1 //===-- ProcessElfCore.cpp --------------------------------------*- C++ -*-===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9
10 // C Includes
11 #include <stdlib.h>
12
13 // Other libraries and framework includes
14 #include "lldb/Core/PluginManager.h"
15 #include "lldb/Core/Module.h"
16 #include "lldb/Core/ModuleSpec.h"
17 #include "lldb/Core/Section.h"
18 #include "lldb/Core/State.h"
19 #include "lldb/Core/DataBufferHeap.h"
20 #include "lldb/Target/Target.h"
21 #include "lldb/Target/DynamicLoader.h"
22 #include "ProcessPOSIXLog.h"
23
24 #include "Plugins/ObjectFile/ELF/ObjectFileELF.h"
25 #include "Plugins/DynamicLoader/POSIX-DYLD/DynamicLoaderPOSIXDYLD.h"
26
27 // Project includes
28 #include "ProcessElfCore.h"
29 #include "ThreadElfCore.h"
30
31 using namespace lldb_private;
32
33 ConstString
GetPluginNameStatic()34 ProcessElfCore::GetPluginNameStatic()
35 {
36 static ConstString g_name("elf-core");
37 return g_name;
38 }
39
40 const char *
GetPluginDescriptionStatic()41 ProcessElfCore::GetPluginDescriptionStatic()
42 {
43 return "ELF core dump plug-in.";
44 }
45
46 void
Terminate()47 ProcessElfCore::Terminate()
48 {
49 PluginManager::UnregisterPlugin (ProcessElfCore::CreateInstance);
50 }
51
52
53 lldb::ProcessSP
CreateInstance(Target & target,Listener & listener,const FileSpec * crash_file)54 ProcessElfCore::CreateInstance (Target &target, Listener &listener, const FileSpec *crash_file)
55 {
56 lldb::ProcessSP process_sp;
57 if (crash_file)
58 process_sp.reset(new ProcessElfCore (target, listener, *crash_file));
59 return process_sp;
60 }
61
62 bool
CanDebug(Target & target,bool plugin_specified_by_name)63 ProcessElfCore::CanDebug(Target &target, bool plugin_specified_by_name)
64 {
65 // For now we are just making sure the file exists for a given module
66 if (!m_core_module_sp && m_core_file.Exists())
67 {
68 ModuleSpec core_module_spec(m_core_file, target.GetArchitecture());
69 Error error (ModuleList::GetSharedModule (core_module_spec, m_core_module_sp,
70 NULL, NULL, NULL));
71 if (m_core_module_sp)
72 {
73 ObjectFile *core_objfile = m_core_module_sp->GetObjectFile();
74 if (core_objfile && core_objfile->GetType() == ObjectFile::eTypeCoreFile)
75 return true;
76 }
77 }
78 return false;
79 }
80
81 //----------------------------------------------------------------------
82 // ProcessElfCore constructor
83 //----------------------------------------------------------------------
ProcessElfCore(Target & target,Listener & listener,const FileSpec & core_file)84 ProcessElfCore::ProcessElfCore(Target& target, Listener &listener,
85 const FileSpec &core_file) :
86 Process (target, listener),
87 m_core_module_sp (),
88 m_core_file (core_file),
89 m_dyld_plugin_name (),
90 m_thread_data_valid(false),
91 m_thread_data(),
92 m_core_aranges ()
93 {
94 }
95
96 //----------------------------------------------------------------------
97 // Destructor
98 //----------------------------------------------------------------------
~ProcessElfCore()99 ProcessElfCore::~ProcessElfCore()
100 {
101 Clear();
102 // We need to call finalize on the process before destroying ourselves
103 // to make sure all of the broadcaster cleanup goes as planned. If we
104 // destruct this class, then Process::~Process() might have problems
105 // trying to fully destroy the broadcaster.
106 Finalize();
107 }
108
109 //----------------------------------------------------------------------
110 // PluginInterface
111 //----------------------------------------------------------------------
112 ConstString
GetPluginName()113 ProcessElfCore::GetPluginName()
114 {
115 return GetPluginNameStatic();
116 }
117
118 uint32_t
GetPluginVersion()119 ProcessElfCore::GetPluginVersion()
120 {
121 return 1;
122 }
123
124 lldb::addr_t
AddAddressRangeFromLoadSegment(const elf::ELFProgramHeader * header)125 ProcessElfCore::AddAddressRangeFromLoadSegment(const elf::ELFProgramHeader *header)
126 {
127 lldb::addr_t addr = header->p_vaddr;
128 FileRange file_range (header->p_offset, header->p_filesz);
129 VMRangeToFileOffset::Entry range_entry(addr, header->p_memsz, file_range);
130
131 VMRangeToFileOffset::Entry *last_entry = m_core_aranges.Back();
132 if (last_entry &&
133 last_entry->GetRangeEnd() == range_entry.GetRangeBase() &&
134 last_entry->data.GetRangeEnd() == range_entry.data.GetRangeBase())
135 {
136 last_entry->SetRangeEnd (range_entry.GetRangeEnd());
137 last_entry->data.SetRangeEnd (range_entry.data.GetRangeEnd());
138 }
139 else
140 {
141 m_core_aranges.Append(range_entry);
142 }
143
144 return addr;
145 }
146
147 //----------------------------------------------------------------------
148 // Process Control
149 //----------------------------------------------------------------------
150 Error
DoLoadCore()151 ProcessElfCore::DoLoadCore ()
152 {
153 Error error;
154 if (!m_core_module_sp)
155 {
156 error.SetErrorString ("invalid core module");
157 return error;
158 }
159
160 ObjectFileELF *core = (ObjectFileELF *)(m_core_module_sp->GetObjectFile());
161 if (core == NULL)
162 {
163 error.SetErrorString ("invalid core object file");
164 return error;
165 }
166
167 const uint32_t num_segments = core->GetProgramHeaderCount();
168 if (num_segments == 0)
169 {
170 error.SetErrorString ("core file has no sections");
171 return error;
172 }
173
174 SetCanJIT(false);
175
176 m_thread_data_valid = true;
177
178 bool ranges_are_sorted = true;
179 lldb::addr_t vm_addr = 0;
180 /// Walk through segments and Thread and Address Map information.
181 /// PT_NOTE - Contains Thread and Register information
182 /// PT_LOAD - Contains a contiguous range of Process Address Space
183 for(uint32_t i = 1; i <= num_segments; i++)
184 {
185 const elf::ELFProgramHeader *header = core->GetProgramHeaderByIndex(i);
186 assert(header != NULL);
187
188 DataExtractor data = core->GetSegmentDataByIndex(i);
189
190 // Parse thread contexts and auxv structure
191 if (header->p_type == llvm::ELF::PT_NOTE)
192 ParseThreadContextsFromNoteSegment(header, data);
193
194 // PT_LOAD segments contains address map
195 if (header->p_type == llvm::ELF::PT_LOAD)
196 {
197 lldb::addr_t last_addr = AddAddressRangeFromLoadSegment(header);
198 if (vm_addr > last_addr)
199 ranges_are_sorted = false;
200 vm_addr = last_addr;
201 }
202 }
203
204 if (!ranges_are_sorted)
205 m_core_aranges.Sort();
206
207 // Even if the architecture is set in the target, we need to override
208 // it to match the core file which is always single arch.
209 ArchSpec arch (m_core_module_sp->GetArchitecture());
210 if (arch.IsValid())
211 m_target.SetArchitecture(arch);
212
213 return error;
214 }
215
216 lldb_private::DynamicLoader *
GetDynamicLoader()217 ProcessElfCore::GetDynamicLoader ()
218 {
219 if (m_dyld_ap.get() == NULL)
220 m_dyld_ap.reset (DynamicLoader::FindPlugin(this, DynamicLoaderPOSIXDYLD::GetPluginNameStatic().GetCString()));
221 return m_dyld_ap.get();
222 }
223
224 bool
UpdateThreadList(ThreadList & old_thread_list,ThreadList & new_thread_list)225 ProcessElfCore::UpdateThreadList (ThreadList &old_thread_list, ThreadList &new_thread_list)
226 {
227 const uint32_t num_threads = GetNumThreadContexts ();
228 if (!m_thread_data_valid)
229 return false;
230
231 for (lldb::tid_t tid = 0; tid < num_threads; ++tid)
232 {
233 const ThreadData &td = m_thread_data[tid];
234 lldb::ThreadSP thread_sp(new ThreadElfCore (*this, tid, td));
235 new_thread_list.AddThread (thread_sp);
236 }
237 return new_thread_list.GetSize(false) > 0;
238 }
239
240 void
RefreshStateAfterStop()241 ProcessElfCore::RefreshStateAfterStop ()
242 {
243 }
244
245 Error
DoDestroy()246 ProcessElfCore::DoDestroy ()
247 {
248 return Error();
249 }
250
251 //------------------------------------------------------------------
252 // Process Queries
253 //------------------------------------------------------------------
254
255 bool
IsAlive()256 ProcessElfCore::IsAlive ()
257 {
258 return true;
259 }
260
261 //------------------------------------------------------------------
262 // Process Memory
263 //------------------------------------------------------------------
264 size_t
ReadMemory(lldb::addr_t addr,void * buf,size_t size,Error & error)265 ProcessElfCore::ReadMemory (lldb::addr_t addr, void *buf, size_t size, Error &error)
266 {
267 // Don't allow the caching that lldb_private::Process::ReadMemory does
268 // since in core files we have it all cached our our core file anyway.
269 return DoReadMemory (addr, buf, size, error);
270 }
271
272 size_t
DoReadMemory(lldb::addr_t addr,void * buf,size_t size,Error & error)273 ProcessElfCore::DoReadMemory (lldb::addr_t addr, void *buf, size_t size, Error &error)
274 {
275 ObjectFile *core_objfile = m_core_module_sp->GetObjectFile();
276
277 if (core_objfile == NULL)
278 return 0;
279
280 // Get the address range
281 const VMRangeToFileOffset::Entry *address_range = m_core_aranges.FindEntryThatContains (addr);
282 if (address_range == NULL || address_range->GetRangeEnd() < addr)
283 {
284 error.SetErrorStringWithFormat ("core file does not contain 0x%" PRIx64, addr);
285 return 0;
286 }
287
288 // Convert the address into core file offset
289 const lldb::addr_t offset = addr - address_range->GetRangeBase();
290 const lldb::addr_t file_start = address_range->data.GetRangeBase();
291 const lldb::addr_t file_end = address_range->data.GetRangeEnd();
292 size_t bytes_to_read = size; // Number of bytes to read from the core file
293 size_t bytes_copied = 0; // Number of bytes actually read from the core file
294 size_t zero_fill_size = 0; // Padding
295 lldb::addr_t bytes_left = 0; // Number of bytes available in the core file from the given address
296
297 if (file_end > offset)
298 bytes_left = file_end - offset;
299
300 if (bytes_to_read > bytes_left)
301 {
302 zero_fill_size = bytes_to_read - bytes_left;
303 bytes_to_read = bytes_left;
304 }
305
306 // If there is data available on the core file read it
307 if (bytes_to_read)
308 bytes_copied = core_objfile->CopyData(offset + file_start, bytes_to_read, buf);
309
310 assert(zero_fill_size <= size);
311 // Pad remaining bytes
312 if (zero_fill_size)
313 memset(((char *)buf) + bytes_copied, 0, zero_fill_size);
314
315 return bytes_copied + zero_fill_size;
316 }
317
318 void
Clear()319 ProcessElfCore::Clear()
320 {
321 m_thread_list.Clear();
322 }
323
324 void
Initialize()325 ProcessElfCore::Initialize()
326 {
327 static bool g_initialized = false;
328
329 if (g_initialized == false)
330 {
331 g_initialized = true;
332 PluginManager::RegisterPlugin (GetPluginNameStatic(), GetPluginDescriptionStatic(), CreateInstance);
333 }
334 }
335
336 lldb::addr_t
GetImageInfoAddress()337 ProcessElfCore::GetImageInfoAddress()
338 {
339 Target *target = &GetTarget();
340 ObjectFile *obj_file = target->GetExecutableModule()->GetObjectFile();
341 Address addr = obj_file->GetImageInfoAddress();
342
343 if (addr.IsValid())
344 return addr.GetLoadAddress(target);
345 return LLDB_INVALID_ADDRESS;
346 }
347
348 /// Core files PT_NOTE segment descriptor types
349 enum {
350 NT_PRSTATUS = 1,
351 NT_FPREGSET,
352 NT_PRPSINFO,
353 NT_TASKSTRUCT,
354 NT_PLATFORM,
355 NT_AUXV
356 };
357
358 enum {
359 NT_FREEBSD_PRSTATUS = 1,
360 NT_FREEBSD_FPREGSET,
361 NT_FREEBSD_PRPSINFO,
362 NT_FREEBSD_THRMISC = 7,
363 NT_FREEBSD_PROCSTAT_AUXV = 16
364 };
365
366 /// Align the given value to next boundary specified by the alignment bytes
367 static uint32_t
AlignToNext(uint32_t value,int alignment_bytes)368 AlignToNext(uint32_t value, int alignment_bytes)
369 {
370 return (value + alignment_bytes - 1) & ~(alignment_bytes - 1);
371 }
372
373 /// Note Structure found in ELF core dumps.
374 /// This is PT_NOTE type program/segments in the core file.
375 struct ELFNote
376 {
377 elf::elf_word n_namesz;
378 elf::elf_word n_descsz;
379 elf::elf_word n_type;
380
381 std::string n_name;
382
ELFNoteELFNote383 ELFNote() : n_namesz(0), n_descsz(0), n_type(0)
384 {
385 }
386
387 /// Parse an ELFNote entry from the given DataExtractor starting at position
388 /// \p offset.
389 ///
390 /// @param[in] data
391 /// The DataExtractor to read from.
392 ///
393 /// @param[in,out] offset
394 /// Pointer to an offset in the data. On return the offset will be
395 /// advanced by the number of bytes read.
396 ///
397 /// @return
398 /// True if the ELFRel entry was successfully read and false otherwise.
399 bool
ParseELFNote400 Parse(const DataExtractor &data, lldb::offset_t *offset)
401 {
402 // Read all fields.
403 if (data.GetU32(offset, &n_namesz, 3) == NULL)
404 return false;
405
406 // The name field is required to be nul-terminated, and n_namesz
407 // includes the terminating nul in observed implementations (contrary
408 // to the ELF-64 spec). A special case is needed for cores generated
409 // by some older Linux versions, which write a note named "CORE"
410 // without a nul terminator and n_namesz = 4.
411 if (n_namesz == 4)
412 {
413 char buf[4];
414 if (data.ExtractBytes (*offset, 4, data.GetByteOrder(), buf) != 4)
415 return false;
416 if (strncmp (buf, "CORE", 4) == 0)
417 {
418 n_name = "CORE";
419 *offset += 4;
420 return true;
421 }
422 }
423
424 const char *cstr = data.GetCStr(offset, AlignToNext(n_namesz, 4));
425 if (cstr == NULL)
426 {
427 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_PROCESS));
428 if (log)
429 log->Printf("Failed to parse note name lacking nul terminator");
430
431 return false;
432 }
433 n_name = cstr;
434 return true;
435 }
436 };
437
438 // Parse a FreeBSD NT_PRSTATUS note - see FreeBSD sys/procfs.h for details.
439 static void
ParseFreeBSDPrStatus(ThreadData * thread_data,DataExtractor & data,ArchSpec & arch)440 ParseFreeBSDPrStatus(ThreadData *thread_data, DataExtractor &data,
441 ArchSpec &arch)
442 {
443 lldb::offset_t offset = 0;
444 bool have_padding = (arch.GetMachine() == llvm::Triple::x86_64);
445 int pr_version = data.GetU32(&offset);
446
447 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_PROCESS));
448 if (log)
449 {
450 if (pr_version > 1)
451 log->Printf("FreeBSD PRSTATUS unexpected version %d", pr_version);
452 }
453
454 if (have_padding)
455 offset += 4;
456 offset += 28; // pr_statussz, pr_gregsetsz, pr_fpregsetsz, pr_osreldate
457 thread_data->signo = data.GetU32(&offset); // pr_cursig
458 offset += 4; // pr_pid
459 if (have_padding)
460 offset += 4;
461
462 size_t len = data.GetByteSize() - offset;
463 thread_data->gpregset = DataExtractor(data, offset, len);
464 }
465
466 static void
ParseFreeBSDThrMisc(ThreadData * thread_data,DataExtractor & data)467 ParseFreeBSDThrMisc(ThreadData *thread_data, DataExtractor &data)
468 {
469 lldb::offset_t offset = 0;
470 thread_data->name = data.GetCStr(&offset, 20);
471 }
472
473 /// Parse Thread context from PT_NOTE segment and store it in the thread list
474 /// Notes:
475 /// 1) A PT_NOTE segment is composed of one or more NOTE entries.
476 /// 2) NOTE Entry contains a standard header followed by variable size data.
477 /// (see ELFNote structure)
478 /// 3) A Thread Context in a core file usually described by 3 NOTE entries.
479 /// a) NT_PRSTATUS - Register context
480 /// b) NT_PRPSINFO - Process info(pid..)
481 /// c) NT_FPREGSET - Floating point registers
482 /// 4) The NOTE entries can be in any order
483 /// 5) If a core file contains multiple thread contexts then there is two data forms
484 /// a) Each thread context(2 or more NOTE entries) contained in its own segment (PT_NOTE)
485 /// b) All thread context is stored in a single segment(PT_NOTE).
486 /// This case is little tricker since while parsing we have to find where the
487 /// new thread starts. The current implementation marks beginning of
488 /// new thread when it finds NT_PRSTATUS or NT_PRPSINFO NOTE entry.
489 /// For case (b) there may be either one NT_PRPSINFO per thread, or a single
490 /// one that applies to all threads (depending on the platform type).
491 void
ParseThreadContextsFromNoteSegment(const elf::ELFProgramHeader * segment_header,DataExtractor segment_data)492 ProcessElfCore::ParseThreadContextsFromNoteSegment(const elf::ELFProgramHeader *segment_header,
493 DataExtractor segment_data)
494 {
495 assert(segment_header && segment_header->p_type == llvm::ELF::PT_NOTE);
496
497 lldb::offset_t offset = 0;
498 ThreadData *thread_data = new ThreadData();
499 bool have_prstatus = false;
500 bool have_prpsinfo = false;
501
502 ArchSpec arch = GetArchitecture();
503 ELFLinuxPrPsInfo prpsinfo;
504 ELFLinuxPrStatus prstatus;
505 size_t header_size;
506 size_t len;
507
508 // Loop through the NOTE entires in the segment
509 while (offset < segment_header->p_filesz)
510 {
511 ELFNote note = ELFNote();
512 note.Parse(segment_data, &offset);
513
514 // Beginning of new thread
515 if ((note.n_type == NT_PRSTATUS && have_prstatus) ||
516 (note.n_type == NT_PRPSINFO && have_prpsinfo))
517 {
518 assert(thread_data->gpregset.GetByteSize() > 0);
519 // Add the new thread to thread list
520 m_thread_data.push_back(*thread_data);
521 thread_data = new ThreadData();
522 have_prstatus = false;
523 have_prpsinfo = false;
524 }
525
526 size_t note_start, note_size;
527 note_start = offset;
528 note_size = AlignToNext(note.n_descsz, 4);
529
530 // Store the NOTE information in the current thread
531 DataExtractor note_data (segment_data, note_start, note_size);
532 if (note.n_name == "FreeBSD")
533 {
534 switch (note.n_type)
535 {
536 case NT_FREEBSD_PRSTATUS:
537 have_prstatus = true;
538 ParseFreeBSDPrStatus(thread_data, note_data, arch);
539 break;
540 case NT_FREEBSD_FPREGSET:
541 thread_data->fpregset = note_data;
542 break;
543 case NT_FREEBSD_PRPSINFO:
544 have_prpsinfo = true;
545 break;
546 case NT_FREEBSD_THRMISC:
547 ParseFreeBSDThrMisc(thread_data, note_data);
548 break;
549 case NT_FREEBSD_PROCSTAT_AUXV:
550 // FIXME: FreeBSD sticks an int at the beginning of the note
551 m_auxv = DataExtractor(segment_data, note_start + 4, note_size - 4);
552 break;
553 default:
554 break;
555 }
556 }
557 else
558 {
559 switch (note.n_type)
560 {
561 case NT_PRSTATUS:
562 have_prstatus = true;
563 prstatus.Parse(note_data, arch);
564 thread_data->signo = prstatus.pr_cursig;
565 header_size = ELFLinuxPrStatus::GetSize(arch);
566 len = note_data.GetByteSize() - header_size;
567 thread_data->gpregset = DataExtractor(note_data, header_size, len);
568 break;
569 case NT_FPREGSET:
570 thread_data->fpregset = note_data;
571 break;
572 case NT_PRPSINFO:
573 have_prpsinfo = true;
574 prpsinfo.Parse(note_data, arch);
575 thread_data->name = prpsinfo.pr_fname;
576 break;
577 case NT_AUXV:
578 m_auxv = DataExtractor(note_data);
579 break;
580 default:
581 break;
582 }
583 }
584
585 offset += note_size;
586 }
587 // Add last entry in the note section
588 if (thread_data && thread_data->gpregset.GetByteSize() > 0)
589 {
590 m_thread_data.push_back(*thread_data);
591 }
592 }
593
594 uint32_t
GetNumThreadContexts()595 ProcessElfCore::GetNumThreadContexts ()
596 {
597 if (!m_thread_data_valid)
598 DoLoadCore();
599 return m_thread_data.size();
600 }
601
602 ArchSpec
GetArchitecture()603 ProcessElfCore::GetArchitecture()
604 {
605 ObjectFileELF *core_file = (ObjectFileELF *)(m_core_module_sp->GetObjectFile());
606 ArchSpec arch;
607 core_file->GetArchitecture(arch);
608 return arch;
609 }
610
611 const lldb::DataBufferSP
GetAuxvData()612 ProcessElfCore::GetAuxvData()
613 {
614 const uint8_t *start = m_auxv.GetDataStart();
615 size_t len = m_auxv.GetByteSize();
616 lldb::DataBufferSP buffer(new lldb_private::DataBufferHeap(start, len));
617 return buffer;
618 }
619
620