model.py 21 KB

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  1. import sys
  2. import time
  3. sys.path.append("kernel/")
  4. sys.path.append("state/")
  5. sys.path.append("interface/HUTN")
  6. from modelverse_state.main import ModelverseState as MvS
  7. from modelverse_kernel.main import ModelverseKernel as MvK
  8. from modelverse_kernel.primitives import SleepKernel
  9. from hutn_compiler.compiler import main as do_compile
  10. from pypdevs.minimal import AtomicDEVS, CoupledDEVS, Simulator
  11. PROFILE = False
  12. import json
  13. import random
  14. random.seed(1)
  15. def translate(operation):
  16. return {
  17. "CN": "create_node",
  18. "CE": "create_edge",
  19. "CNV": "create_nodevalue",
  20. "CD": "create_dict",
  21. "RV": "read_value",
  22. "RO": "read_outgoing",
  23. "RI": "read_incoming",
  24. "RE": "read_edge",
  25. "RD": "read_dict",
  26. "RDN": "read_dict_node",
  27. "RDNE": "read_dict_node_edge",
  28. "RDE": "read_dict_edge",
  29. "RRD": "read_reverse_dict",
  30. "RR": "read_root",
  31. "RDK": "read_dict_keys",
  32. "DE": "delete_edge",
  33. "DN": "delete_node",
  34. }[operation]
  35. class MvSState(object):
  36. def __init__(self):
  37. self.queue = []
  38. self.output = None
  39. self.mvs = MvS("bootstrap/bootstrap.m.gz")
  40. self.timer = float("inf")
  41. class ModelverseState(AtomicDEVS):
  42. def __init__(self,
  43. read_root,
  44. create_node,
  45. create_edge,
  46. create_nodevalue,
  47. create_dict,
  48. read_value,
  49. read_outgoing,
  50. read_incoming,
  51. read_edge,
  52. read_dict,
  53. read_dict_keys,
  54. read_dict_edge,
  55. read_dict_node,
  56. read_dict_node_edge,
  57. read_reverse_dict,
  58. delete_node,
  59. delete_edge):
  60. AtomicDEVS.__init__(self, "MvS")
  61. self.timings = {
  62. "read_root": read_root,
  63. "create_node": create_node,
  64. "create_edge": create_edge,
  65. "create_nodevalue": create_nodevalue,
  66. "create_dict": create_dict,
  67. "read_value": read_value,
  68. "read_outgoing": read_outgoing,
  69. "read_incoming": read_incoming,
  70. "read_edge": read_edge,
  71. "read_dict": read_dict,
  72. "read_dict_keys": read_dict_keys,
  73. "read_dict_edge": read_dict_edge,
  74. "read_dict_node": read_dict_node,
  75. "read_dict_node_edge": read_dict_node_edge,
  76. "read_reverse_dict": read_reverse_dict,
  77. "delete_node": delete_node,
  78. "delete_edge": delete_edge,
  79. }
  80. self.state = MvSState()
  81. self.from_mvk = self.addInPort("from_MvK")
  82. self.to_mvk = self.addOutPort("to_MvK")
  83. def extTransition(self, inputs):
  84. self.state.timer -= self.elapsed
  85. empty = len(self.state.queue) == 0
  86. self.state.queue.extend(inputs[self.from_mvk])
  87. if empty:
  88. # First message, so set the timer
  89. # And already compute the result so it is ready to output
  90. self.state.output = []
  91. self.state.timer = 0.0
  92. for v in self.state.queue[0]:
  93. start = time.time()
  94. self.state.output.append(getattr(self.state.mvs, translate(v[0]))(*v[1]))
  95. if PROFILE:
  96. print("%s: %.17f" % (translate(v[0]), time.time() - start))
  97. self.state.timer += self.timings[translate(v[0])]
  98. else:
  99. # Just append the message to process
  100. pass
  101. return self.state
  102. def outputFnc(self):
  103. return {self.to_mvk: [self.state.output]}
  104. def intTransition(self):
  105. self.state.queue.pop(0)
  106. self.state.output = []
  107. if len(self.state.queue) > 0:
  108. self.state.timer = 0.0
  109. # Value contains a list of operations to do
  110. # So do them and calculate how long it takes
  111. for v in self.state.queue[0]:
  112. self.state.output.append(getattr(self.state.mvs, translate(v[0]))(*v[1])[0])
  113. self.state.timer += self.timings[translate(v[0])]
  114. else:
  115. self.state.timer = float("inf")
  116. return self.state
  117. def timeAdvance(self):
  118. return self.state.timer
  119. class MvKState(object):
  120. def __init__(self, rule_generation):
  121. self.mvk = None
  122. self.waiting = False
  123. self.inputs = {}
  124. self.outputs = {}
  125. self.tasks = []
  126. self.reply = None
  127. self.phase = None
  128. self.commands = None
  129. self.root = None
  130. self.current_task = None
  131. self.loaded_primitives = False
  132. self.execution_counter = 0
  133. self.rule_generation = rule_generation
  134. self.current_time = 0.0
  135. self.start_task_time = 0.0
  136. def __str__(self):
  137. return "\nMvK: %s\n" % self.mvk + \
  138. "waiting: %s\n" % self.waiting + \
  139. "inputs: %s\n" % self.inputs + \
  140. "outputs: %s\n" % self.outputs + \
  141. "tasks: %s\n" % self.tasks + \
  142. "reply: %s\n" % self.reply + \
  143. "phase: %s\n" % self.phase + \
  144. "commands: %s\n" % self.commands + \
  145. "root: %s\n" % self.root + \
  146. "current task: %s\n" % self.current_task + \
  147. "execution counter: %s\n"
  148. class ModelverseKernel(AtomicDEVS):
  149. def __init__(self, time_per_phase, rule_generation):
  150. AtomicDEVS.__init__(self, "MvK")
  151. self.state = MvKState(rule_generation)
  152. self.from_mvi = self.addInPort("from_MvI")
  153. self.from_mvs = self.addInPort("from_MvS")
  154. self.to_mvi = self.addOutPort("to_MvI")
  155. self.to_mvs = self.addOutPort("to_MvS")
  156. self.time_per_phase = time_per_phase
  157. def extTransition(self, inputs):
  158. self.state.current_time += self.elapsed
  159. if self.from_mvi in inputs:
  160. # Got input from MvI, so we queue it
  161. for inp in inputs[self.from_mvi]:
  162. taskname = inp[0]
  163. data = inp[1]
  164. if data is not None:
  165. self.state.inputs.setdefault(taskname, []).extend(data)
  166. else:
  167. self.state.outputs.setdefault(taskname, []).append(None)
  168. if self.from_mvs in inputs:
  169. # Got input from MvS, so we can continue processing
  170. #print(" --> " + str(inputs[self.from_mvs]))
  171. for mvs_input in inputs[self.from_mvs]:
  172. if self.state.mvk is None:
  173. # No MvK, so set it with the root we have just received (or should have received)
  174. self.state.root = mvs_input[0]
  175. self.state.mvk = MvK(self.state.root)
  176. else:
  177. self.state.reply = mvs_input
  178. self.state.waiting = False
  179. return self.state
  180. def intTransition(self):
  181. self.state.current_time += self.timeAdvance()
  182. was_empty = len(self.state.tasks) == 0
  183. if self.state.commands is not None:
  184. self.state.commands = None
  185. return self.state
  186. if self.state.mvk is not None:
  187. self.state.mvk.returnvalue = None
  188. if self.state.mvk is None:
  189. # Initializing
  190. self.state.waiting = True
  191. elif not self.state.loaded_primitives:
  192. commands = self.state.mvk.execute_yields("", "load_primitives", [], self.state.reply)
  193. if commands is None:
  194. self.state.loaded_primitives = True
  195. self.state.reply = None
  196. else:
  197. self.state.waiting = True
  198. self.state.commands = commands
  199. else:
  200. # Are initialized and have work to do
  201. if len(self.state.tasks) == 0:
  202. # Read out new set of tasks first
  203. if self.state.reply is None:
  204. commands = [("RDK", [self.state.root])]
  205. else:
  206. self.state.tasks = self.state.reply[0]
  207. commands = None
  208. elif self.state.phase == "init_task":
  209. if self.state.reply is None:
  210. commands = [("RV", [self.state.tasks[0]])]
  211. else:
  212. self.state.current_task = self.state.reply[0]
  213. print("Processing task %s at time %s" % (self.state.current_task, self.time_last))
  214. self.state.start_task_time = self.state.current_time
  215. if self.state.current_task.startswith("__"):
  216. # Don't process this task and force termination of task
  217. self.state.phase = "output"
  218. commands = None
  219. elif self.state.phase == "input":
  220. # Process inputs
  221. if self.state.inputs.get(self.state.current_task, None):
  222. value = self.state.inputs[self.state.current_task][0]
  223. start = time.time()
  224. commands = self.state.mvk.execute_yields(self.state.current_task, "set_input", [value], self.state.reply)
  225. if PROFILE:
  226. print("rule_generation: %.17f" % ((time.time() - start)))
  227. #self.state.rule_generation = time.time() - start
  228. self.state.mvk.returnvalue = None
  229. if commands is None:
  230. self.state.inputs[self.state.current_task].pop(0)
  231. else:
  232. commands = None
  233. elif self.state.phase == "computation":
  234. try:
  235. start = time.time()
  236. commands = self.state.mvk.execute_yields(self.state.current_task, "execute_rule", [], self.state.reply)
  237. if PROFILE:
  238. print("rule_generation: %.17f" % ((time.time() - start)))
  239. #self.state.rule_generation = time.time() - start
  240. except SleepKernel:
  241. commands = None
  242. self.state.mvk.success = False
  243. else:
  244. self.state.mvk.success = True
  245. elif self.state.phase == "output":
  246. start = time.time()
  247. commands = self.state.mvk.execute_yields(self.state.current_task, "get_output", [], self.state.reply)
  248. if PROFILE:
  249. print("rule_generation: %.17f" % ((time.time() - start)))
  250. #self.state.rule_generation = time.time() - start
  251. else:
  252. raise Exception("Phase: " + str(self.state.phase))
  253. # Advance phase
  254. if commands is None:
  255. if was_empty:
  256. self.state.phase = "init_task"
  257. elif self.state.phase == "init_task":
  258. self.state.phase = "input"
  259. elif self.state.phase == "input":
  260. self.state.phase = "computation"
  261. elif self.state.phase == "computation":
  262. if not self.state.mvk.success or (self.state.current_time - self.state.start_task_time > self.time_per_phase):
  263. self.state.phase = "output"
  264. elif self.state.phase == "output":
  265. self.state.tasks.pop(0)
  266. self.state.phase = "init_task"
  267. self.state.waiting = False
  268. self.state.reply = None
  269. else:
  270. self.state.waiting = True
  271. # Send the commands to the MvS
  272. self.state.commands = commands
  273. #print(" <-- " + str(commands))
  274. return self.state
  275. def outputFnc(self):
  276. outputs = {}
  277. if self.state.mvk is None:
  278. # Ask the root first
  279. outputs[self.to_mvs] = [[("RR", [])]]
  280. elif self.state.waiting:
  281. outputs[self.to_mvs] = [self.state.commands]
  282. if self.state.mvk and self.state.mvk.returnvalue is not None:
  283. outputs[self.to_mvi] = [self.state.mvk.returnvalue]
  284. return outputs
  285. def timeAdvance(self):
  286. if self.state.commands is not None:
  287. return self.state.rule_generation
  288. elif self.state.waiting:
  289. return float("inf")
  290. elif self.state.mvk is None:
  291. return 0
  292. else:
  293. return 0
  294. class MvIState():
  295. def __init__(self):
  296. self.operations = []
  297. self.output = []
  298. self.processing = []
  299. self.init = True
  300. self.finished = False
  301. class ModelverseInterface(AtomicDEVS):
  302. def __init__(self, taskname, operations, finish_on):
  303. AtomicDEVS.__init__(self, "MvI_%s" % taskname)
  304. self.state = MvIState()
  305. self.state.operations = operations
  306. self.taskname = taskname
  307. self.finish_on = finish_on
  308. self.to_mvk = self.addOutPort("to_MvK")
  309. self.from_mvk = self.addInPort("from_MvK")
  310. def intTransition(self):
  311. self.state.init = False
  312. self.state.operations = []
  313. return self.state
  314. def extTransition(self, inputs):
  315. for inp in inputs[self.from_mvk]:
  316. self.state.output.append(inp)
  317. if inp == self.finish_on:
  318. self.state.finished = True
  319. #print("Event history: " + str(self.state.output))
  320. return self.state
  321. def outputFnc(self):
  322. if self.state.operations:
  323. return {self.to_mvk: [(self.taskname, self.state.operations)]}
  324. else:
  325. return {}
  326. def timeAdvance(self):
  327. if self.state.init:
  328. return 0
  329. elif self.state.processing:
  330. return 0
  331. else:
  332. return float("inf")
  333. class NetworkState(object):
  334. def __init__(self):
  335. self.processing = []
  336. self.timer = float("inf")
  337. class Network(AtomicDEVS):
  338. def __init__(self, name, latency, bandwidth):
  339. AtomicDEVS.__init__(self, name)
  340. self.state = NetworkState()
  341. self.input_port = self.addInPort("input_port")
  342. self.output_port = self.addOutPort("output_port")
  343. self.latency = latency
  344. self.bandwidth = bandwidth
  345. def intTransition(self):
  346. self.state.processing.pop(0)
  347. if self.state.processing:
  348. self.state.timer = (len(self.state.processing[0]) * 8 / float(self.bandwidth) + self.latency)
  349. else:
  350. self.state.timer = float("inf")
  351. return self.state
  352. def extTransition(self, inputs):
  353. self.state.timer -= self.elapsed
  354. if self.state.timer == float("inf"):
  355. self.state.timer = 0
  356. for v in inputs[self.input_port]:
  357. self.state.processing.append(json.dumps(v))
  358. # NOTE data is in bytes, while bandwidth is in bits, so multiply by 8
  359. if len(self.state.processing) > 0:
  360. self.state.timer = (len(self.state.processing[0]) * 8 / float(self.bandwidth) + self.latency)
  361. return self.state
  362. def outputFnc(self):
  363. return {self.output_port: [json.loads(self.state.processing[0])]}
  364. def timeAdvance(self):
  365. #print("Timer: " + str(self.state.timer))
  366. return self.state.timer
  367. class System(CoupledDEVS):
  368. def __init__(self,
  369. taskname,
  370. operations,
  371. finish_on,
  372. rule_generation,
  373. time_per_phase,
  374. mvi2mvk_latency,
  375. mvi2mvk_bandwidth,
  376. mvk2mvs_latency,
  377. mvk2mvs_bandwidth,
  378. mvs2mvk_latency,
  379. mvs2mvk_bandwidth,
  380. mvk2mvi_latency,
  381. mvk2mvi_bandwidth,
  382. read_root,
  383. create_node,
  384. create_edge,
  385. create_nodevalue,
  386. create_dict,
  387. read_value,
  388. read_outgoing,
  389. read_incoming,
  390. read_edge,
  391. read_dict,
  392. read_dict_keys,
  393. read_dict_edge,
  394. read_dict_node,
  395. read_dict_node_edge,
  396. read_reverse_dict,
  397. delete_node,
  398. delete_edge):
  399. CoupledDEVS.__init__(self, "System")
  400. self.mvi_manager = self.addSubModel(ModelverseInterface(\
  401. taskname = "task_manager",
  402. operations = [taskname],
  403. finish_on = None,
  404. ))
  405. self.mvi = self.addSubModel(ModelverseInterface(\
  406. taskname = taskname,
  407. operations = operations,
  408. finish_on = finish_on,
  409. ))
  410. self.mvk = self.addSubModel(ModelverseKernel(\
  411. time_per_phase = time_per_phase,
  412. rule_generation = rule_generation,
  413. ))
  414. self.mvs = self.addSubModel(ModelverseState(\
  415. read_root = read_root,
  416. create_node = create_node,
  417. create_edge = create_edge,
  418. create_nodevalue = create_nodevalue,
  419. create_dict = create_dict,
  420. read_value = read_value,
  421. read_outgoing = read_outgoing,
  422. read_incoming = read_incoming,
  423. read_edge = read_edge,
  424. read_dict = read_dict,
  425. read_dict_keys = read_dict_keys,
  426. read_dict_edge = read_dict_edge,
  427. read_dict_node = read_dict_node,
  428. read_dict_node_edge = read_dict_node_edge,
  429. read_reverse_dict = read_reverse_dict,
  430. delete_node = delete_node,
  431. delete_edge = delete_edge,
  432. ))
  433. self.mvi2mvk = self.addSubModel(Network(\
  434. name = "mvi2mvk",
  435. latency = mvi2mvk_latency,
  436. bandwidth = mvi2mvk_bandwidth,
  437. ))
  438. self.mvk2mvs = self.addSubModel(Network(\
  439. name = "mvk2mvs",
  440. latency = mvk2mvs_latency,
  441. bandwidth = mvk2mvs_bandwidth,
  442. ))
  443. self.mvs2mvk = self.addSubModel(Network(\
  444. name = "mvs2mvk",
  445. latency = mvs2mvk_latency,
  446. bandwidth = mvs2mvk_bandwidth,
  447. ))
  448. self.mvk2mvi = self.addSubModel(Network(\
  449. name = "mvk2mvi",
  450. latency = mvk2mvi_latency,
  451. bandwidth = mvk2mvi_bandwidth,
  452. ))
  453. self.connectPorts(self.mvi_manager.to_mvk, self.mvk.from_mvi)
  454. self.connectPorts(self.mvi.to_mvk, self.mvi2mvk.input_port)
  455. self.connectPorts(self.mvi2mvk.output_port, self.mvk.from_mvi)
  456. self.connectPorts(self.mvk.to_mvs, self.mvk2mvs.input_port)
  457. self.connectPorts(self.mvk2mvs.output_port, self.mvs.from_mvk)
  458. self.connectPorts(self.mvs.to_mvk, self.mvs2mvk.input_port)
  459. self.connectPorts(self.mvs2mvk.output_port, self.mvk.from_mvs)
  460. self.connectPorts(self.mvk.to_mvi, self.mvk2mvi.input_port)
  461. self.connectPorts(self.mvk2mvi.output_port, self.mvi.from_mvk)
  462. taskname = "test_task"
  463. operations = ["admin", "admin"]
  464. finish_on = "Use the 'help' command for a list of possible commands"
  465. args = {
  466. "taskname": taskname,
  467. "operations": operations,
  468. "finish_on": finish_on,
  469. "mvi2mvk_latency": 0.0000001,
  470. "mvi2mvk_bandwidth": 50000000000,
  471. "mvk2mvs_latency": 0.0000001,
  472. "mvk2mvs_bandwidth": 50000000000,
  473. "mvs2mvk_latency": 0.0000001,
  474. "mvs2mvk_bandwidth": 50000000000,
  475. "mvk2mvi_latency": 0.0000001,
  476. "mvk2mvi_bandwidth": 50000000000,
  477. "time_per_phase": 0.05,
  478. # Automatically filled in from calibration results, just here to prevent crashes (results for my UA desktop)
  479. "read_root": 0.00001406669616699,
  480. "create_node": 0.00000379181167487,
  481. "create_edge": 0.00000601282282066,
  482. "create_nodevalue": 0.00000501364247391,
  483. "create_dict": 0.00001028065706205,
  484. "read_value": 0.00000388661630500,
  485. "read_outgoing": 0.00000520600098073,
  486. "read_incoming": 0.00000645903181994,
  487. "read_edge": 0.00000449162172644,
  488. "read_dict": 0.00000460127038355,
  489. "read_dict_keys": 0.00001678063432883,
  490. "read_dict_node": 0.00001020808859528,
  491. "read_dict_edge": 0.00000642558526942,
  492. "read_dict_node_edge": 0.0,
  493. "read_reverse_dict": 0.00002557890755790,
  494. "delete_node": 0.00004755891187096,
  495. "delete_edge": 0.00000683382081240,
  496. "rule_generation": 0.00001543215873893,
  497. }
  498. with open("calibration/averages", 'r') as param_file:
  499. for l in param_file:
  500. op, t = l.split(": ")
  501. op = op.strip()
  502. args[op] = float(t)
  503. model = System(**args)
  504. sim = Simulator(model)
  505. sim.setTerminationCondition(lambda t, m: m.mvi.state.finished)
  506. #sim.setVerbose()
  507. tn = sim.simulate()
  508. print("Simulation finished at time %s" % tn)