main.py 11 KB

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  1. import matplotlib
  2. matplotlib.use("TkAgg")
  3. from matplotlib.backends.backend_tkagg import FigureCanvasTkAgg
  4. from matplotlib.figure import Figure
  5. from Tkinter import *
  6. import tkSimpleDialog
  7. import urllib
  8. import urllib2
  9. JUMP = 40
  10. MAX_WIDTH = 20 * JUMP
  11. MAX_HEIGHT = 20 * JUMP
  12. address = "http://127.0.0.1:8001"
  13. root = Tk()
  14. canvas = Canvas(root, width=MAX_WIDTH, height=MAX_HEIGHT, bg="white")
  15. canvas.pack()
  16. name = 0
  17. class FakeLayer():
  18. def __init__(self, address):
  19. self.types = {}
  20. self.sources = {}
  21. self.targets = {}
  22. self.attrs = {}
  23. def read_available_attributes(self, name):
  24. if self.types[name] == "const":
  25. return ["value"]
  26. else:
  27. return []
  28. def read_attribute(self, name, attr):
  29. return self.attr.get(name, {}).get(attr, None)
  30. def set_attribute(self, name, attr, value):
  31. self.attrs[name][attr] = value
  32. def instantiate_block(self, name, block_type):
  33. self.types[name] = block_type
  34. def instantiate_link(self, name, link_type, source, target):
  35. self.types[name] = link_type
  36. self.sources[name] = source
  37. self.targets[name] = target
  38. self.attrs[name] = {}
  39. def simulate(self):
  40. pass
  41. def step(self):
  42. pass
  43. def pause(self):
  44. pass
  45. attribute = []
  46. available_attrs = []
  47. simulation = []
  48. def poll(address):
  49. working_attribute = []
  50. working_available_attrs = []
  51. working_simulation = []
  52. while 1:
  53. returnvalue = urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "get_output", "username": "CBD_env"}))).read()
  54. if returnvalue.startswith("AVAILABLE:"):
  55. working_available_attrs.append(returnvalue.split(":", 1)[1])
  56. elif returnvalue.startswith("ATTRIBUTE:"):
  57. working_attribute.append(returnvalue.split(":", 1)[1])
  58. elif returnvalue.startswith("SIMULATION:"):
  59. working_simulation.append(returnvalue.split(":", 1)[1])
  60. elif returnvalue.startswith("FINISH_AVAILABLE"):
  61. available_attrs.append(working_available_attrs)
  62. working_available_attrs = []
  63. elif returnvalue.startswith("FINISH_ATTRIBUTE"):
  64. attributes.append(working_attributes)
  65. working_attributes = []
  66. elif returnvalue.startswith("FINISH_SIMULATION"):
  67. simulation.append(working_simulation)
  68. working_simulation = []
  69. class MvLayer():
  70. def __init__(self, address):
  71. import threading
  72. self.address = address
  73. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"CBD_env"', "username": "user_manager"}))).read()
  74. threading.Thread(target=poll, args=[address])
  75. def read_available_attributes(self, name):
  76. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"read_available_attributes"', "username": "CBD_env"}))).read()
  77. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % name, "username": "CBD_env"}))).read()
  78. while not available_attrs:
  79. time.sleep(0.1)
  80. return available_attrs.pop(0)
  81. def read_attribute(self, name, attr):
  82. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"read_attribute"', "username": "CBD_env"}))).read()
  83. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % name, "username": "CBD_env"}))).read()
  84. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % attr, "username": "CBD_env"}))).read()
  85. while not attribute:
  86. time.sleep(0.1)
  87. return attribute.pop(0)
  88. def set_attribute(self, name, attr, value):
  89. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"set_attribute"', "username": "CBD_env"}))).read()
  90. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % name, "username": "CBD_env"}))).read()
  91. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % attr, "username": "CBD_env"}))).read()
  92. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % value, "username": "CBD_env"}))).read()
  93. def instantiate_block(self, name, block_type):
  94. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"instantiate"', "username": "CBD_env"}))).read()
  95. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (block_type), "username": "CBD_env"}))).read()
  96. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (name), "username": "CBD_env"}))).read()
  97. def instantiate_link(self, name, link_type, source, target):
  98. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"instantiate"', "username": "CBD_env"}))).read()
  99. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (link_type), "username": "CBD_env"}))).read()
  100. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (name), "username": "CBD_env"}))).read()
  101. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (source), "username": "CBD_env"}))).read()
  102. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"%s"' % (target), "username": "CBD_env"}))).read()
  103. def simulate(self):
  104. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"simulate"', "username": "CBD_env"}))).read()
  105. def step(self):
  106. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"step"', "username": "CBD_env"}))).read()
  107. def pause(self):
  108. urllib2.urlopen(urllib2.Request(address, urllib.urlencode({"op": "set_input", "value": '"pause"', "username": "CBD_env"}))).read()
  109. def lower(value):
  110. return value / JUMP * JUMP
  111. def upper(value):
  112. return (value / JUMP + 1) * JUMP
  113. def avg(a, b):
  114. return float(a + b) / 2
  115. class InterfaceCore():
  116. mode = ""
  117. drawn = set()
  118. refs = dict()
  119. mappings = {"+": "AdditionBlock",
  120. "-": "NegationBlock",
  121. }
  122. #mv = MvLayer(address)
  123. mv = FakeLayer(address)
  124. def set_mode(self, mode):
  125. self.mode = mode
  126. def clicked(self, event):
  127. if self.mode not in ["+", "-"]:
  128. print("Cannot create something not guaranteed to be block type!")
  129. else:
  130. if self.find((event.x, event.y)):
  131. # Something already there, so don't add, but modify
  132. lname = self.find((event.x, event.y))
  133. attrs = self.mv.read_available_attributes(lname)
  134. if not attrs:
  135. print("No attrs to manage!")
  136. for attr in attrs:
  137. old_value = self.mv.read_attribute(lname, attr)
  138. new_value = tkSimpleDialog.askstring("Attribute modification", attr, initialvalue=old_value)
  139. self.mv.set_attribute(lname, attr, new_value)
  140. else:
  141. global name
  142. x = event.x
  143. y = event.y
  144. self.mv.instantiate_block(str(name), self.mappings[self.mode])
  145. r = canvas.create_rectangle(lower(x), lower(y), upper(x), upper(y), fill="white")
  146. t = canvas.create_text(avg(lower(x), upper(x)), avg(lower(y), upper(y)), text=self.mode, fill="black")
  147. b = (lower(x), lower(y), upper(x), upper(y), str(name))
  148. self.drawn.add(b)
  149. self.refs[str(name)] = [r, t]
  150. name += 1
  151. def find(self, location):
  152. x, y = location
  153. for e in self.drawn:
  154. if (e[0] <= x and
  155. e[1] <= y and
  156. e[2] >= x and
  157. e[3] >= y):
  158. return e[4]
  159. print("Found nothing at that location!")
  160. return []
  161. def draw(self, start, end):
  162. source = self.find(start)
  163. target = self.find(end)
  164. print("Connect from %s to %s" % (source, target))
  165. if source and target:
  166. if self.mode not in ["Link", "IC"]:
  167. print("Cannot create something not guaranteed to be link type!")
  168. else:
  169. global name
  170. self.mv.instantiate_link(str(name), self.mode, source, target)
  171. self.refs[str(name)] = [canvas.create_line(start[0], start[1], end[0], end[1], fill="black", arrow=LAST)]
  172. name += 1
  173. core = InterfaceCore()
  174. def addition():
  175. core.set_mode("+")
  176. def negation():
  177. core.set_mode("-")
  178. def link():
  179. core.set_mode("Link")
  180. def clicked(event):
  181. core.clicked(event)
  182. def draw(event):
  183. global start_location
  184. start_location = (event.x, event.y)
  185. def release(event):
  186. core.draw(start_location, (event.x, event.y))
  187. def simulate():
  188. core.mv.simulate()
  189. def step():
  190. core.mv.step()
  191. def pause():
  192. core.mv.pause()
  193. Button(root, text="+", command=addition).pack()
  194. Button(root, text="-", command=negation).pack()
  195. Button(root, text="Link", command=link).pack()
  196. Button(root, text="SIM", command=simulate).pack()
  197. Button(root, text="STEP", command=step).pack()
  198. Button(root, text="PAUSE", command=pause).pack()
  199. core.canvas = canvas
  200. for i in range(JUMP, MAX_HEIGHT, JUMP):
  201. canvas.create_line(0, i, MAX_HEIGHT, i, fill="grey")
  202. for i in range(JUMP, MAX_WIDTH, JUMP):
  203. canvas.create_line(i, 0, i, MAX_WIDTH, fill="grey")
  204. canvas.bind("<Button-1>", clicked)
  205. canvas.bind("<Button-3>", draw)
  206. canvas.bind("<ButtonRelease-3>", release)
  207. visual = Toplevel(root)
  208. # TODO: https://pythonprogramming.net/how-to-embed-matplotlib-graph-tkinter-gui/
  209. probes = {}
  210. values = {}
  211. simulation = [(1, {"a": 1, "b": 2}), (2, {"a": 3}), (3, {"a": 4, "b": 6})]
  212. def update_graphs():
  213. while simulation:
  214. t, results = simulation.pop(0)
  215. for k, v in results.items():
  216. if k in probes:
  217. fcanvas, a = probes[k]
  218. else:
  219. f = Figure(figsize=(5,5), dpi=100)
  220. a = f.add_subplot(111)
  221. a.plot([], [])
  222. fcanvas = FigureCanvasTkAgg(f, visual)
  223. fcanvas.show()
  224. fcanvas.get_tk_widget().pack()
  225. probes[k] = (fcanvas, a)
  226. values[k] = ([], [])
  227. values[k][0].append(t)
  228. values[k][1].append(v)
  229. a.clear()
  230. a.plot(values[k][0], values[k][1])
  231. fcanvas.draw()
  232. root.after(50, update_graphs)
  233. root.after(50, update_graphs)
  234. root.mainloop()