primitives.py 18 KB

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  1. # Exception to indicate the result value of the primitive, as a return cannot be used
  2. class PrimitiveFinished(Exception):
  3. def __init__(self, value):
  4. self.result = value
  5. def integer_subtraction(a, b, **remainder):
  6. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  7. result = yield [("CNV", [a_value - b_value])]
  8. raise PrimitiveFinished(result)
  9. def integer_addition(a, b, **remainder):
  10. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  11. result = yield [("CNV", [a_value + b_value])]
  12. raise PrimitiveFinished(result)
  13. def integer_multiplication(a, b, **remainder):
  14. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  15. result = yield [("CNV", [a_value * b_value])]
  16. raise PrimitiveFinished(result)
  17. def integer_division(a, b, **remainder):
  18. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  19. result = yield [("CNV", [int(a_value) / b_value])]
  20. raise PrimitiveFinished(result)
  21. def integer_gt(a, b, **remainder):
  22. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  23. result = yield [("CNV", [a_value > b_value])]
  24. raise PrimitiveFinished(result)
  25. def integer_lt(a, b, **remainder):
  26. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  27. result = yield [("CNV", [a_value < b_value])]
  28. raise PrimitiveFinished(result)
  29. def integer_neg(a, **remainder):
  30. a_value = yield [("RV", [a])]
  31. result = yield [("CNV", [-a_value])]
  32. raise PrimitiveFinished(result)
  33. def bool_and(a, b, **remainder):
  34. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  35. result = yield [("CNV", [a_value and b_value])]
  36. raise PrimitiveFinished(result)
  37. def bool_or(a, b, **remainder):
  38. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  39. result = yield [("CNV", [a_value or b_value])]
  40. raise PrimitiveFinished(result)
  41. def bool_not(a, **remainder):
  42. a_value = yield [("RV", [a])]
  43. result = yield [("CNV", [not a_value])]
  44. raise PrimitiveFinished(result)
  45. def float_subtraction(a, b, **remainder):
  46. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  47. result = yield [("CNV", [a_value - b_value])]
  48. raise PrimitiveFinished(result)
  49. def float_addition(a, b, **remainder):
  50. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  51. result = yield [("CNV", [a_value + b_value])]
  52. raise PrimitiveFinished(result)
  53. def float_multiplication(a, b, **remainder):
  54. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  55. result = yield [("CNV", [a_value * b_value])]
  56. raise PrimitiveFinished(result)
  57. def float_division(a, b, **remainder):
  58. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  59. result = yield [("CNV", [a_value / b_value])]
  60. raise PrimitiveFinished(result)
  61. def float_gt(a, b, **remainder):
  62. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  63. result = yield [("CNV", [a_value > b_value])]
  64. raise PrimitiveFinished(result)
  65. def float_lt(a, b, **remainder):
  66. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  67. result = yield [("CNV", [a_value < b_value])]
  68. raise PrimitiveFinished(result)
  69. def float_neg(a, **remainder):
  70. a_value = yield [("RV", [a])]
  71. result = yield [("CNV", [-a_value])]
  72. raise PrimitiveFinished(result)
  73. def string_join(a, b, **remainder):
  74. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  75. result = yield [("CNV", [str(a_value) + str(b_value)])]
  76. raise PrimitiveFinished(result)
  77. def string_split(a, b, **remainder):
  78. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  79. result = a_value.split(b_value)
  80. elems = yield [("CN", [])] + [("CNV", [v]) for v in result]
  81. new_val = elems[0]
  82. yield [("CD", [new_val, i, v]) for i, v in enumerate(elems[1:])]
  83. raise PrimitiveFinished(new_val)
  84. def string_get(a, b, **remainder):
  85. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  86. result = yield [("CNV", [a_value[b_value]])]
  87. raise PrimitiveFinished(result)
  88. def string_len(a, **remainder):
  89. a_value = yield [("RV", [a])]
  90. result = yield [("CNV", [len(a_value)])]
  91. raise PrimitiveFinished(result)
  92. def value_eq(a, b, **remainder):
  93. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  94. result = yield [("CNV", [a_value == b_value])]
  95. raise PrimitiveFinished(result)
  96. def value_neq(a, b, **remainder):
  97. a_value, b_value = yield [("RV", [a]), ("RV", [b])]
  98. result = yield [("CNV", [a_value != b_value])]
  99. raise PrimitiveFinished(result)
  100. def element_eq(a, b, **remainder):
  101. result = yield [("CNV", [a == b])]
  102. raise PrimitiveFinished(result)
  103. def element_neq(a, b, **remainder):
  104. result = yield [("CNV", [a != b])]
  105. raise PrimitiveFinished(result)
  106. def cast_a2s(a, **remainder):
  107. a_value = yield [("RV", [a])]
  108. result = yield [("CNV", [str(a_value["value"])])]
  109. raise PrimitiveFinished(result)
  110. def cast_i2f(a, **remainder):
  111. a_value = yield [("RV", [a])]
  112. result = yield [("CNV", [float(a_value)])]
  113. raise PrimitiveFinished(result)
  114. def cast_i2s(a, **remainder):
  115. a_value = yield [("RV", [a])]
  116. result = yield [("CNV", [str(a_value)])]
  117. raise PrimitiveFinished(result)
  118. def cast_i2b(a, **remainder):
  119. a_value = yield [("RV", [a])]
  120. result = yield [("CNV", [bool(a_value)])]
  121. raise PrimitiveFinished(result)
  122. def cast_f2i(a, **remainder):
  123. a_value = yield [("RV", [a])]
  124. result = yield [("CNV", [int(a_value)])]
  125. raise PrimitiveFinished(result)
  126. def cast_f2s(a, **remainder):
  127. a_value = yield [("RV", [a])]
  128. result = yield [("CNV", [str(a_value)])]
  129. raise PrimitiveFinished(result)
  130. def cast_f2b(a, **remainder):
  131. a_value = yield [("RV", [a])]
  132. result = yield [("CNV", [bool(a_value)])]
  133. raise PrimitiveFinished(result)
  134. def cast_s2i(a, **remainder):
  135. a_value = yield [("RV", [a])]
  136. result = yield [("CNV", [int(a_value)])]
  137. raise PrimitiveFinished(result)
  138. def cast_s2f(a, **remainder):
  139. a_value = yield [("RV", [a])]
  140. result = yield [("CNV", [float(a_value)])]
  141. raise PrimitiveFinished(result)
  142. def cast_s2b(a, **remainder):
  143. a_value = yield [("RV", [a])]
  144. result = yield [("CNV", [bool(a_value)])]
  145. raise PrimitiveFinished(result)
  146. def cast_b2i(a, **remainder):
  147. a_value = yield [("RV", [a])]
  148. result = yield [("CNV", [int(a_value)])]
  149. raise PrimitiveFinished(result)
  150. def cast_b2f(a, **remainder):
  151. a_value = yield [("RV", [a])]
  152. result = yield [("CNV", [float(a_value)])]
  153. raise PrimitiveFinished(result)
  154. def cast_b2s(a, **remainder):
  155. a_value = yield [("RV", [a])]
  156. result = yield [("CNV", [str(a_value)])]
  157. raise PrimitiveFinished(result)
  158. def cast_e2s(a, **remainder):
  159. a_value = yield [("RV", [a])]
  160. result = yield [("CNV", ["{ID: %s, value: %s}" % (a, a_value)])]
  161. raise PrimitiveFinished(result)
  162. def cast_v2s(a, **remainder):
  163. a_value = yield [("RV", [a])]
  164. if isinstance(a_value, (str, unicode)):
  165. # String should be encoded to distinguish between 3 and "3"
  166. a_value = '"%s"' % a_value
  167. elif isinstance(a_value, dict):
  168. # Action or type
  169. a_value = a_value["value"]
  170. result = yield [("CNV", ["%s" % (a_value)])]
  171. raise PrimitiveFinished(result)
  172. def cast_id2s(a, **remainder):
  173. result = yield [("CNV", ["%s" % (a)])]
  174. raise PrimitiveFinished(result)
  175. def list_append(a, b, **remainder):
  176. a_outgoing = yield [("RO", [a])]
  177. _ = yield [("CD", [a, len(a_outgoing), b])]
  178. raise PrimitiveFinished(a)
  179. def list_insert(a, b, c, **remainder):
  180. a_outgoing, c_value = yield [("RO", [a]), ("RV", [c])]
  181. links = yield [("RD", [a, i]) for i in range(c_value, len(a_outgoing))] + \
  182. [("RDE", [a, i]) for i in range(c_value, len(a_outgoing))]
  183. values = links[:len(links)/2]
  184. edges = links[len(links)/2:]
  185. yield [("CD", [a, c_value, b])] + \
  186. [("CD", [a, c_value + 1 + index, value]) for index, value in enumerate(values)] + \
  187. [("DE", [i]) for i in edges]
  188. raise PrimitiveFinished(a)
  189. def list_delete(a, b, **remainder):
  190. a_outgoing, b_value = yield [("RO", [a]), ("RV", [b])]
  191. links = yield [("RD", [a, i]) for i in range(b_value, len(a_outgoing))] + \
  192. [("RDE", [a, i]) for i in range(b_value, len(a_outgoing))]
  193. values = links[:len(links)/2]
  194. edges = links[len(links)/2:]
  195. yield [("CD", [a, b_value + index, value]) for index, value in enumerate(values[1:])] + \
  196. [("DE", [i]) for i in edges]
  197. raise PrimitiveFinished(a)
  198. def list_read(a, b, **remainder):
  199. b_value = yield [("RV", [b])]
  200. result = yield [("RD", [a, b_value])]
  201. if result is None:
  202. raise Exception("List read out of bounds: %s" % b_value)
  203. raise PrimitiveFinished(result)
  204. def list_len(a, **remainder):
  205. outgoings = yield [("RO", [a])]
  206. result = yield [("CNV", [len(outgoings)])]
  207. raise PrimitiveFinished(result)
  208. def dict_add(a, b, c, **remainder):
  209. new_edge = yield [("CE", [a, c])]
  210. yield [("CE", [new_edge, b])]
  211. raise PrimitiveFinished(a)
  212. def dict_delete(a, b, **remainder):
  213. edge = yield [("RDNE", [a, b])]
  214. if edge is None:
  215. # This exact node isn't in this dictionary, so delete everything matching the value instead
  216. b_value = yield [("RV", [b])]
  217. edge = yield [("RDE", [a, b_value])]
  218. yield [("DE", [edge])]
  219. print("DELETE " + str(edge))
  220. raise PrimitiveFinished(a)
  221. def dict_read(a, b, **remainder):
  222. b_value = yield [("RV", [b])]
  223. result = yield [("RD", [a, b_value])]
  224. raise PrimitiveFinished(result)
  225. def dict_read_edge(a, b, **remainder):
  226. b_value = yield [("RV", [b])]
  227. result = yield [("RDE", [a, b_value])]
  228. raise PrimitiveFinished(result)
  229. def dict_read_node(a, b, **remainder):
  230. result = yield [("RDN", [a, b])]
  231. raise PrimitiveFinished(result)
  232. def dict_in(a, b, **remainder):
  233. b_value = yield [("RV", [b])]
  234. value = yield [("RD", [a, b_value])]
  235. is_in = value is not None
  236. result = yield [("CNV", [is_in])]
  237. raise PrimitiveFinished(result)
  238. def dict_in_node(a, b, **remainder):
  239. value = yield [("RDN", [a, b])]
  240. result = yield [("CNV", [value is not None])]
  241. raise PrimitiveFinished(result)
  242. def dict_len(a, **remainder):
  243. outgoings = yield [("RO", [a])]
  244. result = yield [("CNV", [len(outgoings)])]
  245. raise PrimitiveFinished(result)
  246. def dict_keys(a, **remainder):
  247. keys, result = yield [("RDK", [a]), ("CN", [])]
  248. yield [("CE", [result, v]) for v in keys]
  249. raise PrimitiveFinished(result)
  250. def dict_reverse(a, b, **remainder):
  251. keys = yield [("RDK", [a])]
  252. keys = list(keys)
  253. values = yield [("RDN", [a, i]) for i in keys]
  254. for i, v in enumerate(values):
  255. if v == b:
  256. raise PrimitiveFinished(keys[i])
  257. result = yield [("CNV", ["(unknown: %s)" % b])]
  258. raise PrimitiveFinished(result)
  259. def is_physical_int(a, **remainder):
  260. print("REQUEST PHYSICAL INT")
  261. t = yield [("RV", [a])]
  262. print(a)
  263. print(t)
  264. result = yield [("CNV", [isinstance(t, int) or isinstance(t, long)])]
  265. print(type(t))
  266. raise PrimitiveFinished(result)
  267. def is_physical_string(a, **remainder):
  268. t = yield [("RV", [a])]
  269. result = yield [("CNV", [isinstance(t, str) or isinstance(t, unicode)])]
  270. raise PrimitiveFinished(result)
  271. def is_physical_float(a, **remainder):
  272. t = yield [("RV", [a])]
  273. result = yield [("CNV", [isinstance(t, float)])]
  274. raise PrimitiveFinished(result)
  275. def is_physical_boolean(a, **remainder):
  276. t = yield [("RV", [a])]
  277. result = yield [("CNV", [isinstance(t, bool)])]
  278. raise PrimitiveFinished(result)
  279. def is_physical_action(a, **remainder):
  280. t = yield [("RV", [a])]
  281. result = yield [("CNV", [isinstance(t, dict) and t["value"] in ["if", "while", "assign", "call", "break", "continue", "return", "resolve", "access", "constant", "global", "declare"]])]
  282. raise PrimitiveFinished(result)
  283. def create_node(**remainder):
  284. result = yield [("CN", [])]
  285. raise PrimitiveFinished(result)
  286. def create_edge(a, b, **remainder):
  287. result = yield [("CE", [a, b])]
  288. raise PrimitiveFinished(result)
  289. def create_value(a, **remainder):
  290. a_value = yield [("RV", [a])]
  291. result = yield [("CNV", [a_value])]
  292. raise PrimitiveFinished(result)
  293. def read_nr_out(a, **remainder):
  294. outgoing = yield [("RO", [a])]
  295. result = yield [("CNV", [len(outgoing)])]
  296. raise PrimitiveFinished(result)
  297. def read_out(a, b, **remainder):
  298. outgoing, b_value = yield [("RO", [a]), ("RV", [b])]
  299. raise PrimitiveFinished(sorted(outgoing)[b_value])
  300. def read_nr_in(a, **remainder):
  301. incoming = yield [("RI", [a])]
  302. result = yield [("CNV", [len(incoming)])]
  303. raise PrimitiveFinished(result)
  304. def read_in(a, b, **remainder):
  305. incoming, b_value = yield [("RI", [a]), ("RV", [b])]
  306. raise PrimitiveFinished(sorted(incoming)[b_value])
  307. def read_edge_src(a, **remainder):
  308. result = yield [("RE", [a])]
  309. raise PrimitiveFinished(result[0])
  310. def read_edge_dst(a, **remainder):
  311. result = yield [("RE", [a])]
  312. raise PrimitiveFinished(result[1])
  313. def delete_element(a, **remainder):
  314. edge = yield [("RE", [a])]
  315. if edge[0] is None:
  316. # Not an edge:
  317. yield [("DN", [a])]
  318. print("DELETE ELEMENT NODE " + str(a))
  319. result = yield [("CNV", [False])]
  320. raise PrimitiveFinished(result)
  321. else:
  322. yield [("DE", [a])]
  323. print("DELETE ELEMENT EDGE " + str(a))
  324. result = yield [("CNV", [True])]
  325. raise PrimitiveFinished(result)
  326. def read_root(root, **remainder):
  327. raise PrimitiveFinished(root)
  328. def set_add(a, b, **remainder):
  329. yield [("CE", [a, b])]
  330. raise PrimitiveFinished(a)
  331. def set_pop(a, **remainder):
  332. outgoing = yield [("RO", [a])]
  333. v, _ = yield [("RE", [outgoing[0]]), ("DE", [outgoing[0]])]
  334. raise PrimitiveFinished(v[1])
  335. def set_remove(a, b, **remainder):
  336. outgoing, b_value = yield [("RO", [a]), ("RV", [b])]
  337. elements = yield [("RE", [i]) for i in outgoing]
  338. elements = [elements] if not isinstance(elements[0], list) else elements
  339. values = yield [("RV", [i[1]]) for i in elements]
  340. values = [values] if not isinstance(values, list) else values
  341. yield [("DE", [identifier]) for identifier, edge in zip(outgoing, values) if edge == b_value]
  342. raise PrimitiveFinished(a)
  343. def set_remove_node(a, b, **remainder):
  344. outgoing = yield [("RO", [a])]
  345. elements = yield [("RE", [i]) for i in outgoing]
  346. elements = [elements] if not isinstance(elements[0], list) else elements
  347. yield [("DE", [identifier]) for identifier, edge in zip(outgoing, elements) if edge[1] == b]
  348. raise PrimitiveFinished(a)
  349. def set_in(a, b, **remainder):
  350. outgoing, b_value = yield [("RO", [a]), ("RV", [b])]
  351. if outgoing:
  352. elements = yield [("RE", [i]) for i in outgoing]
  353. elements = [elements] if not isinstance(elements[0], list) else elements
  354. values = yield [("RV", [i[1]]) for i in elements]
  355. values = [values] if not isinstance(values, list) else values
  356. if b_value in [v for v in values]:
  357. result = yield [("CNV", [True])]
  358. else:
  359. result = yield [("CNV", [False])]
  360. else:
  361. result = yield [("CNV", [False])]
  362. raise PrimitiveFinished(result)
  363. def set_in_node(a, b, **remainder):
  364. outgoing = yield [("RO", [a])]
  365. if outgoing:
  366. elements = yield [("RE", [i]) for i in outgoing]
  367. elements = [elements] if not isinstance(elements[0], list) else elements
  368. if b in [v[1] for v in elements]:
  369. result = yield [("CNV", [True])]
  370. else:
  371. result = yield [("CNV", [False])]
  372. else:
  373. result = yield [("CNV", [False])]
  374. raise PrimitiveFinished(result)
  375. def is_edge(a, **remainder):
  376. edge = yield [("RE", [a])]
  377. result = yield [("CNV", [edge[0] is not None])]
  378. raise PrimitiveFinished(result)
  379. #TODO deprecate
  380. def deserialize(a, root, **remainder):
  381. print("DESERIALIZE")
  382. value = yield [("RV", [a])]
  383. id_mappings = {}
  384. complex_primitives = frozenset(["if", "while", "assign", "call", "break", "continue", "return","resolve","access", "constant", "input", "output", "declare", "global"])
  385. for l in value.split("\n"):
  386. try:
  387. graph_type, constructor = l.split(None, 1)
  388. except:
  389. continue
  390. if graph_type == "N":
  391. # Node
  392. id_mappings[constructor] = yield [("CN", [])]
  393. elif graph_type == "V":
  394. # Node with Value
  395. name, temp = constructor.split("(", 1)
  396. string_value = temp[:-1]
  397. if string_value in complex_primitives:
  398. value = {"value": string_value}
  399. else:
  400. #TODO this is very dangerous!
  401. value = eval(string_value)
  402. id_mappings[name] = yield [("CNV", [value])]
  403. elif graph_type == "E":
  404. # Edge
  405. name, temp = constructor.split("(", 1)
  406. source, target = temp[:-1].split(",", 1)
  407. if target[0] == "?" and target not in id_mappings:
  408. hierarchy = target[1:].split("/")
  409. current = yield [("RD", [root, "__hierarchy"])]
  410. for i in hierarchy:
  411. current = yield [("RD", [current, i])]
  412. id_mappings[target] = current
  413. try:
  414. source = int(source)
  415. except:
  416. source = id_mappings[source]
  417. try:
  418. target = int(target)
  419. except:
  420. target = id_mappings[target]
  421. # Both nodes will normally be already present in the matching dictionary, so can just pass them along
  422. id_mappings[name] = yield [("CE", [source, target])]
  423. elif graph_type == "D":
  424. source, value, target = constructor.split(",",3)
  425. if value in complex_primitives:
  426. value = {"value": value}
  427. else:
  428. #TODO this is very dangerous!
  429. value = eval(value)
  430. if target[0] == "?" and target not in id_mappings:
  431. hierarchy = target[1:].split("/")
  432. current = yield [("RD", [root, "__hierarchy"])]
  433. for i in hierarchy:
  434. current = yield [("RD", [current, i])]
  435. id_mappings[target] = current
  436. try:
  437. source = int(source)
  438. except:
  439. source = id_mappings[source]
  440. try:
  441. target = int(target)
  442. except:
  443. target = id_mappings[target]
  444. yield [("CD", [source, value, target])]
  445. else:
  446. print("Unknown graph type: " + str(graph_type))
  447. raise PrimitiveFinished(id_mappings["auto_initial_IP"])
  448. def log(a, **remainder):
  449. a_value = yield [("RV", [a])]
  450. print("== LOG == " + str(a_value))
  451. raise PrimitiveFinished(a)