nviz_mapdisp.py 77 KB

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  1. """!
  2. @package nviz_mapdisp.py
  3. @brief wxGUI 3D view mode (map canvas)
  4. This module implements 3D visualization mode for map display.
  5. List of classes:
  6. - NvizThread
  7. - GLWindow
  8. (C) 2008-2011 by the GRASS Development Team
  9. This program is free software under the GNU General Public
  10. License (>=v2). Read the file COPYING that comes with GRASS
  11. for details.
  12. @author Martin Landa <landa.martin gmail.com> (Google SoC 2008/2010)
  13. @author Anna Kratochvilova <KratochAnna seznam.cz> (Google SoC 2011)
  14. """
  15. import os
  16. import sys
  17. import time
  18. import copy
  19. import math
  20. from threading import Thread
  21. import wx
  22. import wx.lib.scrolledpanel as scrolled
  23. from wx.lib.newevent import NewEvent
  24. from wx import glcanvas
  25. import gcmd
  26. import globalvar
  27. from debug import Debug
  28. from mapdisp_window import MapWindow
  29. from goutput import wxCmdOutput
  30. from preferences import globalSettings as UserSettings
  31. from workspace import Nviz as NvizDefault
  32. import wxnviz
  33. wxUpdateProperties, EVT_UPDATE_PROP = NewEvent()
  34. wxUpdateView, EVT_UPDATE_VIEW = NewEvent()
  35. wxUpdateLight, EVT_UPDATE_LIGHT = NewEvent()
  36. wxUpdateCPlane, EVT_UPDATE_CPLANE = NewEvent()
  37. class NvizThread(Thread):
  38. def __init__(self, log, progressbar, window):
  39. Thread.__init__(self)
  40. Debug.msg(5, "NvizThread.__init__():")
  41. self.log = log
  42. self.progressbar = progressbar
  43. self.window = window
  44. self._display = None
  45. self.setDaemon(True)
  46. def run(self):
  47. self._display = wxnviz.Nviz(self.log, self.progressbar)
  48. def GetDisplay(self):
  49. """!Get display instance"""
  50. return self._display
  51. class GLWindow(MapWindow, glcanvas.GLCanvas):
  52. """!OpenGL canvas for Map Display Window"""
  53. def __init__(self, parent, id = wx.ID_ANY,
  54. Map = None, tree = None, lmgr = None):
  55. self.parent = parent # MapFrame
  56. Debug.msg(5, "GLCanvas.__init__(): begin")
  57. glcanvas.GLCanvas.__init__(self, parent, id)
  58. MapWindow.__init__(self, parent, id,
  59. Map, tree, lmgr)
  60. self.Hide()
  61. self.init = False
  62. self.initView = False
  63. # render mode
  64. self.render = { 'quick' : False,
  65. # do not render vector lines in quick mode
  66. 'vlines' : False,
  67. 'vpoints' : False }
  68. self.mouse = {
  69. 'use': 'pointer'
  70. }
  71. self.cursors = {
  72. 'default' : wx.StockCursor(wx.CURSOR_ARROW),
  73. 'cross' : wx.StockCursor(wx.CURSOR_CROSS),
  74. }
  75. # list of loaded map layers (layer tree items)
  76. self.layers = list()
  77. # list of constant surfaces
  78. self.constants = list()
  79. # list of cutting planes
  80. self.cplanes = list()
  81. # list of query points
  82. self.qpoints = list()
  83. # overlays
  84. self.overlays = {}
  85. self.imagedict = {}
  86. self.shapes = []
  87. self.dragShape = None
  88. self.dragImage = None
  89. #
  90. # use display region instead of computational
  91. #
  92. os.environ['GRASS_REGION'] = self.Map.SetRegion()
  93. #
  94. # create nviz instance
  95. #
  96. if self.lmgr:
  97. self.log = self.lmgr.goutput
  98. logerr = self.lmgr.goutput.cmd_stderr
  99. logmsg = self.lmgr.goutput.cmd_output
  100. else:
  101. self.log = logmsg = sys.stdout
  102. logerr = sys.stderr
  103. self.nvizThread = NvizThread(logerr,
  104. self.parent.statusbarWin['progress'],
  105. logmsg)
  106. self.nvizThread.start()
  107. time.sleep(.1)
  108. self._display = self.nvizThread.GetDisplay()
  109. # GRASS_REGION needed only for initialization
  110. del os.environ['GRASS_REGION']
  111. self.img = wx.Image(self.Map.mapfile, wx.BITMAP_TYPE_ANY)
  112. # size of MapWindow, to avoid resizing if size is the same
  113. self.size = (0,0)
  114. #
  115. # default values
  116. #
  117. self.view = copy.deepcopy(UserSettings.Get(group = 'nviz', key = 'view')) # copy
  118. self.iview = UserSettings.Get(group = 'nviz', key = 'view', internal = True)
  119. self.nvizDefault = NvizDefault()
  120. self.light = copy.deepcopy(UserSettings.Get(group = 'nviz', key = 'light')) # copy
  121. self.decoration = self.nvizDefault.SetDecorDefaultProp()
  122. arwSize = self._display.GetLongDim()/8.
  123. coef = 0.01
  124. if arwSize < 1:
  125. coef = 100.
  126. self.decoration['arrow']['size'] = int(arwSize * coef)/coef
  127. self.Bind(wx.EVT_ERASE_BACKGROUND, self.OnEraseBackground)
  128. self.Bind(wx.EVT_SIZE, self.OnSize)
  129. self.Bind(wx.EVT_PAINT, self.OnPaint)
  130. self.Bind(wx.EVT_MOUSE_EVENTS, self.OnMouseAction)
  131. self.Bind(wx.EVT_MOTION, self.OnMotion)
  132. self.Bind(EVT_UPDATE_PROP, self.UpdateMapObjProperties)
  133. self.Bind(EVT_UPDATE_VIEW, self.UpdateView)
  134. self.Bind(EVT_UPDATE_LIGHT, self.UpdateLight)
  135. self.Bind(EVT_UPDATE_CPLANE, self.UpdateCPlane)
  136. self.Bind(wx.EVT_CLOSE, self.OnClose)
  137. Debug.msg(5, "GLCanvas.__init__(): end")
  138. #cplanes cannot be initialized now
  139. wx.CallAfter(self.InitCPlanes)
  140. def InitCPlanes(self):
  141. """!Initialize cutting planes list"""
  142. for i in range(self._display.GetCPlanesCount()):
  143. cplane = copy.deepcopy(UserSettings.Get(group = 'nviz', key = 'cplane'))
  144. cplane['on'] = False
  145. self.cplanes.append(cplane)
  146. def GetOverlay(self):
  147. """!Converts rendered overlay files to wx.Image
  148. Updates self.imagedict
  149. @return list of images
  150. """
  151. imgs = []
  152. for overlay in self.Map.GetListOfLayers(l_type = "overlay", l_active = True):
  153. if os.path.isfile(overlay.mapfile) and os.path.getsize(overlay.mapfile):
  154. img = wx.Image(overlay.mapfile, wx.BITMAP_TYPE_ANY)
  155. self.imagedict[img] = { 'id' : overlay.id,
  156. 'layer' : overlay }
  157. imgs.append(img)
  158. return imgs
  159. def OnClose(self, event):
  160. # cleanup when window actually closes (on quit) and not just is hidden
  161. self.Reset()
  162. def OnEraseBackground(self, event):
  163. pass # do nothing, to avoid flashing on MSW
  164. def OnSize(self, event):
  165. size = self.GetClientSize()
  166. if self.size != size \
  167. and self.GetContext():
  168. Debug.msg(3, "GLCanvas.OnSize(): w = %d, h = %d" % \
  169. (size.width, size.height))
  170. self.SetCurrent()
  171. self._display.ResizeWindow(size.width,
  172. size.height)
  173. self.size = size
  174. event.Skip()
  175. def OnPaint(self, event):
  176. Debug.msg(1, "GLCanvas.OnPaint()")
  177. dc = wx.PaintDC(self)
  178. self.DoPaint()
  179. self.DrawShapes(dc)
  180. def DoPaint(self):
  181. self.SetCurrent()
  182. if not self.initView:
  183. self._display.InitView()
  184. self.initView = True
  185. self.LoadDataLayers()
  186. self.UnloadDataLayers()
  187. if not self.init:
  188. self.ResetView()
  189. if hasattr(self.lmgr, "nviz"):
  190. self.lmgr.nviz.UpdatePage('view')
  191. self.lmgr.nviz.UpdatePage('light')
  192. self.lmgr.nviz.UpdatePage('cplane')
  193. self.lmgr.nviz.UpdatePage('decoration')
  194. layer = self.GetSelectedLayer()
  195. if layer:
  196. if layer.type == 'raster':
  197. self.lmgr.nviz.UpdatePage('surface')
  198. self.lmgr.nviz.UpdatePage('fringe')
  199. elif layer.type == 'vector':
  200. self.lmgr.nviz.UpdatePage('vector')
  201. self.lmgr.nviz.UpdateSettings()
  202. # update widgets
  203. win = self.lmgr.nviz.FindWindowById( \
  204. self.lmgr.nviz.win['vector']['lines']['surface'])
  205. win.SetItems(self.GetLayerNames('raster'))
  206. self.init = True
  207. self.UpdateMap()
  208. def UpdateOverlays(self):
  209. if self.img is None:
  210. self.Map.ChangeMapSize(self.GetClientSize())
  211. self.Map.RenderOverlays(force = True)
  212. else:
  213. self.Map.RenderOverlays(force = False)
  214. self.shapes = []
  215. for img in self.GetOverlay():
  216. # draw any active and defined overlays
  217. if self.imagedict[img]['layer'].IsActive():
  218. id = self.imagedict[img]['id']
  219. coords = self.overlays[id]['coords']
  220. bitmap = wx.BitmapFromImage(img)
  221. self.shapes.append(DragShape(bitmap, id))
  222. self.shapes[-1].pos = coords[:2]
  223. self.Refresh(False)
  224. def OnMouseAction(self, event):
  225. """!Handle mouse events"""
  226. # zoom with mouse wheel
  227. if event.GetWheelRotation() != 0:
  228. self.OnMouseWheel(event)
  229. # left mouse button pressed
  230. elif event.LeftDown():
  231. self.OnLeftDown(event)
  232. # left mouse button released
  233. elif event.LeftUp():
  234. self.OnLeftUp(event)
  235. # dragging
  236. elif event.Dragging():
  237. self.OnDragging(event)
  238. # double click
  239. elif event.ButtonDClick():
  240. self.OnDClick(event)
  241. event.Skip()
  242. def OnMouseWheel(self, event):
  243. """!Change perspective"""
  244. wheel = event.GetWheelRotation()
  245. current = event.GetPositionTuple()[:]
  246. Debug.msg (5, "GLWindow.OnMouseMotion(): wheel = %d" % wheel)
  247. prev_value = self.view['persp']['value']
  248. if wheel > 0:
  249. value = -1 * self.view['persp']['step']
  250. else:
  251. value = self.view['persp']['step']
  252. self.view['persp']['value'] += value
  253. if self.view['persp']['value'] < 1:
  254. self.view['persp']['value'] = 1
  255. elif self.view['persp']['value'] > 100:
  256. self.view['persp']['value'] = 100
  257. if prev_value != self.view['persp']['value']:
  258. if hasattr(self.lmgr, "nviz"):
  259. self.lmgr.nviz.UpdateSettings()
  260. self._display.SetView(self.view['position']['x'], self.view['position']['y'],
  261. self.iview['height']['value'],
  262. self.view['persp']['value'],
  263. self.view['twist']['value'])
  264. # redraw map
  265. self.DoPaint()
  266. # update statusbar
  267. ### self.parent.StatusbarUpdate()
  268. def OnLeftDown(self, event):
  269. """!On left mouse down"""
  270. if self.mouse['use'] == "lookHere":
  271. pos = event.GetPosition()
  272. size = self.GetClientSize()
  273. self._display.LookHere(pos[0], size[1] - pos[1])
  274. self.Refresh(False)
  275. focus = self._display.GetFocus()
  276. for i, coord in enumerate(('x', 'y', 'z')):
  277. self.iview['focus'][coord] = focus[i]
  278. toggle = self.lmgr.nviz.FindWindowByName('here')
  279. toggle.SetValue(False)
  280. self.mouse['use'] = 'pointer'
  281. self.SetCursor(self.cursors['default'])
  282. if self.mouse['use'] == "cplane":
  283. pos = event.GetPosition()
  284. size = self.GetClientSize()
  285. x, y, z = self._display.SetCPlaneInteractively(pos[0], size[1] - pos[1])
  286. if x is not None:
  287. idx = self._display.GetCPlaneCurrent()
  288. self.cplanes[idx]['position']['x'] = x
  289. self.cplanes[idx]['position']['y'] = y
  290. self.render['quick'] = True
  291. if self.mouse['use'] == 'arrow':
  292. pos = event.GetPosition()
  293. size = self.GetClientSize()
  294. if self._display.SetArrow(pos[0], size[1] - pos[1],
  295. self.decoration['arrow']['size'],
  296. self.decoration['arrow']['color']):
  297. self._display.DrawArrow()
  298. # update
  299. self.decoration['arrow']['show'] = True
  300. self.decoration['arrow']['position']['x'] = pos[0]
  301. self.decoration['arrow']['position']['y'] = size[1] - pos[1]
  302. self.Refresh(False)
  303. if self.mouse['use'] == 'pointer':
  304. shape = self.FindShape(event.GetPosition())
  305. if shape:
  306. self.dragShape = shape
  307. self.dragStartPos = event.GetPosition()
  308. self.deleteOld = True
  309. event.Skip()
  310. def OnDragging(self, event):
  311. if self.mouse['use'] == "cplane":
  312. idx = self._display.GetCPlaneCurrent()
  313. pos = event.GetPosition()
  314. size = self.GetClientSize()
  315. x, y, z = self._display.SetCPlaneInteractively(pos[0], size[1] - pos[1])
  316. if x is not None:
  317. self.cplanes[idx]['position']['x'] = x
  318. self.cplanes[idx]['position']['y'] = y
  319. if self.mouse['use'] == 'pointer':
  320. if not self.dragShape:
  321. event.Skip()
  322. return
  323. if self.dragShape and not self.dragImage:
  324. # only start the drag after having moved a couple pixels
  325. tolerance = 2
  326. pt = event.GetPosition()
  327. dx = abs(pt.x - self.dragStartPos.x)
  328. dy = abs(pt.y - self.dragStartPos.y)
  329. if dx <= tolerance and dy <= tolerance:
  330. return
  331. elif self.deleteOld:
  332. # refresh the area of the window where the shape was so it
  333. # will get erased.
  334. # need to be redrawn now ?
  335. self.dragShape.shown = False
  336. self.RefreshRect(self.dragShape.GetRect(), False)
  337. self.Update()
  338. self.deleteOld = False
  339. return
  340. else:
  341. if self.dragShape.text:
  342. self.dragImage = wx.DragString(self.dragShape.text,
  343. wx.StockCursor(wx.CURSOR_HAND))
  344. else:
  345. self.dragImage = wx.DragImage(self.dragShape.bmp,
  346. wx.StockCursor(wx.CURSOR_HAND))
  347. hotspot = self.dragStartPos - self.dragShape.pos
  348. self.dragImage.BeginDrag(hotspot, self)
  349. self.dragImage.Move(pt)
  350. self.dragImage.Show()
  351. elif self.dragShape and self.dragImage:
  352. # now move it and show it again if needed
  353. self.dragImage.Move(event.GetPosition())
  354. self.dragImage.Show()
  355. event.Skip()
  356. def Pixel2Cell(self, (x, y)):
  357. """!Convert image coordinates to real word coordinates
  358. @param x, y image coordinates
  359. @return easting, northing
  360. @return None on error
  361. """
  362. size = self.GetClientSize()
  363. # UL -> LL
  364. sid, x, y, z = self._display.GetPointOnSurface(x, size[1] - y)
  365. if not sid:
  366. return None
  367. return (x, y)
  368. def OnLeftUp(self, event):
  369. self.ReleaseMouse()
  370. if self.mouse["use"] == "query":
  371. layers = self.GetSelectedLayer(multi = True)
  372. for l in layers:
  373. if l.GetType() == 'raster':
  374. self.OnQuerySurface(event)
  375. if l.GetType() == 'vector':
  376. self.OnQueryVector(event)
  377. elif self.mouse["use"] == 'cplane':
  378. self.lmgr.nviz.OnCPlaneChangeDone(None)
  379. idx = self._display.GetCPlaneCurrent()
  380. self.lmgr.nviz.UpdateCPlanePage(idx)
  381. self.lmgr.nviz.FindWindowByName('cplaneHere').SetValue(False)
  382. self.mouse['use'] = 'pointer'
  383. self.SetCursor(self.cursors['default'])
  384. elif self.mouse["use"] == 'arrow':
  385. self.lmgr.nviz.FindWindowByName('placeArrow').SetValue(False)
  386. self.mouse['use'] = 'pointer'
  387. self.SetCursor(self.cursors['default'])
  388. elif self.mouse['use'] == 'pointer':
  389. if not self.dragImage or not self.dragShape:
  390. self.dragImage = None
  391. self.dragShape = None
  392. return
  393. # Hide the image, end dragging, and nuke out the drag image.
  394. self.dragImage.Hide()
  395. self.dragImage.EndDrag()
  396. self.dragImage = None
  397. # reposition and draw the shape
  398. self.dragShape.pos = (
  399. self.dragShape.pos[0] + event.GetPosition()[0] - self.dragStartPos[0],
  400. self.dragShape.pos[1] + event.GetPosition()[1] - self.dragStartPos[1]
  401. )
  402. self.overlays[self.dragShape.id]['coords'] = tuple(self.dragShape.GetRect())
  403. self.dragShape.shown = True
  404. self.RefreshRect(self.dragShape.GetRect())
  405. self.dragShape = None
  406. event.Skip()
  407. def OnDClick(self, event):
  408. shape = self.FindShape(event.GetPosition())
  409. if shape.id == 1:
  410. self.parent.OnAddLegend(None)
  411. def OnQuerySurface(self, event):
  412. """!Query surface on given position"""
  413. size = self.GetClientSizeTuple()
  414. result = self._display.QueryMap(event.GetX(), size[1] - event.GetY())
  415. if result:
  416. self.qpoints.append((result['x'], result['y'], result['z']))
  417. self.log.WriteLog("%-30s: %.3f" % (_("Easting"), result['x']))
  418. self.log.WriteLog("%-30s: %.3f" % (_("Northing"), result['y']))
  419. self.log.WriteLog("%-30s: %.3f" % (_("Elevation"), result['z']))
  420. name = ''
  421. for item in self.layers:
  422. self.tree.GetPyData(item)[0]['nviz']
  423. if self.tree.GetPyData(item)[0]['maplayer'].type == 'raster' and\
  424. self.tree.GetPyData(item)[0]['nviz']['surface']['object']['id'] == result['id']:
  425. name = self.tree.GetPyData(item)[0]['maplayer'].name
  426. self.log.WriteLog("%-30s: %s" % (_("Surface map name"), name))
  427. self.log.WriteLog("%-30s: %s" % (_("Surface map elevation"), result['elevation']))
  428. self.log.WriteLog("%-30s: %s" % (_("Surface map color"), result['color']))
  429. if len(self.qpoints) > 1:
  430. prev = self.qpoints[-2]
  431. curr = self.qpoints[-1]
  432. dxy = math.sqrt(pow(prev[0]-curr[0], 2) +
  433. pow(prev[1]-curr[1], 2))
  434. dxyz = math.sqrt(pow(prev[0]-curr[0], 2) +
  435. pow(prev[1]-curr[1], 2) +
  436. pow(prev[2]-curr[2], 2))
  437. self.log.WriteLog("%-30s: %.3f" % (_("XY distance from previous"), dxy))
  438. self.log.WriteLog("%-30s: %.3f" % (_("XYZ distance from previous"), dxyz))
  439. self.log.WriteLog("%-30s: %.3f" % (_("Distance along surface"),
  440. self._display.GetDistanceAlongSurface(result['id'],
  441. (curr[0], curr[1]),
  442. (prev[0], prev[1]),
  443. useExag = False)))
  444. self.log.WriteLog("%-30s: %.3f" % (_("Distance along exag. surface"),
  445. self._display.GetDistanceAlongSurface(result['id'],
  446. (curr[0], curr[1]),
  447. (prev[0], prev[1]),
  448. useExag = True)))
  449. self.log.WriteCmdLog('-' * 80)
  450. else:
  451. self.log.WriteLog(_("No point on surface"))
  452. self.log.WriteCmdLog('-' * 80)
  453. def OnQueryVector(self, event):
  454. """!Query vector on given position"""
  455. self.log.WriteWarning(_("Vector querying is not implemented yet"))
  456. self.log.WriteCmdLog('-' * 80)
  457. def UpdateView(self, event):
  458. """!Change view settings"""
  459. data = self.view
  460. self._display.SetView(data['position']['x'], data['position']['y'],
  461. self.iview['height']['value'],
  462. data['persp']['value'],
  463. data['twist']['value'])
  464. if event and event.zExag and 'value' in data['z-exag']:
  465. self._display.SetZExag(data['z-exag']['value'])
  466. if self.iview['focus']['x'] != -1:
  467. self._display.SetFocus(self.iview['focus']['x'], self.iview['focus']['y'],
  468. self.iview['focus']['z'])
  469. if event:
  470. event.Skip()
  471. def UpdateLight(self, event):
  472. """!Change light settings"""
  473. data = self.light
  474. self._display.SetLight(x = data['position']['x'], y = data['position']['y'],
  475. z = data['position']['z'] / 100., color = data['color'],
  476. bright = data['bright'] / 100.,
  477. ambient = data['ambient'] / 100.)
  478. self._display.DrawLightingModel()
  479. if hasattr(event, 'refresh'):
  480. self.Refresh(False)
  481. def UpdateMap(self, render = True):
  482. """!Updates the canvas anytime there is a change to the
  483. underlaying images or to the geometry of the canvas.
  484. @param render re-render map composition
  485. """
  486. start = time.clock()
  487. self.resize = False
  488. if self.render['quick'] is False:
  489. self.parent.statusbarWin['progress'].Show()
  490. self.parent.statusbarWin['progress'].SetRange(2)
  491. self.parent.statusbarWin['progress'].SetValue(0)
  492. if self.render['quick'] is False:
  493. self.parent.statusbarWin['progress'].SetValue(1)
  494. self._display.Draw(False, -1)
  495. elif self.render['quick'] is True:
  496. # quick
  497. mode = wxnviz.DRAW_QUICK_SURFACE | wxnviz.DRAW_QUICK_VOLUME
  498. if self.render['vlines']:
  499. mode |= wxnviz.DRAW_QUICK_VLINES
  500. if self.render['vpoints']:
  501. mode |= wxnviz.DRAW_QUICK_VPOINTS
  502. self._display.Draw(True, mode)
  503. else: # None -> reuse last rendered image
  504. pass # TODO
  505. self.SwapBuffers()
  506. # draw fringe after SwapBuffers, otherwise it don't have to be visible
  507. # on some computers
  508. if self.render['quick'] is False:
  509. self._display.DrawFringe()
  510. if self.decoration['arrow']['show']:
  511. self._display.DrawArrow()
  512. stop = time.clock()
  513. if self.render['quick'] is False:
  514. self.parent.statusbarWin['progress'].SetValue(2)
  515. # hide process bar
  516. self.parent.statusbarWin['progress'].Hide()
  517. Debug.msg(3, "GLWindow.UpdateMap(): quick = %d, -> time = %g" % \
  518. (self.render['quick'], (stop-start)))
  519. def EraseMap(self):
  520. """!Erase the canvas
  521. """
  522. self._display.EraseMap()
  523. self.SwapBuffers()
  524. def DrawShapes(self, dc):
  525. for shape in self.shapes:
  526. if shape.shown:
  527. shape.Draw(dc)
  528. def FindShape(self, pt):
  529. for shape in self.shapes:
  530. if shape.HitTest(pt):
  531. return shape
  532. return None
  533. def IsLoaded(self, item):
  534. """!Check if layer (item) is already loaded
  535. @param item layer item
  536. """
  537. layer = self.tree.GetPyData(item)[0]['maplayer']
  538. data = self.tree.GetPyData(item)[0]['nviz']
  539. if not data:
  540. return 0
  541. if layer.type == 'raster':
  542. if 'object' not in data['surface']:
  543. return 0
  544. elif layer.type == 'vector':
  545. if 'object' not in data['vlines'] and \
  546. 'object' not in data['points']:
  547. return 0
  548. return 1
  549. def _GetDataLayers(self, item, litems):
  550. """!Return get list of enabled map layers"""
  551. # load raster & vector maps
  552. while item and item.IsOk():
  553. type = self.tree.GetPyData(item)[0]['type']
  554. if type == 'group':
  555. subItem = self.tree.GetFirstChild(item)[0]
  556. self._GetDataLayers(subItem, litems)
  557. item = self.tree.GetNextSibling(item)
  558. if not item.IsChecked() or \
  559. type not in ('raster', 'vector', '3d-raster'):
  560. item = self.tree.GetNextSibling(item)
  561. continue
  562. litems.append(item)
  563. item = self.tree.GetNextSibling(item)
  564. def LoadDataLayers(self):
  565. """!Load raster/vector from current layer tree
  566. @todo volumes
  567. """
  568. if not self.tree:
  569. return
  570. listOfItems = []
  571. item = self.tree.GetFirstChild(self.tree.root)[0]
  572. self._GetDataLayers(item, listOfItems)
  573. start = time.time()
  574. while(len(listOfItems) > 0):
  575. item = listOfItems.pop()
  576. type = self.tree.GetPyData(item)[0]['type']
  577. if item in self.layers:
  578. continue
  579. # "raster (double click to set properties)" - tries to load this
  580. # layer - no idea how to fix it
  581. if ' ' in self.tree.GetPyData(item)[0]['maplayer'].name:
  582. return
  583. try:
  584. if type == 'raster':
  585. self.LoadRaster(item)
  586. elif type == '3d-raster':
  587. self.LoadRaster3d(item)
  588. elif type == 'vector':
  589. # data = self.tree.GetPyData(item)[0]['nviz']
  590. # vecType = []
  591. # if data and 'vector' in data:
  592. # for v in ('lines', 'points'):
  593. # if data['vector'][v]:
  594. # vecType.append(v)
  595. layer = self.tree.GetPyData(item)[0]['maplayer']
  596. npoints, nlines, nfeatures, mapIs3D = self.lmgr.nviz.VectorInfo(layer)
  597. if npoints > 0:
  598. self.LoadVector(item, points = True)
  599. if nlines > 0:
  600. self.LoadVector(item, points = False)
  601. except gcmd.GException, e:
  602. GError(parent = self,
  603. message = e.value)
  604. self.init = False
  605. stop = time.time()
  606. Debug.msg(3, "GLWindow.LoadDataLayers(): time = %f" % (stop-start))
  607. def UnloadDataLayers(self):
  608. """!Unload any layers that have been deleted from layer tree"""
  609. if not self.tree:
  610. return
  611. listOfItems = []
  612. item = self.tree.GetFirstChild(self.tree.root)[0]
  613. self._GetDataLayers(item, listOfItems)
  614. start = time.time()
  615. for layer in self.layers:
  616. if layer not in listOfItems:
  617. ltype = self.tree.GetPyData(layer)[0]['type']
  618. try:
  619. if ltype == 'raster':
  620. self.UnloadRaster(layer)
  621. elif ltype == '3d-raster':
  622. self.UnloadRaster3d(layer)
  623. elif ltype == 'vector':
  624. self.UnloadVector(layer, True)
  625. self.UnloadVector(layer, False)
  626. self.UpdateView(None)
  627. except gcmd.GException, e:
  628. gcmd.GError(parent = self,
  629. message = e.value)
  630. self.lmgr.nviz.UpdateSettings()
  631. stop = time.time()
  632. Debug.msg(3, "GLWindow.UnloadDataLayers(): time = %f" % (stop-start))
  633. def SetVectorSurface(self, data):
  634. """!Set reference surfaces of vector"""
  635. data['mode']['surface'] = {}
  636. data['mode']['surface']['value'] = list()
  637. data['mode']['surface']['show'] = list()
  638. for name in self.GetLayerNames('raster'):
  639. data['mode']['surface']['value'].append(name)
  640. data['mode']['surface']['show'].append(True)
  641. def SetVectorFromCmd(self, item, data):
  642. """!Set 3D view properties from cmd (d.vect)
  643. @param item Layer Tree item
  644. @param nviz data
  645. """
  646. cmd = self.tree.GetPyData(item)[0]['cmd']
  647. if cmd[0] != 'd.vect':
  648. return
  649. for opt in cmd[1:]:
  650. try:
  651. key, value = opt.split('=')
  652. except ValueError:
  653. continue
  654. if key == 'color':
  655. data['lines']['color']['value'] = value
  656. data['points']['color']['value'] = value
  657. def SetMapObjProperties(self, item, id, nvizType):
  658. """!Set map object properties
  659. Properties must be afterwards updated by
  660. UpdateMapObjProperties().
  661. @param item layer item
  662. @param id nviz layer id (or -1)
  663. @param nvizType nviz data type (surface, points, vector)
  664. """
  665. if nvizType != 'constant':
  666. mapType = self.tree.GetPyData(item)[0]['maplayer'].type
  667. # reference to original layer properties (can be None)
  668. data = self.tree.GetPyData(item)[0]['nviz']
  669. else:
  670. mapType = nvizType
  671. data = self.constants[item]
  672. if not data:
  673. # init data structure
  674. if nvizType != 'constant':
  675. self.tree.GetPyData(item)[0]['nviz'] = {}
  676. data = self.tree.GetPyData(item)[0]['nviz']
  677. if mapType == 'raster':
  678. # reset to default properties
  679. data[nvizType] = self.nvizDefault.SetSurfaceDefaultProp()
  680. elif mapType == 'vector':
  681. # reset to default properties (lines/points)
  682. data['vector'] = self.nvizDefault.SetVectorDefaultProp()
  683. self.SetVectorFromCmd(item, data['vector'])
  684. self.SetVectorSurface(data['vector']['points'])
  685. self.SetVectorSurface(data['vector']['lines'])
  686. elif mapType == '3d-raster':
  687. # reset to default properties
  688. data[nvizType] = self.nvizDefault.SetVolumeDefaultProp()
  689. elif mapType == 'constant':
  690. data['constant'] = self.nvizDefault.SetConstantDefaultProp()
  691. else:
  692. # complete data (use default values), not sure if this is necessary
  693. if mapType == 'raster':
  694. if not data['surface']:
  695. data['surface'] = self.nvizDefault.SetSurfaceDefaultProp()
  696. if mapType == 'vector':
  697. if not data['vector']['lines']:
  698. self.nvizDefault.SetVectorLinesDefaultProp(data['vector']['lines'])
  699. if not data['vector']['points']:
  700. self.nvizDefault.SetVectorPointsDefaultProp(data['vector']['points'])
  701. # set updates
  702. for sec in data.keys():
  703. for sec1 in data[sec].keys():
  704. if sec1 == 'position':
  705. data[sec][sec1]['update'] = None
  706. continue
  707. if type(data[sec][sec1]) == type({}):
  708. for sec2 in data[sec][sec1].keys():
  709. if sec2 != 'all':
  710. data[sec][sec1][sec2]['update'] = None
  711. elif type(data[sec][sec1]) == type([]):
  712. for i in range(len(data[sec][sec1])):
  713. for sec2 in data[sec][sec1][i].keys():
  714. data[sec][sec1][i][sec2]['update'] = None
  715. event = wxUpdateProperties(data = data)
  716. wx.PostEvent(self, event)
  717. # set id
  718. if id > 0:
  719. if mapType in ('raster', '3d-raster'):
  720. data[nvizType]['object'] = { 'id' : id,
  721. 'init' : False }
  722. elif mapType == 'vector':
  723. data['vector'][nvizType]['object'] = { 'id' : id,
  724. 'init' : False }
  725. elif mapType == 'constant':
  726. data[nvizType]['object'] = { 'id' : id,
  727. 'init' : False }
  728. return data
  729. def LoadRaster(self, item):
  730. """!Load 2d raster map and set surface attributes
  731. @param layer item
  732. """
  733. return self._loadRaster(item)
  734. def LoadRaster3d(self, item):
  735. """!Load 3d raster map and set surface attributes
  736. @param layer item
  737. """
  738. return self._loadRaster(item)
  739. def _loadRaster(self, item):
  740. """!Load 2d/3d raster map and set its attributes
  741. @param layer item
  742. """
  743. layer = self.tree.GetPyData(item)[0]['maplayer']
  744. if layer.type not in ('raster', '3d-raster'):
  745. return
  746. if layer.type == 'raster':
  747. id = self._display.LoadSurface(str(layer.name), None, None)
  748. nvizType = 'surface'
  749. errorMsg = _("Loading raster map")
  750. elif layer.type == '3d-raster':
  751. id = self._display.LoadVolume(str(layer.name), None, None)
  752. nvizType = 'volume'
  753. errorMsg = _("Loading 3d raster map")
  754. else:
  755. id = -1
  756. if id < 0:
  757. if layer.type in ('raster', '3d-raster'):
  758. self.log.WriteError("%s <%s> %s" % (errorMsg, layer.name, _("failed")))
  759. else:
  760. self.log.WriteError(_("Unsupported layer type '%s'") % layer.type)
  761. self.layers.append(item)
  762. # set default/workspace layer properties
  763. data = self.SetMapObjProperties(item, id, nvizType)
  764. # update properties
  765. event = wxUpdateProperties(data = data)
  766. wx.PostEvent(self, event)
  767. # update tools window
  768. if hasattr(self.lmgr, "nviz") and \
  769. item == self.GetSelectedLayer(type = 'item'):
  770. toolWin = self.lmgr.nviz
  771. if layer.type == 'raster':
  772. win = toolWin.FindWindowById( \
  773. toolWin.win['vector']['lines']['surface'])
  774. win.SetItems(self.GetLayerNames(layer.type))
  775. #toolWin.UpdatePage(nvizType)
  776. #toolWin.SetPage(nvizType)
  777. return id
  778. def NewConstant(self):
  779. """!Create new constant"""
  780. index = len(self.constants)
  781. try:
  782. name = self.constants[-1]['constant']['object']['name'] + 1
  783. except IndexError:
  784. name = 1
  785. data = dict()
  786. self.constants.append(data)
  787. data = self.SetMapObjProperties(item = index, id = -1, nvizType = 'constant')
  788. self.AddConstant(data, name)
  789. return name
  790. def AddConstant(self, data, name):
  791. """!Add new constant"""
  792. id = self._display.AddConstant(value = data['constant']['value'], color = data['constant']['color'])
  793. self._display.SetSurfaceRes(id, data['constant']['resolution'], data['constant']['resolution'])
  794. data['constant']['object'] = { 'id' : id,
  795. 'name': name,
  796. 'init' : False }
  797. def DeleteConstant(self, index):
  798. """!Delete constant layer"""
  799. id = self.constants[index]['constant']['object']['id']
  800. self._display.UnloadSurface(id)
  801. del self.constants[index]
  802. def SelectCPlane(self, index):
  803. """!Select cutting plane"""
  804. for plane in range (self._display.GetCPlanesCount()):
  805. if plane == index:
  806. self._display.SelectCPlane(plane)
  807. self.cplanes[plane]['on'] = True
  808. else:
  809. self._display.UnselectCPlane(plane)
  810. try:
  811. self.cplanes[plane]['on'] = False
  812. except IndexError:
  813. pass
  814. def UpdateCPlane(self, event):
  815. """!Change cutting plane settings"""
  816. current = event.current
  817. for each in event.update:
  818. if each == 'rotation':
  819. self._display.SetCPlaneRotation(0, self.cplanes[current]['rotation']['tilt'],
  820. self.cplanes[current]['rotation']['rot'])
  821. if each == 'position':
  822. self._display.SetCPlaneTranslation(self.cplanes[current]['position']['x'],
  823. self.cplanes[current]['position']['y'],
  824. self.cplanes[current]['position']['z'])
  825. if each == 'shading':
  826. self._display.SetFenceColor(self.cplanes[current]['shading'])
  827. def UnloadRaster(self, item):
  828. """!Unload 2d raster map
  829. @param layer item
  830. """
  831. return self._unloadRaster(item)
  832. def UnloadRaster3d(self, item):
  833. """!Unload 3d raster map
  834. @param layer item
  835. """
  836. return self._unloadRaster(item)
  837. def _unloadRaster(self, item):
  838. """!Unload 2d/3d raster map
  839. @param item layer item
  840. """
  841. layer = self.tree.GetPyData(item)[0]['maplayer']
  842. if layer.type not in ('raster', '3d-raster'):
  843. return
  844. data = self.tree.GetPyData(item)[0]['nviz']
  845. if layer.type == 'raster':
  846. nvizType = 'surface'
  847. unloadFn = self._display.UnloadSurface
  848. errorMsg = _("Unable to unload raster map")
  849. successMsg = _("Raster map")
  850. else:
  851. nvizType = 'volume'
  852. unloadFn = self._display.UnloadVolume
  853. errorMsg = _("Unable to unload 3d raster map")
  854. successMsg = _("3d raster map")
  855. id = data[nvizType]['object']['id']
  856. if unloadFn(id) == 0:
  857. self.log.WriteError("%s <%s>" % (errorMsg, layer.name))
  858. else:
  859. self.log.WriteLog("%s <%s> %s" % (successMsg, layer.name, _("unloaded successfully")))
  860. data[nvizType].pop('object')
  861. self.layers.remove(item)
  862. # update tools window
  863. if hasattr(self.lmgr, "nviz"):
  864. toolWin = self.lmgr.nviz
  865. if layer.type == 'raster':
  866. win = toolWin.FindWindowById(toolWin.win['vector']['lines']['surface'])
  867. win.SetItems(self.GetLayerNames(layer.type))
  868. win = toolWin.FindWindowById(toolWin.win['surface']['map'])
  869. win.SetValue('')
  870. if layer.type == '3d-raster':
  871. win = toolWin.FindWindowById(toolWin.win['volume']['map'])
  872. win.SetValue('')
  873. if layer.type == 'vector':
  874. win = toolWin.FindWindowById(toolWin.win['vector']['map'])
  875. win.SetValue('')
  876. def LoadVector(self, item, points = None):
  877. """!Load 2D or 3D vector map overlay
  878. @param item layer item
  879. @param points True to load points, False to load lines, None
  880. to load both
  881. """
  882. layer = self.tree.GetPyData(item)[0]['maplayer']
  883. if layer.type != 'vector':
  884. return
  885. # set default properties
  886. if points is None:
  887. self.SetMapObjProperties(item, -1, 'lines')
  888. self.SetMapObjProperties(item, -1, 'points')
  889. vecTypes = ('points', 'lines')
  890. elif points:
  891. self.SetMapObjProperties(item, -1, 'points')
  892. vecTypes = ('points', )
  893. else:
  894. self.SetMapObjProperties(item, -1, 'lines')
  895. vecTypes = ('lines', )
  896. id = -1
  897. for vecType in vecTypes:
  898. if vecType == 'lines':
  899. id = self._display.LoadVector(str(layer.GetName()), False)
  900. else:
  901. id = self._display.LoadVector(str(layer.GetName()), True)
  902. if id < 0:
  903. self.log.WriteError(_("Loading vector map <%(name)s> (%(type)s) failed") % \
  904. { 'name' : layer.name, 'type' : vecType })
  905. # update layer properties
  906. self.SetMapObjProperties(item, id, vecType)
  907. self.layers.append(item)
  908. # update properties
  909. data = self.tree.GetPyData(item)[0]['nviz']
  910. event = wxUpdateProperties(data = data)
  911. wx.PostEvent(self, event)
  912. # update tools window
  913. if hasattr(self.lmgr, "nviz") and \
  914. item == self.GetSelectedLayer(type = 'item'):
  915. toolWin = self.lmgr.nviz
  916. toolWin.UpdatePage('vector')
  917. ### toolWin.SetPage('vector')
  918. return id
  919. def UnloadVector(self, item, points = None):
  920. """!Unload vector map overlay
  921. @param item layer item
  922. @param points,lines True to unload given feature type
  923. """
  924. layer = self.tree.GetPyData(item)[0]['maplayer']
  925. data = self.tree.GetPyData(item)[0]['nviz']['vector']
  926. # if vecType is None:
  927. # vecType = []
  928. # for v in ('lines', 'points'):
  929. # if UserSettings.Get(group = 'nviz', key = 'vector',
  930. # subkey = [v, 'show']):
  931. # vecType.append(v)
  932. if points is None:
  933. vecTypes = ('points', 'lines')
  934. elif points:
  935. vecTypes = ('points', )
  936. else:
  937. vecTypes = ('lines', )
  938. for vecType in vecTypes:
  939. if 'object' not in data[vecType]:
  940. continue
  941. id = data[vecType]['object']['id']
  942. if vecType == 'lines':
  943. ret = self._display.UnloadVector(id, False)
  944. else:
  945. ret = self._display.UnloadVector(id, True)
  946. if ret == 0:
  947. self.log.WriteError(_("Unable to unload vector map <%(name)s> (%(type)s)") % \
  948. { 'name': layer.name, 'type' : vecType })
  949. else:
  950. self.log.WriteLog(_("Vector map <%(name)s> (%(type)s) unloaded successfully") % \
  951. { 'name' : layer.name, 'type' : vecType })
  952. data[vecType].pop('object')
  953. ### self.layers.remove(id)
  954. def Reset(self):
  955. """!Reset (unload data)"""
  956. for item in self.layers:
  957. type = self.tree.GetPyData(item)[0]['maplayer'].type
  958. if type == 'raster':
  959. self.UnloadRaster(item)
  960. elif type == '3d-raster':
  961. self.UnloadRaster3d(item)
  962. elif type == 'vector':
  963. self.UnloadVector(item)
  964. self.init = False
  965. def OnZoomToMap(self, event):
  966. """!Set display extents to match selected raster or vector
  967. map or volume.
  968. @todo vector, volume
  969. """
  970. layer = self.GetSelectedLayer()
  971. if layer is None:
  972. return
  973. Debug.msg (3, "GLWindow.OnZoomToMap(): layer = %s, type = %s" % \
  974. (layer.name, layer.type))
  975. self._display.SetViewportDefault()
  976. def ResetView(self):
  977. """!Reset to default view"""
  978. self.view['z-exag']['value'], \
  979. self.iview['height']['value'], \
  980. self.iview['height']['min'], \
  981. self.iview['height']['max'] = self._display.SetViewDefault()
  982. self.view['z-exag']['min'] = UserSettings.Get(group = 'nviz', key = 'view',
  983. subkey = ('z-exag', 'min'))
  984. zexagMax = UserSettings.Get(group = 'nviz', key = 'view',
  985. subkey = ('z-exag', 'max'))
  986. if zexagMax < self.view['z-exag']['value']:
  987. self.view['z-exag']['max'] = self.view['z-exag']['value']
  988. elif self.view['z-exag']['value'] < 1:
  989. self.view['z-exag']['max'] = 10 * self.view['z-exag']['value']
  990. else:
  991. self.view['z-exag']['max'] = zexagMax
  992. self.view['position']['x'] = UserSettings.Get(group = 'nviz', key = 'view',
  993. subkey = ('position', 'x'))
  994. self.view['position']['y'] = UserSettings.Get(group = 'nviz', key = 'view',
  995. subkey = ('position', 'y'))
  996. self.view['persp']['value'] = UserSettings.Get(group = 'nviz', key = 'view',
  997. subkey = ('persp', 'value'))
  998. self.view['twist']['value'] = UserSettings.Get(group = 'nviz', key = 'view',
  999. subkey = ('twist', 'value'))
  1000. self._display.LookAtCenter()
  1001. focus = self.iview['focus']
  1002. focus['x'], focus['y'], focus['z'] = self._display.GetFocus()
  1003. event = wxUpdateView(zExag = False)
  1004. wx.PostEvent(self, event)
  1005. def UpdateMapObjProperties(self, event):
  1006. """!Generic method to update data layer properties"""
  1007. data = event.data
  1008. if 'surface' in data:
  1009. try:
  1010. id = data['surface']['object']['id']
  1011. except KeyError:
  1012. pass
  1013. self.UpdateSurfaceProperties(id, data['surface'])
  1014. # -> initialized
  1015. data['surface']['object']['init'] = True
  1016. elif 'constant' in data:
  1017. id = data['constant']['object']['id']
  1018. self.UpdateConstantProperties(id, data['constant'])
  1019. # -> initialized
  1020. data['constant']['object']['init'] = True
  1021. elif 'volume' in data:
  1022. id = data['volume']['object']['id']
  1023. self.UpdateVolumeProperties(id, data['volume'])
  1024. # -> initialized
  1025. data['volume']['object']['init'] = True
  1026. elif 'vector' in data:
  1027. for type in ('lines', 'points'):
  1028. if 'object' in data['vector'][type]:
  1029. id = data['vector'][type]['object']['id']
  1030. self.UpdateVectorProperties(id, data['vector'], type)
  1031. # -> initialized
  1032. data['vector'][type]['object']['init'] = True
  1033. def UpdateConstantProperties(self, id, data):
  1034. """!Update surface map object properties"""
  1035. self._display.SetSurfaceColor(id = id, map = False, value = data['color'])
  1036. self._display.SetSurfaceTopo(id = id, map = False, value = data['value'])
  1037. self._display.SetSurfaceRes(id, data['resolution'], data['resolution'])
  1038. if data['transp'] == 0:
  1039. self._display.UnsetSurfaceTransp(id)
  1040. else:
  1041. self._display.SetSurfaceTransp(id, map = False, value = data['transp'])
  1042. def UpdateSurfaceProperties(self, id, data):
  1043. """!Update surface map object properties"""
  1044. # surface attributes
  1045. for attrb in ('color', 'mask',
  1046. 'transp', 'shine'):
  1047. if attrb not in data['attribute'] or \
  1048. 'update' not in data['attribute'][attrb]:
  1049. continue
  1050. map = data['attribute'][attrb]['map']
  1051. value = data['attribute'][attrb]['value']
  1052. if map is None: # unset
  1053. # only optional attributes
  1054. if attrb == 'mask':
  1055. # TODO: invert mask
  1056. # TODO: broken in NVIZ
  1057. self._display.UnsetSurfaceMask(id)
  1058. elif attrb == 'transp':
  1059. self._display.UnsetSurfaceTransp(id)
  1060. else:
  1061. if type(value) == type('') and \
  1062. len(value) <= 0: # ignore empty values (TODO: warning)
  1063. continue
  1064. if attrb == 'color':
  1065. self._display.SetSurfaceColor(id, map, str(value))
  1066. elif attrb == 'mask':
  1067. # TODO: invert mask
  1068. # TODO: broken in NVIZ
  1069. self._display.SetSurfaceMask(id, False, str(value))
  1070. elif attrb == 'transp':
  1071. self._display.SetSurfaceTransp(id, map, str(value))
  1072. elif attrb == 'shine':
  1073. self._display.SetSurfaceShine(id, map, str(value))
  1074. data['attribute'][attrb].pop('update')
  1075. # draw res
  1076. if 'update' in data['draw']['resolution']:
  1077. coarse = data['draw']['resolution']['coarse']
  1078. fine = data['draw']['resolution']['fine']
  1079. if data['draw']['all']:
  1080. self._display.SetSurfaceRes(-1, fine, coarse)
  1081. else:
  1082. self._display.SetSurfaceRes(id, fine, coarse)
  1083. data['draw']['resolution'].pop('update')
  1084. # draw style
  1085. if 'update' in data['draw']['mode']:
  1086. if data['draw']['mode']['value'] < 0: # need to calculate
  1087. data['draw']['mode']['value'] = \
  1088. self.nvizDefault.GetDrawMode(mode = data['draw']['mode']['desc']['mode'],
  1089. style = data['draw']['mode']['desc']['style'],
  1090. shade = data['draw']['mode']['desc']['shading'],
  1091. string = True)
  1092. style = data['draw']['mode']['value']
  1093. if data['draw']['all']:
  1094. self._display.SetSurfaceStyle(-1, style)
  1095. else:
  1096. self._display.SetSurfaceStyle(id, style)
  1097. data['draw']['mode'].pop('update')
  1098. # wire color
  1099. if 'update' in data['draw']['wire-color']:
  1100. color = data['draw']['wire-color']['value']
  1101. if data['draw']['all']:
  1102. self._display.SetWireColor(-1, str(color))
  1103. else:
  1104. self._display.SetWireColor(id, str(color))
  1105. data['draw']['wire-color'].pop('update')
  1106. # position
  1107. if 'update' in data['position']:
  1108. x = data['position']['x']
  1109. y = data['position']['y']
  1110. z = data['position']['z']
  1111. self._display.SetSurfacePosition(id, x, y, z)
  1112. data['position'].pop('update')
  1113. data['draw']['all'] = False
  1114. def UpdateVolumeProperties(self, id, data, isosurfId = None):
  1115. """!Update volume (isosurface/slice) map object properties"""
  1116. if 'update' in data['draw']['resolution']:
  1117. if data['draw']['mode']['value'] == 0:
  1118. self._display.SetIsosurfaceRes(id, data['draw']['resolution']['isosurface']['value'])
  1119. else:
  1120. self._display.SetSliceRes(id, data['draw']['resolution']['slice']['value'])
  1121. data['draw']['resolution'].pop('update')
  1122. if 'update' in data['draw']['shading']:
  1123. if data['draw']['mode']['value'] == 0:
  1124. if data['draw']['shading']['isosurface']['value'] < 0: # need to calculate
  1125. mode = data['draw']['shading']['isosurface']['value'] = \
  1126. self.nvizDefault.GetDrawMode(shade = data['draw']['shading']['isosurface'],
  1127. string = False)
  1128. self._display.SetIsosurfaceMode(id, mode)
  1129. else:
  1130. if data['draw']['shading']['slice']['value'] < 0: # need to calculate
  1131. mode = data['draw']['shading']['slice']['value'] = \
  1132. self.nvizDefault.GetDrawMode(shade = data['draw']['shading']['slice'],
  1133. string = False)
  1134. self._display.SetSliceMode(id, mode)
  1135. data['draw']['shading'].pop('update')
  1136. #
  1137. # isosurface attributes
  1138. #
  1139. isosurfId = 0
  1140. for isosurf in data['isosurface']:
  1141. self._display.AddIsosurface(id, 0, isosurf_id = isosurfId)
  1142. for attrb in ('topo', 'color', 'mask',
  1143. 'transp', 'shine'):
  1144. if attrb not in isosurf or \
  1145. 'update' not in isosurf[attrb]:
  1146. continue
  1147. map = isosurf[attrb]['map']
  1148. value = isosurf[attrb]['value']
  1149. if map is None: # unset
  1150. # only optional attributes
  1151. if attrb == 'topo' :
  1152. self._display.SetIsosurfaceTopo(id, isosurfId, map, str(value))
  1153. elif attrb == 'mask':
  1154. # TODO: invert mask
  1155. # TODO: broken in NVIZ
  1156. self._display.UnsetIsosurfaceMask(id, isosurfId)
  1157. elif attrb == 'transp':
  1158. self._display.UnsetIsosurfaceTransp(id, isosurfId)
  1159. else:
  1160. if type(value) == type('') and \
  1161. len(value) <= 0: # ignore empty values (TODO: warning)
  1162. continue
  1163. elif attrb == 'color':
  1164. self._display.SetIsosurfaceColor(id, isosurfId, map, str(value))
  1165. elif attrb == 'mask':
  1166. # TODO: invert mask
  1167. # TODO: broken in NVIZ
  1168. self._display.SetIsosurfaceMask(id, isosurfId, False, str(value))
  1169. elif attrb == 'transp':
  1170. self._display.SetIsosurfaceTransp(id, isosurfId, map, str(value))
  1171. elif attrb == 'shine':
  1172. self._display.SetIsosurfaceShine(id, isosurfId, map, str(value))
  1173. isosurf[attrb].pop('update')
  1174. isosurfId += 1
  1175. #
  1176. # slice attributes
  1177. #
  1178. sliceId = 0
  1179. for slice in data['slice']:
  1180. ret = self._display.AddSlice(id, slice_id = sliceId)
  1181. if 'update' in slice['position']:
  1182. pos = slice['position']
  1183. ret = self._display.SetSlicePosition(id, sliceId, pos['x1'], pos['x2'],
  1184. pos['y1'], pos['y2'], pos['z1'], pos['z2'], pos['axis'])
  1185. slice['position'].pop('update')
  1186. if 'update' in slice['transp']:
  1187. tr = slice['transp']['value']
  1188. self._display.SetSliceTransp(id, sliceId, tr)
  1189. sliceId += 1
  1190. # position
  1191. if 'update' in data['position']:
  1192. x = data['position']['x']
  1193. y = data['position']['y']
  1194. z = data['position']['z']
  1195. self._display.SetVolumePosition(id, x, y, z)
  1196. data['position'].pop('update')
  1197. def UpdateVectorProperties(self, id, data, type):
  1198. """!Update vector layer properties
  1199. @param id layer id
  1200. @param data properties
  1201. @param type lines/points
  1202. """
  1203. if type == 'points':
  1204. self.UpdateVectorPointsProperties(id, data[type])
  1205. else:
  1206. self.UpdateVectorLinesProperties(id, data[type])
  1207. def UpdateVectorLinesProperties(self, id, data):
  1208. """!Update vector line map object properties"""
  1209. # mode
  1210. if 'update' in data['color'] or \
  1211. 'update' in data['width'] or \
  1212. 'update' in data['mode']:
  1213. width = data['width']['value']
  1214. color = data['color']['value']
  1215. if data['mode']['type'] == 'flat':
  1216. flat = True
  1217. if 'surface' in data['mode']:
  1218. data['mode'].pop('surface')
  1219. else:
  1220. flat = False
  1221. self._display.SetVectorLineMode(id, color,
  1222. width, flat)
  1223. if 'update' in data['color']:
  1224. data['color'].pop('update')
  1225. if 'update' in data['width']:
  1226. data['width'].pop('update')
  1227. # height
  1228. if 'update' in data['height']:
  1229. self._display.SetVectorLineHeight(id,
  1230. data['height']['value'])
  1231. data['height'].pop('update')
  1232. # surface
  1233. if 'surface' in data['mode'] and 'update' in data['mode']:
  1234. for item in range(len(data['mode']['surface']['value'])):
  1235. for type in ('raster', 'constant'):
  1236. sid = self.GetLayerId(type = type,
  1237. name = data['mode']['surface']['value'][item])
  1238. if sid > -1:
  1239. if data['mode']['surface']['show'][item]:
  1240. self._display.SetVectorLineSurface(id, sid)
  1241. else:
  1242. self._display.UnsetVectorLineSurface(id, sid)
  1243. break
  1244. if 'update' in data['mode']:
  1245. data['mode'].pop('update')
  1246. def UpdateVectorPointsProperties(self, id, data):
  1247. """!Update vector point map object properties"""
  1248. if 'update' in data['size'] or \
  1249. 'update' in data['width'] or \
  1250. 'update' in data['marker'] or \
  1251. 'update' in data['color']:
  1252. ret = self._display.SetVectorPointMode(id, data['color']['value'],
  1253. data['width']['value'], float(data['size']['value']),
  1254. data['marker']['value'] + 1)
  1255. error = None
  1256. if ret == -1:
  1257. error = _("Vector point layer not found (id = %d)") % id
  1258. elif ret == -2:
  1259. error = _("Unable to set data layer properties (id = %d)") % id
  1260. if error:
  1261. raise gcmd.GException(_("Setting data layer properties failed.\n\n%s") % error)
  1262. for prop in ('size', 'width', 'marker', 'color'):
  1263. if 'update' in data[prop]:
  1264. data[prop].pop('update')
  1265. # height
  1266. if 'update' in data['height']:
  1267. self._display.SetVectorPointHeight(id,
  1268. data['height']['value'])
  1269. data['height'].pop('update')
  1270. # surface
  1271. if 'update' in data['mode']:
  1272. for item in range(len(data['mode']['surface']['value'])):
  1273. for type in ('raster', 'constant'):
  1274. sid = self.GetLayerId(type = type,
  1275. name = data['mode']['surface']['value'][item])
  1276. if sid > -1:
  1277. if data['mode']['surface']['show'][item]:
  1278. self._display.SetVectorPointSurface(id, sid)
  1279. else:
  1280. self._display.UnsetVectorPointSurface(id, sid)
  1281. break
  1282. data['mode'].pop('update')
  1283. def GetLayerNames(self, type):
  1284. """!Return list of map layer names of given type"""
  1285. layerName = []
  1286. if type == 'constant':
  1287. for item in self.constants:
  1288. layerName.append(_("constant#") + str(item['constant']['object']['name']))
  1289. else:
  1290. for item in self.layers:
  1291. mapLayer = self.tree.GetPyData(item)[0]['maplayer']
  1292. if type != mapLayer.GetType():
  1293. continue
  1294. layerName.append(mapLayer.GetName())
  1295. return layerName
  1296. def GetLayerId(self, type, name, vsubtyp = None):
  1297. """!Get layer object id or -1"""
  1298. if len(name) < 1:
  1299. return -1
  1300. if type == 'constant':
  1301. for item in self.constants:
  1302. if _("constant#") + str(item['constant']['object']['name']) == name:
  1303. return item['constant']['object']['id']
  1304. return self.constants
  1305. for item in self.layers:
  1306. mapLayer = self.tree.GetPyData(item)[0]['maplayer']
  1307. if type != mapLayer.GetType() or \
  1308. name != mapLayer.GetName():
  1309. continue
  1310. data = self.tree.GetPyData(item)[0]['nviz']
  1311. if type == 'raster':
  1312. return data['surface']['object']['id']
  1313. elif type == 'vector':
  1314. if vsubtyp == 'vpoint':
  1315. return data['vector']['points']['object']['id']
  1316. elif vsubtyp == 'vline':
  1317. return data['vector']['lines']['object']['id']
  1318. elif type == '3d-raster':
  1319. return data['volume']['object']['id']
  1320. return -1
  1321. def NvizCmdCommand(self):
  1322. """!Generate command for nviz_cmd according to current state"""
  1323. cmd = 'nviz_cmd '
  1324. rasters = []
  1325. vectors = []
  1326. volumes = []
  1327. for item in self.layers:
  1328. if self.tree.GetPyData(item)[0]['type'] == 'raster':
  1329. rasters.append(item)
  1330. elif self.tree.GetPyData(item)[0]['type'] == '3d-raster':
  1331. volumes.append(item)
  1332. elif self.tree.GetPyData(item)[0]['type'] == 'vector':
  1333. vectors.append(item)
  1334. if not rasters and not self.constants:
  1335. return _("At least one raster map required")
  1336. # elevation_map/elevation_value
  1337. if self.constants:
  1338. subcmd = "elevation_value="
  1339. for constant in self.constants:
  1340. subcmd += "%d," % constant['constant']['value']
  1341. subcmd = subcmd.strip(', ') + ' '
  1342. cmd += subcmd
  1343. if rasters:
  1344. subcmd = "elevation_map="
  1345. for item in rasters:
  1346. subcmd += "%s," % self.tree.GetPyData(item)[0]['maplayer'].GetName()
  1347. subcmd = subcmd.strip(', ') + ' '
  1348. cmd += subcmd
  1349. #
  1350. # draw mode
  1351. #
  1352. cmdMode = "mode="
  1353. cmdFine = "resolution_fine="
  1354. cmdCoarse = "resolution_coarse="
  1355. cmdShading = "shading="
  1356. cmdStyle = "style="
  1357. cmdWire = "wire_color="
  1358. # test -a flag
  1359. flag_a = "-a "
  1360. nvizDataFirst = self.tree.GetPyData(rasters[0])[0]['nviz']['surface']['draw']
  1361. for item in rasters:
  1362. nvizData = self.tree.GetPyData(item)[0]['nviz']['surface']['draw']
  1363. if nvizDataFirst != nvizData:
  1364. flag_a = ""
  1365. cmd += flag_a
  1366. for item in rasters:
  1367. nvizData = self.tree.GetPyData(item)[0]['nviz']['surface']['draw']
  1368. cmdMode += "%s," % nvizData['mode']['desc']['mode']
  1369. cmdFine += "%s," % nvizData['resolution']['fine']
  1370. cmdCoarse += "%s," % nvizData['resolution']['coarse']
  1371. cmdShading += "%s," % nvizData['mode']['desc']['shading']
  1372. cmdStyle += "%s," % nvizData['mode']['desc']['style']
  1373. cmdWire += "%s," % nvizData['wire-color']['value']
  1374. for item in self.constants:
  1375. cmdMode += "fine,"
  1376. cmdFine += "%s," % item['constant']['resolution']
  1377. cmdCoarse += "%s," % item['constant']['resolution']
  1378. cmdShading += "gouraud,"
  1379. cmdStyle += "surface,"
  1380. cmdWire += "0:0:0,"
  1381. mode = []
  1382. for subcmd in (cmdMode, cmdFine, cmdCoarse, cmdShading, cmdStyle, cmdWire):
  1383. if flag_a:
  1384. mode.append(subcmd.split(',')[0] + ' ')
  1385. else:
  1386. subcmd = subcmd.strip(', ') + ' '
  1387. cmd += subcmd
  1388. if flag_a:# write only meaningful possibilities
  1389. cmd += mode[0]
  1390. if 'fine' in mode[0]:
  1391. cmd += mode[1]
  1392. elif 'coarse' in mode[0]:
  1393. cmd += mode[2]
  1394. elif 'both' in mode[0]:
  1395. cmd += mode[2]
  1396. cmd += mode[1]
  1397. if 'flat' in mode[3]:
  1398. cmd += mode[3]
  1399. if 'wire' in mode[4]:
  1400. cmd += mode[4]
  1401. if 'coarse' in mode[0] or 'both' in mode[0] and 'wire' in mode[3]:
  1402. cmd += mode[5]
  1403. #
  1404. # attributes
  1405. #
  1406. cmdColorMap = "color_map="
  1407. cmdColorVal = "color="
  1408. for item in rasters:
  1409. nvizData = self.tree.GetPyData(item)[0]['nviz']['surface']['attribute']
  1410. if 'color' not in nvizData:
  1411. cmdColorMap += "%s," % self.tree.GetPyData(item)[0]['maplayer'].GetName()
  1412. else:
  1413. if nvizData['color']['map']:
  1414. cmdColorMap += "%s," % nvizData['color']['value']
  1415. else:
  1416. cmdColorVal += "%s," % nvizData['color']['value']
  1417. #TODO
  1418. # transparency, shine, mask
  1419. for item in self.constants:
  1420. cmdColorVal += "%s," % item['constant']['color']
  1421. if cmdColorMap.split("=")[1]:
  1422. cmd += cmdColorMap.strip(', ') + ' '
  1423. if cmdColorVal.split("=")[1]:
  1424. cmd += cmdColorVal.strip(', ') + ' '
  1425. cmd += "\\\n"
  1426. #
  1427. # vlines
  1428. #
  1429. if vectors:
  1430. cmdLines = cmdLWidth = cmdLHeight = cmdLColor = cmdLMode = cmdLPos = \
  1431. cmdPoints = cmdPWidth = cmdPSize = cmdPColor = cmdPMarker = cmdPPos = cmdPLayer = ""
  1432. markers = ['x', 'box', 'sphere', 'cube', 'diamond',
  1433. 'dec_tree', 'con_tree', 'aster', 'gyro', 'histogram']
  1434. for vector in vectors:
  1435. npoints, nlines, nfeatures, mapIs3D = self.lmgr.nviz.VectorInfo(
  1436. self.tree.GetPyData(vector)[0]['maplayer'])
  1437. nvizData = self.tree.GetPyData(vector)[0]['nviz']['vector']
  1438. if nlines > 0:
  1439. cmdLines += "%s," % self.tree.GetPyData(vector)[0]['maplayer'].GetName()
  1440. cmdLWidth += "%d," % nvizData['lines']['width']['value']
  1441. cmdLHeight += "%d," % nvizData['lines']['height']['value']
  1442. cmdLColor += "%s," % nvizData['lines']['color']['value']
  1443. cmdLMode += "%s," % nvizData['lines']['mode']['type']
  1444. cmdLPos += "0,0,%d," % nvizData['lines']['height']['value']
  1445. if npoints > 0:
  1446. cmdPoints += "%s," % self.tree.GetPyData(vector)[0]['maplayer'].GetName()
  1447. cmdPWidth += "%d," % nvizData['points']['width']['value']
  1448. cmdPSize += "%d," % nvizData['points']['size']['value']
  1449. cmdPColor += "%s," % nvizData['points']['color']['value']
  1450. cmdPMarker += "%s," % markers[nvizData['points']['marker']['value']]
  1451. cmdPPos += "0,0,%d," % nvizData['points']['height']['value']
  1452. cmdPLayer += "1,1,"
  1453. if cmdLines:
  1454. cmd += "vline=" + cmdLines.strip(',') + ' '
  1455. cmd += "vline_width=" + cmdLWidth.strip(',') + ' '
  1456. cmd += "vline_color=" + cmdLColor.strip(',') + ' '
  1457. cmd += "vline_height=" + cmdLHeight.strip(',') + ' '
  1458. cmd += "vline_mode=" + cmdLMode.strip(',') + ' '
  1459. cmd += "vline_position=" + cmdLPos.strip(',') + ' '
  1460. if cmdPoints:
  1461. cmd += "vpoint=" + cmdPoints.strip(',') + ' '
  1462. cmd += "vpoint_width=" + cmdPWidth.strip(',') + ' '
  1463. cmd += "vpoint_color=" + cmdPColor.strip(',') + ' '
  1464. cmd += "vpoint_size=" + cmdPSize.strip(',') + ' '
  1465. cmd += "vpoint_marker=" + cmdPMarker.strip(',') + ' '
  1466. cmd += "vpoint_position=" + cmdPPos.strip(',') + ' '
  1467. cmd += "vpoint_layer=" + cmdPLayer.strip(',') + ' '
  1468. cmd += "\\\n"
  1469. #
  1470. # volumes
  1471. #
  1472. if volumes:
  1473. cmdName = cmdShade = cmdRes = cmdPos = cmdIso = ""
  1474. cmdIsoColorMap = cmdIsoColorVal = cmdIsoTrMap = cmdIsoTrVal = ""
  1475. cmdSlice = cmdSliceTransp = cmdSlicePos = ""
  1476. for i, volume in enumerate(volumes):
  1477. nvizData = self.tree.GetPyData(volume)[0]['nviz']['volume']
  1478. cmdName += "%s," % self.tree.GetPyData(volume)[0]['maplayer'].GetName()
  1479. cmdShade += "%s," % nvizData['draw']['shading']['isosurface']['desc']
  1480. cmdRes += "%d," % nvizData['draw']['resolution']['isosurface']['value']
  1481. if nvizData['position']:
  1482. cmdPos += "%d,%d,%d," % (nvizData['position']['x'], nvizData['position']['y'],
  1483. nvizData['position']['z'])
  1484. for iso in nvizData['isosurface']:
  1485. level = iso['topo']['value']
  1486. cmdIso += "%d:%s," % (i + 1, level)
  1487. if iso['color']['map']:
  1488. cmdIsoColorMap += "%s," % iso['color']['value']
  1489. else:
  1490. cmdIsoColorVal += "%s," % iso['color']['value']
  1491. if 'transp' in iso:
  1492. if iso['transp']['map']:
  1493. cmdIsoTrMap += "%s," % iso['transp']['value']
  1494. else:
  1495. cmdIsoTrVal += "%s," % iso['transp']['value']
  1496. for slice in nvizData['slice']:
  1497. axis = ('x','y','z')[slice['position']['axis']]
  1498. cmdSlice += "%d:%s," % (i + 1, axis)
  1499. for coord in ('x1', 'x2', 'y1', 'y2', 'z1', 'z2'):
  1500. cmdSlicePos += "%f," % slice['position'][coord]
  1501. cmdSliceTransp += "%s," % slice['transp']['value']
  1502. cmd += "volume=" + cmdName.strip(',') + ' '
  1503. cmd += "volume_shading=" + cmdShade.strip(',') + ' '
  1504. cmd += "volume_resolution=" + cmdRes.strip(',') + ' '
  1505. if nvizData['position']:
  1506. cmd += "volume_position=" + cmdPos.strip(',') + ' '
  1507. if cmdIso:
  1508. cmd += "isosurf_level=" + cmdIso.strip(',') + ' '
  1509. if cmdIsoColorMap:
  1510. cmd += "isosurf_color_map=" + cmdIsoColorMap.strip(',') + ' '
  1511. if cmdIsoColorVal:
  1512. cmd += "isosurf_color_value=" + cmdIsoColorVal.strip(',') + ' '
  1513. if cmdIsoTrMap:
  1514. cmd += "isosurf_transp_map=" + cmdIsoTrMap.strip(',') + ' '
  1515. if cmdIsoTrVal:
  1516. cmd += "isosurf_transp_value=" + cmdIsoTrVal.strip(',') + ' '
  1517. if cmdSlice:
  1518. cmd += "slice=" + cmdSlice.strip(',') + ' '
  1519. cmd += "slice_position=" + cmdSlicePos.strip(',') + ' '
  1520. cmd += "slice_transparency=" + cmdSliceTransp.strip(',') + ' '
  1521. #
  1522. # cutting planes
  1523. #
  1524. cplane = self.lmgr.nviz.FindWindowById(self.lmgr.nviz.win['cplane']['planes']).GetStringSelection()
  1525. try:
  1526. planeIndex = int(cplane.split()[1])
  1527. except IndexError:
  1528. planeIndex = None
  1529. if planeIndex is not None:
  1530. shading = ['clear', 'top', 'bottom', 'blend', 'shaded']
  1531. cmd += "cplane=%d " % planeIndex
  1532. cmd += "cplane_rotation=%d " % self.cplanes[planeIndex]['rotation']['rot']
  1533. cmd += "cplane_tilt=%d " % self.cplanes[planeIndex]['rotation']['tilt']
  1534. cmd += "cplane_position=%d,%d,%d " % (self.cplanes[planeIndex]['position']['x'],
  1535. self.cplanes[planeIndex]['position']['y'],
  1536. self.cplanes[planeIndex]['position']['z'])
  1537. cmd += "cplane_shading=%s " % shading[self.cplanes[planeIndex]['shading']]
  1538. cmd += "\\\n"
  1539. #
  1540. # viewpoint
  1541. #
  1542. subcmd = "position=%.2f,%.2f " % (self.view['position']['x'], self.view['position']['y'])
  1543. subcmd += "height=%d " % (self.iview['height']['value'])
  1544. subcmd += "perspective=%d " % (self.view['persp']['value'])
  1545. subcmd += "twist=%d " % (self.view['twist']['value'])
  1546. subcmd += "zexag=%d " % (self.view['z-exag']['value'])
  1547. subcmd += "focus=%d,%d,%d " % (self.iview['focus']['x'],self.iview['focus']['y'],self.iview['focus']['z'])
  1548. cmd += subcmd
  1549. # background
  1550. subcmd = "bgcolor=%d:%d:%d " % (self.view['background']['color'])
  1551. if self.view['background']['color'] != (255, 255, 255):
  1552. cmd += subcmd
  1553. cmd += "\\\n"
  1554. # light
  1555. subcmd = "light_position=%.2f,%.2f,%.2f " % (self.light['position']['x'],
  1556. self.light['position']['y'],
  1557. self.light['position']['z']/100.)
  1558. subcmd += "light_brightness=%d " % (self.light['bright'])
  1559. subcmd += "light_ambient=%d " % (self.light['ambient'])
  1560. subcmd += "light_color=%d:%d:%d " % (self.light['color'])
  1561. cmd += subcmd
  1562. cmd += "\\\n"
  1563. # fringe
  1564. toolWindow = self.lmgr.nviz
  1565. direction = ''
  1566. for dir in ('nw', 'ne', 'sw', 'se'):
  1567. if toolWindow.FindWindowById(toolWindow.win['fringe'][dir]).IsChecked():
  1568. direction += "%s," % dir
  1569. if direction:
  1570. subcmd = "fringe=%s " % (direction.strip(','))
  1571. color = toolWindow.FindWindowById(toolWindow.win['fringe']['color']).GetValue()
  1572. subcmd += "fringe_color=%d:%d:%d " % (color[0], color[1], color[2])
  1573. subcmd += "fringe_elevation=%d " % (toolWindow.FindWindowById(toolWindow.win['fringe']['elev']).GetValue())
  1574. cmd += subcmd
  1575. cmd += "\\\n"
  1576. # north arrow
  1577. if self.decoration['arrow']['show']:
  1578. subcmd = "arrow_position=%d,%d " % (self.decoration['arrow']['position']['x'],
  1579. self.decoration['arrow']['position']['y'])
  1580. subcmd += "arrow_color=%s " % self.decoration['arrow']['color']
  1581. subcmd += "arrow_size=%d " % self.decoration['arrow']['size']
  1582. cmd += subcmd
  1583. # output
  1584. subcmd = 'output=nviz_output '
  1585. subcmd += 'format=ppm '
  1586. subcmd += 'size=%d,%d ' % self.GetClientSizeTuple()
  1587. cmd += subcmd
  1588. return cmd
  1589. def OnNvizCmd(self):
  1590. """!Generate and write command to command output"""
  1591. self.log.WriteLog(self.NvizCmdCommand(), switchPage = True)
  1592. def SaveToFile(self, FileName, FileType, width, height):
  1593. """!This draws the DC to a buffer that can be saved to a file.
  1594. @todo fix BufferedPaintDC
  1595. @param FileName file name
  1596. @param FileType type of bitmap
  1597. @param width image width
  1598. @param height image height
  1599. """
  1600. self._display.SaveToFile(FileName, width, height)
  1601. # pbuffer = wx.EmptyBitmap(max(1, self.Map.width), max(1, self.Map.height))
  1602. # dc = wx.BufferedPaintDC(self, pbuffer)
  1603. # dc.Clear()
  1604. # self.SetCurrent()
  1605. # self._display.Draw(False, -1)
  1606. # pbuffer.SaveFile(FileName, FileType)
  1607. # self.SwapBuffers()
  1608. def GetDisplay(self):
  1609. """!Get display instance"""
  1610. return self._display
  1611. def ZoomToMap(self):
  1612. """!Reset view
  1613. """
  1614. self.lmgr.nviz.OnResetView(None)
  1615. class DragShape:
  1616. """!Class for drawing overlays (based on wxpython demo)"""
  1617. def __init__(self, bmp, id):
  1618. self.bmp = bmp
  1619. self.id = id
  1620. self.pos = (0,0)
  1621. self.shown = True
  1622. self.text = None
  1623. def HitTest(self, pt):
  1624. rect = self.GetRect()
  1625. return rect.InsideXY(pt.x, pt.y)
  1626. def GetRect(self):
  1627. return wx.Rect(self.pos[0], self.pos[1],
  1628. self.bmp.GetWidth(), self.bmp.GetHeight())
  1629. def Draw(self, dc, op = wx.COPY):
  1630. if self.bmp.Ok():
  1631. memDC = wx.MemoryDC()
  1632. memDC.SelectObject(self.bmp)
  1633. dc.Blit(self.pos[0], self.pos[1],
  1634. self.bmp.GetWidth(), self.bmp.GetHeight(),
  1635. memDC, 0, 0, op, True)
  1636. return True
  1637. else:
  1638. return False