. equator_perim = 2 * pi * a
  462. # meters per degree on equator
  463. self.meters_per_unit = equator_perim / 360
  464. # other units
  465. elif '+to_meter' in self.proj_srs:
  466. proj_params = self.proj_srs.split(' ')
  467. for param in proj_params:
  468. if '+to_meter' in param:
  469. self.meters_per_unit = 1/float(param.split('=')[1])
  470. break
  471. # coordinate system in meters
  472. else:
  473. self.meters_per_unit = 1
  474. return self.meters_per_unit
  475. def _getMatSize(self, tile_mat, mat_set_link):
  476. """!Get rows and cols extend of data available on server for chosen layer and tile matrix.
  477. """
  478. # general tile matrix size
  479. mat_num_bbox = {}
  480. mat_num_bbox['min_col'] = mat_num_bbox['min_row'] = 0
  481. mat_num_bbox['max_col'] = int(tile_mat.find(self.xml_ns.NsWmts('MatrixWidth')).text) - 1
  482. mat_num_bbox['max_row'] = int(tile_mat.find(self.xml_ns.NsWmts('MatrixHeight')).text) - 1
  483. # get extend restriction in TileMatrixSetLink for the tile matrix, if exists
  484. tile_mat_set_limits = mat_set_link.find((self.xml_ns.NsWmts('TileMatrixSetLimits')))
  485. if tile_mat_set_limits is None:
  486. return mat_num_bbox
  487. tile_mat_id = tile_mat.find(self.xml_ns.NsOws('Identifier')).text
  488. tile_mat_limits = tile_mat_set_limits.findall(self.xml_ns.NsWmts('TileMatrixLimits'))
  489. for limit in tile_mat_limits:
  490. limit_tile_mat = limit.find(self.xml_ns.NsWmts('TileMatrix'))
  491. limit_id = limit_tile_mat.text
  492. if limit_id == tile_mat_id:
  493. for i in [['min_row', 'MinTileRow'], ['max_row', 'MaxTileRow'], \
  494. ['min_col', 'MinTileCol'], ['max_col', 'MaxTileCol']]:
  495. i_tag = limit.find(self.xml_ns.NsWmts(i[1]))
  496. mat_num_bbox[i[0]] = int(i_tag.text)
  497. break
  498. return mat_num_bbox
  499. def _computeRequestData(self, tile_mat, params, bbox, mat_num_bbox):
  500. """!Initialize data needed for iteration through tiles.
  501. """
  502. scale_den = float(tile_mat.find(self.xml_ns.NsWmts('ScaleDenominator')).text)
  503. pixel_span = scale_den * self.pixel_size / self._getMetersPerUnit()
  504. tl_str = tile_mat.find(self.xml_ns.NsWmts('TopLeftCorner')).text.split(' ')
  505. tl_corner = {}
  506. tl_corner['minx'] = float(tl_str[0])
  507. tl_corner['maxy'] = float(tl_str[1])
  508. tile_span = {}
  509. self.tile_size = {}
  510. self.tile_size['x'] = int(tile_mat.find(self.xml_ns.NsWmts('TileWidth')).text)
  511. tile_span['x'] = pixel_span * self.tile_size['x']
  512. self.tile_size['y'] = int(tile_mat.find(self.xml_ns.NsWmts('TileHeight')).text)
  513. tile_span['y'] = pixel_span * self.tile_size['y']
  514. self.url = params['url'] + ("SERVICE=WMTS&REQUEST=GetTile&VERSION=1.0.0&" \
  515. "LAYER=%s&STYLE=%s&FORMAT=%s&TILEMATRIXSET=%s&TILEMATRIX=%s" % \
  516. (params['layers'], params['styles'], params['format'],
  517. params['tile_matrix_set'], tile_mat.find(self.xml_ns.NsOws('Identifier')).text ))
  518. BaseRequestMgr._computeRequestData(self, bbox, tl_corner, tile_span, self.tile_size, mat_num_bbox)
  519. def GetNextTile(self):
  520. """!Get url for tile request from server and information for merging the tile with other tiles.
  521. """
  522. if not self.intersects or self.i_col > self.t_num_bbox['max_col']:
  523. return None
  524. query_url = self.url + "&TILECOL=%i&TILEROW=%i" % (int(self.i_col), int(self.i_row))
  525. self.tile_ref['t_cols_offset'] = int(self.tile_size['x'] * (self.i_col - self.t_num_bbox['min_col']))
  526. self.tile_ref['t_rows_offset'] = int(self.tile_size['y'] * (self.i_row - self.t_num_bbox['min_row']))
  527. if self.i_row >= self.t_num_bbox['max_row']:
  528. self.i_row = self.t_num_bbox['min_row']
  529. self.i_col += 1
  530. else:
  531. self.i_row += 1
  532. return query_url, self.tile_ref
  533. class OnEarthRequestMgr(BaseRequestMgr):
  534. def __init__(self, params, bbox, region, proj_srs, tile_service):
  535. """!Initializes data needed for iteration through tiles.
  536. """
  537. try:
  538. # checks all elements needed by this class,
  539. # invalid elements are removed
  540. self.cap_tree = OnEarthCapabilitiesTree(tile_service)
  541. except ParseError as error:
  542. grass.fatal(_("Unable to parse tile service file.\n%s\n") % str(error))
  543. root = self.cap_tree.getroot()
  544. # parse tile service file and get needed data for making tile requests
  545. url, self.tile_span, t_patt_bbox, self.tile_size = self._parseTileService(root, bbox, region, params)
  546. self.url = url
  547. self.url[0] = params['url'] + url[0]
  548. # initialize data needed for iteration through tiles
  549. self._computeRequestData(bbox, t_patt_bbox, self.tile_span, self.tile_size)
  550. def GetMapRegion(self):
  551. """!Get size in pixels and bounding box of raster where all tiles will be merged.
  552. """
  553. return self.map_region
  554. def _parseTileService(self, root, bbox, region, params):
  555. """!Get data from tile service file
  556. """
  557. tiled_patterns = root.find('TiledPatterns')
  558. tile_groups = self._getAllTiledGroup(tiled_patterns)
  559. if not tile_groups:
  560. grass.fatal(_("Unable to parse tile service file. \n No tag '%s' was found.") % 'TiledGroup')
  561. req_group = None
  562. for group in tile_groups:
  563. name = group.find('Name')
  564. if name.text == params['layers']:
  565. req_group = group
  566. break
  567. if req_group is None:
  568. grass.fatal(_("Tiled group '%s' was not found in tile service file") % params['layers'])
  569. group_t_patts = req_group.findall('TilePattern')
  570. best_patt = self._parseTilePattern(group_t_patts, bbox, region)
  571. urls = best_patt.text.split('\n')
  572. if params['urlparams']:
  573. url = self._insTimeToTilePatternUrl(params['urlparams'], urls)
  574. else:
  575. url = urls[0]
  576. for u in urls:
  577. if not 'time=${' in u:
  578. url = u
  579. url, t_bbox, width, height = self.cap_tree.gettilepatternurldata(url)
  580. tile_span = {}
  581. tile_span['x'] = abs(t_bbox[0] - t_bbox[2])
  582. tile_span['y'] = abs(t_bbox[1] - t_bbox[3])
  583. tile_pattern_bbox = req_group.find('LatLonBoundingBox')
  584. t_patt_bbox = {}
  585. for s in ['minx', 'miny', 'maxx', 'maxy']:
  586. t_patt_bbox[s] = float(tile_pattern_bbox.get(s))
  587. tile_size = {}
  588. tile_size['x'] = width
  589. tile_size['y'] = height
  590. return url, tile_span, t_patt_bbox, tile_size
  591. def _getAllTiledGroup(self, parent, tiled_groups = None):
  592. """!Get all 'TileGroup' elements
  593. """
  594. if not tiled_groups:
  595. tiled_groups = []
  596. tiled_groups += parent.findall('TiledGroup')
  597. new_groups = parent.findall('TiledGroups')
  598. for group in new_groups:
  599. self._getAllTiledGroup(group, tiled_groups)
  600. return tiled_groups
  601. def _parseTilePattern(self, group_t_patts, bbox, region):
  602. """!Find best tile pattern for requested resolution.
  603. """
  604. res = {}
  605. res['y'] = (bbox['maxy'] - bbox['miny']) / region['rows']
  606. res['x'] = (bbox['maxx'] - bbox['minx']) / region['cols']
  607. if res['x'] < res['y']:
  608. comp_res = 'x'
  609. else:
  610. comp_res = 'y'
  611. t_res = {}
  612. best_patt = None
  613. for pattern in group_t_patts:
  614. url, t_bbox, width, height = self.cap_tree.gettilepatternurldata(pattern.text.split('\n')[0])
  615. t_res['x'] = abs(t_bbox[0] - t_bbox[2]) / width
  616. t_res['y'] = abs(t_bbox[1] - t_bbox[3]) / height
  617. if best_patt is None:
  618. best_res = t_res[comp_res]
  619. best_patt = pattern
  620. first = False
  621. continue
  622. best_diff = best_res - res[comp_res]
  623. tile_diff = t_res[comp_res] - res[comp_res]
  624. if (best_diff < tile_diff and tile_diff < 0) or \
  625. (best_diff > tile_diff and best_diff > 0):
  626. best_res = t_res[comp_res]
  627. best_patt = pattern
  628. return best_patt
  629. def _insTimeToTilePatternUrl(self, url_params, urls):
  630. """!Time can be variable in some urls in OnEarth TMS.
  631. Insert requested time from 'urlparams' into the variable if any url of urls contains the variable.
  632. """
  633. url = None
  634. not_sup_params = []
  635. url_params_list = url_params.split('&')
  636. for param in url_params_list:
  637. try:
  638. k, v = param.split('=')
  639. except ValueError:
  640. grass.warning(_("Wrong form of parameter '%s' in '%s'. \n \
  641. The parameter was ignored.") % (param, 'urlparams'))
  642. if k != 'time':
  643. not_sup_params.append(k)
  644. continue
  645. has_time_var = False
  646. for url in urls:
  647. url_p_idxs = self.geturlparamidxs(url, k)
  648. if not url_p_idxs:
  649. continue
  650. url_p_value = url[url_p_idxs[0] + len(k + '=') : url_p_idxs[1]]
  651. if url_p_value[:2] == '${' and \
  652. url_p_value[len(url_p_value) - 1] == '}':
  653. url = url[:url_p_idxs[0]] + param + url[url_p_idxs[1]:]
  654. has_time_var = True
  655. break
  656. if not has_time_var:
  657. grass.warning(_("Parameter '%s' in '%s' is not variable in tile pattern url.") % (k, 'urlparams'))
  658. if not_sup_params:
  659. grass.warning(_("%s driver supports only '%s' parameter in '%s'. Other parameters are ignored.") % \
  660. ('OnEarth GRASS', 'time', 'urlparams'))
  661. return url
  662. def _computeRequestData(self, bbox, t_patt_bbox, tile_span, tile_size):
  663. """!Initialize data needed for iteration through tiles.
  664. """
  665. epsilon = 1e-15
  666. mat_num_bbox = {}
  667. mat_num_bbox['min_row'] = mat_num_bbox['min_col'] = 0
  668. mat_num_bbox['max_row'] = floor((t_patt_bbox['maxy'] - t_patt_bbox['miny'])/ tile_span['y'] + epsilon)
  669. mat_num_bbox['max_col'] = floor((t_patt_bbox['maxx'] - t_patt_bbox['minx'])/ tile_span['x'] + epsilon)
  670. BaseRequestMgr._computeRequestData(self, bbox, t_patt_bbox, self.tile_span, self.tile_size, mat_num_bbox)
  671. def GetNextTile(self):
  672. """!Get url for tile request from server and information for merging the tile with other tiles
  673. """
  674. if self.i_col > self.t_num_bbox['max_col']:
  675. return None
  676. x_offset = self.tile_span['x'] * self.i_col
  677. y_offset = self.tile_span['y'] * self.i_row
  678. query_url = self.url[0] + "&" + "bbox=%s,%s,%s,%s" % (float(self.query_bbox['minx'] + x_offset),
  679. float(self.query_bbox['miny'] - y_offset),
  680. float(self.query_bbox['maxx'] + x_offset),
  681. float(self.query_bbox['maxy'] - y_offset)) + self.url[1]
  682. self.tile_ref['t_cols_offset'] = int(self.tile_size['y'] * (self.i_col - self.t_num_bbox['min_col']))
  683. self.tile_ref['t_rows_offset'] = int(self.tile_size['x'] * (self.i_row - self.t_num_bbox['min_row']))
  684. if self.i_row >= self.t_num_bbox['max_row']:
  685. self.i_row = self.t_num_bbox['min_row']
  686. self.i_col += 1
  687. else:
  688. self.i_row += 1
  689. return query_url, self.tile_ref