1
2 #include <cassert>
3 #include <stdlib.h>
4 #include <stdio.h>
5 #include <stdarg.h>
6 #include <time.h>
7 #include <string>
8 #include <algorithm>
9 #include <sys/types.h>
10 #include <sys/stat.h>
11 #include <errno.h>
12 #include <limits.h>
13
14 // Careful: must include globals first for extern definitions
15 #include "thrift/globals.h"
16
17 #include "thrift/parse/t_program.h"
18 #include "thrift/parse/t_scope.h"
19 #include "thrift/parse/t_const.h"
20 #include "thrift/parse/t_field.h"
21
22 #include "thrift/version.h"
23
24 #include "thrift/audit/t_audit.h"
25
26 extern int g_warn;
27 extern std::string g_curpath;
28 extern bool g_return_failure;
29
thrift_audit_warning(int level,const char * fmt,...)30 void thrift_audit_warning(int level, const char* fmt, ...) {
31 if (g_warn < level) {
32 return;
33 }
34 va_list args;
35 printf("[Thrift Audit Warning:%s] ", g_curpath.c_str());
36 va_start(args, fmt);
37 vprintf(fmt, args);
38 va_end(args);
39 printf("\n");
40 }
41
thrift_audit_failure(const char * fmt,...)42 void thrift_audit_failure(const char* fmt, ...) {
43 va_list args;
44 fprintf(stderr, "[Thrift Audit Failure:%s] ", g_curpath.c_str());
45 va_start(args, fmt);
46 vfprintf(stderr, fmt, args);
47 va_end(args);
48 fprintf(stderr, "\n");
49 g_return_failure = true;
50 }
51
compare_namespace(t_program * newProgram,t_program * oldProgram)52 void compare_namespace(t_program* newProgram, t_program* oldProgram)
53 {
54 const std::map<std::string, std::string>& newNamespaceMap = newProgram->get_all_namespaces();
55 const std::map<std::string, std::string>& oldNamespaceMap = oldProgram->get_all_namespaces();
56
57 for(const auto & oldNamespaceMapIt : oldNamespaceMap)
58 {
59 auto newNamespaceMapIt = newNamespaceMap.find(oldNamespaceMapIt.first);
60 if(newNamespaceMapIt == newNamespaceMap.end())
61 {
62 thrift_audit_warning(1, "Language %s not found in new thrift file\n", (oldNamespaceMapIt.first).c_str());
63 }
64 else if((newNamespaceMapIt->second) != oldNamespaceMapIt.second)
65 {
66 thrift_audit_warning(1, "Namespace %s changed in new thrift file\n", (oldNamespaceMapIt.second).c_str());
67 }
68 }
69 }
70
compare_enum_values(t_enum * newEnum,t_enum * oldEnum)71 void compare_enum_values(t_enum* newEnum,t_enum* oldEnum)
72 {
73 const std::vector<t_enum_value*>& oldEnumValues = oldEnum->get_constants();
74 for(auto oldEnumValue : oldEnumValues)
75 {
76 int enumValue = oldEnumValue->get_value();
77 t_enum_value* newEnumValue = newEnum->get_constant_by_value(enumValue);
78 if(newEnumValue != nullptr)
79 {
80 std::string enumName = oldEnumValue->get_name();
81 if(enumName != newEnumValue->get_name())
82 {
83 thrift_audit_warning(1, "Name of the value %d changed in enum %s\n", enumValue, oldEnum->get_name().c_str());
84 }
85 }
86 else
87 {
88 thrift_audit_failure("Enum value %d missing in %s\n", enumValue, oldEnum->get_name().c_str());
89 }
90
91 }
92 }
93
compare_enums(const std::vector<t_enum * > & newEnumList,const std::vector<t_enum * > & oldEnumList)94 void compare_enums(const std::vector<t_enum*>& newEnumList, const std::vector<t_enum*>& oldEnumList)
95 {
96 std::map<std::string,t_enum*> newEnumMap;
97 std::vector<t_enum*>::const_iterator newEnumIt;
98 for(newEnumIt = newEnumList.begin(); newEnumIt != newEnumList.end(); newEnumIt++)
99 {
100 newEnumMap[(*newEnumIt)->get_name()] = *newEnumIt;
101 }
102 std::vector<t_enum*>::const_iterator oldEnumIt;
103 for(oldEnumIt = oldEnumList.begin(); oldEnumIt != oldEnumList.end(); oldEnumIt++)
104 {
105 std::map<std::string,t_enum*>::iterator newEnumMapIt;
106 newEnumMapIt = newEnumMap.find((*oldEnumIt)->get_name());
107
108 if(newEnumMapIt == newEnumMap.end())
109 {
110 thrift_audit_warning(1, "Enum %s not found in new thrift file\n",(*oldEnumIt)->get_name().c_str());
111 }
112 else
113 {
114 compare_enum_values(newEnumMapIt->second, *oldEnumIt);
115 }
116 }
117 }
118
119 //This function returns 'true' if the two arguements are of same types.
120 //Returns false if they are of different type
compare_type(t_type * newType,t_type * oldType)121 bool compare_type(t_type* newType, t_type* oldType)
122 {
123 //Comparing names of two types will work when the newType and oldType are basic types or structs or enums.
124 //However, when they are containers, get_name() returns empty for which we have to compare the type of
125 //their elements as well.
126 if((newType->get_name()).empty() && (oldType->get_name()).empty())
127 {
128
129 if(newType->is_list() && oldType->is_list())
130 {
131 t_type* newElementType = ((t_list*)newType)->get_elem_type();
132 t_type* oldElementType = ((t_list*)oldType)->get_elem_type();
133 return compare_type(newElementType, oldElementType);
134 }
135 else if(newType->is_map() && oldType->is_map())
136 {
137 t_type* newKeyType = ((t_map*)newType)->get_key_type();
138 t_type* oldKeyType = ((t_map*)oldType)->get_key_type();
139
140 t_type* newValType = ((t_map*)newType)->get_val_type();
141 t_type* oldValType = ((t_map*)oldType)->get_val_type();
142
143 return (compare_type(newKeyType, oldKeyType) && compare_type(newValType, oldValType));
144 }
145 else if(newType->is_set() && oldType->is_set())
146 {
147 t_type* newElementType = ((t_set*)newType)->get_elem_type();
148 t_type* oldElementType = ((t_set*)oldType)->get_elem_type();
149 return compare_type(newElementType, oldElementType);
150 }
151 else
152 {
153 return false;
154 }
155 }
156 else if(newType->get_name() == oldType->get_name())
157 {
158 return true;
159 }
160 else
161 {
162 return false;
163 }
164 }
165
compare_pair(std::pair<t_const_value *,t_const_value * > newMapPair,std::pair<t_const_value *,t_const_value * > oldMapPair)166 bool compare_pair(std::pair<t_const_value*, t_const_value*> newMapPair, std::pair<t_const_value*, t_const_value*> oldMapPair)
167 {
168 return compare_defaults(newMapPair.first, oldMapPair.first) && compare_defaults(newMapPair.second, oldMapPair.second);
169 }
170
171 // This function returns 'true' if the default values are same. Returns false if they are different.
compare_defaults(t_const_value * newStructDefault,t_const_value * oldStructDefault)172 bool compare_defaults(t_const_value* newStructDefault, t_const_value* oldStructDefault)
173 {
174 if(newStructDefault == nullptr && oldStructDefault == nullptr) return true;
175 else if(newStructDefault == nullptr && oldStructDefault != nullptr) return false;
176 else if (newStructDefault != nullptr && oldStructDefault == nullptr) return false;
177
178 if(newStructDefault->get_type() != oldStructDefault->get_type())
179 {
180 return false;
181 }
182
183 switch(newStructDefault->get_type())
184 {
185 case t_const_value::CV_INTEGER:
186 return (newStructDefault->get_integer() == oldStructDefault->get_integer());
187 case t_const_value::CV_DOUBLE:
188 return (newStructDefault->get_double() == oldStructDefault->get_double());
189 case t_const_value::CV_STRING:
190 return (newStructDefault->get_string() == oldStructDefault->get_string());
191 case t_const_value::CV_LIST:
192 {
193 const std::vector<t_const_value*>& oldDefaultList = oldStructDefault->get_list();
194 const std::vector<t_const_value*>& newDefaultList = newStructDefault->get_list();
195 bool defaultValuesCompare = (oldDefaultList.size() == newDefaultList.size());
196
197 return defaultValuesCompare && std::equal(newDefaultList.begin(), newDefaultList.end(), oldDefaultList.begin(), compare_defaults);
198 }
199 case t_const_value::CV_MAP:
200 {
201 const std::map<t_const_value*, t_const_value*, t_const_value::value_compare> newMap = newStructDefault->get_map();
202 const std::map<t_const_value*, t_const_value*, t_const_value::value_compare> oldMap = oldStructDefault->get_map();
203
204 bool defaultValuesCompare = (oldMap.size() == newMap.size());
205
206 return defaultValuesCompare && std::equal(newMap.begin(), newMap.end(), oldMap.begin(), compare_pair);
207 }
208 case t_const_value::CV_IDENTIFIER:
209 return (newStructDefault->get_identifier() == oldStructDefault->get_identifier());
210 default:
211 return false;
212 }
213
214 }
215
compare_struct_field(t_field * newField,t_field * oldField,std::string oldStructName)216 void compare_struct_field(t_field* newField, t_field* oldField, std::string oldStructName)
217 {
218 t_type* newFieldType = newField->get_type();
219 t_type* oldFieldType = oldField->get_type();
220 if(!compare_type(newFieldType, oldFieldType))
221 {
222 thrift_audit_failure("Struct Field Type Changed for Id = %d in %s \n", newField->get_key(), oldStructName.c_str());
223 }
224
225 // A Struct member can be optional if it is mentioned explicitly, or if it is assigned with default values.
226 bool newStructFieldOptional = (newField->get_req() != t_field::T_REQUIRED);
227 bool oldStructFieldOptional = (oldField->get_req() != t_field::T_REQUIRED);
228
229 if(newStructFieldOptional != oldStructFieldOptional)
230 {
231 thrift_audit_failure("Struct Field Requiredness Changed for Id = %d in %s \n", newField->get_key(), oldStructName.c_str());
232 }
233 if(newStructFieldOptional || oldStructFieldOptional)
234 {
235 if(!compare_defaults(newField->get_value(), oldField->get_value()))
236 {
237 thrift_audit_warning(1, "Default value changed for Id = %d in %s \n", newField->get_key(), oldStructName.c_str());
238 }
239 }
240
241 std::string fieldName = newField->get_name();
242 if(fieldName != oldField->get_name())
243 {
244 thrift_audit_warning(1, "Struct field name changed for Id = %d in %s\n", newField->get_key(), oldStructName.c_str());
245 }
246
247 }
248
compare_single_struct(t_struct * newStruct,t_struct * oldStruct,const std::string & oldStructName=std::string ())249 void compare_single_struct(t_struct* newStruct, t_struct* oldStruct, const std::string& oldStructName = std::string())
250 {
251 std::string structName = oldStructName.empty() ? oldStruct->get_name() : oldStructName;
252 const std::vector<t_field*>& oldStructMembersInIdOrder = oldStruct->get_sorted_members();
253 const std::vector<t_field*>& newStructMembersInIdOrder = newStruct->get_sorted_members();
254 auto oldStructMemberIt = oldStructMembersInIdOrder.begin();
255 auto newStructMemberIt = newStructMembersInIdOrder.begin();
256
257 // Since we have the struct members in their ID order, comparing their IDs can be done by traversing the two member
258 // lists together.
259 while(!(oldStructMemberIt == oldStructMembersInIdOrder.end() && newStructMemberIt == newStructMembersInIdOrder.end()))
260 {
261 if(newStructMemberIt == newStructMembersInIdOrder.end() && oldStructMemberIt != oldStructMembersInIdOrder.end())
262 {
263 // A field ID has been removed from the end.
264 thrift_audit_failure("Struct Field removed for Id = %d in %s \n", (*oldStructMemberIt)->get_key(), structName.c_str());
265 oldStructMemberIt++;
266 }
267 else if(newStructMemberIt != newStructMembersInIdOrder.end() && oldStructMemberIt == oldStructMembersInIdOrder.end())
268 {
269 //New field ID has been added to the end.
270 if((*newStructMemberIt)->get_req() == t_field::T_REQUIRED)
271 {
272 thrift_audit_failure("Required Struct Field Added for Id = %d in %s \n", (*newStructMemberIt)->get_key(), structName.c_str());
273 }
274 newStructMemberIt++;
275 }
276 else if((*newStructMemberIt)->get_key() == (*oldStructMemberIt)->get_key())
277 {
278 //Field ID found in both structs. Compare field types, default values.
279 compare_struct_field(*newStructMemberIt, *oldStructMemberIt, structName);
280
281 newStructMemberIt++;
282 oldStructMemberIt++;
283 }
284 else if((*newStructMemberIt)->get_key() < (*oldStructMemberIt)->get_key())
285 {
286 //New Field Id is inserted in between
287 //Adding fields to struct is fine, but adding them in the middle is suspicious. Error!!
288 thrift_audit_failure("Struct field is added in the middle with Id = %d in %s\n", (*newStructMemberIt)->get_key(), structName.c_str());
289 newStructMemberIt++;
290 }
291 else if((*newStructMemberIt)->get_key() > (*oldStructMemberIt)->get_key())
292 {
293 //A field is deleted in newStruct.
294 thrift_audit_failure("Struct Field removed for Id = %d in %s \n", (*oldStructMemberIt)->get_key(), structName.c_str());
295 oldStructMemberIt++;
296 }
297
298 }
299 }
300
compare_structs(const std::vector<t_struct * > & newStructList,const std::vector<t_struct * > & oldStructList)301 void compare_structs(const std::vector<t_struct*>& newStructList, const std::vector<t_struct*>& oldStructList)
302 {
303 std::map<std::string,t_struct*> newStructMap;
304 std::vector<t_struct*>::const_iterator newStructListIt;
305 for(newStructListIt = newStructList.begin(); newStructListIt != newStructList.end(); newStructListIt++)
306 {
307 newStructMap[(*newStructListIt)->get_name()] = *newStructListIt;
308 }
309
310 std::vector<t_struct*>::const_iterator oldStructListIt;
311 for(oldStructListIt = oldStructList.begin(); oldStructListIt != oldStructList.end(); oldStructListIt++)
312 {
313 std::map<std::string, t_struct*>::iterator newStructMapIt;
314 newStructMapIt = newStructMap.find((*oldStructListIt)->get_name());
315 if(newStructMapIt == newStructMap.end())
316 {
317 thrift_audit_failure("Struct %s not found in new thrift file\n", (*oldStructListIt)->get_name().c_str());
318 }
319 else
320 {
321 compare_single_struct(newStructMapIt->second, *oldStructListIt);
322 }
323 }
324
325 }
326
compare_single_function(t_function * newFunction,t_function * oldFunction)327 void compare_single_function(t_function* newFunction, t_function* oldFunction)
328 {
329 t_type* newFunctionReturnType = newFunction->get_returntype();
330
331 if(newFunction->is_oneway() != oldFunction->is_oneway())
332 {
333 thrift_audit_failure("Oneway attribute changed for function %s\n",oldFunction->get_name().c_str());
334 }
335 if(!compare_type(newFunctionReturnType, oldFunction->get_returntype()))
336 {
337 thrift_audit_failure("Return type changed for function %s\n",oldFunction->get_name().c_str());
338 }
339
340 //Compare function arguments.
341 compare_single_struct(newFunction->get_arglist(), oldFunction->get_arglist());
342 std::string exceptionName = oldFunction->get_name();
343 exceptionName += "_exception";
344 compare_single_struct(newFunction->get_xceptions(), oldFunction->get_xceptions(), exceptionName);
345 }
346
compare_functions(const std::vector<t_function * > & newFunctionList,const std::vector<t_function * > & oldFunctionList)347 void compare_functions(const std::vector<t_function*>& newFunctionList, const std::vector<t_function*>& oldFunctionList)
348 {
349 std::map<std::string, t_function*> newFunctionMap;
350 std::map<std::string, t_function*>::iterator newFunctionMapIt;
351 for(auto newFunctionIt : newFunctionList)
352 {
353 newFunctionMap[newFunctionIt->get_name()] = newFunctionIt;
354 }
355
356 for(auto oldFunctionIt : oldFunctionList)
357 {
358 newFunctionMapIt = newFunctionMap.find(oldFunctionIt->get_name());
359 if(newFunctionMapIt == newFunctionMap.end())
360 {
361 thrift_audit_failure("New Thrift File has missing function %s\n",oldFunctionIt->get_name().c_str());
362 continue;
363 }
364 else
365 {
366 //Function is found in both thrift files. Compare return type and argument list
367 compare_single_function(newFunctionMapIt->second, oldFunctionIt);
368 }
369 }
370
371 }
372
compare_services(const std::vector<t_service * > & newServices,const std::vector<t_service * > & oldServices)373 void compare_services(const std::vector<t_service*>& newServices, const std::vector<t_service*>& oldServices)
374 {
375 std::vector<t_service*>::const_iterator oldServiceIt;
376
377 std::map<std::string, t_service*> newServiceMap;
378 for(auto newService : newServices)
379 {
380 newServiceMap[newService->get_name()] = newService;
381 }
382
383
384 for(oldServiceIt = oldServices.begin(); oldServiceIt != oldServices.end(); oldServiceIt++)
385 {
386 const std::string oldServiceName = (*oldServiceIt)->get_name();
387 auto newServiceMapIt = newServiceMap.find(oldServiceName);
388
389 if(newServiceMapIt == newServiceMap.end())
390 {
391 thrift_audit_failure("New Thrift file is missing a service %s\n", oldServiceName.c_str());
392 }
393 else
394 {
395 t_service* oldServiceExtends = (*oldServiceIt)->get_extends();
396 t_service* newServiceExtends = (newServiceMapIt->second)->get_extends();
397
398 if(oldServiceExtends == nullptr)
399 {
400 // It is fine to add extends. So if service in older thrift did not have any extends, we are fine.
401 // DO Nothing
402 }
403 else if(oldServiceExtends != nullptr && newServiceExtends == nullptr)
404 {
405 thrift_audit_failure("Change in Service inheritance for %s\n", oldServiceName.c_str());
406 }
407 else
408 {
409 std::string oldExtendsName = oldServiceExtends->get_name();
410 std::string newExtendsName = newServiceExtends->get_name();
411
412 if( newExtendsName != oldExtendsName)
413 {
414 thrift_audit_failure("Change in Service inheritance for %s\n", oldServiceName.c_str());
415 }
416 }
417
418 compare_functions((newServiceMapIt->second)->get_functions(), (*oldServiceIt)->get_functions());
419 }
420
421 }
422
423 }
424
compare_consts(const std::vector<t_const * > & newConst,const std::vector<t_const * > & oldConst)425 void compare_consts(const std::vector<t_const*>& newConst, const std::vector<t_const*>& oldConst)
426 {
427 std::vector<t_const*>::const_iterator newConstIt;
428 std::vector<t_const*>::const_iterator oldConstIt;
429
430 std::map<std::string, t_const*> newConstMap;
431
432 for(newConstIt = newConst.begin(); newConstIt != newConst.end(); newConstIt++)
433 {
434 newConstMap[(*newConstIt)->get_name()] = *newConstIt;
435 }
436
437 std::map<std::string, t_const*>::const_iterator newConstMapIt;
438 for(oldConstIt = oldConst.begin(); oldConstIt != oldConst.end(); oldConstIt++)
439 {
440 newConstMapIt = newConstMap.find((*oldConstIt)->get_name());
441 if(newConstMapIt == newConstMap.end())
442 {
443 thrift_audit_warning(1, "Constants Missing %s \n", ((*oldConstIt)->get_name()).c_str());
444 }
445 else if(!compare_type((newConstMapIt->second)->get_type(), (*oldConstIt)->get_type()))
446 {
447 thrift_audit_warning(1, "Constant %s is of different type \n", ((*oldConstIt)->get_name()).c_str());
448 }
449 else if(!compare_defaults((newConstMapIt->second)->get_value(), (*oldConstIt)->get_value()))
450 {
451 thrift_audit_warning(1, "Constant %s has different value\n", ((*oldConstIt)->get_name()).c_str());
452 }
453 }
454 }
455