main.py 12 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341
  1. from Tkinter import *
  2. from PIL import Image, ImageTk
  3. import tkSimpleDialog
  4. import urllib
  5. import urllib2
  6. import json
  7. import time
  8. sys.path.append("interface/HUTN")
  9. sys.path.append("wrappers")
  10. from modelverse import *
  11. address = "http://127.0.0.1:8001"
  12. taskname = str(random.random())
  13. MAX_WIDTH = 500
  14. MAX_HEIGHT = 500
  15. MM_RENDERED = "MM_rendered_graphical"
  16. init()
  17. login("admin", "admin")
  18. root = Tk()
  19. class Window(object):
  20. def __init__(self):
  21. self.canvas = Canvas(root, width=MAX_WIDTH, height=MAX_HEIGHT, bg="white")
  22. self.selected_model = StringVar(root)
  23. self.selected_mapper = StringVar(root)
  24. mm_buttons = []
  25. available_models = model_list()
  26. available_mappers = []
  27. self.model_options = OptionMenu(root, self.selected_model, *[i[0] for i in available_models])
  28. self.mapper_options = OptionMenu(root, self.selected_mapper, "", *available_mappers)
  29. self.reset_optionmenu(self.mapper_options, [], self.selected_mapper)
  30. bound_functions = {
  31. "open": self.open_model,
  32. "render": self.render_model,
  33. "instantiate": self.instantiate_model,
  34. "verify": self.verify_model,
  35. }
  36. buttons = []
  37. buttons.append(self.model_options)
  38. buttons.append(self.mapper_options)
  39. self.current_element = None
  40. for k, v in bound_functions.items():
  41. buttons.append(Button(root, text=k, command=v))
  42. for i, b in enumerate(buttons):
  43. b.grid(row=0, column=i, sticky="WENS")
  44. self.mm_buttons = []
  45. self.CS_to_AS = {}
  46. self.AS_to_CS = {}
  47. self.AS_to_TK = {}
  48. self.TK_to_CS = {}
  49. self.canvas.grid(row=2,column=0,columnspan=len(buttons))
  50. self.canvas.bind("<Button-1>", self.left_clicked)
  51. self.canvas.bind("<B1-Motion>", self.left_drag)
  52. self.canvas.bind("<ButtonRelease-1>", self.left_released)
  53. self.canvas.bind("<Button-2>", self.middle_clicked)
  54. self.canvas.bind("<Button-3>", self.right_clicked)
  55. def find_AS(self, x, y):
  56. # Find the group at this location
  57. def in_bbox(coord, bbox):
  58. if bbox[0] <= coord[0] <= bbox[2] and bbox[1] <= coord[1] <= bbox[3]:
  59. return True
  60. for elem in self.canvas.find_all():
  61. if in_bbox((x, y), self.canvas.bbox(elem)):
  62. return self.CS_to_AS[self.TK_to_CS[elem]]
  63. def move_group(self, elem, coords):
  64. # Change coordinates of all enclosed elements!
  65. # elem is an AS id of the group
  66. m_x, m_y = coords
  67. o_x, o_y = self.original_coords
  68. d_x = m_x - o_x
  69. d_y = m_y - o_y
  70. for tkinter_obj in self.AS_to_TK[elem]:
  71. obj_coords = self.canvas.coords(tkinter_obj)
  72. if len(obj_coords) == 2:
  73. c_x, c_y = obj_coords
  74. self.canvas.coords(tkinter_obj, (c_x + d_x, c_y + d_y))
  75. elif len(obj_coords) == 4:
  76. c_x, c_y, c_x2, c_y2 = obj_coords
  77. self.canvas.coords(tkinter_obj, (c_x + d_x, c_y + d_y, c_x2 + d_x, c_y2 + d_y))
  78. self.original_coords = coords
  79. def left_clicked(self, evt):
  80. # Left click means we select an element for dragging
  81. x, y = evt.x, evt.y
  82. self.current_element = self.find_AS(x, y)
  83. self.original_coords = x, y
  84. print("Left clicked on group with : " + str(self.current_element))
  85. def left_drag(self, evt):
  86. # Left drag means we are dragging something, but only if something is selected
  87. x, y = evt.x, evt.y
  88. if self.current_element is not None:
  89. self.move_group(self.current_element, (x, y))
  90. def left_released(self, evt):
  91. # Left click means we select an element for dragging
  92. x, y = evt.x, evt.y
  93. if self.current_element is not None:
  94. self.move_group(self.current_element, (x, y))
  95. # Send new values to Modelverse!
  96. # TODO
  97. def middle_clicked(self, evt):
  98. # Middle clicked means we are modifying attributes of something
  99. x, y = evt.x, evt.y
  100. # Read available attrs and their values
  101. as_id = self.find_AS(x, y)
  102. attrs = read_attrs(as_id)
  103. print("Got attrs: " + str(attrs))
  104. # Prompt for new values
  105. d = PromptDialog(root, attrs)
  106. if d.result is not None:
  107. # Change all attributes that have changed and send to Modelverse
  108. # TODO
  109. #TODO think about type checking
  110. print("New attributes: " + str(d.result))
  111. def right_clicked(self, evt):
  112. # Right clicked means we are creating something
  113. x, y = evt.x, evt.y
  114. # Instantiate new element of currently using element
  115. pass
  116. def visualize(self, model):
  117. print("Visualizing model: " + str(model))
  118. cache = {}
  119. hierarchy = {}
  120. parent = {}
  121. # First remove all previous elements in the canvas!
  122. for elem in self.canvas.find_all():
  123. self.canvas.destroy(elem)
  124. self.CS_to_AS = {}
  125. self.AS_to_CS = {}
  126. self.AS_to_TK = {}
  127. self.TK_to_CS = {}
  128. def findXY(element_id):
  129. print(cache[element_id])
  130. x = cache[element_id]["x"]
  131. y = cache[element_id]["y"]
  132. while element_id in parent:
  133. # Has a parent (group), so increment the XY values and keep going
  134. element_id = parent[element_id]
  135. x += cache[element_id]["x"]
  136. y += cache[element_id]["y"]
  137. return x, y
  138. def findGroup(element_id):
  139. try:
  140. while cache[element_id]["__asid"] is None:
  141. element_id = parent[element_id]
  142. return element_id
  143. except KeyError:
  144. # No configured __asid found in hierarchy
  145. print("ERROR")
  146. return None
  147. def findASID(element_id):
  148. return cache[findGroup(element_id)]["__asid"]
  149. for element in model:
  150. # Determine type of element
  151. cache[element["id"]] = element
  152. t = element["type"]
  153. if t == "contains":
  154. # Cache the containment links as well
  155. parent[element["__target"]] = element["__source"]
  156. hierarchy.setdefault(element["__source"], []).append(element["__target"])
  157. # Caches filled, so go over all elements, ignoring groups, and draw them relative to their enclosing groups
  158. for element in model:
  159. t = element["type"]
  160. if t in ["Rectangle", "Ellipse", "Line", "Text", "Figure"]:
  161. x, y = findXY(element["id"])
  162. as_ID = findASID(element["id"])
  163. cs_ID = element["id"]
  164. group_ID = findGroup(element["id"])
  165. if t == "Rectangle":
  166. fillColour = element["fillColour"]
  167. width = element["width"]
  168. height = element["height"]
  169. lineWidth = element["lineWidth"]
  170. lineColour = element["lineColour"]
  171. print("Coordinates: " + str((x, y, x+width, y+height)))
  172. tkinter_elem = self.canvas.create_rectangle(x, y, x+width, y+height, fill=fillColour, outline=lineColour)
  173. elif t == "Ellipse":
  174. fillColour = element["fillColour"]
  175. width = element["width"]
  176. height = element["height"]
  177. lineWidth = element["lineWidth"]
  178. lineColour = element["lineColour"]
  179. tkinter_elem = self.canvas.create_ellipse(x, y, x+width, y+height, fill=fillColour, outline=lineColour)
  180. elif t == "Line":
  181. targetX = element["targetX"]
  182. targetY = element["targetY"]
  183. lineWidth = element["lineWidth"]
  184. lineColour = element["lineColour"]
  185. tkinter_elem = self.canvas.create_line(x, y, targetX, targetY, fill=lineColour, width=lineWidth)
  186. elif t == "Text":
  187. lineWidth = element["lineWidth"]
  188. lineColour = element["lineColour"]
  189. text = element["text"]
  190. tkinter_elem = self.canvas.create_text(x, y, fill=lineColour, text=text)
  191. elif t == "Figure":
  192. # Fetch associated SVG figure
  193. raise NotImplementedError()
  194. self.TK_to_CS[tkinter_elem] = cs_ID
  195. self.CS_to_AS[cs_ID] = as_ID
  196. self.AS_to_CS[as_ID] = group_ID
  197. self.AS_to_TK.setdefault(as_ID, set([])).add(tkinter_elem)
  198. def reset_optionmenu(self, optionmenu, options, var):
  199. menu = optionmenu.children["menu"]
  200. menu.delete(0, "end")
  201. var.set("")
  202. for option in options:
  203. menu.add_command(label=option, command=lambda value=option: var.set(value))
  204. def read_available_mappers(self, instance_model):
  205. # Get instance model's type first, as transformations are defined on the type
  206. models = dict(model_list())
  207. type_model = models[instance_model]
  208. print("Found type model: " + type_model)
  209. print("Found MM_Rendered model: " + MM_RENDERED)
  210. mappers = transformation_between(type_model, MM_RENDERED)
  211. print("Supported: " + str(mappers))
  212. return mappers
  213. def create_element(self, t):
  214. def create_elem():
  215. print("Create element of type " + str(t))
  216. return create_elem
  217. def render_model(self):
  218. try:
  219. model_exit()
  220. except InvalidMode:
  221. pass
  222. rendered = model_render(self.selected_model.get(), self.selected_mapper.get())
  223. #TODO visualize rendered model
  224. print("Rendering model: " + rendered)
  225. import json
  226. self.visualize(json.loads(rendered))
  227. model_modify(self.selected_model.get())
  228. def open_model(self):
  229. try:
  230. model_exit()
  231. except InvalidMode:
  232. pass
  233. print("Opening model: " + self.selected_model.get())
  234. available_mappers = self.read_available_mappers(self.selected_model.get())
  235. self.reset_optionmenu(self.mapper_options, available_mappers, self.selected_mapper)
  236. model_modify(self.selected_model.get())
  237. available_types = [i[0] for i in types_full() if i[1] == "Class"]
  238. for button in self.mm_buttons:
  239. button.destroy()
  240. self.mm_buttons = []
  241. for i, t in enumerate(available_types):
  242. self.mm_buttons.append(Button(root, text=t, command=lambda : self.create_element(t)))
  243. self.mm_buttons[-1].grid(row=1, column=i)
  244. def instantiate_model():
  245. try:
  246. model_exit()
  247. except InvalidMode:
  248. pass
  249. d = PromptDialog(root, ["Name:"])
  250. if d.result is not None:
  251. name = str(d.result["Name:"])
  252. print("Creating new model named " + name)
  253. model_add(name, self.selected_model.get())
  254. self.reset_optionmenu(self.available_models, model_list())
  255. self.selected_model.set(name)
  256. open_model()
  257. def verify_model():
  258. try:
  259. # Exit if necessary
  260. model_exit()
  261. except InvalidMode:
  262. pass
  263. print(verify(self.selected_model.get()))
  264. class PromptDialog(tkSimpleDialog.Dialog):
  265. def __init__(self, master, query):
  266. self.query = query
  267. tkSimpleDialog.Dialog.__init__(self, master)
  268. def body(self, master):
  269. self.entries = {}
  270. for i, q in enumerate(self.query.items()):
  271. Label(master, text=q[0]).grid(row=i, column=0)
  272. self.entries[q[0]] = Entry(master)
  273. if q[1] is not None:
  274. self.entries[q[0]].insert(END, q[1])
  275. self.entries[q[0]].grid(row=i, column=1)
  276. return None
  277. def apply(self):
  278. self.result = {i: self.entries[i].get() for i in self.query}
  279. window = Window()
  280. root.mainloop()