PlotCanvasLegacy.py 55 KB

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  1. ############################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # http://caram.cl/software/flatcam #
  4. # Author: Juan Pablo Caram (c) #
  5. # Date: 2/5/2014 #
  6. # MIT Licence #
  7. # Modified by Marius Stanciu 09/21/2019 #
  8. ############################################################
  9. from PyQt5 import QtCore
  10. from PyQt5.QtCore import pyqtSignal
  11. # needed for legacy mode
  12. # Used for solid polygons in Matplotlib
  13. from descartes.patch import PolygonPatch
  14. from shapely.geometry import Polygon, LineString, LinearRing
  15. from copy import deepcopy
  16. import logging
  17. import numpy as np
  18. import gettext
  19. import FlatCAMTranslation as fcTranslate
  20. import builtins
  21. # Prevent conflict with Qt5 and above.
  22. from matplotlib import use as mpl_use
  23. mpl_use("Qt5Agg")
  24. from matplotlib.figure import Figure
  25. from matplotlib.backends.backend_qt5agg import FigureCanvasQTAgg as FigureCanvas
  26. from matplotlib.lines import Line2D
  27. from matplotlib.offsetbox import AnchoredText
  28. # from matplotlib.widgets import Cursor
  29. fcTranslate.apply_language('strings')
  30. if '_' not in builtins.__dict__:
  31. _ = gettext.gettext
  32. log = logging.getLogger('base')
  33. class CanvasCache(QtCore.QObject):
  34. """
  35. Case story #1:
  36. 1) No objects in the project.
  37. 2) Object is created (new_object() emits object_created(obj)).
  38. on_object_created() adds (i) object to collection and emits
  39. (ii) new_object_available() then calls (iii) object.plot()
  40. 3) object.plot() creates axes if necessary on
  41. app.collection.figure. Then plots on it.
  42. 4) Plots on a cache-size canvas (in background).
  43. 5) Plot completes. Bitmap is generated.
  44. 6) Visible canvas is painted.
  45. """
  46. # Signals:
  47. # A bitmap is ready to be displayed.
  48. new_screen = QtCore.pyqtSignal()
  49. def __init__(self, plotcanvas, app, dpi=50):
  50. super(CanvasCache, self).__init__()
  51. self.app = app
  52. self.plotcanvas = plotcanvas
  53. self.dpi = dpi
  54. self.figure = Figure(dpi=dpi)
  55. self.axes = self.figure.add_axes([0.0, 0.0, 1.0, 1.0], alpha=1.0)
  56. self.axes.set_frame_on(False)
  57. self.axes.set_xticks([])
  58. self.axes.set_yticks([])
  59. if self.app.defaults['global_theme'] == 'white':
  60. self.axes.set_facecolor('#FFFFFF')
  61. else:
  62. self.axes.set_facecolor('#000000')
  63. self.canvas = FigureCanvas(self.figure)
  64. self.cache = None
  65. def run(self):
  66. log.debug("CanvasCache Thread Started!")
  67. self.plotcanvas.update_screen_request.connect(self.on_update_req)
  68. def on_update_req(self, extents):
  69. """
  70. Event handler for an updated display request.
  71. :param extents: [xmin, xmax, ymin, ymax, zoom(optional)]
  72. """
  73. # log.debug("Canvas update requested: %s" % str(extents))
  74. # Note: This information below might be out of date. Establish
  75. # a protocol regarding when to change the canvas in the main
  76. # thread and when to check these values here in the background,
  77. # or pass this data in the signal (safer).
  78. # log.debug("Size: %s [px]" % str(self.plotcanvas.get_axes_pixelsize()))
  79. # log.debug("Density: %s [units/px]" % str(self.plotcanvas.get_density()))
  80. # Move the requested screen portion to the main thread
  81. # and inform about the update:
  82. self.new_screen.emit()
  83. # Continue to update the cache.
  84. # def on_new_object_available(self):
  85. #
  86. # log.debug("A new object is available. Should plot it!")
  87. class PlotCanvasLegacy(QtCore.QObject):
  88. """
  89. Class handling the plotting area in the application.
  90. """
  91. # Signals:
  92. # Request for new bitmap to display. The parameter
  93. # is a list with [xmin, xmax, ymin, ymax, zoom(optional)]
  94. update_screen_request = QtCore.pyqtSignal(list)
  95. double_click = QtCore.pyqtSignal(object)
  96. def __init__(self, container, app):
  97. """
  98. The constructor configures the Matplotlib figure that
  99. will contain all plots, creates the base axes and connects
  100. events to the plotting area.
  101. :param container: The parent container in which to draw plots.
  102. :rtype: PlotCanvas
  103. """
  104. super(PlotCanvasLegacy, self).__init__()
  105. self.app = app
  106. if self.app.defaults['global_theme'] == 'white':
  107. theme_color = '#FFFFFF'
  108. tick_color = '#000000'
  109. self.rect_hud_color = '#0000FF10'
  110. self.text_hud_color = '#000000'
  111. else:
  112. theme_color = '#000000'
  113. tick_color = '#FFFFFF'
  114. self.rect_hud_color = '#80808040'
  115. self.text_hud_color = '#FFFFFF'
  116. # workspace lines; I didn't use the rectangle because I didn't want to add another VisPy Node,
  117. # which might decrease performance
  118. # self.b_line, self.r_line, self.t_line, self.l_line = None, None, None, None
  119. self.workspace_line = None
  120. self.pagesize_dict = {}
  121. self.pagesize_dict.update(
  122. {
  123. 'A0': (841, 1189),
  124. 'A1': (594, 841),
  125. 'A2': (420, 594),
  126. 'A3': (297, 420),
  127. 'A4': (210, 297),
  128. 'A5': (148, 210),
  129. 'A6': (105, 148),
  130. 'A7': (74, 105),
  131. 'A8': (52, 74),
  132. 'A9': (37, 52),
  133. 'A10': (26, 37),
  134. 'B0': (1000, 1414),
  135. 'B1': (707, 1000),
  136. 'B2': (500, 707),
  137. 'B3': (353, 500),
  138. 'B4': (250, 353),
  139. 'B5': (176, 250),
  140. 'B6': (125, 176),
  141. 'B7': (88, 125),
  142. 'B8': (62, 88),
  143. 'B9': (44, 62),
  144. 'B10': (31, 44),
  145. 'C0': (917, 1297),
  146. 'C1': (648, 917),
  147. 'C2': (458, 648),
  148. 'C3': (324, 458),
  149. 'C4': (229, 324),
  150. 'C5': (162, 229),
  151. 'C6': (114, 162),
  152. 'C7': (81, 114),
  153. 'C8': (57, 81),
  154. 'C9': (40, 57),
  155. 'C10': (28, 40),
  156. # American paper sizes
  157. 'LETTER': (8.5*25.4, 11*25.4),
  158. 'LEGAL': (8.5*25.4, 14*25.4),
  159. 'ELEVENSEVENTEEN': (11*25.4, 17*25.4),
  160. # From https://en.wikipedia.org/wiki/Paper_size
  161. 'JUNIOR_LEGAL': (5*25.4, 8*25.4),
  162. 'HALF_LETTER': (5.5*25.4, 8*25.4),
  163. 'GOV_LETTER': (8*25.4, 10.5*25.4),
  164. 'GOV_LEGAL': (8.5*25.4, 13*25.4),
  165. 'LEDGER': (17*25.4, 11*25.4),
  166. }
  167. )
  168. # Options
  169. self.x_margin = 15 # pixels
  170. self.y_margin = 25 # Pixels
  171. # Parent container
  172. self.container = container
  173. # Plots go onto a single matplotlib.figure
  174. self.figure = Figure(dpi=50)
  175. self.figure.patch.set_visible(True)
  176. self.figure.set_facecolor(theme_color)
  177. # These axes show the ticks and grid. No plotting done here.
  178. # New axes must have a label, otherwise mpl returns an existing one.
  179. self.axes = self.figure.add_axes([0.05, 0.05, 0.9, 0.9], label="base", alpha=0.0)
  180. self.axes.set_aspect(1)
  181. self.axes.grid(True, color='gray')
  182. self.h_line = self.axes.axhline(color=(0.70, 0.3, 0.3), linewidth=2)
  183. self.v_line = self.axes.axvline(color=(0.70, 0.3, 0.3), linewidth=2)
  184. self.axes.tick_params(axis='x', color=tick_color, labelcolor=tick_color)
  185. self.axes.tick_params(axis='y', color=tick_color, labelcolor=tick_color)
  186. self.axes.spines['bottom'].set_color(tick_color)
  187. self.axes.spines['top'].set_color(tick_color)
  188. self.axes.spines['right'].set_color(tick_color)
  189. self.axes.spines['left'].set_color(tick_color)
  190. self.axes.set_facecolor(theme_color)
  191. self.ch_line = None
  192. self.cv_line = None
  193. # The canvas is the top level container (FigureCanvasQTAgg)
  194. self.canvas = FigureCanvas(self.figure)
  195. self.canvas.setFocusPolicy(QtCore.Qt.ClickFocus)
  196. self.canvas.setFocus()
  197. self.native = self.canvas
  198. self.adjust_axes(-10, -10, 100, 100)
  199. # self.canvas.set_can_focus(True) # For key press
  200. # Attach to parent
  201. # self.container.attach(self.canvas, 0, 0, 600, 400)
  202. self.container.addWidget(self.canvas) # Qt
  203. # Copy a bitmap of the canvas for quick animation.
  204. # Update every time the canvas is re-drawn.
  205. self.background = self.canvas.copy_from_bbox(self.axes.bbox)
  206. # ################### NOT IMPLEMENTED YET - EXPERIMENTAL #######################
  207. # ## Bitmap Cache
  208. # self.cache = CanvasCache(self, self.app)
  209. # self.cache_thread = QtCore.QThread()
  210. # self.cache.moveToThread(self.cache_thread)
  211. # # super(PlotCanvas, self).connect(self.cache_thread, QtCore.SIGNAL("started()"), self.cache.run)
  212. # self.cache_thread.started.connect(self.cache.run)
  213. #
  214. # self.cache_thread.start()
  215. # self.cache.new_screen.connect(self.on_new_screen)
  216. # ##############################################################################
  217. # Events
  218. self.mp = self.graph_event_connect('button_press_event', self.on_mouse_press)
  219. self.mr = self.graph_event_connect('button_release_event', self.on_mouse_release)
  220. self.mm = self.graph_event_connect('motion_notify_event', self.on_mouse_move)
  221. # self.canvas.connect('configure-event', self.auto_adjust_axes)
  222. self.aaa = self.graph_event_connect('resize_event', self.auto_adjust_axes)
  223. # self.canvas.add_events(Gdk.EventMask.SMOOTH_SCROLL_MASK)
  224. # self.canvas.connect("scroll-event", self.on_scroll)
  225. self.osc = self.graph_event_connect('scroll_event', self.on_scroll)
  226. # self.graph_event_connect('key_press_event', self.on_key_down)
  227. # self.graph_event_connect('key_release_event', self.on_key_up)
  228. self.odr = self.graph_event_connect('draw_event', self.on_draw)
  229. self.key = None
  230. self.pan_axes = []
  231. self.panning = False
  232. self.mouse = [0, 0]
  233. self.big_cursor = False
  234. self.big_cursor_isdisabled = None
  235. # signal is the mouse is dragging
  236. self.is_dragging = False
  237. self.mouse_press_pos = None
  238. # signal if there is a doubleclick
  239. self.is_dblclk = False
  240. self.hud_enabled = False
  241. self.text_hud = self.Thud(plotcanvas=self)
  242. # draw a rectangle made out of 4 lines on the canvas to serve as a hint for the work area
  243. # all CNC have a limited workspace
  244. if self.app.defaults['global_workspace'] is True:
  245. self.draw_workspace(workspace_size=self.app.defaults["global_workspaceT"])
  246. if self.app.defaults['global_hud'] is True:
  247. self.on_toggle_hud(state=True)
  248. def on_toggle_hud(self, state):
  249. if state:
  250. self.hud_enabled = True
  251. self.text_hud.add_artist()
  252. self.app.defaults['global_hud'] = True
  253. else:
  254. self.hud_enabled = False
  255. self.text_hud.remove_artist()
  256. self.app.defaults['global_hud'] = False
  257. self.canvas.draw()
  258. class Thud(QtCore.QObject):
  259. text_changed = QtCore.pyqtSignal(str)
  260. def __init__(self, plotcanvas):
  261. super().__init__()
  262. self.p = plotcanvas
  263. units = self.p.app.defaults['units']
  264. self._text = 'Dx: %s [%s]\nDy: %s [%s]\n\nX: %s [%s]\nY: %s [%s]' % \
  265. ('0.0000', units, '0.0000', units, '0.0000', units, '0.0000', units)
  266. self.hud_holder = AnchoredText(self._text, prop=dict(size=20), frameon=True, loc='upper left')
  267. self.hud_holder.patch.set_boxstyle("round,pad=0.,rounding_size=0.2")
  268. fc_color = self.p.rect_hud_color[:-2]
  269. fc_alpha = int(self.p.rect_hud_color[-2:], 16) / 255
  270. text_color = self.p.text_hud_color
  271. self.hud_holder.patch.set_facecolor(fc_color)
  272. self.hud_holder.patch.set_alpha(fc_alpha)
  273. self.hud_holder.patch.set_edgecolor((0, 0, 0, 0))
  274. self. hud_holder.txt._text.set_color(color=text_color)
  275. self.text_changed.connect(self.on_text_changed)
  276. @property
  277. def text(self):
  278. return self._text
  279. @text.setter
  280. def text(self, val):
  281. self.text_changed.emit(val)
  282. self._text = val
  283. def on_text_changed(self, txt):
  284. try:
  285. txt = txt.replace('\t', ' ')
  286. self.hud_holder.txt.set_text(txt)
  287. self.p.canvas.draw()
  288. except Exception:
  289. pass
  290. def add_artist(self):
  291. if self.hud_holder not in self.p.axes.artists:
  292. self.p.axes.add_artist(self.hud_holder)
  293. def remove_artist(self):
  294. if self.hud_holder in self.p.axes.artists:
  295. self.p.axes.artists.remove(self.hud_holder)
  296. def draw_workspace(self, workspace_size):
  297. """
  298. Draw a rectangular shape on canvas to specify our valid workspace.
  299. :param workspace_size: the workspace size; tuple
  300. :return:
  301. """
  302. try:
  303. if self.app.defaults['units'].upper() == 'MM':
  304. dims = self.pagesize_dict[workspace_size]
  305. else:
  306. dims = (self.pagesize_dict[workspace_size][0]/25.4, self.pagesize_dict[workspace_size][1]/25.4)
  307. except Exception as e:
  308. log.debug("PlotCanvasLegacy.draw_workspace() --> %s" % str(e))
  309. return
  310. if self.app.defaults['global_workspace_orientation'] == 'l':
  311. dims = (dims[1], dims[0])
  312. xdata = [0, dims[0], dims[0], 0, 0]
  313. ydata = [0, 0, dims[1], dims[1], 0]
  314. if self.workspace_line not in self.axes.lines:
  315. self.workspace_line = Line2D(xdata=xdata, ydata=ydata, linewidth=2, antialiased=True, color='#b34d4d')
  316. self.axes.add_line(self.workspace_line)
  317. self.canvas.draw()
  318. def delete_workspace(self):
  319. try:
  320. self.axes.lines.remove(self.workspace_line)
  321. self.canvas.draw()
  322. except Exception:
  323. pass
  324. def graph_event_connect(self, event_name, callback):
  325. """
  326. Attach an event handler to the canvas through the Matplotlib interface.
  327. :param event_name: Name of the event
  328. :type event_name: str
  329. :param callback: Function to call
  330. :type callback: func
  331. :return: Connection id
  332. :rtype: int
  333. """
  334. if event_name == 'mouse_move':
  335. event_name = 'motion_notify_event'
  336. if event_name == 'mouse_press':
  337. event_name = 'button_press_event'
  338. if event_name == 'mouse_release':
  339. event_name = 'button_release_event'
  340. if event_name == 'mouse_double_click':
  341. return self.double_click.connect(callback)
  342. if event_name == 'key_press':
  343. event_name = 'key_press_event'
  344. return self.canvas.mpl_connect(event_name, callback)
  345. def graph_event_disconnect(self, cid):
  346. """
  347. Disconnect callback with the give id.
  348. :param cid: Callback id.
  349. :return: None
  350. """
  351. self.canvas.mpl_disconnect(cid)
  352. def on_new_screen(self):
  353. pass
  354. # log.debug("Cache updated the screen!")
  355. def new_cursor(self, axes=None, big=None):
  356. # if axes is None:
  357. # c = MplCursor(axes=self.axes, color='black', linewidth=1)
  358. # else:
  359. # c = MplCursor(axes=axes, color='black', linewidth=1)
  360. if self.app.defaults["global_cursor_color_enabled"]:
  361. color = self.app.defaults["global_cursor_color"]
  362. else:
  363. if self.app.defaults['global_theme'] == 'white':
  364. color = '#000000'
  365. else:
  366. color = '#FFFFFF'
  367. if big is True:
  368. self.big_cursor = True
  369. self.ch_line = self.axes.axhline(color=color, linewidth=self.app.defaults["global_cursor_width"])
  370. self.cv_line = self.axes.axvline(color=color, linewidth=self.app.defaults["global_cursor_width"])
  371. self.big_cursor_isdisabled = False
  372. else:
  373. self.big_cursor = False
  374. c = FakeCursor()
  375. c.mouse_state_updated.connect(self.clear_cursor)
  376. return c
  377. def draw_cursor(self, x_pos, y_pos, color=None):
  378. """
  379. Draw a cursor at the mouse grid snapped position
  380. :param x_pos: mouse x position
  381. :param y_pos: mouse y position
  382. :param color: custom color of the mouse
  383. :return:
  384. """
  385. # there is no point in drawing mouse cursor when panning as it jumps in a confusing way
  386. if self.app.app_cursor.enabled is True and self.panning is False:
  387. if color:
  388. color = color
  389. else:
  390. if self.app.defaults['global_theme'] == 'white':
  391. color = '#000000'
  392. else:
  393. color = '#FFFFFF'
  394. if self.big_cursor is False:
  395. try:
  396. x, y = self.snap(x_pos, y_pos)
  397. # Pointer (snapped)
  398. # The size of the cursor is multiplied by 1.65 because that value made the cursor similar with the
  399. # one in the OpenGL(3D) graphic engine
  400. pointer_size = int(float(self.app.defaults["global_cursor_size"]) * 1.65)
  401. elements = self.axes.plot(x, y, '+', color=color, ms=pointer_size,
  402. mew=self.app.defaults["global_cursor_width"], animated=True)
  403. for el in elements:
  404. self.axes.draw_artist(el)
  405. except Exception as e:
  406. # this happen at app initialization since self.app.geo_editor does not exist yet
  407. # I could reshuffle the object instantiating order but what's the point?
  408. # I could crash something else and that's pythonic, too
  409. log.debug("PlotCanvasLegacy.draw_cursor() big_cursor is False --> %s" % str(e))
  410. else:
  411. try:
  412. self.ch_line.set_markeredgewidth(self.app.defaults["global_cursor_width"])
  413. self.cv_line.set_markeredgewidth(self.app.defaults["global_cursor_width"])
  414. except Exception:
  415. pass
  416. try:
  417. x, y = self.app.geo_editor.snap(x_pos, y_pos)
  418. self.ch_line.set_ydata(y)
  419. self.cv_line.set_xdata(x)
  420. except Exception:
  421. # this happen at app initialization since self.app.geo_editor does not exist yet
  422. # I could reshuffle the object instantiating order but what's the point?
  423. # I could crash something else and that's pythonic, too
  424. pass
  425. self.canvas.draw_idle()
  426. self.canvas.blit(self.axes.bbox)
  427. def clear_cursor(self, state):
  428. if state is True:
  429. if self.big_cursor is True and self.big_cursor_isdisabled is True:
  430. if self.app.defaults["global_cursor_color_enabled"]:
  431. color = self.app.defaults["global_cursor_color"]
  432. else:
  433. if self.app.defaults['global_theme'] == 'white':
  434. color = '#000000'
  435. else:
  436. color = '#FFFFFF'
  437. self.ch_line = self.axes.axhline(color=color, linewidth=self.app.defaults["global_cursor_width"])
  438. self.cv_line = self.axes.axvline(color=color, linewidth=self.app.defaults["global_cursor_width"])
  439. self.big_cursor_isdisabled = False
  440. if self.app.defaults["global_cursor_color_enabled"] is True:
  441. self.draw_cursor(x_pos=self.mouse[0], y_pos=self.mouse[1], color=self.app.cursor_color_3D)
  442. else:
  443. self.draw_cursor(x_pos=self.mouse[0], y_pos=self.mouse[1])
  444. else:
  445. if self.big_cursor is True:
  446. self.big_cursor_isdisabled = True
  447. try:
  448. self.ch_line.remove()
  449. self.cv_line.remove()
  450. self.canvas.draw_idle()
  451. except Exception as e:
  452. log.debug("PlotCanvasLegacy.clear_cursor() big_cursor is True --> %s" % str(e))
  453. self.canvas.restore_region(self.background)
  454. self.canvas.blit(self.axes.bbox)
  455. def on_key_down(self, event):
  456. """
  457. :param event:
  458. :return:
  459. """
  460. log.debug('on_key_down(): ' + str(event.key))
  461. self.key = event.key
  462. def on_key_up(self, event):
  463. """
  464. :param event:
  465. :return:
  466. """
  467. self.key = None
  468. def connect(self, event_name, callback):
  469. """
  470. Attach an event handler to the canvas through the native Qt interface.
  471. :param event_name: Name of the event
  472. :type event_name: str
  473. :param callback: Function to call
  474. :type callback: function
  475. :return: Nothing
  476. """
  477. self.canvas.connect(event_name, callback)
  478. def clear(self):
  479. """
  480. Clears axes and figure.
  481. :return: None
  482. """
  483. # Clear
  484. self.axes.cla()
  485. try:
  486. self.figure.clf()
  487. except KeyError:
  488. log.warning("KeyError in MPL figure.clf()")
  489. # Re-build
  490. self.figure.add_axes(self.axes)
  491. self.axes.set_aspect(1)
  492. self.axes.grid(True)
  493. self.axes.axhline(color=(0.70, 0.3, 0.3), linewidth=2)
  494. self.axes.axvline(color=(0.70, 0.3, 0.3), linewidth=2)
  495. self.adjust_axes(-10, -10, 100, 100)
  496. # Re-draw
  497. self.canvas.draw_idle()
  498. def redraw(self):
  499. """
  500. Created only to serve for compatibility with the VisPy plotcanvas (the other graphic engine, 3D)
  501. :return:
  502. """
  503. self.clear()
  504. def adjust_axes(self, xmin, ymin, xmax, ymax):
  505. """
  506. Adjusts all axes while maintaining the use of the whole canvas
  507. and an aspect ratio to 1:1 between x and y axes. The parameters are an original
  508. request that will be modified to fit these restrictions.
  509. :param xmin: Requested minimum value for the X axis.
  510. :type xmin: float
  511. :param ymin: Requested minimum value for the Y axis.
  512. :type ymin: float
  513. :param xmax: Requested maximum value for the X axis.
  514. :type xmax: float
  515. :param ymax: Requested maximum value for the Y axis.
  516. :type ymax: float
  517. :return: None
  518. """
  519. # FlatCAMApp.App.log.debug("PC.adjust_axes()")
  520. if not self.app.collection.get_list():
  521. xmin = -10
  522. ymin = -10
  523. xmax = 100
  524. ymax = 100
  525. width = xmax - xmin
  526. height = ymax - ymin
  527. try:
  528. r = width / height
  529. except ZeroDivisionError:
  530. log.error("Height is %f" % height)
  531. return
  532. canvas_w, canvas_h = self.canvas.get_width_height()
  533. canvas_r = float(canvas_w) / canvas_h
  534. x_ratio = float(self.x_margin) / canvas_w
  535. y_ratio = float(self.y_margin) / canvas_h
  536. if r > canvas_r:
  537. ycenter = (ymin + ymax) / 2.0
  538. newheight = height * r / canvas_r
  539. ymin = ycenter - newheight / 2.0
  540. ymax = ycenter + newheight / 2.0
  541. else:
  542. xcenter = (xmax + xmin) / 2.0
  543. newwidth = width * canvas_r / r
  544. xmin = xcenter - newwidth / 2.0
  545. xmax = xcenter + newwidth / 2.0
  546. # Adjust axes
  547. for ax in self.figure.get_axes():
  548. if ax._label != 'base':
  549. ax.set_frame_on(False) # No frame
  550. ax.set_xticks([]) # No tick
  551. ax.set_yticks([]) # No ticks
  552. ax.patch.set_visible(False) # No background
  553. ax.set_aspect(1)
  554. ax.set_xlim((xmin, xmax))
  555. ax.set_ylim((ymin, ymax))
  556. ax.set_position([x_ratio, y_ratio, 1 - 2 * x_ratio, 1 - 2 * y_ratio])
  557. # Sync re-draw to proper paint on form resize
  558. self.canvas.draw()
  559. # #### Temporary place-holder for cached update #####
  560. self.update_screen_request.emit([0, 0, 0, 0, 0])
  561. def auto_adjust_axes(self, *args):
  562. """
  563. Calls ``adjust_axes()`` using the extents of the base axes.
  564. :rtype : None
  565. :return: None
  566. """
  567. xmin, xmax = self.axes.get_xlim()
  568. ymin, ymax = self.axes.get_ylim()
  569. self.adjust_axes(xmin, ymin, xmax, ymax)
  570. def fit_view(self):
  571. self.auto_adjust_axes()
  572. def fit_center(self, loc, rect=None):
  573. x = loc[0]
  574. y = loc[1]
  575. xmin, xmax = self.axes.get_xlim()
  576. ymin, ymax = self.axes.get_ylim()
  577. half_width = (xmax - xmin) / 2
  578. half_height = (ymax - ymin) / 2
  579. # Adjust axes
  580. for ax in self.figure.get_axes():
  581. ax.set_xlim((x - half_width, x + half_width))
  582. ax.set_ylim((y - half_height, y + half_height))
  583. # Re-draw
  584. self.canvas.draw()
  585. # #### Temporary place-holder for cached update #####
  586. self.update_screen_request.emit([0, 0, 0, 0, 0])
  587. def zoom(self, factor, center=None):
  588. """
  589. Zooms the plot by factor around a given
  590. center point. Takes care of re-drawing.
  591. :param factor: Number by which to scale the plot.
  592. :type factor: float
  593. :param center: Coordinates [x, y] of the point around which to scale the plot.
  594. :type center: list
  595. :return: None
  596. """
  597. factor = 1 / factor
  598. xmin, xmax = self.axes.get_xlim()
  599. ymin, ymax = self.axes.get_ylim()
  600. width = xmax - xmin
  601. height = ymax - ymin
  602. if center is None or center == [None, None]:
  603. center = [(xmin + xmax) / 2.0, (ymin + ymax) / 2.0]
  604. # For keeping the point at the pointer location
  605. relx = (xmax - center[0]) / width
  606. rely = (ymax - center[1]) / height
  607. new_width = width / factor
  608. new_height = height / factor
  609. xmin = center[0] - new_width * (1 - relx)
  610. xmax = center[0] + new_width * relx
  611. ymin = center[1] - new_height * (1 - rely)
  612. ymax = center[1] + new_height * rely
  613. # Adjust axes
  614. for ax in self.figure.get_axes():
  615. ax.set_xlim((xmin, xmax))
  616. ax.set_ylim((ymin, ymax))
  617. # Async re-draw
  618. self.canvas.draw_idle()
  619. # #### Temporary place-holder for cached update #####
  620. self.update_screen_request.emit([0, 0, 0, 0, 0])
  621. def pan(self, x, y, idle=True):
  622. xmin, xmax = self.axes.get_xlim()
  623. ymin, ymax = self.axes.get_ylim()
  624. width = xmax - xmin
  625. height = ymax - ymin
  626. # Adjust axes
  627. for ax in self.figure.get_axes():
  628. ax.set_xlim((xmin + x * width, xmax + x * width))
  629. ax.set_ylim((ymin + y * height, ymax + y * height))
  630. # Re-draw
  631. if idle:
  632. self.canvas.draw_idle()
  633. else:
  634. self.canvas.draw()
  635. # #### Temporary place-holder for cached update #####
  636. self.update_screen_request.emit([0, 0, 0, 0, 0])
  637. def new_axes(self, name):
  638. """
  639. Creates and returns an Axes object attached to this object's Figure.
  640. :param name: Unique label for the axes.
  641. :return: Axes attached to the figure.
  642. :rtype: Axes
  643. """
  644. new_ax = self.figure.add_axes([0.05, 0.05, 0.9, 0.9], label=name)
  645. return new_ax
  646. def remove_current_axes(self):
  647. """
  648. :return: The name of the deleted axes
  649. """
  650. axes_to_remove = self.figure.axes.gca()
  651. current_axes_name = deepcopy(axes_to_remove._label)
  652. self.figure.axes.remove(axes_to_remove)
  653. return current_axes_name
  654. def on_scroll(self, event):
  655. """
  656. Scroll event handler.
  657. :param event: Event object containing the event information.
  658. :return: None
  659. """
  660. # So it can receive key presses
  661. # self.canvas.grab_focus()
  662. self.canvas.setFocus()
  663. # Event info
  664. # z, direction = event.get_scroll_direction()
  665. if self.key is None:
  666. if event.button == 'up':
  667. self.zoom(1 / 1.5, self.mouse)
  668. else:
  669. self.zoom(1.5, self.mouse)
  670. return
  671. if self.key == 'shift':
  672. if event.button == 'up':
  673. self.pan(0.3, 0)
  674. else:
  675. self.pan(-0.3, 0)
  676. return
  677. if self.key == 'control':
  678. if event.button == 'up':
  679. self.pan(0, 0.3)
  680. else:
  681. self.pan(0, -0.3)
  682. return
  683. def on_mouse_press(self, event):
  684. self.is_dragging = True
  685. self.mouse_press_pos = (event.x, event.y)
  686. # Check for middle mouse button press
  687. if self.app.defaults["global_pan_button"] == '2':
  688. pan_button = 3 # right button for Matplotlib
  689. else:
  690. pan_button = 2 # middle button for Matplotlib
  691. if event.button == pan_button:
  692. # Prepare axes for pan (using 'matplotlib' pan function)
  693. self.pan_axes = []
  694. for a in self.figure.get_axes():
  695. if (event.x is not None and event.y is not None and a.in_axes(event) and
  696. a.get_navigate() and a.can_pan()):
  697. a.start_pan(event.x, event.y, 1)
  698. self.pan_axes.append(a)
  699. # Set pan view flag
  700. if len(self.pan_axes) > 0:
  701. self.panning = True
  702. if event.dblclick:
  703. self.double_click.emit(event)
  704. def on_mouse_release(self, event):
  705. mouse_release_pos = (event.x, event.y)
  706. delta = 0.05
  707. if abs(self.distance(self.mouse_press_pos, mouse_release_pos)) < delta:
  708. self.is_dragging = False
  709. # Check for middle mouse button release to complete pan procedure
  710. # Check for middle mouse button press
  711. if self.app.defaults["global_pan_button"] == '2':
  712. pan_button = 3 # right button for Matplotlib
  713. else:
  714. pan_button = 2 # middle button for Matplotlib
  715. if event.button == pan_button:
  716. for a in self.pan_axes:
  717. a.end_pan()
  718. # Clear pan flag
  719. self.panning = False
  720. # And update the cursor
  721. if self.app.defaults["global_cursor_color_enabled"] is True:
  722. self.draw_cursor(x_pos=self.mouse[0], y_pos=self.mouse[1], color=self.app.cursor_color_3D)
  723. else:
  724. self.draw_cursor(x_pos=self.mouse[0], y_pos=self.mouse[1])
  725. def on_mouse_move(self, event):
  726. """
  727. Mouse movement event handler. Stores the coordinates. Updates view on pan.
  728. :param event: Contains information about the event.
  729. :return: None
  730. """
  731. try:
  732. x = float(event.xdata)
  733. y = float(event.ydata)
  734. except TypeError:
  735. return
  736. self.mouse = [event.xdata, event.ydata]
  737. self.canvas.restore_region(self.background)
  738. # Update pan view on mouse move
  739. if self.panning is True:
  740. for a in self.pan_axes:
  741. a.drag_pan(1, event.key, event.x, event.y)
  742. # x_pan, y_pan = self.app.geo_editor.snap(event.xdata, event.ydata)
  743. # self.draw_cursor(x_pos=x_pan, y_pos=y_pan)
  744. # Async re-draw (redraws only on thread idle state, uses timer on backend)
  745. self.canvas.draw_idle()
  746. # #### Temporary place-holder for cached update #####
  747. # self.update_screen_request.emit([0, 0, 0, 0, 0])
  748. if self.app.defaults["global_cursor_color_enabled"] is True:
  749. self.draw_cursor(x_pos=x, y_pos=y, color=self.app.cursor_color_3D)
  750. else:
  751. self.draw_cursor(x_pos=x, y_pos=y)
  752. # self.canvas.blit(self.axes.bbox)
  753. def translate_coords(self, position):
  754. """
  755. This does not do much. It's just for code compatibility
  756. :param position: Mouse event position
  757. :return: Tuple with mouse position
  758. """
  759. return position[0], position[1]
  760. def on_draw(self, renderer):
  761. # Store background on canvas redraw
  762. self.background = self.canvas.copy_from_bbox(self.axes.bbox)
  763. def get_axes_pixelsize(self):
  764. """
  765. Axes size in pixels.
  766. :return: Pixel width and height
  767. :rtype: tuple
  768. """
  769. bbox = self.axes.get_window_extent().transformed(self.figure.dpi_scale_trans.inverted())
  770. width, height = bbox.width, bbox.height
  771. width *= self.figure.dpi
  772. height *= self.figure.dpi
  773. return width, height
  774. def get_density(self):
  775. """
  776. Returns unit length per pixel on horizontal
  777. and vertical axes.
  778. :return: X and Y density
  779. :rtype: tuple
  780. """
  781. xpx, ypx = self.get_axes_pixelsize()
  782. xmin, xmax = self.axes.get_xlim()
  783. ymin, ymax = self.axes.get_ylim()
  784. width = xmax - xmin
  785. height = ymax - ymin
  786. return width / xpx, height / ypx
  787. def snap(self, x, y):
  788. """
  789. Adjusts coordinates to snap settings.
  790. :param x: Input coordinate X
  791. :param y: Input coordinate Y
  792. :return: Snapped (x, y)
  793. """
  794. snap_x, snap_y = (x, y)
  795. snap_distance = np.Inf
  796. # ### Grid snap
  797. if self.app.grid_status():
  798. if self.app.defaults["global_gridx"] != 0:
  799. try:
  800. snap_x_ = round(x / float(self.app.defaults["global_gridx"])) * \
  801. float(self.app.defaults["global_gridx"])
  802. except TypeError:
  803. snap_x_ = x
  804. else:
  805. snap_x_ = x
  806. # If the Grid_gap_linked on Grid Toolbar is checked then the snap distance on GridY entry will be ignored
  807. # and it will use the snap distance from GridX entry
  808. if self.app.ui.grid_gap_link_cb.isChecked():
  809. if self.app.defaults["global_gridx"] != 0:
  810. try:
  811. snap_y_ = round(y / float(self.app.defaults["global_gridx"])) * \
  812. float(self.app.defaults["global_gridx"])
  813. except TypeError:
  814. snap_y_ = y
  815. else:
  816. snap_y_ = y
  817. else:
  818. if self.app.defaults["global_gridy"] != 0:
  819. try:
  820. snap_y_ = round(y / float(self.app.defaults["global_gridy"])) * \
  821. float(self.app.defaults["global_gridy"])
  822. except TypeError:
  823. snap_y_ = y
  824. else:
  825. snap_y_ = y
  826. nearest_grid_distance = self.distance((x, y), (snap_x_, snap_y_))
  827. if nearest_grid_distance < snap_distance:
  828. snap_x, snap_y = (snap_x_, snap_y_)
  829. return snap_x, snap_y
  830. @staticmethod
  831. def distance(pt1, pt2):
  832. return np.sqrt((pt1[0] - pt2[0]) ** 2 + (pt1[1] - pt2[1]) ** 2)
  833. class FakeCursor(QtCore.QObject):
  834. """
  835. This is a fake cursor to ensure compatibility with the OpenGL engine (VisPy).
  836. This way I don't have to chane (disable) things related to the cursor all over when
  837. using the low performance Matplotlib 2D graphic engine.
  838. """
  839. mouse_state_updated = pyqtSignal(bool)
  840. def __init__(self):
  841. super().__init__()
  842. self._enabled = True
  843. @property
  844. def enabled(self):
  845. return True if self._enabled else False
  846. @enabled.setter
  847. def enabled(self, value):
  848. self._enabled = value
  849. self.mouse_state_updated.emit(value)
  850. def set_data(self, pos, **kwargs):
  851. """Internal event handler to draw the cursor when the mouse moves."""
  852. return
  853. class ShapeCollectionLegacy:
  854. """
  855. This will create the axes for each collection of shapes and will also
  856. hold the collection of shapes into a dict self._shapes.
  857. This handles the shapes redraw on canvas.
  858. """
  859. def __init__(self, obj, app, name=None, annotation_job=None, linewidth=1):
  860. """
  861. :param obj: This is the object to which the shapes collection is attached and for
  862. which it will have to draw shapes
  863. :param app: This is the FLatCAM.App usually, needed because we have to access attributes there
  864. :param name: This is the name given to the Matplotlib axes; it needs to be unique due of
  865. Matplotlib requurements
  866. :param annotation_job: Make this True if the job needed is just for annotation
  867. :param linewidth: THe width of the line (outline where is the case)
  868. """
  869. self.obj = obj
  870. self.app = app
  871. self.annotation_job = annotation_job
  872. self._shapes = {}
  873. self.shape_dict = {}
  874. self.shape_id = 0
  875. self._color = None
  876. self._face_color = None
  877. self._visible = True
  878. self._update = False
  879. self._alpha = None
  880. self._tool_tolerance = None
  881. self._tooldia = None
  882. self._obj = None
  883. self._gcode_parsed = None
  884. self._linewidth = linewidth
  885. if name is None:
  886. axes_name = self.obj.options['name']
  887. else:
  888. axes_name = name
  889. # Axes must exist and be attached to canvas.
  890. if axes_name not in self.app.plotcanvas.figure.axes:
  891. self.axes = self.app.plotcanvas.new_axes(axes_name)
  892. def add(self, shape=None, color=None, face_color=None, alpha=None, visible=True,
  893. update=False, layer=1, tolerance=0.01, obj=None, gcode_parsed=None, tool_tolerance=None, tooldia=None,
  894. linewidth=None):
  895. """
  896. This function will add shapes to the shape collection
  897. :param shape: the Shapely shape to be added to the shape collection
  898. :param color: edge color of the shape, hex value
  899. :param face_color: the body color of the shape, hex value
  900. :param alpha: level of transparency of the shape [0.0 ... 1.0]; Float
  901. :param visible: if True will allow the shapes to be added
  902. :param update: not used; just for compatibility with VIsPy canvas
  903. :param layer: just for compatibility with VIsPy canvas
  904. :param tolerance: just for compatibility with VIsPy canvas
  905. :param obj: not used
  906. :param gcode_parsed: not used; just for compatibility with VIsPy canvas
  907. :param tool_tolerance: just for compatibility with VIsPy canvas
  908. :param tooldia:
  909. :param linewidth: the width of the line
  910. :return:
  911. """
  912. self._color = color if color is not None else "#006E20"
  913. # self._face_color = face_color if face_color is not None else "#BBF268"
  914. self._face_color = face_color
  915. if linewidth is None:
  916. line_width = self._linewidth
  917. else:
  918. line_width = linewidth
  919. if len(self._color) > 7:
  920. self._color = self._color[:7]
  921. if self._face_color is not None:
  922. if len(self._face_color) > 7:
  923. self._face_color = self._face_color[:7]
  924. # self._alpha = int(self._face_color[-2:], 16) / 255
  925. self._alpha = 0.75
  926. if alpha is not None:
  927. self._alpha = alpha
  928. self._visible = visible
  929. self._update = update
  930. # CNCJob object related arguments
  931. self._obj = obj
  932. self._gcode_parsed = gcode_parsed
  933. self._tool_tolerance = tool_tolerance
  934. self._tooldia = tooldia
  935. # if self._update:
  936. # self.clear()
  937. try:
  938. for sh in shape:
  939. self.shape_id += 1
  940. self.shape_dict.update({
  941. 'color': self._color,
  942. 'face_color': self._face_color,
  943. 'linewidth': line_width,
  944. 'alpha': self._alpha,
  945. 'shape': sh
  946. })
  947. self._shapes.update({
  948. self.shape_id: deepcopy(self.shape_dict)
  949. })
  950. except TypeError:
  951. self.shape_id += 1
  952. self.shape_dict.update({
  953. 'color': self._color,
  954. 'face_color': self._face_color,
  955. 'linewidth': line_width,
  956. 'alpha': self._alpha,
  957. 'shape': shape
  958. })
  959. self._shapes.update({
  960. self.shape_id: deepcopy(self.shape_dict)
  961. })
  962. return self.shape_id
  963. def remove(self, shape_id, update=None):
  964. for k in list(self._shapes.keys()):
  965. if shape_id == k:
  966. self._shapes.pop(k, None)
  967. if update is True:
  968. self.redraw()
  969. def clear(self, update=None):
  970. """
  971. Clear the canvas of the shapes.
  972. :param update:
  973. :return: None
  974. """
  975. self._shapes.clear()
  976. self.shape_id = 0
  977. self.axes.cla()
  978. try:
  979. self.app.plotcanvas.auto_adjust_axes()
  980. except Exception as e:
  981. log.debug("ShapeCollectionLegacy.clear() --> %s" % str(e))
  982. if update is True:
  983. self.redraw()
  984. def redraw(self, update_colors=None):
  985. """
  986. This draw the shapes in the shapes collection, on canvas
  987. :return: None
  988. """
  989. path_num = 0
  990. local_shapes = deepcopy(self._shapes)
  991. try:
  992. obj_type = self.obj.kind
  993. except AttributeError:
  994. obj_type = 'utility'
  995. if self._visible:
  996. # if we don't use this then when adding each new shape, the old ones will be added again, too
  997. if obj_type == 'utility':
  998. self.axes.patches.clear()
  999. for element in local_shapes:
  1000. if obj_type == 'excellon':
  1001. # Plot excellon (All polygons?)
  1002. if self.obj.options["solid"] and isinstance(local_shapes[element]['shape'], Polygon):
  1003. try:
  1004. patch = PolygonPatch(local_shapes[element]['shape'],
  1005. facecolor="#C40000",
  1006. edgecolor="#750000",
  1007. alpha=local_shapes[element]['alpha'],
  1008. zorder=3,
  1009. linewidth=local_shapes[element]['linewidth']
  1010. )
  1011. self.axes.add_patch(patch)
  1012. except Exception as e:
  1013. log.debug("ShapeCollectionLegacy.redraw() excellon poly --> %s" % str(e))
  1014. else:
  1015. try:
  1016. x, y = local_shapes[element]['shape'].exterior.coords.xy
  1017. self.axes.plot(x, y, 'r-', linewidth=local_shapes[element]['linewidth'])
  1018. for ints in local_shapes[element]['shape'].interiors:
  1019. x, y = ints.coords.xy
  1020. self.axes.plot(x, y, 'o-', linewidth=local_shapes[element]['linewidth'])
  1021. except Exception as e:
  1022. log.debug("ShapeCollectionLegacy.redraw() excellon no poly --> %s" % str(e))
  1023. elif obj_type == 'geometry':
  1024. if type(local_shapes[element]['shape']) == Polygon:
  1025. try:
  1026. x, y = local_shapes[element]['shape'].exterior.coords.xy
  1027. self.axes.plot(x, y, local_shapes[element]['color'],
  1028. linestyle='-',
  1029. linewidth=local_shapes[element]['linewidth'])
  1030. for ints in local_shapes[element]['shape'].interiors:
  1031. x, y = ints.coords.xy
  1032. self.axes.plot(x, y, local_shapes[element]['color'],
  1033. linestyle='-',
  1034. linewidth=local_shapes[element]['linewidth'])
  1035. except Exception as e:
  1036. log.debug("ShapeCollectionLegacy.redraw() geometry poly --> %s" % str(e))
  1037. elif type(local_shapes[element]['shape']) == LineString or \
  1038. type(local_shapes[element]['shape']) == LinearRing:
  1039. try:
  1040. x, y = local_shapes[element]['shape'].coords.xy
  1041. self.axes.plot(x, y, local_shapes[element]['color'],
  1042. linestyle='-',
  1043. linewidth=local_shapes[element]['linewidth'])
  1044. except Exception as e:
  1045. log.debug("ShapeCollectionLegacy.redraw() geometry no poly --> %s" % str(e))
  1046. elif obj_type == 'gerber':
  1047. if self.obj.options["multicolored"]:
  1048. linespec = '-'
  1049. else:
  1050. linespec = 'k-'
  1051. if self.obj.options["solid"]:
  1052. if update_colors:
  1053. gerber_fill_color = update_colors[0]
  1054. gerber_outline_color = update_colors[1]
  1055. else:
  1056. gerber_fill_color = local_shapes[element]['face_color']
  1057. gerber_outline_color = local_shapes[element]['color']
  1058. try:
  1059. patch = PolygonPatch(local_shapes[element]['shape'],
  1060. facecolor=gerber_fill_color,
  1061. edgecolor=gerber_outline_color,
  1062. alpha=local_shapes[element]['alpha'],
  1063. zorder=2,
  1064. linewidth=local_shapes[element]['linewidth'])
  1065. self.axes.add_patch(patch)
  1066. except AssertionError:
  1067. log.warning("A geometry component was not a polygon:")
  1068. log.warning(str(element))
  1069. except Exception as e:
  1070. log.debug(
  1071. "PlotCanvasLegacy.ShepeCollectionLegacy.redraw() gerber 'solid' --> %s" % str(e))
  1072. else:
  1073. try:
  1074. x, y = local_shapes[element]['shape'].exterior.xy
  1075. self.axes.plot(x, y, linespec, linewidth=local_shapes[element]['linewidth'])
  1076. for ints in local_shapes[element]['shape'].interiors:
  1077. x, y = ints.coords.xy
  1078. self.axes.plot(x, y, linespec, linewidth=local_shapes[element]['linewidth'])
  1079. except Exception as e:
  1080. log.debug("ShapeCollectionLegacy.redraw() gerber no 'solid' --> %s" % str(e))
  1081. elif obj_type == 'cncjob':
  1082. if local_shapes[element]['face_color'] is None:
  1083. try:
  1084. linespec = '--'
  1085. linecolor = local_shapes[element]['color']
  1086. # if geo['kind'][0] == 'C':
  1087. # linespec = 'k-'
  1088. x, y = local_shapes[element]['shape'].coords.xy
  1089. self.axes.plot(x, y, linespec, color=linecolor,
  1090. linewidth=local_shapes[element]['linewidth'])
  1091. except Exception as e:
  1092. log.debug("ShapeCollectionLegacy.redraw() cncjob with face_color --> %s" % str(e))
  1093. else:
  1094. try:
  1095. path_num += 1
  1096. if self.obj.ui.annotation_cb.get_value():
  1097. if isinstance(local_shapes[element]['shape'], Polygon):
  1098. self.axes.annotate(
  1099. str(path_num),
  1100. xy=local_shapes[element]['shape'].exterior.coords[0],
  1101. xycoords='data', fontsize=20)
  1102. else:
  1103. self.axes.annotate(
  1104. str(path_num),
  1105. xy=local_shapes[element]['shape'].coords[0],
  1106. xycoords='data', fontsize=20)
  1107. patch = PolygonPatch(local_shapes[element]['shape'],
  1108. facecolor=local_shapes[element]['face_color'],
  1109. edgecolor=local_shapes[element]['color'],
  1110. alpha=local_shapes[element]['alpha'], zorder=2,
  1111. linewidth=local_shapes[element]['linewidth'])
  1112. self.axes.add_patch(patch)
  1113. except Exception as e:
  1114. log.debug("ShapeCollectionLegacy.redraw() cncjob no face_color --> %s" % str(e))
  1115. elif obj_type == 'utility':
  1116. # not a FlatCAM object, must be utility
  1117. if local_shapes[element]['face_color']:
  1118. try:
  1119. patch = PolygonPatch(local_shapes[element]['shape'],
  1120. facecolor=local_shapes[element]['face_color'],
  1121. edgecolor=local_shapes[element]['color'],
  1122. alpha=local_shapes[element]['alpha'],
  1123. zorder=2,
  1124. linewidth=local_shapes[element]['linewidth'])
  1125. self.axes.add_patch(patch)
  1126. except Exception as e:
  1127. log.debug("ShapeCollectionLegacy.redraw() utility poly with face_color --> %s" % str(e))
  1128. else:
  1129. if isinstance(local_shapes[element]['shape'], Polygon):
  1130. try:
  1131. ext_shape = local_shapes[element]['shape'].exterior
  1132. if ext_shape is not None:
  1133. x, y = ext_shape.xy
  1134. self.axes.plot(x, y, local_shapes[element]['color'], linestyle='-',
  1135. linewidth=local_shapes[element]['linewidth'])
  1136. for ints in local_shapes[element]['shape'].interiors:
  1137. if ints is not None:
  1138. x, y = ints.coords.xy
  1139. self.axes.plot(x, y, local_shapes[element]['color'], linestyle='-',
  1140. linewidth=local_shapes[element]['linewidth'])
  1141. except Exception as e:
  1142. log.debug("ShapeCollectionLegacy.redraw() utility poly no face_color --> %s" % str(e))
  1143. else:
  1144. try:
  1145. if local_shapes[element]['shape'] is not None:
  1146. x, y = local_shapes[element]['shape'].coords.xy
  1147. self.axes.plot(x, y, local_shapes[element]['color'], linestyle='-',
  1148. linewidth=local_shapes[element]['linewidth'])
  1149. except Exception as e:
  1150. log.debug("ShapeCollectionLegacy.redraw() utility lines no face_color --> %s" % str(e))
  1151. self.app.plotcanvas.auto_adjust_axes()
  1152. def set(self, text, pos, visible=True, font_size=16, color=None):
  1153. """
  1154. This will set annotations on the canvas.
  1155. :param text: a list of text elements to be used as annotations
  1156. :param pos: a list of positions for showing the text elements above
  1157. :param visible: if True will display annotations, if False will clear them on canvas
  1158. :param font_size: the font size or the annotations
  1159. :param color: color of the annotations
  1160. :return: None
  1161. """
  1162. if color is None:
  1163. color = "#000000FF"
  1164. if visible is not True:
  1165. self.clear()
  1166. return
  1167. if len(text) != len(pos):
  1168. self.app.inform.emit('[ERROR_NOTCL] %s' % _("Could not annotate due of a difference between the number "
  1169. "of text elements and the number of text positions."))
  1170. return
  1171. for idx in range(len(text)):
  1172. try:
  1173. self.axes.annotate(text[idx], xy=pos[idx], xycoords='data', fontsize=font_size, color=color)
  1174. except Exception as e:
  1175. log.debug("ShapeCollectionLegacy.set() --> %s" % str(e))
  1176. self.app.plotcanvas.auto_adjust_axes()
  1177. @property
  1178. def visible(self):
  1179. return self._visible
  1180. @visible.setter
  1181. def visible(self, value):
  1182. if value is False:
  1183. self.axes.cla()
  1184. self.app.plotcanvas.auto_adjust_axes()
  1185. else:
  1186. if self._visible is False:
  1187. self.redraw()
  1188. self._visible = value
  1189. @property
  1190. def enabled(self):
  1191. return self._visible
  1192. @enabled.setter
  1193. def enabled(self, value):
  1194. if value is False:
  1195. self.axes.cla()
  1196. self.app.plotcanvas.auto_adjust_axes()
  1197. else:
  1198. if self._visible is False:
  1199. self.redraw()
  1200. self._visible = value
  1201. # class MplCursor(Cursor):
  1202. # """
  1203. # Unfortunately this gets attached to the current axes and if a new axes is added
  1204. # it will not be showed until that axes is deleted.
  1205. # Not the kind of behavior needed here so I don't use it anymore.
  1206. # """
  1207. # def __init__(self, axes, color='red', linewidth=1):
  1208. #
  1209. # super().__init__(ax=axes, useblit=True, color=color, linewidth=linewidth)
  1210. # self._enabled = True
  1211. #
  1212. # self.axes = axes
  1213. # self.color = color
  1214. # self.linewidth = linewidth
  1215. #
  1216. # self.x = None
  1217. # self.y = None
  1218. #
  1219. # @property
  1220. # def enabled(self):
  1221. # return True if self._enabled else False
  1222. #
  1223. # @enabled.setter
  1224. # def enabled(self, value):
  1225. # self._enabled = value
  1226. # self.visible = self._enabled
  1227. # self.canvas.draw()
  1228. #
  1229. # def onmove(self, event):
  1230. # pass
  1231. #
  1232. # def set_data(self, event, pos):
  1233. # """Internal event handler to draw the cursor when the mouse moves."""
  1234. # self.x = pos[0]
  1235. # self.y = pos[1]
  1236. #
  1237. # if self.ignore(event):
  1238. # return
  1239. # if not self.canvas.widgetlock.available(self):
  1240. # return
  1241. # if event.inaxes != self.ax:
  1242. # self.linev.set_visible(False)
  1243. # self.lineh.set_visible(False)
  1244. #
  1245. # if self.needclear:
  1246. # self.canvas.draw()
  1247. # self.needclear = False
  1248. # return
  1249. # self.needclear = True
  1250. # if not self.visible:
  1251. # return
  1252. # self.linev.set_xdata((self.x, self.x))
  1253. #
  1254. # self.lineh.set_ydata((self.y, self.y))
  1255. # self.linev.set_visible(self.visible and self.vertOn)
  1256. # self.lineh.set_visible(self.visible and self.horizOn)
  1257. #
  1258. # self._update()