bootstrap.py 14 KB

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  1. ### Configuration for creating the bootstrap model using conformance_bottom.
  2. import glob
  3. import hashlib
  4. import tempfile
  5. import gzip
  6. def bootstrap():
  7. root = ["__hierarchy"]
  8. task_manager = "task_manager"
  9. initial_code_manager = "bootstrap/initial_code_manager.alc"
  10. initial_code_task = "bootstrap/initial_code_task.alc"
  11. task_data = [ "input",
  12. "output",
  13. "globals",
  14. "frame",
  15. ]
  16. task_frame = [ "evalstack",
  17. "symbols",
  18. "returnvalue",
  19. ]
  20. primitives = { "integer_addition": ["Integer", "Integer", "Integer"],
  21. "integer_subtraction": ["Integer", "Integer", "Integer"],
  22. "integer_multiplication": ["Integer", "Integer", "Integer"],
  23. "integer_division": ["Integer", "Integer", "Integer"],
  24. "integer_gt": ["Boolean", "Integer", "Integer"],
  25. "integer_lt": ["Boolean", "Integer", "Integer"],
  26. "integer_neg": ["Integer", "Integer"],
  27. "float_addition": ["Float", "Float", "Float"],
  28. "float_subtraction": ["Float", "Float", "Float"],
  29. "float_multiplication": ["Float", "Float", "Float"],
  30. "float_division": ["Float", "Float", "Float"],
  31. "float_gt": ["Boolean", "Float", "Float"],
  32. "float_lt": ["Boolean", "Float", "Float"],
  33. "float_neg": ["Float", "Float"],
  34. "bool_and": ["Boolean", "Boolean", "Boolean"],
  35. "bool_or": ["Boolean", "Boolean", "Boolean"],
  36. "bool_not": ["Boolean", "Boolean"],
  37. "string_join": ["String", "String", "String"],
  38. "string_get": ["String", "String", "Integer"],
  39. "string_len": ["Integer", "String"],
  40. "string_split": ["Element", "String", "String"],
  41. "value_eq": ["Boolean", "Element", "Element"],
  42. "value_neq": ["Boolean", "Element", "Element"],
  43. "cast_i2f": ["Float", "Integer"],
  44. "cast_i2s": ["String", "Integer"],
  45. "cast_i2b": ["Boolean", "Integer"],
  46. "cast_f2i": ["Integer", "Float"],
  47. "cast_f2b": ["Boolean", "Float"],
  48. "cast_f2s": ["String", "Float"],
  49. "cast_s2i": ["Integer", "String"],
  50. "cast_s2f": ["Float", "String"],
  51. "cast_s2b": ["Boolean", "String"],
  52. "cast_b2i": ["Integer", "Boolean"],
  53. "cast_b2f": ["Float", "Boolean"],
  54. "cast_b2s": ["String", "Boolean"],
  55. "cast_e2s": ["String", "Element"],
  56. "cast_a2s": ["String", "Action"],
  57. "cast_v2s": ["String", "Element"],
  58. "cast_id2s": ["String", "Element"],
  59. "list_read": ["Element", "Element", "Integer"],
  60. "list_append": ["Element", "Element", "Element"],
  61. "list_insert": ["Element", "Element", "Integer", "Element"],
  62. "list_delete": ["Element", "Element", "Integer"],
  63. "list_len": ["Integer", "Element"],
  64. "dict_add": ["Element", "Element", "Element", "Element"],
  65. "dict_add_fast": ["Element", "Element", "Element", "Element"],
  66. "dict_delete": ["Element", "Element", "Element"],
  67. "dict_delete_node": ["Element", "Element", "Element"],
  68. "dict_read": ["Element", "Element", "Element"],
  69. "dict_read_edge": ["Element", "Element", "Element"],
  70. "dict_read_node": ["Element", "Element", "Element"],
  71. "dict_len": ["Integer", "Element"],
  72. "dict_in": ["Boolean", "Element", "Element"],
  73. "dict_in_node": ["Boolean", "Element", "Element"],
  74. "dict_keys": ["Element", "Element"],
  75. "set_add": ["Element", "Element", "Element"],
  76. "set_pop": ["Element", "Element"],
  77. "set_remove": ["Element", "Element", "Element"],
  78. "set_remove_node": ["Element", "Element", "Element"],
  79. "set_in": ["Boolean", "Element", "Element"],
  80. "set_in_node": ["Boolean", "Element", "Element"],
  81. "is_physical_int": ["Boolean", "Element"],
  82. "is_physical_boolean": ["Boolean", "Element"],
  83. "is_physical_string": ["Boolean", "Element"],
  84. "is_physical_action": ["Boolean", "Element"],
  85. "is_physical_float": ["Boolean", "Element"],
  86. "create_node": ["Element"],
  87. "create_edge": ["Element", "Element", "Element"],
  88. "create_value": ["Element", "Element"],
  89. "is_edge": ["Boolean", "Element"],
  90. "read_nr_out": ["Integer", "Element"],
  91. "read_out": ["Element", "Element", "Integer"],
  92. "read_nr_in": ["Integer", "Element"],
  93. "read_in": ["Element", "Element", "Integer"],
  94. "read_edge_src": ["Element", "Element"],
  95. "read_edge_dst": ["Element", "Element"],
  96. "delete_element": ["Element", "Element"],
  97. "element_eq": ["Boolean", "Element", "Element"],
  98. "element_neq": ["Boolean", "Element", "Element"],
  99. "read_root": ["Element"],
  100. "read_taskroot": ["Element"],
  101. "deserialize": ["Element", "String"],
  102. "log": ["String", "String"],
  103. "time": ["Float"],
  104. "hash": ["String", "String"],
  105. }
  106. jit_primitives = {
  107. "get_jit_enabled": ["Boolean"],
  108. "set_jit_enabled": ["Void", "Boolean"]
  109. }
  110. ### Actual script to generate the file
  111. import os
  112. import sys
  113. class Writer(object):
  114. def __init__(self, file_a, file_b):
  115. self.file_a = file_a
  116. self.file_b = file_b
  117. def write(self, text, both=True):
  118. self.file_a.write(text)
  119. if both:
  120. self.file_b.write(text)
  121. try:
  122. with gzip.GzipFile("bootstrap/bootstrap.m.gz", "wb", mtime=0) as fa:
  123. with gzip.GzipFile("bootstrap/minimal.m.gz", "wb", mtime=0) as fb:
  124. f = Writer(fa, fb)
  125. # Create the root first
  126. f.write("Node root()\n")
  127. # Create all children of the root
  128. for node in root:
  129. f.write("Node %s()\n" % node)
  130. f.write("Dict (root, \"%s\", %s)\n" % (node, node))
  131. def declare_primitive_class(primitive_class_name, primitive_decls):
  132. f.write("Node %s()\n" % primitive_class_name)
  133. f.write("Dict (__hierarchy, \"%s\", %s)\n" % (primitive_class_name, primitive_class_name))
  134. # Define all primitive functions
  135. for function, parameters in primitive_decls.iteritems():
  136. f.write("Node _func_signature_%s()\n" % function)
  137. f.write("Node _func_params_%s()\n" % function)
  138. f.write("Node _func_body_%s()\n" % function)
  139. f.write('Dict (%s, "%s", _func_signature_%s)\n' % (primitive_class_name, function, function))
  140. f.write('Dict (_func_signature_%s, "body", _func_body_%s)\n' % (function, function))
  141. f.write('Dict (_func_signature_%s, "params", _func_params_%s)\n' % (function, function))
  142. parameter_names = "abcdefghijklmnopqrstuvwxyz"
  143. for number, param in enumerate(parameters[1:]):
  144. param_encoding = "%s_%s" % (function, parameter_names[number])
  145. f.write("Node _func_params_%s()\n" % (param_encoding))
  146. f.write('Node _name_%s("%s")\n' % (param_encoding, parameter_names[number]))
  147. f.write("Edge _param_link_%s(_func_params_%s, _func_params_%s)\n" % (param_encoding, function, param_encoding))
  148. f.write("Edge _param_link_str_%s(_param_link_%s, _name_%s)\n" % (param_encoding, param_encoding, param_encoding))
  149. f.write('Node _name_str_%s("name")\n' % param_encoding)
  150. f.write("Edge _param_name_%s(_func_params_%s, _name_%s)\n" % (param_encoding, param_encoding, param_encoding))
  151. f.write("Edge _param_name_str_%s(_param_name_%s, _name_str_%s)\n" % (param_encoding, param_encoding, param_encoding))
  152. declare_primitive_class('primitives', primitives)
  153. declare_primitive_class('jit', jit_primitives)
  154. # Create the initial task
  155. f.write("Node task_root()\n")
  156. for data in task_data:
  157. f.write("Node task_%s()\n" % data)
  158. f.write('Dict (task_root, "%s", task_%s)\n' % (data, data))
  159. for data in task_frame:
  160. f.write("Node task_%s()\n" % data)
  161. f.write('Dict (task_frame, "%s", task_%s)\n' % (data, data))
  162. # Add last_input and last_output links
  163. for data in ["input", "output"]:
  164. f.write('Dict (task_root, "last_%s", task_%s)\n' % (data, data))
  165. # Bind task to the root
  166. f.write('Dict (root, "%s", task_root)\n' % (task_manager))
  167. def compile_code_AL(filename, target, prepend="", main=False, symbols=None):
  168. import sys
  169. sys.path.append("interface/HUTN/")
  170. from hutn_compiler.compiler import main as compile_code
  171. code = compile_code(filename, "interface/HUTN/grammars/actionlanguage.g", "BS", ["--debug", "--prepend:%s" % prepend, "--main" if main else "--not-main"], symbols=symbols)
  172. return code.replace("auto_initial_IP", target)
  173. # Create all library code
  174. # But first create the structure to hold compiled data
  175. f.write("Node __objects()\n", both=False)
  176. f.write('Dict (__hierarchy, "objects", __objects)\n', both=False)
  177. def compile_code_MO(filename, model_name):
  178. import sys
  179. sys.path.append("interface/HUTN/")
  180. from hutn_compiler.compiler import main as compile_code
  181. model_code = compile_code(filename, "interface/HUTN/grammars/modelling.g", "MB", ["--modelname:%s" % model_name])
  182. return model_code + "\n"
  183. # Compile all model definitions to ALC directly
  184. total_alc = ""
  185. binding_alc = 'Void function initialize_MMs():\n\tinitialize_SCD("models/SimpleClassDiagrams")\n'
  186. bootstrap_models = glob.glob("bootstrap/*.mvc")
  187. for bootstrap_model in bootstrap_models:
  188. # Compile the subfile
  189. bootstrap_model = bootstrap_model.replace("\\", "/")
  190. model_name = bootstrap_model.rsplit(".mvc", 1)[0].rsplit("/", 1)[1]
  191. print("[MVC] %s" % model_name)
  192. alc = compile_code_MO(bootstrap_model, model_name)
  193. total_alc += alc
  194. binding_alc += "\tinitialize_%s()\n" % model_name
  195. # Write out the ALC to a new .metamodels.alc
  196. binding_alc += "\treturn!\n"
  197. new_metamodels_alc = open("bootstrap/metamodels.alt", 'r').read() + total_alc + binding_alc
  198. # Now overwrite the .metamodels.alc file
  199. with open("bootstrap/.metamodels.alc", "w") as mm:
  200. mm.write(new_metamodels_alc)
  201. # Compile all files and add to structure manually
  202. bootstrap_files = glob.glob("bootstrap/*.alc") + glob.glob("bootstrap/.*.alc")
  203. for bootstrap_file in bootstrap_files:
  204. # Compile the subfile
  205. bootstrap_file = bootstrap_file.replace("\\", "/")
  206. print("[ALC] %s" % bootstrap_file)
  207. symbols = {}
  208. f.write(compile_code_AL(bootstrap_file, "initial_IP", prepend=bootstrap_file, symbols=symbols, main = bootstrap_file in [initial_code_manager, initial_code_task]), both=False)
  209. # Now link the code with the compilation manager structure
  210. f.write("Node elem()\n", both=False)
  211. f.write('Dict (__objects, "%s", elem)\n' % bootstrap_file, both=False)
  212. f.write('Dict (elem, "initializers", %s_initial_IP)\n' % bootstrap_file, both=False)
  213. md5 = hashlib.md5()
  214. md5.update(open(bootstrap_file, 'r').read())
  215. f.write('Node hash_value("%s")\n' % md5.hexdigest(), both=False)
  216. f.write('Dict (elem, "hash_md5", hash_value)\n', both=False)
  217. f.write('Node __symbols()\n', both=False)
  218. f.write('Dict (elem, "symbols", __symbols)\n', both=False)
  219. for k, v in symbols.items():
  220. f.write('Node v(%s)\n' % v, both=False)
  221. f.write('Dict (__symbols, "%s", v)\n' % (k), both=False)
  222. # Create code for initial task
  223. print("[BOOT] task_manager")
  224. f.write('Dict (task_frame, "IP", %s_initial_IP)\n' % (initial_code_manager), both=False)
  225. f.write('Node __phase("init")\n', both=False)
  226. f.write('Dict (task_frame, "phase", __phase)\n', both=False)
  227. # Create code for new tasks to start at
  228. print("[BOOT] new_task")
  229. f.write('Dict (__hierarchy, "__IP", %s_initial_IP)\n' % initial_code_task, both=False)
  230. except:
  231. os.remove("bootstrap/bootstrap.m.gz")
  232. os.remove("bootstrap/minimal.m.gz")
  233. raise