mapwindow.py 100 KB

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  1. """
  2. @package nviz.mapwindow
  3. @brief wxGUI 3D view mode (map canvas)
  4. This module implements 3D visualization mode for map display.
  5. List of classes:
  6. - mapwindow::NvizThread
  7. - mapwindow::GLWindow
  8. (C) 2008-2011 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> (Google SoC 2008/2010)
  12. @author Anna Kratochvilova <kratochanna gmail.com> (Google SoC 2011)
  13. """
  14. import os
  15. import sys
  16. import six
  17. import time
  18. import copy
  19. import math
  20. from threading import Thread
  21. import wx
  22. from wx.lib.newevent import NewEvent
  23. from wx import glcanvas
  24. from wx.glcanvas import WX_GL_RGBA, WX_GL_DOUBLEBUFFER, WX_GL_DEPTH_SIZE
  25. import grass.script as grass
  26. from grass.pydispatch.signal import Signal
  27. from core.gcmd import GMessage, GException, GError
  28. from core.debug import Debug
  29. from mapwin.base import MapWindowBase
  30. from core.settings import UserSettings
  31. from nviz.workspace import NvizSettings
  32. from nviz.animation import Animation
  33. from nviz import wxnviz
  34. from core.globalvar import CheckWxVersion
  35. from core.utils import str2rgb
  36. from core.giface import Notification
  37. wxUpdateProperties, EVT_UPDATE_PROP = NewEvent()
  38. wxUpdateView, EVT_UPDATE_VIEW = NewEvent()
  39. wxUpdateLight, EVT_UPDATE_LIGHT = NewEvent()
  40. wxUpdateCPlane, EVT_UPDATE_CPLANE = NewEvent()
  41. class NvizThread(Thread):
  42. def __init__(self, log, progressbar, window):
  43. Thread.__init__(self)
  44. Debug.msg(5, "NvizThread.__init__():")
  45. self.log = log
  46. self.progressbar = progressbar
  47. self.window = window
  48. self._display = None
  49. self.setDaemon(True)
  50. def run(self):
  51. self._display = wxnviz.Nviz(self.log, self.progressbar)
  52. def GetDisplay(self):
  53. """Get display instance"""
  54. return self._display
  55. class GLWindow(MapWindowBase, glcanvas.GLCanvas):
  56. """OpenGL canvas for Map Display Window"""
  57. def __init__(self, parent, giface, frame, Map, tree, lmgr, id=wx.ID_ANY):
  58. """All parameters except for id are mandatory. The todo is to remove
  59. them completely."""
  60. self.parent = parent
  61. self.tree = tree
  62. self.lmgr = lmgr
  63. self.frame = frame
  64. # for wxGTK we need to set WX_GL_DEPTH_SIZE to draw vectors correctly
  65. # but we don't know the right value
  66. # in wxpython 2.9, there is IsDisplaySupported
  67. if CheckWxVersion(version=[2, 8, 11]) and \
  68. sys.platform not in ('win32', 'darwin'):
  69. depthBuffer = int(
  70. UserSettings.Get(
  71. group='display',
  72. key='nvizDepthBuffer',
  73. subkey='value'))
  74. attribs = [
  75. WX_GL_RGBA,
  76. WX_GL_DOUBLEBUFFER,
  77. WX_GL_DEPTH_SIZE,
  78. depthBuffer,
  79. 0]
  80. glcanvas.GLCanvas.__init__(self, parent, id, attribList=attribs)
  81. else:
  82. glcanvas.GLCanvas.__init__(self, parent, id)
  83. MapWindowBase.__init__(self, parent=parent, giface=giface, Map=Map)
  84. self.Hide()
  85. # TODO: same signals as in BufferedMapWindow
  86. # same interface is good, but how to ensure same names
  87. # or avoid duplication, define in map window base class?
  88. # Emitted when mouse us moving (mouse motion event)
  89. # Parametres are x and y of the mouse position in map (cell) units
  90. self.mouseMoving = Signal('GLWindow.mouseMoving')
  91. # Emitted when the zoom history stack is emptied
  92. self.zoomHistoryUnavailable = Signal('GLWindow.zoomHistoryUnavailable')
  93. # Emitted when the zoom history stack is not empty
  94. self.zoomHistoryAvailable = Signal('GLWindow.zoomHistoryAvailable')
  95. # Emitted when map was queried, parameters x, y are mouse coordinates
  96. # TODO: change pixel coordinates to map coordinates (using Pixel2Cell)
  97. self.mapQueried = Signal('GLWindow.mapQueried')
  98. self.init = False
  99. self.initView = False
  100. self.context = None
  101. if CheckWxVersion(version=[2, 9]):
  102. self.context = glcanvas.GLContext(self)
  103. # render mode
  104. self.render = {'quick': False,
  105. # do not render vector lines in quick mode
  106. 'vlines': False,
  107. 'vpoints': False,
  108. 'overlays': False}
  109. self.mouse = {
  110. 'use': 'pointer'
  111. }
  112. # list of loaded map layers (layer tree items)
  113. self.layers = list()
  114. # list of constant surfaces
  115. self.constants = list()
  116. # id of base surface (when vector is loaded and no surface exist)
  117. self.baseId = -1
  118. # list of cutting planes
  119. self.cplanes = list()
  120. # list of query points
  121. self.qpoints = list()
  122. # list of past views
  123. self.viewhistory = []
  124. self.saveHistory = False
  125. # offset for dialog (e.g. DisplayAttributesDialog)
  126. self.dialogOffset = 5
  127. # overlays
  128. self.overlays = {}
  129. self.imagelist = []
  130. self.overlay = wx.Overlay()
  131. #self.pdc = wx.PseudoDC()
  132. self.dragid = -1
  133. self.hitradius = 5
  134. # layer manager toolwindow
  135. self.toolWin = None
  136. if self.lmgr:
  137. self.log = self.lmgr._gconsole
  138. logerr = self.lmgr._gconsole.GetLog(err=True)
  139. logmsg = self.lmgr._gconsole.GetLog()
  140. else:
  141. self.log = logmsg = sys.stdout
  142. logerr = sys.stderr
  143. # create nviz instance - use display region instead of computational
  144. os.environ['GRASS_REGION'] = self.Map.SetRegion(
  145. windres=True, windres3=True)
  146. self.nvizThread = NvizThread(logerr,
  147. self.parent.GetProgressBar(),
  148. logmsg)
  149. self.nvizThread.start()
  150. time.sleep(.1)
  151. self._display = self.nvizThread.GetDisplay()
  152. # GRASS_REGION needed only for initialization
  153. del os.environ['GRASS_REGION']
  154. self.img = wx.Image(self.Map.mapfile, wx.BITMAP_TYPE_ANY)
  155. # size of MapWindow, to avoid resizing if size is the same
  156. self.size = (0, 0)
  157. # default values
  158. self.nvizDefault = NvizSettings()
  159. self.view = copy.deepcopy(
  160. UserSettings.Get(
  161. group='nviz',
  162. key='view')) # copy
  163. self.iview = UserSettings.Get(
  164. group='nviz', key='view', settings_type='internal')
  165. self.light = copy.deepcopy(
  166. UserSettings.Get(
  167. group='nviz',
  168. key='light')) # copy
  169. self.decoration = self.nvizDefault.SetDecorDefaultProp(type='arrow')
  170. self.decoration['scalebar'] = []
  171. self.decoration['arrow']['size'] = self._getDecorationSize()
  172. self.fly = self.InitFly()
  173. # timer for flythrough
  174. self.timerFly = wx.Timer(self)
  175. # timer for animations
  176. self.timerAnim = wx.Timer(self)
  177. self.animation = Animation(mapWindow=self, timer=self.timerAnim)
  178. self.Bind(wx.EVT_ERASE_BACKGROUND, self.OnEraseBackground)
  179. self.Bind(wx.EVT_SIZE, self.OnSize)
  180. self.Bind(wx.EVT_PAINT, self.OnPaint)
  181. self._bindMouseEvents()
  182. self.Bind(EVT_UPDATE_PROP, self.UpdateMapObjProperties)
  183. self.Bind(EVT_UPDATE_VIEW, self.OnUpdateView)
  184. self.Bind(EVT_UPDATE_LIGHT, self.UpdateLight)
  185. self.Bind(EVT_UPDATE_CPLANE, self.OnUpdateCPlane)
  186. self.Bind(wx.EVT_TIMER, self.OnTimerAnim, self.timerAnim)
  187. self.Bind(wx.EVT_TIMER, self.OnTimerFly, self.timerFly)
  188. self.Bind(wx.EVT_KEY_DOWN, self.OnKeyDown)
  189. self.Bind(wx.EVT_KEY_UP, self.OnKeyUp)
  190. self.Bind(wx.EVT_CLOSE, self.OnClose)
  191. if CheckWxVersion(version=[2, 8, 11]) and \
  192. sys.platform not in ('win32', 'darwin'):
  193. wx.CallLater(3000, self._warningDepthBuffer)
  194. # cplanes cannot be initialized now
  195. wx.CallLater(1000, self.InitCPlanes)
  196. def _warningDepthBuffer(self):
  197. if not self.initView:
  198. message = _("Opening 3D view was not successful. "
  199. "Please try to change the value of depth buffer "
  200. "in GUI Settings dialog > tab Map Display > Advanced "
  201. "and restart GUI.")
  202. GMessage(message)
  203. def InitFly(self):
  204. """Initialize fly through dictionary"""
  205. fly = {'interval': 10, # interval for timerFly
  206. 'value': [0, 0, 0], # calculated values for navigation
  207. 'mode': 0, # fly through mode (0, 1)
  208. 'exag': { # sensitivity
  209. 'move': UserSettings.Get(group='nviz', key='fly', subkey=['exag', 'move']),
  210. 'turn': UserSettings.Get(group='nviz', key='fly', subkey=['exag', 'turn'])},
  211. 'exagMultiplier': 3, # speed up by Shift
  212. 'flySpeed': 4, # speed of flying
  213. 'mouseControl': None, # if mouse or keys are used
  214. # virtual mouse position when using arrows
  215. 'pos': {'x': 0, 'y': 0},
  216. 'arrowStep': 50, # step in pixels (when using arrows)
  217. 'flySpeedStep': 2,
  218. }
  219. return fly
  220. def OnTimerFly(self, event):
  221. """Fly event was emitted, move the scene"""
  222. if self.mouse['use'] != 'fly':
  223. return
  224. if self.fly['mouseControl']:
  225. mx, my = self.ComputeMxMy(*self.mouse['tmp'])
  226. else:
  227. mx, my = self.ComputeMxMy(
  228. self.fly['pos']['x'],
  229. self.fly['pos']['y'])
  230. self.ComputeFlyValues(mx=mx, my=my)
  231. self._display.FlyThrough(
  232. flyInfo=self.fly['value'],
  233. mode=self.fly['mode'],
  234. exagInfo=self.fly['exag'])
  235. self.ChangeInnerView()
  236. self.render['quick'] = True
  237. self.Refresh(False)
  238. def ComputeMxMy(self, x, y):
  239. """Compute values for flythrough navigation
  240. (ComputeFlyValues should follow).
  241. Based on visualization/nviz/src/togl_flythrough.c.
  242. :param x,y: screen coordinates
  243. """
  244. sx, sy = self.GetClientSize()
  245. dx = dy = 0.01
  246. mx = 2 * (float(x) / sx) - 1
  247. my = 2 * (float(y) / sy) - 1
  248. if mx < - dx:
  249. mx += dx
  250. elif mx > dx:
  251. mx -= dx
  252. else:
  253. mx = 0.0 # ?
  254. if my < - dy:
  255. my += dy
  256. elif my > dy:
  257. my -= dy
  258. else:
  259. my = 0.0
  260. mx = mx / (1.0 - dx)
  261. my = my / (1.0 - dy)
  262. # Quadratic seems smoother
  263. mx *= abs(mx)
  264. my *= abs(my)
  265. return mx, my
  266. def ComputeFlyValues(self, mx, my):
  267. """Compute parameters for fly-through navigation
  268. :param mx,my: results from ComputeMxMy method
  269. """
  270. self.fly['value'] = [0, 0, 0]
  271. if self.fly['mode'] == 0:
  272. self.fly['value'][0] = self.fly[
  273. 'flySpeed'] * self.fly['interval'] / 1000. # forward */
  274. self.fly['value'][
  275. 1] = mx * 0.1 * self.fly['interval'] / 1000. # heading
  276. self.fly['value'][
  277. 2] = my * 0.1 * self.fly['interval'] / 1000. # pitch
  278. else:
  279. self.fly['value'][0] = mx * 100.0 * self.fly['interval'] / 1000.
  280. self.fly['value'][2] = - my * 100.0 * self.fly['interval'] / 1000.
  281. def ChangeFlySpeed(self, increase):
  282. """Increase/decrease flight spped"""
  283. if increase:
  284. self.fly['flySpeed'] += self.fly['flySpeedStep']
  285. else:
  286. self.fly['flySpeed'] -= self.fly['flySpeedStep']
  287. def __del__(self):
  288. """Stop timers if running, unload data"""
  289. self.StopTimer(self.timerAnim)
  290. self.StopTimer(self.timerFly)
  291. self.UnloadDataLayers(force=True)
  292. def StopTimer(self, timer):
  293. """Stop timer if running"""
  294. if timer.IsRunning():
  295. timer.Stop()
  296. def _bindMouseEvents(self):
  297. self.Bind(wx.EVT_MOUSE_EVENTS, self.OnMouseAction)
  298. self.Bind(wx.EVT_MOTION, self.OnMotion)
  299. def InitCPlanes(self):
  300. """Initialize cutting planes list"""
  301. for i in range(self._display.GetCPlanesCount()):
  302. cplane = copy.deepcopy(
  303. UserSettings.Get(
  304. group='nviz',
  305. key='cplane'))
  306. cplane['on'] = False
  307. self.cplanes.append(cplane)
  308. def SetToolWin(self, toolWin):
  309. """Sets reference to nviz toolwindow in layer manager"""
  310. self.toolWin = toolWin
  311. def GetToolWin(self):
  312. """Returns reference to nviz toolwindow in layer manager"""
  313. return self.toolWin
  314. def OnClose(self, event):
  315. self.StopTimer(self.timerAnim)
  316. self.StopTimer(self.timerFly)
  317. # cleanup when window actually closes (on quit) and not just is hidden
  318. self.UnloadDataLayers(force=True)
  319. def OnEraseBackground(self, event):
  320. pass # do nothing, to avoid flashing on MSW
  321. def OnSize(self, event):
  322. size = self.GetClientSize()
  323. if CheckWxVersion(version=[2, 9]):
  324. context = self.context
  325. else:
  326. context = self.GetContext()
  327. if self.size != size \
  328. and context:
  329. Debug.msg(3, "GLCanvas.OnSize(): w = %d, h = %d" %
  330. (size.width, size.height))
  331. if CheckWxVersion(version=[2, 9]):
  332. self.SetCurrent(self.context)
  333. else:
  334. self.SetCurrent()
  335. self._display.ResizeWindow(size.width,
  336. size.height)
  337. # reposition checkbox in statusbar
  338. self.parent.StatusbarReposition()
  339. # update statusbar
  340. self.parent.StatusbarUpdate()
  341. self.size = size
  342. event.Skip()
  343. def OnPaint(self, event):
  344. Debug.msg(1, "GLCanvas.OnPaint()")
  345. self.render['overlays'] = True
  346. dc = wx.PaintDC(self)
  347. self.DoPaint()
  348. def DoPaint(self):
  349. if CheckWxVersion(version=[2, 9]):
  350. self.SetCurrent(self.context)
  351. else:
  352. self.SetCurrent()
  353. if not self.initView:
  354. self._display.InitView()
  355. self.initView = True
  356. self.LoadDataLayers()
  357. self.UnloadDataLayers()
  358. if not self.init:
  359. self.ResetView()
  360. if hasattr(self.lmgr, "nviz"):
  361. self.lmgr.nviz.UpdatePage('view')
  362. self.lmgr.nviz.UpdatePage('light')
  363. self.lmgr.nviz.UpdatePage('cplane')
  364. self.lmgr.nviz.UpdatePage('decoration')
  365. self.lmgr.nviz.UpdatePage('animation')
  366. layer = self.tree.GetSelectedLayer(
  367. multi=False, checkedOnly=True)
  368. if layer:
  369. layer = self.tree.GetLayerInfo(layer, key='maplayer')
  370. if layer.type == 'raster':
  371. self.lmgr.nviz.UpdatePage('surface')
  372. self.lmgr.nviz.UpdatePage('fringe')
  373. elif layer.type == 'vector':
  374. self.lmgr.nviz.UpdatePage('vector')
  375. self.lmgr.nviz.UpdateSettings()
  376. # update widgets
  377. win = self.lmgr.nviz.FindWindowById(
  378. self.lmgr.nviz.win['vector']['lines']['surface'])
  379. win.SetItems(self.GetLayerNames('raster'))
  380. self.init = True
  381. self.UpdateMap()
  382. def DrawImages(self):
  383. """Draw overlay image"""
  384. for texture in self.imagelist:
  385. if texture.IsActive():
  386. texture.Draw()
  387. def UpdateOverlays(self):
  388. """Renders overlays (legend, text).
  389. Once this is done _onUpdateOverlays is called"""
  390. self.Map.ChangeMapSize(self.GetClientSize())
  391. self.Map.RenderOverlays(force=True)
  392. def _onUpdateOverlays(self):
  393. """Converts rendered overlay files and text labels to wx.Image
  394. and then to textures so that they can be rendered by OpenGL.
  395. Updates self.imagelist"""
  396. # update images (legend and text)
  397. for oid, overlay in six.iteritems(self.overlays):
  398. if not overlay.IsShown() or overlay.name in ('barscale', 'northarrow'):
  399. continue
  400. if oid not in [t.GetId() for t in self.imagelist]: # new
  401. self.CreateTexture(overlay=overlay)
  402. else:
  403. for t in self.imagelist:
  404. if t.GetId() == oid: # check if it is the same
  405. if not t.Corresponds(overlay):
  406. self.imagelist.remove(t)
  407. t = self.CreateTexture(overlay=overlay)
  408. self.Refresh()
  409. def CreateTexture(self, overlay):
  410. """Create texture from overlay image"""
  411. texture = wxnviz.ImageTexture(
  412. filepath=overlay.layer.mapfile, overlayId=overlay.id,
  413. coords=list(overlay.coords), cmd=overlay.GetCmd())
  414. if not texture.textureId: # texture too big
  415. GMessage(
  416. parent=self, message=_(
  417. "Image is too large, your OpenGL implementation "
  418. "supports maximum texture size %d px.") %
  419. texture.maxSize)
  420. return texture
  421. self.imagelist.append(texture)
  422. return texture
  423. def ClearTextures(self):
  424. self.imagelist = []
  425. def FindObjects(self, mouseX, mouseY, radius):
  426. """Find object which was clicked on"""
  427. for texture in self.imagelist:
  428. if texture.HitTest(mouseX, mouseY, radius):
  429. return texture.id
  430. return -1
  431. def OnTimerAnim(self, event):
  432. self.animation.Update()
  433. def GetAnimation(self):
  434. return self.animation
  435. def OnKeyDown(self, event):
  436. """Key was pressed.
  437. Used for fly-through mode.
  438. """
  439. if not self.mouse['use'] == 'fly':
  440. return
  441. key = event.GetKeyCode()
  442. if key == wx.WXK_CONTROL: # Mac ?
  443. self.fly['mode'] = 1
  444. elif key == wx.WXK_SHIFT:
  445. self.fly['exag']['move'] *= self.fly['exagMultiplier']
  446. self.fly['exag']['turn'] *= self.fly['exagMultiplier']
  447. elif key == wx.WXK_ESCAPE and self.timerFly.IsRunning() and not self.fly['mouseControl']:
  448. self.StopTimer(self.timerFly)
  449. self.fly['mouseControl'] = None
  450. self.render['quick'] = False
  451. self.Refresh(False)
  452. elif key in (wx.WXK_UP, wx.WXK_DOWN, wx.WXK_LEFT, wx.WXK_RIGHT):
  453. if not self.fly['mouseControl']:
  454. if not self.timerFly.IsRunning():
  455. sx, sy = self.GetClientSize()
  456. self.fly['pos']['x'] = sx / 2
  457. self.fly['pos']['y'] = sy / 2
  458. self.fly['mouseControl'] = False # controlled by keyboard
  459. self.timerFly.Start(self.fly['interval'])
  460. self.ProcessFlyByArrows(keyCode=key)
  461. # change speed of flight when using mouse
  462. else:
  463. if key == wx.WXK_UP:
  464. self.ChangeFlySpeed(increase=True)
  465. elif key == wx.WXK_DOWN:
  466. self.ChangeFlySpeed(increase=False)
  467. elif key in (wx.WXK_HOME, wx.WXK_PAGEUP) and self.timerFly.IsRunning():
  468. self.ChangeFlySpeed(increase=True)
  469. elif key in (wx.WXK_END, wx.WXK_PAGEDOWN) and self.timerFly.IsRunning():
  470. self.ChangeFlySpeed(increase=False)
  471. event.Skip()
  472. def ProcessFlyByArrows(self, keyCode):
  473. """Process arrow key during fly-through"""
  474. step = self.fly['arrowStep']
  475. if keyCode == wx.WXK_UP:
  476. self.fly['pos']['y'] -= step
  477. elif keyCode == wx.WXK_DOWN:
  478. self.fly['pos']['y'] += step
  479. elif keyCode == wx.WXK_LEFT:
  480. self.fly['pos']['x'] -= step
  481. elif keyCode == wx.WXK_RIGHT:
  482. self.fly['pos']['x'] += step
  483. def OnKeyUp(self, event):
  484. """Key was released.
  485. Used for fly-through mode.
  486. """
  487. if not self.mouse['use'] == 'fly':
  488. return
  489. key = event.GetKeyCode()
  490. if key == wx.WXK_CONTROL: # Mac ?
  491. self.fly['mode'] = 0
  492. elif key == wx.WXK_SHIFT:
  493. self.fly['exag']['move'] = math.floor(
  494. self.fly['exag']['move'] / self.fly['exagMultiplier'])
  495. self.fly['exag']['turn'] = math.floor(
  496. self.fly['exag']['turn'] / self.fly['exagMultiplier'])
  497. event.Skip()
  498. def OnMouseAction(self, event):
  499. """Handle mouse events"""
  500. # zoom with mouse wheel
  501. if event.GetWheelRotation() != 0:
  502. self.OnMouseWheel(event)
  503. # left mouse button pressed
  504. elif event.LeftDown():
  505. self.OnLeftDown(event)
  506. # left mouse button released
  507. elif event.LeftUp():
  508. self.OnLeftUp(event)
  509. # dragging
  510. elif event.Dragging():
  511. self.OnDragging(event)
  512. # double click
  513. elif event.ButtonDClick():
  514. self.OnDClick(event)
  515. elif event.Moving():
  516. pixelCoordinates = event.GetPosition()
  517. coordinates = self.Pixel2Cell(pixelCoordinates)
  518. # coordinates are none when no map is loaded
  519. # TODO: handle in more clever way: check the state
  520. if coordinates is not None:
  521. self.mouseMoving.emit(x=coordinates[0], y=coordinates[1])
  522. event.Skip()
  523. def OnMouseWheel(self, event):
  524. """Change perspective"""
  525. if UserSettings.Get(group='display',
  526. key='mouseWheelZoom',
  527. subkey='selection') == 2:
  528. event.Skip()
  529. return
  530. wheel = event.GetWheelRotation()
  531. Debug.msg(5, "GLWindow.OnMouseWheel(): wheel = %d" % wheel)
  532. if self.timerFly.IsRunning() and self.fly['mouseControl']:
  533. if wheel > 0:
  534. self.ChangeFlySpeed(increase=True)
  535. else:
  536. self.ChangeFlySpeed(increase=False)
  537. else:
  538. if UserSettings.Get(group='display',
  539. key='scrollDirection',
  540. subkey='selection'):
  541. wheel *= -1
  542. self.DoZoom(zoomtype=wheel, pos=event.GetPosition())
  543. # update statusbar
  544. # self.parent.StatusbarUpdate()
  545. def OnLeftDown(self, event):
  546. """On left mouse down"""
  547. self.mouse['begin'] = event.GetPosition()
  548. self.mouse['tmp'] = event.GetPosition()
  549. if self.mouse['use'] == "lookHere":
  550. size = self.GetClientSize()
  551. self._display.LookHere(
  552. self.mouse['begin'][0],
  553. size[1] - self.mouse['begin'][1])
  554. focus = self._display.GetFocus()
  555. for i, coord in enumerate(('x', 'y', 'z')):
  556. self.iview['focus'][coord] = focus[i]
  557. self.saveHistory = True
  558. self.Refresh(False)
  559. toggle = self.lmgr.nviz.FindWindowByName('here')
  560. toggle.SetValue(False)
  561. self.mouse['use'] = 'pointer'
  562. self.SetNamedCursor('default')
  563. if self.mouse['use'] == 'arrow':
  564. pos = event.GetPosition()
  565. size = self.GetClientSize()
  566. self.SetDrawArrow((pos[0], size[1] - pos[1]))
  567. if self.mouse['use'] == 'scalebar':
  568. pos = event.GetPosition()
  569. size = self.GetClientSize()
  570. self.SetDrawScalebar((pos[0], size[1] - pos[1]))
  571. if self.mouse['use'] == 'pointer':
  572. # get decoration id
  573. self.dragid = self.FindObjects(
  574. self.mouse['tmp'][0],
  575. self.mouse['tmp'][1],
  576. self.hitradius)
  577. if self.mouse['use'] == 'fly':
  578. if not self.timerFly.IsRunning():
  579. self.timerFly.Start(self.fly['interval'])
  580. self.fly['mouseControl'] = True
  581. event.Skip()
  582. def OnDragging(self, event):
  583. if self.mouse['use'] == 'pointer':
  584. if self.dragid >= 0:
  585. self.DragItem(self.dragid, event.GetPosition())
  586. if self.mouse['use'] == 'rotate':
  587. dx, dy = event.GetX(
  588. ) - self.mouse['tmp'][0], event.GetY() - self.mouse['tmp'][1]
  589. angle, x, y, z = self._display.GetRotationParameters(dx, dy)
  590. self._display.Rotate(angle, x, y, z)
  591. self.render['quick'] = True
  592. self.Refresh(False)
  593. if self.mouse['use'] == 'pan':
  594. self.FocusPanning(event)
  595. self.mouse['tmp'] = event.GetPosition()
  596. event.Skip()
  597. def Pixel2Cell(self, xyCoords):
  598. """Convert image coordinates to real word coordinates
  599. :param xyCoords: image coordinates
  600. :return: easting, northing
  601. :return: None on error
  602. """
  603. size = self.GetClientSize()
  604. # UL -> LL
  605. x, y = xyCoords
  606. sid, x, y, z = self._display.GetPointOnSurface(x, size[1] - y)
  607. if not sid:
  608. return None
  609. return (x, y)
  610. def DoZoom(self, zoomtype, pos):
  611. """Change perspective and focus"""
  612. prev_value = self.view['persp']['value']
  613. if zoomtype > 0:
  614. value = -1 * self.view['persp']['step']
  615. else:
  616. value = self.view['persp']['step']
  617. self.view['persp']['value'] += value
  618. if self.view['persp']['value'] < 1:
  619. self.view['persp']['value'] = 1
  620. elif self.view['persp']['value'] > 180:
  621. self.view['persp']['value'] = 180
  622. if prev_value != self.view['persp']['value']:
  623. if hasattr(self.lmgr, "nviz"):
  624. self.lmgr.nviz.UpdateSettings()
  625. x, y = pos[0], self.GetClientSize()[1] - pos[1]
  626. result = self._display.GetPointOnSurface(x, y)
  627. if result[0]:
  628. self._display.LookHere(x, y)
  629. focus = self._display.GetFocus()
  630. for i, coord in enumerate(('x', 'y', 'z')):
  631. self.iview['focus'][coord] = focus[i]
  632. self._display.SetView(
  633. self.view['position']['x'],
  634. self.view['position']['y'],
  635. self.iview['height']['value'],
  636. self.view['persp']['value'],
  637. self.view['twist']['value'])
  638. self.saveHistory = True
  639. # redraw map
  640. self.DoPaint()
  641. def OnLeftUp(self, event):
  642. self.mouse['end'] = event.GetPosition()
  643. if self.mouse["use"] == "query":
  644. # here changed from 'begin' to 'end' because it is more common
  645. # behavior used also in 2d map window
  646. # and moreover we are in left up
  647. self.mapQueried.emit(x=self.mouse['end'][0],
  648. y=self.mouse['end'][1])
  649. elif self.mouse["use"] in ('arrow', 'scalebar'):
  650. self.lmgr.nviz.FindWindowById(
  651. self.lmgr.nviz.win['decoration'][
  652. self.mouse["use"]]['place']).SetValue(False)
  653. if self.mouse["use"] == 'scalebar':
  654. scalebarNum = len(self.decoration['scalebar'])
  655. self.lmgr.nviz.AddScalebar(scalebarNum - 1)
  656. else:
  657. self.lmgr.nviz.AddArrow()
  658. self.mouse['use'] = 'pointer'
  659. self.SetNamedCursor('default')
  660. elif self.mouse['use'] == 'pointer':
  661. if self.dragid >= 0:
  662. dx = self.mouse['end'][0] - self.mouse['begin'][0]
  663. dy = self.mouse['end'][1] - self.mouse['begin'][1]
  664. if self.dragid in self.overlays:
  665. coords = self.overlays[self.dragid].coords
  666. self.overlays[
  667. self.dragid].coords = [
  668. coords[0] + dx, coords[1] + dy]
  669. self.dragid = -1
  670. self.render['quick'] = False
  671. self.Refresh(False)
  672. elif self.mouse['use'] == 'rotate':
  673. self._display.UnsetRotation()
  674. self.iview['rotation'] = self._display.GetRotationMatrix()
  675. self.saveHistory = True
  676. self.render['quick'] = False
  677. self.Refresh(False)
  678. elif self.mouse['use'] == 'pan':
  679. self.saveHistory = True
  680. self.render['quick'] = False
  681. self.Refresh(False)
  682. elif self.mouse['use'] == 'fly':
  683. if self.fly['mouseControl']:
  684. self.StopTimer(self.timerFly)
  685. self.fly['mouseControl'] = None
  686. # for key in self.iview['dir'].keys():
  687. #self.iview[''][key] = -1
  688. # this causes sudden change, but it should be there
  689. # if hasattr(self.lmgr, "nviz"):
  690. # self.lmgr.nviz.UpdateSettings()
  691. self.render['quick'] = False
  692. self.Refresh(False)
  693. elif self.mouse['use'] == 'zoom':
  694. self.DoZoom(zoomtype=self.zoomtype, pos=self.mouse['end'])
  695. event.Skip()
  696. def OnDClick(self, event):
  697. """On mouse double click"""
  698. if self.mouse['use'] != 'pointer':
  699. return
  700. pos = event.GetPosition()
  701. self.dragid = self.FindObjects(pos[0], pos[1], self.hitradius)
  702. self.overlayActivated.emit(overlayId=self.dragid)
  703. def FocusPanning(self, event):
  704. """Simulation of panning using focus"""
  705. size = self.GetClientSize()
  706. id1, x1, y1, z1 = self._display.GetPointOnSurface(
  707. self.mouse['tmp'][0], size[1] - self.mouse['tmp'][1])
  708. id2, x2, y2, z2 = self._display.GetPointOnSurface(
  709. event.GetX(), size[1] - event.GetY())
  710. if id1 and id1 == id2:
  711. dx, dy, dz = x2 - x1, y2 - y1, z2 - z1
  712. focus = self.iview['focus']
  713. focus['x'], focus['y'], focus['z'] = self._display.GetFocus()
  714. focus['x'] -= dx
  715. focus['y'] -= dy
  716. focus['z'] -= dz
  717. # update properties
  718. self.PostViewEvent()
  719. self.mouse['tmp'] = event.GetPosition()
  720. self.render['quick'] = True
  721. self.Refresh(False)
  722. def HorizontalPanning(self, event):
  723. """Move all layers in horizontal (x, y) direction.
  724. Currently not used.
  725. """
  726. size = self.GetClientSize()
  727. id1, x1, y1, z1 = self._display.GetPointOnSurface(
  728. self.mouse['tmp'][0], size[1] - self.mouse['tmp'][1])
  729. id2, x2, y2, z2 = self._display.GetPointOnSurface(
  730. event.GetX(), size[1] - event.GetY())
  731. if id1 and id1 == id2:
  732. dx, dy = x2 - x1, y2 - y1
  733. # find raster and volume
  734. for item in self.layers:
  735. mapLayer = self.tree.GetLayerInfo(item, key='maplayer')
  736. data = self.tree.GetLayerInfo(item, key='nviz')
  737. if mapLayer.GetType() == 'raster':
  738. data['surface']['position']['x'] += dx
  739. data['surface']['position']['y'] += dy
  740. data['surface']['position']['update'] = None
  741. # update properties
  742. evt = wxUpdateProperties(data=data)
  743. wx.PostEvent(self, evt)
  744. if event.CmdDown() and id1 == data[
  745. 'surface']['object']['id']:
  746. break
  747. elif mapLayer.GetType() == 'raster_3d':
  748. if 'x' not in data['volume']['position']:
  749. data['volume']['position']['x'] = 0
  750. data['volume']['position']['y'] = 0
  751. data['volume']['position']['z'] = 0
  752. data['volume']['position']['x'] += dx
  753. data['volume']['position']['y'] += dy
  754. data['volume']['position']['update'] = None
  755. # update properties
  756. evt = wxUpdateProperties(data=data)
  757. wx.PostEvent(self, evt)
  758. self.mouse['tmp'] = event.GetPosition()
  759. self.render['quick'] = True
  760. self.Refresh(False)
  761. def DragItem(self, id, coords):
  762. """Drag an overlay decoration item
  763. """
  764. if id is None:
  765. return
  766. Debug.msg(5, "GLWindow.DragItem(): id=%d" % id)
  767. x, y = self.mouse['tmp']
  768. dx = coords[0] - x
  769. dy = coords[1] - y
  770. for texture in self.imagelist:
  771. if texture.id == id:
  772. texture.MoveTexture(dx, dy)
  773. self.render['quick'] = True
  774. self.Refresh(False)
  775. self.mouse['tmp'] = coords
  776. def ZoomBack(self):
  777. """Set previous view in history list
  778. """
  779. view = {}
  780. if len(self.viewhistory) > 1:
  781. self.viewhistory.pop()
  782. view = copy.deepcopy(self.viewhistory[-1])
  783. # disable tool if stack is empty
  784. if len(self.viewhistory) < 2: # disable tool
  785. self.zoomHistoryUnavailable.emit()
  786. # set view and update nviz view page
  787. self.lmgr.nviz.UpdateState(view=view[0], iview=view[1])
  788. self.lmgr.nviz.UpdatePage('view')
  789. # update map
  790. self.Refresh(False)
  791. def ViewHistory(self, view, iview):
  792. """Manages a list of last 10 views
  793. :param view: view dictionary
  794. :param iview: view dictionary (internal)
  795. :return: removed history item if exists (or None)
  796. """
  797. removed = None
  798. hview = copy.deepcopy(view)
  799. hiview = copy.deepcopy(iview)
  800. if not (self.viewhistory and self.viewhistory[-1] == (hview, hiview)):
  801. self.viewhistory.append((hview, hiview))
  802. if len(self.viewhistory) > 10:
  803. removed = self.viewhistory.pop(0)
  804. if removed:
  805. Debug.msg(4, "GLWindow.ViewHistory(): hist=%s, removed=%s" %
  806. (self.viewhistory, removed))
  807. else:
  808. Debug.msg(4, "GLWindow.ViewHistory(): hist=%s" %
  809. (self.viewhistory))
  810. # update toolbar
  811. if len(self.viewhistory) > 1:
  812. self.zoomHistoryAvailable.emit()
  813. else:
  814. self.zoomHistoryUnavailable.emit()
  815. return removed
  816. def ResetViewHistory(self):
  817. """Reset view history"""
  818. self.viewhistory = list()
  819. def GoTo(self, e, n):
  820. """Focus on given point"""
  821. w = self.Map.region['w']
  822. s = self.Map.region['s']
  823. e -= w
  824. n -= s
  825. focus = self.iview['focus']
  826. focus['x'], focus['y'] = e, n
  827. self.saveHistory = True
  828. # update properties
  829. self.PostViewEvent()
  830. self.render['quick'] = False
  831. self.Refresh(False)
  832. def QuerySurface(self, x, y):
  833. """Query surface on given position"""
  834. size = self.GetClientSize()
  835. result = self._display.QueryMap(x, size[1] - y)
  836. if result:
  837. self.qpoints.append((result['x'], result['y'], result['z']))
  838. self.log.WriteLog("%-30s: %.3f" % (_("Easting"), result['x']))
  839. self.log.WriteLog("%-30s: %.3f" % (_("Northing"), result['y']))
  840. self.log.WriteLog("%-30s: %.3f" % (_("Elevation"), result['z']))
  841. name = ''
  842. for item in self.layers:
  843. if self.tree.GetLayerInfo(item, key='maplayer').type == 'raster' and self.tree.GetLayerInfo(
  844. item, key='nviz')['surface']['object']['id'] == result['id']:
  845. name = self.tree.GetLayerInfo(item, key='maplayer').name
  846. self.log.WriteLog("%-30s: %s" % (_("Surface map name"), name))
  847. self.log.WriteLog(
  848. "%-30s: %s" %
  849. (_("Surface map elevation"), result['elevation']))
  850. self.log.WriteLog("%-30s: %s" %
  851. (_("Surface map color"), result['color']))
  852. if len(self.qpoints) > 1:
  853. prev = self.qpoints[-2]
  854. curr = self.qpoints[-1]
  855. dxy = math.sqrt(pow(prev[0] - curr[0], 2) +
  856. pow(prev[1] - curr[1], 2))
  857. dxyz = math.sqrt(pow(prev[0] - curr[0], 2) +
  858. pow(prev[1] - curr[1], 2) +
  859. pow(prev[2] - curr[2], 2))
  860. self.log.WriteLog(
  861. "%-30s: %.3f" %
  862. (_("XY distance from previous"), dxy))
  863. self.log.WriteLog(
  864. "%-30s: %.3f" %
  865. (_("XYZ distance from previous"), dxyz))
  866. self.log.WriteLog(
  867. "%-30s: %.3f" %
  868. (_("Distance along surface"), self._display.GetDistanceAlongSurface(
  869. result['id'], (curr[0], curr[1]), (prev[0], prev[1]), useExag=False)))
  870. self.log.WriteLog(
  871. "%-30s: %.3f" %
  872. (_("Distance along exag. surface"), self._display.GetDistanceAlongSurface(
  873. result['id'], (curr[0], curr[1]), (prev[0], prev[1]), useExag=True)))
  874. self.log.WriteCmdLog('-' * 80)
  875. else:
  876. self.log.WriteLog(_("No point on surface"))
  877. self.log.WriteCmdLog('-' * 80)
  878. def PostViewEvent(self, zExag=False):
  879. """Change view settings"""
  880. event = wxUpdateView(zExag=zExag)
  881. wx.PostEvent(self, event)
  882. def OnQueryVector(self, event):
  883. """Query vector on given position"""
  884. self.parent.QueryVector(*event.GetPosition())
  885. def ChangeInnerView(self):
  886. """Get current viewdir and viewpoint and set view"""
  887. view = self.view
  888. iview = self.iview
  889. (view['position']['x'], view['position']['y'],
  890. iview['height']['value']) = self._display.GetViewpointPosition()
  891. for key, val in zip(('x', 'y', 'z'), self._display.GetViewdir()):
  892. iview['dir'][key] = val
  893. iview['dir']['use'] = True
  894. def OnUpdateView(self, event):
  895. """Change view settings"""
  896. if event:
  897. self.UpdateView(zexag=event.zExag)
  898. self.saveHistory = True
  899. if event:
  900. event.Skip()
  901. def UpdateView(self, zexag=False):
  902. """Change view settings"""
  903. view = self.view
  904. iview = self.iview
  905. if zexag and 'value' in view['z-exag']:
  906. self._display.SetZExag(
  907. view['z-exag']['value'] /
  908. iview['z-exag']['llRatio'])
  909. self._display.SetView(view['position']['x'], view['position']['y'],
  910. iview['height']['value'],
  911. view['persp']['value'],
  912. view['twist']['value'])
  913. if iview['dir']['use']:
  914. self._display.SetViewdir(
  915. iview['dir']['x'],
  916. iview['dir']['y'],
  917. iview['dir']['z'])
  918. elif iview['focus']['x'] != -1:
  919. self._display.SetFocus(
  920. self.iview['focus']['x'],
  921. self.iview['focus']['y'],
  922. self.iview['focus']['z'])
  923. if 'rotation' in iview:
  924. if iview['rotation']:
  925. self._display.SetRotationMatrix(iview['rotation'])
  926. else:
  927. self._display.ResetRotation()
  928. def UpdateLight(self, event):
  929. """Change light settings"""
  930. data = self.light
  931. self._display.SetLight(
  932. x=data['position']['x'],
  933. y=data['position']['y'],
  934. z=data['position']['z'] / 100.,
  935. color=data['color'],
  936. bright=data['bright'] / 100.,
  937. ambient=data['ambient'] / 100.)
  938. self._display.DrawLightingModel()
  939. if event.refresh:
  940. self.Refresh(False)
  941. def UpdateMap(self, render=True):
  942. """Updates the canvas anytime there is a change to the
  943. underlaying images or to the geometry of the canvas.
  944. :param render: re-render map composition
  945. :type render: bool
  946. """
  947. start = grass.clock()
  948. self.resize = False
  949. if self.render['quick'] is False:
  950. if sys.platform != 'darwin': # causes recursion for some reason on Mac
  951. self.parent.GetProgressBar().Show()
  952. self.parent.GetProgressBar().SetRange(2)
  953. self.parent.GetProgressBar().SetValue(0)
  954. if self.render['quick'] is False:
  955. if sys.platform != 'darwin':
  956. self.parent.GetProgressBar().SetValue(1)
  957. self._display.Draw(False, -1)
  958. if self.saveHistory:
  959. self.ViewHistory(view=self.view, iview=self.iview)
  960. self.saveHistory = False
  961. elif self.render['quick'] is True:
  962. # quick
  963. mode = wxnviz.DRAW_QUICK_SURFACE | wxnviz.DRAW_QUICK_VOLUME
  964. if self.render['vlines']:
  965. mode |= wxnviz.DRAW_QUICK_VLINES
  966. if self.render['vpoints']:
  967. mode |= wxnviz.DRAW_QUICK_VPOINTS
  968. self._display.Draw(True, mode)
  969. else: # None -> reuse last rendered image
  970. pass # TODO
  971. self.SwapBuffers()
  972. # draw fringe after SwapBuffers, otherwise it don't have to be visible
  973. # on some computers
  974. if self.render['quick'] is False:
  975. self._display.DrawFringe()
  976. if self.decoration['arrow']['show']:
  977. self._display.DrawArrow()
  978. if self.decoration['scalebar']:
  979. self._display.DrawScalebar()
  980. if self.imagelist:
  981. if ((self.render['quick'] and self.dragid > -1) or # during dragging
  982. (not self.render['quick'] and self.dragid < 0)): # redraw
  983. self._display.Start2D()
  984. self.DrawImages()
  985. stop = grass.clock()
  986. if self.render['quick'] is False:
  987. if sys.platform != 'darwin':
  988. self.parent.GetProgressBar().SetValue(2)
  989. # hide process bar
  990. self.parent.GetProgressBar().Hide()
  991. Debug.msg(3, "GLWindow.UpdateMap(): quick = %d, -> time = %g" %
  992. (self.render['quick'], (stop - start)))
  993. def EraseMap(self):
  994. """Erase the canvas
  995. """
  996. self._display.EraseMap()
  997. self.SwapBuffers()
  998. def _getDecorationSize(self):
  999. """Get initial size of north arrow/scalebar"""
  1000. size = self._display.GetLongDim() / 8.
  1001. coef = 0.01
  1002. if size < 1:
  1003. coef = 100.
  1004. return int(size * coef) / coef
  1005. def SetDrawArrow(self, pos):
  1006. """North arrow drawing.
  1007. Also, opens Appearance page of nviz notebook (needs refactoring).
  1008. """
  1009. if self._display.SetArrow(pos[0], pos[1],
  1010. self.decoration['arrow']['size'],
  1011. self.decoration['arrow']['color']):
  1012. self._display.DrawArrow()
  1013. # update
  1014. self.decoration['arrow']['show'] = True
  1015. self.decoration['arrow']['position']['x'] = pos[0]
  1016. self.decoration['arrow']['position']['y'] = pos[1]
  1017. self.Refresh(False)
  1018. # this was in mapdisp/frame.py but moved here to be with similar calls
  1019. # such as self.lmgr.nviz.UpdatePage
  1020. # anyway, it need to be handled in some another way
  1021. self.lmgr.nviz.SetPage('decoration')
  1022. def SetDrawScalebar(self, pos):
  1023. """Add scale bar, sets properties and draw"""
  1024. if len(self.decoration['scalebar']) == 0:
  1025. self.decoration['scalebar'].append(
  1026. self.nvizDefault.SetDecorDefaultProp(
  1027. type='scalebar')['scalebar'])
  1028. self.decoration['scalebar'][0]['size'] = self._getDecorationSize()
  1029. else:
  1030. self.decoration['scalebar'].append(
  1031. copy.deepcopy(self.decoration['scalebar'][-1]))
  1032. self.decoration['scalebar'][-1]['id'] += 1
  1033. ret = self._display.SetScalebar(
  1034. self.decoration['scalebar'][-1]['id'],
  1035. pos[0],
  1036. pos[1],
  1037. self.decoration['scalebar'][-1]['size'],
  1038. self.decoration['scalebar'][-1]['color'])
  1039. if ret:
  1040. self._display.DrawScalebar()
  1041. # update
  1042. self.decoration['scalebar'][-1]['position']['x'] = pos[0]
  1043. self.decoration['scalebar'][-1]['position']['y'] = pos[1]
  1044. self.Refresh(False)
  1045. self.lmgr.nviz.SetPage('decoration')
  1046. def IsLoaded(self, item):
  1047. """Check if layer (item) is already loaded
  1048. :param item: layer item
  1049. """
  1050. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1051. data = self.tree.GetLayerInfo(item, key='nviz')
  1052. if not data:
  1053. return 0
  1054. if layer.type == 'raster':
  1055. if 'object' not in data['surface']:
  1056. return 0
  1057. elif layer.type == 'vector':
  1058. if 'object' not in data['vector']['lines'] and \
  1059. 'object' not in data['vector']['points']:
  1060. return 0
  1061. return 1
  1062. def _GetDataLayers(self, item, litems):
  1063. """Return get list of enabled map layers"""
  1064. # load raster & vector maps
  1065. while item and item.IsOk():
  1066. type = self.tree.GetLayerInfo(item, key='type')
  1067. if type == 'group':
  1068. item = self.tree.GetNextItem(item)
  1069. continue
  1070. if not item.IsChecked() or \
  1071. type not in ('raster', 'vector', 'raster_3d'):
  1072. item = self.tree.GetNextItem(item)
  1073. continue
  1074. litems.append(item)
  1075. item = self.tree.GetNextItem(item)
  1076. def LoadDataLayers(self):
  1077. """Load raster/vector from current layer tree
  1078. .. todo::
  1079. volumes
  1080. """
  1081. if not self.tree:
  1082. return
  1083. listOfItems = []
  1084. item = self.tree.GetFirstChild(self.tree.root)[0]
  1085. self._GetDataLayers(item, listOfItems)
  1086. start = grass.clock()
  1087. while(len(listOfItems) > 0):
  1088. item = listOfItems.pop()
  1089. type = self.tree.GetLayerInfo(item, key='type')
  1090. if item in self.layers:
  1091. continue
  1092. # "raster (double click to set properties)" - tries to load this
  1093. # layer - no idea how to fix it
  1094. if ' ' in self.tree.GetLayerInfo(item, key='maplayer').name:
  1095. return
  1096. try:
  1097. if type == 'raster':
  1098. self.LoadRaster(item)
  1099. elif type == 'raster_3d':
  1100. self.LoadRaster3d(item)
  1101. elif type == 'vector':
  1102. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1103. vInfo = grass.vector_info_topo(layer.GetName())
  1104. if (vInfo['points']) > 0:
  1105. # include vInfo['centroids'] to initially load
  1106. # centroids
  1107. self.LoadVector(item, points=True)
  1108. if (vInfo['lines'] + vInfo['boundaries']) > 0:
  1109. self.LoadVector(item, points=False)
  1110. if vInfo['map3d'] and(
  1111. vInfo['kernels'] + vInfo['faces']) > 0:
  1112. self.LoadVector(item, points=None)
  1113. except GException as e:
  1114. GError(parent=self,
  1115. message=e.value)
  1116. stop = grass.clock()
  1117. Debug.msg(1, "GLWindow.LoadDataLayers(): time = %f" % (stop - start))
  1118. def UnloadDataLayers(self, force=False):
  1119. """Unload any layers that have been deleted from layer tree
  1120. :param bool force: True to unload all data layers
  1121. """
  1122. if not self.tree:
  1123. return
  1124. listOfItems = []
  1125. if not force:
  1126. item = self.tree.GetFirstChild(self.tree.root)[0]
  1127. self._GetDataLayers(item, listOfItems)
  1128. start = grass.clock()
  1129. update = False
  1130. layersTmp = self.layers[:]
  1131. for layer in layersTmp:
  1132. if layer in listOfItems:
  1133. continue
  1134. ltype = self.tree.GetLayerInfo(layer, key='type')
  1135. try:
  1136. if ltype == 'raster':
  1137. self.UnloadRaster(layer)
  1138. elif ltype == 'raster_3d':
  1139. self.UnloadRaster3d(layer)
  1140. elif ltype == 'vector':
  1141. maplayer = self.tree.GetLayerInfo(layer, key='maplayer')
  1142. vInfo = grass.vector_info_topo(maplayer.GetName())
  1143. if (vInfo['points'] + vInfo['centroids']) > 0:
  1144. self.UnloadVector(layer, points=True)
  1145. if (vInfo['lines'] + vInfo['boundaries']
  1146. ) > 0 or vInfo['map3d']:
  1147. self.UnloadVector(layer, points=False)
  1148. except GException as e:
  1149. GError(parent=self,
  1150. message=e.value)
  1151. if force and self.baseId > 0: # unload base surface when quitting
  1152. ret = self._display.UnloadSurface(self.baseId)
  1153. self.baseId = -1
  1154. if update:
  1155. self.lmgr.nviz.UpdateSettings()
  1156. self.UpdateView(None)
  1157. stop = grass.clock()
  1158. Debug.msg(1, "GLWindow.UnloadDataLayers(): time = %f" % (stop - start))
  1159. def SetVectorSurface(self, data):
  1160. """Set reference surfaces of vector"""
  1161. data['mode']['surface'] = {}
  1162. data['mode']['surface']['value'] = list()
  1163. data['mode']['surface']['show'] = list()
  1164. for name in self.GetLayerNames('raster'):
  1165. data['mode']['surface']['value'].append(name)
  1166. data['mode']['surface']['show'].append(True)
  1167. def SetVectorFromCmd(self, item, data):
  1168. """Set 3D view properties from cmd (d.vect)
  1169. :param item: Layer Tree item
  1170. :param nviz: data
  1171. """
  1172. cmd = self.tree.GetLayerInfo(item, key='cmd')
  1173. if cmd[0] != 'd.vect':
  1174. return
  1175. for opt in cmd[1:]:
  1176. try:
  1177. key, value = opt.split('=')
  1178. except ValueError:
  1179. continue
  1180. if key == 'color':
  1181. if not ':' in value:
  1182. value = ':'.join(map(str, str2rgb[value]))
  1183. data['lines']['color']['value'] = value
  1184. data['points']['color']['value'] = value
  1185. def SetMapObjProperties(self, item, id, nvizType):
  1186. """Set map object properties
  1187. Properties must be afterwards updated by
  1188. UpdateMapObjProperties().
  1189. :param item: layer item
  1190. :param id: nviz layer id (or -1)
  1191. :param nvizType: nviz data type (surface, points, vector)
  1192. """
  1193. if nvizType != 'constant':
  1194. mapType = self.tree.GetLayerInfo(item, key='maplayer').type
  1195. # reference to original layer properties (can be None)
  1196. data = self.tree.GetLayerInfo(item, key='nviz')
  1197. else:
  1198. mapType = nvizType
  1199. data = self.constants[item]
  1200. if not data:
  1201. # init data structure
  1202. if nvizType != 'constant':
  1203. self.tree.SetLayerInfo(item, key='nviz', value={})
  1204. data = self.tree.GetLayerInfo(item, key='nviz')
  1205. if mapType == 'raster':
  1206. # reset to default properties
  1207. data[nvizType] = self.nvizDefault.SetSurfaceDefaultProp()
  1208. elif mapType == 'vector':
  1209. # reset to default properties (lines/points)
  1210. data['vector'] = self.nvizDefault.SetVectorDefaultProp(longDim=self._display.GetLongDim())
  1211. self.SetVectorFromCmd(item, data['vector'])
  1212. self.SetVectorSurface(data['vector']['points'])
  1213. self.SetVectorSurface(data['vector']['lines'])
  1214. elif mapType == 'raster_3d':
  1215. # reset to default properties
  1216. data[nvizType] = self.nvizDefault.SetVolumeDefaultProp()
  1217. elif mapType == 'constant':
  1218. data['constant'] = self.nvizDefault.SetConstantDefaultProp()
  1219. else:
  1220. # complete data (use default values), not sure if this is necessary
  1221. if mapType == 'raster':
  1222. if not data['surface']:
  1223. data['surface'] = self.nvizDefault.SetSurfaceDefaultProp()
  1224. if mapType == 'vector':
  1225. if not data['vector']['lines']:
  1226. self.nvizDefault.SetVectorLinesDefaultProp(
  1227. data
  1228. ['vector']
  1229. ['lines'])
  1230. if not data['vector']['points']:
  1231. self.nvizDefault.SetVectorPointsDefaultProp(
  1232. data['vector']['points'], self._display.GetLongDim())
  1233. # set updates
  1234. for sec in data.keys():
  1235. for sec1 in data[sec].keys():
  1236. if sec1 == 'position':
  1237. data[sec][sec1]['update'] = None
  1238. continue
  1239. if isinstance(data[sec][sec1], dict):
  1240. for sec2 in data[sec][sec1].keys():
  1241. if sec2 not in ('all', 'init', 'id'):
  1242. data[sec][sec1][sec2]['update'] = None
  1243. elif isinstance(data[sec][sec1], list):
  1244. for i in range(len(data[sec][sec1])):
  1245. for sec2 in data[sec][sec1][i].keys():
  1246. data[sec][sec1][i][sec2]['update'] = None
  1247. event = wxUpdateProperties(data=data)
  1248. wx.PostEvent(self, event)
  1249. # set id
  1250. if id > 0:
  1251. if mapType in ('raster', 'raster_3d'):
  1252. data[nvizType]['object'] = {'id': id,
  1253. 'init': False}
  1254. elif mapType == 'vector':
  1255. data['vector'][nvizType]['object'] = {'id': id,
  1256. 'init': False}
  1257. elif mapType == 'constant':
  1258. data[nvizType]['object'] = {'id': id,
  1259. 'init': False}
  1260. return data
  1261. def LoadRaster(self, item):
  1262. """Load 2d raster map and set surface attributes
  1263. :param layer: item
  1264. """
  1265. return self._loadRaster(item)
  1266. def LoadRaster3d(self, item):
  1267. """Load 3d raster map and set surface attributes
  1268. :param layer: item
  1269. """
  1270. return self._loadRaster(item)
  1271. def _loadRaster(self, item):
  1272. """Load 2d/3d raster map and set its attributes
  1273. :param layer: item
  1274. """
  1275. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1276. if layer.type not in ('raster', 'raster_3d'):
  1277. return
  1278. if layer.type == 'raster':
  1279. id = self._display.LoadSurface(str(layer.name), None, None)
  1280. nvizType = 'surface'
  1281. errorMsg = _("Loading raster map")
  1282. elif layer.type == 'raster_3d':
  1283. id = self._display.LoadVolume(str(layer.name), None, None)
  1284. nvizType = 'volume'
  1285. errorMsg = _("Loading 3d raster map")
  1286. else:
  1287. id = -1
  1288. if id < 0:
  1289. if layer.type in ('raster', 'raster_3d'):
  1290. self.log.WriteError(
  1291. "%s <%s> %s" %
  1292. (errorMsg, layer.name, _("failed")))
  1293. else:
  1294. self.log.WriteError(
  1295. _("Unsupported layer type '%s'") %
  1296. layer.type)
  1297. self.layers.append(item)
  1298. # set default/workspace layer properties
  1299. data = self.SetMapObjProperties(item, id, nvizType)
  1300. # update properties
  1301. event = wxUpdateProperties(data=data)
  1302. wx.PostEvent(self, event)
  1303. # update tools window
  1304. if hasattr(
  1305. self.lmgr, "nviz") and item == self.tree.GetSelectedLayer(
  1306. multi=False, checkedOnly=True):
  1307. toolWin = self.lmgr.nviz
  1308. if layer.type == 'raster':
  1309. win = toolWin.FindWindowById(
  1310. toolWin.win['vector']['lines']['surface'])
  1311. win.SetItems(self.GetLayerNames(layer.type))
  1312. # toolWin.UpdatePage(nvizType)
  1313. # toolWin.SetPage(nvizType)
  1314. return id
  1315. def NewConstant(self):
  1316. """Create new constant"""
  1317. index = len(self.constants)
  1318. try:
  1319. name = self.constants[-1]['constant']['object']['name'] + 1
  1320. except IndexError:
  1321. name = 1
  1322. data = dict()
  1323. self.constants.append(data)
  1324. data = self.SetMapObjProperties(item=index, id=-1, nvizType='constant')
  1325. self.AddConstant(data, name)
  1326. return name
  1327. def AddConstant(self, data, name):
  1328. """Add new constant"""
  1329. id = self._display.AddConstant(
  1330. value=data['constant']['value'],
  1331. color=data['constant']['color'])
  1332. self._display.SetSurfaceRes(
  1333. id, data['constant']['resolution'],
  1334. data['constant']['resolution'])
  1335. data['constant']['object'] = {'id': id,
  1336. 'name': name,
  1337. 'init': False}
  1338. def DeleteConstant(self, index):
  1339. """Delete constant layer"""
  1340. id = self.constants[index]['constant']['object']['id']
  1341. self._display.UnloadSurface(id)
  1342. del self.constants[index]
  1343. def SelectCPlane(self, index):
  1344. """Select cutting plane"""
  1345. for plane in range(self._display.GetCPlanesCount()):
  1346. if plane == index:
  1347. self._display.SelectCPlane(plane)
  1348. self.cplanes[plane]['on'] = True
  1349. self._display.SetFenceColor(self.cplanes[plane]['shading'])
  1350. else:
  1351. self._display.UnselectCPlane(plane)
  1352. try:
  1353. self.cplanes[plane]['on'] = False
  1354. except IndexError:
  1355. pass
  1356. def OnUpdateCPlane(self, event):
  1357. """Change cutting plane settings"""
  1358. self.UpdateCPlane(event.current, event.update)
  1359. def UpdateCPlane(self, index, changes):
  1360. """Change cutting plane settings"""
  1361. for each in changes:
  1362. if each == 'rotation':
  1363. self._display.SetCPlaneRotation(
  1364. 0, self.cplanes[index]['rotation']['tilt'],
  1365. self.cplanes[index]['rotation']['rot'])
  1366. if each == 'position':
  1367. self._display.SetCPlaneTranslation(
  1368. self.cplanes[index]['position']['x'],
  1369. self.cplanes[index]['position']['y'],
  1370. self.cplanes[index]['position']['z'])
  1371. if each == 'shading':
  1372. self._display.SetFenceColor(self.cplanes[index]['shading'])
  1373. def UnloadRaster(self, item):
  1374. """Unload 2d raster map
  1375. :param layer: item
  1376. """
  1377. return self._unloadRaster(item)
  1378. def UnloadRaster3d(self, item):
  1379. """Unload 3d raster map
  1380. :param layer: item
  1381. """
  1382. return self._unloadRaster(item)
  1383. def _unloadRaster(self, item):
  1384. """Unload 2d/3d raster map
  1385. :param item: layer item
  1386. """
  1387. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1388. if layer.type not in ('raster', 'raster_3d'):
  1389. return
  1390. data = self.tree.GetLayerInfo(item, key='nviz')
  1391. if layer.type == 'raster':
  1392. nvizType = 'surface'
  1393. unloadFn = self._display.UnloadSurface
  1394. errorMsg = _("Unable to unload raster map")
  1395. successMsg = _("Raster map")
  1396. else:
  1397. nvizType = 'volume'
  1398. unloadFn = self._display.UnloadVolume
  1399. errorMsg = _("Unable to unload 3d raster map")
  1400. successMsg = _("3d raster map")
  1401. try:
  1402. id = data[nvizType]['object']['id']
  1403. except KeyError:
  1404. return
  1405. if unloadFn(id) == 0:
  1406. self.log.WriteError("%s <%s>" % (errorMsg, layer.name))
  1407. else:
  1408. self.log.WriteLog(
  1409. "%s <%s> %s" %
  1410. (successMsg, layer.name, _("unloaded successfully")))
  1411. data[nvizType].pop('object')
  1412. self.layers.remove(item)
  1413. # update tools window
  1414. if hasattr(self.lmgr, "nviz"):
  1415. toolWin = self.lmgr.nviz
  1416. if layer.type == 'raster':
  1417. win = toolWin.FindWindowById(
  1418. toolWin.win['vector']['lines']['surface'])
  1419. win.SetItems(self.GetLayerNames(layer.type))
  1420. win = toolWin.FindWindowById(toolWin.win['surface']['map'])
  1421. win.SetValue('')
  1422. if layer.type == 'raster_3d':
  1423. win = toolWin.FindWindowById(toolWin.win['volume']['map'])
  1424. win.SetValue('')
  1425. if layer.type == 'vector':
  1426. win = toolWin.FindWindowById(toolWin.win['vector']['map'])
  1427. win.SetValue('')
  1428. def LoadVector(self, item, points=None, append=True):
  1429. """Load 2D or 3D vector map overlay
  1430. :param item: layer item
  1431. :param points: True to load points, False to load lines, None
  1432. to load both
  1433. :param bool append: append vector to layer list
  1434. """
  1435. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1436. if layer.type != 'vector':
  1437. return
  1438. # set default properties
  1439. if points is None:
  1440. self.SetMapObjProperties(item, -1, 'lines')
  1441. self.SetMapObjProperties(item, -1, 'points')
  1442. vecTypes = ('points', 'lines')
  1443. elif points:
  1444. self.SetMapObjProperties(item, -1, 'points')
  1445. vecTypes = ('points', )
  1446. else:
  1447. self.SetMapObjProperties(item, -1, 'lines')
  1448. vecTypes = ('lines', )
  1449. id = -1
  1450. for vecType in vecTypes:
  1451. if vecType == 'lines':
  1452. id, baseId = self._display.LoadVector(
  1453. str(layer.GetName()), False)
  1454. else:
  1455. id, baseId = self._display.LoadVector(
  1456. str(layer.GetName()), True)
  1457. if id < 0:
  1458. self.log.WriteError(
  1459. _("Loading vector map <%(name)s> (%(type)s) failed") %
  1460. {'name': layer.name, 'type': vecType})
  1461. # update layer properties
  1462. self.SetMapObjProperties(item, id, vecType)
  1463. if baseId > 0:
  1464. # id of base surface (when no surface is loaded)
  1465. self.baseId = baseId
  1466. if append:
  1467. self.layers.append(item)
  1468. # update properties
  1469. data = self.tree.GetLayerInfo(item, key='nviz')
  1470. event = wxUpdateProperties(data=data)
  1471. wx.PostEvent(self, event)
  1472. # update tools window
  1473. if hasattr(
  1474. self.lmgr, "nviz") and item == self.tree.GetSelectedLayer(
  1475. multi=False, checkedOnly=True):
  1476. toolWin = self.lmgr.nviz
  1477. toolWin.UpdatePage('vector')
  1478. # toolWin.SetPage('vector')
  1479. return id
  1480. def UnloadVector(self, item, points=None, remove=True):
  1481. """Unload vector map overlay
  1482. :param item: layer item
  1483. :param points, lines: True to unload given feature type
  1484. :param remove: remove layer from list
  1485. :type remove: bool
  1486. """
  1487. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1488. data = self.tree.GetLayerInfo(item, key='nviz')['vector']
  1489. # if vecType is None:
  1490. # vecType = []
  1491. # for v in ('lines', 'points'):
  1492. # if UserSettings.Get(group = 'nviz', key = 'vector',
  1493. # subkey = [v, 'show']):
  1494. # vecType.append(v)
  1495. if points is None:
  1496. vecTypes = ('points', 'lines')
  1497. elif points:
  1498. vecTypes = ('points', )
  1499. else:
  1500. vecTypes = ('lines', )
  1501. for vecType in vecTypes:
  1502. if 'object' not in data[vecType]:
  1503. continue
  1504. id = data[vecType]['object']['id']
  1505. if vecType == 'lines':
  1506. ret = self._display.UnloadVector(id, False)
  1507. else:
  1508. ret = self._display.UnloadVector(id, True)
  1509. if ret == 0:
  1510. self.log.WriteError(
  1511. _("Unable to unload vector map <%(name)s> (%(type)s)") %
  1512. {'name': layer.name, 'type': vecType})
  1513. else:
  1514. self.log.WriteLog(
  1515. _("Vector map <%(name)s> (%(type)s) unloaded successfully") % {
  1516. 'name': layer.name,
  1517. 'type': vecType})
  1518. data[vecType].pop('object')
  1519. if remove and item in self.layers:
  1520. self.layers.remove(item)
  1521. def ResetView(self):
  1522. """Reset to default view"""
  1523. zexagOriginal, \
  1524. self.iview['height']['value'], \
  1525. self.iview['height']['min'], \
  1526. self.iview['height']['max'] = self._display.SetViewDefault()
  1527. # hack for latlon projection
  1528. # TODO find more precise way or better rewrite it in OGSF
  1529. self.iview['z-exag']['llRatio'] = 1
  1530. if grass.locn_is_latlong():
  1531. self.iview['z-exag']['llRatio'] = math.pi / 180 * 6371000 * math.cos(
  1532. (grass.region()['n'] + grass.region()['s']) / 2)
  1533. self.view[
  1534. 'z-exag']['value'] = round(zexagOriginal * self.iview['z-exag']['llRatio'])
  1535. self.view['z-exag']['min'] = UserSettings.Get(group='nviz', key='view',
  1536. subkey=('z-exag', 'min'))
  1537. zexagMax = UserSettings.Get(group='nviz', key='view',
  1538. subkey=('z-exag', 'max'))
  1539. if zexagMax <= self.view['z-exag']['value']:
  1540. self.view['z-exag']['max'] = self.view['z-exag']['value'] * 2
  1541. elif self.view['z-exag']['value'] < 1:
  1542. if self.view['z-exag']['value'] == 0:
  1543. self.view['z-exag']['value'] = 1
  1544. self.view['z-exag']['max'] = 10 * self.view['z-exag']['value']
  1545. else:
  1546. self.view['z-exag']['max'] = zexagMax
  1547. self.view['position']['x'] = UserSettings.Get(group='nviz', key='view',
  1548. subkey=('position', 'x'))
  1549. self.view['position']['y'] = UserSettings.Get(group='nviz', key='view',
  1550. subkey=('position', 'y'))
  1551. self.view['persp']['value'] = UserSettings.Get(
  1552. group='nviz', key='view', subkey=('persp', 'value'))
  1553. self.view['twist']['value'] = UserSettings.Get(
  1554. group='nviz', key='view', subkey=('twist', 'value'))
  1555. self._display.ResetRotation()
  1556. self.iview['rotation'] = None
  1557. self._display.LookAtCenter()
  1558. focus = self.iview['focus']
  1559. focus['x'], focus['y'], focus['z'] = self._display.GetFocus()
  1560. self.PostViewEvent()
  1561. def UpdateMapObjProperties(self, event):
  1562. """Generic method to update data layer properties"""
  1563. data = event.data
  1564. if 'surface' in data:
  1565. try:
  1566. id = data['surface']['object']['id']
  1567. except KeyError:
  1568. return
  1569. self.UpdateSurfaceProperties(id, data['surface'])
  1570. # -> initialized
  1571. data['surface']['object']['init'] = True
  1572. elif 'constant' in data:
  1573. id = data['constant']['object']['id']
  1574. self.UpdateConstantProperties(id, data['constant'])
  1575. # -> initialized
  1576. data['constant']['object']['init'] = True
  1577. elif 'volume' in data:
  1578. id = data['volume']['object']['id']
  1579. self.UpdateVolumeProperties(id, data['volume'])
  1580. # -> initialized
  1581. data['volume']['object']['init'] = True
  1582. elif 'vector' in data:
  1583. for type in ('lines', 'points'):
  1584. if 'object' in data['vector'][type]:
  1585. id = data['vector'][type]['object']['id']
  1586. self.UpdateVectorProperties(id, data['vector'], type)
  1587. # -> initialized
  1588. data['vector'][type]['object']['init'] = True
  1589. def UpdateConstantProperties(self, id, data):
  1590. """Update surface map object properties"""
  1591. self._display.SetSurfaceColor(id=id, map=False, value=data['color'])
  1592. self._display.SetSurfaceTopo(id=id, map=False, value=data['value'])
  1593. self._display.SetSurfaceRes(id, data['resolution'], data['resolution'])
  1594. if data['transp'] == 0:
  1595. self._display.UnsetSurfaceTransp(id)
  1596. else:
  1597. self._display.SetSurfaceTransp(id, map=False, value=data['transp'])
  1598. def UpdateSurfaceProperties(self, id, data):
  1599. """Update surface map object properties"""
  1600. # surface attributes
  1601. for attrb in ('color', 'mask',
  1602. 'transp', 'shine'):
  1603. if attrb not in data['attribute'] or \
  1604. 'update' not in data['attribute'][attrb]:
  1605. continue
  1606. map = data['attribute'][attrb]['map']
  1607. value = data['attribute'][attrb]['value']
  1608. if map is None: # unset
  1609. # only optional attributes
  1610. if attrb == 'mask':
  1611. # TODO: invert mask
  1612. # TODO: broken in NVIZ
  1613. self._display.UnsetSurfaceMask(id)
  1614. elif attrb == 'transp':
  1615. self._display.UnsetSurfaceTransp(id)
  1616. else:
  1617. if isinstance(value, str):
  1618. if len(value) == 0: # ignore empty values (TODO: warning)
  1619. continue
  1620. if map and not grass.find_file(value, element='cell')[
  1621. 'fullname']:
  1622. continue
  1623. if attrb == 'color':
  1624. self._display.SetSurfaceColor(id, map, str(value))
  1625. elif attrb == 'mask':
  1626. # TODO: invert mask
  1627. # TODO: broken in NVIZ
  1628. self._display.SetSurfaceMask(id, False, str(value))
  1629. elif attrb == 'transp':
  1630. self._display.SetSurfaceTransp(id, map, str(value))
  1631. elif attrb == 'shine':
  1632. self._display.SetSurfaceShine(id, map, str(value))
  1633. data['attribute'][attrb].pop('update')
  1634. # draw res
  1635. if 'update' in data['draw']['resolution']:
  1636. coarse = data['draw']['resolution']['coarse']
  1637. fine = data['draw']['resolution']['fine']
  1638. if data['draw']['all']:
  1639. self._display.SetSurfaceRes(-1, fine, coarse)
  1640. else:
  1641. self._display.SetSurfaceRes(id, fine, coarse)
  1642. data['draw']['resolution'].pop('update')
  1643. # draw style
  1644. if 'update' in data['draw']['mode']:
  1645. if data['draw']['mode']['value'] < 0: # need to calculate
  1646. data['draw']['mode']['value'] = self.nvizDefault.GetDrawMode(
  1647. mode=data['draw']['mode']['desc']['mode'],
  1648. style=data['draw']['mode']['desc']['style'],
  1649. shade=data['draw']['mode']['desc']['shading'],
  1650. string=True)
  1651. style = data['draw']['mode']['value']
  1652. if data['draw']['all']:
  1653. self._display.SetSurfaceStyle(-1, style)
  1654. else:
  1655. self._display.SetSurfaceStyle(id, style)
  1656. data['draw']['mode'].pop('update')
  1657. # wire color
  1658. if 'update' in data['draw']['wire-color']:
  1659. color = data['draw']['wire-color']['value']
  1660. if data['draw']['all']:
  1661. self._display.SetWireColor(-1, str(color))
  1662. else:
  1663. self._display.SetWireColor(id, str(color))
  1664. data['draw']['wire-color'].pop('update')
  1665. # position
  1666. if 'update' in data['position']:
  1667. x = data['position']['x']
  1668. y = data['position']['y']
  1669. z = data['position']['z']
  1670. self._display.SetSurfacePosition(id, x, y, z)
  1671. data['position'].pop('update')
  1672. data['draw']['all'] = False
  1673. def UpdateVolumeProperties(self, id, data, isosurfId=None):
  1674. """Update volume (isosurface/slice) map object properties"""
  1675. if 'update' in data['draw']['resolution']:
  1676. if data['draw']['mode']['value'] == 0:
  1677. self._display.SetIsosurfaceRes(
  1678. id, data['draw']['resolution']['isosurface']['value'])
  1679. else:
  1680. self._display.SetSliceRes(
  1681. id, data['draw']['resolution']['slice']['value'])
  1682. data['draw']['resolution'].pop('update')
  1683. if 'update' in data['draw']['shading']:
  1684. if data['draw']['mode']['value'] == 0:
  1685. if data['draw']['shading']['isosurface'][
  1686. 'value'] < 0: # need to calculate
  1687. mode = data['draw']['shading']['isosurface']['value'] = \
  1688. self.nvizDefault.GetDrawMode(shade=data['draw']['shading']['isosurface'],
  1689. string=False)
  1690. self._display.SetIsosurfaceMode(id, mode)
  1691. else:
  1692. if data['draw']['shading']['slice'][
  1693. 'value'] < 0: # need to calculate
  1694. mode = data['draw']['shading']['slice']['value'] = \
  1695. self.nvizDefault.GetDrawMode(shade=data['draw']['shading']['slice'],
  1696. string=False)
  1697. self._display.SetSliceMode(id, mode)
  1698. data['draw']['shading'].pop('update')
  1699. #
  1700. # isosurface attributes
  1701. #
  1702. isosurfId = 0
  1703. for isosurf in data['isosurface']:
  1704. self._display.AddIsosurface(id, 0, isosurf_id=isosurfId)
  1705. for attrb in ('topo', 'color', 'mask',
  1706. 'transp', 'shine'):
  1707. if attrb not in isosurf or \
  1708. 'update' not in isosurf[attrb]:
  1709. continue
  1710. map = isosurf[attrb]['map']
  1711. value = isosurf[attrb]['value']
  1712. if map is None: # unset
  1713. # only optional attributes
  1714. if attrb == 'topo':
  1715. self._display.SetIsosurfaceTopo(
  1716. id, isosurfId, map, str(value))
  1717. elif attrb == 'mask':
  1718. # TODO: invert mask
  1719. # TODO: broken in NVIZ
  1720. self._display.UnsetIsosurfaceMask(id, isosurfId)
  1721. elif attrb == 'transp':
  1722. self._display.UnsetIsosurfaceTransp(id, isosurfId)
  1723. else:
  1724. if isinstance(value, str):
  1725. if len(value) == 0: # ignore empty values (TODO: warning)
  1726. continue
  1727. if map and not grass.find_file(value, element='grid3')[
  1728. 'fullname']:
  1729. continue
  1730. if attrb == 'color':
  1731. self._display.SetIsosurfaceColor(
  1732. id, isosurfId, map, str(value))
  1733. elif attrb == 'mask':
  1734. # TODO: invert mask
  1735. # TODO: broken in NVIZ
  1736. self._display.SetIsosurfaceMask(
  1737. id, isosurfId, False, str(value))
  1738. elif attrb == 'transp':
  1739. self._display.SetIsosurfaceTransp(
  1740. id, isosurfId, map, str(value))
  1741. elif attrb == 'shine':
  1742. self._display.SetIsosurfaceShine(
  1743. id, isosurfId, map, str(value))
  1744. isosurf[attrb].pop('update')
  1745. isosurfId += 1
  1746. #
  1747. # slice attributes
  1748. #
  1749. sliceId = 0
  1750. for slice in data['slice']:
  1751. ret = self._display.AddSlice(id, slice_id=sliceId)
  1752. if 'update' in slice['position']:
  1753. pos = slice['position']
  1754. ret = self._display.SetSlicePosition(
  1755. id, sliceId, pos['x1'],
  1756. pos['x2'],
  1757. pos['y1'],
  1758. pos['y2'],
  1759. pos['z1'],
  1760. pos['z2'],
  1761. pos['axis'])
  1762. slice['position'].pop('update')
  1763. if 'update' in slice['transp']:
  1764. tr = slice['transp']['value']
  1765. self._display.SetSliceTransp(id, sliceId, tr)
  1766. sliceId += 1
  1767. # position
  1768. if 'update' in data['position'] and 'x' in data['position']:
  1769. x = data['position']['x']
  1770. y = data['position']['y']
  1771. z = data['position']['z']
  1772. self._display.SetVolumePosition(id, x, y, z)
  1773. data['position'].pop('update')
  1774. def UpdateVectorProperties(self, id, data, type):
  1775. """Update vector layer properties
  1776. :param id: layer id
  1777. :param data: properties
  1778. :param type: lines/points
  1779. """
  1780. if type == 'points':
  1781. self.UpdateVectorPointsProperties(id, data[type])
  1782. else:
  1783. self.UpdateVectorLinesProperties(id, data[type])
  1784. def UpdateVectorLinesProperties(self, id, data):
  1785. """Update vector line map object properties"""
  1786. # mode
  1787. if 'update' in data['color'] or \
  1788. 'update' in data['width'] or \
  1789. 'update' in data['mode']:
  1790. width = data['width']['value']
  1791. color = data['color']['value']
  1792. if data['mode']['type'] == '3d':
  1793. use_3D = True
  1794. if 'surface' in data['mode']:
  1795. data['mode'].pop('surface')
  1796. else:
  1797. use_3D = False
  1798. self._display.SetVectorLineMode(id, color,
  1799. width, use_3D)
  1800. if 'update' in data['color']:
  1801. data['color'].pop('update')
  1802. if 'update' in data['width']:
  1803. data['width'].pop('update')
  1804. # height
  1805. if 'update' in data['height']:
  1806. self._display.SetVectorLineHeight(id,
  1807. data['height']['value'])
  1808. data['height'].pop('update')
  1809. # thematic
  1810. if 'update' in data['thematic']:
  1811. color = width = None
  1812. colorTable = False
  1813. if data['thematic']['usecolor'] or data['thematic']['usewidth']:
  1814. if data['thematic']['usecolor']:
  1815. color = data['thematic']['rgbcolumn']
  1816. if self._display.CheckColorTable(id=id, type='lines'):
  1817. colorTable = True
  1818. if data['thematic']['usewidth']:
  1819. width = data['thematic']['sizecolumn']
  1820. self._display.SetLinesStyleThematic(
  1821. id=id, layer=data['thematic']['layer'],
  1822. color=color, colorTable=colorTable, width=width)
  1823. else:
  1824. self._display.UnsetLinesStyleThematic(id=id)
  1825. data['thematic'].pop('update')
  1826. # surface
  1827. if 'surface' in data['mode'] and 'update' in data['mode']:
  1828. for item in range(len(data['mode']['surface']['value'])):
  1829. for type in ('raster', 'constant'):
  1830. sid = self.GetLayerId(
  1831. type=type, name=data['mode']['surface']['value'][item])
  1832. if sid > -1:
  1833. if data['mode']['surface']['show'][item]:
  1834. self._display.SetVectorLineSurface(id, sid)
  1835. else:
  1836. self._display.UnsetVectorLineSurface(id, sid)
  1837. break
  1838. if 'update' in data['mode']:
  1839. data['mode'].pop('update')
  1840. def UpdateVectorPointsProperties(self, id, data):
  1841. """Update vector point map object properties"""
  1842. if 'update' in data['size'] or \
  1843. 'update' in data['width'] or \
  1844. 'update' in data['marker'] or \
  1845. 'update' in data['color']:
  1846. ret = self._display.SetVectorPointMode(
  1847. id, data['color']['value'],
  1848. data['width']['value'],
  1849. float(data['size']['value']),
  1850. data['marker']['value'] + 1)
  1851. error = None
  1852. if ret == -1:
  1853. error = _("Vector point layer not found (id = %d)") % id
  1854. elif ret == -2:
  1855. error = _("Unable to set data layer properties (id = %d)") % id
  1856. if error:
  1857. raise GException(
  1858. _("Setting data layer properties failed.\n\n%s") %
  1859. error)
  1860. for prop in ('size', 'width', 'marker', 'color'):
  1861. if 'update' in data[prop]:
  1862. data[prop].pop('update')
  1863. # height
  1864. if 'update' in data['height']:
  1865. self._display.SetVectorPointHeight(id,
  1866. data['height']['value'])
  1867. data['height'].pop('update')
  1868. # thematic
  1869. if 'update' in data['thematic']:
  1870. color = size = None
  1871. colorTable = False
  1872. if data['thematic']['usecolor'] or data['thematic']['usesize']:
  1873. if data['thematic']['usecolor']:
  1874. color = data['thematic']['rgbcolumn']
  1875. if self._display.CheckColorTable(id=id, type='points'):
  1876. colorTable = True
  1877. if data['thematic']['usesize']:
  1878. size = data['thematic']['sizecolumn']
  1879. self._display.SetPointsStyleThematic(
  1880. id=id, layer=data['thematic']['layer'],
  1881. color=color, colorTable=colorTable, size=size)
  1882. else:
  1883. self._display.UnsetPointsStyleThematic(id=id)
  1884. data['thematic'].pop('update')
  1885. # surface
  1886. if 'update' in data['mode']:
  1887. if data['mode'].get('3d', False):
  1888. self._display.SetVectorPointZMode(id, True)
  1889. elif 'surface' in data['mode']:
  1890. self._display.SetVectorPointZMode(id, False)
  1891. for item in range(len(data['mode']['surface']['value'])):
  1892. for type in ('raster', 'constant'):
  1893. sid = self.GetLayerId(
  1894. type=type, name=data['mode']['surface']['value'][item])
  1895. if sid > -1:
  1896. if data['mode']['surface']['show'][item]:
  1897. self._display.SetVectorPointSurface(id, sid)
  1898. else:
  1899. self._display.UnsetVectorPointSurface(id, sid)
  1900. break
  1901. data['mode'].pop('update')
  1902. def GetLayerNames(self, type):
  1903. """Return list of map layer names of given type"""
  1904. layerName = []
  1905. if type == 'constant':
  1906. for item in self.constants:
  1907. layerName.append(_("constant#") +
  1908. str(item['constant']['object']['name']))
  1909. else:
  1910. for item in self.layers:
  1911. mapLayer = self.tree.GetLayerInfo(item, key='maplayer')
  1912. if type != mapLayer.GetType():
  1913. continue
  1914. layerName.append(mapLayer.GetName())
  1915. return layerName
  1916. def GetLayerId(self, type, name, vsubtyp=None):
  1917. """Get layer object id or -1"""
  1918. if len(name) < 1:
  1919. return -1
  1920. if type == 'constant':
  1921. for item in self.constants:
  1922. if _("constant#") + str(item['constant']
  1923. ['object']['name']) == name:
  1924. return item['constant']['object']['id']
  1925. for item in self.layers:
  1926. mapLayer = self.tree.GetLayerInfo(item, key='maplayer')
  1927. if type != mapLayer.GetType() or \
  1928. name != mapLayer.GetName():
  1929. continue
  1930. data = self.tree.GetLayerInfo(item, key='nviz')
  1931. try:
  1932. if type == 'raster':
  1933. return data['surface']['object']['id']
  1934. elif type == 'vector':
  1935. if vsubtyp == 'vpoint':
  1936. return data['vector']['points']['object']['id']
  1937. elif vsubtyp == 'vline':
  1938. return data['vector']['lines']['object']['id']
  1939. elif type == 'raster_3d':
  1940. return data['volume']['object']['id']
  1941. except KeyError:
  1942. return -1
  1943. return -1
  1944. def ReloadLayersData(self):
  1945. """Delete nviz data of all loaded layers and reload them from current settings"""
  1946. for item in self.layers:
  1947. type = self.tree.GetLayerInfo(item, key='type')
  1948. layer = self.tree.GetLayerInfo(item, key='maplayer')
  1949. data = self.tree.GetLayerInfo(item, key='nviz')
  1950. if type == 'raster':
  1951. self.nvizDefault.SetSurfaceDefaultProp(data['surface'])
  1952. if type == 'vector':
  1953. vInfo = grass.vector_info_topo(layer.GetName())
  1954. if (vInfo['points'] + vInfo['centroids']) > 0:
  1955. self.nvizDefault.SetVectorPointsDefaultProp(
  1956. data['vector']['points'], self._display.GetLongDim())
  1957. if (vInfo['lines'] + vInfo['boundaries']) > 0:
  1958. self.nvizDefault.SetVectorLinesDefaultProp(
  1959. data
  1960. ['vector']
  1961. ['lines'])
  1962. def NvizCmdCommand(self):
  1963. """Generate command for m.nviz.image according to current state"""
  1964. cmd = 'm.nviz.image '
  1965. rasters = []
  1966. vectors = []
  1967. volumes = []
  1968. for item in self.layers:
  1969. if self.tree.GetLayerInfo(item, key='type') == 'raster':
  1970. rasters.append(item)
  1971. elif self.tree.GetLayerInfo(item, key='type') == 'raster_3d':
  1972. volumes.append(item)
  1973. elif self.tree.GetLayerInfo(item, key='type') == 'vector':
  1974. vectors.append(item)
  1975. # if not rasters and not self.constants:
  1976. # return _("At least one raster map required")
  1977. # elevation_map/elevation_value
  1978. if self.constants:
  1979. subcmd = "elevation_value="
  1980. for constant in self.constants:
  1981. subcmd += "%d," % constant['constant']['value']
  1982. subcmd = subcmd.strip(', ') + ' '
  1983. cmd += subcmd
  1984. if rasters:
  1985. subcmd = "elevation_map="
  1986. for item in rasters:
  1987. subcmd += "%s," % self.tree.GetLayerInfo(
  1988. item, key='maplayer').GetName()
  1989. subcmd = subcmd.strip(', ') + ' '
  1990. cmd += subcmd
  1991. #
  1992. # draw mode
  1993. #
  1994. cmdMode = "mode="
  1995. cmdFine = "resolution_fine="
  1996. cmdCoarse = "resolution_coarse="
  1997. cmdShading = "shading="
  1998. cmdStyle = "style="
  1999. cmdWire = "wire_color="
  2000. # test -a flag
  2001. flag_a = "-a "
  2002. nvizDataFirst = self.tree.GetLayerInfo(
  2003. rasters[0], key='nviz')['surface']['draw']
  2004. for item in rasters:
  2005. nvizData = self.tree.GetLayerInfo(item, key='nviz')[
  2006. 'surface']['draw']
  2007. if nvizDataFirst != nvizData:
  2008. flag_a = ""
  2009. cmd += flag_a
  2010. for item in rasters:
  2011. nvizData = self.tree.GetLayerInfo(item, key='nviz')[
  2012. 'surface']['draw']
  2013. cmdMode += "%s," % nvizData['mode']['desc']['mode']
  2014. cmdFine += "%s," % nvizData['resolution']['fine']
  2015. cmdCoarse += "%s," % nvizData['resolution']['coarse']
  2016. cmdShading += "%s," % nvizData['mode']['desc']['shading']
  2017. cmdStyle += "%s," % nvizData['mode']['desc']['style']
  2018. cmdWire += "%s," % nvizData['wire-color']['value']
  2019. for item in self.constants:
  2020. cmdMode += "fine,"
  2021. cmdFine += "%s," % item['constant']['resolution']
  2022. cmdCoarse += "%s," % item['constant']['resolution']
  2023. cmdShading += "gouraud,"
  2024. cmdStyle += "surface,"
  2025. cmdWire += "0:0:0,"
  2026. mode = []
  2027. for subcmd in (cmdMode, cmdFine, cmdCoarse,
  2028. cmdShading, cmdStyle, cmdWire):
  2029. if flag_a:
  2030. mode.append(subcmd.split(',')[0] + ' ')
  2031. else:
  2032. subcmd = subcmd.strip(', ') + ' '
  2033. cmd += subcmd
  2034. if flag_a: # write only meaningful possibilities
  2035. cmd += mode[0]
  2036. if 'fine' in mode[0]:
  2037. cmd += mode[1]
  2038. elif 'coarse' in mode[0]:
  2039. cmd += mode[2]
  2040. elif 'both' in mode[0]:
  2041. cmd += mode[2]
  2042. cmd += mode[1]
  2043. if 'flat' in mode[3]:
  2044. cmd += mode[3]
  2045. if 'wire' in mode[4]:
  2046. cmd += mode[4]
  2047. if 'coarse' in mode[0] or 'both' in mode[
  2048. 0] and 'wire' in mode[3]:
  2049. cmd += mode[5]
  2050. #
  2051. # attributes
  2052. #
  2053. cmdColorMap = "color_map="
  2054. cmdColorVal = "color="
  2055. for item in rasters:
  2056. nvizData = self.tree.GetLayerInfo(
  2057. item, key='nviz')['surface']['attribute']
  2058. if 'color' not in nvizData:
  2059. cmdColorMap += "%s," % self.tree.GetLayerInfo(
  2060. item, key='maplayer').GetName()
  2061. else:
  2062. if nvizData['color']['map']:
  2063. cmdColorMap += "%s," % nvizData['color']['value']
  2064. else:
  2065. cmdColorVal += "%s," % nvizData['color']['value']
  2066. # TODO
  2067. # transparency, shine, mask
  2068. for item in self.constants:
  2069. cmdColorVal += "%s," % item['constant']['color']
  2070. if cmdColorMap.split("=")[1]:
  2071. cmd += cmdColorMap.strip(', ') + ' '
  2072. if cmdColorVal.split("=")[1]:
  2073. cmd += cmdColorVal.strip(', ') + ' '
  2074. cmd += "\\\n"
  2075. #
  2076. # vlines
  2077. #
  2078. if vectors:
  2079. cmdLines = cmdLWidth = cmdLHeight = cmdLColor = cmdLMode = cmdLPos = \
  2080. cmdPoints = cmdPWidth = cmdPSize = cmdPColor = cmdPMarker = cmdPPos = cmdPLayer = ""
  2081. markers = ['x', 'box', 'sphere', 'cube', 'diamond',
  2082. 'dec_tree', 'con_tree', 'aster', 'gyro', 'histogram']
  2083. for vector in vectors:
  2084. layerName = self.tree.GetLayerInfo(
  2085. vector, key='maplayer').GetName()
  2086. vInfo = grass.vector_info_topo(layerName)
  2087. nvizData = self.tree.GetLayerInfo(vector, key='nviz')['vector']
  2088. if (vInfo['lines'] + vInfo['boundaries']) > 0:
  2089. cmdLines += "%s," % self.tree.GetLayerInfo(
  2090. vector, key='maplayer').GetName()
  2091. cmdLWidth += "%d," % nvizData['lines']['width']['value']
  2092. cmdLHeight += "%d," % nvizData['lines']['height']['value']
  2093. cmdLColor += "%s," % nvizData['lines']['color']['value']
  2094. cmdLMode += "%s," % nvizData['lines']['mode']['type']
  2095. cmdLPos += "0,0,%d," % nvizData['lines']['height']['value']
  2096. if (vInfo['points'] + vInfo['centroids']) > 0:
  2097. cmdPoints += "%s," % self.tree.GetLayerInfo(
  2098. vector, key='maplayer').GetName()
  2099. cmdPWidth += "%d," % nvizData['points']['width']['value']
  2100. cmdPSize += "%d," % nvizData['points']['size']['value']
  2101. cmdPColor += "%s," % nvizData['points']['color']['value']
  2102. cmdPMarker += "%s," % markers[
  2103. nvizData['points']['marker']['value']]
  2104. cmdPPos += "0,0,%d," % nvizData[
  2105. 'points']['height']['value']
  2106. cmdPLayer += "1,1,"
  2107. if cmdLines:
  2108. cmd += "vline=" + cmdLines.strip(',') + ' '
  2109. cmd += "vline_width=" + cmdLWidth.strip(',') + ' '
  2110. cmd += "vline_color=" + cmdLColor.strip(',') + ' '
  2111. cmd += "vline_height=" + cmdLHeight.strip(',') + ' '
  2112. cmd += "vline_mode=" + cmdLMode.strip(',') + ' '
  2113. cmd += "vline_position=" + cmdLPos.strip(',') + ' '
  2114. if cmdPoints:
  2115. cmd += "vpoint=" + cmdPoints.strip(',') + ' '
  2116. cmd += "vpoint_width=" + cmdPWidth.strip(',') + ' '
  2117. cmd += "vpoint_color=" + cmdPColor.strip(',') + ' '
  2118. cmd += "vpoint_size=" + cmdPSize.strip(',') + ' '
  2119. cmd += "vpoint_marker=" + cmdPMarker.strip(',') + ' '
  2120. cmd += "vpoint_position=" + cmdPPos.strip(',') + ' '
  2121. cmd += "vpoint_layer=" + cmdPLayer.strip(',') + ' '
  2122. cmd += "\\\n"
  2123. #
  2124. # volumes
  2125. #
  2126. if volumes:
  2127. cmdName = cmdShade = cmdRes = cmdPos = cmdIso = ""
  2128. cmdIsoColorMap = cmdIsoColorVal = cmdIsoTrMap = cmdIsoTrVal = ""
  2129. cmdSlice = cmdSliceTransp = cmdSlicePos = ""
  2130. for i, volume in enumerate(volumes):
  2131. nvizData = self.tree.GetLayerInfo(volume, key='nviz')['volume']
  2132. cmdName += "%s," % self.tree.GetLayerInfo(
  2133. volume, key='maplayer').GetName()
  2134. cmdShade += "%s," % nvizData['draw'][
  2135. 'shading']['isosurface']['desc']
  2136. cmdRes += "%d," % nvizData['draw'][
  2137. 'resolution']['isosurface']['value']
  2138. if nvizData['position']:
  2139. cmdPos += "%d,%d,%d," % (
  2140. nvizData['position']['x'],
  2141. nvizData['position']['y'],
  2142. nvizData['position']['z'])
  2143. for iso in nvizData['isosurface']:
  2144. level = iso['topo']['value']
  2145. cmdIso += "%d:%s," % (i + 1, level)
  2146. if iso['color']['map']:
  2147. cmdIsoColorMap += "%s," % iso['color']['value']
  2148. else:
  2149. cmdIsoColorVal += "%s," % iso['color']['value']
  2150. if 'transp' in iso:
  2151. if iso['transp']['map']:
  2152. cmdIsoTrMap += "%s," % iso['transp']['value']
  2153. else:
  2154. cmdIsoTrVal += "%s," % iso['transp']['value']
  2155. for slice in nvizData['slice']:
  2156. axis = ('x', 'y', 'z')[slice['position']['axis']]
  2157. cmdSlice += "%d:%s," % (i + 1, axis)
  2158. for coord in ('x1', 'x2', 'y1', 'y2', 'z1', 'z2'):
  2159. cmdSlicePos += "%f," % slice['position'][coord]
  2160. cmdSliceTransp += "%s," % slice['transp']['value']
  2161. cmd += "volume=" + cmdName.strip(',') + ' '
  2162. cmd += "volume_shading=" + cmdShade.strip(',') + ' '
  2163. cmd += "volume_resolution=" + cmdRes.strip(',') + ' '
  2164. if nvizData['position']:
  2165. cmd += "volume_position=" + cmdPos.strip(',') + ' '
  2166. if cmdIso:
  2167. cmd += "isosurf_level=" + cmdIso.strip(',') + ' '
  2168. if cmdIsoColorMap:
  2169. cmd += "isosurf_color_map=" + \
  2170. cmdIsoColorMap.strip(',') + ' '
  2171. if cmdIsoColorVal:
  2172. cmd += "isosurf_color_value=" + \
  2173. cmdIsoColorVal.strip(',') + ' '
  2174. if cmdIsoTrMap:
  2175. cmd += "isosurf_transp_map=" + cmdIsoTrMap.strip(',') + ' '
  2176. if cmdIsoTrVal:
  2177. cmd += "isosurf_transp_value=" + \
  2178. cmdIsoTrVal.strip(',') + ' '
  2179. if cmdSlice:
  2180. cmd += "slice=" + cmdSlice.strip(',') + ' '
  2181. cmd += "slice_position=" + cmdSlicePos.strip(',') + ' '
  2182. cmd += "slice_transparency=" + cmdSliceTransp.strip(',') + ' '
  2183. #
  2184. # cutting planes
  2185. #
  2186. cplane = self.lmgr.nviz.FindWindowById(
  2187. self.lmgr.nviz.win['cplane']['planes']).GetStringSelection()
  2188. try:
  2189. planeIndex = int(cplane.split()[-1]) - 1
  2190. except (IndexError, ValueError):
  2191. planeIndex = None
  2192. if planeIndex is not None:
  2193. shading = ['clear', 'top', 'bottom', 'blend', 'shaded']
  2194. cmd += "cplane=%d " % planeIndex
  2195. cmd += "cplane_rotation=%d " % self.cplanes[
  2196. planeIndex]['rotation']['rot']
  2197. cmd += "cplane_tilt=%d " % self.cplanes[
  2198. planeIndex]['rotation']['tilt']
  2199. cmd += "cplane_position=%d,%d,%d " % (
  2200. self.cplanes[planeIndex]['position']['x'],
  2201. self.cplanes[planeIndex]['position']['y'],
  2202. self.cplanes[planeIndex]['position']['z'])
  2203. cmd += "cplane_shading=%s " % shading[
  2204. self.cplanes[planeIndex]['shading']]
  2205. cmd += "\\\n"
  2206. #
  2207. # viewpoint
  2208. #
  2209. subcmd = "position=%.2f,%.2f " % (
  2210. self.view['position']['x'],
  2211. self.view['position']['y'])
  2212. subcmd += "height=%d " % (self.iview['height']['value'])
  2213. subcmd += "perspective=%d " % (self.view['persp']['value'])
  2214. subcmd += "twist=%d " % (self.view['twist']['value'])
  2215. subcmd += "zexag=%f " % (self.view['z-exag']
  2216. ['value'] / self.iview['z-exag']['llRatio'])
  2217. subcmd += "focus=%d,%d,%d " % (
  2218. self.iview['focus']['x'],
  2219. self.iview['focus']['y'],
  2220. self.iview['focus']['z'])
  2221. cmd += subcmd
  2222. # background
  2223. subcmd = "bgcolor=%d:%d:%d " % (self.view['background']['color'][:3])
  2224. if self.view['background']['color'] != (255, 255, 255):
  2225. cmd += subcmd
  2226. cmd += "\\\n"
  2227. # light
  2228. subcmd = "light_position=%.2f,%.2f,%.2f " % (
  2229. self.light['position']['x'],
  2230. self.light['position']['y'],
  2231. self.light['position']['z'] / 100.)
  2232. subcmd += "light_brightness=%d " % (self.light['bright'])
  2233. subcmd += "light_ambient=%d " % (self.light['ambient'])
  2234. subcmd += "light_color=%d:%d:%d " % (self.light['color'][:3])
  2235. cmd += subcmd
  2236. cmd += "\\\n"
  2237. # fringe
  2238. toolWindow = self.lmgr.nviz
  2239. direction = ''
  2240. for dir in ('nw', 'ne', 'sw', 'se'):
  2241. if toolWindow.FindWindowById(
  2242. toolWindow.win['fringe'][dir]).IsChecked():
  2243. direction += "%s," % dir
  2244. if direction:
  2245. subcmd = "fringe=%s " % (direction.strip(','))
  2246. color = toolWindow.FindWindowById(
  2247. toolWindow.win['fringe']['color']).GetValue()
  2248. subcmd += "fringe_color=%d:%d:%d " % (color[0], color[1], color[2])
  2249. subcmd += "fringe_elevation=%d " % (toolWindow.FindWindowById(
  2250. toolWindow.win['fringe']['elev']).GetValue())
  2251. cmd += subcmd
  2252. cmd += "\\\n"
  2253. # north arrow
  2254. if self.decoration['arrow']['show']:
  2255. subcmd = "arrow_position=%d,%d " % (
  2256. self.decoration['arrow']['position']['x'],
  2257. self.decoration['arrow']['position']['y'])
  2258. subcmd += "arrow_color=%s " % self.decoration['arrow']['color']
  2259. subcmd += "arrow_size=%d " % self.decoration['arrow']['size']
  2260. cmd += subcmd
  2261. # output
  2262. width, height = self.GetClientSize()
  2263. subcmd = 'output=nviz_output '
  2264. subcmd += 'format=ppm '
  2265. subcmd += 'size=%d,%d ' % (width, height)
  2266. cmd += subcmd
  2267. return cmd
  2268. def OnNvizCmd(self):
  2269. """Generate and write command to command output"""
  2270. self.log.WriteLog(
  2271. self.NvizCmdCommand(),
  2272. notification=Notification.RAISE_WINDOW)
  2273. def SaveToFile(self, FileName, FileType, width, height):
  2274. """This draws the DC to a buffer that can be saved to a file.
  2275. .. todo::
  2276. fix BufferedPaintDC
  2277. :param filename: file name
  2278. :param FileType: type of bitmap
  2279. :param width: image width
  2280. :param height: image height
  2281. """
  2282. self._display.SaveToFile(FileName, width, height, FileType)
  2283. # pbuffer = wx.EmptyBitmap(max(1, self.Map.width), max(1, self.Map.height))
  2284. # dc = wx.BufferedPaintDC(self, pbuffer)
  2285. # dc.Clear()
  2286. # self.SetCurrent()
  2287. # self._display.Draw(False, -1)
  2288. # pbuffer.SaveFile(FileName, FileType)
  2289. # self.SwapBuffers()
  2290. def GetDisplay(self):
  2291. """Get display instance"""
  2292. return self._display
  2293. def ZoomToMap(self, layers):
  2294. """Reset view
  2295. :param layers: so far unused
  2296. """
  2297. self.lmgr.nviz.OnResetView(None)
  2298. def DisactivateWin(self):
  2299. """Use when the class instance is hidden in MapFrame."""
  2300. pass
  2301. def ActivateWin(self):
  2302. """Used when the class instance is activated in MapFrame."""
  2303. pass