AppGerberEditor.py 260 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # File Author: Marius Adrian Stanciu (c) #
  4. # Date: 8/17/2019 #
  5. # MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtGui, QtCore, QtWidgets
  8. from PyQt5.QtCore import Qt, QSettings
  9. from shapely.geometry import LineString, LinearRing, MultiLineString, Point, Polygon, MultiPolygon, box
  10. from shapely.ops import unary_union
  11. import shapely.affinity as affinity
  12. from vispy.geometry import Rect
  13. from copy import copy, deepcopy
  14. import logging
  15. from camlib import distance, arc, three_point_circle
  16. from appGUI.GUIElements import FCEntry, FCComboBox, FCTable, FCDoubleSpinner, FCSpinner, RadioSet, \
  17. EvalEntry2, FCInputDialog, FCButton, OptionalInputSection, FCCheckBox, NumericalEvalTupleEntry
  18. from appTool import AppTool
  19. import numpy as np
  20. from numpy.linalg import norm as numpy_norm
  21. import math
  22. # from vispy.io import read_png
  23. # import pngcanvas
  24. import traceback
  25. import gettext
  26. import appTranslation as fcTranslate
  27. import builtins
  28. fcTranslate.apply_language('strings')
  29. if '_' not in builtins.__dict__:
  30. _ = gettext.gettext
  31. log = logging.getLogger('base')
  32. class DrawToolShape(object):
  33. """
  34. Encapsulates "shapes" under a common class.
  35. """
  36. tolerance = None
  37. @staticmethod
  38. def get_pts(o):
  39. """
  40. Returns a list of all points in the object, where
  41. the object can be a Polygon, Not a polygon, or a list
  42. of such. Search is done recursively.
  43. :param: geometric object
  44. :return: List of points
  45. :rtype: list
  46. """
  47. pts = []
  48. # ## Iterable: descend into each item.
  49. try:
  50. for sub_o in o:
  51. pts += DrawToolShape.get_pts(sub_o)
  52. # Non-iterable
  53. except TypeError:
  54. if o is not None:
  55. # DrawToolShape: descend into .geo.
  56. if isinstance(o, DrawToolShape):
  57. pts += DrawToolShape.get_pts(o.geo)
  58. # ## Descend into .exerior and .interiors
  59. elif type(o) == Polygon:
  60. pts += DrawToolShape.get_pts(o.exterior)
  61. for i in o.interiors:
  62. pts += DrawToolShape.get_pts(i)
  63. elif type(o) == MultiLineString:
  64. for line in o:
  65. pts += DrawToolShape.get_pts(line)
  66. # ## Has .coords: list them.
  67. else:
  68. if DrawToolShape.tolerance is not None:
  69. pts += list(o.simplify(DrawToolShape.tolerance).coords)
  70. else:
  71. pts += list(o.coords)
  72. else:
  73. return
  74. return pts
  75. def __init__(self, geo=None):
  76. # Shapely type or list of such
  77. self.geo = geo
  78. self.utility = False
  79. class DrawToolUtilityShape(DrawToolShape):
  80. """
  81. Utility shapes are temporary geometry in the editor
  82. to assist in the creation of shapes. For example it
  83. will show the outline of a rectangle from the first
  84. point to the current mouse pointer before the second
  85. point is clicked and the final geometry is created.
  86. """
  87. def __init__(self, geo=None):
  88. super(DrawToolUtilityShape, self).__init__(geo=geo)
  89. self.utility = True
  90. class DrawTool(object):
  91. """
  92. Abstract Class representing a tool in the drawing
  93. program. Can generate geometry, including temporary
  94. utility geometry that is updated on user clicks
  95. and mouse motion.
  96. """
  97. def __init__(self, draw_app):
  98. self.draw_app = draw_app
  99. self.complete = False
  100. self.points = []
  101. self.geometry = None # DrawToolShape or None
  102. def click(self, point):
  103. """
  104. :param point: [x, y] Coordinate pair.
  105. """
  106. return ""
  107. def click_release(self, point):
  108. """
  109. :param point: [x, y] Coordinate pair.
  110. """
  111. return ""
  112. def on_key(self, key):
  113. # Jump to coords
  114. if key == QtCore.Qt.Key_J or key == 'J':
  115. self.draw_app.app.on_jump_to()
  116. def utility_geometry(self, data=None):
  117. return None
  118. @staticmethod
  119. def bounds(obj):
  120. def bounds_rec(o):
  121. if type(o) is list:
  122. minx = np.Inf
  123. miny = np.Inf
  124. maxx = -np.Inf
  125. maxy = -np.Inf
  126. for k in o:
  127. try:
  128. minx_, miny_, maxx_, maxy_ = bounds_rec(k)
  129. except Exception as e:
  130. log.debug("camlib.Gerber.bounds() --> %s" % str(e))
  131. return
  132. minx = min(minx, minx_)
  133. miny = min(miny, miny_)
  134. maxx = max(maxx, maxx_)
  135. maxy = max(maxy, maxy_)
  136. return minx, miny, maxx, maxy
  137. else:
  138. # it's a Shapely object, return it's bounds
  139. if 'solid' in o.geo:
  140. return o.geo['solid'].bounds
  141. return bounds_rec(obj)
  142. class FCShapeTool(DrawTool):
  143. """
  144. Abstract class for tools that create a shape.
  145. """
  146. def __init__(self, draw_app):
  147. DrawTool.__init__(self, draw_app)
  148. self.name = None
  149. def make(self):
  150. pass
  151. class FCPad(FCShapeTool):
  152. """
  153. Resulting type: Polygon
  154. """
  155. def __init__(self, draw_app):
  156. DrawTool.__init__(self, draw_app)
  157. self.name = 'pad'
  158. self.draw_app = draw_app
  159. try:
  160. QtGui.QGuiApplication.restoreOverrideCursor()
  161. except Exception:
  162. pass
  163. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_circle.png'))
  164. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  165. try:
  166. self.radius = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size']) / 2
  167. except KeyError:
  168. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  169. _("To add an Pad first select a aperture in Aperture Table"))
  170. try:
  171. QtGui.QGuiApplication.restoreOverrideCursor()
  172. except Exception:
  173. pass
  174. self.draw_app.in_action = False
  175. self.complete = True
  176. return
  177. if self.radius == 0:
  178. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  179. _("Aperture size is zero. It needs to be greater than zero."))
  180. self.dont_execute = True
  181. return
  182. else:
  183. self.dont_execute = False
  184. self.storage_obj = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry']
  185. self.steps_per_circ = self.draw_app.app.defaults["geometry_circle_steps"]
  186. # if those cause KeyError exception it means that the aperture type is not 'R'. Only 'R' type has those keys
  187. try:
  188. self.half_width = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['width']) / 2
  189. except KeyError:
  190. pass
  191. try:
  192. self.half_height = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['height']) / 2
  193. except KeyError:
  194. pass
  195. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  196. if isinstance(geo, DrawToolShape) and geo.geo is not None:
  197. self.draw_app.draw_utility_geometry(geo=geo)
  198. self.draw_app.app.inform.emit(_("Click to place ..."))
  199. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  200. # Switch notebook to Properties page
  201. self.draw_app.app.ui.notebook.setCurrentWidget(self.draw_app.app.ui.properties_tab)
  202. self.start_msg = _("Click to place ...")
  203. def click(self, point):
  204. self.make()
  205. return "Done."
  206. def utility_geometry(self, data=None):
  207. if self.dont_execute is True:
  208. self.draw_app.select_tool('select')
  209. return
  210. self.points = data
  211. geo_data = self.util_shape(data)
  212. if geo_data:
  213. return DrawToolUtilityShape(geo_data)
  214. else:
  215. return None
  216. def util_shape(self, point):
  217. # updating values here allows us to change the aperture on the fly, after the Tool has been started
  218. self.storage_obj = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry']
  219. self.radius = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size']) / 2
  220. self.steps_per_circ = self.draw_app.app.defaults["geometry_circle_steps"]
  221. # if those cause KeyError exception it means that the aperture type is not 'R'. Only 'R' type has those keys
  222. try:
  223. self.half_width = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['width']) / 2
  224. except KeyError:
  225. pass
  226. try:
  227. self.half_height = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['height']) / 2
  228. except KeyError:
  229. pass
  230. if point[0] is None and point[1] is None:
  231. point_x = self.draw_app.x
  232. point_y = self.draw_app.y
  233. else:
  234. point_x = point[0]
  235. point_y = point[1]
  236. ap_type = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['type']
  237. if ap_type == 'C':
  238. new_geo_el = {}
  239. center = Point([point_x, point_y])
  240. new_geo_el['solid'] = center.buffer(self.radius)
  241. new_geo_el['follow'] = center
  242. return new_geo_el
  243. elif ap_type == 'R':
  244. new_geo_el = {}
  245. p1 = (point_x - self.half_width, point_y - self.half_height)
  246. p2 = (point_x + self.half_width, point_y - self.half_height)
  247. p3 = (point_x + self.half_width, point_y + self.half_height)
  248. p4 = (point_x - self.half_width, point_y + self.half_height)
  249. center = Point([point_x, point_y])
  250. new_geo_el['solid'] = Polygon([p1, p2, p3, p4, p1])
  251. new_geo_el['follow'] = center
  252. return new_geo_el
  253. elif ap_type == 'O':
  254. geo = []
  255. new_geo_el = {}
  256. if self.half_height > self.half_width:
  257. p1 = (point_x - self.half_width, point_y - self.half_height + self.half_width)
  258. p2 = (point_x + self.half_width, point_y - self.half_height + self.half_width)
  259. p3 = (point_x + self.half_width, point_y + self.half_height - self.half_width)
  260. p4 = (point_x - self.half_width, point_y + self.half_height - self.half_width)
  261. down_center = [point_x, point_y - self.half_height + self.half_width]
  262. d_start_angle = np.pi
  263. d_stop_angle = 0.0
  264. down_arc = arc(down_center, self.half_width, d_start_angle, d_stop_angle, 'ccw', self.steps_per_circ)
  265. up_center = [point_x, point_y + self.half_height - self.half_width]
  266. u_start_angle = 0.0
  267. u_stop_angle = np.pi
  268. up_arc = arc(up_center, self.half_width, u_start_angle, u_stop_angle, 'ccw', self.steps_per_circ)
  269. geo.append(p1)
  270. for pt in down_arc:
  271. geo.append(pt)
  272. geo.append(p2)
  273. geo.append(p3)
  274. for pt in up_arc:
  275. geo.append(pt)
  276. geo.append(p4)
  277. new_geo_el['solid'] = Polygon(geo)
  278. center = Point([point_x, point_y])
  279. new_geo_el['follow'] = center
  280. return new_geo_el
  281. else:
  282. p1 = (point_x - self.half_width + self.half_height, point_y - self.half_height)
  283. p2 = (point_x + self.half_width - self.half_height, point_y - self.half_height)
  284. p3 = (point_x + self.half_width - self.half_height, point_y + self.half_height)
  285. p4 = (point_x - self.half_width + self.half_height, point_y + self.half_height)
  286. left_center = [point_x - self.half_width + self.half_height, point_y]
  287. d_start_angle = np.pi / 2
  288. d_stop_angle = 1.5 * np.pi
  289. left_arc = arc(left_center, self.half_height, d_start_angle, d_stop_angle, 'ccw', self.steps_per_circ)
  290. right_center = [point_x + self.half_width - self.half_height, point_y]
  291. u_start_angle = 1.5 * np.pi
  292. u_stop_angle = np.pi / 2
  293. right_arc = arc(right_center, self.half_height, u_start_angle, u_stop_angle, 'ccw', self.steps_per_circ)
  294. geo.append(p1)
  295. geo.append(p2)
  296. for pt in right_arc:
  297. geo.append(pt)
  298. geo.append(p3)
  299. geo.append(p4)
  300. for pt in left_arc:
  301. geo.append(pt)
  302. new_geo_el['solid'] = Polygon(geo)
  303. center = Point([point_x, point_y])
  304. new_geo_el['follow'] = center
  305. return new_geo_el
  306. else:
  307. self.draw_app.app.inform.emit(_(
  308. "Incompatible aperture type. Select an aperture with type 'C', 'R' or 'O'."))
  309. return None
  310. def make(self):
  311. self.draw_app.current_storage = self.storage_obj
  312. try:
  313. self.geometry = DrawToolShape(self.util_shape(self.points))
  314. except Exception as e:
  315. log.debug("FCPad.make() --> %s" % str(e))
  316. self.draw_app.in_action = False
  317. self.complete = True
  318. self.draw_app.app.inform.emit('[success] %s' % _("Done. Adding Pad completed."))
  319. self.draw_app.app.jump_signal.disconnect()
  320. def clean_up(self):
  321. self.draw_app.selected = []
  322. self.draw_app.apertures_table.clearSelection()
  323. self.draw_app.plot_all()
  324. try:
  325. self.draw_app.app.jump_signal.disconnect()
  326. except (TypeError, AttributeError):
  327. pass
  328. class FCPadArray(FCShapeTool):
  329. """
  330. Resulting type: MultiPolygon
  331. """
  332. def __init__(self, draw_app):
  333. DrawTool.__init__(self, draw_app)
  334. self.name = 'array'
  335. self.draw_app = draw_app
  336. try:
  337. self.radius = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size']) / 2
  338. except KeyError:
  339. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  340. _("To add an Pad Array first select a aperture in Aperture Table"))
  341. self.complete = True
  342. self.draw_app.in_action = False
  343. self.draw_app.array_frame.hide()
  344. return
  345. if self.radius == 0:
  346. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  347. _("Aperture size is zero. It needs to be greater than zero."))
  348. self.dont_execute = True
  349. return
  350. else:
  351. self.dont_execute = False
  352. try:
  353. QtGui.QGuiApplication.restoreOverrideCursor()
  354. except Exception:
  355. pass
  356. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_array.png'))
  357. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  358. self.storage_obj = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry']
  359. self.steps_per_circ = self.draw_app.app.defaults["geometry_circle_steps"]
  360. # if those cause KeyError exception it means that the aperture type is not 'R'. Only 'R' type has those keys
  361. try:
  362. self.half_width = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['width']) / 2
  363. except KeyError:
  364. pass
  365. try:
  366. self.half_height = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['height']) / 2
  367. except KeyError:
  368. pass
  369. self.draw_app.array_frame.show()
  370. self.selected_size = None
  371. self.pad_axis = 'X'
  372. self.pad_array = 'linear'
  373. self.pad_array_size = None
  374. self.pad_pitch = None
  375. self.pad_linear_angle = None
  376. self.pad_angle = None
  377. self.pad_direction = None
  378. self.pad_radius = None
  379. self.origin = None
  380. self.destination = None
  381. self.flag_for_circ_array = None
  382. self.last_dx = 0
  383. self.last_dy = 0
  384. self.pt = []
  385. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y), static=True)
  386. if isinstance(geo, DrawToolShape) and geo.geo is not None:
  387. self.draw_app.draw_utility_geometry(geo=geo)
  388. self.draw_app.app.inform.emit(_("Click on target location ..."))
  389. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  390. # Switch notebook to Properties page
  391. self.draw_app.app.ui.notebook.setCurrentWidget(self.draw_app.app.ui.properties_tab)
  392. def click(self, point):
  393. if self.pad_array == 'Linear':
  394. self.make()
  395. return
  396. else:
  397. if self.flag_for_circ_array is None:
  398. self.draw_app.in_action = True
  399. self.pt.append(point)
  400. self.flag_for_circ_array = True
  401. self.set_origin(point)
  402. self.draw_app.app.inform.emit(_("Click on the Pad Circular Array Start position"))
  403. else:
  404. self.destination = point
  405. self.make()
  406. self.flag_for_circ_array = None
  407. return
  408. def set_origin(self, origin):
  409. self.origin = origin
  410. def utility_geometry(self, data=None, static=None):
  411. if self.dont_execute is True:
  412. self.draw_app.select_tool('select')
  413. return
  414. self.pad_axis = self.draw_app.pad_axis_radio.get_value()
  415. self.pad_direction = self.draw_app.pad_direction_radio.get_value()
  416. self.pad_array = self.draw_app.array_type_combo.get_value()
  417. try:
  418. self.pad_array_size = int(self.draw_app.pad_array_size_entry.get_value())
  419. try:
  420. self.pad_pitch = float(self.draw_app.pad_pitch_entry.get_value())
  421. self.pad_linear_angle = float(self.draw_app.linear_angle_spinner.get_value())
  422. self.pad_angle = float(self.draw_app.pad_angle_entry.get_value())
  423. except TypeError:
  424. self.draw_app.app.inform.emit('[ERROR_NOTCL] %s' %
  425. _("The value is not Float. Check for comma instead of dot separator."))
  426. return
  427. except Exception:
  428. self.draw_app.app.inform.emit('[ERROR_NOTCL] %s' % _("The value is mistyped. Check the value."))
  429. return
  430. if self.pad_array == 'Linear':
  431. if data[0] is None and data[1] is None:
  432. dx = self.draw_app.x
  433. dy = self.draw_app.y
  434. else:
  435. dx = data[0]
  436. dy = data[1]
  437. geo_el_list = []
  438. geo_el = []
  439. self.points = [dx, dy]
  440. for item in range(self.pad_array_size):
  441. if self.pad_axis == 'X':
  442. geo_el = self.util_shape(((dx + (self.pad_pitch * item)), dy))
  443. if self.pad_axis == 'Y':
  444. geo_el = self.util_shape((dx, (dy + (self.pad_pitch * item))))
  445. if self.pad_axis == 'A':
  446. x_adj = self.pad_pitch * math.cos(math.radians(self.pad_linear_angle))
  447. y_adj = self.pad_pitch * math.sin(math.radians(self.pad_linear_angle))
  448. geo_el = self.util_shape(
  449. ((dx + (x_adj * item)), (dy + (y_adj * item)))
  450. )
  451. if static is None or static is False:
  452. new_geo_el = {}
  453. if 'solid' in geo_el:
  454. new_geo_el['solid'] = affinity.translate(
  455. geo_el['solid'], xoff=(dx - self.last_dx), yoff=(dy - self.last_dy)
  456. )
  457. if 'follow' in geo_el:
  458. new_geo_el['follow'] = affinity.translate(
  459. geo_el['follow'], xoff=(dx - self.last_dx), yoff=(dy - self.last_dy)
  460. )
  461. geo_el_list.append(new_geo_el)
  462. else:
  463. geo_el_list.append(geo_el)
  464. # self.origin = data
  465. self.last_dx = dx
  466. self.last_dy = dy
  467. return DrawToolUtilityShape(geo_el_list)
  468. else:
  469. if data[0] is None and data[1] is None:
  470. cdx = self.draw_app.x
  471. cdy = self.draw_app.y
  472. else:
  473. cdx = data[0]
  474. cdy = data[1]
  475. if len(self.pt) > 0:
  476. temp_points = [x for x in self.pt]
  477. temp_points.append([cdx, cdy])
  478. return DrawToolUtilityShape(LineString(temp_points))
  479. def util_shape(self, point):
  480. # updating values here allows us to change the aperture on the fly, after the Tool has been started
  481. self.storage_obj = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry']
  482. self.radius = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size']) / 2
  483. self.steps_per_circ = self.draw_app.app.defaults["geometry_circle_steps"]
  484. # if those cause KeyError exception it means that the aperture type is not 'R'. Only 'R' type has those keys
  485. try:
  486. self.half_width = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['width']) / 2
  487. except KeyError:
  488. pass
  489. try:
  490. self.half_height = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['height']) / 2
  491. except KeyError:
  492. pass
  493. if point[0] is None and point[1] is None:
  494. point_x = self.draw_app.x
  495. point_y = self.draw_app.y
  496. else:
  497. point_x = point[0]
  498. point_y = point[1]
  499. ap_type = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['type']
  500. if ap_type == 'C':
  501. new_geo_el = {}
  502. center = Point([point_x, point_y])
  503. new_geo_el['solid'] = center.buffer(self.radius)
  504. new_geo_el['follow'] = center
  505. return new_geo_el
  506. elif ap_type == 'R':
  507. new_geo_el = {}
  508. p1 = (point_x - self.half_width, point_y - self.half_height)
  509. p2 = (point_x + self.half_width, point_y - self.half_height)
  510. p3 = (point_x + self.half_width, point_y + self.half_height)
  511. p4 = (point_x - self.half_width, point_y + self.half_height)
  512. new_geo_el['solid'] = Polygon([p1, p2, p3, p4, p1])
  513. new_geo_el['follow'] = Point([point_x, point_y])
  514. return new_geo_el
  515. elif ap_type == 'O':
  516. geo = []
  517. new_geo_el = {}
  518. if self.half_height > self.half_width:
  519. p1 = (point_x - self.half_width, point_y - self.half_height + self.half_width)
  520. p2 = (point_x + self.half_width, point_y - self.half_height + self.half_width)
  521. p3 = (point_x + self.half_width, point_y + self.half_height - self.half_width)
  522. p4 = (point_x - self.half_width, point_y + self.half_height - self.half_width)
  523. down_center = [point_x, point_y - self.half_height + self.half_width]
  524. d_start_angle = np.pi
  525. d_stop_angle = 0.0
  526. down_arc = arc(down_center, self.half_width, d_start_angle, d_stop_angle, 'ccw', self.steps_per_circ)
  527. up_center = [point_x, point_y + self.half_height - self.half_width]
  528. u_start_angle = 0.0
  529. u_stop_angle = np.pi
  530. up_arc = arc(up_center, self.half_width, u_start_angle, u_stop_angle, 'ccw', self.steps_per_circ)
  531. geo.append(p1)
  532. for pt in down_arc:
  533. geo.append(pt)
  534. geo.append(p2)
  535. geo.append(p3)
  536. for pt in up_arc:
  537. geo.append(pt)
  538. geo.append(p4)
  539. new_geo_el['solid'] = Polygon(geo)
  540. center = Point([point_x, point_y])
  541. new_geo_el['follow'] = center
  542. return new_geo_el
  543. else:
  544. p1 = (point_x - self.half_width + self.half_height, point_y - self.half_height)
  545. p2 = (point_x + self.half_width - self.half_height, point_y - self.half_height)
  546. p3 = (point_x + self.half_width - self.half_height, point_y + self.half_height)
  547. p4 = (point_x - self.half_width + self.half_height, point_y + self.half_height)
  548. left_center = [point_x - self.half_width + self.half_height, point_y]
  549. d_start_angle = np.pi / 2
  550. d_stop_angle = 1.5 * np.pi
  551. left_arc = arc(left_center, self.half_height, d_start_angle, d_stop_angle, 'ccw', self.steps_per_circ)
  552. right_center = [point_x + self.half_width - self.half_height, point_y]
  553. u_start_angle = 1.5 * np.pi
  554. u_stop_angle = np.pi / 2
  555. right_arc = arc(right_center, self.half_height, u_start_angle, u_stop_angle, 'ccw', self.steps_per_circ)
  556. geo.append(p1)
  557. geo.append(p2)
  558. for pt in right_arc:
  559. geo.append(pt)
  560. geo.append(p3)
  561. geo.append(p4)
  562. for pt in left_arc:
  563. geo.append(pt)
  564. new_geo_el['solid'] = Polygon(geo)
  565. center = Point([point_x, point_y])
  566. new_geo_el['follow'] = center
  567. return new_geo_el
  568. else:
  569. self.draw_app.app.inform.emit(_(
  570. "Incompatible aperture type. Select an aperture with type 'C', 'R' or 'O'."))
  571. return None
  572. def make(self):
  573. self.geometry = []
  574. geo = None
  575. self.draw_app.current_storage = self.storage_obj
  576. if self.pad_array == 'Linear':
  577. for item in range(self.pad_array_size):
  578. if self.pad_axis == 'X':
  579. geo = self.util_shape(((self.points[0] + (self.pad_pitch * item)), self.points[1]))
  580. if self.pad_axis == 'Y':
  581. geo = self.util_shape((self.points[0], (self.points[1] + (self.pad_pitch * item))))
  582. if self.pad_axis == 'A':
  583. x_adj = self.pad_pitch * math.cos(math.radians(self.pad_linear_angle))
  584. y_adj = self.pad_pitch * math.sin(math.radians(self.pad_linear_angle))
  585. geo = self.util_shape(
  586. ((self.points[0] + (x_adj * item)), (self.points[1] + (y_adj * item)))
  587. )
  588. self.geometry.append(DrawToolShape(geo))
  589. else:
  590. if (self.pad_angle * self.pad_array_size) > 360:
  591. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  592. _("Too many Pads for the selected spacing angle."))
  593. return
  594. radius = distance(self.destination, self.origin)
  595. initial_angle = math.asin((self.destination[1] - self.origin[1]) / radius)
  596. for i in range(self.pad_array_size):
  597. angle_radians = math.radians(self.pad_angle * i)
  598. if self.pad_direction == 'CW':
  599. x = self.origin[0] + radius * math.cos(-angle_radians + initial_angle)
  600. y = self.origin[1] + radius * math.sin(-angle_radians + initial_angle)
  601. else:
  602. x = self.origin[0] + radius * math.cos(angle_radians + initial_angle)
  603. y = self.origin[1] + radius * math.sin(angle_radians + initial_angle)
  604. geo = self.util_shape((x, y))
  605. if self.pad_direction == 'CW':
  606. geo = affinity.rotate(geo, angle=(math.pi - angle_radians), use_radians=True)
  607. else:
  608. geo = affinity.rotate(geo, angle=(angle_radians - math.pi), use_radians=True)
  609. self.geometry.append(DrawToolShape(geo))
  610. self.complete = True
  611. self.draw_app.app.inform.emit('[success] %s' %
  612. _("Done. Pad Array added."))
  613. self.draw_app.in_action = False
  614. self.draw_app.array_frame.hide()
  615. self.draw_app.app.jump_signal.disconnect()
  616. def clean_up(self):
  617. self.draw_app.selected = []
  618. self.draw_app.apertures_table.clearSelection()
  619. self.draw_app.plot_all()
  620. try:
  621. self.draw_app.app.jump_signal.disconnect()
  622. except (TypeError, AttributeError):
  623. pass
  624. class FCPoligonize(FCShapeTool):
  625. """
  626. Resulting type: Polygon
  627. """
  628. def __init__(self, draw_app):
  629. DrawTool.__init__(self, draw_app)
  630. self.name = 'poligonize'
  631. self.draw_app = draw_app
  632. self.draw_app.app.inform.emit(_("Select shape(s) and then click ..."))
  633. self.draw_app.in_action = True
  634. self.make()
  635. def click(self, point):
  636. return ""
  637. def make(self):
  638. if not self.draw_app.selected:
  639. self.draw_app.in_action = False
  640. self.complete = True
  641. self.draw_app.app.inform.emit('[ERROR_NOTCL] %s' %
  642. _("Failed. Nothing selected."))
  643. self.draw_app.select_tool("select")
  644. return
  645. apcode_set = set()
  646. for elem in self.draw_app.selected:
  647. for apcode in self.draw_app.storage_dict:
  648. if 'geometry' in self.draw_app.storage_dict[apcode]:
  649. if elem in self.draw_app.storage_dict[apcode]['geometry']:
  650. apcode_set.add(apcode)
  651. break
  652. if len(apcode_set) > 1:
  653. self.draw_app.in_action = False
  654. self.complete = True
  655. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s' %
  656. _("Failed. Poligonize works only on geometries belonging "
  657. "to the same aperture."))
  658. self.draw_app.select_tool("select")
  659. return
  660. # exterior_geo = [Polygon(sh.geo.exterior) for sh in self.draw_app.selected]
  661. exterior_geo = []
  662. for geo_shape in self.draw_app.selected:
  663. geometric_data = geo_shape.geo
  664. if 'solid' in geometric_data:
  665. exterior_geo.append(Polygon(geometric_data['solid'].exterior))
  666. fused_geo = MultiPolygon(exterior_geo)
  667. fused_geo = fused_geo.buffer(0.0000001)
  668. current_storage = self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry']
  669. if isinstance(fused_geo, MultiPolygon):
  670. for geo in fused_geo:
  671. # clean-up the geo
  672. geo = geo.buffer(0)
  673. if len(geo.interiors) == 0:
  674. try:
  675. current_storage = self.draw_app.storage_dict['0']['geometry']
  676. except KeyError:
  677. self.draw_app.on_aperture_add(apcode='0')
  678. current_storage = self.draw_app.storage_dict['0']['geometry']
  679. new_el = {}
  680. new_el['solid'] = geo
  681. new_el['follow'] = geo.exterior
  682. self.draw_app.on_grb_shape_complete(current_storage, specific_shape=DrawToolShape(deepcopy(new_el)))
  683. else:
  684. # clean-up the geo
  685. fused_geo = fused_geo.buffer(0)
  686. if len(fused_geo.interiors) == 0 and len(exterior_geo) == 1:
  687. try:
  688. current_storage = self.draw_app.storage_dict['0']['geometry']
  689. except KeyError:
  690. self.draw_app.on_aperture_add(apcode='0')
  691. current_storage = self.draw_app.storage_dict['0']['geometry']
  692. new_el = {}
  693. new_el['solid'] = fused_geo
  694. new_el['follow'] = fused_geo.exterior
  695. self.draw_app.on_grb_shape_complete(current_storage, specific_shape=DrawToolShape(deepcopy(new_el)))
  696. self.draw_app.delete_selected()
  697. self.draw_app.plot_all()
  698. self.draw_app.in_action = False
  699. self.complete = True
  700. self.draw_app.app.inform.emit('[success] %s' %
  701. _("Done. Poligonize completed."))
  702. # MS: always return to the Select Tool if modifier key is not pressed
  703. # else return to the current tool
  704. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  705. if self.draw_app.app.defaults["global_mselect_key"] == 'Control':
  706. modifier_to_use = Qt.ControlModifier
  707. else:
  708. modifier_to_use = Qt.ShiftModifier
  709. # if modifier key is pressed then we add to the selected list the current shape but if it's already
  710. # in the selected list, we removed it. Therefore first click selects, second deselects.
  711. if key_modifier == modifier_to_use:
  712. self.draw_app.select_tool(self.draw_app.active_tool.name)
  713. else:
  714. self.draw_app.select_tool("select")
  715. return
  716. def clean_up(self):
  717. self.draw_app.selected = []
  718. self.draw_app.apertures_table.clearSelection()
  719. self.draw_app.plot_all()
  720. class FCRegion(FCShapeTool):
  721. """
  722. Resulting type: Polygon
  723. """
  724. def __init__(self, draw_app):
  725. DrawTool.__init__(self, draw_app)
  726. self.name = 'region'
  727. self.draw_app = draw_app
  728. self.steps_per_circle = self.draw_app.app.defaults["gerber_circle_steps"]
  729. size_ap = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size'])
  730. self.buf_val = (size_ap / 2) if size_ap > 0 else 0.0000001
  731. self.gridx_size = float(self.draw_app.app.ui.grid_gap_x_entry.get_value())
  732. self.gridy_size = float(self.draw_app.app.ui.grid_gap_y_entry.get_value())
  733. self.temp_points = []
  734. # this will store the inflexion point in the geometry
  735. self.inter_point = None
  736. try:
  737. QtGui.QGuiApplication.restoreOverrideCursor()
  738. except Exception as e:
  739. log.debug("AppGerberEditor.FCRegion --> %s" % str(e))
  740. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero.png'))
  741. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  742. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  743. self.draw_app.app.inform.emit(_('Corner Mode 1: 45 degrees ...'))
  744. self.start_msg = _("Click on 1st point ...")
  745. def click(self, point):
  746. self.draw_app.in_action = True
  747. if self.inter_point is not None:
  748. self.points.append(self.inter_point)
  749. self.points.append(point)
  750. if len(self.points) > 0:
  751. self.draw_app.app.inform.emit(_("Click on next Point or click Right mouse button to complete ..."))
  752. return "Click on next point or hit ENTER to complete ..."
  753. return ""
  754. def update_grid_info(self):
  755. self.gridx_size = float(self.draw_app.app.ui.grid_gap_x_entry.get_value())
  756. self.gridy_size = float(self.draw_app.app.ui.grid_gap_y_entry.get_value())
  757. def utility_geometry(self, data=None):
  758. new_geo_el = {}
  759. x = data[0]
  760. y = data[1]
  761. if len(self.points) == 0:
  762. new_geo_el['solid'] = Point(data).buffer(self.buf_val, resolution=int(self.steps_per_circle / 4))
  763. return DrawToolUtilityShape(new_geo_el)
  764. if len(self.points) == 1:
  765. self.temp_points = [x for x in self.points]
  766. old_x = self.points[0][0]
  767. old_y = self.points[0][1]
  768. mx = abs(round((x - old_x) / self.gridx_size))
  769. my = abs(round((y - old_y) / self.gridy_size))
  770. if mx and my:
  771. if self.draw_app.app.ui.grid_snap_btn.isChecked():
  772. if self.draw_app.bend_mode != 5:
  773. if self.draw_app.bend_mode == 1:
  774. if x > old_x:
  775. if mx > my:
  776. self.inter_point = (old_x + self.gridx_size * (mx - my), old_y)
  777. if mx < my:
  778. if y < old_y:
  779. self.inter_point = (old_x, old_y - self.gridy_size * (my - mx))
  780. else:
  781. self.inter_point = (old_x, old_y - self.gridy_size * (mx - my))
  782. if x < old_x:
  783. if mx > my:
  784. self.inter_point = (old_x - self.gridx_size * (mx - my), old_y)
  785. if mx < my:
  786. if y < old_y:
  787. self.inter_point = (old_x, old_y - self.gridy_size * (my - mx))
  788. else:
  789. self.inter_point = (old_x, old_y - self.gridy_size * (mx - my))
  790. elif self.draw_app.bend_mode == 2:
  791. if x > old_x:
  792. if mx > my:
  793. self.inter_point = (old_x + self.gridx_size * my, y)
  794. if mx < my:
  795. if y < old_y:
  796. self.inter_point = (x, old_y - self.gridy_size * mx)
  797. else:
  798. self.inter_point = (x, old_y + self.gridy_size * mx)
  799. if x < old_x:
  800. if mx > my:
  801. self.inter_point = (old_x - self.gridx_size * my, y)
  802. if mx < my:
  803. if y < old_y:
  804. self.inter_point = (x, old_y - self.gridy_size * mx)
  805. else:
  806. self.inter_point = (x, old_y + self.gridy_size * mx)
  807. elif self.draw_app.bend_mode == 3:
  808. self.inter_point = (x, old_y)
  809. elif self.draw_app.bend_mode == 4:
  810. self.inter_point = (old_x, y)
  811. if self.inter_point is not None:
  812. self.temp_points.append(self.inter_point)
  813. else:
  814. self.inter_point = data
  815. else:
  816. self.inter_point = data
  817. self.temp_points.append(data)
  818. new_geo_el = {}
  819. if len(self.temp_points) > 1:
  820. try:
  821. new_geo_el['solid'] = LineString(self.temp_points).buffer(self.buf_val,
  822. resolution=int(self.steps_per_circle / 4),
  823. join_style=1)
  824. return DrawToolUtilityShape(new_geo_el)
  825. except Exception as e:
  826. log.debug("AppGerberEditor.FCRegion.utility_geometry() --> %s" % str(e))
  827. else:
  828. new_geo_el['solid'] = Point(self.temp_points).buffer(self.buf_val,
  829. resolution=int(self.steps_per_circle / 4))
  830. return DrawToolUtilityShape(new_geo_el)
  831. if len(self.points) > 2:
  832. self.temp_points = [x for x in self.points]
  833. old_x = self.points[-1][0]
  834. old_y = self.points[-1][1]
  835. mx = abs(round((x - old_x) / self.gridx_size))
  836. my = abs(round((y - old_y) / self.gridy_size))
  837. if mx and my:
  838. if self.draw_app.app.ui.grid_snap_btn.isChecked():
  839. if self.draw_app.bend_mode != 5:
  840. if self.draw_app.bend_mode == 1:
  841. if x > old_x:
  842. if mx > my:
  843. self.inter_point = (old_x + self.gridx_size * (mx - my), old_y)
  844. if mx < my:
  845. if y < old_y:
  846. self.inter_point = (old_x, old_y - self.gridy_size * (my - mx))
  847. else:
  848. self.inter_point = (old_x, old_y - self.gridy_size * (mx - my))
  849. if x < old_x:
  850. if mx > my:
  851. self.inter_point = (old_x - self.gridx_size * (mx - my), old_y)
  852. if mx < my:
  853. if y < old_y:
  854. self.inter_point = (old_x, old_y - self.gridy_size * (my - mx))
  855. else:
  856. self.inter_point = (old_x, old_y - self.gridy_size * (mx - my))
  857. elif self.draw_app.bend_mode == 2:
  858. if x > old_x:
  859. if mx > my:
  860. self.inter_point = (old_x + self.gridx_size * my, y)
  861. if mx < my:
  862. if y < old_y:
  863. self.inter_point = (x, old_y - self.gridy_size * mx)
  864. else:
  865. self.inter_point = (x, old_y + self.gridy_size * mx)
  866. if x < old_x:
  867. if mx > my:
  868. self.inter_point = (old_x - self.gridx_size * my, y)
  869. if mx < my:
  870. if y < old_y:
  871. self.inter_point = (x, old_y - self.gridy_size * mx)
  872. else:
  873. self.inter_point = (x, old_y + self.gridy_size * mx)
  874. elif self.draw_app.bend_mode == 3:
  875. self.inter_point = (x, old_y)
  876. elif self.draw_app.bend_mode == 4:
  877. self.inter_point = (old_x, y)
  878. self.temp_points.append(self.inter_point)
  879. self.temp_points.append(data)
  880. new_geo_el = {}
  881. new_geo_el['solid'] = LinearRing(self.temp_points).buffer(self.buf_val,
  882. resolution=int(self.steps_per_circle / 4),
  883. join_style=1)
  884. new_geo_el['follow'] = LinearRing(self.temp_points)
  885. return DrawToolUtilityShape(new_geo_el)
  886. return None
  887. def make(self):
  888. # self.geometry = LinearRing(self.points)
  889. if len(self.points) > 2:
  890. # regions are added always in the '0' aperture
  891. if '0' not in self.draw_app.storage_dict:
  892. self.draw_app.on_aperture_add(apcode='0')
  893. else:
  894. self.draw_app.last_aperture_selected = '0'
  895. new_geo_el = {}
  896. new_geo_el['solid'] = Polygon(self.points).buffer(self.buf_val,
  897. resolution=int(self.steps_per_circle / 4),
  898. join_style=2)
  899. new_geo_el['follow'] = Polygon(self.points).exterior
  900. self.geometry = DrawToolShape(new_geo_el)
  901. self.draw_app.in_action = False
  902. self.complete = True
  903. self.draw_app.app.jump_signal.disconnect()
  904. self.draw_app.app.inform.emit('[success] %s' % _("Done."))
  905. def on_key(self, key):
  906. # Jump to coords
  907. if key == QtCore.Qt.Key_J or key == 'J':
  908. self.draw_app.app.on_jump_to()
  909. if key == 'Backspace' or key == QtCore.Qt.Key_Backspace:
  910. if len(self.points) > 0:
  911. if self.draw_app.bend_mode == 5:
  912. self.points = self.points[0:-1]
  913. else:
  914. self.points = self.points[0:-2]
  915. # Remove any previous utility shape
  916. self.draw_app.tool_shape.clear(update=False)
  917. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  918. self.draw_app.draw_utility_geometry(geo=geo)
  919. return _("Backtracked one point ...")
  920. if key == 'T' or key == QtCore.Qt.Key_T:
  921. if self.draw_app.bend_mode == 1:
  922. self.draw_app.bend_mode = 2
  923. msg = _('Corner Mode 2: Reverse 45 degrees ...')
  924. elif self.draw_app.bend_mode == 2:
  925. self.draw_app.bend_mode = 3
  926. msg = _('Corner Mode 3: 90 degrees ...')
  927. elif self.draw_app.bend_mode == 3:
  928. self.draw_app.bend_mode = 4
  929. msg = _('Corner Mode 4: Reverse 90 degrees ...')
  930. elif self.draw_app.bend_mode == 4:
  931. self.draw_app.bend_mode = 5
  932. msg = _('Corner Mode 5: Free angle ...')
  933. else:
  934. self.draw_app.bend_mode = 1
  935. msg = _('Corner Mode 1: 45 degrees ...')
  936. # Remove any previous utility shape
  937. self.draw_app.tool_shape.clear(update=False)
  938. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  939. self.draw_app.draw_utility_geometry(geo=geo)
  940. return msg
  941. if key == 'R' or key == QtCore.Qt.Key_R:
  942. if self.draw_app.bend_mode == 1:
  943. self.draw_app.bend_mode = 5
  944. msg = _('Corner Mode 5: Free angle ...')
  945. elif self.draw_app.bend_mode == 5:
  946. self.draw_app.bend_mode = 4
  947. msg = _('Corner Mode 4: Reverse 90 degrees ...')
  948. elif self.draw_app.bend_mode == 4:
  949. self.draw_app.bend_mode = 3
  950. msg = _('Corner Mode 3: 90 degrees ...')
  951. elif self.draw_app.bend_mode == 3:
  952. self.draw_app.bend_mode = 2
  953. msg = _('Corner Mode 2: Reverse 45 degrees ...')
  954. else:
  955. self.draw_app.bend_mode = 1
  956. msg = _('Corner Mode 1: 45 degrees ...')
  957. # Remove any previous utility shape
  958. self.draw_app.tool_shape.clear(update=False)
  959. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  960. self.draw_app.draw_utility_geometry(geo=geo)
  961. return msg
  962. def clean_up(self):
  963. self.draw_app.selected = []
  964. self.draw_app.apertures_table.clearSelection()
  965. self.draw_app.plot_all()
  966. try:
  967. self.draw_app.app.jump_signal.disconnect()
  968. except (TypeError, AttributeError):
  969. pass
  970. class FCTrack(FCShapeTool):
  971. """
  972. Resulting type: Polygon
  973. """
  974. def __init__(self, draw_app):
  975. DrawTool.__init__(self, draw_app)
  976. self.name = 'track'
  977. self.draw_app = draw_app
  978. self.steps_per_circle = self.draw_app.app.defaults["gerber_circle_steps"]
  979. size_ap = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size'])
  980. self.buf_val = (size_ap / 2) if size_ap > 0 else 0.0000001
  981. self.gridx_size = float(self.draw_app.app.ui.grid_gap_x_entry.get_value())
  982. self.gridy_size = float(self.draw_app.app.ui.grid_gap_y_entry.get_value())
  983. self.temp_points = []
  984. self. final_click = False
  985. try:
  986. QtGui.QGuiApplication.restoreOverrideCursor()
  987. except Exception as e:
  988. log.debug("AppGerberEditor.FCTrack.__init__() --> %s" % str(e))
  989. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location +
  990. '/aero_path%s.png' % self.draw_app.bend_mode))
  991. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  992. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  993. self.draw_app.app.inform.emit(_('Track Mode 1: 45 degrees ...'))
  994. def click(self, point):
  995. self.draw_app.in_action = True
  996. if not self.points:
  997. self.points.append(point)
  998. elif point != self.points[-1]:
  999. self.points.append(point)
  1000. else:
  1001. return
  1002. new_geo_el = {}
  1003. if len(self.temp_points) == 1:
  1004. new_geo_el['solid'] = Point(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1005. new_geo_el['follow'] = Point(self.temp_points)
  1006. else:
  1007. new_geo_el['solid'] = LineString(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1008. new_geo_el['follow'] = LineString(self.temp_points)
  1009. self.draw_app.add_gerber_shape(DrawToolShape(new_geo_el),
  1010. self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['geometry'])
  1011. self.draw_app.plot_all()
  1012. if len(self.points) > 0:
  1013. self.draw_app.app.inform.emit(_("Click on next Point or click Right mouse button to complete ..."))
  1014. return "Click on next point or hit ENTER to complete ..."
  1015. return ""
  1016. def update_grid_info(self):
  1017. self.gridx_size = float(self.draw_app.app.ui.grid_gap_x_entry.get_value())
  1018. self.gridy_size = float(self.draw_app.app.ui.grid_gap_y_entry.get_value())
  1019. def utility_geometry(self, data=None):
  1020. self.update_grid_info()
  1021. new_geo_el = {}
  1022. if not self.points:
  1023. new_geo_el['solid'] = Point(data).buffer(self.buf_val, int(self.steps_per_circle))
  1024. return DrawToolUtilityShape(new_geo_el)
  1025. else:
  1026. old_x = self.points[-1][0]
  1027. old_y = self.points[-1][1]
  1028. x = data[0]
  1029. y = data[1]
  1030. self.temp_points = [self.points[-1]]
  1031. mx = abs(round((x - old_x) / self.gridx_size))
  1032. my = abs(round((y - old_y) / self.gridy_size))
  1033. if self.draw_app.app.ui.grid_snap_btn.isChecked():
  1034. if self.draw_app.bend_mode == 1:
  1035. if x > old_x:
  1036. if mx > my:
  1037. self.temp_points.append((old_x + self.gridx_size*(mx-my), old_y))
  1038. if mx < my:
  1039. if y < old_y:
  1040. self.temp_points.append((old_x, old_y - self.gridy_size * (my-mx)))
  1041. else:
  1042. self.temp_points.append((old_x, old_y - self.gridy_size * (mx-my)))
  1043. if x < old_x:
  1044. if mx > my:
  1045. self.temp_points.append((old_x - self.gridx_size*(mx-my), old_y))
  1046. if mx < my:
  1047. if y < old_y:
  1048. self.temp_points.append((old_x, old_y - self.gridy_size * (my-mx)))
  1049. else:
  1050. self.temp_points.append((old_x, old_y - self.gridy_size * (mx-my)))
  1051. elif self.draw_app.bend_mode == 2:
  1052. if x > old_x:
  1053. if mx > my:
  1054. self.temp_points.append((old_x + self.gridx_size*my, y))
  1055. if mx < my:
  1056. if y < old_y:
  1057. self.temp_points.append((x, old_y - self.gridy_size * mx))
  1058. else:
  1059. self.temp_points.append((x, old_y + self.gridy_size * mx))
  1060. if x < old_x:
  1061. if mx > my:
  1062. self.temp_points.append((old_x - self.gridx_size * my, y))
  1063. if mx < my:
  1064. if y < old_y:
  1065. self.temp_points.append((x, old_y - self.gridy_size * mx))
  1066. else:
  1067. self.temp_points.append((x, old_y + self.gridy_size * mx))
  1068. elif self.draw_app.bend_mode == 3:
  1069. self.temp_points.append((x, old_y))
  1070. elif self.draw_app.bend_mode == 4:
  1071. self.temp_points.append((old_x, y))
  1072. else:
  1073. pass
  1074. self.temp_points.append(data)
  1075. if len(self.temp_points) == 1:
  1076. new_geo_el['solid'] = Point(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1077. return DrawToolUtilityShape(new_geo_el)
  1078. new_geo_el['solid'] = LineString(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1079. return DrawToolUtilityShape(new_geo_el)
  1080. def make(self):
  1081. new_geo_el = {}
  1082. if len(self.temp_points) == 1:
  1083. new_geo_el['solid'] = Point(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1084. new_geo_el['follow'] = Point(self.temp_points)
  1085. else:
  1086. new_geo_el['solid'] = LineString(self.temp_points).buffer(self.buf_val, int(self.steps_per_circle))
  1087. new_geo_el['solid'] = new_geo_el['solid'].buffer(0) # try to clean the geometry
  1088. new_geo_el['follow'] = LineString(self.temp_points)
  1089. self.geometry = DrawToolShape(new_geo_el)
  1090. self.draw_app.in_action = False
  1091. self.complete = True
  1092. self.draw_app.app.jump_signal.disconnect()
  1093. self.draw_app.app.inform.emit('[success] %s' % _("Done."))
  1094. def on_key(self, key):
  1095. if key == 'Backspace' or key == QtCore.Qt.Key_Backspace:
  1096. if len(self.points) > 0:
  1097. self.temp_points = self.points[0:-1]
  1098. # Remove any previous utility shape
  1099. self.draw_app.tool_shape.clear(update=False)
  1100. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  1101. self.draw_app.draw_utility_geometry(geo=geo)
  1102. return _("Backtracked one point ...")
  1103. # Jump to coords
  1104. if key == QtCore.Qt.Key_J or key == 'J':
  1105. self.draw_app.app.on_jump_to()
  1106. if key == 'T' or key == QtCore.Qt.Key_T:
  1107. try:
  1108. QtGui.QGuiApplication.restoreOverrideCursor()
  1109. except Exception as e:
  1110. log.debug("AppGerberEditor.FCTrack.on_key() --> %s" % str(e))
  1111. if self.draw_app.bend_mode == 1:
  1112. self.draw_app.bend_mode = 2
  1113. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path2.png'))
  1114. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1115. msg = _('Track Mode 2: Reverse 45 degrees ...')
  1116. elif self.draw_app.bend_mode == 2:
  1117. self.draw_app.bend_mode = 3
  1118. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path3.png'))
  1119. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1120. msg = _('Track Mode 3: 90 degrees ...')
  1121. elif self.draw_app.bend_mode == 3:
  1122. self.draw_app.bend_mode = 4
  1123. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path4.png'))
  1124. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1125. msg = _('Track Mode 4: Reverse 90 degrees ...')
  1126. elif self.draw_app.bend_mode == 4:
  1127. self.draw_app.bend_mode = 5
  1128. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path5.png'))
  1129. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1130. msg = _('Track Mode 5: Free angle ...')
  1131. else:
  1132. self.draw_app.bend_mode = 1
  1133. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path1.png'))
  1134. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1135. msg = _('Track Mode 1: 45 degrees ...')
  1136. # Remove any previous utility shape
  1137. self.draw_app.tool_shape.clear(update=False)
  1138. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  1139. self.draw_app.draw_utility_geometry(geo=geo)
  1140. return msg
  1141. if key == 'R' or key == QtCore.Qt.Key_R:
  1142. try:
  1143. QtGui.QGuiApplication.restoreOverrideCursor()
  1144. except Exception as e:
  1145. log.debug("AppGerberEditor.FCTrack.on_key() --> %s" % str(e))
  1146. if self.draw_app.bend_mode == 1:
  1147. self.draw_app.bend_mode = 5
  1148. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path5.png'))
  1149. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1150. msg = _('Track Mode 5: Free angle ...')
  1151. elif self.draw_app.bend_mode == 5:
  1152. self.draw_app.bend_mode = 4
  1153. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path4.png'))
  1154. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1155. msg = _('Track Mode 4: Reverse 90 degrees ...')
  1156. elif self.draw_app.bend_mode == 4:
  1157. self.draw_app.bend_mode = 3
  1158. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path3.png'))
  1159. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1160. msg = _('Track Mode 3: 90 degrees ...')
  1161. elif self.draw_app.bend_mode == 3:
  1162. self.draw_app.bend_mode = 2
  1163. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path2.png'))
  1164. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1165. msg = _('Track Mode 2: Reverse 45 degrees ...')
  1166. else:
  1167. self.draw_app.bend_mode = 1
  1168. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_path1.png'))
  1169. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1170. msg = _('Track Mode 1: 45 degrees ...')
  1171. # Remove any previous utility shape
  1172. self.draw_app.tool_shape.clear(update=False)
  1173. geo = self.utility_geometry(data=(self.draw_app.snap_x, self.draw_app.snap_y))
  1174. self.draw_app.draw_utility_geometry(geo=geo)
  1175. return msg
  1176. def clean_up(self):
  1177. self.draw_app.selected = []
  1178. self.draw_app.apertures_table.clearSelection()
  1179. self.draw_app.plot_all()
  1180. try:
  1181. self.draw_app.app.jump_signal.disconnect()
  1182. except (TypeError, AttributeError):
  1183. pass
  1184. class FCDisc(FCShapeTool):
  1185. """
  1186. Resulting type: Polygon
  1187. """
  1188. def __init__(self, draw_app):
  1189. DrawTool.__init__(self, draw_app)
  1190. self.name = 'disc'
  1191. try:
  1192. QtGui.QGuiApplication.restoreOverrideCursor()
  1193. except Exception:
  1194. pass
  1195. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_disc.png'))
  1196. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1197. size_ap = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size'])
  1198. self.buf_val = (size_ap / 2) if size_ap > 0 else 0.0000001
  1199. if '0' in self.draw_app.storage_dict:
  1200. self.storage_obj = self.draw_app.storage_dict['0']['geometry']
  1201. else:
  1202. self.draw_app.storage_dict['0'] = {}
  1203. self.draw_app.storage_dict['0']['type'] = 'C'
  1204. self.draw_app.storage_dict['0']['size'] = 0.0
  1205. self.draw_app.storage_dict['0']['geometry'] = []
  1206. self.storage_obj = self.draw_app.storage_dict['0']['geometry']
  1207. self.draw_app.app.inform.emit(_("Click on Center point ..."))
  1208. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  1209. self.steps_per_circ = self.draw_app.app.defaults["gerber_circle_steps"]
  1210. def click(self, point):
  1211. self.points.append(point)
  1212. if len(self.points) == 1:
  1213. self.draw_app.app.inform.emit(_("Click on Perimeter point to complete ..."))
  1214. return "Click on Perimeter to complete ..."
  1215. if len(self.points) == 2:
  1216. self.make()
  1217. return "Done."
  1218. return ""
  1219. def utility_geometry(self, data=None):
  1220. new_geo_el = {}
  1221. if len(self.points) == 1:
  1222. p1 = self.points[0]
  1223. p2 = data
  1224. radius = math.sqrt((p1[0] - p2[0]) ** 2 + (p1[1] - p2[1]) ** 2)
  1225. new_geo_el['solid'] = Point(p1).buffer((radius + self.buf_val / 2), int(self.steps_per_circ / 4))
  1226. return DrawToolUtilityShape(new_geo_el)
  1227. return None
  1228. def make(self):
  1229. new_geo_el = {}
  1230. try:
  1231. QtGui.QGuiApplication.restoreOverrideCursor()
  1232. except Exception as e:
  1233. log.debug("AppGerberEditor.FCDisc --> %s" % str(e))
  1234. self.draw_app.current_storage = self.storage_obj
  1235. p1 = self.points[0]
  1236. p2 = self.points[1]
  1237. radius = distance(p1, p2)
  1238. new_geo_el['solid'] = Point(p1).buffer((radius + self.buf_val / 2), int(self.steps_per_circ / 4))
  1239. new_geo_el['follow'] = Point(p1).buffer((radius + self.buf_val / 2), int(self.steps_per_circ / 4)).exterior
  1240. self.geometry = DrawToolShape(new_geo_el)
  1241. self.draw_app.in_action = False
  1242. self.complete = True
  1243. self.draw_app.app.jump_signal.disconnect()
  1244. self.draw_app.app.inform.emit('[success] %s' % _("Done."))
  1245. def clean_up(self):
  1246. self.draw_app.selected = []
  1247. self.draw_app.apertures_table.clearSelection()
  1248. self.draw_app.plot_all()
  1249. try:
  1250. self.draw_app.app.jump_signal.disconnect()
  1251. except (TypeError, AttributeError):
  1252. pass
  1253. class FCSemiDisc(FCShapeTool):
  1254. def __init__(self, draw_app):
  1255. DrawTool.__init__(self, draw_app)
  1256. self.name = 'semidisc'
  1257. try:
  1258. QtGui.QGuiApplication.restoreOverrideCursor()
  1259. except Exception as e:
  1260. log.debug("AppGerberEditor.FCSemiDisc --> %s" % str(e))
  1261. self.cursor = QtGui.QCursor(QtGui.QPixmap(self.draw_app.app.resource_location + '/aero_semidisc.png'))
  1262. QtGui.QGuiApplication.setOverrideCursor(self.cursor)
  1263. self.draw_app.app.inform.emit(_("Click on Center point ..."))
  1264. # Direction of rotation between point 1 and 2.
  1265. # 'cw' or 'ccw'. Switch direction by hitting the
  1266. # 'o' key.
  1267. self.direction = "cw"
  1268. # Mode
  1269. # C12 = Center, p1, p2
  1270. # 12C = p1, p2, Center
  1271. # 132 = p1, p3, p2
  1272. self.mode = "c12" # Center, p1, p2
  1273. size_ap = float(self.draw_app.storage_dict[self.draw_app.last_aperture_selected]['size'])
  1274. self.buf_val = (size_ap / 2) if size_ap > 0 else 0.0000001
  1275. if '0' in self.draw_app.storage_dict:
  1276. self.storage_obj = self.draw_app.storage_dict['0']['geometry']
  1277. else:
  1278. self.draw_app.storage_dict['0'] = {}
  1279. self.draw_app.storage_dict['0']['type'] = 'C'
  1280. self.draw_app.storage_dict['0']['size'] = 0.0
  1281. self.draw_app.storage_dict['0']['geometry'] = []
  1282. self.storage_obj = self.draw_app.storage_dict['0']['geometry']
  1283. self.steps_per_circ = self.draw_app.app.defaults["gerber_circle_steps"]
  1284. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  1285. def click(self, point):
  1286. self.points.append(point)
  1287. if len(self.points) == 1:
  1288. if self.mode == 'c12':
  1289. self.draw_app.app.inform.emit(_("Click on Start point ..."))
  1290. elif self.mode == '132':
  1291. self.draw_app.app.inform.emit(_("Click on Point3 ..."))
  1292. else:
  1293. self.draw_app.app.inform.emit(_("Click on Stop point ..."))
  1294. return "Click on 1st point ..."
  1295. if len(self.points) == 2:
  1296. if self.mode == 'c12':
  1297. self.draw_app.app.inform.emit(_("Click on Stop point to complete ..."))
  1298. elif self.mode == '132':
  1299. self.draw_app.app.inform.emit(_("Click on Point2 to complete ..."))
  1300. else:
  1301. self.draw_app.app.inform.emit(_("Click on Center point to complete ..."))
  1302. return "Click on 2nd point to complete ..."
  1303. if len(self.points) == 3:
  1304. self.make()
  1305. return "Done."
  1306. return ""
  1307. def on_key(self, key):
  1308. if key == 'D' or key == QtCore.Qt.Key_D:
  1309. self.direction = 'cw' if self.direction == 'ccw' else 'ccw'
  1310. return '%s: %s' % (_('Direction'), self.direction.upper())
  1311. # Jump to coords
  1312. if key == QtCore.Qt.Key_J or key == 'J':
  1313. self.draw_app.app.on_jump_to()
  1314. if key == 'M' or key == QtCore.Qt.Key_M:
  1315. # delete the possible points made before this action; we want to start anew
  1316. self.points = []
  1317. # and delete the utility geometry made up until this point
  1318. self.draw_app.delete_utility_geometry()
  1319. if self.mode == 'c12':
  1320. self.mode = '12c'
  1321. return _('Mode: Start -> Stop -> Center. Click on Start point ...')
  1322. elif self.mode == '12c':
  1323. self.mode = '132'
  1324. return _('Mode: Point1 -> Point3 -> Point2. Click on Point1 ...')
  1325. else:
  1326. self.mode = 'c12'
  1327. return _('Mode: Center -> Start -> Stop. Click on Center point ...')
  1328. def utility_geometry(self, data=None):
  1329. new_geo_el = {}
  1330. new_geo_el_pt1 = {}
  1331. new_geo_el_pt2 = {}
  1332. new_geo_el_pt3 = {}
  1333. if len(self.points) == 1: # Show the radius
  1334. center = self.points[0]
  1335. p1 = data
  1336. new_geo_el['solid'] = LineString([center, p1])
  1337. return DrawToolUtilityShape(new_geo_el)
  1338. if len(self.points) == 2: # Show the arc
  1339. if self.mode == 'c12':
  1340. center = self.points[0]
  1341. p1 = self.points[1]
  1342. p2 = data
  1343. radius = np.sqrt((center[0] - p1[0]) ** 2 + (center[1] - p1[1]) ** 2) + (self.buf_val / 2)
  1344. startangle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1345. stopangle = np.arctan2(p2[1] - center[1], p2[0] - center[0])
  1346. new_geo_el['solid'] = LineString(
  1347. arc(center, radius, startangle, stopangle, self.direction, self.steps_per_circ))
  1348. new_geo_el_pt1['solid'] = Point(center)
  1349. return DrawToolUtilityShape([new_geo_el, new_geo_el_pt1])
  1350. elif self.mode == '132':
  1351. p1 = np.array(self.points[0])
  1352. p3 = np.array(self.points[1])
  1353. p2 = np.array(data)
  1354. try:
  1355. center, radius, t = three_point_circle(p1, p2, p3)
  1356. except TypeError:
  1357. return
  1358. direction = 'cw' if np.sign(t) > 0 else 'ccw'
  1359. radius += (self.buf_val / 2)
  1360. startangle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1361. stopangle = np.arctan2(p3[1] - center[1], p3[0] - center[0])
  1362. new_geo_el['solid'] = LineString(
  1363. arc(center, radius, startangle, stopangle, direction, self.steps_per_circ))
  1364. new_geo_el_pt2['solid'] = Point(center)
  1365. new_geo_el_pt1['solid'] = Point(p1)
  1366. new_geo_el_pt3['solid'] = Point(p3)
  1367. return DrawToolUtilityShape([new_geo_el, new_geo_el_pt2, new_geo_el_pt1, new_geo_el_pt3])
  1368. else: # '12c'
  1369. p1 = np.array(self.points[0])
  1370. p2 = np.array(self.points[1])
  1371. # Midpoint
  1372. a = (p1 + p2) / 2.0
  1373. # Parallel vector
  1374. c = p2 - p1
  1375. # Perpendicular vector
  1376. b = np.dot(c, np.array([[0, -1], [1, 0]], dtype=np.float32))
  1377. b /= numpy_norm(b)
  1378. # Distance
  1379. t = distance(data, a)
  1380. # Which side? Cross product with c.
  1381. # cross(M-A, B-A), where line is AB and M is test point.
  1382. side = (data[0] - p1[0]) * c[1] - (data[1] - p1[1]) * c[0]
  1383. t *= np.sign(side)
  1384. # Center = a + bt
  1385. center = a + b * t
  1386. radius = numpy_norm(center - p1) + (self.buf_val / 2)
  1387. startangle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1388. stopangle = np.arctan2(p2[1] - center[1], p2[0] - center[0])
  1389. new_geo_el['solid'] = LineString(
  1390. arc(center, radius, startangle, stopangle, self.direction, self.steps_per_circ))
  1391. new_geo_el_pt2['solid'] = Point(center)
  1392. return DrawToolUtilityShape([new_geo_el, new_geo_el_pt2])
  1393. return None
  1394. def make(self):
  1395. self.draw_app.current_storage = self.storage_obj
  1396. new_geo_el = {}
  1397. if self.mode == 'c12':
  1398. center = self.points[0]
  1399. p1 = self.points[1]
  1400. p2 = self.points[2]
  1401. radius = distance(center, p1) + (self.buf_val / 2)
  1402. start_angle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1403. stop_angle = np.arctan2(p2[1] - center[1], p2[0] - center[0])
  1404. new_geo_el['solid'] = Polygon(
  1405. arc(center, radius, start_angle, stop_angle, self.direction, self.steps_per_circ))
  1406. new_geo_el['follow'] = Polygon(
  1407. arc(center, radius, start_angle, stop_angle, self.direction, self.steps_per_circ)).exterior
  1408. self.geometry = DrawToolShape(new_geo_el)
  1409. elif self.mode == '132':
  1410. p1 = np.array(self.points[0])
  1411. p3 = np.array(self.points[1])
  1412. p2 = np.array(self.points[2])
  1413. center, radius, t = three_point_circle(p1, p2, p3)
  1414. direction = 'cw' if np.sign(t) > 0 else 'ccw'
  1415. radius += (self.buf_val / 2)
  1416. start_angle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1417. stop_angle = np.arctan2(p3[1] - center[1], p3[0] - center[0])
  1418. new_geo_el['solid'] = Polygon(arc(center, radius, start_angle, stop_angle, direction, self.steps_per_circ))
  1419. new_geo_el['follow'] = Polygon(
  1420. arc(center, radius, start_angle, stop_angle, direction, self.steps_per_circ)).exterior
  1421. self.geometry = DrawToolShape(new_geo_el)
  1422. else: # self.mode == '12c'
  1423. p1 = np.array(self.points[0])
  1424. p2 = np.array(self.points[1])
  1425. pc = np.array(self.points[2])
  1426. # Midpoint
  1427. a = (p1 + p2) / 2.0
  1428. # Parallel vector
  1429. c = p2 - p1
  1430. # Perpendicular vector
  1431. b = np.dot(c, np.array([[0, -1], [1, 0]], dtype=np.float32))
  1432. b /= numpy_norm(b)
  1433. # Distance
  1434. t = distance(pc, a)
  1435. # Which side? Cross product with c.
  1436. # cross(M-A, B-A), where line is AB and M is test point.
  1437. side = (pc[0] - p1[0]) * c[1] - (pc[1] - p1[1]) * c[0]
  1438. t *= np.sign(side)
  1439. # Center = a + bt
  1440. center = a + b * t
  1441. radius = numpy_norm(center - p1) + (self.buf_val / 2)
  1442. start_angle = np.arctan2(p1[1] - center[1], p1[0] - center[0])
  1443. stop_angle = np.arctan2(p2[1] - center[1], p2[0] - center[0])
  1444. new_geo_el['solid'] = Polygon(
  1445. arc(center, radius, start_angle, stop_angle, self.direction, self.steps_per_circ))
  1446. new_geo_el['follow'] = Polygon(
  1447. arc(center, radius, start_angle, stop_angle, self.direction, self.steps_per_circ)).exterior
  1448. self.geometry = DrawToolShape(new_geo_el)
  1449. self.draw_app.in_action = False
  1450. self.complete = True
  1451. self.draw_app.app.jump_signal.disconnect()
  1452. self.draw_app.app.inform.emit('[success] %s' % _("Done."))
  1453. def clean_up(self):
  1454. self.draw_app.selected = []
  1455. self.draw_app.apertures_table.clearSelection()
  1456. self.draw_app.plot_all()
  1457. try:
  1458. self.draw_app.app.jump_signal.disconnect()
  1459. except (TypeError, AttributeError):
  1460. pass
  1461. class FCScale(FCShapeTool):
  1462. def __init__(self, draw_app):
  1463. FCShapeTool.__init__(self, draw_app)
  1464. self.name = 'scale'
  1465. # self.shape_buffer = self.draw_app.shape_buffer
  1466. self.draw_app = draw_app
  1467. self.app = draw_app.app
  1468. self.draw_app.app.inform.emit(_("Scale the selected Gerber apertures ..."))
  1469. self.origin = (0, 0)
  1470. if self.draw_app.app.ui.splitter.sizes()[0] == 0:
  1471. self.draw_app.app.ui.splitter.setSizes([1, 1])
  1472. self.activate_scale()
  1473. def activate_scale(self):
  1474. self.draw_app.hide_tool('all')
  1475. self.draw_app.scale_tool_frame.show()
  1476. try:
  1477. self.draw_app.scale_button.clicked.disconnect()
  1478. except (TypeError, AttributeError):
  1479. pass
  1480. self.draw_app.scale_button.clicked.connect(self.on_scale_click)
  1481. def deactivate_scale(self):
  1482. self.draw_app.scale_button.clicked.disconnect()
  1483. self.complete = True
  1484. self.draw_app.select_tool("select")
  1485. self.draw_app.hide_tool(self.name)
  1486. def on_scale_click(self):
  1487. self.draw_app.on_scale()
  1488. self.deactivate_scale()
  1489. def clean_up(self):
  1490. self.draw_app.selected = []
  1491. self.draw_app.apertures_table.clearSelection()
  1492. self.draw_app.plot_all()
  1493. class FCBuffer(FCShapeTool):
  1494. def __init__(self, draw_app):
  1495. FCShapeTool.__init__(self, draw_app)
  1496. self.name = 'buffer'
  1497. # self.shape_buffer = self.draw_app.shape_buffer
  1498. self.draw_app = draw_app
  1499. self.app = draw_app.app
  1500. self.draw_app.app.inform.emit(_("Buffer the selected apertures ..."))
  1501. self.origin = (0, 0)
  1502. if self.draw_app.app.ui.splitter.sizes()[0] == 0:
  1503. self.draw_app.app.ui.splitter.setSizes([1, 1])
  1504. self.activate_buffer()
  1505. def activate_buffer(self):
  1506. self.draw_app.hide_tool('all')
  1507. self.draw_app.buffer_tool_frame.show()
  1508. try:
  1509. self.draw_app.buffer_button.clicked.disconnect()
  1510. except (TypeError, AttributeError):
  1511. pass
  1512. self.draw_app.buffer_button.clicked.connect(self.on_buffer_click)
  1513. def deactivate_buffer(self):
  1514. self.draw_app.buffer_button.clicked.disconnect()
  1515. self.complete = True
  1516. self.draw_app.select_tool("select")
  1517. self.draw_app.hide_tool(self.name)
  1518. def on_buffer_click(self):
  1519. self.draw_app.on_buffer()
  1520. self.deactivate_buffer()
  1521. def clean_up(self):
  1522. self.draw_app.selected = []
  1523. self.draw_app.apertures_table.clearSelection()
  1524. self.draw_app.plot_all()
  1525. class FCMarkArea(FCShapeTool):
  1526. def __init__(self, draw_app):
  1527. FCShapeTool.__init__(self, draw_app)
  1528. self.name = 'markarea'
  1529. # self.shape_buffer = self.draw_app.shape_buffer
  1530. self.draw_app = draw_app
  1531. self.app = draw_app.app
  1532. self.draw_app.app.inform.emit(_("Mark polygon areas in the edited Gerber ..."))
  1533. self.origin = (0, 0)
  1534. if self.draw_app.app.ui.splitter.sizes()[0] == 0:
  1535. self.draw_app.app.ui.splitter.setSizes([1, 1])
  1536. self.activate_markarea()
  1537. def activate_markarea(self):
  1538. self.draw_app.ma_tool_frame.show()
  1539. # clear previous marking
  1540. self.draw_app.ma_annotation.clear(update=True)
  1541. try:
  1542. self.draw_app.ma_threshold_button.clicked.disconnect()
  1543. except (TypeError, AttributeError):
  1544. pass
  1545. self.draw_app.ma_threshold_button.clicked.connect(self.on_markarea_click)
  1546. try:
  1547. self.draw_app.ma_delete_button.clicked.disconnect()
  1548. except TypeError:
  1549. pass
  1550. self.draw_app.ma_delete_button.clicked.connect(self.on_markarea_delete)
  1551. try:
  1552. self.draw_app.ma_clear_button.clicked.disconnect()
  1553. except TypeError:
  1554. pass
  1555. self.draw_app.ma_clear_button.clicked.connect(self.on_markarea_clear)
  1556. def deactivate_markarea(self):
  1557. self.draw_app.ma_threshold_button.clicked.disconnect()
  1558. self.complete = True
  1559. self.draw_app.select_tool("select")
  1560. self.draw_app.hide_tool(self.name)
  1561. def on_markarea_click(self):
  1562. self.draw_app.on_markarea()
  1563. def on_markarea_clear(self):
  1564. self.draw_app.ma_annotation.clear(update=True)
  1565. self.deactivate_markarea()
  1566. def on_markarea_delete(self):
  1567. self.draw_app.delete_marked_polygons()
  1568. self.on_markarea_clear()
  1569. def clean_up(self):
  1570. self.draw_app.selected = []
  1571. self.draw_app.apertures_table.clearSelection()
  1572. self.draw_app.plot_all()
  1573. class FCApertureMove(FCShapeTool):
  1574. def __init__(self, draw_app):
  1575. DrawTool.__init__(self, draw_app)
  1576. self.name = 'move'
  1577. # self.shape_buffer = self.draw_app.shape_buffer
  1578. self.origin = None
  1579. self.destination = None
  1580. self.selected_apertures = []
  1581. if len(self.draw_app.get_selected()) == 0:
  1582. self.draw_app.app.inform.emit('[WARNING_NOTCL] %s...' %
  1583. _("Nothing selected to move"))
  1584. self.complete = True
  1585. self.draw_app.select_tool("select")
  1586. return
  1587. if self.draw_app.launched_from_shortcuts is True:
  1588. self.draw_app.launched_from_shortcuts = False
  1589. self.draw_app.app.inform.emit(_("Click on target location ..."))
  1590. else:
  1591. self.draw_app.app.inform.emit(_("Click on reference location ..."))
  1592. self.current_storage = None
  1593. self.geometry = []
  1594. for index in self.draw_app.apertures_table.selectedIndexes():
  1595. row = index.row()
  1596. # on column 1 in tool tables we hold the aperture codes, and we retrieve them as strings
  1597. aperture_on_row = self.draw_app.apertures_table.item(row, 1).text()
  1598. self.selected_apertures.append(aperture_on_row)
  1599. # Switch notebook to Properties page
  1600. self.draw_app.app.ui.notebook.setCurrentWidget(self.draw_app.app.ui.properties_tab)
  1601. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  1602. self.sel_limit = self.draw_app.app.defaults["gerber_editor_sel_limit"]
  1603. self.selection_shape = self.selection_bbox()
  1604. def set_origin(self, origin):
  1605. self.origin = origin
  1606. def click(self, point):
  1607. if len(self.draw_app.get_selected()) == 0:
  1608. return "Nothing to move."
  1609. if self.origin is None:
  1610. self.set_origin(point)
  1611. self.draw_app.app.inform.emit(_("Click on target location ..."))
  1612. return
  1613. else:
  1614. self.destination = point
  1615. self.make()
  1616. # MS: always return to the Select Tool
  1617. self.draw_app.select_tool("select")
  1618. return
  1619. # def create_png(self):
  1620. # """
  1621. # Create a PNG file out of a list of Shapely polygons
  1622. # :return:
  1623. # """
  1624. # if len(self.draw_app.get_selected()) == 0:
  1625. # return None
  1626. #
  1627. # geo_list = [geoms.geo for geoms in self.draw_app.get_selected()]
  1628. # xmin, ymin, xmax, ymax = get_shapely_list_bounds(geo_list)
  1629. #
  1630. # iwidth = (xmax - xmin)
  1631. # iwidth = int(round(iwidth))
  1632. # iheight = (ymax - ymin)
  1633. # iheight = int(round(iheight))
  1634. # c = pngcanvas.PNGCanvas(iwidth, iheight)
  1635. #
  1636. # pixels = []
  1637. # for geom in self.draw_app.get_selected():
  1638. # m = mapping(geom.geo.exterior)
  1639. # pixels += [[coord[0], coord[1]] for coord in m['coordinates']]
  1640. # for g in geom.geo.interiors:
  1641. # m = mapping(g)
  1642. # pixels += [[coord[0], coord[1]] for coord in m['coordinates']]
  1643. # c.polyline(pixels)
  1644. # pixels = []
  1645. #
  1646. # f = open("%s.png" % 'D:\\shapely_image', "wb")
  1647. # f.write(c.dump())
  1648. # f.close()
  1649. def selection_bbox(self):
  1650. geo_list = []
  1651. for select_shape in self.draw_app.get_selected():
  1652. geometric_data = select_shape.geo
  1653. geo_list.append(geometric_data['solid'])
  1654. xmin, ymin, xmax, ymax = get_shapely_list_bounds(geo_list)
  1655. pt1 = (xmin, ymin)
  1656. pt2 = (xmax, ymin)
  1657. pt3 = (xmax, ymax)
  1658. pt4 = (xmin, ymax)
  1659. return Polygon([pt1, pt2, pt3, pt4])
  1660. def make(self):
  1661. # Create new geometry
  1662. dx = self.destination[0] - self.origin[0]
  1663. dy = self.destination[1] - self.origin[1]
  1664. sel_shapes_to_be_deleted = []
  1665. for sel_dia in self.selected_apertures:
  1666. self.current_storage = self.draw_app.storage_dict[sel_dia]['geometry']
  1667. for select_shape in self.draw_app.get_selected():
  1668. if select_shape in self.current_storage:
  1669. geometric_data = select_shape.geo
  1670. new_geo_el = {}
  1671. if 'solid' in geometric_data:
  1672. new_geo_el['solid'] = affinity.translate(geometric_data['solid'], xoff=dx, yoff=dy)
  1673. if 'follow' in geometric_data:
  1674. new_geo_el['follow'] = affinity.translate(geometric_data['follow'], xoff=dx, yoff=dy)
  1675. if 'clear' in geometric_data:
  1676. new_geo_el['clear'] = affinity.translate(geometric_data['clear'], xoff=dx, yoff=dy)
  1677. self.geometry.append(DrawToolShape(new_geo_el))
  1678. self.current_storage.remove(select_shape)
  1679. sel_shapes_to_be_deleted.append(select_shape)
  1680. self.draw_app.on_grb_shape_complete(self.current_storage, no_plot=True)
  1681. self.geometry = []
  1682. for shp in sel_shapes_to_be_deleted:
  1683. self.draw_app.selected.remove(shp)
  1684. sel_shapes_to_be_deleted = []
  1685. self.draw_app.plot_all()
  1686. self.draw_app.build_ui()
  1687. self.draw_app.app.inform.emit('[success] %s' % _("Done. Apertures Move completed."))
  1688. self.draw_app.app.jump_signal.disconnect()
  1689. def clean_up(self):
  1690. self.draw_app.selected = []
  1691. self.draw_app.apertures_table.clearSelection()
  1692. self.draw_app.plot_all()
  1693. try:
  1694. self.draw_app.app.jump_signal.disconnect()
  1695. except (TypeError, AttributeError):
  1696. pass
  1697. def utility_geometry(self, data=None):
  1698. """
  1699. Temporary geometry on screen while using this tool.
  1700. :param data:
  1701. :return:
  1702. """
  1703. geo_list = []
  1704. if self.origin is None:
  1705. return None
  1706. if len(self.draw_app.get_selected()) == 0:
  1707. return None
  1708. dx = data[0] - self.origin[0]
  1709. dy = data[1] - self.origin[1]
  1710. if len(self.draw_app.get_selected()) <= self.sel_limit:
  1711. for geom in self.draw_app.get_selected():
  1712. new_geo_el = {}
  1713. if 'solid' in geom.geo:
  1714. new_geo_el['solid'] = affinity.translate(geom.geo['solid'], xoff=dx, yoff=dy)
  1715. if 'follow' in geom.geo:
  1716. new_geo_el['follow'] = affinity.translate(geom.geo['follow'], xoff=dx, yoff=dy)
  1717. if 'clear' in geom.geo:
  1718. new_geo_el['clear'] = affinity.translate(geom.geo['clear'], xoff=dx, yoff=dy)
  1719. geo_list.append(deepcopy(new_geo_el))
  1720. return DrawToolUtilityShape(geo_list)
  1721. else:
  1722. ss_el = {}
  1723. ss_el['solid'] = affinity.translate(self.selection_shape, xoff=dx, yoff=dy)
  1724. return DrawToolUtilityShape(ss_el)
  1725. class FCApertureCopy(FCApertureMove):
  1726. def __init__(self, draw_app):
  1727. FCApertureMove.__init__(self, draw_app)
  1728. self.name = 'copy'
  1729. def make(self):
  1730. # Create new geometry
  1731. dx = self.destination[0] - self.origin[0]
  1732. dy = self.destination[1] - self.origin[1]
  1733. sel_shapes_to_be_deleted = []
  1734. for sel_dia in self.selected_apertures:
  1735. self.current_storage = self.draw_app.storage_dict[sel_dia]['geometry']
  1736. for select_shape in self.draw_app.get_selected():
  1737. if select_shape in self.current_storage:
  1738. geometric_data = select_shape.geo
  1739. new_geo_el = {}
  1740. if 'solid' in geometric_data:
  1741. new_geo_el['solid'] = affinity.translate(geometric_data['solid'], xoff=dx, yoff=dy)
  1742. if 'follow' in geometric_data:
  1743. new_geo_el['follow'] = affinity.translate(geometric_data['follow'], xoff=dx, yoff=dy)
  1744. if 'clear' in geometric_data:
  1745. new_geo_el['clear'] = affinity.translate(geometric_data['clear'], xoff=dx, yoff=dy)
  1746. self.geometry.append(DrawToolShape(new_geo_el))
  1747. sel_shapes_to_be_deleted.append(select_shape)
  1748. self.draw_app.on_grb_shape_complete(self.current_storage)
  1749. self.geometry = []
  1750. for shp in sel_shapes_to_be_deleted:
  1751. self.draw_app.selected.remove(shp)
  1752. sel_shapes_to_be_deleted = []
  1753. self.draw_app.build_ui()
  1754. self.draw_app.app.inform.emit('[success] %s' % _("Done. Apertures copied."))
  1755. self.draw_app.app.jump_signal.disconnect()
  1756. class FCEraser(FCShapeTool):
  1757. def __init__(self, draw_app):
  1758. DrawTool.__init__(self, draw_app)
  1759. self.name = 'eraser'
  1760. self.origin = None
  1761. self.destination = None
  1762. self.selected_apertures = []
  1763. if len(self.draw_app.get_selected()) == 0:
  1764. if self.draw_app.launched_from_shortcuts is True:
  1765. self.draw_app.launched_from_shortcuts = False
  1766. self.draw_app.app.inform.emit(_("Select a shape to act as deletion area ..."))
  1767. else:
  1768. self.draw_app.app.inform.emit(_("Click to pick-up the erase shape..."))
  1769. self.current_storage = None
  1770. self.geometry = []
  1771. for index in self.draw_app.apertures_table.selectedIndexes():
  1772. row = index.row()
  1773. # on column 1 in tool tables we hold the aperture codes, and we retrieve them as strings
  1774. aperture_on_row = self.draw_app.apertures_table.item(row, 1).text()
  1775. self.selected_apertures.append(aperture_on_row)
  1776. # Switch notebook to Properties page
  1777. self.draw_app.app.ui.notebook.setCurrentWidget(self.draw_app.app.ui.properties_tab)
  1778. self.draw_app.app.jump_signal.connect(lambda x: self.draw_app.update_utility_geometry(data=x))
  1779. self.sel_limit = self.draw_app.app.defaults["gerber_editor_sel_limit"]
  1780. def set_origin(self, origin):
  1781. self.origin = origin
  1782. def click(self, point):
  1783. if len(self.draw_app.get_selected()) == 0:
  1784. self.draw_app.apertures_table.clearSelection()
  1785. sel_aperture = set()
  1786. for storage in self.draw_app.storage_dict:
  1787. try:
  1788. for geo_el in self.draw_app.storage_dict[storage]['geometry']:
  1789. if 'solid' in geo_el.geo:
  1790. geometric_data = geo_el.geo['solid']
  1791. if Point(point).within(geometric_data):
  1792. self.draw_app.selected = []
  1793. self.draw_app.selected.append(geo_el)
  1794. sel_aperture.add(storage)
  1795. except KeyError:
  1796. pass
  1797. # select the aperture in the Apertures Table that is associated with the selected shape
  1798. try:
  1799. self.draw_app.apertures_table.cellPressed.disconnect()
  1800. except Exception as e:
  1801. log.debug("AppGerberEditor.FCEraser.click_release() --> %s" % str(e))
  1802. self.draw_app.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.MultiSelection)
  1803. for aper in sel_aperture:
  1804. for row in range(self.draw_app.apertures_table.rowCount()):
  1805. if str(aper) == self.draw_app.apertures_table.item(row, 1).text():
  1806. self.draw_app.apertures_table.selectRow(row)
  1807. self.draw_app.last_aperture_selected = aper
  1808. self.draw_app.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.ExtendedSelection)
  1809. self.draw_app.apertures_table.cellPressed.connect(self.draw_app.on_row_selected)
  1810. if len(self.draw_app.get_selected()) == 0:
  1811. return "Nothing to ersase."
  1812. if self.origin is None:
  1813. self.set_origin(point)
  1814. self.draw_app.app.inform.emit(_("Click to erase ..."))
  1815. return
  1816. else:
  1817. self.destination = point
  1818. self.make()
  1819. # self.draw_app.select_tool("select")
  1820. return
  1821. def make(self):
  1822. eraser_sel_shapes = []
  1823. # create the eraser shape from selection
  1824. for eraser_shape in self.utility_geometry(data=self.destination).geo:
  1825. temp_shape = eraser_shape['solid'].buffer(0.0000001)
  1826. temp_shape = Polygon(temp_shape.exterior)
  1827. eraser_sel_shapes.append(temp_shape)
  1828. eraser_sel_shapes = unary_union(eraser_sel_shapes)
  1829. for storage in self.draw_app.storage_dict:
  1830. try:
  1831. for geo_el in self.draw_app.storage_dict[storage]['geometry']:
  1832. if 'solid' in geo_el.geo:
  1833. geometric_data = geo_el.geo['solid']
  1834. if eraser_sel_shapes.within(geometric_data) or eraser_sel_shapes.intersects(geometric_data):
  1835. geos = geometric_data.difference(eraser_sel_shapes)
  1836. geos = geos.buffer(0)
  1837. geo_el.geo['solid'] = deepcopy(geos)
  1838. except KeyError:
  1839. pass
  1840. self.draw_app.delete_utility_geometry()
  1841. self.draw_app.plot_all()
  1842. self.draw_app.app.inform.emit('[success] %s' % _("Done. Eraser tool action completed."))
  1843. self.draw_app.app.jump_signal.disconnect()
  1844. def clean_up(self):
  1845. self.draw_app.selected = []
  1846. self.draw_app.apertures_table.clearSelection()
  1847. self.draw_app.plot_all()
  1848. try:
  1849. self.draw_app.app.jump_signal.disconnect()
  1850. except (TypeError, AttributeError):
  1851. pass
  1852. def utility_geometry(self, data=None):
  1853. """
  1854. Temporary geometry on screen while using this tool.
  1855. :param data:
  1856. :return:
  1857. """
  1858. geo_list = []
  1859. if self.origin is None:
  1860. return None
  1861. if len(self.draw_app.get_selected()) == 0:
  1862. return None
  1863. dx = data[0] - self.origin[0]
  1864. dy = data[1] - self.origin[1]
  1865. for geom in self.draw_app.get_selected():
  1866. new_geo_el = {}
  1867. if 'solid' in geom.geo:
  1868. new_geo_el['solid'] = affinity.translate(geom.geo['solid'], xoff=dx, yoff=dy)
  1869. if 'follow' in geom.geo:
  1870. new_geo_el['follow'] = affinity.translate(geom.geo['follow'], xoff=dx, yoff=dy)
  1871. if 'clear' in geom.geo:
  1872. new_geo_el['clear'] = affinity.translate(geom.geo['clear'], xoff=dx, yoff=dy)
  1873. geo_list.append(deepcopy(new_geo_el))
  1874. return DrawToolUtilityShape(geo_list)
  1875. class FCApertureSelect(DrawTool):
  1876. def __init__(self, grb_editor_app):
  1877. DrawTool.__init__(self, grb_editor_app)
  1878. self.name = 'select'
  1879. self.origin = None
  1880. self.grb_editor_app = grb_editor_app
  1881. self.storage = self.grb_editor_app.storage_dict
  1882. # self.selected = self.grb_editor_app.selected
  1883. # here we store all shapes that were selected
  1884. self.sel_storage = []
  1885. # since FCApertureSelect tool is activated whenever a tool is exited I place here the reinitialization of the
  1886. # bending modes using in FCRegion and FCTrack
  1887. self.grb_editor_app.bend_mode = 1
  1888. # here store the selected apertures
  1889. self.sel_aperture = []
  1890. try:
  1891. self.grb_editor_app.apertures_table.clearSelection()
  1892. except Exception as e:
  1893. log.error("FlatCAMGerbEditor.FCApertureSelect.__init__() --> %s" % str(e))
  1894. self.grb_editor_app.hide_tool('all')
  1895. self.grb_editor_app.hide_tool('select')
  1896. self.grb_editor_app.array_frame.hide()
  1897. try:
  1898. QtGui.QGuiApplication.restoreOverrideCursor()
  1899. except Exception as e:
  1900. log.debug("AppGerberEditor.FCApertureSelect --> %s" % str(e))
  1901. def set_origin(self, origin):
  1902. self.origin = origin
  1903. def click(self, point):
  1904. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  1905. if key_modifier == QtCore.Qt.ShiftModifier:
  1906. mod_key = 'Shift'
  1907. elif key_modifier == QtCore.Qt.ControlModifier:
  1908. mod_key = 'Control'
  1909. else:
  1910. mod_key = None
  1911. if mod_key == self.grb_editor_app.app.defaults["global_mselect_key"]:
  1912. pass
  1913. else:
  1914. self.grb_editor_app.selected = []
  1915. def click_release(self, point):
  1916. self.grb_editor_app.apertures_table.clearSelection()
  1917. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  1918. if key_modifier == QtCore.Qt.ShiftModifier:
  1919. mod_key = 'Shift'
  1920. elif key_modifier == QtCore.Qt.ControlModifier:
  1921. mod_key = 'Control'
  1922. else:
  1923. mod_key = None
  1924. if mod_key != self.grb_editor_app.app.defaults["global_mselect_key"]:
  1925. self.grb_editor_app.selected.clear()
  1926. self.sel_aperture.clear()
  1927. for storage in self.grb_editor_app.storage_dict:
  1928. try:
  1929. for shape_stored in self.grb_editor_app.storage_dict[storage]['geometry']:
  1930. if 'solid' in shape_stored.geo:
  1931. geometric_data = shape_stored.geo['solid']
  1932. if Point(point).within(geometric_data):
  1933. if shape_stored in self.grb_editor_app.selected:
  1934. self.grb_editor_app.selected.remove(shape_stored)
  1935. else:
  1936. # add the object to the selected shapes
  1937. self.grb_editor_app.selected.append(shape_stored)
  1938. except KeyError:
  1939. pass
  1940. # select the aperture in the Apertures Table that is associated with the selected shape
  1941. self.sel_aperture.clear()
  1942. self.grb_editor_app.apertures_table.clearSelection()
  1943. try:
  1944. self.grb_editor_app.apertures_table.cellPressed.disconnect()
  1945. except Exception as e:
  1946. log.debug("AppGerberEditor.FCApertureSelect.click_release() --> %s" % str(e))
  1947. for shape_s in self.grb_editor_app.selected:
  1948. for storage in self.grb_editor_app.storage_dict:
  1949. if shape_s in self.grb_editor_app.storage_dict[storage]['geometry']:
  1950. self.sel_aperture.append(storage)
  1951. # self.grb_editor_app.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.MultiSelection)
  1952. for aper in self.sel_aperture:
  1953. for row in range(self.grb_editor_app.apertures_table.rowCount()):
  1954. if str(aper) == self.grb_editor_app.apertures_table.item(row, 1).text():
  1955. if not self.grb_editor_app.apertures_table.item(row, 0).isSelected():
  1956. self.grb_editor_app.apertures_table.selectRow(row)
  1957. self.grb_editor_app.last_aperture_selected = aper
  1958. # self.grb_editor_app.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.ExtendedSelection)
  1959. self.grb_editor_app.apertures_table.cellPressed.connect(self.grb_editor_app.on_row_selected)
  1960. return ""
  1961. def clean_up(self):
  1962. self.grb_editor_app.plot_all()
  1963. class FCTransform(FCShapeTool):
  1964. def __init__(self, draw_app):
  1965. FCShapeTool.__init__(self, draw_app)
  1966. self.name = 'transformation'
  1967. # self.shape_buffer = self.draw_app.shape_buffer
  1968. self.draw_app = draw_app
  1969. self.app = draw_app.app
  1970. self.start_msg = _("Shape transformations ...")
  1971. self.origin = (0, 0)
  1972. self.draw_app.transform_tool.run()
  1973. def clean_up(self):
  1974. self.draw_app.selected = []
  1975. self.draw_app.apertures_table.clearSelection()
  1976. self.draw_app.plot_all()
  1977. class AppGerberEditor(QtCore.QObject):
  1978. draw_shape_idx = -1
  1979. # plot_finished = QtCore.pyqtSignal()
  1980. mp_finished = QtCore.pyqtSignal(list)
  1981. def __init__(self, app):
  1982. # assert isinstance(app, FlatCAMApp.App), \
  1983. # "Expected the app to be a FlatCAMApp.App, got %s" % type(app)
  1984. super(AppGerberEditor, self).__init__()
  1985. self.app = app
  1986. self.canvas = self.app.plotcanvas
  1987. self.decimals = self.app.decimals
  1988. # Current application units in Upper Case
  1989. self.units = self.app.defaults['units'].upper()
  1990. self.grb_edit_widget = QtWidgets.QWidget()
  1991. layout = QtWidgets.QVBoxLayout()
  1992. self.grb_edit_widget.setLayout(layout)
  1993. # Page Title box (spacing between children)
  1994. self.title_box = QtWidgets.QHBoxLayout()
  1995. layout.addLayout(self.title_box)
  1996. # Page Title icon
  1997. pixmap = QtGui.QPixmap(self.app.resource_location + '/flatcam_icon32.png')
  1998. self.icon = QtWidgets.QLabel()
  1999. self.icon.setPixmap(pixmap)
  2000. self.title_box.addWidget(self.icon, stretch=0)
  2001. # Title label
  2002. self.title_label = QtWidgets.QLabel("<font size=5><b>%s</b></font>" % _('Gerber Editor'))
  2003. self.title_label.setAlignment(QtCore.Qt.AlignLeft | QtCore.Qt.AlignVCenter)
  2004. self.title_box.addWidget(self.title_label, stretch=1)
  2005. # Object name
  2006. self.name_box = QtWidgets.QHBoxLayout()
  2007. layout.addLayout(self.name_box)
  2008. name_label = QtWidgets.QLabel(_("Name:"))
  2009. self.name_box.addWidget(name_label)
  2010. self.name_entry = FCEntry()
  2011. self.name_box.addWidget(self.name_entry)
  2012. # Box for custom widgets
  2013. # This gets populated in offspring implementations.
  2014. self.custom_box = QtWidgets.QVBoxLayout()
  2015. layout.addLayout(self.custom_box)
  2016. # #########################
  2017. # ### Gerber Apertures ####
  2018. # #########################
  2019. self.apertures_table_label = QtWidgets.QLabel('<b>%s:</b>' % _('Apertures'))
  2020. self.apertures_table_label.setToolTip(
  2021. _("Apertures Table for the Gerber Object.")
  2022. )
  2023. self.custom_box.addWidget(self.apertures_table_label)
  2024. self.apertures_table = FCTable()
  2025. # delegate = SpinBoxDelegate(units=self.units)
  2026. # self.apertures_table.setItemDelegateForColumn(1, delegate)
  2027. self.custom_box.addWidget(self.apertures_table)
  2028. self.apertures_table.setColumnCount(5)
  2029. self.apertures_table.setHorizontalHeaderLabels(['#', _('Code'), _('Type'), _('Size'), _('Dim')])
  2030. self.apertures_table.setSortingEnabled(False)
  2031. self.apertures_table.setSelectionBehavior(QtWidgets.QAbstractItemView.SelectRows)
  2032. self.apertures_table.horizontalHeaderItem(0).setToolTip(
  2033. _("Index"))
  2034. self.apertures_table.horizontalHeaderItem(1).setToolTip(
  2035. _("Aperture Code"))
  2036. self.apertures_table.horizontalHeaderItem(2).setToolTip(
  2037. _("Type of aperture: circular, rectangle, macros etc"))
  2038. self.apertures_table.horizontalHeaderItem(4).setToolTip(
  2039. _("Aperture Size:"))
  2040. self.apertures_table.horizontalHeaderItem(4).setToolTip(
  2041. _("Aperture Dimensions:\n"
  2042. " - (width, height) for R, O type.\n"
  2043. " - (dia, nVertices) for P type"))
  2044. self.empty_label = QtWidgets.QLabel('')
  2045. self.custom_box.addWidget(self.empty_label)
  2046. # add a frame and inside add a vertical box layout. Inside this vbox layout I add all the Apertures widgets
  2047. # this way I can hide/show the frame
  2048. self.apertures_frame = QtWidgets.QFrame()
  2049. self.apertures_frame.setContentsMargins(0, 0, 0, 0)
  2050. self.custom_box.addWidget(self.apertures_frame)
  2051. self.apertures_box = QtWidgets.QVBoxLayout()
  2052. self.apertures_box.setContentsMargins(0, 0, 0, 0)
  2053. self.apertures_frame.setLayout(self.apertures_box)
  2054. # # ## Add/Delete an new Aperture ## ##
  2055. grid1 = QtWidgets.QGridLayout()
  2056. self.apertures_box.addLayout(grid1)
  2057. grid1.setColumnStretch(0, 0)
  2058. grid1.setColumnStretch(1, 1)
  2059. apcode_lbl = QtWidgets.QLabel('%s:' % _('Aperture Code'))
  2060. apcode_lbl.setToolTip(_("Code for the new aperture"))
  2061. grid1.addWidget(apcode_lbl, 1, 0)
  2062. self.apcode_entry = FCSpinner()
  2063. self.apcode_entry.set_range(0, 999)
  2064. self.apcode_entry.setWrapping(True)
  2065. grid1.addWidget(self.apcode_entry, 1, 1)
  2066. apsize_lbl = QtWidgets.QLabel('%s:' % _('Aperture Size'))
  2067. apsize_lbl.setToolTip(
  2068. _("Size for the new aperture.\n"
  2069. "If aperture type is 'R' or 'O' then\n"
  2070. "this value is automatically\n"
  2071. "calculated as:\n"
  2072. "sqrt(width**2 + height**2)")
  2073. )
  2074. grid1.addWidget(apsize_lbl, 2, 0)
  2075. self.apsize_entry = FCDoubleSpinner()
  2076. self.apsize_entry.set_precision(self.decimals)
  2077. self.apsize_entry.set_range(0.0, 9999)
  2078. grid1.addWidget(self.apsize_entry, 2, 1)
  2079. aptype_lbl = QtWidgets.QLabel('%s:' % _('Aperture Type'))
  2080. aptype_lbl.setToolTip(
  2081. _("Select the type of new aperture. Can be:\n"
  2082. "C = circular\n"
  2083. "R = rectangular\n"
  2084. "O = oblong")
  2085. )
  2086. grid1.addWidget(aptype_lbl, 3, 0)
  2087. self.aptype_cb = FCComboBox()
  2088. self.aptype_cb.addItems(['C', 'R', 'O'])
  2089. grid1.addWidget(self.aptype_cb, 3, 1)
  2090. self.apdim_lbl = QtWidgets.QLabel('%s:' % _('Aperture Dim'))
  2091. self.apdim_lbl.setToolTip(
  2092. _("Dimensions for the new aperture.\n"
  2093. "Active only for rectangular apertures (type R).\n"
  2094. "The format is (width, height)")
  2095. )
  2096. grid1.addWidget(self.apdim_lbl, 4, 0)
  2097. self.apdim_entry = EvalEntry2()
  2098. grid1.addWidget(self.apdim_entry, 4, 1)
  2099. apadd_del_lbl = QtWidgets.QLabel('<b>%s:</b>' % _('Add/Delete Aperture'))
  2100. apadd_del_lbl.setToolTip(
  2101. _("Add/Delete an aperture in the aperture table")
  2102. )
  2103. self.apertures_box.addWidget(apadd_del_lbl)
  2104. hlay_ad = QtWidgets.QHBoxLayout()
  2105. self.apertures_box.addLayout(hlay_ad)
  2106. self.addaperture_btn = QtWidgets.QPushButton(_('Add'))
  2107. self.addaperture_btn.setToolTip(
  2108. _("Add a new aperture to the aperture list.")
  2109. )
  2110. self.delaperture_btn = QtWidgets.QPushButton(_('Delete'))
  2111. self.delaperture_btn.setToolTip(
  2112. _("Delete a aperture in the aperture list")
  2113. )
  2114. hlay_ad.addWidget(self.addaperture_btn)
  2115. hlay_ad.addWidget(self.delaperture_btn)
  2116. # ###################
  2117. # ### BUFFER TOOL ###
  2118. # ###################
  2119. self.buffer_tool_frame = QtWidgets.QFrame()
  2120. self.buffer_tool_frame.setContentsMargins(0, 0, 0, 0)
  2121. self.custom_box.addWidget(self.buffer_tool_frame)
  2122. self.buffer_tools_box = QtWidgets.QVBoxLayout()
  2123. self.buffer_tools_box.setContentsMargins(0, 0, 0, 0)
  2124. self.buffer_tool_frame.setLayout(self.buffer_tools_box)
  2125. self.buffer_tool_frame.hide()
  2126. # Title
  2127. buf_title_lbl = QtWidgets.QLabel('<b>%s:</b>' % _('Buffer Aperture'))
  2128. buf_title_lbl.setToolTip(
  2129. _("Buffer a aperture in the aperture list")
  2130. )
  2131. self.buffer_tools_box.addWidget(buf_title_lbl)
  2132. # Form Layout
  2133. buf_form_layout = QtWidgets.QFormLayout()
  2134. self.buffer_tools_box.addLayout(buf_form_layout)
  2135. # Buffer distance
  2136. self.buffer_distance_entry = FCDoubleSpinner()
  2137. self.buffer_distance_entry.set_precision(self.decimals)
  2138. self.buffer_distance_entry.set_range(-9999.9999, 9999.9999)
  2139. buf_form_layout.addRow('%s:' % _("Buffer distance"), self.buffer_distance_entry)
  2140. self.buffer_corner_lbl = QtWidgets.QLabel('%s:' % _("Buffer corner"))
  2141. self.buffer_corner_lbl.setToolTip(
  2142. _("There are 3 types of corners:\n"
  2143. " - 'Round': the corner is rounded.\n"
  2144. " - 'Square': the corner is met in a sharp angle.\n"
  2145. " - 'Beveled': the corner is a line that directly connects the features meeting in the corner")
  2146. )
  2147. self.buffer_corner_cb = FCComboBox()
  2148. self.buffer_corner_cb.addItem(_("Round"))
  2149. self.buffer_corner_cb.addItem(_("Square"))
  2150. self.buffer_corner_cb.addItem(_("Beveled"))
  2151. buf_form_layout.addRow(self.buffer_corner_lbl, self.buffer_corner_cb)
  2152. # Buttons
  2153. hlay_buf = QtWidgets.QHBoxLayout()
  2154. self.buffer_tools_box.addLayout(hlay_buf)
  2155. self.buffer_button = QtWidgets.QPushButton(_("Buffer"))
  2156. hlay_buf.addWidget(self.buffer_button)
  2157. # ##################
  2158. # ### SCALE TOOL ###
  2159. # ##################
  2160. self.scale_tool_frame = QtWidgets.QFrame()
  2161. self.scale_tool_frame.setContentsMargins(0, 0, 0, 0)
  2162. self.custom_box.addWidget(self.scale_tool_frame)
  2163. self.scale_tools_box = QtWidgets.QVBoxLayout()
  2164. self.scale_tools_box.setContentsMargins(0, 0, 0, 0)
  2165. self.scale_tool_frame.setLayout(self.scale_tools_box)
  2166. self.scale_tool_frame.hide()
  2167. # Title
  2168. scale_title_lbl = QtWidgets.QLabel('<b>%s:</b>' % _('Scale Aperture'))
  2169. scale_title_lbl.setToolTip(
  2170. _("Scale a aperture in the aperture list")
  2171. )
  2172. self.scale_tools_box.addWidget(scale_title_lbl)
  2173. # Form Layout
  2174. scale_form_layout = QtWidgets.QFormLayout()
  2175. self.scale_tools_box.addLayout(scale_form_layout)
  2176. self.scale_factor_lbl = QtWidgets.QLabel('%s:' % _("Scale factor"))
  2177. self.scale_factor_lbl.setToolTip(
  2178. _("The factor by which to scale the selected aperture.\n"
  2179. "Values can be between 0.0000 and 999.9999")
  2180. )
  2181. self.scale_factor_entry = FCDoubleSpinner()
  2182. self.scale_factor_entry.set_precision(self.decimals)
  2183. self.scale_factor_entry.set_range(0.0000, 9999.9999)
  2184. scale_form_layout.addRow(self.scale_factor_lbl, self.scale_factor_entry)
  2185. # Buttons
  2186. hlay_scale = QtWidgets.QHBoxLayout()
  2187. self.scale_tools_box.addLayout(hlay_scale)
  2188. self.scale_button = QtWidgets.QPushButton(_("Scale"))
  2189. hlay_scale.addWidget(self.scale_button)
  2190. # ######################
  2191. # ### Mark Area TOOL ###
  2192. # ######################
  2193. self.ma_tool_frame = QtWidgets.QFrame()
  2194. self.ma_tool_frame.setContentsMargins(0, 0, 0, 0)
  2195. self.custom_box.addWidget(self.ma_tool_frame)
  2196. self.ma_tools_box = QtWidgets.QVBoxLayout()
  2197. self.ma_tools_box.setContentsMargins(0, 0, 0, 0)
  2198. self.ma_tool_frame.setLayout(self.ma_tools_box)
  2199. self.ma_tool_frame.hide()
  2200. # Title
  2201. ma_title_lbl = QtWidgets.QLabel('<b>%s:</b>' % _('Mark polygons'))
  2202. ma_title_lbl.setToolTip(
  2203. _("Mark the polygon areas.")
  2204. )
  2205. self.ma_tools_box.addWidget(ma_title_lbl)
  2206. # Form Layout
  2207. ma_form_layout = QtWidgets.QFormLayout()
  2208. self.ma_tools_box.addLayout(ma_form_layout)
  2209. self.ma_upper_threshold_lbl = QtWidgets.QLabel('%s:' % _("Area UPPER threshold"))
  2210. self.ma_upper_threshold_lbl.setToolTip(
  2211. _("The threshold value, all areas less than this are marked.\n"
  2212. "Can have a value between 0.0000 and 9999.9999")
  2213. )
  2214. self.ma_upper_threshold_entry = FCDoubleSpinner()
  2215. self.ma_upper_threshold_entry.set_precision(self.decimals)
  2216. self.ma_upper_threshold_entry.set_range(0, 10000)
  2217. self.ma_lower_threshold_lbl = QtWidgets.QLabel('%s:' % _("Area LOWER threshold"))
  2218. self.ma_lower_threshold_lbl.setToolTip(
  2219. _("The threshold value, all areas more than this are marked.\n"
  2220. "Can have a value between 0.0000 and 9999.9999")
  2221. )
  2222. self.ma_lower_threshold_entry = FCDoubleSpinner()
  2223. self.ma_lower_threshold_entry.set_precision(self.decimals)
  2224. self.ma_lower_threshold_entry.set_range(0, 10000)
  2225. ma_form_layout.addRow(self.ma_lower_threshold_lbl, self.ma_lower_threshold_entry)
  2226. ma_form_layout.addRow(self.ma_upper_threshold_lbl, self.ma_upper_threshold_entry)
  2227. # Buttons
  2228. hlay_ma = QtWidgets.QHBoxLayout()
  2229. self.ma_tools_box.addLayout(hlay_ma)
  2230. self.ma_threshold_button = QtWidgets.QPushButton(_("Mark"))
  2231. self.ma_threshold_button.setToolTip(
  2232. _("Mark the polygons that fit within limits.")
  2233. )
  2234. hlay_ma.addWidget(self.ma_threshold_button)
  2235. self.ma_delete_button = QtWidgets.QPushButton(_("Delete"))
  2236. self.ma_delete_button.setToolTip(
  2237. _("Delete all the marked polygons.")
  2238. )
  2239. hlay_ma.addWidget(self.ma_delete_button)
  2240. self.ma_clear_button = QtWidgets.QPushButton(_("Clear"))
  2241. self.ma_clear_button.setToolTip(
  2242. _("Clear all the markings.")
  2243. )
  2244. hlay_ma.addWidget(self.ma_clear_button)
  2245. # ######################
  2246. # ### Add Pad Array ####
  2247. # ######################
  2248. # add a frame and inside add a vertical box layout. Inside this vbox layout I add
  2249. # all the add Pad array widgets
  2250. # this way I can hide/show the frame
  2251. self.array_frame = QtWidgets.QFrame()
  2252. self.array_frame.setContentsMargins(0, 0, 0, 0)
  2253. self.custom_box.addWidget(self.array_frame)
  2254. self.array_box = QtWidgets.QVBoxLayout()
  2255. self.array_box.setContentsMargins(0, 0, 0, 0)
  2256. self.array_frame.setLayout(self.array_box)
  2257. self.emptyarray_label = QtWidgets.QLabel('')
  2258. self.array_box.addWidget(self.emptyarray_label)
  2259. self.padarray_label = QtWidgets.QLabel('<b>%s</b>' % _("Add Pad Array"))
  2260. self.padarray_label.setToolTip(
  2261. _("Add an array of pads (linear or circular array)")
  2262. )
  2263. self.array_box.addWidget(self.padarray_label)
  2264. self.array_type_combo = FCComboBox()
  2265. self.array_type_combo.setToolTip(
  2266. _("Select the type of pads array to create.\n"
  2267. "It can be Linear X(Y) or Circular")
  2268. )
  2269. self.array_type_combo.addItem(_("Linear"))
  2270. self.array_type_combo.addItem(_("Circular"))
  2271. self.array_box.addWidget(self.array_type_combo)
  2272. self.array_form = QtWidgets.QFormLayout()
  2273. self.array_box.addLayout(self.array_form)
  2274. self.pad_array_size_label = QtWidgets.QLabel('%s:' % _('Nr of pads'))
  2275. self.pad_array_size_label.setToolTip(
  2276. _("Specify how many pads to be in the array.")
  2277. )
  2278. self.pad_array_size_label.setMinimumWidth(100)
  2279. self.pad_array_size_entry = FCSpinner()
  2280. self.pad_array_size_entry.set_range(1, 9999)
  2281. self.array_form.addRow(self.pad_array_size_label, self.pad_array_size_entry)
  2282. self.array_linear_frame = QtWidgets.QFrame()
  2283. self.array_linear_frame.setContentsMargins(0, 0, 0, 0)
  2284. self.array_box.addWidget(self.array_linear_frame)
  2285. self.linear_box = QtWidgets.QVBoxLayout()
  2286. self.linear_box.setContentsMargins(0, 0, 0, 0)
  2287. self.array_linear_frame.setLayout(self.linear_box)
  2288. self.linear_form = QtWidgets.QFormLayout()
  2289. self.linear_box.addLayout(self.linear_form)
  2290. self.pad_axis_label = QtWidgets.QLabel('%s:' % _('Direction'))
  2291. self.pad_axis_label.setToolTip(
  2292. _("Direction on which the linear array is oriented:\n"
  2293. "- 'X' - horizontal axis \n"
  2294. "- 'Y' - vertical axis or \n"
  2295. "- 'Angle' - a custom angle for the array inclination")
  2296. )
  2297. self.pad_axis_label.setMinimumWidth(100)
  2298. self.pad_axis_radio = RadioSet([{'label': _('X'), 'value': 'X'},
  2299. {'label': _('Y'), 'value': 'Y'},
  2300. {'label': _('Angle'), 'value': 'A'}])
  2301. self.pad_axis_radio.set_value('X')
  2302. self.linear_form.addRow(self.pad_axis_label, self.pad_axis_radio)
  2303. self.pad_pitch_label = QtWidgets.QLabel('%s:' % _('Pitch'))
  2304. self.pad_pitch_label.setToolTip(
  2305. _("Pitch = Distance between elements of the array.")
  2306. )
  2307. self.pad_pitch_label.setMinimumWidth(100)
  2308. self.pad_pitch_entry = FCDoubleSpinner()
  2309. self.pad_pitch_entry.set_precision(self.decimals)
  2310. self.pad_pitch_entry.set_range(0.0000, 9999.9999)
  2311. self.pad_pitch_entry.setSingleStep(0.1)
  2312. self.linear_form.addRow(self.pad_pitch_label, self.pad_pitch_entry)
  2313. self.linear_angle_label = QtWidgets.QLabel('%s:' % _('Angle'))
  2314. self.linear_angle_label.setToolTip(
  2315. _("Angle at which the linear array is placed.\n"
  2316. "The precision is of max 2 decimals.\n"
  2317. "Min value is: -359.99 degrees.\n"
  2318. "Max value is: 360.00 degrees.")
  2319. )
  2320. self.linear_angle_label.setMinimumWidth(100)
  2321. self.linear_angle_spinner = FCDoubleSpinner()
  2322. self.linear_angle_spinner.set_precision(self.decimals)
  2323. self.linear_angle_spinner.setRange(-360.00, 360.00)
  2324. self.linear_form.addRow(self.linear_angle_label, self.linear_angle_spinner)
  2325. self.array_circular_frame = QtWidgets.QFrame()
  2326. self.array_circular_frame.setContentsMargins(0, 0, 0, 0)
  2327. self.array_box.addWidget(self.array_circular_frame)
  2328. self.circular_box = QtWidgets.QVBoxLayout()
  2329. self.circular_box.setContentsMargins(0, 0, 0, 0)
  2330. self.array_circular_frame.setLayout(self.circular_box)
  2331. self.pad_direction_label = QtWidgets.QLabel('%s:' % _('Direction'))
  2332. self.pad_direction_label.setToolTip(
  2333. _("Direction for circular array."
  2334. "Can be CW = clockwise or CCW = counter clockwise.")
  2335. )
  2336. self.pad_direction_label.setMinimumWidth(100)
  2337. self.circular_form = QtWidgets.QFormLayout()
  2338. self.circular_box.addLayout(self.circular_form)
  2339. self.pad_direction_radio = RadioSet([{'label': _('CW'), 'value': 'CW'},
  2340. {'label': _('CCW'), 'value': 'CCW'}])
  2341. self.pad_direction_radio.set_value('CW')
  2342. self.circular_form.addRow(self.pad_direction_label, self.pad_direction_radio)
  2343. self.pad_angle_label = QtWidgets.QLabel('%s:' % _('Angle'))
  2344. self.pad_angle_label.setToolTip(
  2345. _("Angle at which each element in circular array is placed.")
  2346. )
  2347. self.pad_angle_label.setMinimumWidth(100)
  2348. self.pad_angle_entry = FCDoubleSpinner()
  2349. self.pad_angle_entry.set_precision(self.decimals)
  2350. self.pad_angle_entry.set_range(-360.00, 360.00)
  2351. self.pad_angle_entry.setSingleStep(0.1)
  2352. self.circular_form.addRow(self.pad_angle_label, self.pad_angle_entry)
  2353. self.array_circular_frame.hide()
  2354. self.linear_angle_spinner.hide()
  2355. self.linear_angle_label.hide()
  2356. self.array_frame.hide()
  2357. self.custom_box.addStretch()
  2358. layout.addStretch()
  2359. # Editor
  2360. self.exit_editor_button = QtWidgets.QPushButton(_('Exit Editor'))
  2361. self.exit_editor_button.setIcon(QtGui.QIcon(self.app.resource_location + '/power16.png'))
  2362. self.exit_editor_button.setToolTip(
  2363. _("Exit from Editor.")
  2364. )
  2365. self.exit_editor_button.setStyleSheet("""
  2366. QPushButton
  2367. {
  2368. font-weight: bold;
  2369. }
  2370. """)
  2371. layout.addWidget(self.exit_editor_button)
  2372. self.exit_editor_button.clicked.connect(lambda: self.app.editor2object())
  2373. # Toolbar events and properties
  2374. self.tools_gerber = {}
  2375. # # ## Data
  2376. self.active_tool = None
  2377. self.storage_dict = {}
  2378. self.current_storage = []
  2379. self.sorted_apcode = []
  2380. self.new_apertures = {}
  2381. self.new_aperture_macros = {}
  2382. # store here the plot promises, if empty the delayed plot will be activated
  2383. self.grb_plot_promises = []
  2384. # dictionary to store the tool_row and aperture codes in Tool_table
  2385. # it will be updated everytime self.build_ui() is called
  2386. self.oldapcode_newapcode = {}
  2387. self.tid2apcode = {}
  2388. # this will store the value for the last selected tool, for use after clicking on canvas when the selection
  2389. # is cleared but as a side effect also the selected tool is cleared
  2390. self.last_aperture_selected = None
  2391. self.utility = []
  2392. # this will store the polygons marked by mark are to be perhaps deleted
  2393. self.geo_to_delete = []
  2394. # this will flag if the Editor "tools" are launched from key shortcuts (True) or from menu toolbar (False)
  2395. self.launched_from_shortcuts = False
  2396. # this var will store the state of the toolbar before starting the editor
  2397. self.toolbar_old_state = False
  2398. # Init appGUI
  2399. self.apdim_lbl.hide()
  2400. self.apdim_entry.hide()
  2401. self.gerber_obj = None
  2402. self.gerber_obj_options = {}
  2403. # VisPy Visuals
  2404. if self.app.is_legacy is False:
  2405. self.shapes = self.canvas.new_shape_collection(layers=1)
  2406. self.tool_shape = self.canvas.new_shape_collection(layers=1)
  2407. self.ma_annotation = self.canvas.new_text_group()
  2408. else:
  2409. from appGUI.PlotCanvasLegacy import ShapeCollectionLegacy
  2410. self.shapes = ShapeCollectionLegacy(obj=self, app=self.app, name='shapes_grb_editor')
  2411. self.tool_shape = ShapeCollectionLegacy(obj=self, app=self.app, name='tool_shapes_grb_editor')
  2412. self.ma_annotation = ShapeCollectionLegacy(
  2413. obj=self,
  2414. app=self.app,
  2415. name='ma_anno_grb_editor',
  2416. annotation_job=True)
  2417. self.app.pool_recreated.connect(self.pool_recreated)
  2418. # Event signals disconnect id holders
  2419. self.mp = None
  2420. self.mm = None
  2421. self.mr = None
  2422. # Remove from scene
  2423. self.shapes.enabled = False
  2424. self.tool_shape.enabled = False
  2425. # List of selected geometric elements.
  2426. self.selected = []
  2427. self.key = None # Currently pressed key
  2428. self.modifiers = None
  2429. self.x = None # Current mouse cursor pos
  2430. self.y = None
  2431. # Current snapped mouse pos
  2432. self.snap_x = None
  2433. self.snap_y = None
  2434. self.pos = None
  2435. # used in FCRegion and FCTrack. Will store the bending mode
  2436. self.bend_mode = 1
  2437. # signal that there is an action active like polygon or path
  2438. self.in_action = False
  2439. # this will flag if the Editor "tools" are launched from key shortcuts (True) or from menu toolbar (False)
  2440. self.launched_from_shortcuts = False
  2441. def_tol_val = float(self.app.defaults["global_tolerance"])
  2442. self.tolerance = def_tol_val if self.units == 'MM'else def_tol_val / 20
  2443. self.options = {
  2444. "global_gridx": 0.1,
  2445. "global_gridy": 0.1,
  2446. "snap_max": 0.05,
  2447. "grid_snap": True,
  2448. "corner_snap": False,
  2449. "grid_gap_link": True
  2450. }
  2451. self.options.update(self.app.options)
  2452. for option in self.options:
  2453. if option in self.app.options:
  2454. self.options[option] = self.app.options[option]
  2455. # flag to show if the object was modified
  2456. self.is_modified = False
  2457. self.edited_obj_name = ""
  2458. self.tool_row = 0
  2459. # Multiprocessing pool
  2460. self.pool = self.app.pool
  2461. # Multiprocessing results
  2462. self.results = []
  2463. # A QTimer
  2464. self.plot_thread = None
  2465. # a QThread for the edit process
  2466. self.thread = QtCore.QThread()
  2467. # def entry2option(option, entry):
  2468. # self.options[option] = float(entry.text())
  2469. self.transform_tool = TransformEditorTool(self.app, self)
  2470. # #############################################################################################################
  2471. # ######################### Gerber Editor Signals #############################################################
  2472. # #############################################################################################################
  2473. # connect the toolbar signals
  2474. self.connect_grb_toolbar_signals()
  2475. self.buffer_button.clicked.connect(self.on_buffer)
  2476. self.scale_button.clicked.connect(self.on_scale)
  2477. self.app.ui.aperture_delete_btn.triggered.connect(self.on_delete_btn)
  2478. self.name_entry.returnPressed.connect(self.on_name_activate)
  2479. self.aptype_cb.currentIndexChanged[str].connect(self.on_aptype_changed)
  2480. self.addaperture_btn.clicked.connect(self.on_aperture_add)
  2481. self.apsize_entry.returnPressed.connect(self.on_aperture_add)
  2482. self.apdim_entry.returnPressed.connect(self.on_aperture_add)
  2483. self.delaperture_btn.clicked.connect(self.on_aperture_delete)
  2484. self.apertures_table.cellPressed.connect(self.on_row_selected)
  2485. self.app.ui.grb_add_pad_menuitem.triggered.connect(self.on_pad_add)
  2486. self.app.ui.grb_add_pad_array_menuitem.triggered.connect(self.on_pad_add_array)
  2487. self.app.ui.grb_add_track_menuitem.triggered.connect(self.on_track_add)
  2488. self.app.ui.grb_add_region_menuitem.triggered.connect(self.on_region_add)
  2489. self.app.ui.grb_convert_poly_menuitem.triggered.connect(self.on_poligonize)
  2490. self.app.ui.grb_add_semidisc_menuitem.triggered.connect(self.on_add_semidisc)
  2491. self.app.ui.grb_add_disc_menuitem.triggered.connect(self.on_disc_add)
  2492. self.app.ui.grb_add_buffer_menuitem.triggered.connect(self.on_buffer)
  2493. self.app.ui.grb_add_scale_menuitem.triggered.connect(self.on_scale)
  2494. self.app.ui.grb_add_eraser_menuitem.triggered.connect(self.on_eraser)
  2495. self.app.ui.grb_add_markarea_menuitem.triggered.connect(self.on_markarea)
  2496. self.app.ui.grb_transform_menuitem.triggered.connect(self.transform_tool.run)
  2497. self.app.ui.grb_copy_menuitem.triggered.connect(self.on_copy_button)
  2498. self.app.ui.grb_delete_menuitem.triggered.connect(self.on_delete_btn)
  2499. self.app.ui.grb_move_menuitem.triggered.connect(self.on_move_button)
  2500. self.array_type_combo.currentIndexChanged.connect(self.on_array_type_combo)
  2501. self.pad_axis_radio.activated_custom.connect(self.on_linear_angle_radio)
  2502. self.mp_finished.connect(self.on_multiprocessing_finished)
  2503. self.conversion_factor = 1
  2504. self.apertures_row = 0
  2505. self.complete = True
  2506. self.set_ui()
  2507. log.debug("Initialization of the Gerber Editor is finished ...")
  2508. def make_callback(self, the_tool):
  2509. def f():
  2510. self.on_tool_select(the_tool)
  2511. return f
  2512. def connect_grb_toolbar_signals(self):
  2513. self.tools_gerber.update({
  2514. "select": {"button": self.app.ui.grb_select_btn, "constructor": FCApertureSelect},
  2515. "pad": {"button": self.app.ui.grb_add_pad_btn, "constructor": FCPad},
  2516. "array": {"button": self.app.ui.add_pad_ar_btn, "constructor": FCPadArray},
  2517. "track": {"button": self.app.ui.grb_add_track_btn, "constructor": FCTrack},
  2518. "region": {"button": self.app.ui.grb_add_region_btn, "constructor": FCRegion},
  2519. "poligonize": {"button": self.app.ui.grb_convert_poly_btn, "constructor": FCPoligonize},
  2520. "semidisc": {"button": self.app.ui.grb_add_semidisc_btn, "constructor": FCSemiDisc},
  2521. "disc": {"button": self.app.ui.grb_add_disc_btn, "constructor": FCDisc},
  2522. "buffer": {"button": self.app.ui.aperture_buffer_btn, "constructor": FCBuffer},
  2523. "scale": {"button": self.app.ui.aperture_scale_btn, "constructor": FCScale},
  2524. "markarea": {"button": self.app.ui.aperture_markarea_btn, "constructor": FCMarkArea},
  2525. "eraser": {"button": self.app.ui.aperture_eraser_btn, "constructor": FCEraser},
  2526. "copy": {"button": self.app.ui.aperture_copy_btn, "constructor": FCApertureCopy},
  2527. "transform": {"button": self.app.ui.grb_transform_btn, "constructor": FCTransform},
  2528. "move": {"button": self.app.ui.aperture_move_btn, "constructor": FCApertureMove},
  2529. })
  2530. for tool in self.tools_gerber:
  2531. self.tools_gerber[tool]["button"].triggered.connect(self.make_callback(tool)) # Events
  2532. self.tools_gerber[tool]["button"].setCheckable(True)
  2533. def pool_recreated(self, pool):
  2534. self.shapes.pool = pool
  2535. self.tool_shape.pool = pool
  2536. self.pool = pool
  2537. def set_ui(self):
  2538. # updated units
  2539. self.units = self.app.defaults['units'].upper()
  2540. self.decimals = self.app.decimals
  2541. self.oldapcode_newapcode.clear()
  2542. self.tid2apcode.clear()
  2543. # update the oldapcode_newapcode dict to make sure we have an updated state of the tool_table
  2544. for key in self.storage_dict:
  2545. self.oldapcode_newapcode[key] = key
  2546. sort_temp = []
  2547. for aperture in self.oldapcode_newapcode:
  2548. sort_temp.append(int(aperture))
  2549. self.sorted_apcode = sorted(sort_temp)
  2550. # populate self.intial_table_rows dict with the tool number as keys and aperture codes as values
  2551. for i in range(len(self.sorted_apcode)):
  2552. tt_aperture = self.sorted_apcode[i]
  2553. self.tid2apcode[i + 1] = tt_aperture
  2554. # Init appGUI
  2555. self.buffer_distance_entry.set_value(self.app.defaults["gerber_editor_buff_f"])
  2556. self.scale_factor_entry.set_value(self.app.defaults["gerber_editor_scale_f"])
  2557. self.ma_upper_threshold_entry.set_value(self.app.defaults["gerber_editor_ma_high"])
  2558. self.ma_lower_threshold_entry.set_value(self.app.defaults["gerber_editor_ma_low"])
  2559. self.apsize_entry.set_value(self.app.defaults["gerber_editor_newsize"])
  2560. self.aptype_cb.set_value(self.app.defaults["gerber_editor_newtype"])
  2561. self.apdim_entry.set_value(self.app.defaults["gerber_editor_newdim"])
  2562. self.pad_array_size_entry.set_value(int(self.app.defaults["gerber_editor_array_size"]))
  2563. # linear array
  2564. self.pad_axis_radio.set_value(self.app.defaults["gerber_editor_lin_axis"])
  2565. self.pad_pitch_entry.set_value(float(self.app.defaults["gerber_editor_lin_pitch"]))
  2566. self.linear_angle_spinner.set_value(self.app.defaults["gerber_editor_lin_angle"])
  2567. # circular array
  2568. self.pad_direction_radio.set_value(self.app.defaults["gerber_editor_circ_dir"])
  2569. self.pad_angle_entry.set_value(float(self.app.defaults["gerber_editor_circ_angle"]))
  2570. def build_ui(self, first_run=None):
  2571. try:
  2572. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  2573. self.apertures_table.itemChanged.disconnect()
  2574. except (TypeError, AttributeError):
  2575. pass
  2576. try:
  2577. self.apertures_table.cellPressed.disconnect()
  2578. except (TypeError, AttributeError):
  2579. pass
  2580. # updated units
  2581. self.units = self.app.defaults['units'].upper()
  2582. # make a new name for the new Excellon object (the one with edited content)
  2583. self.edited_obj_name = self.gerber_obj.options['name']
  2584. self.name_entry.set_value(self.edited_obj_name)
  2585. self.apertures_row = 0
  2586. # aper_no = self.apertures_row + 1
  2587. sort = []
  2588. for k, v in list(self.storage_dict.items()):
  2589. sort.append(int(k))
  2590. sorted_apertures = sorted(sort)
  2591. # sort = []
  2592. # for k, v in list(self.gerber_obj.aperture_macros.items()):
  2593. # sort.append(k)
  2594. # sorted_macros = sorted(sort)
  2595. # n = len(sorted_apertures) + len(sorted_macros)
  2596. n = len(sorted_apertures)
  2597. self.apertures_table.setRowCount(n)
  2598. for ap_code in sorted_apertures:
  2599. ap_code = str(ap_code)
  2600. ap_code_item = QtWidgets.QTableWidgetItem('%d' % int(self.apertures_row + 1))
  2601. ap_code_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2602. self.apertures_table.setItem(self.apertures_row, 0, ap_code_item) # Tool name/id
  2603. ap_code_item = QtWidgets.QTableWidgetItem(ap_code)
  2604. ap_code_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2605. ap_type_item = QtWidgets.QTableWidgetItem(str(self.storage_dict[ap_code]['type']))
  2606. ap_type_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2607. if str(self.storage_dict[ap_code]['type']) == 'R' or str(self.storage_dict[ap_code]['type']) == 'O':
  2608. ap_dim_item = QtWidgets.QTableWidgetItem(
  2609. '%.*f, %.*f' % (self.decimals, self.storage_dict[ap_code]['width'],
  2610. self.decimals, self.storage_dict[ap_code]['height']
  2611. )
  2612. )
  2613. ap_dim_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsEditable)
  2614. elif str(self.storage_dict[ap_code]['type']) == 'P':
  2615. ap_dim_item = QtWidgets.QTableWidgetItem(
  2616. '%.*f, %.*f' % (self.decimals, self.storage_dict[ap_code]['diam'],
  2617. self.decimals, self.storage_dict[ap_code]['nVertices'])
  2618. )
  2619. ap_dim_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsEditable)
  2620. else:
  2621. ap_dim_item = QtWidgets.QTableWidgetItem('')
  2622. ap_dim_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2623. try:
  2624. if self.storage_dict[ap_code]['size'] is not None:
  2625. ap_size_item = QtWidgets.QTableWidgetItem('%.*f' % (self.decimals,
  2626. float(self.storage_dict[ap_code]['size'])))
  2627. else:
  2628. ap_size_item = QtWidgets.QTableWidgetItem('')
  2629. except KeyError:
  2630. ap_size_item = QtWidgets.QTableWidgetItem('')
  2631. if str(self.storage_dict[ap_code]['type']) == 'C':
  2632. ap_size_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled | QtCore.Qt.ItemIsEditable)
  2633. else:
  2634. ap_size_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2635. self.apertures_table.setItem(self.apertures_row, 1, ap_code_item) # Aperture Code
  2636. self.apertures_table.setItem(self.apertures_row, 2, ap_type_item) # Aperture Type
  2637. self.apertures_table.setItem(self.apertures_row, 3, ap_size_item) # Aperture Size
  2638. self.apertures_table.setItem(self.apertures_row, 4, ap_dim_item) # Aperture Dimensions
  2639. self.apertures_row += 1
  2640. if first_run is True:
  2641. # set now the last aperture selected
  2642. self.last_aperture_selected = ap_code
  2643. # for ap_code in sorted_macros:
  2644. # ap_code = str(ap_code)
  2645. #
  2646. # ap_code_item = QtWidgets.QTableWidgetItem('%d' % int(self.apertures_row + 1))
  2647. # ap_code_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2648. # self.apertures_table.setItem(self.apertures_row, 0, ap_code_item) # Tool name/id
  2649. #
  2650. # ap_code_item = QtWidgets.QTableWidgetItem(ap_code)
  2651. #
  2652. # ap_type_item = QtWidgets.QTableWidgetItem('AM')
  2653. # ap_type_item.setFlags(QtCore.Qt.ItemIsEnabled)
  2654. #
  2655. # self.apertures_table.setItem(self.apertures_row, 1, ap_code_item) # Aperture Code
  2656. # self.apertures_table.setItem(self.apertures_row, 2, ap_type_item) # Aperture Type
  2657. #
  2658. # self.apertures_row += 1
  2659. # if first_run is True:
  2660. # # set now the last aperture selected
  2661. # self.last_aperture_selected = ap_code
  2662. self.apertures_table.selectColumn(0)
  2663. self.apertures_table.resizeColumnsToContents()
  2664. self.apertures_table.resizeRowsToContents()
  2665. vertical_header = self.apertures_table.verticalHeader()
  2666. # vertical_header.setSectionResizeMode(QtWidgets.QHeaderView.ResizeToContents)
  2667. vertical_header.hide()
  2668. self.apertures_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2669. horizontal_header = self.apertures_table.horizontalHeader()
  2670. horizontal_header.setMinimumSectionSize(10)
  2671. horizontal_header.setDefaultSectionSize(70)
  2672. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  2673. horizontal_header.resizeSection(0, 27)
  2674. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.ResizeToContents)
  2675. horizontal_header.setSectionResizeMode(2, QtWidgets.QHeaderView.ResizeToContents)
  2676. horizontal_header.setSectionResizeMode(3, QtWidgets.QHeaderView.ResizeToContents)
  2677. horizontal_header.setSectionResizeMode(4, QtWidgets.QHeaderView.Stretch)
  2678. self.apertures_table.setHorizontalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2679. self.apertures_table.setSortingEnabled(False)
  2680. self.apertures_table.setMinimumHeight(self.apertures_table.getHeight())
  2681. self.apertures_table.setMaximumHeight(self.apertures_table.getHeight())
  2682. # make sure no rows are selected so the user have to click the correct row, meaning selecting the correct tool
  2683. self.apertures_table.clearSelection()
  2684. # Remove anything else in the GUI Properties Tab
  2685. self.app.ui.properties_scroll_area.takeWidget()
  2686. # Put ourselves in the GUI Properties Tab
  2687. self.app.ui.properties_scroll_area.setWidget(self.grb_edit_widget)
  2688. # Switch notebook to Properties page
  2689. self.app.ui.notebook.setCurrentWidget(self.app.ui.properties_tab)
  2690. # we reactivate the signals after the after the tool adding as we don't need to see the tool been populated
  2691. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2692. self.apertures_table.cellPressed.connect(self.on_row_selected)
  2693. # for convenience set the next aperture code in the apcode field
  2694. try:
  2695. self.apcode_entry.set_value(max(self.tid2apcode.values()) + 1)
  2696. except ValueError:
  2697. # this means that the edited object has no apertures so we start with 10 (Gerber specifications)
  2698. self.apcode_entry.set_value(self.app.defaults["gerber_editor_newcode"])
  2699. def on_aperture_add(self, apcode=None):
  2700. self.is_modified = True
  2701. if apcode:
  2702. ap_code = apcode
  2703. else:
  2704. try:
  2705. ap_code = str(self.apcode_entry.get_value())
  2706. except ValueError:
  2707. self.app.inform.emit('[WARNING_NOTCL] %s' %
  2708. _("Aperture code value is missing or wrong format. Add it and retry."))
  2709. return
  2710. if ap_code == '':
  2711. self.app.inform.emit('[WARNING_NOTCL] %s' %
  2712. _("Aperture code value is missing or wrong format. Add it and retry."))
  2713. return
  2714. if ap_code == '0':
  2715. if ap_code not in self.tid2apcode:
  2716. self.storage_dict[ap_code] = {}
  2717. self.storage_dict[ap_code]['type'] = 'REG'
  2718. size_val = 0
  2719. self.apsize_entry.set_value(size_val)
  2720. self.storage_dict[ap_code]['size'] = size_val
  2721. self.storage_dict[ap_code]['geometry'] = []
  2722. # self.oldapcode_newapcode dict keeps the evidence on current aperture codes as keys and
  2723. # gets updated on values each time a aperture code is edited or added
  2724. self.oldapcode_newapcode[ap_code] = ap_code
  2725. else:
  2726. if ap_code not in self.oldapcode_newapcode:
  2727. self.storage_dict[ap_code] = {}
  2728. type_val = self.aptype_cb.currentText()
  2729. self.storage_dict[ap_code]['type'] = type_val
  2730. if type_val == 'R' or type_val == 'O':
  2731. try:
  2732. dims = self.apdim_entry.get_value()
  2733. self.storage_dict[ap_code]['width'] = dims[0]
  2734. self.storage_dict[ap_code]['height'] = dims[1]
  2735. size_val = np.sqrt((dims[0] ** 2) + (dims[1] ** 2))
  2736. self.apsize_entry.set_value(size_val)
  2737. except Exception as e:
  2738. log.error("AppGerberEditor.on_aperture_add() --> the R or O aperture dims has to be in a "
  2739. "tuple format (x,y)\nError: %s" % str(e))
  2740. self.app.inform.emit('[WARNING_NOTCL] %s' %
  2741. _("Aperture dimensions value is missing or wrong format. "
  2742. "Add it in format (width, height) and retry."))
  2743. return
  2744. else:
  2745. try:
  2746. size_val = float(self.apsize_entry.get_value())
  2747. except ValueError:
  2748. # try to convert comma to decimal point. if it's still not working error message and return
  2749. try:
  2750. size_val = float(self.apsize_entry.get_value().replace(',', '.'))
  2751. self.apsize_entry.set_value(size_val)
  2752. except ValueError:
  2753. self.app.inform.emit('[WARNING_NOTCL] %s' %
  2754. _("Aperture size value is missing or wrong format. Add it and retry."))
  2755. return
  2756. self.storage_dict[ap_code]['size'] = size_val
  2757. self.storage_dict[ap_code]['geometry'] = []
  2758. # self.oldapcode_newapcode dict keeps the evidence on current aperture codes as keys and gets updated on
  2759. # values each time a aperture code is edited or added
  2760. self.oldapcode_newapcode[ap_code] = ap_code
  2761. else:
  2762. self.app.inform.emit('[WARNING_NOTCL] %s' %
  2763. _("Aperture already in the aperture table."))
  2764. return
  2765. # since we add a new tool, we update also the initial state of the tool_table through it's dictionary
  2766. # we add a new entry in the tid2apcode dict
  2767. self.tid2apcode[len(self.oldapcode_newapcode)] = int(ap_code)
  2768. self.app.inform.emit('[success] %s: %s' % (_("Added new aperture with code"), str(ap_code)))
  2769. self.build_ui()
  2770. self.last_aperture_selected = ap_code
  2771. # make a quick sort through the tid2apcode dict so we find which row to select
  2772. row_to_be_selected = None
  2773. for key in sorted(self.tid2apcode):
  2774. if self.tid2apcode[key] == int(ap_code):
  2775. row_to_be_selected = int(key) - 1
  2776. break
  2777. self.apertures_table.selectRow(row_to_be_selected)
  2778. def on_aperture_delete(self, ap_code=None):
  2779. """
  2780. Called for aperture deletion.
  2781. :param ap_code: An Aperture code; String
  2782. :return:
  2783. """
  2784. self.is_modified = True
  2785. try:
  2786. if ap_code:
  2787. try:
  2788. deleted_apcode_list = [dd for dd in ap_code]
  2789. except TypeError:
  2790. deleted_apcode_list = [ap_code]
  2791. else:
  2792. # deleted_tool_dia = float(self.apertures_table.item(self.apertures_table.currentRow(), 1).text())
  2793. if len(self.apertures_table.selectionModel().selectedRows()) == 0:
  2794. self.app.inform.emit('[WARNING_NOTCL] %s' % _(" Select an aperture in Aperture Table"))
  2795. return
  2796. deleted_apcode_list = []
  2797. for index in self.apertures_table.selectionModel().selectedRows():
  2798. row = index.row()
  2799. deleted_apcode_list.append(self.apertures_table.item(row, 1).text())
  2800. except Exception as exc:
  2801. self.app.inform.emit('[WARNING_NOTCL] %s %s' % (_("Select an aperture in Aperture Table -->", str(exc))))
  2802. return
  2803. if deleted_apcode_list:
  2804. for deleted_aperture in deleted_apcode_list:
  2805. # delete the storage used for that tool
  2806. self.storage_dict.pop(deleted_aperture, None)
  2807. for deleted_tool in list(self.tid2apcode.keys()):
  2808. if self.tid2apcode[deleted_tool] == deleted_aperture:
  2809. # delete the tool
  2810. self.tid2apcode.pop(deleted_tool, None)
  2811. self.oldapcode_newapcode.pop(deleted_aperture, None)
  2812. self.app.inform.emit('[success] %s: %s' % (_("Deleted aperture with code"), str(deleted_aperture)))
  2813. self.plot_all()
  2814. self.build_ui()
  2815. # if last aperture selected was in the apertures deleted than make sure to select a
  2816. # 'new' last aperture selected because there are tools who depend on it.
  2817. # if there is no aperture left, then add a default one :)
  2818. if self.last_aperture_selected in deleted_apcode_list:
  2819. if self.apertures_table.rowCount() == 0:
  2820. self.on_aperture_add('10')
  2821. self.last_aperture_selected = '10'
  2822. else:
  2823. self.last_aperture_selected = self.apertures_table.item(0, 1).text()
  2824. def on_tool_edit(self):
  2825. if self.apertures_table.currentItem() is None:
  2826. return
  2827. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  2828. self.apertures_table.itemChanged.disconnect()
  2829. # self.apertures_table.cellPressed.disconnect()
  2830. self.is_modified = True
  2831. val_edited = None
  2832. row_of_item_changed = self.apertures_table.currentRow()
  2833. col_of_item_changed = self.apertures_table.currentColumn()
  2834. # rows start with 0, tools start with 1 so we adjust the value by 1
  2835. key_in_tid2apcode = row_of_item_changed + 1
  2836. ap_code_old = str(self.tid2apcode[key_in_tid2apcode])
  2837. ap_code_new = self.apertures_table.item(row_of_item_changed, 1).text()
  2838. if col_of_item_changed == 1:
  2839. # we edited the Aperture Code column (int)
  2840. try:
  2841. val_edited = int(self.apertures_table.currentItem().text())
  2842. except ValueError as e:
  2843. log.debug("AppGerberEditor.on_tool_edit() --> %s" % str(e))
  2844. # self.apertures_table.setCurrentItem(None)
  2845. # we reactivate the signals after the after the tool editing
  2846. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2847. return
  2848. elif col_of_item_changed == 3:
  2849. # we edited the Size column (float)
  2850. try:
  2851. val_edited = float(self.apertures_table.currentItem().text())
  2852. except ValueError as e:
  2853. log.debug("AppGerberEditor.on_tool_edit() --> %s" % str(e))
  2854. # self.apertures_table.setCurrentItem(None)
  2855. # we reactivate the signals after the after the tool editing
  2856. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2857. return
  2858. elif col_of_item_changed == 4:
  2859. # we edit the Dimensions column (tuple)
  2860. try:
  2861. val_edited = [
  2862. float(x.strip()) for x in self.apertures_table.currentItem().text().split(",") if x != ''
  2863. ]
  2864. except ValueError as e:
  2865. log.debug("AppGerberEditor.on_tool_edit() --> %s" % str(e))
  2866. # we reactivate the signals after the after the tool editing
  2867. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2868. return
  2869. if len(val_edited) != 2:
  2870. self.app.inform.emit("[WARNING_NOTCL] %s" % _("Dimensions need two float values separated by comma."))
  2871. old_dims_txt = '%s, %s' % (str(self.storage_dict[ap_code_new]['width']),
  2872. str(self.storage_dict[ap_code_new]['height']))
  2873. self.apertures_table.currentItem().setText(old_dims_txt)
  2874. # we reactivate the signals after the after the tool editing
  2875. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2876. return
  2877. else:
  2878. self.app.inform.emit("[success] %s" % _("Dimensions edited."))
  2879. # In case we edited the Aperture Code therefore the val_edited holds a new Aperture Code
  2880. # TODO Edit of the Aperture Code is not active yet
  2881. if col_of_item_changed == 1:
  2882. # aperture code is not used so we create a new Aperture with the desired Aperture Code
  2883. if val_edited not in self.oldapcode_newapcode.values():
  2884. # update the dict that holds as keys old Aperture Codes and as values the new Aperture Codes
  2885. self.oldapcode_newapcode[ap_code_old] = val_edited
  2886. # update the dict that holds tool_no as key and tool_dia as value
  2887. self.tid2apcode[key_in_tid2apcode] = val_edited
  2888. old_aperture_val = self.storage_dict.pop(ap_code_old)
  2889. self.storage_dict[val_edited] = old_aperture_val
  2890. else:
  2891. # aperture code is already in use so we move the pads from the prior tool to the new tool
  2892. # but only if they are of the same type
  2893. if self.storage_dict[ap_code_old]['type'] == self.storage_dict[ap_code_new]['type']:
  2894. # TODO I have to work here; if type == 'R' or 'O' have t otake care of all attributes ...
  2895. factor = val_edited / float(ap_code_old)
  2896. geometry = []
  2897. for geo_el in self.storage_dict[ap_code_old]:
  2898. geometric_data = geo_el.geo
  2899. new_geo_el = {}
  2900. if 'solid' in geometric_data:
  2901. new_geo_el['solid'] = deepcopy(affinity.scale(geometric_data['solid'],
  2902. xfact=factor, yfact=factor))
  2903. if 'follow' in geometric_data:
  2904. new_geo_el['follow'] = deepcopy(affinity.scale(geometric_data['follow'],
  2905. xfact=factor, yfact=factor))
  2906. if 'clear' in geometric_data:
  2907. new_geo_el['clear'] = deepcopy(affinity.scale(geometric_data['clear'],
  2908. xfact=factor, yfact=factor))
  2909. geometry.append(new_geo_el)
  2910. self.add_gerber_shape(geometry, self.storage_dict[val_edited])
  2911. self.on_aperture_delete(apcode=ap_code_old)
  2912. # In case we edited the Size of the Aperture therefore the val_edited holds the new Aperture Size
  2913. # It will happen only for the Aperture Type == 'C' - I make sure of that in the self.build_ui()
  2914. elif col_of_item_changed == 3:
  2915. old_size = float(self.storage_dict[ap_code_old]['size'])
  2916. new_size = float(val_edited)
  2917. adjust_size = (new_size - old_size) / 2
  2918. geometry = []
  2919. for geo_el in self.storage_dict[ap_code_old]['geometry']:
  2920. g_data = geo_el.geo
  2921. new_geo_el = {}
  2922. if 'solid' in g_data:
  2923. if 'follow' in g_data:
  2924. if isinstance(g_data['follow'], Point):
  2925. new_geo_el['solid'] = deepcopy(g_data['solid'].buffer(adjust_size))
  2926. else:
  2927. new_geo_el['solid'] = deepcopy(g_data['solid'].buffer(adjust_size, join_style=2))
  2928. if 'follow' in g_data:
  2929. new_geo_el['follow'] = deepcopy(g_data['follow'])
  2930. if 'clear' in g_data:
  2931. new_geo_el['clear'] = deepcopy(g_data['clear'].buffer(adjust_size, join_style=2))
  2932. geometry.append(DrawToolShape(new_geo_el))
  2933. self.storage_dict[ap_code_old]['geometry'].clear()
  2934. self.add_gerber_shape(geometry, self.storage_dict[ap_code_old]['geometry'])
  2935. # self.storage_dict[ap_code_old]['geometry'] = geometry
  2936. # In case we edited the Dims of the Aperture therefore the val_edited holds a list with the dimensions
  2937. # in the format [width, height]
  2938. # It will happen only for the Aperture Type in ['R', 'O'] - I make sure of that in the self.build_ui()
  2939. # and below
  2940. elif col_of_item_changed == 4:
  2941. if str(self.storage_dict[ap_code_old]['type']) == 'R' or str(self.storage_dict[ap_code_old]['type']) == 'O':
  2942. # use the biggest from them
  2943. buff_val_lines = max(val_edited)
  2944. new_width = val_edited[0]
  2945. new_height = val_edited[1]
  2946. geometry = []
  2947. for geo_el in self.storage_dict[ap_code_old]['geometry']:
  2948. g_data = geo_el.geo
  2949. new_geo_el = {}
  2950. if 'solid' in g_data:
  2951. if 'follow' in g_data:
  2952. if isinstance(g_data['follow'], Point):
  2953. x = g_data['follow'].x
  2954. y = g_data['follow'].y
  2955. minx = x - (new_width / 2)
  2956. miny = y - (new_height / 2)
  2957. maxx = x + (new_width / 2)
  2958. maxy = y + (new_height / 2)
  2959. geo = box(minx=minx, miny=miny, maxx=maxx, maxy=maxy)
  2960. new_geo_el['solid'] = deepcopy(geo)
  2961. else:
  2962. new_geo_el['solid'] = deepcopy(g_data['solid'].buffer(buff_val_lines))
  2963. if 'follow' in g_data:
  2964. new_geo_el['follow'] = deepcopy(g_data['follow'])
  2965. if 'clear' in g_data:
  2966. if 'follow' in g_data:
  2967. if isinstance(g_data['follow'], Point):
  2968. x = g_data['follow'].x
  2969. y = g_data['follow'].y
  2970. minx = x - (new_width / 2)
  2971. miny = y - (new_height / 2)
  2972. maxx = x + (new_width / 2)
  2973. maxy = y + (new_height / 2)
  2974. geo = box(minx=minx, miny=miny, maxx=maxx, maxy=maxy)
  2975. new_geo_el['clear'] = deepcopy(geo)
  2976. else:
  2977. new_geo_el['clear'] = deepcopy(g_data['clear'].buffer(buff_val_lines, join_style=2))
  2978. geometry.append(DrawToolShape(new_geo_el))
  2979. self.storage_dict[ap_code_old]['geometry'].clear()
  2980. self.add_gerber_shape(geometry, self.storage_dict[ap_code_old]['geometry'])
  2981. self.plot_all()
  2982. # we reactivate the signals after the after the tool editing
  2983. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  2984. # self.apertures_table.cellPressed.connect(self.on_row_selected)
  2985. def on_name_activate(self):
  2986. self.edited_obj_name = self.name_entry.get_value()
  2987. def on_aptype_changed(self, current_text):
  2988. # 'O' is letter O not zero.
  2989. if current_text == 'R' or current_text == 'O':
  2990. self.apdim_lbl.show()
  2991. self.apdim_entry.show()
  2992. self.apsize_entry.setDisabled(True)
  2993. else:
  2994. self.apdim_lbl.hide()
  2995. self.apdim_entry.hide()
  2996. self.apsize_entry.setDisabled(False)
  2997. def activate_grb_editor(self):
  2998. # adjust the status of the menu entries related to the editor
  2999. self.app.ui.menueditedit.setDisabled(True)
  3000. self.app.ui.menueditok.setDisabled(False)
  3001. # adjust the visibility of some of the canvas context menu
  3002. self.app.ui.popmenu_edit.setVisible(False)
  3003. self.app.ui.popmenu_save.setVisible(True)
  3004. self.connect_canvas_event_handlers()
  3005. # init working objects
  3006. self.storage_dict = {}
  3007. self.current_storage = []
  3008. self.sorted_apcode = []
  3009. self.new_apertures = {}
  3010. self.new_aperture_macros = {}
  3011. self.grb_plot_promises = []
  3012. self.oldapcode_newapcode = {}
  3013. self.tid2apcode = {}
  3014. self.shapes.enabled = True
  3015. self.tool_shape.enabled = True
  3016. self.app.ui.corner_snap_btn.setVisible(True)
  3017. self.app.ui.snap_magnet.setVisible(True)
  3018. self.app.ui.grb_editor_menu.setDisabled(False)
  3019. self.app.ui.grb_editor_menu.menuAction().setVisible(True)
  3020. self.app.ui.update_obj_btn.setEnabled(True)
  3021. self.app.ui.grb_editor_cmenu.setEnabled(True)
  3022. self.app.ui.grb_edit_toolbar.setDisabled(False)
  3023. self.app.ui.grb_edit_toolbar.setVisible(True)
  3024. # self.app.ui.grid_toolbar.setDisabled(False)
  3025. # start with GRID toolbar activated
  3026. if self.app.ui.grid_snap_btn.isChecked() is False:
  3027. self.app.ui.grid_snap_btn.trigger()
  3028. # adjust the visibility of some of the canvas context menu
  3029. self.app.ui.popmenu_edit.setVisible(False)
  3030. self.app.ui.popmenu_save.setVisible(True)
  3031. self.app.ui.popmenu_disable.setVisible(False)
  3032. self.app.ui.cmenu_newmenu.menuAction().setVisible(False)
  3033. self.app.ui.popmenu_properties.setVisible(False)
  3034. self.app.ui.grb_editor_cmenu.menuAction().setVisible(True)
  3035. def deactivate_grb_editor(self):
  3036. try:
  3037. QtGui.QGuiApplication.restoreOverrideCursor()
  3038. except Exception as e:
  3039. log.debug("AppGerberEditor.deactivate_grb_editor() --> %s" % str(e))
  3040. self.clear()
  3041. # adjust the status of the menu entries related to the editor
  3042. self.app.ui.menueditedit.setDisabled(False)
  3043. self.app.ui.menueditok.setDisabled(True)
  3044. # adjust the visibility of some of the canvas context menu
  3045. self.app.ui.popmenu_edit.setVisible(True)
  3046. self.app.ui.popmenu_save.setVisible(False)
  3047. self.disconnect_canvas_event_handlers()
  3048. self.app.ui.grb_edit_toolbar.setDisabled(True)
  3049. self.app.ui.corner_snap_btn.setVisible(False)
  3050. self.app.ui.snap_magnet.setVisible(False)
  3051. # set the Editor Toolbar visibility to what was before entering in the Editor
  3052. self.app.ui.grb_edit_toolbar.setVisible(False) if self.toolbar_old_state is False \
  3053. else self.app.ui.grb_edit_toolbar.setVisible(True)
  3054. # Disable visuals
  3055. self.shapes.enabled = False
  3056. self.tool_shape.enabled = False
  3057. # self.app.app_cursor.enabled = False
  3058. self.app.ui.grb_editor_menu.setDisabled(True)
  3059. self.app.ui.grb_editor_menu.menuAction().setVisible(False)
  3060. self.app.ui.update_obj_btn.setEnabled(False)
  3061. # adjust the visibility of some of the canvas context menu
  3062. self.app.ui.popmenu_edit.setVisible(True)
  3063. self.app.ui.popmenu_save.setVisible(False)
  3064. self.app.ui.popmenu_disable.setVisible(True)
  3065. self.app.ui.cmenu_newmenu.menuAction().setVisible(True)
  3066. self.app.ui.popmenu_properties.setVisible(True)
  3067. self.app.ui.g_editor_cmenu.menuAction().setVisible(False)
  3068. self.app.ui.e_editor_cmenu.menuAction().setVisible(False)
  3069. self.app.ui.grb_editor_cmenu.menuAction().setVisible(False)
  3070. # Show original geometry
  3071. if self.gerber_obj:
  3072. self.gerber_obj.visible = True
  3073. def connect_canvas_event_handlers(self):
  3074. # Canvas events
  3075. # make sure that the shortcuts key and mouse events will no longer be linked to the methods from FlatCAMApp
  3076. # but those from AppGeoEditor
  3077. # first connect to new, then disconnect the old handlers
  3078. # don't ask why but if there is nothing connected I've seen issues
  3079. self.mp = self.canvas.graph_event_connect('mouse_press', self.on_canvas_click)
  3080. self.mm = self.canvas.graph_event_connect('mouse_move', self.on_canvas_move)
  3081. self.mr = self.canvas.graph_event_connect('mouse_release', self.on_grb_click_release)
  3082. if self.app.is_legacy is False:
  3083. self.canvas.graph_event_disconnect('mouse_press', self.app.on_mouse_click_over_plot)
  3084. self.canvas.graph_event_disconnect('mouse_move', self.app.on_mouse_move_over_plot)
  3085. self.canvas.graph_event_disconnect('mouse_release', self.app.on_mouse_click_release_over_plot)
  3086. self.canvas.graph_event_disconnect('mouse_double_click', self.app.on_mouse_double_click_over_plot)
  3087. else:
  3088. self.canvas.graph_event_disconnect(self.app.mp)
  3089. self.canvas.graph_event_disconnect(self.app.mm)
  3090. self.canvas.graph_event_disconnect(self.app.mr)
  3091. self.canvas.graph_event_disconnect(self.app.mdc)
  3092. self.app.collection.view.clicked.disconnect()
  3093. self.app.ui.popmenu_copy.triggered.disconnect()
  3094. self.app.ui.popmenu_delete.triggered.disconnect()
  3095. self.app.ui.popmenu_move.triggered.disconnect()
  3096. self.app.ui.popmenu_copy.triggered.connect(self.on_copy_button)
  3097. self.app.ui.popmenu_delete.triggered.connect(self.on_delete_btn)
  3098. self.app.ui.popmenu_move.triggered.connect(self.on_move_button)
  3099. # Gerber Editor
  3100. self.app.ui.grb_draw_pad.triggered.connect(self.on_pad_add)
  3101. self.app.ui.grb_draw_pad_array.triggered.connect(self.on_pad_add_array)
  3102. self.app.ui.grb_draw_track.triggered.connect(self.on_track_add)
  3103. self.app.ui.grb_draw_region.triggered.connect(self.on_region_add)
  3104. self.app.ui.grb_draw_poligonize.triggered.connect(self.on_poligonize)
  3105. self.app.ui.grb_draw_semidisc.triggered.connect(self.on_add_semidisc)
  3106. self.app.ui.grb_draw_disc.triggered.connect(self.on_disc_add)
  3107. self.app.ui.grb_draw_buffer.triggered.connect(lambda: self.select_tool("buffer"))
  3108. self.app.ui.grb_draw_scale.triggered.connect(lambda: self.select_tool("scale"))
  3109. self.app.ui.grb_draw_markarea.triggered.connect(lambda: self.select_tool("markarea"))
  3110. self.app.ui.grb_draw_eraser.triggered.connect(self.on_eraser)
  3111. self.app.ui.grb_draw_transformations.triggered.connect(self.on_transform)
  3112. def disconnect_canvas_event_handlers(self):
  3113. # we restore the key and mouse control to FlatCAMApp method
  3114. # first connect to new, then disconnect the old handlers
  3115. # don't ask why but if there is nothing connected I've seen issues
  3116. self.app.mp = self.canvas.graph_event_connect('mouse_press', self.app.on_mouse_click_over_plot)
  3117. self.app.mm = self.canvas.graph_event_connect('mouse_move', self.app.on_mouse_move_over_plot)
  3118. self.app.mr = self.canvas.graph_event_connect('mouse_release', self.app.on_mouse_click_release_over_plot)
  3119. self.app.mdc = self.canvas.graph_event_connect('mouse_double_click', self.app.on_mouse_double_click_over_plot)
  3120. self.app.collection.view.clicked.connect(self.app.collection.on_mouse_down)
  3121. if self.app.is_legacy is False:
  3122. self.canvas.graph_event_disconnect('mouse_press', self.on_canvas_click)
  3123. self.canvas.graph_event_disconnect('mouse_move', self.on_canvas_move)
  3124. self.canvas.graph_event_disconnect('mouse_release', self.on_grb_click_release)
  3125. else:
  3126. self.canvas.graph_event_disconnect(self.mp)
  3127. self.canvas.graph_event_disconnect(self.mm)
  3128. self.canvas.graph_event_disconnect(self.mr)
  3129. try:
  3130. self.app.ui.popmenu_copy.triggered.disconnect(self.on_copy_button)
  3131. except (TypeError, AttributeError):
  3132. pass
  3133. try:
  3134. self.app.ui.popmenu_delete.triggered.disconnect(self.on_delete_btn)
  3135. except (TypeError, AttributeError):
  3136. pass
  3137. try:
  3138. self.app.ui.popmenu_move.triggered.disconnect(self.on_move_button)
  3139. except (TypeError, AttributeError):
  3140. pass
  3141. self.app.ui.popmenu_copy.triggered.connect(self.app.on_copy_command)
  3142. self.app.ui.popmenu_delete.triggered.connect(self.app.on_delete)
  3143. self.app.ui.popmenu_move.triggered.connect(self.app.obj_move)
  3144. # Gerber Editor
  3145. try:
  3146. self.app.ui.grb_draw_pad.triggered.disconnect(self.on_pad_add)
  3147. except (TypeError, AttributeError):
  3148. pass
  3149. try:
  3150. self.app.ui.grb_draw_pad_array.triggered.disconnect(self.on_pad_add_array)
  3151. except (TypeError, AttributeError):
  3152. pass
  3153. try:
  3154. self.app.ui.grb_draw_track.triggered.disconnect(self.on_track_add)
  3155. except (TypeError, AttributeError):
  3156. pass
  3157. try:
  3158. self.app.ui.grb_draw_region.triggered.disconnect(self.on_region_add)
  3159. except (TypeError, AttributeError):
  3160. pass
  3161. try:
  3162. self.app.ui.grb_draw_poligonize.triggered.disconnect(self.on_poligonize)
  3163. except (TypeError, AttributeError):
  3164. pass
  3165. try:
  3166. self.app.ui.grb_draw_semidisc.triggered.diconnect(self.on_add_semidisc)
  3167. except (TypeError, AttributeError):
  3168. pass
  3169. try:
  3170. self.app.ui.grb_draw_disc.triggered.disconnect(self.on_disc_add)
  3171. except (TypeError, AttributeError):
  3172. pass
  3173. try:
  3174. self.app.ui.grb_draw_buffer.triggered.disconnect()
  3175. except (TypeError, AttributeError):
  3176. pass
  3177. try:
  3178. self.app.ui.grb_draw_scale.triggered.disconnect()
  3179. except (TypeError, AttributeError):
  3180. pass
  3181. try:
  3182. self.app.ui.grb_draw_markarea.triggered.disconnect()
  3183. except (TypeError, AttributeError):
  3184. pass
  3185. try:
  3186. self.app.ui.grb_draw_eraser.triggered.disconnect(self.on_eraser)
  3187. except (TypeError, AttributeError):
  3188. pass
  3189. try:
  3190. self.app.ui.grb_draw_transformations.triggered.disconnect(self.on_transform)
  3191. except (TypeError, AttributeError):
  3192. pass
  3193. try:
  3194. self.app.jump_signal.disconnect()
  3195. except (TypeError, AttributeError):
  3196. pass
  3197. def clear(self):
  3198. self.thread.quit()
  3199. self.active_tool = None
  3200. self.selected = []
  3201. self.storage_dict.clear()
  3202. self.results.clear()
  3203. self.shapes.clear(update=True)
  3204. self.tool_shape.clear(update=True)
  3205. self.ma_annotation.clear(update=True)
  3206. def edit_fcgerber(self, orig_grb_obj):
  3207. """
  3208. Imports the geometry found in self.apertures from the given FlatCAM Gerber object
  3209. into the editor.
  3210. :param orig_grb_obj: ExcellonObject
  3211. :return: None
  3212. """
  3213. self.deactivate_grb_editor()
  3214. self.activate_grb_editor()
  3215. # reset the tool table
  3216. self.apertures_table.clear()
  3217. self.apertures_table.setHorizontalHeaderLabels(['#', _('Code'), _('Type'), _('Size'), _('Dim')])
  3218. self.last_aperture_selected = None
  3219. # create a reference to the source object
  3220. self.gerber_obj = orig_grb_obj
  3221. self.gerber_obj_options = orig_grb_obj.options
  3222. file_units = self.gerber_obj.units if self.gerber_obj.units else 'IN'
  3223. app_units = self.app.defaults['units']
  3224. # self.conversion_factor = 25.4 if file_units == 'IN' else (1 / 25.4) if file_units != app_units else 1
  3225. if file_units == app_units:
  3226. self.conversion_factor = 1
  3227. else:
  3228. if file_units == 'IN':
  3229. self.conversion_factor = 25.4
  3230. else:
  3231. self.conversion_factor = 0.0393700787401575
  3232. # Hide original geometry
  3233. orig_grb_obj.visible = False
  3234. # Set selection tolerance
  3235. # DrawToolShape.tolerance = fc_excellon.drawing_tolerance * 10
  3236. self.select_tool("select")
  3237. try:
  3238. # we activate this after the initial build as we don't need to see the tool been populated
  3239. self.apertures_table.itemChanged.connect(self.on_tool_edit)
  3240. except Exception as e:
  3241. log.debug("AppGerberEditor.edit_fcgerber() --> %s" % str(e))
  3242. # apply the conversion factor on the obj.apertures
  3243. conv_apertures = deepcopy(self.gerber_obj.apertures)
  3244. for apcode in self.gerber_obj.apertures:
  3245. for key in self.gerber_obj.apertures[apcode]:
  3246. if key == 'width':
  3247. conv_apertures[apcode]['width'] = self.gerber_obj.apertures[apcode]['width'] * \
  3248. self.conversion_factor
  3249. elif key == 'height':
  3250. conv_apertures[apcode]['height'] = self.gerber_obj.apertures[apcode]['height'] * \
  3251. self.conversion_factor
  3252. elif key == 'diam':
  3253. conv_apertures[apcode]['diam'] = self.gerber_obj.apertures[apcode]['diam'] * self.conversion_factor
  3254. elif key == 'size':
  3255. conv_apertures[apcode]['size'] = self.gerber_obj.apertures[apcode]['size'] * self.conversion_factor
  3256. else:
  3257. conv_apertures[apcode][key] = self.gerber_obj.apertures[apcode][key]
  3258. self.gerber_obj.apertures = conv_apertures
  3259. self.gerber_obj.units = app_units
  3260. # # and then add it to the storage elements (each storage elements is a member of a list
  3261. # def job_thread(aperture_id):
  3262. # with self.app.proc_container.new('%s: %s ...' %
  3263. # (_("Adding geometry for aperture"), str(aperture_id))):
  3264. # storage_elem = []
  3265. # self.storage_dict[aperture_id] = {}
  3266. #
  3267. # # add the Gerber geometry to editor storage
  3268. # for k, v in self.gerber_obj.apertures[aperture_id].items():
  3269. # try:
  3270. # if k == 'geometry':
  3271. # for geo_el in v:
  3272. # if geo_el:
  3273. # self.add_gerber_shape(DrawToolShape(geo_el), storage_elem)
  3274. # self.storage_dict[aperture_id][k] = storage_elem
  3275. # else:
  3276. # self.storage_dict[aperture_id][k] = self.gerber_obj.apertures[aperture_id][k]
  3277. # except Exception as e:
  3278. # log.debug("AppGerberEditor.edit_fcgerber().job_thread() --> %s" % str(e))
  3279. #
  3280. # # Check promises and clear if exists
  3281. # while True:
  3282. # try:
  3283. # self.grb_plot_promises.remove(aperture_id)
  3284. # time.sleep(0.5)
  3285. # except ValueError:
  3286. # break
  3287. #
  3288. # # we create a job work each aperture, job that work in a threaded way to store the geometry in local storage
  3289. # # as DrawToolShapes
  3290. # for ap_code in self.gerber_obj.apertures:
  3291. # self.grb_plot_promises.append(ap_code)
  3292. # self.app.worker_task.emit({'fcn': job_thread, 'params': [ap_code]})
  3293. #
  3294. # self.set_ui()
  3295. #
  3296. # # do the delayed plot only if there is something to plot (the gerber is not empty)
  3297. # try:
  3298. # if bool(self.gerber_obj.apertures):
  3299. # self.start_delayed_plot(check_period=1000)
  3300. # else:
  3301. # raise AttributeError
  3302. # except AttributeError:
  3303. # # now that we have data (empty data actually), create the GUI interface and add it to the Tool Tab
  3304. # self.build_ui(first_run=True)
  3305. # # and add the first aperture to have something to play with
  3306. # self.on_aperture_add('10')
  3307. # self.app.worker_task.emit({'fcn': worker_job, 'params': [self]})
  3308. class Execute_Edit(QtCore.QObject):
  3309. start = QtCore.pyqtSignal(str)
  3310. def __init__(self, app):
  3311. super(Execute_Edit, self).__init__()
  3312. self.app = app
  3313. self.start.connect(self.run)
  3314. @staticmethod
  3315. def worker_job(app_obj):
  3316. with app_obj.app.proc_container.new('%s ...' % _("Loading Gerber into Editor")):
  3317. # ###############################################################
  3318. # APPLY CLEAR_GEOMETRY on the SOLID_GEOMETRY
  3319. # ###############################################################
  3320. # list of clear geos that are to be applied to the entire file
  3321. global_clear_geo = []
  3322. # create one big geometry made out of all 'negative' (clear) polygons
  3323. for aper_id in app_obj.gerber_obj.apertures:
  3324. # first check if we have any clear_geometry (LPC) and if yes added it to the global_clear_geo
  3325. if 'geometry' in app_obj.gerber_obj.apertures[aper_id]:
  3326. for elem in app_obj.gerber_obj.apertures[aper_id]['geometry']:
  3327. if 'clear' in elem:
  3328. global_clear_geo.append(elem['clear'])
  3329. log.warning("Found %d clear polygons." % len(global_clear_geo))
  3330. if global_clear_geo:
  3331. global_clear_geo = unary_union(global_clear_geo)
  3332. if isinstance(global_clear_geo, Polygon):
  3333. global_clear_geo = [global_clear_geo]
  3334. # we subtract the big "negative" (clear) geometry from each solid polygon but only the part of
  3335. # clear geometry that fits inside the solid. otherwise we may loose the solid
  3336. for ap_code in app_obj.gerber_obj.apertures:
  3337. temp_solid_geometry = []
  3338. if 'geometry' in app_obj.gerber_obj.apertures[ap_code]:
  3339. # for elem in self.gerber_obj.apertures[apcode]['geometry']:
  3340. # if 'solid' in elem:
  3341. # solid_geo = elem['solid']
  3342. # for clear_geo in global_clear_geo:
  3343. # # Make sure that the clear_geo is within the solid_geo otherwise we loose
  3344. # # the solid_geometry. We want for clear_geometry just to cut
  3345. # # into solid_geometry not to delete it
  3346. # if clear_geo.within(solid_geo):
  3347. # solid_geo = solid_geo.difference(clear_geo)
  3348. # try:
  3349. # for poly in solid_geo:
  3350. # new_elem = {}
  3351. #
  3352. # new_elem['solid'] = poly
  3353. # if 'clear' in elem:
  3354. # new_elem['clear'] = poly
  3355. # if 'follow' in elem:
  3356. # new_elem['follow'] = poly
  3357. # temp_elem.append(deepcopy(new_elem))
  3358. # except TypeError:
  3359. # new_elem = {}
  3360. # new_elem['solid'] = solid_geo
  3361. # if 'clear' in elem:
  3362. # new_elem['clear'] = solid_geo
  3363. # if 'follow' in elem:
  3364. # new_elem['follow'] = solid_geo
  3365. # temp_elem.append(deepcopy(new_elem))
  3366. for elem in app_obj.gerber_obj.apertures[ap_code]['geometry']:
  3367. new_elem = {}
  3368. if 'solid' in elem:
  3369. solid_geo = elem['solid']
  3370. if not global_clear_geo or global_clear_geo.is_empty:
  3371. pass
  3372. else:
  3373. for clear_geo in global_clear_geo:
  3374. # Make sure that the clear_geo is within the solid_geo otherwise we loose
  3375. # the solid_geometry. We want for clear_geometry just to cut into
  3376. # solid_geometry not to delete it
  3377. if clear_geo.within(solid_geo):
  3378. solid_geo = solid_geo.difference(clear_geo)
  3379. new_elem['solid'] = solid_geo
  3380. if 'clear' in elem:
  3381. new_elem['clear'] = elem['clear']
  3382. if 'follow' in elem:
  3383. new_elem['follow'] = elem['follow']
  3384. temp_solid_geometry.append(deepcopy(new_elem))
  3385. app_obj.gerber_obj.apertures[ap_code]['geometry'] = deepcopy(temp_solid_geometry)
  3386. log.warning("Polygon difference done for %d apertures." % len(app_obj.gerber_obj.apertures))
  3387. try:
  3388. # Loading the Geometry into Editor Storage
  3389. for ap_code, ap_dict in app_obj.gerber_obj.apertures.items():
  3390. app_obj.results.append(
  3391. app_obj.pool.apply_async(app_obj.add_apertures, args=(ap_code, ap_dict))
  3392. )
  3393. except Exception as ee:
  3394. log.debug(
  3395. "AppGerberEditor.edit_fcgerber.worker_job() Adding processes to pool --> %s" % str(ee))
  3396. traceback.print_exc()
  3397. output = []
  3398. for p in app_obj.results:
  3399. output.append(p.get())
  3400. for elem in output:
  3401. app_obj.storage_dict[elem[0]] = deepcopy(elem[1])
  3402. app_obj.mp_finished.emit(output)
  3403. def run(self):
  3404. self.worker_job(self.app)
  3405. self.thread.start(QtCore.QThread.NormalPriority)
  3406. executable_edit = Execute_Edit(app=self)
  3407. executable_edit.moveToThread(self.thread)
  3408. executable_edit.start.emit("Started")
  3409. @staticmethod
  3410. def add_apertures(aperture_id, aperture_dict):
  3411. storage_elem = []
  3412. storage_dict = {}
  3413. for k, v in list(aperture_dict.items()):
  3414. try:
  3415. if k == 'geometry':
  3416. for geo_el in v:
  3417. if geo_el:
  3418. storage_elem.append(DrawToolShape(geo_el))
  3419. storage_dict[k] = storage_elem
  3420. else:
  3421. storage_dict[k] = aperture_dict[k]
  3422. except Exception as e:
  3423. log.debug("AppGerberEditor.edit_fcgerber().job_thread() --> %s" % str(e))
  3424. return [aperture_id, storage_dict]
  3425. def on_multiprocessing_finished(self):
  3426. self.app.proc_container.update_view_text(' %s' % _("Setting up the UI"))
  3427. self.app.inform.emit('[success] %s.' % _("Adding geometry finished. Preparing the GUI"))
  3428. self.set_ui()
  3429. self.build_ui(first_run=True)
  3430. self.plot_all()
  3431. # HACK: enabling/disabling the cursor seams to somehow update the shapes making them more 'solid'
  3432. # - perhaps is a bug in VisPy implementation
  3433. self.app.app_cursor.enabled = False
  3434. self.app.app_cursor.enabled = True
  3435. self.app.inform.emit('[success] %s' % _("Finished loading the Gerber object into the editor."))
  3436. def update_fcgerber(self):
  3437. """
  3438. Create a new Gerber object that contain the edited content of the source Gerber object
  3439. :return: None
  3440. """
  3441. new_grb_name = self.edited_obj_name
  3442. # if the 'delayed plot' malfunctioned stop the QTimer
  3443. try:
  3444. self.plot_thread.stop()
  3445. except Exception as e:
  3446. log.debug("AppGerberEditor.update_fcgerber() --> %s" % str(e))
  3447. if "_edit" in self.edited_obj_name:
  3448. try:
  3449. _id = int(self.edited_obj_name[-1]) + 1
  3450. new_grb_name = self.edited_obj_name[:-1] + str(_id)
  3451. except ValueError:
  3452. new_grb_name += "_1"
  3453. else:
  3454. new_grb_name = self.edited_obj_name + "_edit"
  3455. self.app.worker_task.emit({'fcn': self.new_edited_gerber, 'params': [new_grb_name, self.storage_dict]})
  3456. # self.new_edited_gerber(new_grb_name, self.storage_dict)
  3457. @staticmethod
  3458. def update_options(obj):
  3459. try:
  3460. if not obj.options:
  3461. obj.options = {}
  3462. obj.options['xmin'] = 0
  3463. obj.options['ymin'] = 0
  3464. obj.options['xmax'] = 0
  3465. obj.options['ymax'] = 0
  3466. return True
  3467. else:
  3468. return False
  3469. except AttributeError:
  3470. obj.options = {}
  3471. return True
  3472. def new_edited_gerber(self, outname, aperture_storage):
  3473. """
  3474. Creates a new Gerber object for the edited Gerber. Thread-safe.
  3475. :param outname: Name of the resulting object. None causes the name to be that of the file.
  3476. :type outname: str
  3477. :param aperture_storage: a dictionary that holds all the objects geometry
  3478. :type aperture_storage: dict
  3479. :return: None
  3480. """
  3481. self.app.log.debug("Update the Gerber object with edited content. Source is: %s" %
  3482. self.gerber_obj.options['name'].upper())
  3483. out_name = outname
  3484. storage_dict = aperture_storage
  3485. local_storage_dict = {}
  3486. for aperture in storage_dict:
  3487. if 'geometry' in storage_dict[aperture]:
  3488. # add aperture only if it has geometry
  3489. if len(storage_dict[aperture]['geometry']) > 0:
  3490. local_storage_dict[aperture] = deepcopy(storage_dict[aperture])
  3491. # How the object should be initialized
  3492. def obj_init(grb_obj, app_obj):
  3493. poly_buffer = []
  3494. follow_buffer = []
  3495. for storage_apcode, storage_val in local_storage_dict.items():
  3496. grb_obj.apertures[storage_apcode] = {}
  3497. for k, val in storage_val.items():
  3498. if k == 'geometry':
  3499. grb_obj.apertures[storage_apcode][k] = []
  3500. for geo_el in val:
  3501. geometric_data = geo_el.geo
  3502. new_geo_el = {}
  3503. if 'solid' in geometric_data:
  3504. new_geo_el['solid'] = geometric_data['solid']
  3505. poly_buffer.append(deepcopy(new_geo_el['solid']))
  3506. if 'follow' in geometric_data:
  3507. # if isinstance(geometric_data['follow'], Polygon):
  3508. # buff_val = -(int(storage_val['size']) / 2)
  3509. # geo_f = (geometric_data['follow'].buffer(buff_val)).exterior
  3510. # new_geo_el['follow'] = geo_f
  3511. # else:
  3512. # new_geo_el['follow'] = geometric_data['follow']
  3513. new_geo_el['follow'] = geometric_data['follow']
  3514. follow_buffer.append(deepcopy(new_geo_el['follow']))
  3515. else:
  3516. if 'solid' in geometric_data:
  3517. geo_f = geometric_data['solid'].exterior
  3518. new_geo_el['follow'] = geo_f
  3519. follow_buffer.append(deepcopy(new_geo_el['follow']))
  3520. if 'clear' in geometric_data:
  3521. new_geo_el['clear'] = geometric_data['clear']
  3522. if new_geo_el:
  3523. grb_obj.apertures[storage_apcode][k].append(deepcopy(new_geo_el))
  3524. else:
  3525. grb_obj.apertures[storage_apcode][k] = val
  3526. grb_obj.aperture_macros = deepcopy(self.gerber_obj.aperture_macros)
  3527. new_poly = MultiPolygon(poly_buffer)
  3528. new_poly = new_poly.buffer(0.00000001)
  3529. new_poly = new_poly.buffer(-0.00000001)
  3530. # for ad in grb_obj.apertures:
  3531. # print(ad, grb_obj.apertures[ad])
  3532. try:
  3533. __ = iter(new_poly)
  3534. except TypeError:
  3535. new_poly = [new_poly]
  3536. grb_obj.solid_geometry = deepcopy(new_poly)
  3537. grb_obj.follow_geometry = deepcopy(follow_buffer)
  3538. for k, v in self.gerber_obj_options.items():
  3539. if k == 'name':
  3540. grb_obj.options[k] = out_name
  3541. else:
  3542. grb_obj.options[k] = deepcopy(v)
  3543. grb_obj.multigeo = False
  3544. grb_obj.follow = False
  3545. grb_obj.units = app_obj.defaults['units']
  3546. try:
  3547. grb_obj.create_geometry()
  3548. except KeyError:
  3549. self.app.inform.emit('[ERROR_NOTCL] %s' %
  3550. _("There are no Aperture definitions in the file. Aborting Gerber creation."))
  3551. except Exception:
  3552. msg = '[ERROR] %s' % _("An internal error has occurred. See shell.\n")
  3553. msg += traceback.format_exc()
  3554. app_obj.inform.emit(msg)
  3555. raise
  3556. grb_obj.source_file = self.app.f_handlers.export_gerber(obj_name=out_name, filename=None,
  3557. local_use=grb_obj, use_thread=False)
  3558. with self.app.proc_container.new(_("Creating Gerber.")):
  3559. try:
  3560. self.app.app_obj.new_object("gerber", outname, obj_init)
  3561. except Exception as e:
  3562. log.error("Error on Edited object creation: %s" % str(e))
  3563. # make sure to clean the previous results
  3564. self.results = []
  3565. return
  3566. # make sure to clean the previous results
  3567. self.results = []
  3568. self.deactivate_grb_editor()
  3569. self.app.inform.emit('[success] %s' % _("Done. Gerber editing finished."))
  3570. def on_tool_select(self, tool):
  3571. """
  3572. Behavior of the toolbar. Tool initialization.
  3573. :rtype : None
  3574. """
  3575. current_tool = tool
  3576. self.app.log.debug("on_tool_select('%s')" % tool)
  3577. if self.last_aperture_selected is None and current_tool != 'select':
  3578. # self.draw_app.select_tool('select')
  3579. self.complete = True
  3580. current_tool = 'select'
  3581. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Cancelled. No aperture is selected"))
  3582. # This is to make the group behave as radio group
  3583. if current_tool in self.tools_gerber:
  3584. if self.tools_gerber[current_tool]["button"].isChecked():
  3585. self.app.log.debug("%s is checked." % current_tool)
  3586. for t in self.tools_gerber:
  3587. if t != current_tool:
  3588. self.tools_gerber[t]["button"].setChecked(False)
  3589. # this is where the Editor toolbar classes (button's) are instantiated
  3590. self.active_tool = self.tools_gerber[current_tool]["constructor"](self)
  3591. # self.app.inform.emit(self.active_tool.start_msg)
  3592. else:
  3593. self.app.log.debug("%s is NOT checked." % current_tool)
  3594. for t in self.tools_gerber:
  3595. self.tools_gerber[t]["button"].setChecked(False)
  3596. self.select_tool('select')
  3597. self.active_tool = FCApertureSelect(self)
  3598. def on_row_selected(self, row, col):
  3599. # if col == 0:
  3600. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  3601. if self.app.defaults["global_mselect_key"] == 'Control':
  3602. modifier_to_use = Qt.ControlModifier
  3603. else:
  3604. modifier_to_use = Qt.ShiftModifier
  3605. if key_modifier == modifier_to_use:
  3606. pass
  3607. else:
  3608. self.selected = []
  3609. try:
  3610. selected_ap_code = self.apertures_table.item(row, 1).text()
  3611. self.last_aperture_selected = copy(selected_ap_code)
  3612. for obj in self.storage_dict[selected_ap_code]['geometry']:
  3613. self.selected.append(obj)
  3614. except Exception as e:
  3615. self.app.log.debug(str(e))
  3616. self.plot_all()
  3617. # def toolbar_tool_toggle(self, key):
  3618. # """
  3619. #
  3620. # :param key: key to update in self.options dictionary
  3621. # :return:
  3622. # """
  3623. # self.options[key] = self.sender().isChecked()
  3624. # return self.options[key]
  3625. def on_grb_shape_complete(self, storage=None, specific_shape=None, no_plot=False):
  3626. """
  3627. :param storage: where to store the shape
  3628. :param specific_shape: optional, the shape to be stored
  3629. :param no_plot: use this if you want the added shape not plotted
  3630. :return:
  3631. """
  3632. self.app.log.debug("on_grb_shape_complete()")
  3633. if specific_shape:
  3634. geo = specific_shape
  3635. else:
  3636. geo = deepcopy(self.active_tool.geometry)
  3637. if geo is None:
  3638. return
  3639. if storage is not None:
  3640. # Add shape
  3641. self.add_gerber_shape(geo, storage)
  3642. else:
  3643. stora = self.storage_dict[self.last_aperture_selected]['geometry']
  3644. self.add_gerber_shape(geo, storage=stora)
  3645. # Remove any utility shapes
  3646. self.delete_utility_geometry()
  3647. self.tool_shape.clear(update=True)
  3648. if no_plot is False:
  3649. # Re-plot and reset tool.
  3650. self.plot_all()
  3651. def add_gerber_shape(self, shape_element, storage):
  3652. """
  3653. Adds a shape to the shape storage.
  3654. :param shape_element: Shape to be added.
  3655. :type shape_element: DrawToolShape or DrawToolUtilityShape Geometry is stored as a dict with keys: solid,
  3656. follow, clear, each value being a list of Shapely objects. The dict can have at least one of the mentioned keys
  3657. :param storage: Where to store the shape
  3658. :return: None
  3659. """
  3660. # List of DrawToolShape?
  3661. if isinstance(shape_element, list):
  3662. for subshape in shape_element:
  3663. self.add_gerber_shape(subshape, storage)
  3664. return
  3665. assert isinstance(shape_element, DrawToolShape), \
  3666. "Expected a DrawToolShape, got %s" % str(type(shape_element))
  3667. assert shape_element.geo is not None, \
  3668. "Shape object has empty geometry (None)"
  3669. assert(isinstance(shape_element.geo, list) and len(shape_element.geo) > 0) or not \
  3670. isinstance(shape_element.geo, list), "Shape objects has empty geometry ([])"
  3671. if isinstance(shape_element, DrawToolUtilityShape):
  3672. self.utility.append(shape_element)
  3673. else:
  3674. storage.append(shape_element)
  3675. def on_canvas_click(self, event):
  3676. """
  3677. event.x and .y have canvas coordinates
  3678. event.xdata and .ydata have plot coordinates
  3679. :param event: Event object dispatched by VisPy
  3680. :return: None
  3681. """
  3682. if self.app.is_legacy is False:
  3683. event_pos = event.pos
  3684. # event_is_dragging = event.is_dragging
  3685. # right_button = 2
  3686. else:
  3687. event_pos = (event.xdata, event.ydata)
  3688. # event_is_dragging = self.app.plotcanvas.is_dragging
  3689. # right_button = 3
  3690. self.pos = self.canvas.translate_coords(event_pos)
  3691. if self.app.grid_status():
  3692. self.pos = self.app.geo_editor.snap(self.pos[0], self.pos[1])
  3693. else:
  3694. self.pos = (self.pos[0], self.pos[1])
  3695. if event.button == 1:
  3696. self.app.ui.rel_position_label.setText("<b>Dx</b>: %.4f&nbsp;&nbsp; <b>Dy</b>: "
  3697. "%.4f&nbsp;&nbsp;&nbsp;&nbsp;" % (0, 0))
  3698. # Selection with left mouse button
  3699. if self.active_tool is not None:
  3700. modifiers = QtWidgets.QApplication.keyboardModifiers()
  3701. # If the SHIFT key is pressed when LMB is clicked then the coordinates are copied to clipboard
  3702. if modifiers == QtCore.Qt.ShiftModifier:
  3703. self.app.clipboard.setText(
  3704. self.app.defaults["global_point_clipboard_format"] %
  3705. (self.decimals, self.pos[0], self.decimals, self.pos[1])
  3706. )
  3707. self.app.inform.emit('[success] %s' % _("Coordinates copied to clipboard."))
  3708. return
  3709. # Dispatch event to active_tool
  3710. self.active_tool.click(self.app.geo_editor.snap(self.pos[0], self.pos[1]))
  3711. # If it is a shape generating tool
  3712. if isinstance(self.active_tool, FCShapeTool) and self.active_tool.complete:
  3713. if self.current_storage is not None:
  3714. self.on_grb_shape_complete(self.current_storage)
  3715. self.build_ui()
  3716. # MS: always return to the Select Tool if modifier key is not pressed
  3717. # else return to the current tool
  3718. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  3719. if self.app.defaults["global_mselect_key"] == 'Control':
  3720. modifier_to_use = Qt.ControlModifier
  3721. else:
  3722. modifier_to_use = Qt.ShiftModifier
  3723. # if modifier key is pressed then we add to the selected list the current shape but if it's already
  3724. # in the selected list, we removed it. Therefore first click selects, second deselects.
  3725. if key_modifier == modifier_to_use:
  3726. self.select_tool(self.active_tool.name)
  3727. else:
  3728. # return to Select tool but not for FCPad
  3729. if isinstance(self.active_tool, FCPad):
  3730. self.select_tool(self.active_tool.name)
  3731. else:
  3732. self.select_tool("select")
  3733. return
  3734. if isinstance(self.active_tool, FCApertureSelect):
  3735. self.plot_all()
  3736. else:
  3737. self.app.log.debug("No active tool to respond to click!")
  3738. def on_grb_click_release(self, event):
  3739. self.modifiers = QtWidgets.QApplication.keyboardModifiers()
  3740. if self.app.is_legacy is False:
  3741. event_pos = event.pos
  3742. # event_is_dragging = event.is_dragging
  3743. right_button = 2
  3744. else:
  3745. event_pos = (event.xdata, event.ydata)
  3746. # event_is_dragging = self.app.plotcanvas.is_dragging
  3747. right_button = 3
  3748. pos_canvas = self.canvas.translate_coords(event_pos)
  3749. if self.app.grid_status():
  3750. pos = self.app.geo_editor.snap(pos_canvas[0], pos_canvas[1])
  3751. else:
  3752. pos = (pos_canvas[0], pos_canvas[1])
  3753. # if the released mouse button was RMB then test if it was a panning motion or not, if not it was a context
  3754. # canvas menu
  3755. try:
  3756. if event.button == right_button: # right click
  3757. if self.app.ui.popMenu.mouse_is_panning is False:
  3758. if self.in_action is False:
  3759. try:
  3760. QtGui.QGuiApplication.restoreOverrideCursor()
  3761. except Exception as e:
  3762. log.debug("AppGerberEditor.on_grb_click_release() --> %s" % str(e))
  3763. if self.active_tool.complete is False and not isinstance(self.active_tool, FCApertureSelect):
  3764. self.active_tool.complete = True
  3765. self.in_action = False
  3766. self.delete_utility_geometry()
  3767. self.app.inform.emit('[success] %s' %
  3768. _("Done."))
  3769. self.select_tool('select')
  3770. else:
  3771. self.app.cursor = QtGui.QCursor()
  3772. self.app.populate_cmenu_grids()
  3773. self.app.ui.popMenu.popup(self.app.cursor.pos())
  3774. else:
  3775. # if right click on canvas and the active tool need to be finished (like Path or Polygon)
  3776. # right mouse click will finish the action
  3777. if isinstance(self.active_tool, FCShapeTool):
  3778. if isinstance(self.active_tool, FCTrack):
  3779. self.active_tool.make()
  3780. else:
  3781. self.active_tool.click(self.app.geo_editor.snap(self.x, self.y))
  3782. self.active_tool.make()
  3783. if self.active_tool.complete:
  3784. self.on_grb_shape_complete()
  3785. self.app.inform.emit('[success] %s' % _("Done."))
  3786. # MS: always return to the Select Tool if modifier key is not pressed
  3787. # else return to the current tool but not for FCTrack
  3788. if isinstance(self.active_tool, FCTrack):
  3789. self.select_tool(self.active_tool.name)
  3790. else:
  3791. key_modifier = QtWidgets.QApplication.keyboardModifiers()
  3792. if (self.app.defaults["global_mselect_key"] == 'Control' and
  3793. key_modifier == Qt.ControlModifier) or \
  3794. (self.app.defaults["global_mselect_key"] == 'Shift' and
  3795. key_modifier == Qt.ShiftModifier):
  3796. self.select_tool(self.active_tool.name)
  3797. else:
  3798. self.select_tool("select")
  3799. except Exception as e:
  3800. log.warning("AppGerberEditor.on_grb_click_release() RMB click --> Error: %s" % str(e))
  3801. raise
  3802. # if the released mouse button was LMB then test if we had a right-to-left selection or a left-to-right
  3803. # selection and then select a type of selection ("enclosing" or "touching")
  3804. try:
  3805. if event.button == 1: # left click
  3806. if self.app.selection_type is not None:
  3807. self.draw_selection_area_handler(self.pos, pos, self.app.selection_type)
  3808. self.app.selection_type = None
  3809. elif isinstance(self.active_tool, FCApertureSelect):
  3810. self.active_tool.click_release((self.pos[0], self.pos[1]))
  3811. # if there are selected objects then plot them
  3812. if self.selected:
  3813. self.plot_all()
  3814. except Exception as e:
  3815. log.warning("AppGerberEditor.on_grb_click_release() LMB click --> Error: %s" % str(e))
  3816. raise
  3817. def draw_selection_area_handler(self, start_pos, end_pos, sel_type):
  3818. """
  3819. :param start_pos: mouse position when the selection LMB click was done
  3820. :param end_pos: mouse position when the left mouse button is released
  3821. :param sel_type: if True it's a left to right selection (enclosure), if False it's a 'touch' selection
  3822. :return:
  3823. """
  3824. poly_selection = Polygon([start_pos, (end_pos[0], start_pos[1]), end_pos, (start_pos[0], end_pos[1])])
  3825. sel_aperture = set()
  3826. self.apertures_table.clearSelection()
  3827. self.app.delete_selection_shape()
  3828. for storage in self.storage_dict:
  3829. for obj in self.storage_dict[storage]['geometry']:
  3830. if 'solid' in obj.geo:
  3831. geometric_data = obj.geo['solid']
  3832. if (sel_type is True and poly_selection.contains(geometric_data)) or \
  3833. (sel_type is False and poly_selection.intersects(geometric_data)):
  3834. if self.key == self.app.defaults["global_mselect_key"]:
  3835. if obj in self.selected:
  3836. self.selected.remove(obj)
  3837. else:
  3838. # add the object to the selected shapes
  3839. self.selected.append(obj)
  3840. sel_aperture.add(storage)
  3841. else:
  3842. self.selected.append(obj)
  3843. sel_aperture.add(storage)
  3844. try:
  3845. self.apertures_table.cellPressed.disconnect()
  3846. except Exception as e:
  3847. log.debug("AppGerberEditor.draw_selection_Area_handler() --> %s" % str(e))
  3848. # select the aperture code of the selected geometry, in the tool table
  3849. self.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.MultiSelection)
  3850. for aper in sel_aperture:
  3851. for row_to_sel in range(self.apertures_table.rowCount()):
  3852. if str(aper) == self.apertures_table.item(row_to_sel, 1).text():
  3853. if row_to_sel not in set(index.row() for index in self.apertures_table.selectedIndexes()):
  3854. self.apertures_table.selectRow(row_to_sel)
  3855. self.last_aperture_selected = aper
  3856. self.apertures_table.setSelectionMode(QtWidgets.QAbstractItemView.ExtendedSelection)
  3857. self.apertures_table.cellPressed.connect(self.on_row_selected)
  3858. self.plot_all()
  3859. def on_canvas_move(self, event):
  3860. """
  3861. Called on 'mouse_move' event
  3862. event.pos have canvas screen coordinates
  3863. :param event: Event object dispatched by VisPy SceneCavas
  3864. :return: None
  3865. """
  3866. if self.app.is_legacy is False:
  3867. event_pos = event.pos
  3868. event_is_dragging = event.is_dragging
  3869. right_button = 2
  3870. else:
  3871. event_pos = (event.xdata, event.ydata)
  3872. event_is_dragging = self.app.plotcanvas.is_dragging
  3873. right_button = 3
  3874. pos_canvas = self.canvas.translate_coords(event_pos)
  3875. event.xdata, event.ydata = pos_canvas[0], pos_canvas[1]
  3876. self.x = event.xdata
  3877. self.y = event.ydata
  3878. self.app.ui.popMenu.mouse_is_panning = False
  3879. # if the RMB is clicked and mouse is moving over plot then 'panning_action' is True
  3880. if event.button == right_button and event_is_dragging == 1:
  3881. self.app.ui.popMenu.mouse_is_panning = True
  3882. return
  3883. try:
  3884. x = float(event.xdata)
  3885. y = float(event.ydata)
  3886. except TypeError:
  3887. return
  3888. if self.active_tool is None:
  3889. return
  3890. # # ## Snap coordinates
  3891. if self.app.grid_status():
  3892. x, y = self.app.geo_editor.snap(x, y)
  3893. # Update cursor
  3894. self.app.app_cursor.set_data(np.asarray([(x, y)]), symbol='++', edge_color=self.app.cursor_color_3D,
  3895. edge_width=self.app.defaults["global_cursor_width"],
  3896. size=self.app.defaults["global_cursor_size"])
  3897. self.snap_x = x
  3898. self.snap_y = y
  3899. self.app.mouse = [x, y]
  3900. if self.pos is None:
  3901. self.pos = (0, 0)
  3902. self.app.dx = x - self.pos[0]
  3903. self.app.dy = y - self.pos[1]
  3904. # # update the position label in the infobar since the APP mouse event handlers are disconnected
  3905. self.app.ui.position_label.setText("&nbsp;<b>X</b>: %.4f&nbsp;&nbsp; "
  3906. "<b>Y</b>: %.4f&nbsp;" % (x, y))
  3907. # update the reference position label in the infobar since the APP mouse event handlers are disconnected
  3908. self.app.ui.rel_position_label.setText("<b>Dx</b>: %.4f&nbsp;&nbsp; <b>Dy</b>: "
  3909. "%.4f&nbsp;&nbsp;&nbsp;&nbsp;" % (self.app.dx, self.app.dy))
  3910. units = self.app.defaults["units"].lower()
  3911. self.app.plotcanvas.text_hud.text = \
  3912. 'Dx:\t{:<.4f} [{:s}]\nDy:\t{:<.4f} [{:s}]\n\nX: \t{:<.4f} [{:s}]\nY: \t{:<.4f} [{:s}]'.format(
  3913. self.app.dx, units, self.app.dy, units, x, units, y, units)
  3914. self.update_utility_geometry(data=(x, y))
  3915. # # ## Selection area on canvas section # ##
  3916. if event_is_dragging == 1 and event.button == 1:
  3917. # I make an exception for FCRegion and FCTrack because clicking and dragging while making regions can
  3918. # create strange issues like missing a point in a track/region
  3919. if isinstance(self.active_tool, FCRegion) or isinstance(self.active_tool, FCTrack):
  3920. pass
  3921. else:
  3922. dx = pos_canvas[0] - self.pos[0]
  3923. self.app.delete_selection_shape()
  3924. if dx < 0:
  3925. self.app.draw_moving_selection_shape((self.pos[0], self.pos[1]), (x, y),
  3926. color=self.app.defaults["global_alt_sel_line"],
  3927. face_color=self.app.defaults['global_alt_sel_fill'])
  3928. self.app.selection_type = False
  3929. else:
  3930. self.app.draw_moving_selection_shape((self.pos[0], self.pos[1]), (x, y))
  3931. self.app.selection_type = True
  3932. else:
  3933. self.app.selection_type = None
  3934. def update_utility_geometry(self, data):
  3935. # # ## Utility geometry (animated)
  3936. geo = self.active_tool.utility_geometry(data=data)
  3937. if isinstance(geo, DrawToolShape) and geo.geo is not None:
  3938. # Remove any previous utility shape
  3939. self.tool_shape.clear(update=True)
  3940. self.draw_utility_geometry(geo=geo)
  3941. def draw_utility_geometry(self, geo):
  3942. if type(geo.geo) == list:
  3943. for el in geo.geo:
  3944. geometric_data = el['solid']
  3945. # Add the new utility shape
  3946. self.tool_shape.add(
  3947. shape=geometric_data, color=(self.app.defaults["global_draw_color"] + '80'),
  3948. # face_color=self.app.defaults['global_alt_sel_fill'],
  3949. update=False, layer=0, tolerance=None
  3950. )
  3951. else:
  3952. geometric_data = geo.geo['solid']
  3953. # Add the new utility shape
  3954. self.tool_shape.add(
  3955. shape=geometric_data,
  3956. color=(self.app.defaults["global_draw_color"] + '80'),
  3957. # face_color=self.app.defaults['global_alt_sel_fill'],
  3958. update=False, layer=0, tolerance=None
  3959. )
  3960. self.tool_shape.redraw()
  3961. def plot_all(self):
  3962. """
  3963. Plots all shapes in the editor.
  3964. :return: None
  3965. :rtype: None
  3966. """
  3967. with self.app.proc_container.new("Plotting"):
  3968. self.shapes.clear(update=True)
  3969. for storage in self.storage_dict:
  3970. # fix for apertures with now geometry inside
  3971. if 'geometry' in self.storage_dict[storage]:
  3972. for elem in self.storage_dict[storage]['geometry']:
  3973. if 'solid' in elem.geo:
  3974. geometric_data = elem.geo['solid']
  3975. if geometric_data is None:
  3976. continue
  3977. if elem in self.selected:
  3978. self.plot_shape(geometry=geometric_data,
  3979. color=self.app.defaults['global_sel_draw_color'] + 'FF',
  3980. linewidth=2)
  3981. else:
  3982. self.plot_shape(geometry=geometric_data,
  3983. color=self.app.defaults['global_draw_color'] + 'FF')
  3984. if self.utility:
  3985. for elem in self.utility:
  3986. geometric_data = elem.geo['solid']
  3987. self.plot_shape(geometry=geometric_data, linewidth=1)
  3988. continue
  3989. self.shapes.redraw()
  3990. def plot_shape(self, geometry=None, color='#000000FF', linewidth=1):
  3991. """
  3992. Plots a geometric object or list of objects without rendering. Plotted objects
  3993. are returned as a list. This allows for efficient/animated rendering.
  3994. :param geometry: Geometry to be plotted (Any Shapely.geom kind or list of such)
  3995. :param color: Shape color
  3996. :param linewidth: Width of lines in # of pixels.
  3997. :return: List of plotted elements.
  3998. """
  3999. if geometry is None:
  4000. geometry = self.active_tool.geometry
  4001. try:
  4002. self.shapes.add(shape=geometry.geo, color=color, face_color=color, layer=0, tolerance=self.tolerance)
  4003. except AttributeError:
  4004. if type(geometry) == Point:
  4005. return
  4006. if len(color) == 9:
  4007. color = color[:7] + 'AF'
  4008. self.shapes.add(shape=geometry, color=color, face_color=color, layer=0, tolerance=self.tolerance)
  4009. # def start_delayed_plot(self, check_period):
  4010. # """
  4011. # This function starts an QTImer and it will periodically check if all the workers finish the plotting functions
  4012. #
  4013. # :param check_period: time at which to check periodically if all plots finished to be plotted
  4014. # :return:
  4015. # """
  4016. #
  4017. # # self.plot_thread = threading.Thread(target=lambda: self.check_plot_finished(check_period))
  4018. # # self.plot_thread.start()
  4019. # log.debug("AppGerberEditor --> Delayed Plot started.")
  4020. # self.plot_thread = QtCore.QTimer()
  4021. # self.plot_thread.setInterval(check_period)
  4022. # self.plot_finished.connect(self.setup_ui_after_delayed_plot)
  4023. # self.plot_thread.timeout.connect(self.check_plot_finished)
  4024. # self.plot_thread.start()
  4025. #
  4026. # def check_plot_finished(self):
  4027. # """
  4028. # If all the promises made are finished then all the shapes are in shapes_storage and can be plotted safely and
  4029. # then the UI is rebuilt accordingly.
  4030. # :return:
  4031. # """
  4032. #
  4033. # try:
  4034. # if not self.grb_plot_promises:
  4035. # self.plot_thread.stop()
  4036. # self.plot_finished.emit()
  4037. # log.debug("AppGerberEditor --> delayed_plot finished")
  4038. # except Exception as e:
  4039. # traceback.print_exc()
  4040. #
  4041. # def setup_ui_after_delayed_plot(self):
  4042. # self.plot_finished.disconnect()
  4043. #
  4044. # # now that we have data, create the GUI interface and add it to the Tool Tab
  4045. # self.build_ui(first_run=True)
  4046. # self.plot_all()
  4047. #
  4048. # # HACK: enabling/disabling the cursor seams to somehow update the shapes making them more 'solid'
  4049. # # - perhaps is a bug in VisPy implementation
  4050. # self.app.app_cursor.enabled = False
  4051. # self.app.app_cursor.enabled = True
  4052. def on_zoom_fit(self):
  4053. """
  4054. Callback for zoom-fit request in Gerber Editor
  4055. :return: None
  4056. """
  4057. log.debug("AppGerberEditor.on_zoom_fit()")
  4058. # calculate all the geometry in the edited Gerber object
  4059. edit_geo = []
  4060. for ap_code in self.storage_dict:
  4061. for geo_el in self.storage_dict[ap_code]['geometry']:
  4062. actual_geo = geo_el.geo
  4063. if 'solid' in actual_geo:
  4064. edit_geo.append(actual_geo['solid'])
  4065. all_geo = unary_union(edit_geo)
  4066. # calculate the bounds values for the edited Gerber object
  4067. xmin, ymin, xmax, ymax = all_geo.bounds
  4068. if self.app.is_legacy is False:
  4069. new_rect = Rect(xmin, ymin, xmax, ymax)
  4070. self.app.plotcanvas.fit_view(rect=new_rect)
  4071. else:
  4072. width = xmax - xmin
  4073. height = ymax - ymin
  4074. xmin -= 0.05 * width
  4075. xmax += 0.05 * width
  4076. ymin -= 0.05 * height
  4077. ymax += 0.05 * height
  4078. self.app.plotcanvas.adjust_axes(xmin, ymin, xmax, ymax)
  4079. def get_selected(self):
  4080. """
  4081. Returns list of shapes that are selected in the editor.
  4082. :return: List of shapes.
  4083. """
  4084. # return [shape for shape in self.shape_buffer if shape["selected"]]
  4085. return self.selected
  4086. def delete_selected(self):
  4087. temp_ref = [s for s in self.selected]
  4088. if len(temp_ref) == 0:
  4089. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4090. _("Failed. No aperture geometry is selected."))
  4091. return
  4092. for shape_sel in temp_ref:
  4093. self.delete_shape(shape_sel)
  4094. self.selected = []
  4095. self.build_ui()
  4096. self.app.inform.emit('[success] %s' %
  4097. _("Done. Apertures geometry deleted."))
  4098. def delete_shape(self, geo_el):
  4099. self.is_modified = True
  4100. if geo_el in self.utility:
  4101. self.utility.remove(geo_el)
  4102. return
  4103. for storage in self.storage_dict:
  4104. try:
  4105. if geo_el in self.storage_dict[storage]['geometry']:
  4106. self.storage_dict[storage]['geometry'].remove(geo_el)
  4107. except KeyError:
  4108. pass
  4109. if geo_el in self.selected:
  4110. self.selected.remove(geo_el) # TODO: Check performance
  4111. def delete_utility_geometry(self):
  4112. # for_deletion = [shape for shape in self.shape_buffer if shape.utility]
  4113. # for_deletion = [shape for shape in self.storage.get_objects() if shape.utility]
  4114. for_deletion = [geo_el for geo_el in self.utility]
  4115. for geo_el in for_deletion:
  4116. self.delete_shape(geo_el)
  4117. self.tool_shape.clear(update=True)
  4118. self.tool_shape.redraw()
  4119. def on_delete_btn(self):
  4120. self.delete_selected()
  4121. self.plot_all()
  4122. def select_tool(self, toolname):
  4123. """
  4124. Selects a drawing tool. Impacts the object and appGUI.
  4125. :param toolname: Name of the tool.
  4126. :return: None
  4127. """
  4128. self.tools_gerber[toolname]["button"].setChecked(True)
  4129. self.on_tool_select(toolname)
  4130. def set_selected(self, geo_el):
  4131. # Remove and add to the end.
  4132. if geo_el in self.selected:
  4133. self.selected.remove(geo_el)
  4134. self.selected.append(geo_el)
  4135. def set_unselected(self, geo_el):
  4136. if geo_el in self.selected:
  4137. self.selected.remove(geo_el)
  4138. def on_array_type_combo(self):
  4139. if self.array_type_combo.currentIndex() == 0:
  4140. self.array_circular_frame.hide()
  4141. self.array_linear_frame.show()
  4142. else:
  4143. self.delete_utility_geometry()
  4144. self.array_circular_frame.show()
  4145. self.array_linear_frame.hide()
  4146. self.app.inform.emit(_("Click on the circular array Center position"))
  4147. def on_linear_angle_radio(self):
  4148. val = self.pad_axis_radio.get_value()
  4149. if val == 'A':
  4150. self.linear_angle_spinner.show()
  4151. self.linear_angle_label.show()
  4152. else:
  4153. self.linear_angle_spinner.hide()
  4154. self.linear_angle_label.hide()
  4155. def on_copy_button(self):
  4156. self.select_tool('copy')
  4157. return
  4158. def on_move_button(self):
  4159. self.select_tool('move')
  4160. return
  4161. def on_pad_add(self):
  4162. self.select_tool('pad')
  4163. def on_pad_add_array(self):
  4164. self.select_tool('array')
  4165. def on_track_add(self):
  4166. self.select_tool('track')
  4167. def on_region_add(self):
  4168. self.select_tool('region')
  4169. def on_poligonize(self):
  4170. self.select_tool('poligonize')
  4171. def on_disc_add(self):
  4172. self.select_tool('disc')
  4173. def on_add_semidisc(self):
  4174. self.select_tool('semidisc')
  4175. def on_buffer(self):
  4176. buff_value = 0.01
  4177. log.debug("AppGerberEditor.on_buffer()")
  4178. try:
  4179. buff_value = float(self.buffer_distance_entry.get_value())
  4180. except ValueError:
  4181. # try to convert comma to decimal point. if it's still not working error message and return
  4182. try:
  4183. buff_value = float(self.buffer_distance_entry.get_value().replace(',', '.'))
  4184. self.buffer_distance_entry.set_value(buff_value)
  4185. except ValueError:
  4186. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4187. _("Buffer distance value is missing or wrong format. Add it and retry."))
  4188. return
  4189. # the cb index start from 0 but the join styles for the buffer start from 1 therefore the adjustment
  4190. # I populated the combobox such that the index coincide with the join styles value (which is really an INT)
  4191. join_style = self.buffer_corner_cb.currentIndex() + 1
  4192. def buffer_recursion(geom_el, selection):
  4193. if type(geom_el) == list:
  4194. geoms = []
  4195. for local_geom in geom_el:
  4196. geoms.append(buffer_recursion(local_geom, selection=selection))
  4197. return geoms
  4198. else:
  4199. if geom_el in selection:
  4200. geometric_data = geom_el.geo
  4201. buffered_geom_el = {}
  4202. if 'solid' in geometric_data:
  4203. buffered_geom_el['solid'] = geometric_data['solid'].buffer(buff_value, join_style=join_style)
  4204. if 'follow' in geometric_data:
  4205. buffered_geom_el['follow'] = geometric_data['follow'].buffer(buff_value, join_style=join_style)
  4206. if 'clear' in geometric_data:
  4207. buffered_geom_el['clear'] = geometric_data['clear'].buffer(buff_value, join_style=join_style)
  4208. return DrawToolShape(buffered_geom_el)
  4209. else:
  4210. return geom_el
  4211. if not self.apertures_table.selectedItems():
  4212. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4213. _("No aperture to buffer. Select at least one aperture and try again."))
  4214. return
  4215. for x in self.apertures_table.selectedItems():
  4216. try:
  4217. apcode = self.apertures_table.item(x.row(), 1).text()
  4218. temp_storage = deepcopy(buffer_recursion(self.storage_dict[apcode]['geometry'], self.selected))
  4219. self.storage_dict[apcode]['geometry'] = []
  4220. self.storage_dict[apcode]['geometry'] = temp_storage
  4221. except Exception as e:
  4222. log.debug("AppGerberEditor.buffer() --> %s" % str(e))
  4223. self.app.inform.emit('[ERROR_NOTCL] %s\n%s' % (_("Failed."), str(traceback.print_exc())))
  4224. return
  4225. self.plot_all()
  4226. self.app.inform.emit('[success] %s' % _("Done. Buffer Tool completed."))
  4227. def on_scale(self):
  4228. scale_factor = 1.0
  4229. log.debug("AppGerberEditor.on_scale()")
  4230. try:
  4231. scale_factor = float(self.scale_factor_entry.get_value())
  4232. except ValueError:
  4233. # try to convert comma to decimal point. if it's still not working error message and return
  4234. try:
  4235. scale_factor = float(self.scale_factor_entry.get_value().replace(',', '.'))
  4236. self.scale_factor_entry.set_value(scale_factor)
  4237. except ValueError:
  4238. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4239. _("Scale factor value is missing or wrong format. Add it and retry."))
  4240. return
  4241. def scale_recursion(geom_el, selection):
  4242. if type(geom_el) == list:
  4243. geoms = []
  4244. for local_geom in geom_el:
  4245. geoms.append(scale_recursion(local_geom, selection=selection))
  4246. return geoms
  4247. else:
  4248. if geom_el in selection:
  4249. geometric_data = geom_el.geo
  4250. scaled_geom_el = {}
  4251. if 'solid' in geometric_data:
  4252. scaled_geom_el['solid'] = affinity.scale(
  4253. geometric_data['solid'], scale_factor, scale_factor, origin='center'
  4254. )
  4255. if 'follow' in geometric_data:
  4256. scaled_geom_el['follow'] = affinity.scale(
  4257. geometric_data['follow'], scale_factor, scale_factor, origin='center'
  4258. )
  4259. if 'clear' in geometric_data:
  4260. scaled_geom_el['clear'] = affinity.scale(
  4261. geometric_data['clear'], scale_factor, scale_factor, origin='center'
  4262. )
  4263. return DrawToolShape(scaled_geom_el)
  4264. else:
  4265. return geom_el
  4266. if not self.apertures_table.selectedItems():
  4267. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4268. _("No aperture to scale. Select at least one aperture and try again."))
  4269. return
  4270. for x in self.apertures_table.selectedItems():
  4271. try:
  4272. apcode = self.apertures_table.item(x.row(), 1).text()
  4273. temp_storage = deepcopy(scale_recursion(self.storage_dict[apcode]['geometry'], self.selected))
  4274. self.storage_dict[apcode]['geometry'] = []
  4275. self.storage_dict[apcode]['geometry'] = temp_storage
  4276. except Exception as e:
  4277. log.debug("AppGerberEditor.on_scale() --> %s" % str(e))
  4278. self.plot_all()
  4279. self.app.inform.emit('[success] %s' %
  4280. _("Done. Scale Tool completed."))
  4281. def on_markarea(self):
  4282. # clear previous marking
  4283. self.ma_annotation.clear(update=True)
  4284. self.units = self.app.defaults['units'].upper()
  4285. text = []
  4286. position = []
  4287. for apcode in self.storage_dict:
  4288. if 'geometry' in self.storage_dict[apcode]:
  4289. for geo_el in self.storage_dict[apcode]['geometry']:
  4290. if 'solid' in geo_el.geo:
  4291. area = geo_el.geo['solid'].area
  4292. try:
  4293. upper_threshold_val = self.ma_upper_threshold_entry.get_value()
  4294. except Exception:
  4295. return
  4296. try:
  4297. lower_threshold_val = self.ma_lower_threshold_entry.get_value()
  4298. except Exception:
  4299. lower_threshold_val = 0.0
  4300. if float(upper_threshold_val) > area > float(lower_threshold_val):
  4301. current_pos = geo_el.geo['solid'].exterior.coords[-1]
  4302. text_elem = '%.*f' % (self.decimals, area)
  4303. text.append(text_elem)
  4304. position.append(current_pos)
  4305. self.geo_to_delete.append(geo_el)
  4306. if text:
  4307. self.ma_annotation.set(text=text, pos=position, visible=True,
  4308. font_size=self.app.defaults["cncjob_annotation_fontsize"],
  4309. color='#000000FF')
  4310. self.app.inform.emit('[success] %s' %
  4311. _("Polygons marked."))
  4312. else:
  4313. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4314. _("No polygons were marked. None fit within the limits."))
  4315. def delete_marked_polygons(self):
  4316. for shape_sel in self.geo_to_delete:
  4317. self.delete_shape(shape_sel)
  4318. self.build_ui()
  4319. self.plot_all()
  4320. self.app.inform.emit('[success] %s' % _("Done. Apertures geometry deleted."))
  4321. def on_eraser(self):
  4322. self.select_tool('eraser')
  4323. def on_transform(self):
  4324. if type(self.active_tool) == FCTransform:
  4325. self.select_tool('select')
  4326. else:
  4327. self.select_tool('transform')
  4328. def hide_tool(self, tool_name):
  4329. # self.app.ui.notebook.setTabText(2, _("Tools"))
  4330. try:
  4331. if tool_name == 'all':
  4332. self.apertures_frame.hide()
  4333. if tool_name == 'select':
  4334. self.apertures_frame.show()
  4335. if tool_name == 'buffer' or tool_name == 'all':
  4336. self.buffer_tool_frame.hide()
  4337. if tool_name == 'scale' or tool_name == 'all':
  4338. self.scale_tool_frame.hide()
  4339. if tool_name == 'markarea' or tool_name == 'all':
  4340. self.ma_tool_frame.hide()
  4341. except Exception as e:
  4342. log.debug("AppGerberEditor.hide_tool() --> %s" % str(e))
  4343. self.app.ui.notebook.setCurrentWidget(self.app.ui.properties_tab)
  4344. class TransformEditorTool(AppTool):
  4345. """
  4346. Inputs to specify how to paint the selected polygons.
  4347. """
  4348. toolName = _("Transform Tool")
  4349. rotateName = _("Rotate")
  4350. skewName = _("Skew/Shear")
  4351. scaleName = _("Scale")
  4352. flipName = _("Mirror (Flip)")
  4353. offsetName = _("Offset")
  4354. bufferName = _("Buffer")
  4355. def __init__(self, app, draw_app):
  4356. AppTool.__init__(self, app)
  4357. self.app = app
  4358. self.draw_app = draw_app
  4359. self.decimals = self.app.decimals
  4360. # ## Title
  4361. title_label = QtWidgets.QLabel("%s" % self.toolName)
  4362. title_label.setStyleSheet("""
  4363. QLabel
  4364. {
  4365. font-size: 16px;
  4366. font-weight: bold;
  4367. }
  4368. """)
  4369. self.layout.addWidget(title_label)
  4370. self.layout.addWidget(QtWidgets.QLabel(''))
  4371. # ## Layout
  4372. grid0 = QtWidgets.QGridLayout()
  4373. self.layout.addLayout(grid0)
  4374. grid0.setColumnStretch(0, 0)
  4375. grid0.setColumnStretch(1, 1)
  4376. grid0.setColumnStretch(2, 0)
  4377. grid0.addWidget(QtWidgets.QLabel(''))
  4378. # Reference
  4379. ref_label = QtWidgets.QLabel('%s:' % _("Reference"))
  4380. ref_label.setToolTip(
  4381. _("The reference point for Rotate, Skew, Scale, Mirror.\n"
  4382. "Can be:\n"
  4383. "- Origin -> it is the 0, 0 point\n"
  4384. "- Selection -> the center of the bounding box of the selected objects\n"
  4385. "- Point -> a custom point defined by X,Y coordinates\n"
  4386. "- Min Selection -> the point (minx, miny) of the bounding box of the selection")
  4387. )
  4388. self.ref_combo = FCComboBox()
  4389. self.ref_items = [_("Origin"), _("Selection"), _("Point"), _("Minimum")]
  4390. self.ref_combo.addItems(self.ref_items)
  4391. grid0.addWidget(ref_label, 0, 0)
  4392. grid0.addWidget(self.ref_combo, 0, 1, 1, 2)
  4393. self.point_label = QtWidgets.QLabel('%s:' % _("Value"))
  4394. self.point_label.setToolTip(
  4395. _("A point of reference in format X,Y.")
  4396. )
  4397. self.point_entry = NumericalEvalTupleEntry()
  4398. grid0.addWidget(self.point_label, 1, 0)
  4399. grid0.addWidget(self.point_entry, 1, 1, 1, 2)
  4400. self.point_button = FCButton(_("Add"))
  4401. self.point_button.setToolTip(
  4402. _("Add point coordinates from clipboard.")
  4403. )
  4404. grid0.addWidget(self.point_button, 2, 0, 1, 3)
  4405. separator_line = QtWidgets.QFrame()
  4406. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4407. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4408. grid0.addWidget(separator_line, 5, 0, 1, 3)
  4409. # ## Rotate Title
  4410. rotate_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.rotateName)
  4411. grid0.addWidget(rotate_title_label, 6, 0, 1, 3)
  4412. self.rotate_label = QtWidgets.QLabel('%s:' % _("Angle"))
  4413. self.rotate_label.setToolTip(
  4414. _("Angle for Rotation action, in degrees.\n"
  4415. "Float number between -360 and 359.\n"
  4416. "Positive numbers for CW motion.\n"
  4417. "Negative numbers for CCW motion.")
  4418. )
  4419. self.rotate_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4420. self.rotate_entry.set_precision(self.decimals)
  4421. self.rotate_entry.setSingleStep(45)
  4422. self.rotate_entry.setWrapping(True)
  4423. self.rotate_entry.set_range(-360, 360)
  4424. # self.rotate_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4425. self.rotate_button = FCButton(_("Rotate"))
  4426. self.rotate_button.setToolTip(
  4427. _("Rotate the selected object(s).\n"
  4428. "The point of reference is the middle of\n"
  4429. "the bounding box for all selected objects.")
  4430. )
  4431. self.rotate_button.setMinimumWidth(90)
  4432. grid0.addWidget(self.rotate_label, 7, 0)
  4433. grid0.addWidget(self.rotate_entry, 7, 1)
  4434. grid0.addWidget(self.rotate_button, 7, 2)
  4435. separator_line = QtWidgets.QFrame()
  4436. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4437. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4438. grid0.addWidget(separator_line, 8, 0, 1, 3)
  4439. # ## Skew Title
  4440. skew_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.skewName)
  4441. grid0.addWidget(skew_title_label, 9, 0, 1, 2)
  4442. self.skew_link_cb = FCCheckBox()
  4443. self.skew_link_cb.setText(_("Link"))
  4444. self.skew_link_cb.setToolTip(
  4445. _("Link the Y entry to X entry and copy its content.")
  4446. )
  4447. grid0.addWidget(self.skew_link_cb, 9, 2)
  4448. self.skewx_label = QtWidgets.QLabel('%s:' % _("X angle"))
  4449. self.skewx_label.setToolTip(
  4450. _("Angle for Skew action, in degrees.\n"
  4451. "Float number between -360 and 360.")
  4452. )
  4453. self.skewx_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4454. # self.skewx_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4455. self.skewx_entry.set_precision(self.decimals)
  4456. self.skewx_entry.set_range(-360, 360)
  4457. self.skewx_button = FCButton(_("Skew X"))
  4458. self.skewx_button.setToolTip(
  4459. _("Skew/shear the selected object(s).\n"
  4460. "The point of reference is the middle of\n"
  4461. "the bounding box for all selected objects."))
  4462. self.skewx_button.setMinimumWidth(90)
  4463. grid0.addWidget(self.skewx_label, 10, 0)
  4464. grid0.addWidget(self.skewx_entry, 10, 1)
  4465. grid0.addWidget(self.skewx_button, 10, 2)
  4466. self.skewy_label = QtWidgets.QLabel('%s:' % _("Y angle"))
  4467. self.skewy_label.setToolTip(
  4468. _("Angle for Skew action, in degrees.\n"
  4469. "Float number between -360 and 360.")
  4470. )
  4471. self.skewy_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4472. # self.skewy_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4473. self.skewy_entry.set_precision(self.decimals)
  4474. self.skewy_entry.set_range(-360, 360)
  4475. self.skewy_button = FCButton(_("Skew Y"))
  4476. self.skewy_button.setToolTip(
  4477. _("Skew/shear the selected object(s).\n"
  4478. "The point of reference is the middle of\n"
  4479. "the bounding box for all selected objects."))
  4480. self.skewy_button.setMinimumWidth(90)
  4481. grid0.addWidget(self.skewy_label, 12, 0)
  4482. grid0.addWidget(self.skewy_entry, 12, 1)
  4483. grid0.addWidget(self.skewy_button, 12, 2)
  4484. self.ois_sk = OptionalInputSection(self.skew_link_cb, [self.skewy_label, self.skewy_entry, self.skewy_button],
  4485. logic=False)
  4486. separator_line = QtWidgets.QFrame()
  4487. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4488. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4489. grid0.addWidget(separator_line, 14, 0, 1, 3)
  4490. # ## Scale Title
  4491. scale_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.scaleName)
  4492. grid0.addWidget(scale_title_label, 15, 0, 1, 2)
  4493. self.scale_link_cb = FCCheckBox()
  4494. self.scale_link_cb.setText(_("Link"))
  4495. self.scale_link_cb.setToolTip(
  4496. _("Link the Y entry to X entry and copy its content.")
  4497. )
  4498. grid0.addWidget(self.scale_link_cb, 15, 2)
  4499. self.scalex_label = QtWidgets.QLabel('%s:' % _("X factor"))
  4500. self.scalex_label.setToolTip(
  4501. _("Factor for scaling on X axis.")
  4502. )
  4503. self.scalex_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4504. # self.scalex_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4505. self.scalex_entry.set_precision(self.decimals)
  4506. self.scalex_entry.setMinimum(-1e6)
  4507. self.scalex_button = FCButton(_("Scale X"))
  4508. self.scalex_button.setToolTip(
  4509. _("Scale the selected object(s).\n"
  4510. "The point of reference depends on \n"
  4511. "the Scale reference checkbox state."))
  4512. self.scalex_button.setMinimumWidth(90)
  4513. grid0.addWidget(self.scalex_label, 17, 0)
  4514. grid0.addWidget(self.scalex_entry, 17, 1)
  4515. grid0.addWidget(self.scalex_button, 17, 2)
  4516. self.scaley_label = QtWidgets.QLabel('%s:' % _("Y factor"))
  4517. self.scaley_label.setToolTip(
  4518. _("Factor for scaling on Y axis.")
  4519. )
  4520. self.scaley_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4521. # self.scaley_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4522. self.scaley_entry.set_precision(self.decimals)
  4523. self.scaley_entry.setMinimum(-1e6)
  4524. self.scaley_button = FCButton(_("Scale Y"))
  4525. self.scaley_button.setToolTip(
  4526. _("Scale the selected object(s).\n"
  4527. "The point of reference depends on \n"
  4528. "the Scale reference checkbox state."))
  4529. self.scaley_button.setMinimumWidth(90)
  4530. grid0.addWidget(self.scaley_label, 19, 0)
  4531. grid0.addWidget(self.scaley_entry, 19, 1)
  4532. grid0.addWidget(self.scaley_button, 19, 2)
  4533. self.ois_s = OptionalInputSection(self.scale_link_cb,
  4534. [
  4535. self.scaley_label,
  4536. self.scaley_entry,
  4537. self.scaley_button
  4538. ], logic=False)
  4539. separator_line = QtWidgets.QFrame()
  4540. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4541. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4542. grid0.addWidget(separator_line, 21, 0, 1, 3)
  4543. # ## Flip Title
  4544. flip_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.flipName)
  4545. grid0.addWidget(flip_title_label, 23, 0, 1, 3)
  4546. self.flipx_button = FCButton(_("Flip on X"))
  4547. self.flipx_button.setToolTip(
  4548. _("Flip the selected object(s) over the X axis.")
  4549. )
  4550. self.flipy_button = FCButton(_("Flip on Y"))
  4551. self.flipy_button.setToolTip(
  4552. _("Flip the selected object(s) over the X axis.")
  4553. )
  4554. hlay0 = QtWidgets.QHBoxLayout()
  4555. grid0.addLayout(hlay0, 25, 0, 1, 3)
  4556. hlay0.addWidget(self.flipx_button)
  4557. hlay0.addWidget(self.flipy_button)
  4558. separator_line = QtWidgets.QFrame()
  4559. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4560. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4561. grid0.addWidget(separator_line, 27, 0, 1, 3)
  4562. # ## Offset Title
  4563. offset_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.offsetName)
  4564. grid0.addWidget(offset_title_label, 29, 0, 1, 3)
  4565. self.offx_label = QtWidgets.QLabel('%s:' % _("X val"))
  4566. self.offx_label.setToolTip(
  4567. _("Distance to offset on X axis. In current units.")
  4568. )
  4569. self.offx_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4570. # self.offx_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4571. self.offx_entry.set_precision(self.decimals)
  4572. self.offx_entry.setMinimum(-1e6)
  4573. self.offx_button = FCButton(_("Offset X"))
  4574. self.offx_button.setToolTip(
  4575. _("Offset the selected object(s).\n"
  4576. "The point of reference is the middle of\n"
  4577. "the bounding box for all selected objects.\n"))
  4578. self.offx_button.setMinimumWidth(90)
  4579. grid0.addWidget(self.offx_label, 31, 0)
  4580. grid0.addWidget(self.offx_entry, 31, 1)
  4581. grid0.addWidget(self.offx_button, 31, 2)
  4582. self.offy_label = QtWidgets.QLabel('%s:' % _("Y val"))
  4583. self.offy_label.setToolTip(
  4584. _("Distance to offset on Y axis. In current units.")
  4585. )
  4586. self.offy_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4587. # self.offy_entry.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  4588. self.offy_entry.set_precision(self.decimals)
  4589. self.offy_entry.setMinimum(-1e6)
  4590. self.offy_button = FCButton(_("Offset Y"))
  4591. self.offy_button.setToolTip(
  4592. _("Offset the selected object(s).\n"
  4593. "The point of reference is the middle of\n"
  4594. "the bounding box for all selected objects.\n"))
  4595. self.offy_button.setMinimumWidth(90)
  4596. grid0.addWidget(self.offy_label, 32, 0)
  4597. grid0.addWidget(self.offy_entry, 32, 1)
  4598. grid0.addWidget(self.offy_button, 32, 2)
  4599. separator_line = QtWidgets.QFrame()
  4600. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  4601. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  4602. grid0.addWidget(separator_line, 34, 0, 1, 3)
  4603. # ## Buffer Title
  4604. buffer_title_label = QtWidgets.QLabel("<font size=3><b>%s</b></font>" % self.bufferName)
  4605. grid0.addWidget(buffer_title_label, 35, 0, 1, 2)
  4606. self.buffer_rounded_cb = FCCheckBox('%s' % _("Rounded"))
  4607. self.buffer_rounded_cb.setToolTip(
  4608. _("If checked then the buffer will surround the buffered shape,\n"
  4609. "every corner will be rounded.\n"
  4610. "If not checked then the buffer will follow the exact geometry\n"
  4611. "of the buffered shape.")
  4612. )
  4613. grid0.addWidget(self.buffer_rounded_cb, 35, 2)
  4614. self.buffer_label = QtWidgets.QLabel('%s:' % _("Distance"))
  4615. self.buffer_label.setToolTip(
  4616. _("A positive value will create the effect of dilation,\n"
  4617. "while a negative value will create the effect of erosion.\n"
  4618. "Each geometry element of the object will be increased\n"
  4619. "or decreased with the 'distance'.")
  4620. )
  4621. self.buffer_entry = FCDoubleSpinner(callback=self.confirmation_message)
  4622. self.buffer_entry.set_precision(self.decimals)
  4623. self.buffer_entry.setSingleStep(0.1)
  4624. self.buffer_entry.setWrapping(True)
  4625. self.buffer_entry.set_range(-9999.9999, 9999.9999)
  4626. self.buffer_button = FCButton(_("Buffer D"))
  4627. self.buffer_button.setToolTip(
  4628. _("Create the buffer effect on each geometry,\n"
  4629. "element from the selected object, using the distance.")
  4630. )
  4631. self.buffer_button.setMinimumWidth(90)
  4632. grid0.addWidget(self.buffer_label, 37, 0)
  4633. grid0.addWidget(self.buffer_entry, 37, 1)
  4634. grid0.addWidget(self.buffer_button, 37, 2)
  4635. self.buffer_factor_label = QtWidgets.QLabel('%s:' % _("Value"))
  4636. self.buffer_factor_label.setToolTip(
  4637. _("A positive value will create the effect of dilation,\n"
  4638. "while a negative value will create the effect of erosion.\n"
  4639. "Each geometry element of the object will be increased\n"
  4640. "or decreased to fit the 'Value'. Value is a percentage\n"
  4641. "of the initial dimension.")
  4642. )
  4643. self.buffer_factor_entry = FCDoubleSpinner(callback=self.confirmation_message, suffix='%')
  4644. self.buffer_factor_entry.set_range(-100.0000, 1000.0000)
  4645. self.buffer_factor_entry.set_precision(self.decimals)
  4646. self.buffer_factor_entry.setWrapping(True)
  4647. self.buffer_factor_entry.setSingleStep(1)
  4648. self.buffer_factor_button = FCButton(_("Buffer F"))
  4649. self.buffer_factor_button.setToolTip(
  4650. _("Create the buffer effect on each geometry,\n"
  4651. "element from the selected object, using the factor.")
  4652. )
  4653. self.buffer_factor_button.setMinimumWidth(90)
  4654. grid0.addWidget(self.buffer_factor_label, 38, 0)
  4655. grid0.addWidget(self.buffer_factor_entry, 38, 1)
  4656. grid0.addWidget(self.buffer_factor_button, 38, 2)
  4657. grid0.addWidget(QtWidgets.QLabel(''), 42, 0, 1, 3)
  4658. self.layout.addStretch()
  4659. # Signals
  4660. self.ref_combo.currentIndexChanged.connect(self.on_reference_changed)
  4661. self.point_button.clicked.connect(self.on_add_coords)
  4662. self.rotate_button.clicked.connect(self.on_rotate)
  4663. self.skewx_button.clicked.connect(self.on_skewx)
  4664. self.skewy_button.clicked.connect(self.on_skewy)
  4665. self.scalex_button.clicked.connect(self.on_scalex)
  4666. self.scaley_button.clicked.connect(self.on_scaley)
  4667. self.offx_button.clicked.connect(self.on_offx)
  4668. self.offy_button.clicked.connect(self.on_offy)
  4669. self.flipx_button.clicked.connect(self.on_flipx)
  4670. self.flipy_button.clicked.connect(self.on_flipy)
  4671. self.buffer_button.clicked.connect(self.on_buffer_by_distance)
  4672. self.buffer_factor_button.clicked.connect(self.on_buffer_by_factor)
  4673. # self.rotate_entry.editingFinished.connect(self.on_rotate)
  4674. # self.skewx_entry.editingFinished.connect(self.on_skewx)
  4675. # self.skewy_entry.editingFinished.connect(self.on_skewy)
  4676. # self.scalex_entry.editingFinished.connect(self.on_scalex)
  4677. # self.scaley_entry.editingFinished.connect(self.on_scaley)
  4678. # self.offx_entry.editingFinished.connect(self.on_offx)
  4679. # self.offy_entry.editingFinished.connect(self.on_offy)
  4680. self.set_tool_ui()
  4681. def run(self, toggle=True):
  4682. self.app.defaults.report_usage("Gerber Editor Transform Tool()")
  4683. # if the splitter is hidden, display it, else hide it but only if the current widget is the same
  4684. if self.app.ui.splitter.sizes()[0] == 0:
  4685. self.app.ui.splitter.setSizes([1, 1])
  4686. if toggle:
  4687. try:
  4688. if self.app.ui.tool_scroll_area.widget().objectName() == self.toolName:
  4689. self.app.ui.notebook.setCurrentWidget(self.app.ui.properties_tab)
  4690. else:
  4691. self.app.ui.notebook.setCurrentWidget(self.app.ui.tool_tab)
  4692. except AttributeError:
  4693. pass
  4694. AppTool.run(self)
  4695. self.set_tool_ui()
  4696. self.app.ui.notebook.setTabText(2, _("Transform Tool"))
  4697. def install(self, icon=None, separator=None, **kwargs):
  4698. AppTool.install(self, icon, separator, shortcut='Alt+T', **kwargs)
  4699. def set_tool_ui(self):
  4700. # Initialize form
  4701. ref_val = self.app.defaults["tools_transform_reference"]
  4702. if ref_val == _("Object"):
  4703. ref_val = _("Selection")
  4704. self.ref_combo.set_value(ref_val)
  4705. self.point_entry.set_value(self.app.defaults["tools_transform_ref_point"])
  4706. self.rotate_entry.set_value(self.app.defaults["tools_transform_rotate"])
  4707. self.skewx_entry.set_value(self.app.defaults["tools_transform_skew_x"])
  4708. self.skewy_entry.set_value(self.app.defaults["tools_transform_skew_y"])
  4709. self.skew_link_cb.set_value(self.app.defaults["tools_transform_skew_link"])
  4710. self.scalex_entry.set_value(self.app.defaults["tools_transform_scale_x"])
  4711. self.scaley_entry.set_value(self.app.defaults["tools_transform_scale_y"])
  4712. self.scale_link_cb.set_value(self.app.defaults["tools_transform_scale_link"])
  4713. self.offx_entry.set_value(self.app.defaults["tools_transform_offset_x"])
  4714. self.offy_entry.set_value(self.app.defaults["tools_transform_offset_y"])
  4715. self.buffer_entry.set_value(self.app.defaults["tools_transform_buffer_dis"])
  4716. self.buffer_factor_entry.set_value(self.app.defaults["tools_transform_buffer_factor"])
  4717. self.buffer_rounded_cb.set_value(self.app.defaults["tools_transform_buffer_corner"])
  4718. # initial state is hidden
  4719. self.point_label.hide()
  4720. self.point_entry.hide()
  4721. self.point_button.hide()
  4722. def template(self):
  4723. if not self.draw_app.selected:
  4724. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Cancelled. No shape selected."))
  4725. return
  4726. self.draw_app.select_tool("select")
  4727. self.app.ui.notebook.setTabText(2, "Tools")
  4728. self.app.ui.notebook.setCurrentWidget(self.app.ui.project_tab)
  4729. self.app.ui.splitter.setSizes([0, 1])
  4730. def on_reference_changed(self, index):
  4731. if index == 0 or index == 1: # "Origin" or "Selection" reference
  4732. self.point_label.hide()
  4733. self.point_entry.hide()
  4734. self.point_button.hide()
  4735. elif index == 2: # "Point" reference
  4736. self.point_label.show()
  4737. self.point_entry.show()
  4738. self.point_button.show()
  4739. def on_calculate_reference(self, ref_index=None):
  4740. if ref_index:
  4741. ref_val = ref_index
  4742. else:
  4743. ref_val = self.ref_combo.currentIndex()
  4744. if ref_val == 0: # "Origin" reference
  4745. return 0, 0
  4746. elif ref_val == 1: # "Selection" reference
  4747. sel_list = self.draw_app.selected
  4748. if sel_list:
  4749. xmin, ymin, xmax, ymax = self.alt_bounds(sel_list)
  4750. px = (xmax + xmin) * 0.5
  4751. py = (ymax + ymin) * 0.5
  4752. return px, py
  4753. else:
  4754. self.app.inform.emit('[ERROR_NOTCL] %s' % _("No shape selected."))
  4755. return "fail"
  4756. elif ref_val == 2: # "Point" reference
  4757. point_val = self.point_entry.get_value()
  4758. try:
  4759. px, py = eval('{}'.format(point_val))
  4760. return px, py
  4761. except Exception:
  4762. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Incorrect format for Point value. Needs format X,Y"))
  4763. return "fail"
  4764. else:
  4765. sel_list = self.draw_app.selected
  4766. if sel_list:
  4767. xmin, ymin, xmax, ymax = self.alt_bounds(sel_list)
  4768. if ref_val == 3:
  4769. return xmin, ymin # lower left corner
  4770. elif ref_val == 4:
  4771. return xmax, ymin # lower right corner
  4772. elif ref_val == 5:
  4773. return xmax, ymax # upper right corner
  4774. else:
  4775. return xmin, ymax # upper left corner
  4776. else:
  4777. self.app.inform.emit('[ERROR_NOTCL] %s' % _("No shape selected."))
  4778. return "fail"
  4779. def on_add_coords(self):
  4780. val = self.app.clipboard.text()
  4781. self.point_entry.set_value(val)
  4782. def on_rotate(self, sig=None, val=None, ref=None):
  4783. value = float(self.rotate_entry.get_value()) if val is None else val
  4784. if value == 0:
  4785. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Rotate transformation can not be done for a value of 0."))
  4786. return
  4787. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4788. if point == 'fail':
  4789. return
  4790. self.app.worker_task.emit({'fcn': self.on_rotate_action, 'params': [value, point]})
  4791. def on_flipx(self, signal=None, ref=None):
  4792. axis = 'Y'
  4793. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4794. if point == 'fail':
  4795. return
  4796. self.app.worker_task.emit({'fcn': self.on_flip, 'params': [axis, point]})
  4797. def on_flipy(self, signal=None, ref=None):
  4798. axis = 'X'
  4799. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4800. if point == 'fail':
  4801. return
  4802. self.app.worker_task.emit({'fcn': self.on_flip, 'params': [axis, point]})
  4803. def on_skewx(self, signal=None, val=None, ref=None):
  4804. xvalue = float(self.skewx_entry.get_value()) if val is None else val
  4805. if xvalue == 0:
  4806. return
  4807. if self.skew_link_cb.get_value():
  4808. yvalue = xvalue
  4809. else:
  4810. yvalue = 0
  4811. axis = 'X'
  4812. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4813. if point == 'fail':
  4814. return
  4815. self.app.worker_task.emit({'fcn': self.on_skew, 'params': [axis, xvalue, yvalue, point]})
  4816. def on_skewy(self, signal=None, val=None, ref=None):
  4817. xvalue = 0
  4818. yvalue = float(self.skewy_entry.get_value()) if val is None else val
  4819. if yvalue == 0:
  4820. return
  4821. axis = 'Y'
  4822. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4823. if point == 'fail':
  4824. return
  4825. self.app.worker_task.emit({'fcn': self.on_skew, 'params': [axis, xvalue, yvalue, point]})
  4826. def on_scalex(self, signal=None, val=None, ref=None):
  4827. xvalue = float(self.scalex_entry.get_value()) if val is None else val
  4828. if xvalue == 0 or xvalue == 1:
  4829. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4830. _("Scale transformation can not be done for a factor of 0 or 1."))
  4831. return
  4832. if self.scale_link_cb.get_value():
  4833. yvalue = xvalue
  4834. else:
  4835. yvalue = 1
  4836. axis = 'X'
  4837. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4838. if point == 'fail':
  4839. return
  4840. self.app.worker_task.emit({'fcn': self.on_scale, 'params': [axis, xvalue, yvalue, point]})
  4841. def on_scaley(self, signal=None, val=None, ref=None):
  4842. xvalue = 1
  4843. yvalue = float(self.scaley_entry.get_value()) if val is None else val
  4844. if yvalue == 0 or yvalue == 1:
  4845. self.app.inform.emit('[WARNING_NOTCL] %s' %
  4846. _("Scale transformation can not be done for a factor of 0 or 1."))
  4847. return
  4848. axis = 'Y'
  4849. point = self.on_calculate_reference() if ref is None else self.on_calculate_reference(ref_index=ref)
  4850. if point == 'fail':
  4851. return
  4852. self.app.worker_task.emit({'fcn': self.on_scale, 'params': [axis, xvalue, yvalue, point]})
  4853. def on_offx(self, signal=None, val=None):
  4854. value = float(self.offx_entry.get_value()) if val is None else val
  4855. if value == 0:
  4856. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Offset transformation can not be done for a value of 0."))
  4857. return
  4858. axis = 'X'
  4859. self.app.worker_task.emit({'fcn': self.on_offset, 'params': [axis, value]})
  4860. def on_offy(self, signal=None, val=None):
  4861. value = float(self.offy_entry.get_value()) if val is None else val
  4862. if value == 0:
  4863. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Offset transformation can not be done for a value of 0."))
  4864. return
  4865. axis = 'Y'
  4866. self.app.worker_task.emit({'fcn': self.on_offset, 'params': [axis, value]})
  4867. def on_buffer_by_distance(self):
  4868. value = self.buffer_entry.get_value()
  4869. join = 1 if self.buffer_rounded_cb.get_value() else 2
  4870. self.app.worker_task.emit({'fcn': self.on_buffer_action, 'params': [value, join]})
  4871. def on_buffer_by_factor(self):
  4872. value = 1 + (self.buffer_factor_entry.get_value() / 100.0)
  4873. join = 1 if self.buffer_rounded_cb.get_value() else 2
  4874. # tell the buffer method to use the factor
  4875. factor = True
  4876. self.app.worker_task.emit({'fcn': self.on_buffer_action, 'params': [value, join, factor]})
  4877. def on_rotate_action(self, val, point):
  4878. """
  4879. Rotate geometry
  4880. :param num: Rotate with a known angle value, val
  4881. :param point: Reference point for rotation: tuple
  4882. :return:
  4883. """
  4884. elem_list = self.draw_app.selected
  4885. px, py = point
  4886. if not elem_list:
  4887. self.app.inform.emit('[WARNING_NOTCL] %s' %_("No shape selected."))
  4888. return
  4889. with self.app.proc_container.new(_("Appying Rotate")):
  4890. try:
  4891. for sel_el_shape in elem_list:
  4892. sel_el = sel_el_shape.geo
  4893. if 'solid' in sel_el:
  4894. sel_el['solid'] = affinity.rotate(sel_el['solid'], angle=-val, origin=(px, py))
  4895. if 'follow' in sel_el:
  4896. sel_el['follow'] = affinity.rotate(sel_el['follow'], angle=-val, origin=(px, py))
  4897. if 'clear' in sel_el:
  4898. sel_el['clear'] = affinity.rotate(sel_el['clear'], angle=-val, origin=(px, py))
  4899. self.draw_app.plot_all()
  4900. self.app.inform.emit('[success] %s' % _("Done. Rotate completed."))
  4901. except Exception as e:
  4902. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Rotation action was not executed."), str(e)))
  4903. return
  4904. def on_flip(self, axis, point):
  4905. """
  4906. Mirror (flip) geometry
  4907. :param axis: Mirror on a known axis given by the axis parameter
  4908. :param point: Mirror reference point
  4909. :return:
  4910. """
  4911. elem_list = self.draw_app.selected
  4912. px, py = point
  4913. if not elem_list:
  4914. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No shape selected."))
  4915. return
  4916. with self.app.proc_container.new(_("Applying Flip")):
  4917. try:
  4918. # execute mirroring
  4919. for sel_el_shape in elem_list:
  4920. sel_el = sel_el_shape.geo
  4921. if axis == 'X':
  4922. if 'solid' in sel_el:
  4923. sel_el['solid'] = affinity.scale(sel_el['solid'], xfact=1, yfact=-1, origin=(px, py))
  4924. if 'follow' in sel_el:
  4925. sel_el['follow'] = affinity.scale(sel_el['follow'], xfact=1, yfact=-1, origin=(px, py))
  4926. if 'clear' in sel_el:
  4927. sel_el['clear'] = affinity.scale(sel_el['clear'], xfact=1, yfact=-1, origin=(px, py))
  4928. self.app.inform.emit('[success] %s...' % _('Flip on the Y axis done'))
  4929. elif axis == 'Y':
  4930. if 'solid' in sel_el:
  4931. sel_el['solid'] = affinity.scale(sel_el['solid'], xfact=-1, yfact=1, origin=(px, py))
  4932. if 'follow' in sel_el:
  4933. sel_el['follow'] = affinity.scale(sel_el['follow'], xfact=-1, yfact=1, origin=(px, py))
  4934. if 'clear' in sel_el:
  4935. sel_el['clear'] = affinity.scale(sel_el['clear'], xfact=-1, yfact=1, origin=(px, py))
  4936. self.app.inform.emit('[success] %s...' % _('Flip on the X axis done'))
  4937. self.draw_app.plot_all()
  4938. except Exception as e:
  4939. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Flip action was not executed."), str(e)))
  4940. return
  4941. def on_skew(self, axis, xval, yval, point):
  4942. """
  4943. Skew geometry
  4944. :param axis: Axis on which to deform, skew
  4945. :param xval: Skew value on X axis
  4946. :param yval: Skew value on Y axis
  4947. :param point: Point of reference for deformation: tuple
  4948. :return:
  4949. """
  4950. elem_list = self.draw_app.selected
  4951. px, py = point
  4952. if not elem_list:
  4953. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No shape selected."))
  4954. return
  4955. with self.app.proc_container.new(_("Applying Skew")):
  4956. try:
  4957. for sel_el_shape in elem_list:
  4958. sel_el = sel_el_shape.geo
  4959. if 'solid' in sel_el:
  4960. sel_el['solid'] = affinity.skew(sel_el['solid'], xval, yval, origin=(px, py))
  4961. if 'follow' in sel_el:
  4962. sel_el['follow'] = affinity.skew(sel_el['follow'], xval, yval, origin=(px, py))
  4963. if 'clear' in sel_el:
  4964. sel_el['clear'] = affinity.skew(sel_el['clear'], xval, yval, origin=(px, py))
  4965. self.draw_app.plot_all()
  4966. if str(axis) == 'X':
  4967. self.app.inform.emit('[success] %s...' % _('Skew on the X axis done'))
  4968. else:
  4969. self.app.inform.emit('[success] %s...' % _('Skew on the Y axis done'))
  4970. except Exception as e:
  4971. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Skew action was not executed."), str(e)))
  4972. return
  4973. def on_scale(self, axis, xfactor, yfactor, point=None):
  4974. """
  4975. Scale geometry
  4976. :param axis: Axis on which to scale
  4977. :param xfactor: Factor for scaling on X axis
  4978. :param yfactor: Factor for scaling on Y axis
  4979. :param point: Point of origin for scaling
  4980. :return:
  4981. """
  4982. elem_list = self.draw_app.selected
  4983. px, py = point
  4984. if not elem_list:
  4985. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No shape selected."))
  4986. return
  4987. else:
  4988. with self.app.proc_container.new(_("Applying Scale")):
  4989. try:
  4990. for sel_el_shape in elem_list:
  4991. sel_el = sel_el_shape.geo
  4992. if 'solid' in sel_el:
  4993. sel_el['solid'] = affinity.scale(sel_el['solid'], xfactor, yfactor, origin=(px, py))
  4994. if 'follow' in sel_el:
  4995. sel_el['follow'] = affinity.scale(sel_el['follow'], xfactor, yfactor, origin=(px, py))
  4996. if 'clear' in sel_el:
  4997. sel_el['clear'] = affinity.scale(sel_el['clear'], xfactor, yfactor, origin=(px, py))
  4998. self.draw_app.plot_all()
  4999. if str(axis) == 'X':
  5000. self.app.inform.emit('[success] %s...' % _('Scale on the X axis done'))
  5001. else:
  5002. self.app.inform.emit('[success] %s...' % _('Scale on the Y axis done'))
  5003. except Exception as e:
  5004. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Scale action was not executed."), str(e)))
  5005. return
  5006. def on_offset(self, axis, num):
  5007. """
  5008. Offset geometry
  5009. :param axis: Axis on which to apply offset
  5010. :param num: The translation factor
  5011. :return:
  5012. """
  5013. elem_list = self.draw_app.selected
  5014. if not elem_list:
  5015. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No shape selected."))
  5016. return
  5017. with self.app.proc_container.new(_("Applying Offset")):
  5018. try:
  5019. for sel_el_shape in elem_list:
  5020. sel_el = sel_el_shape.geo
  5021. if axis == 'X':
  5022. if 'solid' in sel_el:
  5023. sel_el['solid'] = affinity.translate(sel_el['solid'], num, 0)
  5024. if 'follow' in sel_el:
  5025. sel_el['follow'] = affinity.translate(sel_el['follow'], num, 0)
  5026. if 'clear' in sel_el:
  5027. sel_el['clear'] = affinity.translate(sel_el['clear'], num, 0)
  5028. elif axis == 'Y':
  5029. if 'solid' in sel_el:
  5030. sel_el['solid'] = affinity.translate(sel_el['solid'], 0, num)
  5031. if 'follow' in sel_el:
  5032. sel_el['follow'] = affinity.translate(sel_el['follow'], 0, num)
  5033. if 'clear' in sel_el:
  5034. sel_el['clear'] = affinity.translate(sel_el['clear'], 0, num)
  5035. self.draw_app.plot_all()
  5036. if str(axis) == 'X':
  5037. self.app.inform.emit('[success] %s...' % _('Offset on the X axis done'))
  5038. else:
  5039. self.app.inform.emit('[success] %s...' % _('Offset on the Y axis done'))
  5040. except Exception as e:
  5041. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Offset action was not executed."), str(e)))
  5042. return
  5043. def on_buffer_action(self, value, join, factor=None):
  5044. elem_list = self.draw_app.selected
  5045. if not elem_list:
  5046. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No shape selected"))
  5047. return
  5048. with self.app.proc_container.new(_("Applying Buffer")):
  5049. try:
  5050. for sel_el_shape in elem_list:
  5051. sel_el = sel_el_shape.geo
  5052. if factor:
  5053. if 'solid' in sel_el:
  5054. sel_el['solid'] = affinity.scale(sel_el['solid'], value, value, origin='center')
  5055. if 'follow' in sel_el:
  5056. sel_el['follow'] = affinity.scale(sel_el['solid'], value, value, origin='center')
  5057. if 'clear' in sel_el:
  5058. sel_el['clear'] = affinity.scale(sel_el['solid'], value, value, origin='center')
  5059. else:
  5060. if 'solid' in sel_el:
  5061. sel_el['solid'] = sel_el['solid'].buffer(
  5062. value, resolution=self.app.defaults["gerber_circle_steps"], join_style=join)
  5063. if 'clear' in sel_el:
  5064. sel_el['clear'] = sel_el['clear'].buffer(
  5065. value, resolution=self.app.defaults["gerber_circle_steps"], join_style=join)
  5066. self.draw_app.plot_all()
  5067. self.app.inform.emit('[success] %s...' % _('Buffer done'))
  5068. except Exception as e:
  5069. self.app.log.debug("TransformEditorTool.on_buffer_action() --> %s" % str(e))
  5070. self.app.inform.emit('[ERROR_NOTCL] %s: %s.' % (_("Action was not executed, due of"), str(e)))
  5071. return
  5072. def on_rotate_key(self):
  5073. val_box = FCInputDialog(title=_("Rotate ..."),
  5074. text='%s:' % _('Enter an Angle Value (degrees)'),
  5075. min=-359.9999, max=360.0000, decimals=self.decimals,
  5076. init_val=float(self.app.defaults['tools_transform_rotate']))
  5077. val_box.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/rotate.png'))
  5078. val, ok = val_box.get_value()
  5079. if ok:
  5080. self.on_rotate(val=val, ref=1)
  5081. self.app.inform.emit('[success] %s...' % _("Geometry shape rotate done"))
  5082. return
  5083. else:
  5084. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Geometry shape rotate cancelled"))
  5085. def on_offx_key(self):
  5086. units = self.app.defaults['units'].lower()
  5087. val_box = FCInputDialog(title=_("Offset on X axis ..."),
  5088. text='%s: (%s)' % (_('Enter a distance Value'), str(units)),
  5089. min=-9999.9999, max=10000.0000, decimals=self.decimals,
  5090. init_val=float(self.app.defaults['tools_transform_offset_x']))
  5091. val_box.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/offsetx32.png'))
  5092. val, ok = val_box.get_value()
  5093. if ok:
  5094. self.on_offx(val=val)
  5095. self.app.inform.emit('[success] %s...' % _("Geometry shape offset on X axis done"))
  5096. return
  5097. else:
  5098. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Geometry shape offset X cancelled"))
  5099. def on_offy_key(self):
  5100. units = self.app.defaults['units'].lower()
  5101. val_box = FCInputDialog(title=_("Offset on Y axis ..."),
  5102. text='%s: (%s)' % (_('Enter a distance Value'), str(units)),
  5103. min=-9999.9999, max=10000.0000, decimals=self.decimals,
  5104. init_val=float(self.app.defaults['tools_transform_offset_y']))
  5105. val_box.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/offsety32.png'))
  5106. val, ok = val_box.get_value()
  5107. if ok:
  5108. self.on_offx(val=val)
  5109. self.app.inform.emit('[success] %s...' % _("Geometry shape offset on Y axis done"))
  5110. return
  5111. else:
  5112. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Geometry shape offset Y cancelled"))
  5113. def on_skewx_key(self):
  5114. val_box = FCInputDialog(title=_("Skew on X axis ..."),
  5115. text='%s:' % _('Enter an Angle Value (degrees)'),
  5116. min=-359.9999, max=360.0000, decimals=self.decimals,
  5117. init_val=float(self.app.defaults['tools_transform_skew_x']))
  5118. val_box.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/skewX.png'))
  5119. val, ok = val_box.get_value()
  5120. if ok:
  5121. self.on_skewx(val=val, ref=3)
  5122. self.app.inform.emit('[success] %s...' % _("Geometry shape skew on X axis done"))
  5123. return
  5124. else:
  5125. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Geometry shape skew X cancelled"))
  5126. def on_skewy_key(self):
  5127. val_box = FCInputDialog(title=_("Skew on Y axis ..."),
  5128. text='%s:' % _('Enter an Angle Value (degrees)'),
  5129. min=-359.9999, max=360.0000, decimals=self.decimals,
  5130. init_val=float(self.app.defaults['tools_transform_skew_y']))
  5131. val_box.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/skewY.png'))
  5132. val, ok = val_box.get_value()
  5133. if ok:
  5134. self.on_skewx(val=val, ref=3)
  5135. self.app.inform.emit('[success] %s...' % _("Geometry shape skew on Y axis done"))
  5136. return
  5137. else:
  5138. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Geometry shape skew Y cancelled"))
  5139. @staticmethod
  5140. def alt_bounds(shapelist):
  5141. """
  5142. Returns coordinates of rectangular bounds of a selection of shapes
  5143. """
  5144. def bounds_rec(lst):
  5145. minx = np.Inf
  5146. miny = np.Inf
  5147. maxx = -np.Inf
  5148. maxy = -np.Inf
  5149. try:
  5150. for shape in lst:
  5151. el = shape.geo
  5152. if 'solid' in el:
  5153. minx_, miny_, maxx_, maxy_ = bounds_rec(el['solid'])
  5154. minx = min(minx, minx_)
  5155. miny = min(miny, miny_)
  5156. maxx = max(maxx, maxx_)
  5157. maxy = max(maxy, maxy_)
  5158. return minx, miny, maxx, maxy
  5159. except TypeError:
  5160. # it's an object, return it's bounds
  5161. return lst.bounds
  5162. return bounds_rec(shapelist)
  5163. def get_shapely_list_bounds(geometry_list):
  5164. xmin = np.Inf
  5165. ymin = np.Inf
  5166. xmax = -np.Inf
  5167. ymax = -np.Inf
  5168. for gs in geometry_list:
  5169. try:
  5170. gxmin, gymin, gxmax, gymax = gs.bounds
  5171. xmin = min([xmin, gxmin])
  5172. ymin = min([ymin, gymin])
  5173. xmax = max([xmax, gxmax])
  5174. ymax = max([ymax, gymax])
  5175. except Exception as e:
  5176. log.warning("DEVELOPMENT: Tried to get bounds of empty geometry. --> %s" % str(e))
  5177. return [xmin, ymin, xmax, ymax]