1# -*- coding: utf-8 -*- 2# 3# Check (context-free) QAPI schema expression structure 4# 5# Copyright IBM, Corp. 2011 6# Copyright (c) 2013-2019 Red Hat Inc. 7# 8# Authors: 9# Anthony Liguori <aliguori@us.ibm.com> 10# Markus Armbruster <armbru@redhat.com> 11# Eric Blake <eblake@redhat.com> 12# Marc-André Lureau <marcandre.lureau@redhat.com> 13# 14# This work is licensed under the terms of the GNU GPL, version 2. 15# See the COPYING file in the top-level directory. 16 17import re 18from collections import OrderedDict 19from qapi.common import c_name 20from qapi.error import QAPISemError 21 22 23# Names must be letters, numbers, -, and _. They must start with letter, 24# except for downstream extensions which must start with __RFQDN_. 25# Dots are only valid in the downstream extension prefix. 26valid_name = re.compile(r'^(__[a-zA-Z0-9.-]+_)?' 27 '[a-zA-Z][a-zA-Z0-9_-]*$') 28 29 30def check_name_is_str(name, info, source): 31 if not isinstance(name, str): 32 raise QAPISemError(info, "%s requires a string name" % source) 33 34 35def check_name_str(name, info, source, 36 allow_optional=False, enum_member=False, 37 permit_upper=False): 38 global valid_name 39 membername = name 40 41 if allow_optional and name.startswith('*'): 42 membername = name[1:] 43 # Enum members can start with a digit, because the generated C 44 # code always prefixes it with the enum name 45 if enum_member and membername[0].isdigit(): 46 membername = 'D' + membername 47 # Reserve the entire 'q_' namespace for c_name(), and for 'q_empty' 48 # and 'q_obj_*' implicit type names. 49 if not valid_name.match(membername) or \ 50 c_name(membername, False).startswith('q_'): 51 raise QAPISemError(info, "%s has an invalid name" % source) 52 if not permit_upper and name.lower() != name: 53 raise QAPISemError( 54 info, "%s uses uppercase in name" % source) 55 assert not membername.startswith('*') 56 57 58def check_defn_name_str(name, info, meta): 59 check_name_str(name, info, meta, permit_upper=True) 60 if name.endswith('Kind') or name.endswith('List'): 61 raise QAPISemError( 62 info, "%s name should not end in '%s'" % (meta, name[-4:])) 63 64 65def check_keys(value, info, source, required, optional): 66 67 def pprint(elems): 68 return ', '.join("'" + e + "'" for e in sorted(elems)) 69 70 missing = set(required) - set(value) 71 if missing: 72 raise QAPISemError( 73 info, 74 "%s misses key%s %s" 75 % (source, 's' if len(missing) > 1 else '', 76 pprint(missing))) 77 allowed = set(required + optional) 78 unknown = set(value) - allowed 79 if unknown: 80 raise QAPISemError( 81 info, 82 "%s has unknown key%s %s\nValid keys are %s." 83 % (source, 's' if len(unknown) > 1 else '', 84 pprint(unknown), pprint(allowed))) 85 86 87def check_flags(expr, info): 88 for key in ['gen', 'success-response']: 89 if key in expr and expr[key] is not False: 90 raise QAPISemError( 91 info, "flag '%s' may only use false value" % key) 92 for key in ['boxed', 'allow-oob', 'allow-preconfig']: 93 if key in expr and expr[key] is not True: 94 raise QAPISemError( 95 info, "flag '%s' may only use true value" % key) 96 97 98def normalize_if(expr): 99 ifcond = expr.get('if') 100 if isinstance(ifcond, str): 101 expr['if'] = [ifcond] 102 103 104def check_if(expr, info, source): 105 106 def check_if_str(ifcond, info): 107 if not isinstance(ifcond, str): 108 raise QAPISemError( 109 info, 110 "'if' condition of %s must be a string or a list of strings" 111 % source) 112 if ifcond.strip() == '': 113 raise QAPISemError( 114 info, 115 "'if' condition '%s' of %s makes no sense" 116 % (ifcond, source)) 117 118 ifcond = expr.get('if') 119 if ifcond is None: 120 return 121 if isinstance(ifcond, list): 122 if ifcond == []: 123 raise QAPISemError( 124 info, "'if' condition [] of %s is useless" % source) 125 for elt in ifcond: 126 check_if_str(elt, info) 127 else: 128 check_if_str(ifcond, info) 129 130 131def normalize_members(members): 132 if isinstance(members, OrderedDict): 133 for key, arg in members.items(): 134 if isinstance(arg, dict): 135 continue 136 members[key] = {'type': arg} 137 138 139def check_type(value, info, source, 140 allow_array=False, allow_dict=False): 141 if value is None: 142 return 143 144 # Array type 145 if isinstance(value, list): 146 if not allow_array: 147 raise QAPISemError(info, "%s cannot be an array" % source) 148 if len(value) != 1 or not isinstance(value[0], str): 149 raise QAPISemError(info, 150 "%s: array type must contain single type name" % 151 source) 152 return 153 154 # Type name 155 if isinstance(value, str): 156 return 157 158 # Anonymous type 159 160 if not allow_dict: 161 raise QAPISemError(info, "%s should be a type name" % source) 162 163 if not isinstance(value, OrderedDict): 164 raise QAPISemError(info, 165 "%s should be an object or type name" % source) 166 167 permit_upper = allow_dict in info.pragma.name_case_whitelist 168 169 # value is a dictionary, check that each member is okay 170 for (key, arg) in value.items(): 171 key_source = "%s member '%s'" % (source, key) 172 check_name_str(key, info, key_source, 173 allow_optional=True, permit_upper=permit_upper) 174 if c_name(key, False) == 'u' or c_name(key, False).startswith('has_'): 175 raise QAPISemError(info, "%s uses reserved name" % key_source) 176 check_keys(arg, info, key_source, ['type'], ['if']) 177 check_if(arg, info, key_source) 178 normalize_if(arg) 179 check_type(arg['type'], info, key_source, allow_array=True) 180 181 182def normalize_features(features): 183 if isinstance(features, list): 184 features[:] = [f if isinstance(f, dict) else {'name': f} 185 for f in features] 186 187 188def normalize_enum(expr): 189 if isinstance(expr['data'], list): 190 expr['data'] = [m if isinstance(m, dict) else {'name': m} 191 for m in expr['data']] 192 193 194def check_enum(expr, info): 195 name = expr['enum'] 196 members = expr['data'] 197 prefix = expr.get('prefix') 198 199 if not isinstance(members, list): 200 raise QAPISemError(info, "'data' must be an array") 201 if prefix is not None and not isinstance(prefix, str): 202 raise QAPISemError(info, "'prefix' must be a string") 203 204 permit_upper = name in info.pragma.name_case_whitelist 205 206 for member in members: 207 source = "'data' member" 208 check_keys(member, info, source, ['name'], ['if']) 209 check_name_is_str(member['name'], info, source) 210 source = "%s '%s'" % (source, member['name']) 211 check_name_str(member['name'], info, source, 212 enum_member=True, permit_upper=permit_upper) 213 check_if(member, info, source) 214 normalize_if(member) 215 216 217def check_struct(expr, info): 218 name = expr['struct'] 219 members = expr['data'] 220 features = expr.get('features') 221 222 check_type(members, info, "'data'", allow_dict=name) 223 check_type(expr.get('base'), info, "'base'") 224 225 if features: 226 if not isinstance(features, list): 227 raise QAPISemError(info, "'features' must be an array") 228 for f in features: 229 source = "'features' member" 230 assert isinstance(f, dict) 231 check_keys(f, info, source, ['name'], ['if']) 232 check_name_is_str(f['name'], info, source) 233 source = "%s '%s'" % (source, f['name']) 234 check_name_str(f['name'], info, source) 235 check_if(f, info, source) 236 normalize_if(f) 237 238 239def check_union(expr, info): 240 name = expr['union'] 241 base = expr.get('base') 242 discriminator = expr.get('discriminator') 243 members = expr['data'] 244 245 if discriminator is None: # simple union 246 if base is not None: 247 raise QAPISemError(info, "'base' requires 'discriminator'") 248 else: # flat union 249 check_type(base, info, "'base'", allow_dict=name) 250 if not base: 251 raise QAPISemError(info, "'discriminator' requires 'base'") 252 check_name_is_str(discriminator, info, "'discriminator'") 253 254 for (key, value) in members.items(): 255 source = "'data' member '%s'" % key 256 check_name_str(key, info, source) 257 check_keys(value, info, source, ['type'], ['if']) 258 check_if(value, info, source) 259 normalize_if(value) 260 check_type(value['type'], info, source, allow_array=not base) 261 262 263def check_alternate(expr, info): 264 members = expr['data'] 265 266 if len(members) == 0: 267 raise QAPISemError(info, "'data' must not be empty") 268 for (key, value) in members.items(): 269 source = "'data' member '%s'" % key 270 check_name_str(key, info, source) 271 check_keys(value, info, source, ['type'], ['if']) 272 check_if(value, info, source) 273 normalize_if(value) 274 check_type(value['type'], info, source) 275 276 277def check_command(expr, info): 278 args = expr.get('data') 279 rets = expr.get('returns') 280 boxed = expr.get('boxed', False) 281 282 if boxed and args is None: 283 raise QAPISemError(info, "'boxed': true requires 'data'") 284 check_type(args, info, "'data'", allow_dict=not boxed) 285 check_type(rets, info, "'returns'", allow_array=True) 286 287 288def check_event(expr, info): 289 args = expr.get('data') 290 boxed = expr.get('boxed', False) 291 292 if boxed and args is None: 293 raise QAPISemError(info, "'boxed': true requires 'data'") 294 check_type(args, info, "'data'", allow_dict=not boxed) 295 296 297def check_exprs(exprs): 298 for expr_elem in exprs: 299 expr = expr_elem['expr'] 300 info = expr_elem['info'] 301 doc = expr_elem.get('doc') 302 303 if 'include' in expr: 304 continue 305 306 if 'enum' in expr: 307 meta = 'enum' 308 elif 'union' in expr: 309 meta = 'union' 310 elif 'alternate' in expr: 311 meta = 'alternate' 312 elif 'struct' in expr: 313 meta = 'struct' 314 elif 'command' in expr: 315 meta = 'command' 316 elif 'event' in expr: 317 meta = 'event' 318 else: 319 raise QAPISemError(info, "expression is missing metatype") 320 321 name = expr[meta] 322 check_name_is_str(name, info, "'%s'" % meta) 323 info.set_defn(meta, name) 324 check_defn_name_str(name, info, meta) 325 326 if doc: 327 if doc.symbol != name: 328 raise QAPISemError( 329 info, "documentation comment is for '%s'" % doc.symbol) 330 doc.check_expr(expr) 331 elif info.pragma.doc_required: 332 raise QAPISemError(info, 333 "documentation comment required") 334 335 if meta == 'enum': 336 check_keys(expr, info, meta, 337 ['enum', 'data'], ['if', 'prefix']) 338 normalize_enum(expr) 339 check_enum(expr, info) 340 elif meta == 'union': 341 check_keys(expr, info, meta, 342 ['union', 'data'], 343 ['base', 'discriminator', 'if']) 344 normalize_members(expr.get('base')) 345 normalize_members(expr['data']) 346 check_union(expr, info) 347 elif meta == 'alternate': 348 check_keys(expr, info, meta, 349 ['alternate', 'data'], ['if']) 350 normalize_members(expr['data']) 351 check_alternate(expr, info) 352 elif meta == 'struct': 353 check_keys(expr, info, meta, 354 ['struct', 'data'], ['base', 'if', 'features']) 355 normalize_members(expr['data']) 356 normalize_features(expr.get('features')) 357 check_struct(expr, info) 358 elif meta == 'command': 359 check_keys(expr, info, meta, 360 ['command'], 361 ['data', 'returns', 'boxed', 'if', 362 'gen', 'success-response', 'allow-oob', 363 'allow-preconfig']) 364 normalize_members(expr.get('data')) 365 check_command(expr, info) 366 elif meta == 'event': 367 check_keys(expr, info, meta, 368 ['event'], ['data', 'boxed', 'if']) 369 normalize_members(expr.get('data')) 370 check_event(expr, info) 371 else: 372 assert False, 'unexpected meta type' 373 374 normalize_if(expr) 375 check_if(expr, info, meta) 376 check_flags(expr, info) 377 378 return exprs 379