FlatCAMObj.py 57 KB

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  1. ############################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # http://flatcam.org #
  4. # Author: Juan Pablo Caram (c) #
  5. # Date: 2/5/2014 #
  6. # MIT Licence #
  7. ############################################################
  8. from cStringIO import StringIO
  9. from PyQt4 import QtCore
  10. from copy import copy
  11. from ObjectUI import *
  12. import FlatCAMApp
  13. import inspect # TODO: For debugging only.
  14. from camlib import *
  15. from FlatCAMCommon import LoudDict
  16. from FlatCAMDraw import FlatCAMDraw
  17. ########################################
  18. ## FlatCAMObj ##
  19. ########################################
  20. class FlatCAMObj(QtCore.QObject):
  21. """
  22. Base type of objects handled in FlatCAM. These become interactive
  23. in the GUI, can be plotted, and their options can be modified
  24. by the user in their respective forms.
  25. """
  26. # Instance of the application to which these are related.
  27. # The app should set this value.
  28. app = None
  29. def __init__(self, name):
  30. """
  31. Constructor.
  32. :param name: Name of the object given by the user.
  33. :return: FlatCAMObj
  34. """
  35. QtCore.QObject.__init__(self)
  36. # View
  37. self.ui = None
  38. self.options = LoudDict(name=name)
  39. self.options.set_change_callback(self.on_options_change)
  40. self.form_fields = {}
  41. self.axes = None # Matplotlib axes
  42. self.kind = None # Override with proper name
  43. self.muted_ui = False
  44. # assert isinstance(self.ui, ObjectUI)
  45. # self.ui.name_entry.returnPressed.connect(self.on_name_activate)
  46. # self.ui.offset_button.clicked.connect(self.on_offset_button_click)
  47. # self.ui.scale_button.clicked.connect(self.on_scale_button_click)
  48. def from_dict(self, d):
  49. """
  50. This supersedes ``from_dict`` in derived classes. Derived classes
  51. must inherit from FlatCAMObj first, then from derivatives of Geometry.
  52. ``self.options`` is only updated, not overwritten. This ensures that
  53. options set by the app do not vanish when reading the objects
  54. from a project file.
  55. :param d: Dictionary with attributes to set.
  56. :return: None
  57. """
  58. for attr in self.ser_attrs:
  59. if attr == 'options':
  60. self.options.update(d[attr])
  61. else:
  62. setattr(self, attr, d[attr])
  63. def on_options_change(self, key):
  64. self.emit(QtCore.SIGNAL("optionChanged"), key)
  65. def set_ui(self, ui):
  66. self.ui = ui
  67. self.form_fields = {"name": self.ui.name_entry}
  68. assert isinstance(self.ui, ObjectUI)
  69. self.ui.name_entry.returnPressed.connect(self.on_name_activate)
  70. self.ui.offset_button.clicked.connect(self.on_offset_button_click)
  71. self.ui.scale_button.clicked.connect(self.on_scale_button_click)
  72. def __str__(self):
  73. return "<FlatCAMObj({:12s}): {:20s}>".format(self.kind, self.options["name"])
  74. def on_name_activate(self):
  75. old_name = copy(self.options["name"])
  76. new_name = self.ui.name_entry.get_value()
  77. self.options["name"] = self.ui.name_entry.get_value()
  78. self.app.info("Name changed from %s to %s" % (old_name, new_name))
  79. def on_offset_button_click(self):
  80. self.app.report_usage("obj_on_offset_button")
  81. self.read_form()
  82. vect = self.ui.offsetvector_entry.get_value()
  83. self.offset(vect)
  84. self.plot()
  85. def on_scale_button_click(self):
  86. self.app.report_usage("obj_on_scale_button")
  87. self.read_form()
  88. factor = self.ui.scale_entry.get_value()
  89. self.scale(factor)
  90. self.plot()
  91. def setup_axes(self, figure):
  92. """
  93. 1) Creates axes if they don't exist. 2) Clears axes. 3) Attaches
  94. them to figure if not part of the figure. 4) Sets transparent
  95. background. 5) Sets 1:1 scale aspect ratio.
  96. :param figure: A Matplotlib.Figure on which to add/configure axes.
  97. :type figure: matplotlib.figure.Figure
  98. :return: None
  99. :rtype: None
  100. """
  101. if self.axes is None:
  102. FlatCAMApp.App.log.debug("setup_axes(): New axes")
  103. self.axes = figure.add_axes([0.05, 0.05, 0.9, 0.9],
  104. label=self.options["name"])
  105. elif self.axes not in figure.axes:
  106. FlatCAMApp.App.log.debug("setup_axes(): Clearing and attaching axes")
  107. self.axes.cla()
  108. figure.add_axes(self.axes)
  109. else:
  110. FlatCAMApp.App.log.debug("setup_axes(): Clearing Axes")
  111. self.axes.cla()
  112. # Remove all decoration. The app's axes will have
  113. # the ticks and grid.
  114. self.axes.set_frame_on(False) # No frame
  115. self.axes.set_xticks([]) # No tick
  116. self.axes.set_yticks([]) # No ticks
  117. self.axes.patch.set_visible(False) # No background
  118. self.axes.set_aspect(1)
  119. def to_form(self):
  120. """
  121. Copies options to the UI form.
  122. :return: None
  123. """
  124. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + "--> FlatCAMObj.to_form()")
  125. for option in self.options:
  126. try:
  127. self.set_form_item(option)
  128. except:
  129. self.app.log.warning("Unexpected error:", sys.exc_info())
  130. def read_form(self):
  131. """
  132. Reads form into ``self.options``.
  133. :return: None
  134. :rtype: None
  135. """
  136. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + "--> FlatCAMObj.read_form()")
  137. for option in self.options:
  138. try:
  139. self.read_form_item(option)
  140. except:
  141. self.app.log.warning("Unexpected error:", sys.exc_info())
  142. def build_ui(self):
  143. """
  144. Sets up the UI/form for this object. Show the UI
  145. in the App.
  146. :return: None
  147. :rtype: None
  148. """
  149. self.muted_ui = True
  150. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + "--> FlatCAMObj.build_ui()")
  151. # Remove anything else in the box
  152. # box_children = self.app.ui.notebook.selected_contents.get_children()
  153. # for child in box_children:
  154. # self.app.ui.notebook.selected_contents.remove(child)
  155. # while self.app.ui.selected_layout.count():
  156. # self.app.ui.selected_layout.takeAt(0)
  157. # Put in the UI
  158. # box_selected.pack_start(sw, True, True, 0)
  159. # self.app.ui.notebook.selected_contents.add(self.ui)
  160. # self.app.ui.selected_layout.addWidget(self.ui)
  161. try:
  162. self.app.ui.selected_scroll_area.takeWidget()
  163. except:
  164. self.app.log.debug("Nothing to remove")
  165. self.app.ui.selected_scroll_area.setWidget(self.ui)
  166. self.to_form()
  167. self.muted_ui = False
  168. def set_form_item(self, option):
  169. """
  170. Copies the specified option to the UI form.
  171. :param option: Name of the option (Key in ``self.options``).
  172. :type option: str
  173. :return: None
  174. """
  175. try:
  176. self.form_fields[option].set_value(self.options[option])
  177. except KeyError:
  178. self.app.log.warn("Tried to set an option or field that does not exist: %s" % option)
  179. def read_form_item(self, option):
  180. """
  181. Reads the specified option from the UI form into ``self.options``.
  182. :param option: Name of the option.
  183. :type option: str
  184. :return: None
  185. """
  186. try:
  187. self.options[option] = self.form_fields[option].get_value()
  188. except KeyError:
  189. self.app.log.warning("Failed to read option from field: %s" % option)
  190. # #try read field only when option have equivalent in form_fields
  191. # if option in self.form_fields:
  192. # option_type=type(self.options[option])
  193. # try:
  194. # value=self.form_fields[option].get_value()
  195. # #catch per option as it was ignored anyway, also when syntax error (probably uninitialized field),don't read either.
  196. # except (KeyError,SyntaxError):
  197. # self.app.log.warning("Failed to read option from field: %s" % option)
  198. # else:
  199. # self.app.log.warning("Form fied does not exists: %s" % option)
  200. def plot(self):
  201. """
  202. Plot this object (Extend this method to implement the actual plotting).
  203. Axes get created, appended to canvas and cleared before plotting.
  204. Call this in descendants before doing the plotting.
  205. :return: Whether to continue plotting or not depending on the "plot" option.
  206. :rtype: bool
  207. """
  208. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMObj.plot()")
  209. # Axes must exist and be attached to canvas.
  210. if self.axes is None or self.axes not in self.app.plotcanvas.figure.axes:
  211. self.axes = self.app.plotcanvas.new_axes(self.options['name'])
  212. if not self.options["plot"]:
  213. self.axes.cla()
  214. self.app.plotcanvas.auto_adjust_axes()
  215. return False
  216. # Clear axes or we will plot on top of them.
  217. self.axes.cla() # TODO: Thread safe?
  218. return True
  219. def serialize(self):
  220. """
  221. Returns a representation of the object as a dictionary so
  222. it can be later exported as JSON. Override this method.
  223. :return: Dictionary representing the object
  224. :rtype: dict
  225. """
  226. return
  227. def deserialize(self, obj_dict):
  228. """
  229. Re-builds an object from its serialized version.
  230. :param obj_dict: Dictionary representing a FlatCAMObj
  231. :type obj_dict: dict
  232. :return: None
  233. """
  234. return
  235. class FlatCAMGerber(FlatCAMObj, Gerber):
  236. """
  237. Represents Gerber code.
  238. """
  239. ui_type = GerberObjectUI
  240. def __init__(self, name):
  241. Gerber.__init__(self)
  242. FlatCAMObj.__init__(self, name)
  243. self.kind = "gerber"
  244. # The 'name' is already in self.options from FlatCAMObj
  245. # Automatically updates the UI
  246. self.options.update({
  247. "plot": True,
  248. "multicolored": False,
  249. "solid": False,
  250. "isotooldia": 0.016,
  251. "isopasses": 1,
  252. "isooverlap": 0.15,
  253. "combine_passes": True,
  254. "cutouttooldia": 0.07,
  255. "cutoutmargin": 0.2,
  256. "cutoutgapsize": 0.15,
  257. "gaps": "tb",
  258. "noncoppermargin": 0.0,
  259. "noncopperrounded": False,
  260. "bboxmargin": 0.0,
  261. "bboxrounded": False
  262. })
  263. # Attributes to be included in serialization
  264. # Always append to it because it carries contents
  265. # from predecessors.
  266. self.ser_attrs += ['options', 'kind']
  267. # assert isinstance(self.ui, GerberObjectUI)
  268. # self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  269. # self.ui.solid_cb.stateChanged.connect(self.on_solid_cb_click)
  270. # self.ui.multicolored_cb.stateChanged.connect(self.on_multicolored_cb_click)
  271. # self.ui.generate_iso_button.clicked.connect(self.on_iso_button_click)
  272. # self.ui.generate_cutout_button.clicked.connect(self.on_generatecutout_button_click)
  273. # self.ui.generate_bb_button.clicked.connect(self.on_generatebb_button_click)
  274. # self.ui.generate_noncopper_button.clicked.connect(self.on_generatenoncopper_button_click)
  275. def set_ui(self, ui):
  276. """
  277. Maps options with GUI inputs.
  278. Connects GUI events to methods.
  279. :param ui: GUI object.
  280. :type ui: GerberObjectUI
  281. :return: None
  282. """
  283. FlatCAMObj.set_ui(self, ui)
  284. FlatCAMApp.App.log.debug("FlatCAMGerber.set_ui()")
  285. self.form_fields.update({
  286. "plot": self.ui.plot_cb,
  287. "multicolored": self.ui.multicolored_cb,
  288. "solid": self.ui.solid_cb,
  289. "isotooldia": self.ui.iso_tool_dia_entry,
  290. "isopasses": self.ui.iso_width_entry,
  291. "isooverlap": self.ui.iso_overlap_entry,
  292. "combine_passes": self.ui.combine_passes_cb,
  293. "cutouttooldia": self.ui.cutout_tooldia_entry,
  294. "cutoutmargin": self.ui.cutout_margin_entry,
  295. "cutoutgapsize": self.ui.cutout_gap_entry,
  296. "gaps": self.ui.gaps_radio,
  297. "noncoppermargin": self.ui.noncopper_margin_entry,
  298. "noncopperrounded": self.ui.noncopper_rounded_cb,
  299. "bboxmargin": self.ui.bbmargin_entry,
  300. "bboxrounded": self.ui.bbrounded_cb
  301. })
  302. assert isinstance(self.ui, GerberObjectUI)
  303. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  304. self.ui.solid_cb.stateChanged.connect(self.on_solid_cb_click)
  305. self.ui.multicolored_cb.stateChanged.connect(self.on_multicolored_cb_click)
  306. self.ui.generate_iso_button.clicked.connect(self.on_iso_button_click)
  307. self.ui.generate_cutout_button.clicked.connect(self.on_generatecutout_button_click)
  308. self.ui.generate_bb_button.clicked.connect(self.on_generatebb_button_click)
  309. self.ui.generate_noncopper_button.clicked.connect(self.on_generatenoncopper_button_click)
  310. def on_generatenoncopper_button_click(self, *args):
  311. self.app.report_usage("gerber_on_generatenoncopper_button")
  312. self.read_form()
  313. name = self.options["name"] + "_noncopper"
  314. def geo_init(geo_obj, app_obj):
  315. assert isinstance(geo_obj, FlatCAMGeometry)
  316. bounding_box = self.solid_geometry.envelope.buffer(self.options["noncoppermargin"])
  317. if not self.options["noncopperrounded"]:
  318. bounding_box = bounding_box.envelope
  319. non_copper = bounding_box.difference(self.solid_geometry)
  320. geo_obj.solid_geometry = non_copper
  321. # TODO: Check for None
  322. self.app.new_object("geometry", name, geo_init)
  323. def on_generatebb_button_click(self, *args):
  324. self.app.report_usage("gerber_on_generatebb_button")
  325. self.read_form()
  326. name = self.options["name"] + "_bbox"
  327. def geo_init(geo_obj, app_obj):
  328. assert isinstance(geo_obj, FlatCAMGeometry)
  329. # Bounding box with rounded corners
  330. bounding_box = self.solid_geometry.envelope.buffer(self.options["bboxmargin"])
  331. if not self.options["bboxrounded"]: # Remove rounded corners
  332. bounding_box = bounding_box.envelope
  333. geo_obj.solid_geometry = bounding_box
  334. self.app.new_object("geometry", name, geo_init)
  335. def on_generatecutout_button_click(self, *args):
  336. self.app.report_usage("gerber_on_generatecutout_button")
  337. self.read_form()
  338. name = self.options["name"] + "_cutout"
  339. def geo_init(geo_obj, app_obj):
  340. margin = self.options["cutoutmargin"] + self.options["cutouttooldia"]/2
  341. gap_size = self.options["cutoutgapsize"] + self.options["cutouttooldia"]
  342. minx, miny, maxx, maxy = self.bounds()
  343. minx -= margin
  344. maxx += margin
  345. miny -= margin
  346. maxy += margin
  347. midx = 0.5 * (minx + maxx)
  348. midy = 0.5 * (miny + maxy)
  349. hgap = 0.5 * gap_size
  350. pts = [[midx - hgap, maxy],
  351. [minx, maxy],
  352. [minx, midy + hgap],
  353. [minx, midy - hgap],
  354. [minx, miny],
  355. [midx - hgap, miny],
  356. [midx + hgap, miny],
  357. [maxx, miny],
  358. [maxx, midy - hgap],
  359. [maxx, midy + hgap],
  360. [maxx, maxy],
  361. [midx + hgap, maxy]]
  362. cases = {"tb": [[pts[0], pts[1], pts[4], pts[5]],
  363. [pts[6], pts[7], pts[10], pts[11]]],
  364. "lr": [[pts[9], pts[10], pts[1], pts[2]],
  365. [pts[3], pts[4], pts[7], pts[8]]],
  366. "4": [[pts[0], pts[1], pts[2]],
  367. [pts[3], pts[4], pts[5]],
  368. [pts[6], pts[7], pts[8]],
  369. [pts[9], pts[10], pts[11]]]}
  370. cuts = cases[self.options['gaps']]
  371. geo_obj.solid_geometry = cascaded_union([LineString(segment) for segment in cuts])
  372. # TODO: Check for None
  373. self.app.new_object("geometry", name, geo_init)
  374. def on_iso_button_click(self, *args):
  375. self.app.report_usage("gerber_on_iso_button")
  376. self.read_form()
  377. self.isolate()
  378. def follow(self, outname=None):
  379. """
  380. Creates a geometry object "following" the gerber paths.
  381. :return: None
  382. """
  383. default_name = self.options["name"] + "_follow"
  384. follow_name = outname or default_name
  385. def follow_init(follow_obj, app_obj):
  386. # Propagate options
  387. follow_obj.options["cnctooldia"] = self.options["isotooldia"]
  388. follow_obj.solid_geometry = self.solid_geometry
  389. app_obj.info("Follow geometry created: %s" % follow_obj.options["name"])
  390. # TODO: Do something if this is None. Offer changing name?
  391. self.app.new_object("geometry", follow_name, follow_init)
  392. def isolate(self, dia=None, passes=None, overlap=None, outname=None, combine=None):
  393. """
  394. Creates an isolation routing geometry object in the project.
  395. :param dia: Tool diameter
  396. :param passes: Number of tool widths to cut
  397. :param overlap: Overlap between passes in fraction of tool diameter
  398. :param outname: Base name of the output object
  399. :return: None
  400. """
  401. if dia is None:
  402. dia = self.options["isotooldia"]
  403. if passes is None:
  404. passes = int(self.options["isopasses"])
  405. if overlap is None:
  406. overlap = self.options["isooverlap"]
  407. if combine is None:
  408. combine = self.options["combine_passes"]
  409. else:
  410. combine = bool(combine)
  411. base_name = self.options["name"] + "_iso"
  412. base_name = outname or base_name
  413. def generate_envelope(offset, invert):
  414. # isolation_geometry produces an envelope that is going on the left of the geometry
  415. # (the copper features). To leave the least amount of burrs on the features
  416. # the tool needs to travel on the right side of the features (this is called conventional milling)
  417. # the first pass is the one cutting all of the features, so it needs to be reversed
  418. # the other passes overlap preceding ones and cut the left over copper. It is better for them
  419. # to cut on the right side of the left over copper i.e on the left side of the features.
  420. geom = self.isolation_geometry(offset)
  421. if invert:
  422. if type(geom) is MultiPolygon:
  423. pl = []
  424. for p in geom:
  425. pl.append(Polygon(p.exterior.coords[::-1], p.interiors))
  426. geom = MultiPolygon(pl)
  427. elif type(geom) is Polygon:
  428. geom = Polygon(geom.exterior.coords[::-1], geom.interiors)
  429. else:
  430. raise "Unexpected Geometry"
  431. return geom
  432. if combine:
  433. iso_name = base_name
  434. # TODO: This is ugly. Create way to pass data into init function.
  435. def iso_init(geo_obj, app_obj):
  436. # Propagate options
  437. geo_obj.options["cnctooldia"] = self.options["isotooldia"]
  438. geo_obj.solid_geometry = []
  439. for i in range(passes):
  440. offset = (2 * i + 1) / 2.0 * dia - i * overlap * dia
  441. geom = generate_envelope (offset, i == 0)
  442. geo_obj.solid_geometry.append(geom)
  443. app_obj.info("Isolation geometry created: %s" % geo_obj.options["name"])
  444. # TODO: Do something if this is None. Offer changing name?
  445. self.app.new_object("geometry", iso_name, iso_init)
  446. else:
  447. for i in range(passes):
  448. offset = (2 * i + 1) / 2.0 * dia - i * overlap * dia
  449. if passes > 1:
  450. iso_name = base_name + str(i + 1)
  451. else:
  452. iso_name = base_name
  453. # TODO: This is ugly. Create way to pass data into init function.
  454. def iso_init(geo_obj, app_obj):
  455. # Propagate options
  456. geo_obj.options["cnctooldia"] = self.options["isotooldia"]
  457. geo_obj.solid_geometry = generate_envelope (offset, i == 0)
  458. app_obj.info("Isolation geometry created: %s" % geo_obj.options["name"])
  459. # TODO: Do something if this is None. Offer changing name?
  460. self.app.new_object("geometry", iso_name, iso_init)
  461. def on_plot_cb_click(self, *args):
  462. if self.muted_ui:
  463. return
  464. self.read_form_item('plot')
  465. self.plot()
  466. def on_solid_cb_click(self, *args):
  467. if self.muted_ui:
  468. return
  469. self.read_form_item('solid')
  470. self.plot()
  471. def on_multicolored_cb_click(self, *args):
  472. if self.muted_ui:
  473. return
  474. self.read_form_item('multicolored')
  475. self.plot()
  476. def convert_units(self, units):
  477. """
  478. Converts the units of the object by scaling dimensions in all geometry
  479. and options.
  480. :param units: Units to which to convert the object: "IN" or "MM".
  481. :type units: str
  482. :return: None
  483. :rtype: None
  484. """
  485. factor = Gerber.convert_units(self, units)
  486. self.options['isotooldia'] *= factor
  487. self.options['cutoutmargin'] *= factor
  488. self.options['cutoutgapsize'] *= factor
  489. self.options['noncoppermargin'] *= factor
  490. self.options['bboxmargin'] *= factor
  491. def plot(self):
  492. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMGerber.plot()")
  493. # Does all the required setup and returns False
  494. # if the 'ptint' option is set to False.
  495. if not FlatCAMObj.plot(self):
  496. return
  497. geometry = self.solid_geometry
  498. # Make sure geometry is iterable.
  499. try:
  500. _ = iter(geometry)
  501. except TypeError:
  502. geometry = [geometry]
  503. if self.options["multicolored"]:
  504. linespec = '-'
  505. else:
  506. linespec = 'k-'
  507. if self.options["solid"]:
  508. for poly in geometry:
  509. # TODO: Too many things hardcoded.
  510. try:
  511. patch = PolygonPatch(poly,
  512. facecolor="#BBF268",
  513. edgecolor="#006E20",
  514. alpha=0.75,
  515. zorder=2)
  516. self.axes.add_patch(patch)
  517. except AssertionError:
  518. FlatCAMApp.App.log.warning("A geometry component was not a polygon:")
  519. FlatCAMApp.App.log.warning(str(poly))
  520. else:
  521. for poly in geometry:
  522. x, y = poly.exterior.xy
  523. self.axes.plot(x, y, linespec)
  524. for ints in poly.interiors:
  525. x, y = ints.coords.xy
  526. self.axes.plot(x, y, linespec)
  527. self.app.plotcanvas.auto_adjust_axes()
  528. def serialize(self):
  529. return {
  530. "options": self.options,
  531. "kind": self.kind
  532. }
  533. class FlatCAMExcellon(FlatCAMObj, Excellon):
  534. """
  535. Represents Excellon/Drill code.
  536. """
  537. ui_type = ExcellonObjectUI
  538. def __init__(self, name):
  539. Excellon.__init__(self)
  540. FlatCAMObj.__init__(self, name)
  541. self.kind = "excellon"
  542. self.options.update({
  543. "plot": True,
  544. "solid": False,
  545. "drillz": -0.1,
  546. "travelz": 0.1,
  547. "feedrate": 5.0,
  548. # "toolselection": ""
  549. "tooldia": 0.1,
  550. "toolchange": False,
  551. "toolchangez": 1.0,
  552. "spindlespeed": None
  553. })
  554. # TODO: Document this.
  555. self.tool_cbs = {}
  556. # Attributes to be included in serialization
  557. # Always append to it because it carries contents
  558. # from predecessors.
  559. self.ser_attrs += ['options', 'kind']
  560. @staticmethod
  561. def merge(exc_list, exc_final):
  562. """
  563. Merge excellons in exc_list into exc_final.
  564. Options are allways copied from source .
  565. Tools are also merged, if name for tool is same and size differs, then as name is used next available number from both lists
  566. if only one object is specified in exc_list then this acts as copy only
  567. :param exc_list: List or one object of FlatCAMExcellon Objects to join.
  568. :param exc_final: Destination FlatCAMExcellon object.
  569. :return: None
  570. """
  571. if type(exc_list) is not list:
  572. exc_list_real= list()
  573. exc_list_real.append(exc_list)
  574. else:
  575. exc_list_real=exc_list
  576. for exc in exc_list_real:
  577. # Expand lists
  578. if type(exc) is list:
  579. FlatCAMExcellon.merge(exc, exc_final)
  580. # If not list, merge excellons
  581. else:
  582. # TODO: I realize forms does not save values into options , when object is deselected
  583. # leave this here for future use
  584. # this reinitialize options based on forms, all steps may not be necessary
  585. # exc.app.collection.set_active(exc.options['name'])
  586. # exc.to_form()
  587. # exc.read_form()
  588. for option in exc.options:
  589. if option is not 'name':
  590. try:
  591. exc_final.options[option] = exc.options[option]
  592. except:
  593. exc.app.log.warning("Failed to copy option.",option)
  594. #deep copy of all drills,to avoid any references
  595. for drill in exc.drills:
  596. point = Point(drill['point'].x,drill['point'].y)
  597. exc_final.drills.append({"point": point, "tool": drill['tool']})
  598. toolsrework=dict()
  599. max_numeric_tool=0
  600. for toolname in exc.tools.iterkeys():
  601. numeric_tool=int(toolname)
  602. if numeric_tool>max_numeric_tool:
  603. max_numeric_tool=numeric_tool
  604. toolsrework[exc.tools[toolname]['C']]=toolname
  605. #exc_final as last because names from final tools will be used
  606. for toolname in exc_final.tools.iterkeys():
  607. numeric_tool=int(toolname)
  608. if numeric_tool>max_numeric_tool:
  609. max_numeric_tool=numeric_tool
  610. toolsrework[exc_final.tools[toolname]['C']]=toolname
  611. for toolvalues in toolsrework.iterkeys():
  612. if toolsrework[toolvalues] in exc_final.tools:
  613. if exc_final.tools[toolsrework[toolvalues]]!={"C": toolvalues}:
  614. exc_final.tools[str(max_numeric_tool+1)]={"C": toolvalues}
  615. else:
  616. exc_final.tools[toolsrework[toolvalues]]={"C": toolvalues}
  617. #this value was not co
  618. exc_final.zeros=exc.zeros
  619. exc_final.create_geometry()
  620. def build_ui(self):
  621. FlatCAMObj.build_ui(self)
  622. # Populate tool list
  623. n = len(self.tools)
  624. self.ui.tools_table.setColumnCount(2)
  625. self.ui.tools_table.setHorizontalHeaderLabels(['#', 'Diameter'])
  626. self.ui.tools_table.setRowCount(n)
  627. self.ui.tools_table.setSortingEnabled(False)
  628. i = 0
  629. for tool in self.tools:
  630. id = QtGui.QTableWidgetItem(tool)
  631. id.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  632. self.ui.tools_table.setItem(i, 0, id) # Tool name/id
  633. dia = QtGui.QTableWidgetItem(str(self.tools[tool]['C']))
  634. dia.setFlags(QtCore.Qt.ItemIsEnabled)
  635. self.ui.tools_table.setItem(i, 1, dia) # Diameter
  636. i += 1
  637. # sort the tool diameter column
  638. self.ui.tools_table.sortItems(1)
  639. # all the tools are selected by default
  640. self.ui.tools_table.selectColumn(0)
  641. self.ui.tools_table.resizeColumnsToContents()
  642. self.ui.tools_table.resizeRowsToContents()
  643. self.ui.tools_table.horizontalHeader().setStretchLastSection(True)
  644. self.ui.tools_table.verticalHeader().hide()
  645. self.ui.tools_table.setSortingEnabled(True)
  646. def set_ui(self, ui):
  647. """
  648. Configures the user interface for this object.
  649. Connects options to form fields.
  650. :param ui: User interface object.
  651. :type ui: ExcellonObjectUI
  652. :return: None
  653. """
  654. FlatCAMObj.set_ui(self, ui)
  655. FlatCAMApp.App.log.debug("FlatCAMExcellon.set_ui()")
  656. self.form_fields.update({
  657. "plot": self.ui.plot_cb,
  658. "solid": self.ui.solid_cb,
  659. "drillz": self.ui.cutz_entry,
  660. "travelz": self.ui.travelz_entry,
  661. "feedrate": self.ui.feedrate_entry,
  662. "tooldia": self.ui.tooldia_entry,
  663. "toolchange": self.ui.toolchange_cb,
  664. "toolchangez": self.ui.toolchangez_entry,
  665. "spindlespeed": self.ui.spindlespeed_entry
  666. })
  667. assert isinstance(self.ui, ExcellonObjectUI), \
  668. "Expected a ExcellonObjectUI, got %s" % type(self.ui)
  669. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  670. self.ui.solid_cb.stateChanged.connect(self.on_solid_cb_click)
  671. self.ui.generate_cnc_button.clicked.connect(self.on_create_cncjob_button_click)
  672. self.ui.generate_milling_button.clicked.connect(self.on_generate_milling_button_click)
  673. def get_selected_tools_list(self):
  674. """
  675. Returns the keys to the self.tools dictionary corresponding
  676. to the selections on the tool list in the GUI.
  677. :return: List of tools.
  678. :rtype: list
  679. """
  680. return [str(x.text()) for x in self.ui.tools_table.selectedItems()]
  681. def generate_milling(self, tools=None, outname=None, tooldia=None):
  682. """
  683. Note: This method is a good template for generic operations as
  684. it takes it's options from parameters or otherwise from the
  685. object's options and returns a success, msg tuple as feedback
  686. for shell operations.
  687. :return: Success/failure condition tuple (bool, str).
  688. :rtype: tuple
  689. """
  690. # Get the tools from the list. These are keys
  691. # to self.tools
  692. if tools is None:
  693. tools = self.get_selected_tools_list()
  694. if outname is None:
  695. outname = self.options["name"] + "_mill"
  696. if tooldia is None:
  697. tooldia = self.options["tooldia"]
  698. if len(tools) == 0:
  699. self.app.inform.emit("Please select one or more tools from the list and try again.")
  700. return False, "Error: No tools."
  701. for tool in tools:
  702. if self.tools[tool]["C"] < tooldia:
  703. self.app.inform.emit("[warning] Milling tool is larger than hole size. Cancelled.")
  704. return False, "Error: Milling tool is larger than hole."
  705. def geo_init(geo_obj, app_obj):
  706. assert isinstance(geo_obj, FlatCAMGeometry), \
  707. "Initializer expected a FlatCAMGeometry, got %s" % type(geo_obj)
  708. app_obj.progress.emit(20)
  709. geo_obj.solid_geometry = []
  710. for hole in self.drills:
  711. if hole['tool'] in tools:
  712. geo_obj.solid_geometry.append(
  713. Point(hole['point']).buffer(self.tools[hole['tool']]["C"] / 2 -
  714. tooldia / 2).exterior
  715. )
  716. def geo_thread(app_obj):
  717. app_obj.new_object("geometry", outname, geo_init)
  718. app_obj.progress.emit(100)
  719. # Create a promise with the new name
  720. self.app.collection.promise(outname)
  721. # Send to worker
  722. self.app.worker_task.emit({'fcn': geo_thread, 'params': [self.app]})
  723. return True, ""
  724. def on_generate_milling_button_click(self, *args):
  725. self.app.report_usage("excellon_on_create_milling_button")
  726. self.read_form()
  727. self.generate_milling()
  728. def on_create_cncjob_button_click(self, *args):
  729. self.app.report_usage("excellon_on_create_cncjob_button")
  730. self.read_form()
  731. # Get the tools from the list
  732. tools = self.get_selected_tools_list()
  733. if len(tools) == 0:
  734. self.app.inform.emit("Please select one or more tools from the list and try again.")
  735. return
  736. job_name = self.options["name"] + "_cnc"
  737. # Object initialization function for app.new_object()
  738. def job_init(job_obj, app_obj):
  739. assert isinstance(job_obj, FlatCAMCNCjob), \
  740. "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  741. app_obj.progress.emit(20)
  742. job_obj.z_cut = self.options["drillz"]
  743. job_obj.z_move = self.options["travelz"]
  744. job_obj.feedrate = self.options["feedrate"]
  745. job_obj.spindlespeed = self.options["spindlespeed"]
  746. # There could be more than one drill size...
  747. # job_obj.tooldia = # TODO: duplicate variable!
  748. # job_obj.options["tooldia"] =
  749. tools_csv = ','.join(tools)
  750. job_obj.generate_from_excellon_by_tool(self, tools_csv,
  751. toolchange=self.options["toolchange"],
  752. toolchangez=self.options["toolchangez"])
  753. app_obj.progress.emit(50)
  754. job_obj.gcode_parse()
  755. app_obj.progress.emit(60)
  756. job_obj.create_geometry()
  757. app_obj.progress.emit(80)
  758. # To be run in separate thread
  759. def job_thread(app_obj):
  760. app_obj.new_object("cncjob", job_name, job_init)
  761. app_obj.progress.emit(100)
  762. # Create promise for the new name.
  763. self.app.collection.promise(job_name)
  764. # Send to worker
  765. # self.app.worker.add_task(job_thread, [self.app])
  766. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  767. def on_plot_cb_click(self, *args):
  768. if self.muted_ui:
  769. return
  770. self.read_form_item('plot')
  771. self.plot()
  772. def on_solid_cb_click(self, *args):
  773. if self.muted_ui:
  774. return
  775. self.read_form_item('solid')
  776. self.plot()
  777. def convert_units(self, units):
  778. factor = Excellon.convert_units(self, units)
  779. self.options['drillz'] *= factor
  780. self.options['travelz'] *= factor
  781. self.options['feedrate'] *= factor
  782. def plot(self):
  783. # Does all the required setup and returns False
  784. # if the 'ptint' option is set to False.
  785. if not FlatCAMObj.plot(self):
  786. return
  787. try:
  788. _ = iter(self.solid_geometry)
  789. except TypeError:
  790. self.solid_geometry = [self.solid_geometry]
  791. # Plot excellon (All polygons?)
  792. if self.options["solid"]:
  793. for geo in self.solid_geometry:
  794. patch = PolygonPatch(geo,
  795. facecolor="#C40000",
  796. edgecolor="#750000",
  797. alpha=0.75,
  798. zorder=3)
  799. self.axes.add_patch(patch)
  800. else:
  801. for geo in self.solid_geometry:
  802. x, y = geo.exterior.coords.xy
  803. self.axes.plot(x, y, 'r-')
  804. for ints in geo.interiors:
  805. x, y = ints.coords.xy
  806. self.axes.plot(x, y, 'g-')
  807. self.app.plotcanvas.auto_adjust_axes()
  808. class FlatCAMCNCjob(FlatCAMObj, CNCjob):
  809. """
  810. Represents G-Code.
  811. """
  812. ui_type = CNCObjectUI
  813. def __init__(self, name, units="in", kind="generic", z_move=0.1,
  814. feedrate=3.0, z_cut=-0.002, tooldia=0.0,
  815. spindlespeed=None):
  816. FlatCAMApp.App.log.debug("Creating CNCJob object...")
  817. CNCjob.__init__(self, units=units, kind=kind, z_move=z_move,
  818. feedrate=feedrate, z_cut=z_cut, tooldia=tooldia,
  819. spindlespeed=spindlespeed)
  820. FlatCAMObj.__init__(self, name)
  821. self.kind = "cncjob"
  822. self.options.update({
  823. "plot": True,
  824. "tooldia": 0.4 / 25.4, # 0.4mm in inches
  825. "append": "",
  826. "prepend": "",
  827. "dwell": False,
  828. "dwelltime": 1
  829. })
  830. # Attributes to be included in serialization
  831. # Always append to it because it carries contents
  832. # from predecessors.
  833. self.ser_attrs += ['options', 'kind']
  834. def set_ui(self, ui):
  835. FlatCAMObj.set_ui(self, ui)
  836. FlatCAMApp.App.log.debug("FlatCAMCNCJob.set_ui()")
  837. assert isinstance(self.ui, CNCObjectUI), \
  838. "Expected a CNCObjectUI, got %s" % type(self.ui)
  839. self.form_fields.update({
  840. "plot": self.ui.plot_cb,
  841. "tooldia": self.ui.tooldia_entry,
  842. "append": self.ui.append_text,
  843. "prepend": self.ui.prepend_text,
  844. "dwell": self.ui.dwell_cb,
  845. "dwelltime": self.ui.dwelltime_entry
  846. })
  847. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  848. self.ui.updateplot_button.clicked.connect(self.on_updateplot_button_click)
  849. self.ui.export_gcode_button.clicked.connect(self.on_exportgcode_button_click)
  850. def on_updateplot_button_click(self, *args):
  851. """
  852. Callback for the "Updata Plot" button. Reads the form for updates
  853. and plots the object.
  854. """
  855. self.read_form()
  856. self.plot()
  857. def on_exportgcode_button_click(self, *args):
  858. self.app.report_usage("cncjob_on_exportgcode_button")
  859. self.read_form()
  860. try:
  861. filename = QtGui.QFileDialog.getSaveFileName(caption="Export G-Code ...",
  862. directory=self.app.defaults["last_folder"])
  863. except TypeError:
  864. filename = QtGui.QFileDialog.getSaveFileName(caption="Export G-Code ...")
  865. preamble = str(self.ui.prepend_text.get_value())
  866. postamble = str(self.ui.append_text.get_value())
  867. self.export_gcode(filename, preamble=preamble, postamble=postamble)
  868. def dwell_generator(self, lines):
  869. """
  870. Inserts "G4 P..." instructions after spindle-start
  871. instructions (M03 or M04).
  872. """
  873. log.debug("dwell_generator()...")
  874. m3m4re = re.compile(r'^\s*[mM]0[34]')
  875. g4re = re.compile(r'^\s*[gG]4\s+([\d\.\+\-e]+)')
  876. bufline = None
  877. for line in lines:
  878. # If the buffer contains a G4, yield that.
  879. # If current line is a G4, discard it.
  880. if bufline is not None:
  881. yield bufline
  882. bufline = None
  883. if not g4re.search(line):
  884. yield line
  885. continue
  886. # If start spindle, buffer a G4.
  887. if m3m4re.search(line):
  888. log.debug("Found M03/4")
  889. bufline = "G4 P{}\n".format(self.options['dwelltime'])
  890. yield line
  891. raise StopIteration
  892. def export_gcode(self, filename, preamble='', postamble=''):
  893. lines = StringIO(self.gcode)
  894. ## Post processing
  895. # Dwell?
  896. if self.options['dwell']:
  897. log.debug("Will add G04!")
  898. lines = self.dwell_generator(lines)
  899. ## Write
  900. with open(filename, 'w') as f:
  901. f.write(preamble + "\n")
  902. for line in lines:
  903. f.write(line)
  904. f.write(postamble)
  905. # Just for adding it to the recent files list.
  906. self.app.file_opened.emit("cncjob", filename)
  907. self.app.inform.emit("Saved to: " + filename)
  908. def get_gcode(self, preamble='', postamble=''):
  909. #we need this to beable get_gcode separatelly for shell command export_code
  910. return preamble + '\n' + self.gcode + "\n" + postamble
  911. def on_plot_cb_click(self, *args):
  912. if self.muted_ui:
  913. return
  914. self.read_form_item('plot')
  915. self.plot()
  916. def plot(self):
  917. # Does all the required setup and returns False
  918. # if the 'ptint' option is set to False.
  919. if not FlatCAMObj.plot(self):
  920. return
  921. self.plot2(self.axes, tooldia=self.options["tooldia"])
  922. self.app.plotcanvas.auto_adjust_axes()
  923. def convert_units(self, units):
  924. factor = CNCjob.convert_units(self, units)
  925. FlatCAMApp.App.log.debug("FlatCAMCNCjob.convert_units()")
  926. self.options["tooldia"] *= factor
  927. class FlatCAMGeometry(FlatCAMObj, Geometry):
  928. """
  929. Geometric object not associated with a specific
  930. format.
  931. """
  932. ui_type = GeometryObjectUI
  933. @staticmethod
  934. def merge(geo_list, geo_final):
  935. """
  936. Merges the geometry of objects in geo_list into
  937. the geometry of geo_final.
  938. :param geo_list: List of FlatCAMGeometry Objects to join.
  939. :param geo_final: Destination FlatCAMGeometry object.
  940. :return: None
  941. """
  942. if geo_final.solid_geometry is None:
  943. geo_final.solid_geometry = []
  944. if type(geo_final.solid_geometry) is not list:
  945. geo_final.solid_geometry = [geo_final.solid_geometry]
  946. for geo in geo_list:
  947. # Expand lists
  948. if type(geo) is list:
  949. FlatCAMGeometry.merge(geo, geo_final)
  950. # If not list, just append
  951. else:
  952. geo_final.solid_geometry.append(geo.solid_geometry)
  953. # try: # Iterable
  954. # for shape in geo.solid_geometry:
  955. # geo_final.solid_geometry.append(shape)
  956. #
  957. # except TypeError: # Non-iterable
  958. # geo_final.solid_geometry.append(geo.solid_geometry)
  959. def __init__(self, name):
  960. FlatCAMObj.__init__(self, name)
  961. Geometry.__init__(self)
  962. self.kind = "geometry"
  963. self.options.update({
  964. "plot": True,
  965. "cutz": -0.002,
  966. "travelz": 0.1,
  967. "feedrate": 5.0,
  968. "spindlespeed": None,
  969. "cnctooldia": 0.4 / 25.4,
  970. "painttooldia": 0.0625,
  971. "paintoverlap": 0.15,
  972. "paintmargin": 0.01,
  973. "paintmethod": "standard",
  974. "multidepth": False,
  975. "depthperpass": 0.002,
  976. "selectmethod": "single"
  977. })
  978. # Attributes to be included in serialization
  979. # Always append to it because it carries contents
  980. # from predecessors.
  981. self.ser_attrs += ['options', 'kind']
  982. def build_ui(self):
  983. FlatCAMObj.build_ui(self)
  984. def set_ui(self, ui):
  985. FlatCAMObj.set_ui(self, ui)
  986. FlatCAMApp.App.log.debug("FlatCAMGeometry.set_ui()")
  987. assert isinstance(self.ui, GeometryObjectUI), \
  988. "Expected a GeometryObjectUI, got %s" % type(self.ui)
  989. self.form_fields.update({
  990. "plot": self.ui.plot_cb,
  991. "cutz": self.ui.cutz_entry,
  992. "travelz": self.ui.travelz_entry,
  993. "feedrate": self.ui.cncfeedrate_entry,
  994. "spindlespeed": self.ui.cncspindlespeed_entry,
  995. "cnctooldia": self.ui.cnctooldia_entry,
  996. "painttooldia": self.ui.painttooldia_entry,
  997. "paintoverlap": self.ui.paintoverlap_entry,
  998. "paintmargin": self.ui.paintmargin_entry,
  999. "paintmethod": self.ui.paintmethod_combo,
  1000. "multidepth": self.ui.mpass_cb,
  1001. "depthperpass": self.ui.maxdepth_entry,
  1002. "selectmethod": self.ui.selectmethod_combo
  1003. })
  1004. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  1005. self.ui.generate_cnc_button.clicked.connect(self.on_generatecnc_button_click)
  1006. self.ui.generate_paint_button.clicked.connect(self.on_paint_button_click)
  1007. def on_paint_button_click(self, *args):
  1008. self.app.report_usage("geometry_on_paint_button")
  1009. self.read_form()
  1010. tooldia = self.options["painttooldia"]
  1011. overlap = self.options["paintoverlap"]
  1012. if self.options["selectmethod"] == "all":
  1013. self.paint_poly_all(tooldia, overlap)
  1014. return
  1015. if self.options["selectmethod"] == "single":
  1016. self.app.info("Click inside the desired polygon.")
  1017. # To be called after clicking on the plot.
  1018. def doit(event):
  1019. self.app.info("Painting polygon...")
  1020. self.app.plotcanvas.mpl_disconnect(subscription)
  1021. point = [event.xdata, event.ydata]
  1022. self.paint_poly_single_click(point, tooldia, overlap)
  1023. subscription = self.app.plotcanvas.mpl_connect('button_press_event', doit)
  1024. def paint_poly_single_click(self, inside_pt, tooldia, overlap, outname=None):
  1025. """
  1026. Paints a polygon selected by clicking on its interior.
  1027. Note:
  1028. * The margin is taken directly from the form.
  1029. :param inside_pt: [x, y]
  1030. :param tooldia: Diameter of the painting tool
  1031. :param overlap: Overlap of the tool between passes.
  1032. :param outname: Name of the resulting Geometry Object.
  1033. :return: None
  1034. """
  1035. # Which polygon.
  1036. poly = self.find_polygon(inside_pt)
  1037. # No polygon?
  1038. if poly is None:
  1039. self.app.log.warning('No polygon found.')
  1040. self.app.inform.emit('[warning] No polygon found.')
  1041. return
  1042. proc = self.app.proc_container.new("Painting polygon.")
  1043. name = outname or self.options["name"] + "_paint"
  1044. # Initializes the new geometry object
  1045. def gen_paintarea(geo_obj, app_obj):
  1046. assert isinstance(geo_obj, FlatCAMGeometry), \
  1047. "Initializer expected a FlatCAMGeometry, got %s" % type(geo_obj)
  1048. #assert isinstance(app_obj, App)
  1049. if self.options["paintmethod"] == "seed":
  1050. # Type(cp) == FlatCAMRTreeStorage | None
  1051. cp = self.clear_polygon2(poly.buffer(-self.options["paintmargin"]),
  1052. tooldia, overlap=overlap)
  1053. else:
  1054. # Type(cp) == FlatCAMRTreeStorage | None
  1055. cp = self.clear_polygon(poly.buffer(-self.options["paintmargin"]),
  1056. tooldia, overlap=overlap)
  1057. if cp is not None:
  1058. geo_obj.solid_geometry = list(cp.get_objects())
  1059. geo_obj.options["cnctooldia"] = tooldia
  1060. # Experimental...
  1061. print "Indexing...",
  1062. geo_obj.make_index()
  1063. print "Done"
  1064. self.app.inform.emit("Done.")
  1065. def job_thread(app_obj):
  1066. try:
  1067. app_obj.new_object("geometry", name, gen_paintarea)
  1068. except Exception as e:
  1069. proc.done()
  1070. raise e
  1071. proc.done()
  1072. self.app.inform.emit("Polygon Paint started ...")
  1073. # Promise object with the new name
  1074. self.app.collection.promise(name)
  1075. # Background
  1076. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  1077. def paint_poly_all(self, tooldia, overlap, outname=None):
  1078. """
  1079. Paints all polygons in this object.
  1080. :param tooldia:
  1081. :param overlap:
  1082. :param outname:
  1083. :return:
  1084. """
  1085. proc = self.app.proc_container.new("Painting polygon.")
  1086. name = outname or self.options["name"] + "_paint"
  1087. # This is a recursive generator of individual Polygons.
  1088. # Note: Double check correct implementation. Might exit
  1089. # early if it finds something that is not a Polygon?
  1090. def recurse(geo):
  1091. try:
  1092. for subg in geo:
  1093. for subsubg in recurse(subg):
  1094. yield subsubg
  1095. except TypeError:
  1096. if isinstance(geo, Polygon):
  1097. yield geo
  1098. raise StopIteration
  1099. # Initializes the new geometry object
  1100. def gen_paintarea(geo_obj, app_obj):
  1101. assert isinstance(geo_obj, FlatCAMGeometry), \
  1102. "Initializer expected a FlatCAMGeometry, got %s" % type(geo_obj)
  1103. geo_obj.solid_geometry = []
  1104. for poly in recurse(self.solid_geometry):
  1105. if self.options["paintmethod"] == "seed":
  1106. # Type(cp) == FlatCAMRTreeStorage | None
  1107. cp = self.clear_polygon2(poly.buffer(-self.options["paintmargin"]),
  1108. tooldia, overlap=overlap)
  1109. else:
  1110. # Type(cp) == FlatCAMRTreeStorage | None
  1111. cp = self.clear_polygon(poly.buffer(-self.options["paintmargin"]),
  1112. tooldia, overlap=overlap)
  1113. if cp is not None:
  1114. geo_obj.solid_geometry += list(cp.get_objects())
  1115. geo_obj.options["cnctooldia"] = tooldia
  1116. # Experimental...
  1117. print "Indexing...",
  1118. geo_obj.make_index()
  1119. print "Done"
  1120. self.app.inform.emit("Done.")
  1121. def job_thread(app_obj):
  1122. try:
  1123. app_obj.new_object("geometry", name, gen_paintarea)
  1124. except Exception as e:
  1125. proc.done()
  1126. traceback.print_stack()
  1127. raise e
  1128. proc.done()
  1129. self.app.inform.emit("Polygon Paint started ...")
  1130. # Promise object with the new name
  1131. self.app.collection.promise(name)
  1132. # Background
  1133. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  1134. def on_generatecnc_button_click(self, *args):
  1135. self.app.report_usage("geometry_on_generatecnc_button")
  1136. self.read_form()
  1137. self.generatecncjob()
  1138. def generatecncjob(self,
  1139. z_cut=None,
  1140. z_move=None,
  1141. feedrate=None,
  1142. tooldia=None,
  1143. outname=None,
  1144. spindlespeed=None,
  1145. multidepth=None,
  1146. depthperpass=None,
  1147. use_thread=True):
  1148. """
  1149. Creates a CNCJob out of this Geometry object. The actual
  1150. work is done by the target FlatCAMCNCjob object's
  1151. `generate_from_geometry_2()` method.
  1152. :param z_cut: Cut depth (negative)
  1153. :param z_move: Hight of the tool when travelling (not cutting)
  1154. :param feedrate: Feed rate while cutting
  1155. :param tooldia: Tool diameter
  1156. :param outname: Name of the new object
  1157. :param spindlespeed: Spindle speed (RPM)
  1158. :return: None
  1159. """
  1160. outname = outname if outname is not None else self.options["name"] + "_cnc"
  1161. z_cut = z_cut if z_cut is not None else self.options["cutz"]
  1162. z_move = z_move if z_move is not None else self.options["travelz"]
  1163. feedrate = feedrate if feedrate is not None else self.options["feedrate"]
  1164. tooldia = tooldia if tooldia is not None else self.options["cnctooldia"]
  1165. multidepth = multidepth if multidepth is not None else self.options["multidepth"]
  1166. depthperpass = depthperpass if depthperpass is not None else self.options["depthperpass"]
  1167. # To allow default value to be "" (optional in gui) and translate to None
  1168. # if not isinstance(spindlespeed, int):
  1169. # if isinstance(self.options["spindlespeed"], int) or \
  1170. # isinstance(self.options["spindlespeed"], float):
  1171. # spindlespeed = int(self.options["spindlespeed"])
  1172. # else:
  1173. # spindlespeed = None
  1174. if spindlespeed is None:
  1175. # int or None.
  1176. spindlespeed = self.options['spindlespeed']
  1177. # Object initialization function for app.new_object()
  1178. # RUNNING ON SEPARATE THREAD!
  1179. def job_init(job_obj, app_obj):
  1180. assert isinstance(job_obj, FlatCAMCNCjob), \
  1181. "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  1182. # Propagate options
  1183. job_obj.options["tooldia"] = tooldia
  1184. app_obj.progress.emit(20)
  1185. job_obj.z_cut = z_cut
  1186. job_obj.z_move = z_move
  1187. job_obj.feedrate = feedrate
  1188. job_obj.spindlespeed = spindlespeed
  1189. app_obj.progress.emit(40)
  1190. # TODO: The tolerance should not be hard coded. Just for testing.
  1191. job_obj.generate_from_geometry_2(self,
  1192. multidepth=multidepth,
  1193. depthpercut=depthperpass,
  1194. tolerance=0.0005)
  1195. app_obj.progress.emit(50)
  1196. job_obj.gcode_parse()
  1197. app_obj.progress.emit(80)
  1198. if use_thread:
  1199. # To be run in separate thread
  1200. def job_thread(app_obj):
  1201. with self.app.proc_container.new("Generating CNC Job."):
  1202. app_obj.new_object("cncjob", outname, job_init)
  1203. app_obj.inform.emit("CNCjob created: %s" % outname)
  1204. app_obj.progress.emit(100)
  1205. # Create a promise with the name
  1206. self.app.collection.promise(outname)
  1207. # Send to worker
  1208. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  1209. else:
  1210. self.app.new_object("cncjob", outname, job_init)
  1211. def on_plot_cb_click(self, *args): # TODO: args not needed
  1212. if self.muted_ui:
  1213. return
  1214. self.read_form_item('plot')
  1215. self.plot()
  1216. def scale(self, factor):
  1217. """
  1218. Scales all geometry by a given factor.
  1219. :param factor: Factor by which to scale the object's geometry/
  1220. :type factor: float
  1221. :return: None
  1222. :rtype: None
  1223. """
  1224. if type(self.solid_geometry) == list:
  1225. self.solid_geometry = [affinity.scale(g, factor, factor, origin=(0, 0))
  1226. for g in self.solid_geometry]
  1227. else:
  1228. self.solid_geometry = affinity.scale(self.solid_geometry, factor, factor,
  1229. origin=(0, 0))
  1230. def offset(self, vect):
  1231. """
  1232. Offsets all geometry by a given vector/
  1233. :param vect: (x, y) vector by which to offset the object's geometry.
  1234. :type vect: tuple
  1235. :return: None
  1236. :rtype: None
  1237. """
  1238. dx, dy = vect
  1239. def translate_recursion(geom):
  1240. if type(geom) == list:
  1241. geoms=list()
  1242. for local_geom in geom:
  1243. geoms.append(translate_recursion(local_geom))
  1244. return geoms
  1245. else:
  1246. return affinity.translate(geom, xoff=dx, yoff=dy)
  1247. self.solid_geometry=translate_recursion(self.solid_geometry)
  1248. def convert_units(self, units):
  1249. factor = Geometry.convert_units(self, units)
  1250. self.options['cutz'] *= factor
  1251. self.options['travelz'] *= factor
  1252. self.options['feedrate'] *= factor
  1253. self.options['cnctooldia'] *= factor
  1254. self.options['painttooldia'] *= factor
  1255. self.options['paintmargin'] *= factor
  1256. return factor
  1257. def plot_element(self, element):
  1258. try:
  1259. for sub_el in element:
  1260. self.plot_element(sub_el)
  1261. except TypeError: # Element is not iterable...
  1262. if type(element) == Polygon:
  1263. x, y = element.exterior.coords.xy
  1264. self.axes.plot(x, y, 'r-')
  1265. for ints in element.interiors:
  1266. x, y = ints.coords.xy
  1267. self.axes.plot(x, y, 'r-')
  1268. return
  1269. if type(element) == LineString or type(element) == LinearRing:
  1270. x, y = element.coords.xy
  1271. self.axes.plot(x, y, 'r-')
  1272. return
  1273. FlatCAMApp.App.log.warning("Did not plot:" + str(type(element)))
  1274. def plot(self):
  1275. """
  1276. Plots the object into its axes. If None, of if the axes
  1277. are not part of the app's figure, it fetches new ones.
  1278. :return: None
  1279. """
  1280. # Does all the required setup and returns False
  1281. # if the 'ptint' option is set to False.
  1282. if not FlatCAMObj.plot(self):
  1283. return
  1284. # Make sure solid_geometry is iterable.
  1285. # TODO: This method should not modify the object !!!
  1286. # try:
  1287. # _ = iter(self.solid_geometry)
  1288. # except TypeError:
  1289. # if self.solid_geometry is None:
  1290. # self.solid_geometry = []
  1291. # else:
  1292. # self.solid_geometry = [self.solid_geometry]
  1293. #
  1294. # for geo in self.solid_geometry:
  1295. #
  1296. # if type(geo) == Polygon:
  1297. # x, y = geo.exterior.coords.xy
  1298. # self.axes.plot(x, y, 'r-')
  1299. # for ints in geo.interiors:
  1300. # x, y = ints.coords.xy
  1301. # self.axes.plot(x, y, 'r-')
  1302. # continue
  1303. #
  1304. # if type(geo) == LineString or type(geo) == LinearRing:
  1305. # x, y = geo.coords.xy
  1306. # self.axes.plot(x, y, 'r-')
  1307. # continue
  1308. #
  1309. # if type(geo) == MultiPolygon:
  1310. # for poly in geo:
  1311. # x, y = poly.exterior.coords.xy
  1312. # self.axes.plot(x, y, 'r-')
  1313. # for ints in poly.interiors:
  1314. # x, y = ints.coords.xy
  1315. # self.axes.plot(x, y, 'r-')
  1316. # continue
  1317. #
  1318. # FlatCAMApp.App.log.warning("Did not plot:", str(type(geo)))
  1319. self.plot_element(self.solid_geometry)
  1320. self.app.plotcanvas.auto_adjust_axes()