wxdisplay.py 37 KB

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  1. """!
  2. @package vdigit.wxdisplay
  3. @brief wxGUI vector digitizer (display driver)
  4. Code based on wxVdigit C++ component from GRASS 6.4.0
  5. (gui/wxpython/vdigit). Converted to Python in 2010/12-2011/01.
  6. List of classes:
  7. - wxdisplay::DisplayDriver
  8. (C) 2007-2011 by the GRASS Development Team
  9. This program is free software under the GNU General Public License
  10. (>=v2). Read the file COPYING that comes with GRASS for details.
  11. @author Martin Landa <landa.martin gmail.com>
  12. """
  13. import locale
  14. import wx
  15. from core.debug import Debug
  16. from core.settings import UserSettings
  17. from core.utils import _
  18. try:
  19. from grass.lib.gis import *
  20. from grass.lib.vector import *
  21. from grass.lib.vedit import *
  22. except ImportError:
  23. pass
  24. log = None
  25. progress = None
  26. last_error = ''
  27. def print_error(msg, type):
  28. """!Redirect stderr"""
  29. global log
  30. if log:
  31. log.write(msg + os.linesep)
  32. else:
  33. print msg
  34. global last_error
  35. last_error += ' ' + msg
  36. return 0
  37. def print_progress(value):
  38. """!Redirect progress info"""
  39. global progress
  40. if progress:
  41. progress.SetValue(value)
  42. else:
  43. pass # discard progress info
  44. return 0
  45. def GetLastError():
  46. global last_error
  47. ret = last_error
  48. if ret[-1] != '.':
  49. ret += '.'
  50. last_error = '' # reset
  51. return ret
  52. try:
  53. errtype = CFUNCTYPE(UNCHECKED(c_int), String, c_int)
  54. errfunc = errtype(print_error)
  55. pertype = CFUNCTYPE(UNCHECKED(c_int), c_int)
  56. perfunc = pertype(print_progress)
  57. except NameError:
  58. pass
  59. class DisplayDriver:
  60. def __init__(self, device, deviceTmp, mapObj, window, glog, gprogress):
  61. """!Display driver used by vector digitizer
  62. @param device wx.PseudoDC device where to draw vector objects
  63. @param deviceTmp wx.PseudoDC device where to draw temporary vector objects
  64. @param mapOng Map Object (render.Map)
  65. @param windiow parent window for dialogs
  66. @param glog logging device (None to discard messages)
  67. @param gprogress progress bar device (None to discard message)
  68. """
  69. global errfunc, perfunc, log, progress
  70. log = glog
  71. progress = gprogress
  72. G_gisinit('wxvdigit')
  73. locale.setlocale(locale.LC_NUMERIC, 'C')
  74. G_set_error_routine(errfunc)
  75. G_set_percent_routine(perfunc)
  76. # G_set_fatal_error(FATAL_RETURN)
  77. self.mapInfo = None # open vector map (Map_Info structure)
  78. self.poMapInfo = None # pointer to self.mapInfo
  79. self.is3D = False # is open vector map 3D
  80. self.dc = device # PseudoDC devices
  81. self.dcTmp = deviceTmp
  82. self.mapObj = mapObj
  83. self.region = mapObj.GetCurrentRegion()
  84. self.window = window
  85. self.log = log # log device
  86. self.firstNode = True # track PseudoDC Id of selected features
  87. self.lastNodeId = -1
  88. # GRASS lib
  89. self.poPoints = Vect_new_line_struct()
  90. self.poCats = Vect_new_cats_struct()
  91. # selected objects
  92. self.selected = {
  93. 'field' : -1, # field number
  94. 'cats' : list(), # list of cats
  95. 'ids' : list(), # list of ids
  96. 'idsDupl' : list(), # list of duplicated features
  97. }
  98. # digitizer settings
  99. self.settings = {
  100. 'highlight' : None,
  101. 'highlightDupl' : { 'enabled' : False,
  102. 'color' : None },
  103. 'point' : { 'enabled' : False,
  104. 'color' : None },
  105. 'line' : { 'enabled' : False,
  106. 'color' : None },
  107. 'boundaryNo' : { 'enabled' : False,
  108. 'color' : None },
  109. 'boundaryOne' : { 'enabled' : False,
  110. 'color' : None },
  111. 'boundaryTwo' : { 'enabled' : False,
  112. 'color' : None },
  113. 'centroidIn' : { 'enabled' : False,
  114. 'color' : None },
  115. 'centroidOut' : { 'enabled' : False,
  116. 'color' : None },
  117. 'centroidDup' : { 'enabled' : False,
  118. 'color' : None },
  119. 'nodeOne' : { 'enabled' : False,
  120. 'color' : None },
  121. 'nodeTwo' : { 'enabled' : False,
  122. 'color' : None },
  123. 'vertex' : { 'enabled' : False,
  124. 'color' : None },
  125. 'area' : { 'enabled' : False,
  126. 'color' : None },
  127. 'direction' : { 'enabled' : False,
  128. 'color' : None },
  129. 'lineWidth' : -1, # screen units
  130. }
  131. # topology
  132. self._resetTopology()
  133. self._drawSelected = False
  134. self._drawSegments = False
  135. self.UpdateSettings()
  136. def __del__(self):
  137. """!Close currently open vector map"""
  138. G_unset_error_routine()
  139. G_unset_percent_routine()
  140. if self.poMapInfo:
  141. self.CloseMap()
  142. Vect_destroy_line_struct(self.poPoints)
  143. Vect_destroy_cats_struct(self.poCats)
  144. def _resetTopology(self):
  145. """!Reset topology dict
  146. """
  147. self.topology = {
  148. 'highlight' : 0,
  149. 'point' : 0,
  150. 'line' : 0,
  151. 'boundaryNo' : 0,
  152. 'boundaryOne' : 0,
  153. 'boundaryTwo' : 0,
  154. 'centroidIn' : 0,
  155. 'centroidOut' : 0,
  156. 'centroidDup' : 0,
  157. 'nodeOne' : 0,
  158. 'nodeTwo' : 0,
  159. 'vertex' : 0,
  160. }
  161. def _cell2Pixel(self, east, north, elev):
  162. """!Conversion from geographic coordinates (east, north)
  163. to screen (x, y)
  164. @todo 3D stuff...
  165. @param east, north, elev geographical coordinates
  166. @return x, y screen coordinates (integer)
  167. """
  168. map_res = max(self.region['ewres'], self.region['nsres'])
  169. w = self.region['center_easting'] - (self.mapObj.width / 2) * map_res
  170. n = self.region['center_northing'] + (self.mapObj.height / 2) * map_res
  171. return int((east - w) / map_res), int((n - north) / map_res)
  172. def _drawCross(self, pdc, point, size = 5):
  173. """!Draw cross symbol of given size to device content
  174. Used for points, nodes, vertices
  175. @param[in,out] PseudoDC where to draw
  176. @param point coordinates of center
  177. @param size size of the cross symbol
  178. @return 0 on success
  179. @return -1 on failure
  180. """
  181. if not pdc or not point:
  182. return -1
  183. pdc.DrawLine(point.x - size, point.y, point.x + size, point.y)
  184. pdc.DrawLine(point.x, point.y - size, point.x, point.y + size)
  185. return 0
  186. def _drawObject(self, robj):
  187. """!Draw given object to the device
  188. The object is defined as robject() from vedit.h.
  189. @param robj object to be rendered
  190. @return 1 on success
  191. @return -1 on failure (vector feature marked as dead, etc.)
  192. """
  193. if not self.dc or not self.dcTmp:
  194. return -1
  195. Debug.msg(1, "_drawObject(): line=%d type=%d npoints=%d", robj.fid, robj.type, robj.npoints)
  196. brush = None
  197. if self._isSelected(robj.fid):
  198. pdc = self.dcTmp
  199. if self.settings['highlightDupl']['enabled'] and self._isDuplicated(robj.fid):
  200. pen = wx.Pen(self.settings['highlightDupl']['color'], self.settings['lineWidth'], wx.SOLID)
  201. else:
  202. pen = wx.Pen(self.settings['highlight'], self.settings['lineWidth'], wx.SOLID)
  203. dcId = 1
  204. self.topology['highlight'] += 1
  205. if not self._drawSelected:
  206. return
  207. else:
  208. pdc = self.dc
  209. pen, brush = self._definePen(robj.type)
  210. dcId = 0
  211. pdc.SetPen(pen)
  212. if brush:
  213. pdc.SetBrush(brush)
  214. if robj.type & (TYPE_POINT | TYPE_CENTROIDIN | TYPE_CENTROIDOUT | TYPE_CENTROIDDUP |
  215. TYPE_NODEONE | TYPE_NODETWO | TYPE_VERTEX): # -> point
  216. if dcId > 0:
  217. if robj.type == TYPE_VERTEX:
  218. dcId = 3 # first vertex
  219. elif robj.type & (TYPE_NODEONE | TYPE_NODETWO):
  220. if self.firstNode:
  221. dcId = 1
  222. self.firstNode = False
  223. else:
  224. dcId = self.lastNodeId
  225. for i in range(robj.npoints):
  226. p = robj.point[i]
  227. if dcId > 0:
  228. pdc.SetId(dcId)
  229. dcId += 2
  230. self._drawCross(pdc, p)
  231. else:
  232. if dcId > 0 and self._drawSegments:
  233. self.fisrtNode = True
  234. self.lastNodeId = robj.npoints * 2 - 1
  235. dcId = 2 # first segment
  236. i = 0
  237. while i < robj.npoints - 1:
  238. point_beg = wx.Point(robj.point[i].x, robj.point[i].y)
  239. point_end = wx.Point(robj.point[i+1].x, robj.point[i+1].y)
  240. pdc.SetId(dcId) # set unique id & set bbox for each segment
  241. pdc.SetPen(pen)
  242. pdc.SetIdBounds(dcId - 1, wx.Rect(point_beg.x, point_beg.y, 0, 0))
  243. pdc.SetIdBounds(dcId, wx.RectPP(point_beg, point_end))
  244. pdc.DrawLine(point_beg.x, point_beg.y,
  245. point_end.x, point_end.y)
  246. i += 1
  247. dcId += 2
  248. pdc.SetIdBounds(dcId - 1, wx.Rect(robj.point[robj.npoints - 1].x,
  249. robj.point[robj.npoints - 1].y,
  250. 0, 0))
  251. else:
  252. points = list()
  253. for i in range(robj.npoints):
  254. p = robj.point[i]
  255. points.append(wx.Point(p.x, p.y))
  256. if robj.type == TYPE_AREA:
  257. pdc.DrawPolygon(points)
  258. else:
  259. pdc.DrawLines(points)
  260. def _definePen(self, rtype):
  261. """!Define pen/brush based on rendered object)
  262. Updates also self.topology dict
  263. @return pen, brush
  264. """
  265. if rtype == TYPE_POINT:
  266. key = 'point'
  267. elif rtype == TYPE_LINE:
  268. key = 'line'
  269. elif rtype == TYPE_BOUNDARYNO:
  270. key = 'boundaryNo'
  271. elif rtype == TYPE_BOUNDARYTWO:
  272. key = 'boundaryTwo'
  273. elif rtype == TYPE_BOUNDARYONE:
  274. key = 'boundaryOne'
  275. elif rtype == TYPE_CENTROIDIN:
  276. key = 'centroidIn'
  277. elif rtype == TYPE_CENTROIDOUT:
  278. key = 'centroidOut'
  279. elif rtype == TYPE_CENTROIDDUP:
  280. key = 'centroidDup'
  281. elif rtype == TYPE_NODEONE:
  282. key = 'nodeOne'
  283. elif rtype == TYPE_NODETWO:
  284. key = 'nodeTwo'
  285. elif rtype == TYPE_VERTEX:
  286. key = 'vertex'
  287. elif rtype == TYPE_AREA:
  288. key = 'area'
  289. elif rtype == TYPE_ISLE:
  290. key = 'isle'
  291. elif rtype == TYPE_DIRECTION:
  292. key = 'direction'
  293. if key not in ('direction', 'area', 'isle'):
  294. self.topology[key] += 1
  295. if key in ('area', 'isle'):
  296. pen = wx.TRANSPARENT_PEN
  297. if key == 'area':
  298. brush = wx.Brush(self.settings[key]['color'], wx.SOLID)
  299. else:
  300. brush = wx.TRANSPARENT_BRUSH
  301. else:
  302. pen = wx.Pen(self.settings[key]['color'], self.settings['lineWidth'], wx.SOLID)
  303. brush = None
  304. return pen, brush
  305. def _getDrawFlag(self):
  306. """!Get draw flag from the settings
  307. See vedit.h for list of draw flags.
  308. @return draw flag (int)
  309. """
  310. ret = 0
  311. if self.settings['point']['enabled']:
  312. ret |= DRAW_POINT
  313. if self.settings['line']['enabled']:
  314. ret |= DRAW_LINE
  315. if self.settings['boundaryNo']['enabled']:
  316. ret |= DRAW_BOUNDARYNO
  317. if self.settings['boundaryTwo']['enabled']:
  318. ret |= DRAW_BOUNDARYTWO
  319. if self.settings['boundaryOne']['enabled']:
  320. ret |= DRAW_BOUNDARYONE
  321. if self.settings['centroidIn']['enabled']:
  322. ret |= DRAW_CENTROIDIN
  323. if self.settings['centroidOut']['enabled']:
  324. ret |= DRAW_CENTROIDOUT
  325. if self.settings['centroidDup']['enabled']:
  326. ret |= DRAW_CENTROIDDUP
  327. if self.settings['nodeOne']['enabled']:
  328. ret |= DRAW_NODEONE
  329. if self.settings['nodeTwo']['enabled']:
  330. ret |= DRAW_NODETWO
  331. if self.settings['vertex']['enabled']:
  332. ret |= DRAW_VERTEX
  333. if self.settings['area']['enabled']:
  334. ret |= DRAW_AREA
  335. if self.settings['direction']['enabled']:
  336. ret |= DRAW_DIRECTION
  337. return ret
  338. def _isSelected(self, line, force = False):
  339. """!Check if vector object selected?
  340. @param line feature id
  341. @return True if vector object is selected
  342. @return False if vector object is not selected
  343. """
  344. if line in self.selected['ids']:
  345. return True
  346. return False
  347. def _isDuplicated(self, line):
  348. """!Check for already marked duplicates
  349. @param line feature id
  350. @return True line already marked as duplicated
  351. @return False not duplicated
  352. """
  353. return line in self.selected['idsDupl']
  354. def _getRegionBox(self):
  355. """!Get bound_box() from current region
  356. @return bound_box
  357. """
  358. box = bound_box()
  359. box.N = self.region['n']
  360. box.S = self.region['s']
  361. box.E = self.region['e']
  362. box.W = self.region['w']
  363. box.T = PORT_DOUBLE_MAX
  364. box.B = -PORT_DOUBLE_MAX
  365. return box
  366. def DrawMap(self, force = False):
  367. """!Draw content of the vector map to the device
  368. @param force force drawing
  369. @return number of drawn features
  370. @return -1 on error
  371. """
  372. Debug.msg(1, "DisplayDriver.DrawMap(): force=%d", force)
  373. if not self.poMapInfo or not self.dc or not self.dcTmp:
  374. return -1
  375. rlist = Vedit_render_map(self.poMapInfo, byref(self._getRegionBox()), self._getDrawFlag(),
  376. self.region['center_easting'], self.region['center_northing'],
  377. self.mapObj.width, self.mapObj.height,
  378. max(self.region['nsres'], self.region['ewres'])).contents
  379. self._resetTopology()
  380. self.dc.BeginDrawing()
  381. self.dcTmp.BeginDrawing()
  382. # draw objects
  383. for i in range(rlist.nitems):
  384. robj = rlist.item[i].contents
  385. self._drawObject(robj)
  386. self.dc.EndDrawing()
  387. self.dcTmp.EndDrawing()
  388. # reset list of selected features by cat
  389. # list of ids - see IsSelected()
  390. self.selected['field'] = -1
  391. self.selected['cats'] = list()
  392. def _getSelectType(self):
  393. """!Get type(s) to be selected
  394. Used by SelectLinesByBox() and SelectLineByPoint()
  395. """
  396. ftype = 0
  397. for feature in (('point', GV_POINT),
  398. ('line', GV_LINE),
  399. ('centroid', GV_CENTROID),
  400. ('boundary', GV_BOUNDARY)):
  401. if UserSettings.Get(group = 'vdigit', key = 'selectType',
  402. subkey = [feature[0], 'enabled']):
  403. ftype |= feature[1]
  404. return ftype
  405. def _validLine(self, line):
  406. """!Check if feature id is valid
  407. @param line feature id
  408. @return True valid feature id
  409. @return False invalid
  410. """
  411. if line > 0 and line <= Vect_get_num_lines(self.poMapInfo):
  412. return True
  413. return False
  414. def SelectLinesByBox(self, bbox, ltype = None, drawSeg = False, poMapInfo = None):
  415. """!Select vector objects by given bounding box
  416. If line id is already in the list of selected lines, then it will
  417. be excluded from this list.
  418. @param bbox bounding box definition
  419. @param ltype feature type or None for default
  420. @param drawSeg True to draw segments of line
  421. @param poMapInfo use external Map_info, None for self.poMapInfo
  422. @return number of selected features
  423. @return None on error
  424. """
  425. thisMapInfo = poMapInfo is None
  426. if not poMapInfo:
  427. poMapInfo = self.poMapInfo
  428. if not poMapInfo:
  429. return None
  430. if thisMapInfo:
  431. self._drawSegments = drawSeg
  432. self._drawSelected = True
  433. # select by ids
  434. self.selected['cats'] = list()
  435. poList = Vect_new_list()
  436. x1, y1 = bbox[0]
  437. x2, y2 = bbox[1]
  438. poBbox = Vect_new_line_struct()
  439. Vect_append_point(poBbox, x1, y1, 0.0)
  440. Vect_append_point(poBbox, x2, y1, 0.0)
  441. Vect_append_point(poBbox, x2, y2, 0.0)
  442. Vect_append_point(poBbox, x1, y2, 0.0)
  443. Vect_append_point(poBbox, x1, y1, 0.0)
  444. if not ltype:
  445. ltype = self._getSelectType()
  446. Vect_select_lines_by_polygon(poMapInfo, poBbox,
  447. 0, None, # isles
  448. ltype, poList)
  449. flist = poList.contents
  450. nlines = flist.n_values
  451. Debug.msg(1, "DisplayDriver.SelectLinesByBox() num = %d", nlines)
  452. for i in range(nlines):
  453. line = flist.value[i]
  454. if UserSettings.Get(group = 'vdigit', key = 'selectInside',
  455. subkey = 'enabled'):
  456. inside = True
  457. if not self._validLine(line):
  458. return None
  459. Vect_read_line(poMapInfo, self.poPoints, None, line)
  460. points = self.poPoints.contents
  461. for p in range(points.n_points):
  462. if not Vect_point_in_poly(points.x[p], points.y[p],
  463. poBbox):
  464. inside = False
  465. break
  466. if not inside:
  467. continue # skip lines just overlapping bbox
  468. if not self._isSelected(line):
  469. self.selected['ids'].append(line)
  470. else:
  471. self.selected['ids'].remove(line)
  472. Vect_destroy_line_struct(poBbox)
  473. Vect_destroy_list(poList)
  474. return nlines
  475. def SelectAreaByPoint(self, point, poMapInfo = None):
  476. thisMapInfo = poMapInfo is None
  477. if not poMapInfo:
  478. poMapInfo = self.poMapInfo
  479. if not poMapInfo:
  480. return { 'area' : -1, 'centroid': -1 }
  481. if thisMapInfo:
  482. self._drawSelected = True
  483. box = bound_box()
  484. for area in range(1, Vect_get_num_areas(poMapInfo)+1):
  485. Vect_get_area_box(poMapInfo, area, byref(box))
  486. if Vect_point_in_area(point[0], point[1], poMapInfo, area, byref(box)) == 1:
  487. centroid = Vect_get_area_centroid(poMapInfo, area)
  488. if not self._isSelected(centroid):
  489. self.selected['ids'].append(centroid)
  490. else:
  491. self.selected['ids'].remove(centroid)
  492. return { 'area' : area, 'centroid' : centroid}
  493. return { 'area' : -1, 'centroid': -1 }
  494. def SelectLineByPoint(self, point, ltype = None, poMapInfo = None):
  495. """!Select vector feature by given point in given
  496. threshold
  497. Only one vector object can be selected. Bounding boxes of
  498. all segments are stores.
  499. @param point points coordinates (x, y)
  500. @param ltype feature type or None for default
  501. @param poMapInfo use external Map_info, None for self.poMapInfo
  502. @return dict {'line' : feature id, 'point' : point on line}
  503. """
  504. thisMapInfo = poMapInfo is None
  505. if not poMapInfo:
  506. poMapInfo = self.poMapInfo
  507. if not poMapInfo:
  508. return { 'line' : -1, 'point': None }
  509. if thisMapInfo:
  510. self._drawSelected = True
  511. # select by ids
  512. self.selected['cats'] = list()
  513. poFound = Vect_new_list()
  514. if ltype is None:
  515. ltype = self._getSelectType()
  516. lineNearest = Vect_find_line_list(poMapInfo, point[0], point[1], 0,
  517. ltype, self.GetThreshold(), self.is3D,
  518. None, poFound)
  519. Debug.msg(1, "DisplayDriver.SelectLineByPoint() found = %d", lineNearest)
  520. if lineNearest > 0:
  521. if not self._isSelected(lineNearest):
  522. self.selected['ids'].append(lineNearest)
  523. else:
  524. self.selected['ids'].remove(lineNearest)
  525. px = c_double()
  526. py = c_double()
  527. pz = c_double()
  528. if not self._validLine(lineNearest):
  529. return { 'line' : -1, 'point': None }
  530. ftype = Vect_read_line(poMapInfo, self.poPoints, self.poCats, lineNearest)
  531. Vect_line_distance(self.poPoints, point[0], point[1], 0.0, self.is3D,
  532. byref(px), byref(py), byref(pz),
  533. None, None, None)
  534. # check for duplicates
  535. if self.settings['highlightDupl']['enabled']:
  536. found = poFound.contents
  537. for i in range(found.n_values):
  538. line = found.value[i]
  539. if line != lineNearest:
  540. self.selected['ids'].append(line)
  541. self.GetDuplicates()
  542. for i in range(found.n_values):
  543. line = found.value[i]
  544. if line != lineNearest and not self._isDuplicated(line):
  545. self.selected['ids'].remove(line)
  546. Vect_destroy_list(poFound)
  547. if thisMapInfo:
  548. # drawing segments can be very expensive
  549. # only one features selected
  550. self._drawSegments = True
  551. return { 'line' : lineNearest,
  552. 'point' : (px.value, py.value, pz.value) }
  553. def _listToIList(self, plist):
  554. """!Generate from list struct_ilist
  555. """
  556. ilist = Vect_new_list()
  557. for val in plist:
  558. Vect_list_append(ilist, val)
  559. return ilist
  560. def GetSelectedIList(self, ilist = None):
  561. """!Get list of selected objects as struct_ilist
  562. Returned IList must be freed by Vect_destroy_list().
  563. @return struct_ilist
  564. """
  565. if ilist:
  566. return self._listToIList(ilist)
  567. return self._listToIList(self.selected['ids'])
  568. def GetSelected(self, grassId = True):
  569. """!Get ids of selected objects
  570. @param grassId True for feature id, False for PseudoDC id
  571. @return list of ids of selected vector objects
  572. """
  573. if grassId:
  574. return self.selected['ids']
  575. dc_ids = list()
  576. if not self._drawSegments:
  577. dc_ids.append(1)
  578. elif len(self.selected['ids']) > 0:
  579. # only first selected feature
  580. Vect_read_line(self.poMapInfo, self.poPoints, None,
  581. self.selected['ids'][0])
  582. points = self.poPoints.contents
  583. # node - segment - vertex - segment - node
  584. for i in range(1, 2 * points.n_points):
  585. dc_ids.append(i)
  586. return dc_ids
  587. def SetSelected(self, ids, layer = -1):
  588. """!Set selected vector objects
  589. @param list of ids (None to unselect features)
  590. @param layer layer number for features selected based on category number
  591. """
  592. if ids:
  593. self._drawSelected = True
  594. else:
  595. self._drawSelected = False
  596. self.selected['field'] = layer
  597. if layer > 0:
  598. self.selected['cats'] = ids
  599. self.selected['ids'] = list()
  600. ### cidx is not up-to-date
  601. # Vect_cidx_find_all(self.poMapInfo, layer, GV_POINTS | GV_LINES, lid, ilist)
  602. nlines = Vect_get_num_lines(self.poMapInfo)
  603. for line in range(1, nlines + 1):
  604. if not Vect_line_alive(self.poMapInfo, line):
  605. continue
  606. ltype = Vect_read_line (self.poMapInfo, None, self.poCats, line)
  607. if not (ltype & (GV_POINTS | GV_LINES)):
  608. continue
  609. found = False
  610. cats = self.poCats.contents
  611. for i in range(0, cats.n_cats):
  612. for cat in self.selected['cats']:
  613. if cats.cat[i] == cat:
  614. found = True
  615. break
  616. if found:
  617. self.selected['ids'].append(line)
  618. else:
  619. self.selected['ids'] = ids
  620. self.selected['cats'] = []
  621. def GetSelectedVertex(self, pos):
  622. """!Get PseudoDC vertex id of selected line
  623. Set bounding box for vertices of line.
  624. @param pos position
  625. @return id of center, left and right vertex
  626. @return 0 no line found
  627. @return -1 on error
  628. """
  629. returnId = list()
  630. # only one object can be selected
  631. if len(self.selected['ids']) != 1 or not self._drawSegments:
  632. return returnId
  633. startId = 1
  634. line = self.selected['ids'][0]
  635. if not self._validLine(line):
  636. return -1
  637. ftype = Vect_read_line(self.poMapInfo, self.poPoints, self.poCats, line)
  638. minDist = 0.0
  639. Gid = -1
  640. # find the closest vertex (x, y)
  641. DCid = 1
  642. points = self.poPoints.contents
  643. for idx in range(points.n_points):
  644. dist = Vect_points_distance(pos[0], pos[1], 0.0,
  645. points.x[idx], points.y[idx], points.z[idx], 0)
  646. if idx == 0:
  647. minDist = dist
  648. Gid = idx
  649. else:
  650. if minDist > dist:
  651. minDist = dist
  652. Gid = idx
  653. vx, vy = self._cell2Pixel(points.x[idx], points.y[idx], points.z[idx])
  654. rect = wx.Rect(vx, vy, 0, 0)
  655. self.dc.SetIdBounds(DCid, rect)
  656. DCid += 2
  657. if minDist > self.GetThreshold():
  658. return returnId
  659. # translate id
  660. DCid = Gid * 2 + 1
  661. # add selected vertex
  662. returnId.append(DCid)
  663. # left vertex
  664. if DCid == startId:
  665. returnId.append(-1)
  666. else:
  667. returnId.append(DCid - 2)
  668. # right vertex
  669. if DCid == (points.n_points - 1) * 2 + startId:
  670. returnId.append(-1)
  671. else:
  672. returnId.append(DCid + 2)
  673. return returnId
  674. def GetRegionSelected(self):
  675. """!Get minimal region extent of selected features
  676. @return n,s,w,e
  677. """
  678. regionBox = bound_box()
  679. lineBox = bound_box()
  680. setRegion = True
  681. nareas = Vect_get_num_areas(self.poMapInfo)
  682. for line in self.selected['ids']:
  683. area = Vect_get_centroid_area(self.poMapInfo, line)
  684. if area > 0 and area <= nareas:
  685. if not Vect_get_area_box(self.poMapInfo, area, byref(lineBox)):
  686. continue
  687. else:
  688. if not Vect_get_line_box(self.poMapInfo, line, byref(lineBox)):
  689. continue
  690. if setRegion:
  691. Vect_box_copy(byref(regionBox), byref(lineBox))
  692. setRegion = False
  693. else:
  694. Vect_box_extend(byref(regionBox), byref(lineBox))
  695. return regionBox.N, regionBox.S, regionBox.W, regionBox.E
  696. def DrawSelected(self, flag):
  697. """!Draw selected features
  698. @param flag True to draw selected features
  699. """
  700. self._drawSelected = bool(flag)
  701. def CloseMap(self):
  702. """!Close vector map
  703. @return 0 on success
  704. @return non-zero on error
  705. """
  706. ret = 0
  707. if self.poMapInfo:
  708. # rebuild topology
  709. Vect_build_partial(self.poMapInfo, GV_BUILD_NONE)
  710. Vect_build(self.poMapInfo)
  711. # close map and store topo/cidx
  712. ret = Vect_close(self.poMapInfo)
  713. del self.mapInfo
  714. self.poMapInfo = self.mapInfo = None
  715. return ret
  716. def OpenMap(self, name, mapset, update = True, tmp = False):
  717. """!Open vector map by the driver
  718. @param name name of vector map to be open
  719. @param mapset name of mapset where the vector map lives
  720. @param update True to open vector map in update mode
  721. @param tmp True to open temporary vector map
  722. @return map_info
  723. @return None on error
  724. """
  725. Debug.msg("DisplayDriver.OpenMap(): name=%s mapset=%s updated=%d",
  726. name, mapset, update)
  727. if not self.mapInfo:
  728. self.mapInfo = Map_info()
  729. self.poMapInfo = pointer(self.mapInfo)
  730. # open existing map
  731. if update:
  732. if tmp:
  733. open_fn = Vect_open_tmp_update
  734. else:
  735. open_fn = Vect_open_update
  736. else:
  737. if tmp:
  738. open_fn = Vect_open_tmp_old
  739. else:
  740. open_fn = Vect_open_old
  741. ret = open_fn(self.poMapInfo, name, mapset)
  742. if ret == -1:
  743. # fatal error detected
  744. del self.mapInfo
  745. self.poMapInfo = self.mapInfo = None
  746. elif ret < 2:
  747. # map open at level 1, try to build topology
  748. dlg = wx.MessageDialog(parent = self.window,
  749. message = _("Topology for vector map <%s> is not available. "
  750. "Topology is required by digitizer. Do you want to "
  751. "rebuild topology (takes some time) and open the vector map "
  752. "for editing?") % name,
  753. caption=_("Topology missing"),
  754. style = wx.YES_NO | wx.YES_DEFAULT | wx.ICON_QUESTION | wx.CENTRE)
  755. ret = dlg.ShowModal()
  756. if ret != wx.ID_YES:
  757. del self.mapInfo
  758. self.poMapInfo = self.mapInfo = None
  759. else:
  760. Vect_build(self.poMapInfo)
  761. if update:
  762. Vect_set_updated(self.poMapInfo, True) # track updated lines at update mode
  763. self.is3D = Vect_is_3d(self.poMapInfo)
  764. return self.poMapInfo
  765. def GetMapBoundingBox(self):
  766. """!Get bounding box of (opened) vector map layer
  767. @return (w,s,b,e,n,t)
  768. """
  769. if not self.poMapInfo:
  770. return None
  771. bbox = bound_box()
  772. Vect_get_map_box(self.poMapInfo, byref(bbox))
  773. return bbox.W, bbox.S, bbox.B, \
  774. bbox.E, bbox.N, bbox.T
  775. def UpdateSettings(self, alpha = 255):
  776. """!Update display driver settings
  777. @todo map units
  778. @param alpha color value for aplha channel
  779. """
  780. color = dict()
  781. for key in self.settings.keys():
  782. if key == 'lineWidth':
  783. self.settings[key] = int(UserSettings.Get(group = 'vdigit', key = 'lineWidth',
  784. subkey = 'value'))
  785. continue
  786. color = wx.Colour(UserSettings.Get(group = 'vdigit', key = 'symbol',
  787. subkey = [key, 'color'])[0],
  788. UserSettings.Get(group = 'vdigit', key = 'symbol',
  789. subkey = [key, 'color'])[1],
  790. UserSettings.Get(group = 'vdigit', key = 'symbol',
  791. subkey = [key, 'color'])[2],
  792. alpha)
  793. if key == 'highlight':
  794. self.settings[key] = color
  795. continue
  796. if key == 'highlightDupl':
  797. self.settings[key]['enabled'] = bool(UserSettings.Get(group = 'vdigit', key = 'checkForDupl',
  798. subkey = 'enabled'))
  799. else:
  800. self.settings[key]['enabled'] = bool(UserSettings.Get(group = 'vdigit', key = 'symbol',
  801. subkey = [key, 'enabled']))
  802. self.settings[key]['color'] = color
  803. def UpdateRegion(self):
  804. """!Update geographical region used by display driver
  805. """
  806. self.region = self.mapObj.GetCurrentRegion()
  807. def GetThreshold(self, type = 'snapping', value = None, units = None):
  808. """!Return threshold value in map units
  809. @param type snapping mode (node, vertex)
  810. @param value threshold to be set up
  811. @param units units (map, screen)
  812. @return threshold value
  813. """
  814. if value is None:
  815. value = UserSettings.Get(group = 'vdigit', key = type, subkey = 'value')
  816. if units is None:
  817. units = UserSettings.Get(group = 'vdigit', key = type, subkey = 'units')
  818. if value < 0:
  819. value = (self.region['nsres'] + self.region['ewres']) / 2.0
  820. if units == "screen pixels":
  821. # pixel -> cell
  822. res = max(self.region['nsres'], self.region['ewres'])
  823. return value * res
  824. return value
  825. def GetDuplicates(self):
  826. """!Return ids of (selected) duplicated vector features
  827. """
  828. if not self.poMapInfo:
  829. return
  830. ids = dict()
  831. APoints = Vect_new_line_struct()
  832. BPoints = Vect_new_line_struct()
  833. self.selected['idsDupl'] = list()
  834. for i in range(len(self.selected['ids'])):
  835. line1 = self.selected['ids'][i]
  836. if self._isDuplicated(line1):
  837. continue
  838. Vect_read_line(self.poMapInfo, APoints, None, line1)
  839. for line2 in self.selected['ids']:
  840. if line1 == line2 or self._isDuplicated(line2):
  841. continue
  842. Vect_read_line(self.poMapInfo, BPoints, None, line2)
  843. if Vect_line_check_duplicate(APoints, BPoints, WITHOUT_Z):
  844. if i not in ids:
  845. ids[i] = list()
  846. ids[i].append((line1, self._getCatString(line1)))
  847. self.selected['idsDupl'].append(line1)
  848. ids[i].append((line2, self._getCatString(line2)))
  849. self.selected['idsDupl'].append(line2)
  850. Vect_destroy_line_struct(APoints)
  851. Vect_destroy_line_struct(BPoints)
  852. return ids
  853. def _getCatString(self, line):
  854. Vect_read_line(self.poMapInfo, None, self.poCats, line)
  855. cats = self.poCats.contents
  856. catsDict = dict()
  857. for i in range(cats.n_cats):
  858. layer = cats.field[i]
  859. if layer not in catsDict:
  860. catsDict[layer] = list()
  861. catsDict[layer].append(cats.cat[i])
  862. catsStr = ''
  863. for l, c in catsDict.iteritems():
  864. catsStr = '%d: (%s)' % (l, ','.join(map(str, c)))
  865. return catsStr
  866. def UnSelect(self, lines):
  867. """!Unselect vector features
  868. @param lines list of feature id(s)
  869. """
  870. checkForDupl = False
  871. for line in lines:
  872. if self._isSelected(line):
  873. self.selected['ids'].remove(line)
  874. if self.settings['highlightDupl']['enabled'] and self._isDuplicated(line):
  875. checkForDupl = True
  876. if checkForDupl:
  877. self.GetDuplicates()
  878. return len(self.selected['ids'])