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1
2 """ Please make sure you read the README COMPLETELY BEFORE reading anything below.
3 It is very critical that you read coding guidelines in Section E in README file.
4 """
5
6 from cvalue import *
7 from lazytarget import *
8 from configuration import *
9 from utils import *
10 import caching
11 import lldb
12
13 def IterateTAILQ_HEAD(headval, element_name):
14 """ iterate over a TAILQ_HEAD in kernel. refer to bsd/sys/queue.h
15 params:
16 headval - value : value object representing the head of the list
17 element_name- str : string name of the field which holds the list links.
18 returns:
19 A generator does not return. It is used for iterating.
20 value : an object that is of type as headval->tqh_first. Always a pointer object
21 example usage:
22 list_head = kern.GetGlobalVariable('mountlist')
23 for entryobj in IterateTAILQ_HEAD(list_head, 'mnt_list'):
24 print GetEntrySummary(entryobj)
25 """
26 iter_val = headval.tqh_first
27 while unsigned(iter_val) != 0 :
28 yield iter_val
29 iter_val = iter_val.__getattr__(element_name).tqe_next
30 #end of yield loop
31
32 def IterateLinkedList(element, field_name):
33 """ iterate over a linked list.
34 This is equivalent to elt = element; while(elt) { do_work(elt); elt = elt-><field_name>; }
35 params:
36 element - value : value object representing element in the list.
37 field_name - str : name of field that holds pointer to next element
38 returns: Nothing. This is used as iterable
39 example usage:
40 first_zone = kern.GetGlobalVariable('first_zone')
41 for zone in IterateLinkedList(first_zone, 'next_zone'):
42 print GetZoneSummary(zone)
43 """
44 elt = element
45 while unsigned(elt) != 0:
46 yield elt
47 elt = elt.__getattr__(field_name)
48 #end of while loop
49
50 def IterateListEntry(element, element_type, field_name, list_prefix=''):
51 """ iterate over a list as defined with LIST_HEAD in bsd/sys/queue.h
52 params:
53 element - value : Value object for lh_first
54 element_type - str : Type of the next element
55 field_name - str : Name of the field in next element's structure
56 list_prefix - str : use 's' here to iterate SLIST_HEAD instead
57 returns:
58 A generator does not return. It is used for iterating
59 value : an object thats of type (element_type) head->le_next. Always a pointer object
60 example usage:
61 headp = kern.globals.initproc.p_children
62 for pp in IterateListEntry(headp, 'struct proc *', 'p_sibling'):
63 print GetProcInfo(pp)
64 """
65 elt = element.__getattr__(list_prefix + 'lh_first')
66 if type(element_type) == str:
67 element_type = gettype(element_type)
68 while unsigned(elt) != 0:
69 yield elt
70 next_el = elt.__getattr__(field_name).__getattr__(list_prefix + 'le_next')
71 elt = cast(next_el, element_type)
72
73 def IterateLinkageChain(queue_head, element_type, field_name, field_ofst=0):
74 """ Iterate over a Linkage Chain queue in kernel of type queue_head_t. (osfmk/kern/queue.h method 1)
75 This is equivalent to the qe_foreach_element() macro
76 params:
77 queue_head - value : Value object for queue_head.
78 element_type - lldb.SBType : pointer type of the element which contains the queue_chain_t. Typically its structs like thread, task etc..
79 - str : OR a string describing the type. ex. 'task *'
80 field_name - str : Name of the field (in element) which holds a queue_chain_t
81 field_ofst - int : offset from the 'field_name' (in element) which holds a queue_chain_t
82 This is mostly useful if a particular element contains an array of queue_chain_t
83 returns:
84 A generator does not return. It is used for iterating.
85 value : An object thats of type (element_type). Always a pointer object
86 example usage:
87 coalq = kern.GetGlobalVariable('coalitions_q')
88 for coal in IterateLinkageChain(coalq, 'struct coalition *', 'coalitions'):
89 print GetCoalitionInfo(coal)
90 """
91 global kern
92 if type(element_type) == str:
93 element_type = gettype(element_type)
94
95 if unsigned(queue_head) == 0:
96 return
97
98 if element_type.IsPointerType():
99 elem_ofst = getfieldoffset(element_type.GetPointeeType(), field_name) + field_ofst
100 else:
101 elem_ofst = getfieldoffset(element_type, field_name) + field_ofst
102
103 link = queue_head.next
104 while (unsigned(link) != unsigned(queue_head)):
105 addr = unsigned(link) - elem_ofst;
106 # I can't use the GetValueFromAddress function of the kernel class
107 # because I have no instance of that class!
108 obj = value(link.GetSBValue().CreateValueFromExpression(None,'(void *)'+str(addr)))
109 obj = cast(obj, element_type)
110 yield obj
111 link = link.next
112
113
114 def IterateQueue(queue_head, element_ptr_type, element_field_name, backwards=False, unpack_ptr_fn=None):
115 """ Iterate over an Element Chain queue in kernel of type queue_head_t. (osfmk/kern/queue.h method 2)
116 params:
117 queue_head - value : Value object for queue_head.
118 element_ptr_type - lldb.SBType : a pointer type of the element 'next' points to. Typically its structs like thread, task etc..
119 - str : OR a string describing the type. ex. 'task *'
120 element_field_name - str : name of the field in target struct.
121 backwards - backwards : traverse the queue backwards
122 unpack_ptr_fn - function : a function ptr of signature def unpack_ptr(long v) which returns long.
123 returns:
124 A generator does not return. It is used for iterating.
125 value : an object thats of type (element_type) queue_head->next. Always a pointer object
126 example usage:
127 for page_meta in IterateQueue(kern.globals.first_zone.pages.all_free, 'struct zone_page_metadata *', 'pages'):
128 print page_meta
129 """
130 if type(element_ptr_type) == str :
131 element_ptr_type = gettype(element_ptr_type)
132
133 queue_head = queue_head.GetSBValue()
134 queue_head_addr = 0x0
135 if queue_head.TypeIsPointerType():
136 queue_head_addr = queue_head.GetValueAsUnsigned()
137 else:
138 queue_head_addr = queue_head.GetAddress().GetLoadAddress(LazyTarget.GetTarget())
139
140 def unpack_ptr_and_recast(v):
141 if unpack_ptr_fn is None:
142 return v
143 v_unpacked = unpack_ptr_fn(v.GetValueAsUnsigned())
144 obj = v.CreateValueFromExpression(None,'(void *)'+str(v_unpacked))
145 obj.Cast(element_ptr_type)
146 return obj
147
148 if backwards:
149 cur_elt = unpack_ptr_and_recast(queue_head.GetChildMemberWithName('prev'))
150 else:
151 cur_elt = unpack_ptr_and_recast(queue_head.GetChildMemberWithName('next'))
152
153 while True:
154
155 if not cur_elt.IsValid() or cur_elt.GetValueAsUnsigned() == 0 or cur_elt.GetValueAsUnsigned() == queue_head_addr:
156 break
157 elt = cur_elt.Cast(element_ptr_type)
158 yield value(elt)
159 if backwards:
160 cur_elt = unpack_ptr_and_recast(elt.GetChildMemberWithName(element_field_name).GetChildMemberWithName('prev'))
161 else:
162 cur_elt = unpack_ptr_and_recast(elt.GetChildMemberWithName(element_field_name).GetChildMemberWithName('next'))
163
164
165 def IterateRBTreeEntry(element, element_type, field_name):
166 """ iterate over a rbtree as defined with RB_HEAD in libkern/tree.h
167 element - value : Value object for rbh_root
168 element_type - str : Type of the link element
169 field_name - str : Name of the field in link element's structure
170 returns:
171 A generator does not return. It is used for iterating
172 value : an object thats of type (element_type) head->sle_next. Always a pointer object
173 """
174 elt = element.__getattr__('rbh_root')
175 if type(element_type) == str:
176 element_type = gettype(element_type)
177
178 # Walk to find min
179 parent = elt
180 while unsigned(elt) != 0:
181 parent = elt
182 elt = cast(elt.__getattr__(field_name).__getattr__('rbe_left'), element_type)
183 elt = parent
184
185 # Now elt is min
186 while unsigned(elt) != 0:
187 yield elt
188 # implementation cribbed from RB_NEXT in libkern/tree.h
189 right = cast(elt.__getattr__(field_name).__getattr__('rbe_right'), element_type)
190 if unsigned(right) != 0:
191 elt = right
192 left = cast(elt.__getattr__(field_name).__getattr__('rbe_left'), element_type)
193 while unsigned(left) != 0:
194 elt = left
195 left = cast(elt.__getattr__(field_name).__getattr__('rbe_left'), element_type)
196 else:
197
198 # avoid using GetValueFromAddress
199 addr = elt.__getattr__(field_name).__getattr__('rbe_parent')&~1
200 parent = value(elt.GetSBValue().CreateValueFromExpression(None,'(void *)'+str(addr)))
201 parent = cast(parent, element_type)
202
203 if unsigned(parent) != 0:
204 left = cast(parent.__getattr__(field_name).__getattr__('rbe_left'), element_type)
205 if (unsigned(parent) != 0) and (unsigned(elt) == unsigned(left)):
206 elt = parent
207 else:
208 if unsigned(parent) != 0:
209 right = cast(parent.__getattr__(field_name).__getattr__('rbe_right'), element_type)
210 while unsigned(parent) != 0 and (unsigned(elt) == unsigned(right)):
211 elt = parent
212
213 # avoid using GetValueFromAddress
214 addr = elt.__getattr__(field_name).__getattr__('rbe_parent')&~1
215 parent = value(elt.GetSBValue().CreateValueFromExpression(None,'(void *)'+str(addr)))
216 parent = cast(parent, element_type)
217
218 right = cast(parent.__getattr__(field_name).__getattr__('rbe_right'), element_type)
219
220 # avoid using GetValueFromAddress
221 addr = elt.__getattr__(field_name).__getattr__('rbe_parent')&~1
222 elt = value(elt.GetSBValue().CreateValueFromExpression(None,'(void *)'+str(addr)))
223 elt = cast(elt, element_type)
224
225
226 def IteratePriorityQueue(root, element_type, field_name):
227 """ iterate over a priority queue as defined with struct priority_queue from osfmk/kern/priority_queue.h
228 root - value : Value object for the priority queue
229 element_type - str : Type of the link element
230 field_name - str : Name of the field in link element's structure
231 returns:
232 A generator does not return. It is used for iterating
233 value : an object thats of type (element_type). Always a pointer object
234 """
235 def _make_pqe(addr):
236 return value(root.GetSBValue().CreateValueFromExpression(None,'(struct priority_queue_entry *)'+str(addr)))
237
238 queue = [unsigned(root.pq_root_packed) & ~3]
239
240 while len(queue):
241 elt = _make_pqe(queue.pop())
242
243 while elt:
244 yield containerof(elt, element_type, field_name)
245 addr = unsigned(elt.child)
246 if addr: queue.append(addr)
247 elt = elt.next
248
249 def IterateMPSCQueue(root, element_type, field_name):
250 """ iterate over an MPSC queue as defined with struct mpsc_queue_head from osfmk/kern/mpsc_queue.h
251 root - value : Value object for the mpsc queue
252 element_type - str : Type of the link element
253 field_name - str : Name of the field in link element's structure
254 returns:
255 A generator does not return. It is used for iterating
256 value : an object thats of type (element_type). Always a pointer object
257 """
258 elt = root.mpqh_head.mpqc_next
259 while unsigned(elt):
260 yield containerof(elt, element_type, field_name)
261 elt = elt.mpqc_next
262
263 class KernelTarget(object):
264 """ A common kernel object that provides access to kernel objects and information.
265 The class holds global lists for task, terminated_tasks, procs, zones, zombroc etc.
266 It also provides a way to symbolicate an address or create a value from an address.
267 """
268 def __init__(self, debugger):
269 """ Initialize the kernel debugging environment.
270 Target properties like architecture and connectedness are lazy-evaluted.
271 """
272 self._debugger = debugger # This holds an lldb.SBDebugger object for debugger state
273 self._threads_list = []
274 self._tasks_list = []
275 self._coalitions_list = []
276 self._thread_groups = []
277 self._allproc = []
278 self._terminated_tasks_list = []
279 self._zones_list = []
280 self._zombproc_list = []
281 self._kernel_types_cache = {} #this will cache the Type objects as and when requested.
282 self._version = None
283 self._arch = None
284 self._ptrsize = None # pointer size of kernel, not userspace
285 self.symbolicator = None
286 class _GlobalVariableFind(object):
287 def __init__(self, kern):
288 self._xnu_kernobj_12obscure12 = kern
289 def __getattr__(self, name):
290 v = self._xnu_kernobj_12obscure12.GetGlobalVariable(name)
291 if not v.GetSBValue().IsValid():
292 raise ValueError('No such global variable by name: %s '%str(name))
293 return v
294 self.globals = _GlobalVariableFind(self)
295 LazyTarget.Initialize(debugger)
296
297 def _GetSymbolicator(self):
298 """ Internal function: To initialize the symbolication from lldb.utils
299 """
300 if not self.symbolicator is None:
301 return self.symbolicator
302
303 from lldb.utils import symbolication
304 symbolicator = symbolication.Symbolicator()
305 symbolicator.target = LazyTarget.GetTarget()
306 self.symbolicator = symbolicator
307 return self.symbolicator
308
309 def Symbolicate(self, addr):
310 """ simple method to get name of function/variable from an address. this is equivalent of gdb 'output /a 0xaddress'
311 params:
312 addr - int : typically hex value like 0xffffff80002c0df0
313 returns:
314 str - '' if no symbol found else the symbol name.
315 Note: this function only finds the first symbol. If you expect multiple symbol conflict please use SymbolicateFromAddress()
316 """
317 ret_str = ''
318 syms = self.SymbolicateFromAddress(addr)
319 if len(syms) > 0:
320 ret_str +=syms[0].GetName()
321 return ret_str
322
323 def SymbolicateFromAddress(self, addr):
324 """ symbolicates any given address based on modules loaded in the target.
325 params:
326 addr - int : typically hex value like 0xffffff80002c0df0
327 returns:
328 [] of SBSymbol: In case we don't find anything than empty array is returned.
329 Note: a type of symbol can be figured out by gettype() function of SBSymbol.
330 example usage:
331 syms = kern.Symbolicate(0xffffff80002c0df0)
332 for s in syms:
333 if s.GetType() == lldb.eSymbolTypeCode:
334 print "Function", s.GetName()
335 if s.GetType() == lldb.eSymbolTypeData:
336 print "Variable", s.GetName()
337 """
338 if type(int(1)) != type(addr):
339 if str(addr).strip().find("0x") == 0 :
340 addr = int(addr, 16)
341 else:
342 addr = int(addr)
343 addr = self.StripKernelPAC(addr)
344 ret_array = []
345 symbolicator = self._GetSymbolicator()
346 syms = symbolicator.symbolicate(addr)
347 if not syms:
348 return ret_array
349 for s in syms:
350 ret_array.append(s.get_symbol_context().symbol)
351 return ret_array
352
353 def IsDebuggerConnected(self):
354 proc_state = LazyTarget.GetProcess().state
355 if proc_state == lldb.eStateInvalid : return False
356 if proc_state in [lldb.eStateStopped, lldb.eStateSuspended] : return True
357
358 def GetGlobalVariable(self, name):
359 """ Get the value object representation for a kernel global variable
360 params:
361 name : str - name of the variable. ex. version
362 returns: value - python object representing global variable.
363 raises : Exception in case the variable is not found.
364 """
365 self._globals_cache_dict = caching.GetDynamicCacheData("kern._globals_cache_dict", {})
366 if name not in self._globals_cache_dict:
367 self._globals_cache_dict[name] = value(LazyTarget.GetTarget().FindGlobalVariables(name, 1).GetValueAtIndex(0))
368 return self._globals_cache_dict[name]
369
370 def GetLoadAddressForSymbol(self, name):
371 """ Get the load address of a symbol in the kernel.
372 params:
373 name : str - name of the symbol to lookup
374 returns: int - the load address as an integer. Use GetValueFromAddress to cast to a value.
375 raises : LookupError - if the symbol is not found.
376 """
377 name = str(name)
378 target = LazyTarget.GetTarget()
379 syms_arr = target.FindSymbols(name)
380 if syms_arr.IsValid() and len(syms_arr) > 0:
381 symbol = syms_arr[0].GetSymbol()
382 if symbol.IsValid():
383 return int(symbol.GetStartAddress().GetLoadAddress(target))
384
385 raise LookupError("Symbol not found: " + name)
386
387 def GetValueFromAddress(self, addr, type_str = 'void *'):
388 """ convert a address to value
389 params:
390 addr - int : typically hex value like 0xffffff80008dc390
391 type_str - str: type to cast to. Default type will be void *
392 returns:
393 value : a value object which has address as addr and type is type_str
394 """
395 obj = value(self.globals.version.GetSBValue().CreateValueFromExpression(None,'(void *)'+str(addr)))
396 obj = cast(obj, type_str)
397 return obj
398
399 def GetValueAsType(self, v, t):
400 """ Retrieves a global variable 'v' of type 't' wrapped in a vue object.
401 If 'v' is an address, creates a vue object of the appropriate type.
402 If 'v' is a name, looks for the global variable and asserts its type.
403 Throws:
404 NameError - If 'v' cannot be found
405 TypeError - If 'v' is of the wrong type
406 """
407 if islong(v):
408 return self.GetValueFromAddress(v, t)
409 else:
410 var = LazyTarget.GetTarget().FindGlobalVariables(v, 1)[0]
411 if not var:
412 raise NameError("Failed to find global variable '{0}'".format(v))
413 if var.GetTypeName() != t:
414 raise TypeError("{0} must be of type '{1}', not '{2}'".format(v, t, var.GetTypeName()))
415 return value(var)
416
417 def _GetIterator(self, iter_head_name, next_element_name='next', iter_head_type=None):
418 """ returns an iterator for a collection in kernel memory.
419 params:
420 iter_head_name - str : name of queue_head or list head variable.
421 next_element_name - str : name of the element that leads to next element.
422 for ex. in struct zone list 'next_zone' is the linking element.
423 returns:
424 iterable : typically used in conjunction with "for varname in iterable:"
425 """
426 head_element = self.GetGlobalVariable(iter_head_name)
427 return head_element.GetSBValue().linked_list_iter(next_element_name)
428
429 def TruncPage(self, addr):
430 return (addr & ~(unsigned(self.GetGlobalVariable("page_size")) - 1))
431
432 def RoundPage(self, addr):
433 return trunc_page(addr + unsigned(self.GetGlobalVariable("page_size")) - 1)
434
435 def StraddlesPage(self, addr, size):
436 if size > unsigned(self.GetGlobalVariable("page_size")):
437 return True
438 val = ((addr + size) & (unsigned(self.GetGlobalVariable("page_size"))-1))
439 return (val < size and val > 0)
440
441 def StripUserPAC(self, addr):
442 if self.arch != 'arm64e':
443 return addr
444 T0Sz = self.GetGlobalVariable('gT0Sz')
445 return StripPAC(addr, T0Sz)
446
447 def StripKernelPAC(self, addr):
448 if self.arch != 'arm64e':
449 return addr
450 T1Sz = self.GetGlobalVariable('gT1Sz')
451 return StripPAC(addr, T1Sz)
452
453 def PhysToKVARM64(self, addr):
454 ptov_table = self.GetGlobalVariable('ptov_table')
455 for i in range(0, self.GetGlobalVariable('ptov_index')):
456 if (addr >= long(unsigned(ptov_table[i].pa))) and (addr < (long(unsigned(ptov_table[i].pa)) + long(unsigned(ptov_table[i].len)))):
457 return (addr - long(unsigned(ptov_table[i].pa)) + long(unsigned(ptov_table[i].va)))
458 return (addr - unsigned(self.GetGlobalVariable("gPhysBase")) + unsigned(self.GetGlobalVariable("gVirtBase")))
459
460 def PhysToKernelVirt(self, addr):
461 if self.arch == 'x86_64':
462 return (addr + unsigned(self.GetGlobalVariable('physmap_base')))
463 elif self.arch.startswith('arm64'):
464 return self.PhysToKVARM64(addr)
465 elif self.arch.startswith('arm'):
466 return (addr - unsigned(self.GetGlobalVariable("gPhysBase")) + unsigned(self.GetGlobalVariable("gVirtBase")))
467 else:
468 raise ValueError("PhysToVirt does not support {0}".format(self.arch))
469
470 def GetNanotimeFromAbstime(self, abstime):
471 """ convert absolute time (which is in MATUs) to nano seconds.
472 Since based on architecture the conversion may differ.
473 params:
474 abstime - int absolute time as shown by mach_absolute_time
475 returns:
476 int - nanosecs of time
477 """
478 usec_divisor = caching.GetStaticCacheData("kern.rtc_usec_divisor", None)
479 if not usec_divisor:
480 if self.arch == 'x86_64':
481 usec_divisor = 1000
482 else:
483 rtclockdata_addr = self.GetLoadAddressForSymbol('RTClockData')
484 rtc = self.GetValueFromAddress(rtclockdata_addr, 'struct _rtclock_data_ *')
485 usec_divisor = unsigned(rtc.rtc_usec_divisor)
486 usec_divisor = int(usec_divisor)
487 caching.SaveStaticCacheData('kern.rtc_usec_divisor', usec_divisor)
488 nsecs = (abstime * 1000)/usec_divisor
489 return nsecs
490
491 def __getattribute__(self, name):
492 if name == 'zones' :
493 self._zones_list = caching.GetDynamicCacheData("kern._zones_list", [])
494 if len(self._zones_list) > 0: return self._zones_list
495 zone_array = self.GetGlobalVariable('zone_array')
496 for i in range(0, self.GetGlobalVariable('num_zones')):
497 self._zones_list.append(addressof(zone_array[i]))
498 caching.SaveDynamicCacheData("kern._zones_list", self._zones_list)
499 return self._zones_list
500
501 if name == 'threads' :
502 self._threads_list = caching.GetDynamicCacheData("kern._threads_list", [])
503 if len(self._threads_list) > 0 : return self._threads_list
504 thread_queue_head = self.GetGlobalVariable('threads')
505 thread_type = LazyTarget.GetTarget().FindFirstType('thread')
506 thread_ptr_type = thread_type.GetPointerType()
507 for th in IterateQueue(thread_queue_head, thread_ptr_type, 'threads'):
508 self._threads_list.append(th)
509 caching.SaveDynamicCacheData("kern._threads_list", self._threads_list)
510 return self._threads_list
511
512 if name == 'tasks' :
513 self._tasks_list = caching.GetDynamicCacheData("kern._tasks_list", [])
514 if len(self._tasks_list) > 0 : return self._tasks_list
515 task_queue_head = self.GetGlobalVariable('tasks')
516 task_type = LazyTarget.GetTarget().FindFirstType('task')
517 task_ptr_type = task_type.GetPointerType()
518 for tsk in IterateQueue(task_queue_head, task_ptr_type, 'tasks'):
519 self._tasks_list.append(tsk)
520 caching.SaveDynamicCacheData("kern._tasks_list", self._tasks_list)
521 return self._tasks_list
522
523 if name == 'coalitions' :
524 self._coalitions_list = caching.GetDynamicCacheData("kern._coalitions_list", [])
525 if len(self._coalitions_list) > 0 : return self._coalitions_list
526 coalition_queue_head = self.GetGlobalVariable('coalitions_q')
527 coalition_type = LazyTarget.GetTarget().FindFirstType('coalition')
528 coalition_ptr_type = coalition_type.GetPointerType()
529 for coal in IterateLinkageChain(addressof(coalition_queue_head), coalition_ptr_type, 'coalitions'):
530 self._coalitions_list.append(coal)
531 caching.SaveDynamicCacheData("kern._coalitions_list", self._coalitions_list)
532 return self._coalitions_list
533
534 if name == 'thread_groups' :
535 self._thread_groups_list = caching.GetDynamicCacheData("kern._thread_groups_list", [])
536 if len(self._thread_groups_list) > 0 : return self._thread_groups_list
537 thread_groups_queue_head = self.GetGlobalVariable('tg_queue')
538 thread_group_type = LazyTarget.GetTarget().FindFirstType('thread_group')
539 thread_groups_ptr_type = thread_group_type.GetPointerType()
540 for coal in IterateLinkageChain(addressof(thread_groups_queue_head), thread_groups_ptr_type, 'tg_queue_chain'):
541 self._thread_groups_list.append(coal)
542 caching.SaveDynamicCacheData("kern._thread_groups_list", self._thread_groups_list)
543 return self._thread_groups_list
544
545 if name == 'terminated_tasks' :
546 self._terminated_tasks_list = caching.GetDynamicCacheData("kern._terminated_tasks_list", [])
547 if len(self._terminated_tasks_list) > 0 : return self._terminated_tasks_list
548 task_queue_head = self.GetGlobalVariable('terminated_tasks')
549 task_type = LazyTarget.GetTarget().FindFirstType('task')
550 task_ptr_type = task_type.GetPointerType()
551 for tsk in IterateQueue(task_queue_head, task_ptr_type, 'tasks'):
552 self._terminated_tasks_list.append(tsk)
553 caching.SaveDynamicCacheData("kern._terminated_tasks_list", self._terminated_tasks_list)
554 return self._terminated_tasks_list
555
556 if name == 'procs' :
557 self._allproc = caching.GetDynamicCacheData("kern._allproc", [])
558 if len(self._allproc) > 0 : return self._allproc
559 all_proc_head = self.GetGlobalVariable('allproc')
560 proc_val = cast(all_proc_head.lh_first, 'proc *')
561 while proc_val != 0:
562 self._allproc.append(proc_val)
563 proc_val = cast(proc_val.p_list.le_next, 'proc *')
564 caching.SaveDynamicCacheData("kern._allproc", self._allproc)
565 return self._allproc
566
567 if name == 'interrupt_stats' :
568 self._interrupt_stats_list = caching.GetDynamicCacheData("kern._interrupt_stats_list", [])
569 if len(self._interrupt_stats_list) > 0 : return self._interrupt_stats_list
570 interrupt_stats_head = self.GetGlobalVariable('gInterruptAccountingDataList')
571 interrupt_stats_type = LazyTarget.GetTarget().FindFirstType('IOInterruptAccountingData')
572 interrupt_stats_ptr_type = interrupt_stats_type.GetPointerType()
573 for interrupt_stats_obj in IterateQueue(interrupt_stats_head, interrupt_stats_ptr_type, 'chain'):
574 self._interrupt_stats_list.append(interrupt_stats_obj)
575 caching.SaveDynamicCacheData("kern._interrupt_stats", self._interrupt_stats_list)
576 return self._interrupt_stats_list
577
578 if name == 'zombprocs' :
579 self._zombproc_list = caching.GetDynamicCacheData("kern._zombproc_list", [])
580 if len(self._zombproc_list) > 0 : return self._zombproc_list
581 zproc_head = self.GetGlobalVariable('zombproc')
582 proc_val = cast(zproc_head.lh_first, 'proc *')
583 while proc_val != 0:
584 self._zombproc_list.append(proc_val)
585 proc_val = cast(proc_val.p_list.le_next, 'proc *')
586 caching.SaveDynamicCacheData("kern._zombproc_list", self._zombproc_list)
587 return self._zombproc_list
588
589 if name == 'version' :
590 self._version = caching.GetStaticCacheData("kern.version", None)
591 if self._version != None : return self._version
592 self._version = str(self.GetGlobalVariable('version'))
593 caching.SaveStaticCacheData("kern.version", self._version)
594 return self._version
595
596 if name == 'arch' :
597 self._arch = caching.GetStaticCacheData("kern.arch", None)
598 if self._arch != None : return self._arch
599 arch = LazyTarget.GetTarget().triple.split('-')[0]
600 if arch in ('armv7', 'armv7s', 'armv7k'):
601 self._arch = 'arm'
602 else:
603 self._arch = arch
604 caching.SaveStaticCacheData("kern.arch", self._arch)
605 return self._arch
606
607 if name == 'ptrsize' :
608 self._ptrsize = caching.GetStaticCacheData("kern.ptrsize", None)
609 if self._ptrsize != None : return self._ptrsize
610 arch = LazyTarget.GetTarget().triple.split('-')[0]
611 if arch == 'x86_64' or arch.startswith('arm64'):
612 self._ptrsize = 8
613 else:
614 self._ptrsize = 4
615 caching.SaveStaticCacheData("kern.ptrsize", self._ptrsize)
616 return self._ptrsize
617
618 if name == 'VM_MIN_KERNEL_ADDRESS':
619 if self.arch == 'x86_64':
620 return unsigned(0xFFFFFF8000000000)
621 elif self.arch.startswith('arm64'):
622 return unsigned(0xffffffe000000000)
623 else:
624 return unsigned(0x80000000)
625
626 if name == 'VM_MIN_KERNEL_AND_KEXT_ADDRESS':
627 if self.arch == 'x86_64':
628 return self.VM_MIN_KERNEL_ADDRESS - 0x80000000
629 else:
630 return self.VM_MIN_KERNEL_ADDRESS
631
632 return object.__getattribute__(self, name)