BearParser
Portable Executable parsing library (from PE-bear)
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SectHdrsWrapper.cpp
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2#include "pe/PEFile.h"
3
4using namespace buf_util;
5
6const size_t SectionHdrWrapper::SECNAME_LEN = 8;
7
10
11std::map<DWORD, QString> SectionHdrWrapper::s_secHdrCharact;
12
14{
15 char rights[] = "---";
16
18 rights[0] = 'r';
20 rights[1] = 'w';
22 rights[2] = 'x';
23 return rights;
24}
25
27{
28 secHdrCharact[SCN_MEM_READ] = "readable";
29 secHdrCharact[SCN_MEM_WRITE] = "writeable";
30 secHdrCharact[SCN_MEM_EXECUTE] = "executable";
31
32 secHdrCharact[SCN_LNK_NRELOC_OVFL] = "contains extended relocations";
33 secHdrCharact[SCN_MEM_DISCARDABLE] = "discardable";
34 secHdrCharact[SCN_MEM_NOT_CACHED] = "not cachable";
35 secHdrCharact[SCN_MEM_NOT_PAGED] = "pageable";
36 secHdrCharact[SCN_MEM_SHARED] = "shareable";
38 secHdrCharact[SCN_CNT_INITIALIZED_DATA] = "initialized data";
39 secHdrCharact[SCN_CNT_UNINITIALIZED_DATA] = "uninitialized data";
40}
41
43{
44 if (s_secHdrCharact.size() == 0) {
45 initSecCharacter(s_secHdrCharact);
46 }
47 std::vector<DWORD> chSet;
48 std::map<DWORD, QString>::iterator iter;
49 for (iter = s_secHdrCharact.begin(); iter != s_secHdrCharact.end(); ++iter) {
50 if (charact & iter->first) {
51 chSet.push_back(iter->first);
52 }
53 }
54 return chSet;
55}
56
58{
59 if (s_secHdrCharact.size() == 0) {
60 initSecCharacter(s_secHdrCharact);
61 }
62
63 if (s_secHdrCharact.find(charact) == s_secHdrCharact.end()) return "";
64 return s_secHdrCharact[charact];
65}
66
67//----
68
70{
71 this->clear();
72
73 this->header = NULL;
74 getPtr();
75 reloadName();
76 return true;
77}
78
80{
81 if (m_PE == NULL) return NULL;
82
83 if (header != NULL) {
84 return (void*) this->header;
85 }
86
89
90 //cache the header:
92 return (void*) this->header;
93}
94
96{
98 if (!header) return false;
99
100 if (this->name) {
101 if (memcmp(this->name, header->Name, SECNAME_LEN) == 0) {
102 return true; //no need to reload
103 }
104 }
105 const size_t BUF_LEN = SECNAME_LEN + 2;
106 if (!this->name) {
107 this->name = (char*)::calloc(BUF_LEN, 1);
108 }
109 ::memset(this->name, 0, BUF_LEN);
110 ::memcpy(this->name, header->Name, SECNAME_LEN);
111 this->mappedName = this->name;
112 if (this->mappedName.length() == 0) {
113 this->mappedName = "#" + QString::number(this->sectNum, 10);
114 }
115 return true;
116}
117
119{
120 if (m_PE == NULL) return 0;
121 return sizeof(IMAGE_SECTION_HEADER);
122}
123
125{
126 //reloadName();
127 if (!this->name) return ""; //cannot load
128 return this->name;
129}
130
132{
134 if (!sec) return NULL;
135 if (!this->name) return NULL;
136 switch (fieldId)
137 {
138 case NAME: return (void*) &sec->Name;
139 case VSIZE: return (void*) &sec->Misc.VirtualSize;
140 case VPTR: return (void*) &sec->VirtualAddress;
141 case RSIZE: return (void*) &sec->SizeOfRawData;
142 case RPTR: return(void*) &sec->PointerToRawData;
143
144 case RELOC_PTR: return (void*) &sec->PointerToRelocations;
145 case RELOC_NUM: return (void*) &sec->NumberOfRelocations;
146 case LINENUM_PTR: return (void*) &sec->PointerToLinenumbers;
147 case LINENUM_NUM: return (void*) &sec->NumberOfLinenumbers;
148
149 case CHARACT: return (void*) &sec->Characteristics;
150 }
151 return this->getPtr();
152}
153
155{
156 switch (fieldId)
157 {
158 case NAME: return "Name";
159 case VSIZE: return "Virtual Size";
160 case VPTR: return "Virtual Addr.";
161 case RSIZE: return "Raw size";
162 case RPTR: return "Raw Addr.";
163 case CHARACT: return "Characteristics";
164 case RELOC_PTR: return "Ptr to Reloc.";
165 case RELOC_NUM: return "Num. of Reloc.";
166 case LINENUM_PTR: return "Ptr to Linenum.";
167 case LINENUM_NUM: return "Num. of Linenum.";
168 }
169 return "";
170}
171
173{
174 switch (fieldId)
175 {
176 case VPTR: return Executable::RVA;
177 case RPTR: return Executable::RAW;
178 //case RELOC_PTR: return Executable::RAW;
179 }
181}
182
190
191
192// offset that is declared in header
194{
195 if (this->header == NULL) return INVALID_ADDR;
196 offset_t offset = INVALID_ADDR;
197
198 if (aType == Executable::RAW) {
199 offset = static_cast<offset_t>(this->header->PointerToRawData);//(this->getNumValue(RPTR, &isOk));
200 } else if (aType == Executable::VA || aType == Executable::RVA) {
201 offset = static_cast<offset_t>(this->header->VirtualAddress);//this->getNumValue(VPTR, &isOk));
202 }
203 return offset;
204}
205
207{
209 if (!useMapped) {
210 return offset; //returning as is
211 }
212 if (aType == Executable::RAW) {
214 const size_t units = pe_util::unitsCount(offset, align, false);
215 const offset_t rounded = units * align; //round down to section alignment
216 if (rounded != 0) {
217 offset = rounded;
218 }
219 const size_t peSize = m_PE->getMappedSize(aType);
220 if (offset > peSize) {
221 offset = INVALID_ADDR;
222 }
223 }
224 return offset;
225}
226
236
237// size that is declared in header
239{
240 if (this->header == NULL) return 0;
241 bufsize_t size = 0;
242
243 if (aType == Executable::RAW) {
244 size = static_cast<bufsize_t>(this->header->SizeOfRawData);//this->getNumValue(RSIZE, &isOk));
245 } else if (aType == Executable::VA || aType == Executable::RVA) {
246 size = static_cast<bufsize_t>(this->header->Misc.VirtualSize);//this->getNumValue(VSIZE, &isOk));
247 }
248 return size;
249}
250
251//RAW size that is really mapped
253{
255
257 if (secOffset == INVALID_ADDR) {
258 return 0; //invalid addr, nothing is mapped
259 }
260 const bufsize_t peSize = m_PE->getRawSize();
261 if (secOffset > peSize) {
262 return 0; //out of scope
263 }
265 if (rawSize == 0) {
266 return 0; // no changes
267 }
269 if (virtualSize < rawSize) {
270 // if Virtual Size is smaller than the raw size, it means not full raw size will be mapped
272 }
273 // round up to the file alignment unit:
275 if (unit != 0) {
277 }
279 //trim to the file size:
280 if (secEnd > peSize) {
281 const bufsize_t trimmedSize = peSize - secOffset; // trim to the file size
282 if (virtualSize) {
284 if (unit != 0) {
286 }
287 }
288 if ((virtualSize != 0) && (trimmedSize > virtualSize)) {
289 return virtualSize;
290 }
291 return trimmedSize;
292 }
293 return rawSize;
294}
295
296//VirtualSize that is really mapped
298{
299 if (!m_PE) return 0;
300
302
304 if (startOffset == INVALID_ADDR) {
305 return 0; //invalid addr, nothing is mapped
306 }
307
310
313 if (unit) {
315 }
316 // trim to Image Size:
319 if (imgSize < startOffset) {
320 return 0;
321 }
322
323 // trim to next section
324 int secCounter = m_PE->_getSectionsCount(true);
325 for (size_t i = 0; i < secCounter; i++) {
327 if (!sec) continue;
328
330 if (currOffset == INVALID_ADDR) continue;
333 }
334 }
335 //trim to image size:
336 if (secEnd > imgSize) {
338 return trimmedSize;
339 }
340 return (secEnd - startOffset);
341}
342
344{
345 if (!this->header || !m_PE) return 0;
346
347 bufsize_t size = 0;
348 if (!recalculate) {
350 //printf("Declared size = %llx\n---\n", size);
351 return size;
352 }
353 //---
354 if (aType == Executable::RAW) {
355 //printf ("R: ");
356 size = getMappedRawSize();
357 }
359 size = getMappedVirtualSize();
360 //printf ("V: ");
361 }
362 //printf("Mapped size = %llx\n", size);
363 return size;
364}
365
366//-----------------------------------------------------------------------------------
367
368bool SectHdrsWrapper::isMyEntryType(ExeNodeWrapper *entry)
369{
371 if (sEntry == NULL) {
372 return false;
373 }
374 return true;
375}
376
378{
381 if (entrySize == 0) return false;
382
384 bool haveSpace = this->m_Exe->isAreaEmpty(nextOffset, paddedSize);
385 return haveSpace;
386}
387
389{
390 if (m_PE == NULL) return NULL;
391
392 size_t secCount = m_PE->hdrSectionsNum();
393 if (secCount == SECT_COUNT_MAX) return NULL; //limit exceeded
394
395 if (ExeNodeWrapper::addEntry(entry) == NULL) return NULL;
396
397 size_t count = secCount + 1;
398 if (m_PE->setHdrSectionsNum(count) == false) {
399 return NULL;
400 }
401 return getLastEntry();
402}
403
404void SectHdrsWrapper::clear()
405{
407 this->rSec.clear();
408 this->vSec.clear();
409}
410
411bool SectHdrsWrapper::loadNextEntry(size_t entryNum)
412{
413 SectionHdrWrapper *sec = new SectionHdrWrapper(this->m_PE, entryNum);
414 if (sec == NULL) return false;
415 if (sec->getPtr() == NULL) {
416 Logger::append(Logger::D_WARNING, "Deleting invalid section...");
417 delete sec;
418 sec = NULL;
419 return false;
420 }
421 this->entries.push_back(sec);
422 addMapping(sec);
423 return true;
424}
425
426void SectHdrsWrapper::addMapping(SectionHdrWrapper *sec)
427{
428 if (sec == NULL) return;
429 bool recalculate = true;
430 if (sec->getContentSize(Executable::RAW, true) == 0) {
431 //printf("skipping empty section..\n");
432 return;
433 }
434 const offset_t endRVA = sec->getContentEndOffset(Executable::RVA, recalculate);
435 const offset_t endRaw = sec->getContentEndOffset(Executable::RAW, recalculate);
436 if (rSec.find(endRaw) != rSec.end()) { //already exist
438 if (prevSec == NULL) return;
439 // keep the bigger one (with lower start address) in the mapping
440 if (prevSec->getContentOffset(Executable::RAW) < sec->getContentOffset(Executable::RAW)) {
441 return; //skip
442 }
443 }
444 if (vSec.find(endRVA) != vSec.end()) { //already exist
446 if (prevSec == NULL) return;
447 // keep the bigger one (with lower start address) in the mapping
448 if (prevSec->getContentOffset(Executable::RVA) < sec->getContentOffset(Executable::RVA)) {
449 return; //skip
450 }
451 }
452 vSec[endRVA] = sec;
453 rSec[endRaw] = sec;
454 return;
455}
456
458{
460 this->rSec.clear();
461 this->vSec.clear();
462
463 size_t count = this->getEntriesCount();
464 for (size_t i = 0; i < count; i++) {
465 SectionHdrWrapper* sec = dynamic_cast<SectionHdrWrapper*>(this->getEntryAt(i));
466 if (sec == NULL) continue;
467 addMapping(sec);
468 }
469}
470
472{
474
475 this->clear();
476 if (this->m_PE == NULL) return false;
477 size_t count = this->m_PE->hdrSectionsNum();
478 for (size_t i = 0; i < count && i < SECT_COUNT_MAX; i++) {
479 if (this->loadNextEntry(i) == false) break;
480 }
481 return true;
482}
483
485{
487 return this->entries.size();
488}
489
491{
493
494 if (entries.size() == 0) return NULL;
495 return entries[0]->getPtr();
496}
497
499{
501
502 if (this->m_PE == NULL) return 0;
503
504 size_t secCount = this->entries.size();
505 if (!secCount) return 0;
506
508 offset_t fileSize = m_PE->getRawSize();
510
511 if (endOffset > fileSize) {
512 return bufsize_t (fileSize - hdrOffset);
513 }
514 return bufsize_t (endOffset - hdrOffset);
515}
516/*
517void* SectHdrsWrapper::getFieldPtr(size_t fieldId, size_t subField)
518{
519 if (fieldId >= entries.size()) return NULL;
520 return entries[fieldId]->getFieldPtr(subField);
521}
522*/
524{
525 if (fieldId >= entries.size()) return NULL;
526 return entries[fieldId]->getName();
527}
528
530{
531 size_t size = this->entries.size();
532 std::map<offset_t, SectionHdrWrapper*> *secMap = NULL;
533
534 if (addrType == Executable::RAW) {
535 secMap = &this->rSec;
536 } else if (addrType == Executable::RVA || addrType == Executable::VA) {
537 secMap = &this->vSec;
538 }
539 if (secMap == NULL) return NULL;
540
541 std::map<offset_t, SectionHdrWrapper*>::iterator found = secMap->lower_bound(offset);
542 std::map<offset_t, SectionHdrWrapper*>::iterator itr;
543 for (itr = found; itr != secMap->end(); ++itr) {
544 SectionHdrWrapper* sec = itr->second;
545 if (sec == NULL) continue; //TODO: check it
546 if (verbose) {
547 printf("found [%llX] key: %llX sec: %llX %llX\n",
548 static_cast<unsigned long long>(offset),
549 static_cast<unsigned long long>(itr->first),
550 static_cast<unsigned long long>(sec->getContentOffset(addrType)),
551 static_cast<unsigned long long>(sec->getContentEndOffset(addrType, false))
552 );
553 }
554
555 offset_t startOffset = sec->getContentOffset(addrType);
556 if (startOffset == INVALID_ADDR) continue;
557
558 offset_t endOffset = sec->getContentEndOffset(addrType, recalculate);
559
560 if (offset >= startOffset && offset < endOffset) {
561 return sec;
562 }
563 if (offset < startOffset) break;
564 }
565 return NULL;
566}
567
569{
570 std::map<offset_t, SectionHdrWrapper*> *secMap = NULL;
571
572 if (aType == Executable::RAW) {
573 secMap = &this->rSec;
574 } else if (aType == Executable::RVA || aType == Executable::VA) {
575 secMap = &this->vSec;
576 }
577 if (secMap == NULL) return;
578
579 std::map<offset_t, SectionHdrWrapper*>::iterator itr;
580 for (itr = secMap->begin(); itr != secMap->end(); ++itr) {
581 SectionHdrWrapper* sec = itr->second;
582 offset_t secEnd = itr->first;
583
584 printf("[%llX] %s %llX %llX\n",
585 static_cast<unsigned long long>(secEnd),
586 sec->getName().toStdString().c_str(),
587 static_cast<unsigned long long>(sec->getContentOffset(aType)),
588 static_cast<unsigned long long>(sec->getContentEndOffset(aType, true))
589 );
590 }
591 printf("---\n\n");
592}
593
INT_TYPE _getNumValue(void *ptr)
uint32_t bufsize_t
const offset_t INVALID_ADDR
uint64_t offset_t
#define SEC_SHOW_LOCK
virtual bufsize_t getContentSize()=0
bool isAreaEmpty(offset_t rawOffset, bufsize_t size)
virtual bufsize_t getContentSize()
ExeNodeWrapper * getLastEntry()
virtual ExeNodeWrapper * getEntryAt(size_t fieldId)
virtual bufsize_t geEntrySize()
std::vector< ExeNodeWrapper * > entries
virtual offset_t getNextEntryOffset()
virtual size_t getEntriesCount()
virtual void clear()
virtual ExeNodeWrapper * addEntry(ExeNodeWrapper *entry)
BYTE * getContentAt(offset_t offset, bufsize_t size, bool allowExceptions=false)
Definition Executable.h:57
virtual offset_t getRawSize() const
Definition Executable.h:54
virtual bufsize_t getImageSize()
Definition Executable.h:66
virtual bufsize_t getMappedSize(Executable::addr_type aType)
Definition PEFile.cpp:290
SectionHdrWrapper * _getSecHdr(size_t index) const
Definition PEFile.h:322
offset_t secHdrsOffset() const
Definition PEFile.h:79
bool setHdrSectionsNum(size_t newNum)
Definition PEFile.cpp:341
size_t hdrSectionsNum() const
Definition PEFile.cpp:332
virtual bufsize_t getAlignment(Executable::addr_type aType) const
Definition PEFile.h:68
size_t _getSectionsCount(bool useMapped=true) const
Definition PEFile.cpp:363
void printSectionsMapping(Executable::addr_type aType)
ExeNodeWrapper * addEntry(ExeNodeWrapper *entry)
virtual bufsize_t getSize()
virtual QString getFieldName(size_t fieldId)
SectionHdrWrapper * getSecHdrAtOffset(offset_t offset, Executable::addr_type addrType, bool roundup, bool verbose=false)
virtual void reloadMapping()
virtual void * getPtr()
static size_t SECT_COUNT_MAX
static size_t SECT_INVALID_INDEX
virtual size_t getFieldsCount()
static std::vector< DWORD > splitCharacteristics(DWORD characteristics)
bufsize_t getMappedVirtualSize()
virtual QString getName()
virtual QString getFieldName(size_t fieldId)
offset_t getContentDeclaredOffset(Executable::addr_type aType)
static void initSecCharacter(std::map< DWORD, QString > &secHdrCharact)
virtual void * getFieldPtr(size_t fieldId, size_t subField=FIELD_NONE)
bufsize_t getContentDeclaredSize(Executable::addr_type aType)
virtual Executable::addr_type containsAddrType(size_t fieldId, size_t subField=FIELD_NONE)
static QString translateCharacteristics(DWORD charact)
offset_t getContentEndOffset(Executable::addr_type aType, bool roundup)
offset_t getContentOffset(Executable::addr_type aType, bool useMapped=true)
static QString getSecHdrAccessRightsDesc(DWORD characteristics)
virtual void * getPtr()
bufsize_t getMappedRawSize()
static const size_t SECNAME_LEN
virtual WrappedValue::data_type containsDataType(size_t fieldId, size_t subField=FIELD_NONE)
virtual bufsize_t getSize()
bool append(dbg_level lvl, const char *format,...)
Definition Util.cpp:8
@ D_WARNING
Definition Util.h:26
bufsize_t roundupToUnit(bufsize_t size, bufsize_t unit)
size_t unitsCount(uint64_t value, uint64_t unit, bool roundup=true)
Definition Util.h:47