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Maxwell Henderson7af00982023-02-04 12:42:07 -08001#!/usr/bin/python3
2
3from __future__ import print_function
4import os
5from frc971.control_loops.python import basic_window
6from frc971.control_loops.python.color import Color, palette
7import random
8import gi
milind-u18a901d2023-02-17 21:51:55 -08009import numpy as np
Maxwell Henderson7af00982023-02-04 12:42:07 -080010
11gi.require_version('Gtk', '3.0')
12from gi.repository import Gdk, Gtk
13import cairo
milind-u600738b2023-02-22 14:42:19 -080014from y2023.control_loops.python.graph_tools import to_theta, to_xy, alpha_blend, shift_angles
15from y2023.control_loops.python.graph_tools import l1, l2, joint_center
16from y2023.control_loops.python.graph_tools import DRIVER_CAM_POINTS
17from y2023.control_loops.python import graph_paths
Maxwell Henderson7af00982023-02-04 12:42:07 -080018
Maxwell Henderson83cf6d62023-02-10 20:29:26 -080019from frc971.control_loops.python.basic_window import quit_main_loop, set_color, OverrideMatrix, identity
Maxwell Henderson7af00982023-02-04 12:42:07 -080020
21import shapely
22from shapely.geometry import Polygon
23
milind-u18a901d2023-02-17 21:51:55 -080024import matplotlib.pyplot as plt
25
Maxwell Henderson7af00982023-02-04 12:42:07 -080026
Maxwell Henderson83cf6d62023-02-10 20:29:26 -080027def px(cr):
28 return OverrideMatrix(cr, identity)
29
30
31# Draw lines to cr + stroke.
32def draw_lines(cr, lines):
33 cr.move_to(lines[0][0], lines[0][1])
34 for pt in lines[1:]:
35 cr.line_to(pt[0], pt[1])
36 with px(cr):
37 cr.stroke()
38
39
Maxwell Henderson7af00982023-02-04 12:42:07 -080040def draw_px_cross(cr, length_px):
41 """Draws a cross with fixed dimensions in pixel space."""
42 with px(cr):
43 x, y = cr.get_current_point()
44 cr.move_to(x, y - length_px)
45 cr.line_to(x, y + length_px)
46 cr.stroke()
47
48 cr.move_to(x - length_px, y)
49 cr.line_to(x + length_px, y)
50 cr.stroke()
51
52
53def angle_dist_sqr(a1, a2):
54 """Distance between two points in angle space."""
55 return (a1[0] - a2[0])**2 + (a1[1] - a2[1])**2
56
57
58# Find the highest y position that intersects the vertical line defined by x.
59def inter_y(x):
milind-u18a901d2023-02-17 21:51:55 -080060 return np.sqrt((l2 + l1)**2 - (x - joint_center[0])**2) + joint_center[1]
Maxwell Henderson7af00982023-02-04 12:42:07 -080061
62
63# Define min and max l1 angles based on vertical constraints.
64def get_angle(boundary):
milind-u18a901d2023-02-17 21:51:55 -080065 h = np.sqrt((l1)**2 - (boundary - joint_center[0])**2) + joint_center[1]
66 return np.arctan2(h, boundary - joint_center[0])
Maxwell Henderson7af00982023-02-04 12:42:07 -080067
68
Maxwell Henderson7af00982023-02-04 12:42:07 -080069# Rotate a rasterized loop such that it aligns to when the parameters loop
70def rotate_to_jump_point(points):
71 last_pt = points[0]
72 for pt_i in range(1, len(points)):
73 pt = points[pt_i]
74 delta = last_pt[1] - pt[1]
milind-u18a901d2023-02-17 21:51:55 -080075 if abs(delta) > np.pi:
Maxwell Henderson7af00982023-02-04 12:42:07 -080076 return points[pt_i:] + points[:pt_i]
77 last_pt = pt
78 return points
79
80
81# shift points vertically by dy.
82def y_shift(points, dy):
83 return [(x, y + dy) for x, y in points]
84
85
Maxwell Henderson7af00982023-02-04 12:42:07 -080086# Get the closest point to a line from a test pt.
87def get_closest(prev, cur, pt):
88 dx_ang = (cur[0] - prev[0])
89 dy_ang = (cur[1] - prev[1])
90
milind-u18a901d2023-02-17 21:51:55 -080091 d = np.sqrt(dx_ang**2 + dy_ang**2)
Maxwell Henderson7af00982023-02-04 12:42:07 -080092 if (d < 0.000001):
milind-u18a901d2023-02-17 21:51:55 -080093 return prev, np.sqrt((prev[0] - pt[0])**2 + (prev[1] - pt[1])**2)
Maxwell Henderson7af00982023-02-04 12:42:07 -080094
95 pdx = -dy_ang / d
96 pdy = dx_ang / d
97
98 dpx = pt[0] - prev[0]
99 dpy = pt[1] - prev[1]
100
101 alpha = (dx_ang * dpx + dy_ang * dpy) / d / d
102
103 if (alpha < 0):
milind-u18a901d2023-02-17 21:51:55 -0800104 return prev, np.sqrt((prev[0] - pt[0])**2 + (prev[1] - pt[1])**2)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800105 elif (alpha > 1):
milind-u18a901d2023-02-17 21:51:55 -0800106 return cur, np.sqrt((cur[0] - pt[0])**2 + (cur[1] - pt[1])**2)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800107 else:
108 return (alpha_blend(prev[0], cur[0], alpha), alpha_blend(prev[1], cur[1], alpha)), \
109 abs(dpx * pdx + dpy * pdy)
110
111
112def closest_segment(lines, pt):
113 c_pt, c_pt_dist = get_closest(lines[-1], lines[0], pt)
114 for i in range(1, len(lines)):
115 prev = lines[i - 1]
116 cur = lines[i]
117 c_pt_new, c_pt_new_dist = get_closest(prev, cur, pt)
118 if c_pt_new_dist < c_pt_dist:
119 c_pt = c_pt_new
120 c_pt_dist = c_pt_new_dist
121 return c_pt, c_pt_dist
122
123
124# Create a GTK+ widget on which we will draw using Cairo
milind-u18a901d2023-02-17 21:51:55 -0800125class ArmUi(basic_window.BaseWindow):
Maxwell Henderson7af00982023-02-04 12:42:07 -0800126
127 def __init__(self):
milind-u18a901d2023-02-17 21:51:55 -0800128 super(ArmUi, self).__init__()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800129
130 self.window = Gtk.Window()
131 self.window.set_title("DrawingArea")
132
133 self.window.set_events(Gdk.EventMask.BUTTON_PRESS_MASK
134 | Gdk.EventMask.BUTTON_RELEASE_MASK
135 | Gdk.EventMask.POINTER_MOTION_MASK
136 | Gdk.EventMask.SCROLL_MASK
137 | Gdk.EventMask.KEY_PRESS_MASK)
138 self.method_connect("key-press-event", self.do_key_press)
milind-u18a901d2023-02-17 21:51:55 -0800139 self.method_connect("motion-notify-event", self.do_motion)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800140 self.method_connect("button-press-event",
141 self._do_button_press_internal)
142 self.method_connect("configure-event", self._do_configure)
143 self.window.add(self)
144 self.window.show_all()
145
146 self.theta_version = False
147 self.reinit_extents()
148
milind-u600738b2023-02-22 14:42:19 -0800149 self.last_pos = to_xy(*graph_paths.neutral[:2])
150 self.circular_index_select = 1
Maxwell Henderson7af00982023-02-04 12:42:07 -0800151
152 # Extra stuff for drawing lines.
153 self.segments = []
154 self.prev_segment_pt = None
155 self.now_segment_pt = None
156 self.spline_edit = 0
157 self.edit_control1 = True
158
milind-uadd8fa32023-02-24 23:37:36 -0800159 self.joint_thetas = None
160 self.joint_points = None
milind-u18a901d2023-02-17 21:51:55 -0800161 self.fig = plt.figure()
milind-uadd8fa32023-02-24 23:37:36 -0800162 self.axes = [
163 self.fig.add_subplot(3, 1, 1),
164 self.fig.add_subplot(3, 1, 2),
165 self.fig.add_subplot(3, 1, 3)
166 ]
167 self.fig.subplots_adjust(hspace=1.0)
milind-u18a901d2023-02-17 21:51:55 -0800168 plt.show(block=False)
169
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800170 self.index = 0
171
Maxwell Henderson7af00982023-02-04 12:42:07 -0800172 def do_key_press(self, event):
173 pass
174
175 def _do_button_press_internal(self, event):
176 o_x = event.x
177 o_y = event.y
178 x = event.x - self.window_shape[0] / 2
179 y = self.window_shape[1] / 2 - event.y
180 scale = self.get_current_scale()
181 event.x = x / scale + self.center[0]
182 event.y = y / scale + self.center[1]
183 self.do_button_press(event)
184 event.x = o_x
185 event.y = o_y
186
Maxwell Henderson7af00982023-02-04 12:42:07 -0800187 def _do_configure(self, event):
188 self.window_shape = (event.width, event.height)
189
190 def redraw(self):
191 if not self.needs_redraw:
192 self.needs_redraw = True
193 self.window.queue_draw()
194
195 def method_connect(self, event, cb):
196
197 def handler(obj, *args):
198 cb(*args)
199
200 self.window.connect(event, handler)
201
202 def reinit_extents(self):
203 if self.theta_version:
milind-u18a901d2023-02-17 21:51:55 -0800204 self.extents_x_min = -np.pi * 2
205 self.extents_x_max = np.pi * 2
206 self.extents_y_min = -np.pi * 2
207 self.extents_y_max = np.pi * 2
Maxwell Henderson7af00982023-02-04 12:42:07 -0800208 else:
209 self.extents_x_min = -40.0 * 0.0254
210 self.extents_x_max = 40.0 * 0.0254
211 self.extents_y_min = -4.0 * 0.0254
212 self.extents_y_max = 110.0 * 0.0254
213
214 self.init_extents(
215 (0.5 * (self.extents_x_min + self.extents_x_max), 0.5 *
216 (self.extents_y_max + self.extents_y_min)),
217 (1.0 * (self.extents_x_max - self.extents_x_min), 1.0 *
218 (self.extents_y_max - self.extents_y_min)))
219
220 # Handle the expose-event by drawing
221 def handle_draw(self, cr):
222 # use "with px(cr): blah;" to transform to pixel coordinates.
223
224 # Fill the background color of the window with grey
225 set_color(cr, palette["GREY"])
226 cr.paint()
227
228 # Draw a extents rectangle
229 set_color(cr, palette["WHITE"])
230 cr.rectangle(self.extents_x_min, self.extents_y_min,
231 (self.extents_x_max - self.extents_x_min),
232 self.extents_y_max - self.extents_y_min)
233 cr.fill()
234
Maxwell Henderson93380322023-02-04 16:31:54 -0800235 if self.theta_version:
236 # Draw a filled white rectangle.
237 set_color(cr, palette["WHITE"])
milind-u18a901d2023-02-17 21:51:55 -0800238 cr.rectangle(-np.pi, -np.pi, np.pi * 2.0, np.pi * 2.0)
Maxwell Henderson93380322023-02-04 16:31:54 -0800239 cr.fill()
240
241 set_color(cr, palette["BLUE"])
242 for i in range(-6, 6):
milind-u18a901d2023-02-17 21:51:55 -0800243 cr.move_to(-40, -40 + i * np.pi)
244 cr.line_to(40, 40 + i * np.pi)
Maxwell Henderson93380322023-02-04 16:31:54 -0800245 with px(cr):
246 cr.stroke()
247
Maxwell Henderson93380322023-02-04 16:31:54 -0800248 set_color(cr, Color(0.0, 1.0, 0.2))
249 cr.move_to(self.last_pos[0], self.last_pos[1])
250 draw_px_cross(cr, 5)
251
Maxwell Henderson93380322023-02-04 16:31:54 -0800252 else:
Maxwell Henderson7af00982023-02-04 12:42:07 -0800253 # Draw a filled white rectangle.
254 set_color(cr, palette["WHITE"])
255 cr.rectangle(-2.0, -2.0, 4.0, 4.0)
256 cr.fill()
257
milind-u18a901d2023-02-17 21:51:55 -0800258 # Draw top of drivetrain (including bumpers)
259 DRIVETRAIN_X = -0.490
260 DRIVETRAIN_Y = 0.184
261 DRIVETRAIN_WIDTH = 0.980
Maxwell Henderson7af00982023-02-04 12:42:07 -0800262 set_color(cr, palette["BLUE"])
milind-u18a901d2023-02-17 21:51:55 -0800263 cr.move_to(DRIVETRAIN_X, DRIVETRAIN_Y)
264 cr.line_to(DRIVETRAIN_X + DRIVETRAIN_WIDTH, DRIVETRAIN_Y)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800265 with px(cr):
266 cr.stroke()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800267
milind-u18a901d2023-02-17 21:51:55 -0800268 # Draw joint center
269 JOINT_CENTER_RADIUS = 0.173 / 2
270 cr.arc(joint_center[0], joint_center[1], JOINT_CENTER_RADIUS, 0,
271 2.0 * np.pi)
272 with px(cr):
273 cr.stroke()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800274
milind-u18a901d2023-02-17 21:51:55 -0800275 JOINT_TOWER_X = -0.252
276 JOINT_TOWER_Y = DRIVETRAIN_Y
277 JOINT_TOWER_WIDTH = 0.098
278 JOINT_TOWER_HEIGHT = 0.864
279 cr.rectangle(JOINT_TOWER_X, JOINT_TOWER_Y, JOINT_TOWER_WIDTH,
280 JOINT_TOWER_HEIGHT)
281 with px(cr):
282 cr.stroke()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800283
milind-u18a901d2023-02-17 21:51:55 -0800284 # Draw driver cam
285 cr.set_source_rgba(1, 0, 0, 0.5)
286 DRIVER_CAM_X = DRIVER_CAM_POINTS[0][0]
287 DRIVER_CAM_Y = DRIVER_CAM_POINTS[0][1]
288 DRIVER_CAM_WIDTH = DRIVER_CAM_POINTS[-1][0] - DRIVER_CAM_POINTS[0][
289 0]
290 DRIVER_CAM_HEIGHT = DRIVER_CAM_POINTS[-1][1] - DRIVER_CAM_POINTS[
291 0][1]
292 cr.rectangle(DRIVER_CAM_X, DRIVER_CAM_Y, DRIVER_CAM_WIDTH,
293 DRIVER_CAM_HEIGHT)
294 with px(cr):
295 cr.fill()
296
297 # Draw max radius
Maxwell Henderson7af00982023-02-04 12:42:07 -0800298 set_color(cr, palette["BLUE"])
milind-u18a901d2023-02-17 21:51:55 -0800299 cr.arc(joint_center[0], joint_center[1], l2 + l1, 0, 2.0 * np.pi)
300 with px(cr):
301 cr.stroke()
302 cr.arc(joint_center[0], joint_center[1], l1 - l2, 0, 2.0 * np.pi)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800303 with px(cr):
304 cr.stroke()
305
milind-u18a901d2023-02-17 21:51:55 -0800306 set_color(cr, Color(0.5, 1.0, 1))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800307
milind-u600738b2023-02-22 14:42:19 -0800308 if not self.theta_version:
309 theta1, theta2 = to_theta(self.last_pos,
310 self.circular_index_select)
311 x, y = joint_center[0], joint_center[1]
312 cr.move_to(x, y)
313
314 x += np.cos(theta1) * l1
315 y += np.sin(theta1) * l1
316 cr.line_to(x, y)
317 x += np.cos(theta2) * l2
318 y += np.sin(theta2) * l2
319 cr.line_to(x, y)
320 with px(cr):
321 cr.stroke()
322
323 cr.move_to(self.last_pos[0], self.last_pos[1])
324 set_color(cr, Color(0.0, 1.0, 0.2))
325 draw_px_cross(cr, 20)
326
327 if self.theta_version:
328 set_color(cr, Color(0.0, 1.0, 0.2))
329 cr.move_to(self.last_pos[0], self.last_pos[1])
330 draw_px_cross(cr, 5)
331
332 c_pt, dist = closest_segment(lines_theta, self.last_pos)
333 print("dist:", dist, c_pt, self.last_pos)
334 set_color(cr, palette["CYAN"])
335 cr.move_to(c_pt[0], c_pt[1])
336 draw_px_cross(cr, 5)
337
Maxwell Henderson7af00982023-02-04 12:42:07 -0800338 set_color(cr, Color(0.0, 0.5, 1.0))
339 for segment in self.segments:
Maxwell Henderson6ea668a2023-02-23 17:33:03 -0800340 color = [0.2, random.random(), random.random()]
Maxwell Henderson7af00982023-02-04 12:42:07 -0800341 set_color(cr, Color(color[0], color[1], color[2]))
342 segment.DrawTo(cr, self.theta_version)
343 with px(cr):
344 cr.stroke()
345
346 set_color(cr, Color(0.0, 1.0, 0.5))
milind-u18a901d2023-02-17 21:51:55 -0800347
milind-uadd8fa32023-02-24 23:37:36 -0800348 # Create the plots
349 if self.joint_thetas:
350 if self.joint_points:
351 titles = ["Proximal", "Distal", "Roll joint"]
352 for i in range(len(self.joint_points)):
353 self.axes[i].clear()
354 self.axes[i].plot(self.joint_thetas[0],
355 self.joint_thetas[1][i])
356 self.axes[i].scatter([self.joint_points[i][0]],
357 [self.joint_points[i][1]],
358 s=10,
359 c="red")
360 self.axes[i].set_title(titles[i])
361 plt.title("Joint Angle")
milind-u18a901d2023-02-17 21:51:55 -0800362 plt.xlabel("t (0 to 1)")
363 plt.ylabel("theta (rad)")
364
365 self.fig.canvas.draw()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800366
367 def cur_pt_in_theta(self):
milind-u18a901d2023-02-17 21:51:55 -0800368 if self.theta_version: return self.last_pos
milind-u600738b2023-02-22 14:42:19 -0800369 return to_theta(self.last_pos,
370 self.circular_index_select,
371 cross_point=-np.pi,
372 die=False)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800373
milind-u18a901d2023-02-17 21:51:55 -0800374 def do_motion(self, event):
375 o_x = event.x
376 o_y = event.y
377 x = event.x - self.window_shape[0] / 2
378 y = self.window_shape[1] / 2 - event.y
379 scale = self.get_current_scale()
380 event.x = x / scale + self.center[0]
381 event.y = y / scale + self.center[1]
382
383 for segment in self.segments:
milind-uadd8fa32023-02-24 23:37:36 -0800384 self.joint_thetas = segment.joint_thetas()
milind-u18a901d2023-02-17 21:51:55 -0800385
386 hovered_t = segment.intersection(event)
387 if hovered_t:
388 min_diff = np.inf
389 closest_t = None
milind-uadd8fa32023-02-24 23:37:36 -0800390 closest_thetas = None
391 for i in range(len(self.joint_thetas[0])):
392 t = self.joint_thetas[0][i]
milind-u18a901d2023-02-17 21:51:55 -0800393 diff = abs(t - hovered_t)
394 if diff < min_diff:
395 min_diff = diff
396 closest_t = t
milind-uadd8fa32023-02-24 23:37:36 -0800397 closest_thetas = [
398 self.joint_thetas[1][0][i],
399 self.joint_thetas[1][1][i],
400 self.joint_thetas[1][2][i]
401 ]
402 self.joint_points = [(closest_t, closest_theta)
403 for closest_theta in closest_thetas]
milind-u18a901d2023-02-17 21:51:55 -0800404 break
405
406 event.x = o_x
407 event.y = o_y
408
409 self.redraw()
Maxwell Henderson7af00982023-02-04 12:42:07 -0800410
411 def do_key_press(self, event):
412 keyval = Gdk.keyval_to_lower(event.keyval)
413 print("Gdk.KEY_" + Gdk.keyval_name(keyval))
414 if keyval == Gdk.KEY_q:
415 print("Found q key and exiting.")
416 quit_main_loop()
417 elif keyval == Gdk.KEY_c:
418 # Increment which arm solution we render
419 self.circular_index_select += 1
420 print(self.circular_index_select)
421 elif keyval == Gdk.KEY_v:
422 # Decrement which arm solution we render
423 self.circular_index_select -= 1
424 print(self.circular_index_select)
Maxwell Henderson7af00982023-02-04 12:42:07 -0800425
426 elif keyval == Gdk.KEY_r:
427 self.prev_segment_pt = self.now_segment_pt
428
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800429 elif keyval == Gdk.KEY_o:
430 # Only prints current segment
431 print(repr(self.segments[self.index]))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800432 elif keyval == Gdk.KEY_p:
433 # Print out the segments.
434 print(repr(self.segments))
435 elif keyval == Gdk.KEY_g:
436 # Generate theta points.
437 if self.segments:
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800438 print(repr(self.segments[self.index].ToThetaPoints()))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800439 elif keyval == Gdk.KEY_e:
440 best_pt = self.now_segment_pt
441 best_dist = 1e10
442 for segment in self.segments:
443 d = angle_dist_sqr(segment.start, self.now_segment_pt)
444 if (d < best_dist):
445 best_pt = segment.start
446 best_dist = d
447 d = angle_dist_sqr(segment.end, self.now_segment_pt)
448 if (d < best_dist):
449 best_pt = segment.end
450 best_dist = d
451 self.now_segment_pt = best_pt
452
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800453 elif keyval == Gdk.KEY_k:
454 self.index += 1
455 self.index = self.index % len(self.segments)
milind-u2a28c592023-02-24 23:13:04 -0800456 print("Switched to segment:", self.segments[self.index].name)
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800457
Maxwell Henderson7af00982023-02-04 12:42:07 -0800458 elif keyval == Gdk.KEY_t:
459 # Toggle between theta and xy renderings
460 if self.theta_version:
461 theta1, theta2 = self.last_pos
462 data = to_xy(theta1, theta2)
463 self.circular_index_select = int(
milind-u18a901d2023-02-17 21:51:55 -0800464 np.floor((theta2 - theta1) / np.pi))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800465 self.last_pos = (data[0], data[1])
466 else:
467 self.last_pos = self.cur_pt_in_theta()
468
469 self.theta_version = not self.theta_version
470 self.reinit_extents()
471
472 elif keyval == Gdk.KEY_z:
473 self.edit_control1 = not self.edit_control1
474 if self.edit_control1:
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800475 self.now_segment_pt = self.segments[self.index].control1
Maxwell Henderson7af00982023-02-04 12:42:07 -0800476 else:
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800477 self.now_segment_pt = self.segments[self.index].control2
Maxwell Henderson7af00982023-02-04 12:42:07 -0800478 if not self.theta_version:
479 data = to_xy(self.now_segment_pt[0], self.now_segment_pt[1])
480 self.last_pos = (data[0], data[1])
481 else:
482 self.last_pos = self.now_segment_pt
483
484 print("self.last_pos: ", self.last_pos, " ci: ",
485 self.circular_index_select)
486
487 self.redraw()
488
489 def do_button_press(self, event):
milind-u600738b2023-02-22 14:42:19 -0800490 last_pos = self.last_pos
Maxwell Henderson7af00982023-02-04 12:42:07 -0800491 self.last_pos = (event.x, event.y)
milind-u600738b2023-02-22 14:42:19 -0800492 pt_theta = self.cur_pt_in_theta()
493 if pt_theta is None:
494 self.last_pos = last_pos
495 return
496
497 self.now_segment_pt = np.array(shift_angles(pt_theta))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800498
499 if self.edit_control1:
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800500 self.segments[self.index].control1 = self.now_segment_pt
Maxwell Henderson7af00982023-02-04 12:42:07 -0800501 else:
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800502 self.segments[self.index].control2 = self.now_segment_pt
Maxwell Henderson7af00982023-02-04 12:42:07 -0800503
504 print('Clicked at theta: %s' % (repr(self.now_segment_pt, )))
505 if not self.theta_version:
506 print('Clicked at xy, circular index: (%f, %f, %f)' %
507 (self.last_pos[0], self.last_pos[1],
508 self.circular_index_select))
509
milind-u18a901d2023-02-17 21:51:55 -0800510 print('c1: np.array([%f, %f])' %
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800511 (self.segments[self.index].control1[0],
512 self.segments[self.index].control1[1]))
milind-u18a901d2023-02-17 21:51:55 -0800513 print('c2: np.array([%f, %f])' %
Maxwell Hendersonf5c08a52023-02-23 17:28:35 -0800514 (self.segments[self.index].control2[0],
515 self.segments[self.index].control2[1]))
Maxwell Henderson7af00982023-02-04 12:42:07 -0800516
517 self.redraw()
518
519
milind-u18a901d2023-02-17 21:51:55 -0800520arm_ui = ArmUi()
521arm_ui.segments = graph_paths.segments
Maxwell Henderson7af00982023-02-04 12:42:07 -0800522basic_window.RunApp()