PlotCanvas.py 17 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # Author: Dennis Hayrullin (c) #
  4. # Date: 2016 #
  5. # MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtCore
  8. import logging
  9. from flatcamGUI.VisPyCanvas import VisPyCanvas, Color
  10. from flatcamGUI.VisPyVisuals import ShapeGroup, ShapeCollection, TextCollection, TextGroup, Cursor
  11. from vispy.scene.visuals import InfiniteLine, Line, Rectangle, Text
  12. import numpy as np
  13. from vispy.geometry import Rect
  14. log = logging.getLogger('base')
  15. class PlotCanvas(QtCore.QObject, VisPyCanvas):
  16. """
  17. Class handling the plotting area in the application.
  18. """
  19. def __init__(self, container, fcapp):
  20. """
  21. The constructor configures the VisPy figure that
  22. will contain all plots, creates the base axes and connects
  23. events to the plotting area.
  24. :param container: The parent container in which to draw plots.
  25. :rtype: PlotCanvas
  26. """
  27. # super(PlotCanvas, self).__init__()
  28. # QtCore.QObject.__init__(self)
  29. # VisPyCanvas.__init__(self)
  30. super().__init__()
  31. # VisPyCanvas does not allow new attributes. Override.
  32. self.unfreeze()
  33. self.fcapp = fcapp
  34. # Parent container
  35. self.container = container
  36. settings = QtCore.QSettings("Open Source", "FlatCAM")
  37. if settings.contains("theme"):
  38. theme = settings.value('theme', type=str)
  39. else:
  40. theme = 'white'
  41. if theme == 'white':
  42. self.line_color = (0.3, 0.0, 0.0, 1.0)
  43. self.rect_hud_color = Color('#0000FF10')
  44. self.text_hud_color = 'black'
  45. else:
  46. self.line_color = (0.4, 0.4, 0.4, 1.0)
  47. self.rect_hud_color = Color('#80808040')
  48. self.text_hud_color = 'white'
  49. # workspace lines; I didn't use the rectangle because I didn't want to add another VisPy Node,
  50. # which might decrease performance
  51. # self.b_line, self.r_line, self.t_line, self.l_line = None, None, None, None
  52. self.workspace_line = None
  53. self.pagesize_dict = {}
  54. self.pagesize_dict.update(
  55. {
  56. 'A0': (841, 1189),
  57. 'A1': (594, 841),
  58. 'A2': (420, 594),
  59. 'A3': (297, 420),
  60. 'A4': (210, 297),
  61. 'A5': (148, 210),
  62. 'A6': (105, 148),
  63. 'A7': (74, 105),
  64. 'A8': (52, 74),
  65. 'A9': (37, 52),
  66. 'A10': (26, 37),
  67. 'B0': (1000, 1414),
  68. 'B1': (707, 1000),
  69. 'B2': (500, 707),
  70. 'B3': (353, 500),
  71. 'B4': (250, 353),
  72. 'B5': (176, 250),
  73. 'B6': (125, 176),
  74. 'B7': (88, 125),
  75. 'B8': (62, 88),
  76. 'B9': (44, 62),
  77. 'B10': (31, 44),
  78. 'C0': (917, 1297),
  79. 'C1': (648, 917),
  80. 'C2': (458, 648),
  81. 'C3': (324, 458),
  82. 'C4': (229, 324),
  83. 'C5': (162, 229),
  84. 'C6': (114, 162),
  85. 'C7': (81, 114),
  86. 'C8': (57, 81),
  87. 'C9': (40, 57),
  88. 'C10': (28, 40),
  89. # American paper sizes
  90. 'LETTER': (8.5*25.4, 11*25.4),
  91. 'LEGAL': (8.5*25.4, 14*25.4),
  92. 'ELEVENSEVENTEEN': (11*25.4, 17*25.4),
  93. # From https://en.wikipedia.org/wiki/Paper_size
  94. 'JUNIOR_LEGAL': (5*25.4, 8*25.4),
  95. 'HALF_LETTER': (5.5*25.4, 8*25.4),
  96. 'GOV_LETTER': (8*25.4, 10.5*25.4),
  97. 'GOV_LEGAL': (8.5*25.4, 13*25.4),
  98. 'LEDGER': (17*25.4, 11*25.4),
  99. }
  100. )
  101. # <VisPyCanvas>
  102. self.create_native()
  103. self.native.setParent(self.fcapp.ui)
  104. # <QtCore.QObject>
  105. self.container.addWidget(self.native)
  106. # ## AXIS # ##
  107. self.v_line = InfiniteLine(pos=0, color=(0.70, 0.3, 0.3, 0.8), vertical=True,
  108. parent=self.view.scene)
  109. self.h_line = InfiniteLine(pos=0, color=(0.70, 0.3, 0.3, 0.8), vertical=False,
  110. parent=self.view.scene)
  111. # draw a rectangle made out of 4 lines on the canvas to serve as a hint for the work area
  112. # all CNC have a limited workspace
  113. if self.fcapp.defaults['global_workspace'] is True:
  114. self.draw_workspace(workspace_size=self.fcapp.defaults["global_workspaceT"])
  115. self.line_parent = None
  116. if self.fcapp.defaults["global_cursor_color_enabled"]:
  117. c_color = Color(self.fcapp.defaults["global_cursor_color"]).rgba
  118. else:
  119. c_color = self.line_color
  120. self.cursor_v_line = InfiniteLine(pos=None, color=c_color, vertical=True,
  121. parent=self.line_parent)
  122. self.cursor_h_line = InfiniteLine(pos=None, color=c_color, vertical=False,
  123. parent=self.line_parent)
  124. # HUD Display
  125. self.hud_enabled = False
  126. # font size
  127. qsettings = QtCore.QSettings("Open Source", "FlatCAM")
  128. if qsettings.contains("hud_font_size"):
  129. fsize = qsettings.value('hud_font_size', type=int)
  130. else:
  131. fsize = 8
  132. # units
  133. units = self.fcapp.defaults["units"].lower()
  134. # coordinates and anchors
  135. height = fsize * 11 # 90. Constant 11 is something that works
  136. width = height * 2 # width is double the height = it is something that works
  137. center_x = (width / 2) + 5
  138. center_y = (height / 2) + 5
  139. # text
  140. self.text_hud = Text('', color=self.text_hud_color, pos=(10, center_y), method='gpu', anchor_x='left',
  141. parent=None)
  142. self.text_hud.font_size = fsize
  143. self.text_hud.text = 'Dx:\t%s [%s]\nDy:\t%s [%s]\n\nX: \t%s [%s]\nY: \t%s [%s]' % \
  144. ('0.0000', units, '0.0000', units, '0.0000', units, '0.0000', units)
  145. # rectangle
  146. self.rect_hud = Rectangle(center=(center_x, center_y), width=width, height=height, radius=[5, 5, 5, 5],
  147. border_color=self.rect_hud_color, color=self.rect_hud_color, parent=None)
  148. self.rect_hud.set_gl_state(depth_test=False)
  149. # enable the HUD if it is activated in FlatCAM Preferences
  150. if self.fcapp.defaults['global_hud'] is True:
  151. self.on_toggle_hud(state=True)
  152. self.shape_collections = []
  153. self.shape_collection = self.new_shape_collection()
  154. self.fcapp.pool_recreated.connect(self.on_pool_recreated)
  155. self.text_collection = self.new_text_collection()
  156. self.text_collection.enabled = True
  157. self.c = None
  158. self.big_cursor = None
  159. # Keep VisPy canvas happy by letting it be "frozen" again.
  160. self.freeze()
  161. self.fit_view()
  162. self.graph_event_connect('mouse_wheel', self.on_mouse_scroll)
  163. def on_toggle_hud(self, state):
  164. if state:
  165. self.hud_enabled = True
  166. self.rect_hud.parent = self.view
  167. self.text_hud.parent = self.view
  168. self.fcapp.defaults['global_hud'] = True
  169. else:
  170. self.hud_enabled = False
  171. self.rect_hud.parent = None
  172. self.text_hud.parent = None
  173. self.fcapp.defaults['global_hud'] = False
  174. def draw_workspace(self, workspace_size):
  175. """
  176. Draw a rectangular shape on canvas to specify our valid workspace.
  177. :param workspace_size: the workspace size; tuple
  178. :return:
  179. """
  180. try:
  181. if self.fcapp.defaults['units'].upper() == 'MM':
  182. dims = self.pagesize_dict[workspace_size]
  183. else:
  184. dims = (self.pagesize_dict[workspace_size][0]/25.4, self.pagesize_dict[workspace_size][1]/25.4)
  185. except Exception as e:
  186. log.debug("PlotCanvas.draw_workspace() --> %s" % str(e))
  187. return
  188. if self.fcapp.defaults['global_workspace_orientation'] == 'l':
  189. dims = (dims[1], dims[0])
  190. a = np.array([(0, 0), (dims[0], 0), (dims[0], dims[1]), (0, dims[1])])
  191. if not self.workspace_line:
  192. self.workspace_line = Line(pos=np.array((a[0], a[1], a[2], a[3], a[0])), color=(0.70, 0.3, 0.3, 0.7),
  193. antialias=True, method='agg', parent=self.view.scene)
  194. else:
  195. self.workspace_line.parent = self.view.scene
  196. def delete_workspace(self):
  197. try:
  198. self.workspace_line.parent = None
  199. except Exception:
  200. pass
  201. # redraw the workspace lines on the plot by re adding them to the parent view.scene
  202. def restore_workspace(self):
  203. try:
  204. self.workspace_line.parent = self.view.scene
  205. except Exception:
  206. pass
  207. def graph_event_connect(self, event_name, callback):
  208. return getattr(self.events, event_name).connect(callback)
  209. def graph_event_disconnect(self, event_name, callback=None):
  210. if callback is None:
  211. getattr(self.events, event_name).disconnect()
  212. else:
  213. getattr(self.events, event_name).disconnect(callback)
  214. def zoom(self, factor, center=None):
  215. """
  216. Zooms the plot by factor around a given
  217. center point. Takes care of re-drawing.
  218. :param factor: Number by which to scale the plot.
  219. :type factor: float
  220. :param center: Coordinates [x, y] of the point around which to scale the plot.
  221. :type center: list
  222. :return: None
  223. """
  224. self.view.camera.zoom(factor, center)
  225. def new_shape_group(self, shape_collection=None):
  226. if shape_collection:
  227. return ShapeGroup(shape_collection)
  228. return ShapeGroup(self.shape_collection)
  229. def new_shape_collection(self, **kwargs):
  230. # sc = ShapeCollection(parent=self.view.scene, pool=self.app.pool, **kwargs)
  231. # self.shape_collections.append(sc)
  232. # return sc
  233. return ShapeCollection(parent=self.view.scene, pool=self.fcapp.pool, **kwargs)
  234. def new_cursor(self, big=None):
  235. """
  236. Will create a mouse cursor pointer on canvas
  237. :param big: if True will create a mouse cursor made out of infinite lines
  238. :return: the mouse cursor object
  239. """
  240. if big is True:
  241. self.big_cursor = True
  242. self.c = CursorBig(app=self.fcapp)
  243. # in case there are multiple new_cursor calls, best to disconnect first the signals
  244. try:
  245. self.c.mouse_state_updated.disconnect(self.on_mouse_state)
  246. except (TypeError, AttributeError):
  247. pass
  248. try:
  249. self.c.mouse_position_updated.disconnect(self.on_mouse_position)
  250. except (TypeError, AttributeError):
  251. pass
  252. self.c.mouse_state_updated.connect(self.on_mouse_state)
  253. self.c.mouse_position_updated.connect(self.on_mouse_position)
  254. else:
  255. self.big_cursor = False
  256. self.c = Cursor(pos=np.empty((0, 2)), parent=self.view.scene)
  257. self.c.antialias = 0
  258. return self.c
  259. def on_mouse_state(self, state):
  260. if state:
  261. self.cursor_h_line.parent = self.view.scene
  262. self.cursor_v_line.parent = self.view.scene
  263. else:
  264. self.cursor_h_line.parent = None
  265. self.cursor_v_line.parent = None
  266. def on_mouse_position(self, pos):
  267. if self.fcapp.defaults['global_cursor_color_enabled']:
  268. color = Color(self.fcapp.defaults['global_cursor_color']).rgba
  269. else:
  270. color = self.line_color
  271. self.cursor_h_line.set_data(pos=pos[1], color=color)
  272. self.cursor_v_line.set_data(pos=pos[0], color=color)
  273. self.view.scene.update()
  274. def on_mouse_scroll(self, event):
  275. # key modifiers
  276. modifiers = event.modifiers
  277. pan_delta_x = self.fcapp.defaults["global_gridx"]
  278. pan_delta_y = self.fcapp.defaults["global_gridy"]
  279. curr_pos = event.pos
  280. # Controlled pan by mouse wheel
  281. if 'Shift' in modifiers:
  282. p1 = np.array(curr_pos)[:2]
  283. if event.delta[1] > 0:
  284. curr_pos[0] -= pan_delta_x
  285. else:
  286. curr_pos[0] += pan_delta_x
  287. p2 = np.array(curr_pos)[:2]
  288. self.view.camera.pan(p2 - p1)
  289. elif 'Control' in modifiers:
  290. p1 = np.array(curr_pos)[:2]
  291. if event.delta[1] > 0:
  292. curr_pos[1] += pan_delta_y
  293. else:
  294. curr_pos[1] -= pan_delta_y
  295. p2 = np.array(curr_pos)[:2]
  296. self.view.camera.pan(p2 - p1)
  297. if self.fcapp.grid_status():
  298. pos_canvas = self.translate_coords(curr_pos)
  299. pos = self.fcapp.geo_editor.snap(pos_canvas[0], pos_canvas[1])
  300. # Update cursor
  301. self.fcapp.app_cursor.set_data(np.asarray([(pos[0], pos[1])]),
  302. symbol='++', edge_color=self.fcapp.cursor_color_3D,
  303. edge_width=self.fcapp.defaults["global_cursor_width"],
  304. size=self.fcapp.defaults["global_cursor_size"])
  305. def new_text_group(self, collection=None):
  306. if collection:
  307. return TextGroup(collection)
  308. else:
  309. return TextGroup(self.text_collection)
  310. def new_text_collection(self, **kwargs):
  311. return TextCollection(parent=self.view.scene, **kwargs)
  312. def fit_view(self, rect=None):
  313. # Lock updates in other threads
  314. self.shape_collection.lock_updates()
  315. if not rect:
  316. rect = Rect(-1, -1, 20, 20)
  317. try:
  318. rect.left, rect.right = self.shape_collection.bounds(axis=0)
  319. rect.bottom, rect.top = self.shape_collection.bounds(axis=1)
  320. except TypeError:
  321. pass
  322. # adjust the view camera to be slightly bigger than the bounds so the shape collection can be seen clearly
  323. # otherwise the shape collection boundary will have no border
  324. dx = rect.right - rect.left
  325. dy = rect.top - rect.bottom
  326. x_factor = dx * 0.02
  327. y_factor = dy * 0.02
  328. rect.left -= x_factor
  329. rect.bottom -= y_factor
  330. rect.right += x_factor
  331. rect.top += y_factor
  332. # rect.left *= 0.96
  333. # rect.bottom *= 0.96
  334. # rect.right *= 1.04
  335. # rect.top *= 1.04
  336. # units = self.fcapp.defaults['units'].upper()
  337. # if units == 'MM':
  338. # compensation = 0.5
  339. # else:
  340. # compensation = 0.5 / 25.4
  341. # rect.left -= compensation
  342. # rect.bottom -= compensation
  343. # rect.right += compensation
  344. # rect.top += compensation
  345. self.view.camera.rect = rect
  346. self.shape_collection.unlock_updates()
  347. def fit_center(self, loc, rect=None):
  348. # Lock updates in other threads
  349. self.shape_collection.lock_updates()
  350. if not rect:
  351. try:
  352. rect = Rect(loc[0]-20, loc[1]-20, 40, 40)
  353. except TypeError:
  354. pass
  355. self.view.camera.rect = rect
  356. self.shape_collection.unlock_updates()
  357. def clear(self):
  358. pass
  359. def redraw(self):
  360. self.shape_collection.redraw([])
  361. self.text_collection.redraw()
  362. def on_pool_recreated(self, pool):
  363. self.shape_collection.pool = pool
  364. class CursorBig(QtCore.QObject):
  365. """
  366. This is a fake cursor to ensure compatibility with the OpenGL engine (VisPy).
  367. This way I don't have to chane (disable) things related to the cursor all over when
  368. using the low performance Matplotlib 2D graphic engine.
  369. """
  370. mouse_state_updated = QtCore.pyqtSignal(bool)
  371. mouse_position_updated = QtCore.pyqtSignal(list)
  372. def __init__(self, app):
  373. super().__init__()
  374. self.app = app
  375. self._enabled = None
  376. @property
  377. def enabled(self):
  378. return True if self._enabled else False
  379. @enabled.setter
  380. def enabled(self, value):
  381. self._enabled = value
  382. self.mouse_state_updated.emit(value)
  383. def set_data(self, pos, **kwargs):
  384. """Internal event handler to draw the cursor when the mouse moves."""
  385. if 'edge_color' in kwargs:
  386. color = kwargs['edge_color']
  387. else:
  388. if self.app.defaults['global_theme'] == 'white':
  389. color = '#000000FF'
  390. else:
  391. color = '#FFFFFFFF'
  392. position = [pos[0][0], pos[0][1]]
  393. self.mouse_position_updated.emit(position)