DebugTarget.cpp 73 KB

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  1. #include "DebugTarget.h"
  2. #include "WinDebugger.h"
  3. #include "DWARFInfo.h"
  4. #include "BeefySysLib/FileStream.h"
  5. #include "BeefySysLib/MemStream.h"
  6. #include "BeefySysLib/Util/BeefPerf.h"
  7. #include "DebugManager.h"
  8. #include "HotHeap.h"
  9. //#include <Winternl.h>
  10. #include "BeefySysLib/util/AllocDebug.h"
  11. USING_NS_BF_DBG;
  12. #define GET(T) *((T*)(data += sizeof(T)) - 1)
  13. #define GET_FROM(ptr, T) *((T*)(ptr += sizeof(T)) - 1)
  14. DebugTarget::DebugTarget(WinDebugger* debugger)
  15. {
  16. mCheckedCompilerSettings = false;
  17. mBfObjectHasFlags = false;
  18. mBfObjectHasVDataExtender = false;
  19. mBfObjectVDataIntefaceSlotCount = -1;
  20. mBfObjectSize = -1;
  21. mDebugger = debugger;
  22. mLaunchBinary = NULL;
  23. mTargetBinary = NULL;
  24. mCapturedNamesPtr = NULL;
  25. mCapturedTypesPtr = NULL;
  26. mHotHeap = NULL;
  27. mLastHotHeapCleanIdx = 0;
  28. mIsEmpty = false;
  29. mWasLocallyBuilt = false;
  30. /*dbgType = new DbgType();
  31. dbgType->mName = "int";
  32. dbgType->mTypeCode = DbgType_i32;
  33. dbgType->mSize = 4;
  34. mPrimitiveTypes[DbgType_i32] = dbgType;*/
  35. }
  36. DebugTarget::~DebugTarget()
  37. {
  38. for (auto dwarf : mDbgModules)
  39. delete dwarf;
  40. for (auto& dwSrcFilePair : mSrcFiles)
  41. delete dwSrcFilePair.mValue;
  42. delete mHotHeap;
  43. mHotHeap = NULL;
  44. }
  45. static bool PathEquals(const String& pathA, String& pathB)
  46. {
  47. const char* ptrA = pathA.c_str();
  48. const char* ptrB = pathB.c_str();
  49. while (true)
  50. {
  51. char cA = *(ptrA++);
  52. char cB = *(ptrB++);
  53. if ((cA == 0) || (cB == 0))
  54. {
  55. return (cA == 0) && (cB == 0);
  56. }
  57. cA = toupper((uint8)cA);
  58. cB = toupper((uint8)cB);
  59. if (cA == '\\')
  60. cA = '/';
  61. if (cB == '\\')
  62. cB = '/';
  63. if (cA != cB)
  64. return false;
  65. }
  66. return true;
  67. }
  68. void DebugTarget::SetupTargetBinary()
  69. {
  70. bool wantsHotHeap = mDebugger->mDbgProcessId == 0;
  71. #ifdef BF_DBG_32
  72. if (wantsHotHeap)
  73. mHotHeap = new HotHeap();
  74. #else
  75. if (wantsHotHeap)
  76. {
  77. // 64-bit hot loaded code needs to be placed close to the original EXE so 32-bit relative
  78. // offsets within the hot code can still reach the old code
  79. addr_target checkHotReserveAddr = (addr_target)mTargetBinary->mImageBase + mTargetBinary->mImageSize;
  80. int mb = 1024 * 1024;
  81. int reserveSize = 512 * mb;
  82. // Round up to MB boundary + 64MB, to help keep other DLLs at their preferred base addresses
  83. checkHotReserveAddr = ((checkHotReserveAddr + 64 * mb) & ~(mb - 1));
  84. checkHotReserveAddr = (addr_target)mTargetBinary->mImageBase;
  85. addr_target reservedPtr = NULL;
  86. while ((addr_target)checkHotReserveAddr < (addr_target)mTargetBinary->mImageBase + 0x30000000)
  87. {
  88. reservedPtr = (addr_target)VirtualAllocEx(mDebugger->mProcessInfo.hProcess, (void*)(intptr)checkHotReserveAddr, reserveSize, MEM_RESERVE, PAGE_EXECUTE_READWRITE);
  89. if (reservedPtr != NULL)
  90. break;
  91. checkHotReserveAddr += 4 * mb;
  92. }
  93. if (reservedPtr != 0)
  94. {
  95. BF_ASSERT(mHotHeap == NULL);
  96. mHotHeap = new HotHeap(reservedPtr, reserveSize);
  97. }
  98. //TODO: Throw actual error if we can't reserve HOT area
  99. BF_ASSERT(reservedPtr != NULL);
  100. }
  101. #endif
  102. }
  103. void DebugTarget::CheckTargetBinary(DbgModule* module)
  104. {
  105. if (mTargetBinary != NULL)
  106. return;
  107. if (!PathEquals(module->mFilePath, mTargetPath))
  108. return;
  109. mTargetBinary = module;
  110. if (mTargetBinary != mLaunchBinary)
  111. SetupTargetBinary();
  112. }
  113. DbgModule* DebugTarget::Init(const StringImpl& launchPath, const StringImpl& targetPath, intptr imageBase)
  114. {
  115. BP_ZONE("DebugTarget::Init");
  116. AutoDbgTime dbgTime("DebugTarget::Init Launch:" + launchPath + " Target:" + targetPath);
  117. mTargetPath = targetPath;
  118. FileStream fileStream;
  119. fileStream.mFP = _wfopen(UTF8Decode(launchPath).c_str(), L"rb");
  120. if (fileStream.mFP == NULL)
  121. {
  122. mDebugger->OutputMessage(StrFormat("Debugger failed to open binary: %s\n", launchPath.c_str()));
  123. return NULL;
  124. }
  125. DbgModule* dwarf = new COFF(this);
  126. mLaunchBinary = dwarf;
  127. dwarf->mDisplayName = GetFileName(launchPath);
  128. dwarf->mFilePath = launchPath;
  129. dwarf->mImageBase = (intptr)imageBase;
  130. if (!dwarf->ReadCOFF(&fileStream, false))
  131. {
  132. mDebugger->OutputMessage(StrFormat("Debugger failed to read binary: %s\n", launchPath.c_str()));
  133. delete dwarf;
  134. return NULL;
  135. }
  136. CheckTargetBinary(dwarf);
  137. mDbgModules.push_back(dwarf);
  138. return dwarf;
  139. }
  140. void DebugTarget::CreateEmptyTarget()
  141. {
  142. auto emptyTarget = new DbgModule(this);
  143. mDbgModules.push_back(emptyTarget);
  144. mTargetBinary = emptyTarget;
  145. mLaunchBinary = emptyTarget;
  146. }
  147. DbgModule* DebugTarget::HotLoad(const StringImpl& fileName, int hotIdx)
  148. {
  149. BP_ZONE("DebugTarget::HotLoad");
  150. AutoDbgTime dbgTime("DebugTarget::HotLoad " + fileName);
  151. FileStream fileStream;
  152. fileStream.mFP = _wfopen(UTF8Decode(fileName).c_str(), L"rb");
  153. if (fileStream.mFP == NULL)
  154. {
  155. mDebugger->OutputMessage(StrFormat("Debugger failed to open binary: %s\n", fileName.c_str()));
  156. return NULL;
  157. }
  158. DbgModule* dwarf = new COFF(this);
  159. dwarf->mHotIdx = hotIdx;
  160. dwarf->mDisplayName = GetFileName(fileName);
  161. dwarf->mFilePath = fileName;
  162. if (!dwarf->ReadCOFF(&fileStream, true))
  163. {
  164. mDebugger->OutputMessage(StrFormat("Debugger failed to read binary: %s\n", fileName.c_str()));
  165. delete dwarf;
  166. return NULL;
  167. }
  168. mDbgModules.push_back(dwarf);
  169. return dwarf;
  170. }
  171. DbgModule* DebugTarget::SetupDyn(const StringImpl& filePath, DataStream* stream, intptr imageBase)
  172. {
  173. BP_ZONE("DebugTarget::SetupDyn");
  174. AutoDbgTime dbgTime("DebugTarget::SetupDyn " + filePath);
  175. DbgModule* dwarf = new COFF(this);
  176. dwarf->mFilePath = filePath;
  177. dwarf->mImageBase = (intptr)imageBase;
  178. if (!dwarf->ReadCOFF(stream, false))
  179. {
  180. //mDebugger->OutputMessage(StrFormat("Debugger failed to read binary: %s", fileName.c_str()));
  181. delete dwarf;
  182. return NULL;
  183. }
  184. mDbgModules.push_back(dwarf);
  185. dwarf->mDisplayName = GetFileName(filePath);
  186. dwarf->mOrigImageData = new DbgModuleMemoryCache(dwarf->mImageBase, dwarf->mImageSize);
  187. CheckTargetBinary(dwarf);
  188. /*dbgModule->mOrigImageData = new uint8[dbgModule->mImageSize];
  189. memset(dbgModule->mOrigImageData, 0xCC, dbgModule->mImageSize);
  190. for (auto& section : dbgModule->mSections)
  191. {
  192. bool couldRead = mDebugger->ReadMemory((intptr)imageBase + section.mAddrStart, section.mAddrLength, dbgModule->mOrigImageData + section.mAddrStart);
  193. BF_ASSERT(couldRead);
  194. }
  195. dbgModule->GotImageData();*/
  196. return dwarf;
  197. }
  198. String DebugTarget::UnloadDyn(addr_target imageBase)
  199. {
  200. String filePath;
  201. AutoDbgTime dbgTime("DebugTarget::UnloadDyn");
  202. for (int i = 0; i < (int)mDbgModules.size(); i++)
  203. {
  204. DbgModule* dwarf = mDbgModules[i];
  205. if (dwarf->mImageBase == imageBase)
  206. {
  207. dwarf->mDeleting = true;
  208. dwarf->RemoveTargetData();
  209. RemoveTargetData();
  210. filePath = dwarf->mFilePath;
  211. if (mTargetBinary == dwarf)
  212. mTargetBinary = NULL;
  213. delete dwarf;
  214. mDbgModules.erase(mDbgModules.begin() + i);
  215. return filePath;
  216. }
  217. }
  218. return "";
  219. }
  220. void DebugTarget::CleanupHotHeap()
  221. {
  222. //TODO: We have more work to do before this catches all the required cases
  223. return;
  224. bool hadRemovals = false;
  225. for (int dwarfIdx = 0; dwarfIdx < (int)mDbgModules.size(); dwarfIdx++)
  226. {
  227. DbgModule* dbgModule = mDbgModules[dwarfIdx];
  228. if (dbgModule->mIsHotObjectFile)
  229. {
  230. if (!mHotHeap->IsReferenced(dbgModule->mImageBase, dbgModule->mImageSize))
  231. {
  232. Beefy::OutputDebugStrF("Clearing hot module %p data from %@ to %@\n", dbgModule, dbgModule->mImageBase, dbgModule->mImageBase + dbgModule->mImageSize);
  233. BfLogDbg("Unloading hot idx: %s@%d\n", dbgModule->mFilePath.c_str(), dbgModule->mHotIdx);
  234. dbgModule->mDeleting = true;
  235. dbgModule->RemoveTargetData();
  236. hadRemovals = true;
  237. }
  238. }
  239. }
  240. if (hadRemovals)
  241. {
  242. RemoveTargetData();
  243. for (int dwarfIdx = 0; dwarfIdx < (int)mDbgModules.size(); dwarfIdx++)
  244. {
  245. DbgModule* dbgModule = mDbgModules[dwarfIdx];
  246. if (dbgModule->mDeleting)
  247. {
  248. delete dbgModule;
  249. mDbgModules.erase(mDbgModules.begin() + dwarfIdx);
  250. dwarfIdx--;
  251. }
  252. }
  253. }
  254. }
  255. void DebugTarget::RehupSrcFiles()
  256. {
  257. for (auto srcFile : mPendingSrcFileRehup)
  258. srcFile->RehupLineData();
  259. mPendingSrcFileRehup.Clear();
  260. }
  261. DbgSrcFile* DebugTarget::AddSrcFile(const String& srcFilePath)
  262. {
  263. String filePath = FixPathAndCase(srcFilePath);
  264. DbgSrcFile* dwSrcFile = NULL;
  265. DbgSrcFile** dwSrcFilePtr = NULL;
  266. if (mSrcFiles.TryAdd(filePath, NULL, &dwSrcFilePtr))
  267. {
  268. dwSrcFile = new DbgSrcFile();
  269. dwSrcFile->mFilePath = FixPath(srcFilePath);
  270. *dwSrcFilePtr = dwSrcFile;
  271. }
  272. else
  273. {
  274. dwSrcFile = *dwSrcFilePtr;
  275. }
  276. return dwSrcFile;
  277. }
  278. DbgSrcFile* DebugTarget::GetSrcFile(const String& srcFilePath)
  279. {
  280. String filePath = FixPathAndCase(srcFilePath);
  281. DbgSrcFile* srcFile = NULL;
  282. if (!mSrcFiles.TryGetValue(filePath, &srcFile))
  283. {
  284. String* origSrcPath;
  285. if (mLocalToOrigSrcMap.TryGetValue(filePath, &origSrcPath))
  286. {
  287. mSrcFiles.TryGetValue(*origSrcPath, &srcFile);
  288. }
  289. }
  290. return srcFile;
  291. }
  292. bool DebugTarget::FindSymbolAt(addr_target addr, String* outSymbol, addr_target* outOffset, DbgModule** outDWARF)
  293. {
  294. //TODO: First search for symbol, then determine if the addr is within the defining DbgModule
  295. DbgModule* insideDWARF = NULL;
  296. /*for (auto dbgModule : mDbgModules)
  297. {
  298. for (int i = 0; i < (int)dbgModule->mSections.size(); i++)
  299. {
  300. auto section = &dbgModule->mSections[i];
  301. if ((addr >= section->mAddrStart + dbgModule->mImageBase) && (addr < section->mAddrStart + dbgModule->mImageBase + section->mAddrLength))
  302. {
  303. insideDWARF = dbgModule;
  304. }
  305. }
  306. }*/
  307. //mDebugger->ReadMemory(addr, )
  308. auto dbgModule = FindDbgModuleForAddress(addr);
  309. if (dbgModule != NULL)
  310. dbgModule->ParseSymbolData();
  311. auto dwSymbol = mSymbolMap.Get(addr, 16*1024*1024);
  312. if (dwSymbol != NULL)
  313. {
  314. dbgModule = dwSymbol->mDbgModule;
  315. }
  316. if (dbgModule == NULL)
  317. return false;
  318. if (outDWARF != NULL)
  319. *outDWARF = dbgModule;
  320. bool isExecutable = false;
  321. bool isInsideSomeSegment = false;
  322. for (int i = 0; i < (int)dbgModule->mSections.size(); i++)
  323. {
  324. auto section = &dbgModule->mSections[i];
  325. if ((addr >= section->mAddrStart + dbgModule->mImageBase) && (addr < section->mAddrStart + dbgModule->mImageBase + section->mAddrLength))
  326. {
  327. if (dbgModule->HasPendingDebugInfo())
  328. {
  329. if ((dbgModule->WantsAutoLoadDebugInfo()) && (!mDebugger->mPendingDebugInfoLoad.Contains(dbgModule)))
  330. {
  331. mDebugger->mPendingDebugInfoLoad.Add(dbgModule);
  332. }
  333. //mDebugger->LoadDebugInfoForModule(dbgModule);
  334. }
  335. isInsideSomeSegment = true;
  336. if (section->mIsExecutable)
  337. isExecutable = true;
  338. }
  339. }
  340. if (!isInsideSomeSegment)
  341. return false;
  342. //if ((addr < dwSymbol->mDbgModule->mImageBase) || (addr >= dwSymbol->mDbgModule->mImageBase + dwSymbol->mDbgModule->mImageSize))
  343. //return false;
  344. if (dwSymbol == NULL)
  345. return false;
  346. if (isExecutable)
  347. {
  348. addr_target thunkAddr = mDebugger->mCPU->DecodeThunk(addr, dwSymbol->mDbgModule->mOrigImageData);
  349. if (thunkAddr != 0)
  350. {
  351. if (FindSymbolAt(thunkAddr, outSymbol, outOffset, outDWARF))
  352. return true;
  353. }
  354. }
  355. if (outSymbol != NULL)
  356. {
  357. *outSymbol = dwSymbol->mName;
  358. }
  359. if (outOffset != NULL)
  360. *outOffset = addr - dwSymbol->mAddress;
  361. else if (addr != dwSymbol->mAddress)
  362. return false;
  363. return true;
  364. }
  365. addr_target DebugTarget::FindSymbolAddr(const StringImpl& name)
  366. {
  367. //TODO: Search through all modules?
  368. auto dbgModule = GetMainDbgModule();
  369. if (dbgModule != NULL)
  370. {
  371. auto entry = dbgModule->mSymbolNameMap.Find(name.c_str());
  372. if (entry!= NULL)
  373. {
  374. DbgSymbol* dwSymbol = entry->mValue;
  375. return dwSymbol->mAddress;
  376. }
  377. }
  378. return (addr_target)-1;
  379. }
  380. bool DebugTarget::GetValueByName(DbgSubprogram* subProgram, const StringImpl& name, WdStackFrame* stackFrame, intptr* outAddr, DbgType** outType, DbgAddrType* outAddrType)
  381. {
  382. BP_ZONE("DebugTarget::GetValueByName");
  383. //BF_ASSERT(*outAddrType == DbgAddrType_None);
  384. String checkName = name;
  385. if (subProgram != NULL)
  386. {
  387. subProgram->PopulateSubprogram();
  388. if (GetValueByNameInBlock(subProgram, &subProgram->mBlock, checkName, stackFrame, outAddr, outType, outAddrType))
  389. return true;
  390. }
  391. for (int dwarfIdx = mDbgModules.size() - 1; dwarfIdx >= 0; dwarfIdx--)
  392. {
  393. DbgModule* dwarf = mDbgModules[dwarfIdx];
  394. for (auto compileUnit : dwarf->mCompileUnits)
  395. {
  396. if (GetValueByNameInBlock(NULL, compileUnit->mGlobalBlock, checkName, stackFrame, outAddr, outType, outAddrType))
  397. return true;
  398. }
  399. }
  400. return false;
  401. }
  402. static const uint64 kAutoStaticBucketPageSize = 1024ull;
  403. void DebugTarget::AddAutoStaticEntry(const DbgAutoStaticEntry& entry)
  404. {
  405. uint64 remainingSize = entry.mAddrLen;
  406. uint64 offset = entry.mAddrStart % kAutoStaticBucketPageSize;
  407. uint64 curPage = entry.mAddrStart / kAutoStaticBucketPageSize;
  408. while (remainingSize > 0)
  409. {
  410. int bucketIndex = -1;
  411. /*auto map_iter = mAutoStaticEntryBucketMap.find((addr_target)curPage);
  412. if (map_iter != mAutoStaticEntryBucketMap.end())*/
  413. int* bucketIndexPtr = NULL;
  414. if (!mAutoStaticEntryBucketMap.TryAddRaw((addr_target)curPage, NULL, &bucketIndexPtr))
  415. {
  416. bucketIndex = *bucketIndexPtr;
  417. }
  418. else
  419. {
  420. bucketIndex = (int)mAutoStaticEntryBuckets.size();
  421. *bucketIndexPtr = bucketIndex;
  422. mAutoStaticEntryBuckets.push_back(Array<DbgAutoStaticEntry>());
  423. //mAutoStaticEntryBucketMap[(addr_target)curPage] = bucketIndex;
  424. }
  425. mAutoStaticEntryBuckets[bucketIndex].push_back(entry);
  426. uint64 adjSize = BF_MIN(kAutoStaticBucketPageSize - offset, remainingSize);
  427. remainingSize -= adjSize;
  428. offset = 0;
  429. ++curPage;
  430. }
  431. }
  432. void DebugTarget::IterateAutoStaticEntries(uint64 memoryRangeStart, uint64 memoryRangeLen, std::function<void(DbgAutoStaticEntry const&)>& func)
  433. {
  434. uint64 remainingSize = memoryRangeLen;
  435. uint64 offset = memoryRangeStart % kAutoStaticBucketPageSize;
  436. uint64 curPage = memoryRangeStart / kAutoStaticBucketPageSize;
  437. HashSet<DbgVariable*> foundVariables;
  438. while (remainingSize > 0)
  439. {
  440. //int bucketIndex = -1;
  441. /*auto map_iter = mAutoStaticEntryBucketMap.find((addr_target)curPage);
  442. if (map_iter != mAutoStaticEntryBucketMap.end())*/
  443. int* bucketIndexPtr = NULL;
  444. if (mAutoStaticEntryBucketMap.TryGetValue((addr_target)curPage, &bucketIndexPtr))
  445. {
  446. auto const & bucket = mAutoStaticEntryBuckets[*bucketIndexPtr];
  447. for (auto const & entry : bucket)
  448. {
  449. uint64 rangeMin = BF_MAX((uint64)entry.mAddrStart, memoryRangeStart);
  450. uint64 rangeMax = BF_MIN((uint64)entry.mAddrStart + entry.mAddrLen, memoryRangeStart + memoryRangeLen);
  451. if (rangeMin > rangeMax)
  452. continue;
  453. if (foundVariables.Contains(entry.mVariable))
  454. continue;
  455. func(entry);
  456. foundVariables.Add(entry.mVariable);
  457. }
  458. }
  459. uint64 adjSize = std::min(kAutoStaticBucketPageSize - offset, remainingSize);
  460. remainingSize -= adjSize;
  461. offset = 0;
  462. ++curPage;
  463. }
  464. }
  465. void DebugTarget::EvaluateAutoStaticVariable(DbgVariable* variable, const StringImpl& fullName)
  466. {
  467. BF_ASSERT(variable->mIsStatic && !variable->mIsConst); // why are you calling this if you haven't checked these yet
  468. BF_ASSERT(!variable->mInAutoStaticMap);
  469. if ((variable->mLocationData != NULL) && (variable->mLocationLen > 0))
  470. {
  471. DbgAddrType addrType = DbgAddrType_Local;
  472. addr_target variableAddr = variable->mStaticCachedAddr;
  473. if (variableAddr == 0)
  474. {
  475. addrType = DbgAddrType_Target;
  476. variableAddr = variable->mCompileUnit->mDbgModule->EvaluateLocation(NULL, variable->mLocationData, variable->mLocationLen, NULL/*registers*/, &addrType);
  477. }
  478. //BF_ASSERT((addrType == DbgAddrType_Value) || (variableAddr > 0));
  479. if ((addrType == DbgAddrType_Local) && (variableAddr != 0))
  480. {
  481. DbgAutoStaticEntry entry;
  482. entry.mFullName = fullName;
  483. entry.mVariable = variable;
  484. entry.mAddrStart = variableAddr;
  485. entry.mAddrLen = variable->mType->mSize;
  486. AddAutoStaticEntry(entry);
  487. variable->mInAutoStaticMap = true;
  488. }
  489. }
  490. }
  491. void DebugTarget::GetAutoValueNames(DbgAutoValueMapType& outAutos, WdStackFrame* stackFrame, uint64 memoryRangeStart, uint64 memoryRangeLen)
  492. {
  493. BP_ZONE("DebugTarget::GetAutoValueNames");
  494. for (auto dbgModule : mDbgModules)
  495. {
  496. // one-time iteration of mTypeMap
  497. if (mAutoStaticEntryBuckets.empty())
  498. {
  499. if (dbgModule->mTypeMap.IsEmpty())
  500. continue;
  501. for (auto typeEntry : dbgModule->mTypeMap)
  502. {
  503. for (auto variable : typeEntry.mValue->mMemberList)
  504. {
  505. if (variable->mIsConst)
  506. continue;
  507. if (variable->mIsStatic)
  508. {
  509. String fullName = variable->mName;
  510. for (DbgType* scope = typeEntry.mValue; scope && scope->mTypeName; scope = scope->mParent)
  511. fullName = String(scope->mTypeName) + "." + fullName;
  512. EvaluateAutoStaticVariable(variable, fullName);
  513. }
  514. }
  515. }
  516. }
  517. for (int subProgramIdx = (int)dbgModule->mSubprograms.size() - 1; subProgramIdx >= 0; subProgramIdx--)
  518. {
  519. auto subProgram = dbgModule->mSubprograms[subProgramIdx];
  520. GetAutoValueNamesInBlock(outAutos, subProgram, &subProgram->mBlock, stackFrame, memoryRangeStart, memoryRangeLen);
  521. }
  522. for (auto compileUnit : dbgModule->mCompileUnits)
  523. {
  524. GetAutoValueNamesInBlock(outAutos, NULL, compileUnit->mGlobalBlock, stackFrame, memoryRangeStart, memoryRangeLen);
  525. }
  526. }
  527. std::function<void(const DbgAutoStaticEntry&)> iterFunc = [this, &outAutos](const DbgAutoStaticEntry& entry)
  528. {
  529. //outAutos.insert(DbgAutoValueMapType::value_type(entry.mFullName, DbgAutoValueMapType::value_type::second_type(entry.mAddrStart, entry.mAddrLen)));
  530. outAutos.TryAdd(entry.mFullName, std::make_pair(entry.mAddrStart, entry.mAddrLen));
  531. };
  532. IterateAutoStaticEntries(memoryRangeStart, memoryRangeLen, iterFunc);
  533. }
  534. void DebugTarget::GetAutoValueNamesInBlock(DbgAutoValueMapType& outAutos, DbgSubprogram* dwSubprogram, DbgBlock* dwBlock, WdStackFrame* stackFrame, uint64 memoryRangeStart, uint64 memoryRangeLen)
  535. {
  536. addr_target pc = stackFrame->GetSourcePC();
  537. if (dwSubprogram != NULL)
  538. {
  539. auto dwarf = dwSubprogram->mCompileUnit->mDbgModule;
  540. if (dwBlock->mLowPC == -1)
  541. {
  542. //Debug ranges
  543. addr_target* rangeData = (addr_target*)(dwarf->mDebugRangesData + dwBlock->mHighPC);
  544. while (true)
  545. {
  546. addr_target lowPC = *(rangeData++);
  547. if (lowPC == 0)
  548. return;
  549. addr_target highPC = *(rangeData++);
  550. // Matches?
  551. if ((pc >= lowPC) && (pc < highPC))
  552. break;
  553. }
  554. }
  555. else if ((pc < dwBlock->mLowPC) || (pc >= dwBlock->mHighPC))
  556. return;
  557. }
  558. for (auto subBlocks : dwBlock->mSubBlocks)
  559. {
  560. GetAutoValueNamesInBlock(outAutos, dwSubprogram, subBlocks, stackFrame, memoryRangeStart, memoryRangeLen);
  561. }
  562. auto evalFunc = [this, &outAutos, stackFrame, dwSubprogram, memoryRangeStart, memoryRangeLen, dwBlock](Beefy::SLIList<DbgVariable*>& varList)
  563. {
  564. for (auto variable : varList)
  565. {
  566. if (variable->mIsConst)
  567. continue;
  568. if (variable->mRangeStart != 0)
  569. {
  570. auto curPC = stackFrame->mRegisters.GetPC();
  571. if ((curPC < variable->mRangeStart) || (curPC >= variable->mRangeStart + variable->mRangeLen))
  572. continue;
  573. }
  574. if (variable->mIsStatic)
  575. {
  576. if (!variable->mInAutoStaticMap && !dwBlock->mAutoStaticVariablesProcessed)
  577. EvaluateAutoStaticVariable(variable, variable->mName);
  578. if (variable->mInAutoStaticMap)
  579. continue; // we'll pick it up in IterateAutoStaticEntries if it's in range
  580. }
  581. if (variable->mName == NULL)
  582. continue;
  583. if (variable->mType == NULL)
  584. continue;
  585. uint64 variableAddr = 0;
  586. outAutos.TryAdd(variable->mName, std::make_pair(variableAddr, variable->mType->mSize));
  587. }
  588. };
  589. if (dwBlock == &dwSubprogram->mBlock)
  590. {
  591. evalFunc(dwSubprogram->mParams);
  592. }
  593. evalFunc(dwBlock->mVariables);
  594. dwBlock->mAutoStaticVariablesProcessed = true;
  595. }
  596. bool DebugTarget::GetAutoLocalsInBlock(Array<String>& outLocals, DbgSubprogram* dwSubprogram, DbgBlock* dwBlock, WdStackFrame* stackFrame, DbgLineData* dwLineData)
  597. {
  598. std::function<void(const StringImpl& localName)> _AddLocal = [&](const StringImpl& localName)
  599. {
  600. if (!outLocals.Contains(localName))
  601. outLocals.Add(localName);
  602. else
  603. _AddLocal(String("@") + localName);
  604. };
  605. addr_target pc = stackFrame->GetSourcePC();
  606. if (dwSubprogram != NULL)
  607. {
  608. auto dwarf = dwSubprogram->mCompileUnit->mDbgModule;
  609. if (dwBlock->mLowPC == -1)
  610. {
  611. //Debug ranges
  612. addr_target* rangeData = (addr_target*)(dwarf->mDebugRangesData + dwBlock->mHighPC);
  613. while (true)
  614. {
  615. addr_target lowPC = *(rangeData++);
  616. if (lowPC == 0)
  617. return false;
  618. addr_target highPC = *(rangeData++);
  619. // Matches?
  620. if ((pc >= lowPC) && (pc < highPC))
  621. break;
  622. }
  623. }
  624. else if ((pc < dwBlock->mLowPC) || (pc >= dwBlock->mHighPC))
  625. return false;
  626. }
  627. for (auto subBlock : dwBlock->mSubBlocks)
  628. {
  629. GetAutoLocalsInBlock(outLocals, dwSubprogram, subBlock, stackFrame, dwLineData);
  630. }
  631. if (dwBlock == &dwSubprogram->mBlock)
  632. {
  633. for (auto variable : dwSubprogram->mParams)
  634. {
  635. if ((variable->mName != NULL) &&
  636. (variable->mName[0] != '$') &&
  637. ((variable->mLocationData != NULL) || (variable->mIsConst)))
  638. _AddLocal(variable->mName);
  639. }
  640. }
  641. for (auto variable : dwBlock->mVariables)
  642. {
  643. if (variable->mRangeStart != 0)
  644. {
  645. auto curPC = stackFrame->GetSourcePC();
  646. if ((curPC < variable->mRangeStart) || (curPC >= variable->mRangeStart + variable->mRangeLen))
  647. continue;
  648. }
  649. if (//(dwLineData->mLine >= variable->mDeclLine) &&
  650. (variable->mName[0] != '$'))
  651. _AddLocal(variable->mName);
  652. }
  653. return true;
  654. }
  655. DbgSubprogram* DebugTarget::FindSubProgram(addr_target pc, DbgOnDemandKind onDemandKind)
  656. {
  657. BP_ZONE("WinDebugger::FindSubProgram");
  658. for (int pass = 0; pass < 2; pass++)
  659. {
  660. int mapBlockSize = 1 << DbgRadixMap<DbgSubprogramMapEntry*>::BLOCK_SHIFT;
  661. DbgSubprogram* foundSubprogram = NULL;
  662. // Even though the radix map is LIFO, we might find an inline parent in an earlier block
  663. // so we can't terminate the search until we exhaust the lookup
  664. addr_target bestStart = 0;
  665. for (int offset = 0; offset < DBG_MAX_LOOKBACK; offset += mapBlockSize)
  666. {
  667. DbgSubprogramMapEntry* subprogramMapEntry = mSubprogramMap.FindFirstLeafAt(pc - offset);
  668. while (subprogramMapEntry != NULL)
  669. {
  670. auto dwSubprogram = subprogramMapEntry->mEntry;
  671. if ((pc >= dwSubprogram->mBlock.mLowPC) && (pc < dwSubprogram->mBlock.mHighPC) && (dwSubprogram->mBlock.mLowPC > bestStart))
  672. {
  673. if ((dwSubprogram->mLineInfo != NULL) && (dwSubprogram->mLineInfo->mHasInlinees))
  674. {
  675. if (dwSubprogram->mNeedLineDataFixup)
  676. mDebugger->FixupLineDataForSubprogram(dwSubprogram);
  677. DbgSubprogram* inlinedSubprogram = NULL;
  678. if (dwSubprogram->FindClosestLine(pc, &inlinedSubprogram) != NULL)
  679. {
  680. return inlinedSubprogram;
  681. }
  682. }
  683. /*bool inGap = false;
  684. if (dwSubprogram->mHasLineGaps)
  685. {
  686. mDebugger->FixupLineDataForSubprogram(dwSubprogram);
  687. auto lineData = dwSubprogram->FindClosestLine(pc, 0, true);
  688. inGap == (lineData == NULL) || (lineData->mLine == -1);
  689. }
  690. if (!inGap)
  691. {
  692. foundSubprogram = dwSubprogram;
  693. bestStart = dwSubprogram->mBlock.mLowPC;
  694. }
  695. else
  696. {
  697. }*/
  698. return dwSubprogram;
  699. //foundSubprogram = dwSubprogram;
  700. //bestStart = dwSubprogram->mBlock.mLowPC;
  701. }
  702. subprogramMapEntry = subprogramMapEntry->mNext;
  703. }
  704. }
  705. if (foundSubprogram != NULL)
  706. return foundSubprogram;
  707. if (pass != 0)
  708. return NULL;
  709. DbgCompileUnitContrib* contrib = mContribMap.Get(pc, DBG_MAX_LOOKBACK);
  710. if ((contrib != NULL) && (pc >= contrib->mAddress) && (pc < contrib->mAddress + contrib->mLength))
  711. {
  712. contrib->mDbgModule->ParseCompileUnit(contrib->mCompileUnitId);
  713. }
  714. else if (onDemandKind != DbgOnDemandKind_None)
  715. {
  716. bool found = false;
  717. for (auto module : mDbgModules)
  718. {
  719. if ((pc >= module->mImageBase) && (pc < module->mImageBase + module->mImageSize))
  720. {
  721. if ((module->mFilePath.EndsWith("ntdll.dll", String::CompareKind_OrdinalIgnoreCase)) ||
  722. (module->mFilePath.EndsWith("kernel32.dll", String::CompareKind_OrdinalIgnoreCase)) ||
  723. (module->mFilePath.EndsWith("kernelbase.dll", String::CompareKind_OrdinalIgnoreCase)))
  724. {
  725. String symName;
  726. addr_target addrOfs = 0;
  727. if (FindSymbolAt(pc, &symName, &addrOfs))
  728. {
  729. // We don't need any symbols for the loader
  730. if ((symName == "LdrInitShimEngineDynamic") ||
  731. (symName == "DebugBreak"))
  732. continue;
  733. }
  734. }
  735. if (module->RequestDebugInfo(onDemandKind == DbgOnDemandKind_AllowRemote))
  736. {
  737. // Give another chance to ParseCompileUnit and then match again
  738. found = true;
  739. pass = -1;
  740. }
  741. }
  742. }
  743. // No contribution found
  744. if (!found)
  745. break;
  746. }
  747. }
  748. //BF_ASSERT(slowFoundSubprogram == foundSubprogram);
  749. return NULL;
  750. }
  751. void DebugTarget::GetCompilerSettings()
  752. {
  753. if (!mCheckedCompilerSettings)
  754. {
  755. auto dbgModule = GetMainDbgModule();
  756. if (dbgModule == NULL)
  757. return;
  758. DbgType* bfObjectType = dbgModule->FindType("System.CompilerSettings", NULL, DbgLanguage_Beef);
  759. if (bfObjectType != NULL)
  760. {
  761. bfObjectType->PopulateType();
  762. if (bfObjectType->IsBfObjectPtr())
  763. bfObjectType = bfObjectType->mTypeParam;
  764. for (auto member : bfObjectType->mMemberList)
  765. {
  766. if (strcmp(member->mName, "cHasDebugFlags") == 0)
  767. mBfObjectHasFlags = member->mConstValue != 0;
  768. if (strcmp(member->mName, "cHasVDataExtender") == 0)
  769. mBfObjectHasVDataExtender = member->mConstValue != 0;
  770. if (strcmp(member->mName, "cVDataIntefaceSlotCount") == 0)
  771. mBfObjectVDataIntefaceSlotCount = (int)member->mConstValue;
  772. }
  773. auto objectRoot = bfObjectType->GetBaseType();
  774. BF_ASSERT(strcmp(objectRoot->mTypeName, "Object") == 0);
  775. mBfObjectSize = objectRoot->GetByteCount();
  776. }
  777. mCheckedCompilerSettings = true;
  778. }
  779. }
  780. #if 1
  781. bool DebugTarget::RollBackStackFrame_ExceptionDirectory(addr_target findPC, CPURegisters* registers, addr_target* outReturnAddressLoc, bool& alreadyRolledBackPC)
  782. {
  783. addr_target pcAddress = registers->GetPC();
  784. auto exceptionDirectoryEntry = mExceptionDirectoryMap.Get(findPC, DBG_MAX_LOOKBACK);
  785. if ((exceptionDirectoryEntry != NULL) && (findPC >= exceptionDirectoryEntry->mAddress) &&
  786. (findPC < exceptionDirectoryEntry->mAddress + exceptionDirectoryEntry->mAddressLength))
  787. {
  788. auto dbgModule = exceptionDirectoryEntry->mDbgModule;
  789. //const uint8* data = dbgModule->mExceptionData + exceptionDirectoryEntry->mExceptionPos;
  790. uint32 exceptionPos = exceptionDirectoryEntry->mExceptionPos;
  791. if (dbgModule->mIsHotObjectFile)
  792. {
  793. exceptionPos -= dbgModule->mImageBase - dbgModule->GetLinkedModule()->mImageBase;
  794. }
  795. while ((exceptionPos & 1) != 0)
  796. {
  797. // It's a reference to another entry -- directly reference the 'exceptionPos' from that other entry
  798. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + (exceptionPos & ~1) + 8, (uint8*)&exceptionPos, 4);
  799. }
  800. struct EntryHeader
  801. {
  802. uint8 mVersion;
  803. uint8 mPrologSize;
  804. uint8 mNumUnwindCodes;
  805. uint8 mFrameRegister;
  806. };
  807. EntryHeader entryHeader;
  808. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + exceptionPos, (uint8*)&entryHeader, sizeof(EntryHeader));
  809. uint8 version = entryHeader.mVersion;
  810. uint8 flags = (version >> 3);
  811. version &= 7;
  812. //TODO: Sometimes we get a 'version 2'. Not sure how to parse that yet.
  813. //BF_ASSERT(version == 1);
  814. //uint8 prologSize = GET(uint8);
  815. //uint8 numUnwindCodes = GET(uint8);
  816. int dataSize = entryHeader.mNumUnwindCodes * 2;
  817. if (flags & 4) // UNW_FLAG_CHAININFO
  818. {
  819. if ((entryHeader.mNumUnwindCodes % 2) == 1)
  820. dataSize += 2; // Align
  821. dataSize += sizeof(uint32)*3;
  822. }
  823. uint8 dataBuf[512];
  824. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + exceptionPos + sizeof(EntryHeader), dataBuf, dataSize);
  825. const uint8* data = dataBuf;
  826. if (flags & 1) // UNW_FLAG_EHANDLER
  827. {
  828. }
  829. else if (flags & 4) // UNW_FLAG_CHAININFO
  830. {
  831. }
  832. /*if (pcAddress < exceptionDirectoryEntry->mAddress + prologSize)
  833. {
  834. // We're in the prolog so just do a standard leaf 'ret'
  835. return false;
  836. }*/
  837. addr_target* regSP = registers->GetSPRegisterRef();
  838. int regFPOffset = 0;
  839. uint8 frameRegister = entryHeader.mFrameRegister;
  840. uint8 frameRegisterOffset = frameRegister >> 4;
  841. frameRegister &= 15;
  842. intptr_target newSP = 0;
  843. const uint8* paramAreaStart = data;
  844. const uint8* dataEnd = data + entryHeader.mNumUnwindCodes * 2;
  845. while (data < dataEnd)
  846. {
  847. uint8 offsetInProlog = GET(uint8);
  848. uint8 unwindOpCode = GET(uint8);
  849. uint8 opInfo = unwindOpCode >> 4;
  850. unwindOpCode &= 15;
  851. bool executeOp = pcAddress >= exceptionDirectoryEntry->mAddress - exceptionDirectoryEntry->mOrigAddressOffset + offsetInProlog;
  852. if ((unwindOpCode == 0) && (executeOp))
  853. {
  854. // UWOP_PUSH_NONVOL
  855. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  856. if (!gDebugger->ReadMemory(*regSP, sizeof(intptr_target), regRef))
  857. return false;
  858. *regSP += sizeof(intptr_target);
  859. }
  860. else if (unwindOpCode == 1)
  861. {
  862. // UWOP_ALLOC_LARGE
  863. int allocSize = 0;
  864. if (opInfo == 0)
  865. allocSize = (int)GET(uint16) * 8;
  866. else if (opInfo == 1)
  867. allocSize = (int)GET(int32);
  868. if (executeOp)
  869. *regSP += allocSize;
  870. }
  871. else if ((unwindOpCode == 2) && (executeOp))
  872. {
  873. // UWOP_ALLOC_SMALL
  874. int allocSize = (int)opInfo * 8 + 8;
  875. *regSP += allocSize;
  876. }
  877. else if ((unwindOpCode == 3) && (executeOp))
  878. {
  879. // UWOP_SET_FPREG
  880. intptr_target* regRef = registers->GetExceptionRegisterRef(frameRegister);
  881. *regSP = *regRef - (16 * frameRegisterOffset);
  882. }
  883. else if (unwindOpCode == 4)
  884. {
  885. // UWOP_SAVE_NONVOL
  886. int offset = (int)GET(uint16) * 8;
  887. if (executeOp)
  888. {
  889. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  890. if (!gDebugger->ReadMemory(*regSP + offset, sizeof(intptr_target), regRef))
  891. return false;
  892. }
  893. }
  894. else if (unwindOpCode == 5)
  895. {
  896. // UWOP_SAVE_NONVOL_FAR
  897. int offset = GET(int32);
  898. if (executeOp)
  899. {
  900. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  901. if (!gDebugger->ReadMemory(*regSP + offset, sizeof(intptr_target), regRef))
  902. return false;
  903. }
  904. }
  905. else if (unwindOpCode == 8)
  906. {
  907. // UWOP_SAVE_XMM128
  908. int offset = (int)GET(uint16) * 16;
  909. if (executeOp)
  910. {
  911. auto* regRef = registers->GetXMMRegRef(opInfo);
  912. if (!gDebugger->ReadMemory(*regSP + offset, sizeof(*regRef), regRef))
  913. return false;
  914. }
  915. }
  916. else if (unwindOpCode == 9)
  917. {
  918. // UWOP_SAVE_XMM128_FAR
  919. int offset = GET(int32);
  920. if (executeOp)
  921. {
  922. auto* regRef = registers->GetXMMRegRef(opInfo);
  923. if (!gDebugger->ReadMemory(*regSP + offset, sizeof(*regRef), regRef))
  924. return false;
  925. }
  926. }
  927. else if (unwindOpCode == 10)
  928. {
  929. // UWOP_PUSH_MACHFRAME
  930. if (executeOp)
  931. {
  932. alreadyRolledBackPC = true;
  933. if (opInfo == 0)
  934. {
  935. addr_target regRIP;
  936. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &regRIP); // RIP (correct back trace)
  937. *regSP += sizeof(intptr_target);
  938. addr_target reg;
  939. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); // CS
  940. *regSP += sizeof(intptr_target);
  941. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); // EFLAGS
  942. *regSP += sizeof(intptr_target);
  943. addr_target oldRSP;
  944. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &oldRSP); // Old RSP
  945. *regSP += sizeof(intptr_target);
  946. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); //SS
  947. *regSP += sizeof(intptr_target);
  948. addr_target* regPC = registers->GetPCRegisterRef();
  949. *regSP = oldRSP;
  950. *regPC = regRIP;
  951. }
  952. else
  953. {
  954. *regSP += 6 * sizeof(intptr_target);
  955. }
  956. }
  957. }
  958. // Note: RCX/RDX are reversed
  959. }
  960. if (flags & 4) // UNW_FLAG_CHAININFO
  961. {
  962. if (((intptr)data & 3) != 0)
  963. {
  964. // Align
  965. data = (const uint8*)(((intptr)data + 3) & ~3);
  966. }
  967. uint32 chainedRVAStart = GET(uint32);
  968. uint32 chainedRVAEnd = GET(uint32);
  969. uint32 chainedUnwindRVA = GET(uint32);
  970. return RollBackStackFrame_ExceptionDirectory(dbgModule->mImageBase + chainedRVAStart, registers, outReturnAddressLoc, alreadyRolledBackPC);
  971. }
  972. return true;
  973. }
  974. return false;
  975. }
  976. // We write the modified callerRegisters into the saved memory locations in the callee's stack frame --
  977. // this is needed for modifying variables tied to non-volatile registers on non-topmost stack frames
  978. bool DebugTarget::PropogateRegisterUpCallStack_ExceptionDirectory(addr_target findPC, CPURegisters* callerRegisters, CPURegisters* calleeRegisters, void* regPtr, bool& wasSaved)
  979. {
  980. addr_target pcAddress = calleeRegisters->GetPC();
  981. auto exceptionDirectoryEntry = mExceptionDirectoryMap.Get(findPC, DBG_MAX_LOOKBACK);
  982. if ((exceptionDirectoryEntry != NULL) && (findPC >= exceptionDirectoryEntry->mAddress) &&
  983. (findPC < exceptionDirectoryEntry->mAddress + exceptionDirectoryEntry->mAddressLength))
  984. {
  985. auto dbgModule = exceptionDirectoryEntry->mDbgModule;
  986. //const uint8* data = dbgModule->mExceptionData + exceptionDirectoryEntry->mExceptionPos;
  987. uint32 exceptionPos = exceptionDirectoryEntry->mExceptionPos;
  988. while ((exceptionPos & 1) != 0)
  989. {
  990. // It's a reference to another entry -- directly reference the 'exceptionPos' from that other entry
  991. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + (exceptionPos & ~1) + 8, (uint8*)&exceptionPos, 4);
  992. }
  993. struct EntryHeader
  994. {
  995. uint8 mVersion;
  996. uint8 mPrologSize;
  997. uint8 mNumUnwindCodes;
  998. uint8 mFrameRegister;
  999. };
  1000. EntryHeader entryHeader;
  1001. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + exceptionPos, (uint8*)&entryHeader, sizeof(EntryHeader));
  1002. uint8 version = entryHeader.mVersion;
  1003. uint8 flags = (version >> 3);
  1004. version &= 7;
  1005. int dataSize = entryHeader.mNumUnwindCodes * 2;
  1006. if (flags & 4) // UNW_FLAG_CHAININFO
  1007. {
  1008. if ((entryHeader.mNumUnwindCodes % 2) == 1)
  1009. dataSize += 2; // Align
  1010. dataSize += sizeof(uint32)*3;
  1011. }
  1012. uint8 dataBuf[512];
  1013. dbgModule->mOrigImageData->Read(dbgModule->mImageBase + exceptionPos + sizeof(EntryHeader), dataBuf, dataSize);
  1014. const uint8* data = dataBuf;
  1015. if (flags & 1) // UNW_FLAG_EHANDLER
  1016. {
  1017. }
  1018. else if (flags & 4) // UNW_FLAG_CHAININFO
  1019. {
  1020. }
  1021. /*if (pcAddress < exceptionDirectoryEntry->mAddress + prologSize)
  1022. {
  1023. // We're in the prolog so just do a standard leaf 'ret'
  1024. return false;
  1025. }*/
  1026. addr_target regSP = calleeRegisters->GetSP();
  1027. int regFPOffset = 0;
  1028. uint8 frameRegister = entryHeader.mFrameRegister;
  1029. uint8 frameRegisterOffset = frameRegister >> 4;
  1030. frameRegister &= 15;
  1031. intptr_target newSP = 0;
  1032. const uint8* paramAreaStart = data;
  1033. const uint8* dataEnd = data + entryHeader.mNumUnwindCodes * 2;
  1034. while (data < dataEnd)
  1035. {
  1036. uint8 offsetInProlog = GET(uint8);
  1037. uint8 unwindOpCode = GET(uint8);
  1038. uint8 opInfo = unwindOpCode >> 4;
  1039. unwindOpCode &= 15;
  1040. bool executeOp = pcAddress >= exceptionDirectoryEntry->mAddress - exceptionDirectoryEntry->mOrigAddressOffset + offsetInProlog;
  1041. if ((unwindOpCode == 0) && (executeOp))
  1042. {
  1043. // UWOP_PUSH_NONVOL
  1044. intptr_target* regRef = callerRegisters->GetExceptionRegisterRef(opInfo);
  1045. if (regRef == regPtr)
  1046. {
  1047. mDebugger->WriteMemory(regSP, regRef, sizeof(intptr_target));
  1048. wasSaved = true;
  1049. }
  1050. regSP += sizeof(intptr_target);
  1051. }
  1052. else if (unwindOpCode == 1)
  1053. {
  1054. // UWOP_ALLOC_LARGE
  1055. int allocSize = 0;
  1056. if (opInfo == 0)
  1057. allocSize = (int)GET(uint16) * 8;
  1058. else if (opInfo == 1)
  1059. allocSize = (int)GET(int32);
  1060. if (executeOp)
  1061. regSP += allocSize;
  1062. }
  1063. else if ((unwindOpCode == 2) && (executeOp))
  1064. {
  1065. // UWOP_ALLOC_SMALL
  1066. int allocSize = (int)opInfo * 8 + 8;
  1067. regSP += allocSize;
  1068. }
  1069. else if ((unwindOpCode == 3) && (executeOp))
  1070. {
  1071. // UWOP_SET_FPREG
  1072. intptr_target* regRef = callerRegisters->GetExceptionRegisterRef(frameRegister);
  1073. regSP = *regRef - (16 * frameRegisterOffset);
  1074. }
  1075. else if (unwindOpCode == 4)
  1076. {
  1077. // UWOP_SAVE_NONVOL
  1078. int offset = (int)GET(uint16) * 8;
  1079. if (executeOp)
  1080. {
  1081. intptr_target* regRef = callerRegisters->GetExceptionRegisterRef(opInfo);
  1082. if (regRef == regPtr)
  1083. {
  1084. if (!gDebugger->WriteMemory(regSP + offset, regRef, sizeof(intptr_target)))
  1085. return false;
  1086. wasSaved = true;
  1087. }
  1088. }
  1089. }
  1090. else if (unwindOpCode == 5)
  1091. {
  1092. // UWOP_SAVE_NONVOL_FAR
  1093. int offset = GET(int32);
  1094. if (executeOp)
  1095. {
  1096. intptr_target* regRef = callerRegisters->GetExceptionRegisterRef(opInfo);
  1097. if (regRef == regPtr)
  1098. {
  1099. if (!gDebugger->WriteMemory(regSP + offset, regRef, sizeof(intptr_target)))
  1100. return false;
  1101. wasSaved = true;
  1102. }
  1103. }
  1104. }
  1105. else if (unwindOpCode == 8)
  1106. {
  1107. // UWOP_SAVE_XMM128
  1108. int offset = (int)GET(uint16) * 16;
  1109. if (executeOp)
  1110. {
  1111. auto* regRef = callerRegisters->GetXMMRegRef(opInfo);
  1112. if (regRef == regPtr)
  1113. {
  1114. if (!gDebugger->WriteMemory(regSP + offset, regRef, sizeof(*regRef)))
  1115. return false;
  1116. wasSaved = true;
  1117. }
  1118. }
  1119. }
  1120. else if (unwindOpCode == 9)
  1121. {
  1122. // UWOP_SAVE_XMM128_FAR
  1123. int offset = GET(int32);
  1124. if (executeOp)
  1125. {
  1126. auto* regRef = callerRegisters->GetXMMRegRef(opInfo);
  1127. if (regRef == regPtr)
  1128. {
  1129. if (!gDebugger->WriteMemory(regSP + offset, regRef, sizeof(*regRef)))
  1130. return false;
  1131. wasSaved = true;
  1132. }
  1133. }
  1134. }
  1135. else if (unwindOpCode == 10)
  1136. {
  1137. // UWOP_PUSH_MACHFRAME
  1138. if (executeOp)
  1139. {
  1140. if (opInfo == 0)
  1141. {
  1142. //addr_target regRIP;
  1143. //gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &regRIP); // RIP (correct back trace)
  1144. regSP += sizeof(intptr_target);
  1145. //addr_target reg;
  1146. //gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); // CS
  1147. regSP += sizeof(intptr_target);
  1148. //gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); // EFLAGS
  1149. regSP += sizeof(intptr_target);
  1150. //addr_target oldRSP;
  1151. //gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &oldRSP); // Old RSP
  1152. regSP += sizeof(intptr_target);
  1153. //gDebugger->ReadMemory(*regSP, sizeof(intptr_target), &reg); //SS
  1154. regSP += sizeof(intptr_target);
  1155. addr_target* regPC = calleeRegisters->GetPCRegisterRef();
  1156. //*regSP = oldRSP;
  1157. //*regPC = regRIP;
  1158. }
  1159. else
  1160. {
  1161. regSP += 6 * sizeof(intptr_target);
  1162. }
  1163. }
  1164. }
  1165. // Note: RCX/RDX are reversed
  1166. }
  1167. if (flags & 4) // UNW_FLAG_CHAININFO
  1168. {
  1169. if (((intptr)data & 3) != 0)
  1170. {
  1171. // Align
  1172. data = (const uint8*)(((intptr)data + 3) & ~3);
  1173. }
  1174. uint32 chainedRVAStart = GET(uint32);
  1175. uint32 chainedRVAEnd = GET(uint32);
  1176. uint32 chainedUnwindRVA = GET(uint32);
  1177. return PropogateRegisterUpCallStack_ExceptionDirectory(dbgModule->mImageBase + chainedRVAStart, callerRegisters, calleeRegisters, regPtr, wasSaved);
  1178. }
  1179. return true;
  1180. }
  1181. return false;
  1182. }
  1183. #endif
  1184. #if 0
  1185. bool DebugTarget::RollBackStackFrame_ExceptionDirectory(addr_target findPC, CPURegisters* registers, addr_target* outReturnAddressLoc)
  1186. {
  1187. addr_target pcAddress = registers->GetPC();
  1188. auto exceptionDirectoryEntry = mExceptionDirectoryMap.Get(findPC, DBG_MAX_LOOKBACK);
  1189. if ((exceptionDirectoryEntry != NULL) && (findPC >= exceptionDirectoryEntry->mAddress) &&
  1190. (findPC < exceptionDirectoryEntry->mAddress + exceptionDirectoryEntry->mAddressLength))
  1191. {
  1192. auto dbgModule = exceptionDirectoryEntry->mDbgModule;
  1193. const uint8* data = dbgModule->mExceptionData + (exceptionDirectoryEntry->mExceptionPos - dbgModule->mExceptionDataRVA);
  1194. uint8 version = GET(uint8);
  1195. uint8 flags = (version >> 3);
  1196. version &= 7;
  1197. uint8 prologSize = GET(uint8);
  1198. uint8 numUnwindCodes = GET(uint8);
  1199. if (exceptionDirectoryEntry->mAddress - dbgModule->mImageBase == 0x0000000000048efc)
  1200. {
  1201. }
  1202. if (flags & 1) // UNW_FLAG_EHANDLER
  1203. {
  1204. }
  1205. else if (flags & 4) // UNW_FLAG_CHAININFO
  1206. {
  1207. }
  1208. /*if (pcAddress < exceptionDirectoryEntry->mAddress + prologSize)
  1209. {
  1210. // We're in the prolog so just do a standard leaf 'ret'
  1211. return false;
  1212. }*/
  1213. addr_target* regSP = registers->GetSPRegisterRef();
  1214. int regFPOffset = 0;
  1215. uint8 frameRegister = GET(uint8);
  1216. uint8 frameRegisterOffset = frameRegister >> 4;
  1217. frameRegister &= 15;
  1218. intptr_target newSP = 0;
  1219. const uint8* paramAreaStart = data;
  1220. const uint8* dataEnd = data + numUnwindCodes * 2;
  1221. while (data < dataEnd)
  1222. {
  1223. uint8 offsetInProlog = GET(uint8);
  1224. uint8 unwindOpCode = GET(uint8);
  1225. uint8 opInfo = unwindOpCode >> 4;
  1226. unwindOpCode &= 15;
  1227. bool executeOp = pcAddress >= exceptionDirectoryEntry->mAddress - exceptionDirectoryEntry->mOrigAddressOffset + offsetInProlog;
  1228. if ((unwindOpCode == 0) && (executeOp))
  1229. {
  1230. // UWOP_PUSH_NONVOL
  1231. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  1232. gDebugger->ReadMemory(*regSP, sizeof(intptr_target), regRef);
  1233. *regSP += sizeof(intptr_target);
  1234. }
  1235. else if (unwindOpCode == 1)
  1236. {
  1237. // UWOP_ALLOC_LARGE
  1238. int allocSize = 0;
  1239. if (opInfo == 0)
  1240. allocSize = (int)GET(uint16) * 8;
  1241. else if (opInfo == 1)
  1242. allocSize = (int)GET(int32);
  1243. if (executeOp)
  1244. *regSP += allocSize;
  1245. }
  1246. else if ((unwindOpCode == 2) && (executeOp))
  1247. {
  1248. // UWOP_ALLOC_SMALL
  1249. int allocSize = (int)opInfo * 8 + 8;
  1250. *regSP += allocSize;
  1251. }
  1252. else if ((unwindOpCode == 3) && (executeOp))
  1253. {
  1254. // UWOP_SET_FPREG
  1255. intptr_target* regRef = registers->GetExceptionRegisterRef(frameRegister);
  1256. *regSP = *regRef - (16 * frameRegisterOffset);
  1257. }
  1258. else if (unwindOpCode == 4)
  1259. {
  1260. // UWOP_SAVE_NONVOL
  1261. int offset = (int)GET(uint16) * 8;
  1262. if (executeOp)
  1263. {
  1264. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  1265. gDebugger->ReadMemory(*regSP - offset, sizeof(intptr_target), regRef);
  1266. }
  1267. }
  1268. else if (unwindOpCode == 5)
  1269. {
  1270. // UWOP_SAVE_NONVOL_FAR
  1271. int offset = GET(int32);
  1272. if (executeOp)
  1273. {
  1274. intptr_target* regRef = registers->GetExceptionRegisterRef(opInfo);
  1275. gDebugger->ReadMemory(*regSP - offset, sizeof(intptr_target), regRef);
  1276. }
  1277. }
  1278. else if (unwindOpCode == 8)
  1279. {
  1280. // UWOP_SAVE_XMM128
  1281. int offset = (int)GET(uint16) * 16;
  1282. if (executeOp)
  1283. {
  1284. auto* regRef = registers->GetXMMRegRef(opInfo);
  1285. gDebugger->ReadMemory(*regSP - offset, sizeof(*regRef), regRef);
  1286. }
  1287. }
  1288. else if (unwindOpCode == 9)
  1289. {
  1290. // UWOP_SAVE_XMM128_FAR
  1291. int offset = GET(int32);
  1292. if (executeOp)
  1293. {
  1294. auto* regRef = registers->GetXMMRegRef(opInfo);
  1295. gDebugger->ReadMemory(*regSP - offset, sizeof(*regRef), regRef);
  1296. }
  1297. }
  1298. else if (unwindOpCode == 10)
  1299. {
  1300. // UWOP_PUSH_MACHFRAME
  1301. BF_ASSERT(0 == "Not supported");
  1302. }
  1303. // Note: RCX/RDX are reversed
  1304. }
  1305. if (flags & 4) // UNW_FLAG_CHAININFO
  1306. {
  1307. if (((intptr)data & 3) != 0)
  1308. {
  1309. // Align
  1310. data = (const uint8*)(((intptr)data + 3) & ~3);
  1311. }
  1312. uint32 chainedRVAStart = GET(uint32);
  1313. uint32 chainedRVAEnd = GET(uint32);
  1314. uint32 chainedUnwindRVA = GET(uint32);
  1315. return RollBackStackFrame_ExceptionDirectory(dbgModule->mImageBase + chainedRVAStart, registers, outReturnAddressLoc);
  1316. }
  1317. return true;
  1318. }
  1319. return false;
  1320. }
  1321. #endif
  1322. bool DebugTarget::RollBackStackFrame_ExceptionDirectory(CPURegisters* registers, addr_target* outReturnAddressLoc, bool& alreadyRolledBackPC)
  1323. {
  1324. addr_target pcAddress = (addr_target)registers->GetPC();
  1325. return RollBackStackFrame_ExceptionDirectory(registers->GetPC(), registers, outReturnAddressLoc, alreadyRolledBackPC);
  1326. }
  1327. bool DebugTarget::RollBackStackFrame_DwFrameDescriptor(CPURegisters* registers, addr_target* outReturnAddressLoc)
  1328. {
  1329. addr_target pcAddress = (addr_target)registers->GetPC();
  1330. //TODO: Verify we replaced this correctly
  1331. /*auto stackFrameItr = mFrameDescriptorMap.upper_bound(pcAddress);
  1332. if (stackFrameItr != mFrameDescriptorMap.end())
  1333. stackFrameItr--;
  1334. if (stackFrameItr == mFrameDescriptorMap.end())
  1335. return false;*/
  1336. if (mDwFrameDescriptorMap.empty())
  1337. return false;
  1338. auto stackFrameItr = mDwFrameDescriptorMap.upper_bound(pcAddress);
  1339. if (stackFrameItr == mDwFrameDescriptorMap.begin())
  1340. return false;
  1341. stackFrameItr--;
  1342. auto dwFrameDescriptor = &stackFrameItr->second;
  1343. if (pcAddress > dwFrameDescriptor->mHighPC)
  1344. return false;
  1345. struct RegisterRuleData
  1346. {
  1347. public:
  1348. int mRegisterRule;
  1349. int mParamOffset;
  1350. const uint8* mParamData;
  1351. public:
  1352. RegisterRuleData()
  1353. {
  1354. mRegisterRule = DW_CFA_undefined;
  1355. mParamOffset = 0;
  1356. mParamData = NULL;
  1357. }
  1358. };
  1359. struct State
  1360. {
  1361. State* mPrevState;
  1362. RegisterRuleData mRegisterRuleDataArray[CPURegisters::kNumIntRegs];
  1363. int mRegisterRuleDataIdx;
  1364. addr_target mCFA = 0;
  1365. int mCFAOffset = 0;
  1366. State()
  1367. {
  1368. mPrevState = NULL;
  1369. mCFA = 0;
  1370. mCFAOffset = 0;
  1371. mRegisterRuleDataIdx = -1;
  1372. }
  1373. };
  1374. State initialState;
  1375. State rootState;
  1376. rootState.mRegisterRuleDataIdx = DwarfReg_SP;
  1377. State* state = &rootState;
  1378. // Set up default rule to restore stack pointer
  1379. state->mRegisterRuleDataArray[state->mRegisterRuleDataIdx].mRegisterRule = DW_CFA_val_offset;
  1380. state->mRegisterRuleDataArray[state->mRegisterRuleDataIdx].mParamOffset = 0;
  1381. for (int pass = 0; pass < 2; pass++)
  1382. {
  1383. /*if ((pass == 0) && (dwFrameDescriptor->mCommonFrameDescriptor == NULL))
  1384. continue;*/
  1385. addr_target curLoc = dwFrameDescriptor->mLowPC;
  1386. const uint8* data = (pass == 0) ? dwFrameDescriptor->mCommonFrameDescriptor->mInstData : dwFrameDescriptor->mInstData;
  1387. const uint8* dataEnd = data + ((pass == 0) ? dwFrameDescriptor->mCommonFrameDescriptor->mInstLen : dwFrameDescriptor->mInstLen);
  1388. if (pass == 1)
  1389. initialState = rootState;
  1390. while ((data < dataEnd) && (pcAddress >= curLoc))
  1391. {
  1392. uint8 opCode = GET(uint8);
  1393. if ((opCode >= DW_CFA_advance_loc) && (opCode < DW_CFA_offset0))
  1394. {
  1395. int advance = opCode - DW_CFA_advance_loc;
  1396. curLoc += advance * dwFrameDescriptor->mCommonFrameDescriptor->mCodeAlignmentFactor;
  1397. }
  1398. else if (opCode >= DW_CFA_restore)
  1399. {
  1400. int regNum = opCode - DW_CFA_restore;
  1401. state->mRegisterRuleDataArray[regNum] = initialState.mRegisterRuleDataArray[regNum];
  1402. }
  1403. else
  1404. {
  1405. switch (opCode)
  1406. {
  1407. case DW_CFA_advance_loc1:
  1408. curLoc += GET(uint8) * dwFrameDescriptor->mCommonFrameDescriptor->mCodeAlignmentFactor;
  1409. break;
  1410. case DW_CFA_advance_loc2:
  1411. curLoc += GET(uint16) * dwFrameDescriptor->mCommonFrameDescriptor->mCodeAlignmentFactor;
  1412. break;
  1413. case DW_CFA_advance_loc4:
  1414. curLoc += GET(uint32) * dwFrameDescriptor->mCommonFrameDescriptor->mCodeAlignmentFactor;
  1415. break;
  1416. case DW_CFA_def_cfa:
  1417. {
  1418. int regNum = (int)DecodeULEB128(data);
  1419. state->mCFAOffset = (int)DecodeULEB128(data);
  1420. BF_ASSERT(regNum < CPURegisters::kNumIntRegs);
  1421. state->mCFA = registers->mIntRegsArray[regNum] + state->mCFAOffset;
  1422. }
  1423. break;
  1424. case DW_CFA_def_cfa_offset:
  1425. state->mCFA -= state->mCFAOffset;
  1426. state->mCFAOffset = DecodeULEB128(data);
  1427. state->mCFA += state->mCFAOffset;
  1428. case DW_CFA_nop:
  1429. break;
  1430. case DW_CFA_offset0:
  1431. case DW_CFA_offset1:
  1432. case DW_CFA_offset2:
  1433. case DW_CFA_offset3:
  1434. case DW_CFA_offset4:
  1435. case DW_CFA_offset5:
  1436. case DW_CFA_offset6:
  1437. case DW_CFA_offset7:
  1438. case DW_CFA_offset8:
  1439. {
  1440. int regNum = opCode - DW_CFA_offset0;
  1441. BF_ASSERT(regNum < CPURegisters::kNumIntRegs);
  1442. int offset = (int)DecodeULEB128(data) * dwFrameDescriptor->mCommonFrameDescriptor->mDataAlignmentFactor;
  1443. auto registerRuleData = &state->mRegisterRuleDataArray[regNum];
  1444. registerRuleData->mRegisterRule = DW_CFA_offset;
  1445. registerRuleData->mParamOffset = offset;
  1446. //int registerSize = 4;//TODO
  1447. //gDebugger->ReadMemory(state_mCFA + offset, registerSize, &registers->mIntRegsArray[regNum]);
  1448. }
  1449. break;
  1450. case DW_CFA_def_cfa_register:
  1451. {
  1452. int regNum = (int)DecodeULEB128(data);
  1453. BF_ASSERT(regNum < CPURegisters::kNumIntRegs);
  1454. state->mCFA = registers->mIntRegsArray[regNum] + state->mCFAOffset;
  1455. }
  1456. break;
  1457. case DW_CFA_def_cfa_expression:
  1458. {
  1459. int blockLen = (int)DecodeULEB128(data);
  1460. DbgAddrType addrType;
  1461. state->mCFA = dwFrameDescriptor->mCommonFrameDescriptor->mDbgModule->ExecuteOps(NULL, data, blockLen , NULL, registers, &addrType, true, &state->mCFA);
  1462. }
  1463. break;
  1464. case DW_CFA_expression:
  1465. {
  1466. int regNum = (int)DecodeULEB128(data);
  1467. BF_ASSERT(regNum < CPURegisters::kNumIntRegs);
  1468. int blockLen = (int)DecodeULEB128(data);
  1469. auto registerRuleData = &state->mRegisterRuleDataArray[regNum];
  1470. registerRuleData->mRegisterRule = DW_CFA_expression;
  1471. registerRuleData->mParamOffset = blockLen;
  1472. registerRuleData->mParamData = data;
  1473. data += blockLen;
  1474. }
  1475. break;
  1476. case DW_CFA_remember_state:
  1477. {
  1478. auto nextState = new State();
  1479. *nextState = *state;
  1480. nextState->mPrevState = state;
  1481. state = nextState;
  1482. }
  1483. break;
  1484. case DW_CFA_restore_state:
  1485. {
  1486. auto prevState = state->mPrevState;
  1487. BF_ASSERT(prevState != NULL);
  1488. delete state;
  1489. state = prevState;
  1490. }
  1491. break;
  1492. case DW_CFA_restore_extended:
  1493. {
  1494. int regNum = (int)DecodeULEB128(data);
  1495. state->mRegisterRuleDataArray[regNum] = initialState.mRegisterRuleDataArray[regNum];
  1496. }
  1497. break;
  1498. default:
  1499. BF_FATAL("Unknown DW_CFA");
  1500. break;
  1501. }
  1502. }
  1503. }
  1504. }
  1505. for (int registerNum = 0; registerNum < CPURegisters::kNumIntRegs; registerNum++)
  1506. {
  1507. auto registerRuleData = &state->mRegisterRuleDataArray[registerNum];
  1508. switch (registerRuleData->mRegisterRule)
  1509. {
  1510. case DW_CFA_offset:
  1511. {
  1512. if (outReturnAddressLoc != 0)
  1513. *outReturnAddressLoc = state->mCFA + registerRuleData->mParamOffset;
  1514. int registerSize = sizeof(addr_target);
  1515. gDebugger->ReadMemory(state->mCFA + registerRuleData->mParamOffset, registerSize, &registers->mIntRegsArray[registerNum]);
  1516. }
  1517. break;
  1518. case DW_CFA_val_offset:
  1519. registers->mIntRegsArray[registerNum] = state->mCFA + registerRuleData->mParamOffset;
  1520. break;
  1521. case DW_CFA_remember_state:
  1522. case DW_CFA_undefined:
  1523. break;
  1524. case DW_CFA_expression:
  1525. {
  1526. DbgAddrType addrType;
  1527. registers->mIntRegsArray[registerNum] = dwFrameDescriptor->mCommonFrameDescriptor->mDbgModule->ExecuteOps(NULL, registerRuleData->mParamData, registerRuleData->mParamOffset, NULL, registers, &addrType, true, &state->mCFA);
  1528. }
  1529. break;
  1530. default:
  1531. BF_FATAL("Unknown DW_CFA");
  1532. break;
  1533. }
  1534. }
  1535. while (state->mPrevState != NULL)
  1536. {
  1537. auto prev = state->mPrevState;
  1538. delete state;
  1539. state = prev;
  1540. }
  1541. return true;
  1542. }
  1543. bool DebugTarget::RollBackStackFrame_COFFFrameDescriptor(CPURegisters* registers, addr_target* outReturnAddressLoc, bool isStackStart)
  1544. {
  1545. #ifdef BF_DBG_32
  1546. addr_target pcAddress = (addr_target)registers->GetPC();
  1547. if (mCOFFFrameDescriptorMap.empty())
  1548. return false;
  1549. auto stackFrameItr = mCOFFFrameDescriptorMap.upper_bound(pcAddress);
  1550. if (stackFrameItr == mCOFFFrameDescriptorMap.begin())
  1551. return false;
  1552. stackFrameItr--;
  1553. auto frameEntry = &stackFrameItr->second;
  1554. addr_target startAddress = stackFrameItr->first;
  1555. if (pcAddress > startAddress + frameEntry->mFrameDescriptor->mCodeSize)
  1556. return false;
  1557. struct _StackEntry
  1558. {
  1559. COFFFrameProgram::Command mCmd;
  1560. addr_target mValue;
  1561. };
  1562. //SizedArray<_StackEntry, 8> stack;
  1563. int stackPos = 0;
  1564. COFFFrameProgram::Command stackCmds[8];
  1565. addr_target stackValues[8];
  1566. addr_target temps[4];
  1567. auto _GetValue = [&](int stackPos)
  1568. {
  1569. addr_target val = 0;
  1570. switch (stackCmds[stackPos])
  1571. {
  1572. case COFFFrameProgram::Command_EIP:
  1573. return (addr_target)registers->mIntRegs.eip;
  1574. case COFFFrameProgram::Command_ESP:
  1575. return (addr_target)registers->mIntRegs.esp;
  1576. case COFFFrameProgram::Command_EBP:
  1577. return (addr_target)registers->mIntRegs.ebp;
  1578. case COFFFrameProgram::Command_EAX:
  1579. return (addr_target)registers->mIntRegs.eax;
  1580. case COFFFrameProgram::Command_EBX:
  1581. return (addr_target)registers->mIntRegs.ebx;
  1582. case COFFFrameProgram::Command_ECX:
  1583. return (addr_target)registers->mIntRegs.ecx;
  1584. case COFFFrameProgram::Command_EDX:
  1585. return (addr_target)registers->mIntRegs.edx;
  1586. case COFFFrameProgram::Command_ESI:
  1587. return (addr_target)registers->mIntRegs.esi;
  1588. case COFFFrameProgram::Command_EDI:
  1589. return (addr_target)registers->mIntRegs.edi;
  1590. case COFFFrameProgram::Command_T0:
  1591. return (addr_target)temps[0];
  1592. case COFFFrameProgram::Command_T1:
  1593. return (addr_target)temps[1];
  1594. case COFFFrameProgram::Command_T2:
  1595. return (addr_target)temps[2];
  1596. case COFFFrameProgram::Command_T3:
  1597. return (addr_target)temps[3];
  1598. case COFFFrameProgram::Command_RASearch:
  1599. {
  1600. addr_target raSearch = (addr_target)(registers->GetSP() + frameEntry->mFrameDescriptor->mLocalSize + frameEntry->mFrameDescriptor->mSavedRegsSize);
  1601. // If we are directly on a "sub esp, <X>", this can occur when stepping out of a function, where the caller needs to adjust the stack after the call.
  1602. // There is generally not a unique frame descriptor to handle this condition, so we need to manually handle it here
  1603. if ((isStackStart) && (pcAddress != startAddress))
  1604. {
  1605. uint8 ops[2];
  1606. if (ReadOrigImageData(pcAddress, ops, 2) != DbgMemoryFlags_None)
  1607. {
  1608. if ((ops[0] == 0x83) && (ops[1] == 0xEC))
  1609. {
  1610. // SUB ESP, <UINT8>
  1611. uint8 rhs = 0;
  1612. ReadOrigImageData(pcAddress + 2, &rhs, 1);
  1613. raSearch -= rhs;
  1614. }
  1615. else if ((ops[0] == 0x81) && (ops[1] == 0xEC))
  1616. {
  1617. // SUB ESP, <UINT32>
  1618. uint32 rhs = 0;
  1619. ReadOrigImageData(pcAddress + 2, (uint8*)&rhs, 4);
  1620. raSearch -= rhs;
  1621. }
  1622. }
  1623. }
  1624. return raSearch;
  1625. }
  1626. case COFFFrameProgram::Command_Value:
  1627. return stackValues[stackPos];
  1628. }
  1629. return val;
  1630. };
  1631. COFFFrameProgram::Command* cmdPtr = frameEntry->mProgram.mCommands;
  1632. while (true)
  1633. {
  1634. COFFFrameProgram::Command cmd = *(cmdPtr++);
  1635. if (cmd == COFFFrameProgram::Command_None)
  1636. break;
  1637. switch (cmd)
  1638. {
  1639. case COFFFrameProgram::Command_EIP:
  1640. case COFFFrameProgram::Command_ESP:
  1641. case COFFFrameProgram::Command_EBP:
  1642. case COFFFrameProgram::Command_EAX:
  1643. case COFFFrameProgram::Command_EBX:
  1644. case COFFFrameProgram::Command_ECX:
  1645. case COFFFrameProgram::Command_EDX:
  1646. case COFFFrameProgram::Command_ESI:
  1647. case COFFFrameProgram::Command_EDI:
  1648. case COFFFrameProgram::Command_T0:
  1649. case COFFFrameProgram::Command_T1:
  1650. case COFFFrameProgram::Command_RASearch:
  1651. BF_ASSERT(stackPos < 8);
  1652. stackCmds[stackPos++] = cmd;
  1653. break;
  1654. case COFFFrameProgram::Command_Add:
  1655. {
  1656. BF_ASSERT(stackPos >= 2);
  1657. addr_target lhs = _GetValue(stackPos - 2);
  1658. addr_target rhs = _GetValue(stackPos - 1);
  1659. stackPos -= 2;
  1660. stackValues[stackPos] = lhs + rhs;
  1661. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1662. }
  1663. break;
  1664. case COFFFrameProgram::Command_Subtract:
  1665. {
  1666. BF_ASSERT(stackPos >= 2);
  1667. addr_target lhs = _GetValue(stackPos - 2);
  1668. addr_target rhs = _GetValue(stackPos - 1);
  1669. stackPos -= 2;
  1670. stackValues[stackPos] = lhs - rhs;
  1671. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1672. }
  1673. break;
  1674. case COFFFrameProgram::Command_Align:
  1675. {
  1676. BF_ASSERT(stackPos >= 2);
  1677. addr_target lhs = _GetValue(stackPos - 2);
  1678. addr_target rhs = _GetValue(stackPos - 1);
  1679. stackPos -= 2;
  1680. stackValues[stackPos] = BF_ALIGN(lhs, rhs);
  1681. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1682. }
  1683. break;
  1684. case COFFFrameProgram::Command_Set:
  1685. {
  1686. BF_ASSERT(stackPos >= 2);
  1687. addr_target rhs = _GetValue(stackPos - 1);
  1688. switch (stackCmds[stackPos - 2])
  1689. {
  1690. case COFFFrameProgram::Command_EIP:
  1691. registers->mIntRegs.eip = rhs;
  1692. break;
  1693. case COFFFrameProgram::Command_ESP:
  1694. registers->mIntRegs.esp = rhs;
  1695. break;
  1696. case COFFFrameProgram::Command_EBP:
  1697. registers->mIntRegs.ebp = rhs;
  1698. break;
  1699. case COFFFrameProgram::Command_EAX:
  1700. registers->mIntRegs.eax = rhs;
  1701. break;
  1702. case COFFFrameProgram::Command_EBX:
  1703. registers->mIntRegs.ebx = rhs;
  1704. break;
  1705. case COFFFrameProgram::Command_ECX:
  1706. registers->mIntRegs.ecx = rhs;
  1707. break;
  1708. case COFFFrameProgram::Command_EDX:
  1709. registers->mIntRegs.edx = rhs;
  1710. break;
  1711. case COFFFrameProgram::Command_ESI:
  1712. registers->mIntRegs.esi = rhs;
  1713. break;
  1714. case COFFFrameProgram::Command_EDI:
  1715. registers->mIntRegs.edi = rhs;
  1716. break;
  1717. case COFFFrameProgram::Command_T0:
  1718. temps[0] = rhs;
  1719. break;
  1720. case COFFFrameProgram::Command_T1:
  1721. temps[1] = rhs;
  1722. break;
  1723. case COFFFrameProgram::Command_T2:
  1724. temps[2] = rhs;
  1725. break;
  1726. case COFFFrameProgram::Command_T3:
  1727. temps[3] = rhs;
  1728. break;
  1729. }
  1730. stackPos -= 2;
  1731. }
  1732. break;
  1733. case COFFFrameProgram::Command_Deref:
  1734. {
  1735. BF_ASSERT(stackPos >= 1);
  1736. addr_target addr = _GetValue(stackPos - 1);
  1737. stackPos--;
  1738. stackValues[stackPos] = mDebugger->ReadMemory<addr_target>(addr);
  1739. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1740. }
  1741. break;
  1742. case COFFFrameProgram::Command_Value:
  1743. {
  1744. addr_target val = *(addr_target*)cmdPtr;
  1745. cmdPtr += 4;
  1746. stackValues[stackPos] = val;
  1747. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1748. }
  1749. break;
  1750. case COFFFrameProgram::Command_Value8:
  1751. {
  1752. addr_target val = (uint8)*(cmdPtr++);
  1753. stackValues[stackPos] = val;
  1754. stackCmds[stackPos++] = COFFFrameProgram::Command_Value;
  1755. }
  1756. break;
  1757. }
  1758. }
  1759. return true;
  1760. #endif
  1761. return false;
  1762. }
  1763. bool DebugTarget::RollBackStackFrame(CPURegisters* registers, addr_target* outReturnAddressLoc, bool isStackStart)
  1764. {
  1765. if (outReturnAddressLoc != NULL)
  1766. *outReturnAddressLoc = 0;
  1767. CPUInst inst;
  1768. if (DecodeInstruction(registers->GetPC(), &inst))
  1769. {
  1770. if (inst.IsReturn())
  1771. {
  1772. // If we are literally just a return then often the frame descriptor is wrong,
  1773. // but we know this is ACTUALLY just a simple rollback
  1774. int regSize = sizeof(addr_target);
  1775. addr_target* regPC = registers->GetPCRegisterRef();
  1776. addr_target* regSP = registers->GetSPRegisterRef();
  1777. addr_target newPC = 0;
  1778. gDebugger->ReadMemory(*regSP, sizeof(addr_target), &newPC);
  1779. *regSP += regSize;
  1780. *regPC = newPC;
  1781. return true;
  1782. }
  1783. }
  1784. #ifdef BF_DBG_32
  1785. if (RollBackStackFrame_DwFrameDescriptor(registers, outReturnAddressLoc))
  1786. return true;
  1787. if (RollBackStackFrame_COFFFrameDescriptor(registers, outReturnAddressLoc, isStackStart))
  1788. return true;
  1789. auto pc = registers->GetPC();
  1790. DbgSubprogram* dbgSubprogram = FindSubProgram(pc);
  1791. if (dbgSubprogram != NULL)
  1792. {
  1793. auto dbgModule = dbgSubprogram->mCompileUnit->mDbgModule;
  1794. if ((dbgModule != NULL) && (!dbgModule->mParsedFrameDescriptors))
  1795. {
  1796. dbgModule->ParseFrameDescriptors();
  1797. if (RollBackStackFrame_COFFFrameDescriptor(registers, outReturnAddressLoc, isStackStart))
  1798. return true;
  1799. }
  1800. }
  1801. #endif
  1802. // Fall through after this, we need to process a 'return'
  1803. bool alreadyRolledBackPC = false;
  1804. bool success = RollBackStackFrame_ExceptionDirectory(registers, outReturnAddressLoc, alreadyRolledBackPC);
  1805. if (!success)
  1806. {
  1807. if (mDebugger->IsMiniDumpDebugger())
  1808. {
  1809. return false;
  1810. }
  1811. }
  1812. if (alreadyRolledBackPC)
  1813. return true;
  1814. #ifdef BF_DBG_32
  1815. // Try rollback assuming a frame pointer
  1816. addr_target newPC = 0;
  1817. addr_target stackFrame = registers->GetBP();
  1818. int regSize = sizeof(addr_target);
  1819. addr_target* regPC = registers->GetPCRegisterRef();
  1820. addr_target* regSP = registers->GetSPRegisterRef();
  1821. addr_target* regBP = registers->GetBPRegisterRef();
  1822. // Using stack frame
  1823. *regSP = *regBP;
  1824. //*regBP = gDebugger->ReadMemory<addr_target>(*regSP);
  1825. gDebugger->ReadMemory(*regSP, sizeof(addr_target), regBP);
  1826. *regSP += regSize;
  1827. //newPC = gDebugger->ReadMemory<addr_target>(*regSP);
  1828. gDebugger->ReadMemory(*regSP, sizeof(addr_target), &newPC);
  1829. *regSP += regSize;
  1830. *regPC = newPC;
  1831. #else
  1832. // Do a 'leaf' rollback - assume no frame pointer
  1833. addr_target newPC = 0;
  1834. addr_target stackFrame = registers->GetBP();
  1835. int regSize = sizeof(addr_target);
  1836. addr_target* regPC = registers->GetPCRegisterRef();
  1837. addr_target* regSP = registers->GetSPRegisterRef();
  1838. if (!gDebugger->ReadMemory(*regSP, sizeof(addr_target), &newPC))
  1839. return false;
  1840. *regSP += regSize;
  1841. *regPC = newPC;
  1842. #endif
  1843. /*MEMORY_BASIC_INFORMATION memInfo;
  1844. if (VirtualQueryEx(mProcessInfo.hProcess, (void*)(intptr)(*regPC), &memInfo, sizeof(memInfo)) == 0)
  1845. return false;
  1846. if ((memInfo.Protect != PAGE_EXECUTE) && (memInfo.Protect != PAGE_EXECUTE_READ) &&
  1847. (memInfo.Protect != PAGE_EXECUTE_READWRITE) && (memInfo.Protect != PAGE_EXECUTE_WRITECOPY))
  1848. return false;*/
  1849. return true;
  1850. }
  1851. bool DebugTarget::PropogateRegisterUpCallStack(CPURegisters* callerRegisters, CPURegisters* calleeRegisters, void* regPtr, bool& wasSaved)
  1852. {
  1853. //TODO: Implement for X86
  1854. return PropogateRegisterUpCallStack_ExceptionDirectory(calleeRegisters->GetPC(), callerRegisters, calleeRegisters, regPtr, wasSaved);
  1855. }
  1856. int DebugTarget::GetFrameBaseRegister(DbgSubprogram* dwSubprogram)
  1857. {
  1858. if (dwSubprogram->mFrameBaseLen == 0)
  1859. return -1;
  1860. auto locData = dwSubprogram->mFrameBaseData;
  1861. if (locData != NULL)
  1862. {
  1863. uint8 opCode = GET_FROM(locData, uint8);
  1864. if ((opCode >= DW_OP_reg0) && (opCode <= DW_OP_reg8))
  1865. {
  1866. return opCode - DW_OP_reg0;
  1867. }
  1868. }
  1869. #ifdef BF_DBG_32
  1870. if (dwSubprogram->mLocalBaseReg == DbgSubprogram::LocalBaseRegKind_ESP)
  1871. return X86Reg_ESP;
  1872. else if (dwSubprogram->mLocalBaseReg == DbgSubprogram::LocalBaseRegKind_EBX)
  1873. return X86Reg_EBX;
  1874. return X86Reg_EBP;
  1875. #else
  1876. if (dwSubprogram->mLocalBaseReg == DbgSubprogram::LocalBaseRegKind_RSP)
  1877. return X64Reg_RSP;
  1878. else if (dwSubprogram->mLocalBaseReg == DbgSubprogram::LocalBaseRegKind_R13)
  1879. return X64Reg_R13;
  1880. return X64Reg_RBP;
  1881. #endif
  1882. return -1;
  1883. }
  1884. bool DebugTarget::GetVariableIndexRegisterAndOffset(DbgVariable* dwVariable, int* outRegister, int* outOffset)
  1885. {
  1886. if (dwVariable->mLocationLen == 0)
  1887. return false;
  1888. auto locData = dwVariable->mLocationData;
  1889. uint8 opCode = GET_FROM(locData, uint8);
  1890. if (opCode == DW_OP_fbreg)
  1891. {
  1892. *outRegister = -1;
  1893. int64 offset = DecodeSLEB128(locData);
  1894. *outOffset = offset;
  1895. return true;
  1896. }
  1897. else if ((opCode >= DW_OP_breg0) && (opCode <= DW_OP_breg8))
  1898. {
  1899. *outRegister = opCode - DW_OP_breg0;
  1900. *outOffset = DecodeSLEB128(locData);
  1901. return true;
  1902. }
  1903. return false;
  1904. }
  1905. //int64 BfDebuggerReadMemory(int64 addr);
  1906. addr_target DebugTarget::GetStaticAddress(DbgVariable* dwVariable)
  1907. {
  1908. DbgAddrType addrType;
  1909. return dwVariable->mCompileUnit->mDbgModule->EvaluateLocation(NULL, dwVariable->mLocationData, dwVariable->mLocationLen, NULL, &addrType);
  1910. }
  1911. bool DebugTarget::GetValueByNameInBlock_Helper(DbgSubprogram* dwSubprogram, DbgBlock* dwBlock, String& name, WdStackFrame* stackFrame, intptr* outAddr, DbgType** outType, DbgAddrType* outAddrType)
  1912. {
  1913. // Checks for previous version of a local name by stripping off the '@' each time we find a match, until we don't have any @'s left
  1914. auto _CheckName = [&](const char* localName)
  1915. {
  1916. const char* namePtr = name.c_str();
  1917. if (*namePtr != '@')
  1918. return;
  1919. while (*namePtr == '@')
  1920. namePtr++;
  1921. if (strcmp(localName, namePtr) == 0)
  1922. {
  1923. name.Remove(0, 1);
  1924. }
  1925. };
  1926. SizedArray<DbgVariable*, 32> checkVars;
  1927. for (auto variable : dwBlock->mVariables)
  1928. {
  1929. checkVars.push_back(variable);
  1930. }
  1931. auto _FixParam = [&](DbgVariable* variable)
  1932. {
  1933. if (dwSubprogram->GetLanguage() != DbgLanguage_Beef)
  1934. {
  1935. if ((*outAddrType == DbgAddrType_Target) /*&& (variable->mIsParam)*/ && (dwSubprogram->mCompileUnit->mDbgModule->mDbgFlavor == DbgFlavor_MS))
  1936. {
  1937. auto dbgType = *outType;
  1938. int size = dbgType->GetByteCount();
  1939. if (dbgType->IsTypedPrimitive())
  1940. {
  1941. // Already correct
  1942. }
  1943. else if ((dbgType->IsCompositeType()) && (variable->mIsParam))
  1944. {
  1945. int size = (*outType)->mSize;
  1946. if ((size != 1) && (size != 2) && (size != 4) && (size != sizeof(intptr_target)))
  1947. {
  1948. auto actualAddr = mDebugger->ReadMemory<intptr_target>(*outAddr);
  1949. *outAddr = actualAddr;
  1950. }
  1951. }
  1952. }
  1953. }
  1954. if (variable->mSigNoPointer)
  1955. {
  1956. if (*outAddrType == DbgAddrType_Target)
  1957. *outAddrType = DbgAddrType_TargetDeref;
  1958. }
  1959. if ((variable->mIsParam) && (dwSubprogram->GetLanguage() == DbgLanguage_Beef))
  1960. {
  1961. if ((!(*outType)->IsRef()) && (!(*outType)->IsConst()))
  1962. *outType = dwSubprogram->mCompileUnit->mDbgModule->GetConstType(*outType);
  1963. }
  1964. };
  1965. int nameLen = (int)name.length();
  1966. //for (auto variable : dwBlock->mVariables)
  1967. for (int varIdx = (int)checkVars.size() - 1; varIdx >= 0; varIdx--)
  1968. {
  1969. auto variable = checkVars[varIdx];
  1970. // if (variable->mDeclFileIdx == 0)
  1971. // continue;
  1972. if (variable->mRangeStart != 0)
  1973. {
  1974. auto curPC = stackFrame->GetSourcePC();
  1975. if ((curPC < variable->mRangeStart) || (curPC >= variable->mRangeStart + variable->mRangeLen))
  1976. continue;
  1977. }
  1978. if (mCapturedNamesPtr != NULL)
  1979. {
  1980. mCapturedNamesPtr->push_back(variable->mName);
  1981. if (mCapturedTypesPtr != NULL)
  1982. mCapturedTypesPtr->push_back(variable->mType);
  1983. }
  1984. else if ((strncmp(name.c_str(), variable->mName, nameLen) == 0))
  1985. {
  1986. if ((variable->mName[nameLen] == '$') && (variable->mName[nameLen + 1] == 'a')) // Alias
  1987. {
  1988. const char* aliasName = variable->mName + nameLen + 3;
  1989. return GetValueByName(dwSubprogram, aliasName, stackFrame, outAddr, outType, outAddrType);
  1990. }
  1991. else if (variable->mName[nameLen] != 0)
  1992. continue;
  1993. *outType = variable->mType;
  1994. if (((variable->mType != NULL) && (variable->mType->mTypeCode == DbgType_Const)) || (variable->mIsConst))
  1995. {
  1996. if ((variable->mLocationData == NULL) || (variable->mIsConst))
  1997. {
  1998. if (variable->mType->IsCompositeType())
  1999. {
  2000. *outAddr = (intptr)variable;
  2001. *outAddrType = DbgAddrType_LocalSplat;
  2002. return true;
  2003. }
  2004. *outAddrType = DbgAddrType_Local;
  2005. if (variable->mIsConst)
  2006. *outAddr = (uint64)&variable->mConstValue;
  2007. else
  2008. *outAddr = NULL; // Optimized out?
  2009. return true;
  2010. }
  2011. else
  2012. {
  2013. // Strip off const part, for proper evaluation of value for receiver
  2014. //TODO: Why did we do this? This screwed up our 'abuse' of the const
  2015. // for 'let' statements.
  2016. // *outType = variable->mType->mTypeParam;
  2017. }
  2018. }
  2019. if (variable->mLocationData == NULL)
  2020. return false;
  2021. *outAddr = variable->mCompileUnit->mDbgModule->EvaluateLocation(dwSubprogram, variable->mLocationData, variable->mLocationLen, stackFrame, outAddrType);
  2022. _FixParam(variable);
  2023. return true;
  2024. }
  2025. else
  2026. _CheckName(variable->mName);
  2027. }
  2028. if (dwBlock == &dwSubprogram->mBlock)
  2029. {
  2030. for (auto variable : dwSubprogram->mParams)
  2031. {
  2032. /*if (variable->mDeclFileIdx == 0)
  2033. continue;*/
  2034. if (variable->mName == NULL)
  2035. continue;
  2036. if (mCapturedNamesPtr != NULL)
  2037. {
  2038. mCapturedNamesPtr->push_back(variable->mName);
  2039. if (mCapturedTypesPtr != NULL)
  2040. mCapturedTypesPtr->push_back(variable->mType);
  2041. }
  2042. else if (strcmp(name.c_str(), variable->mName) == 0)
  2043. {
  2044. *outType = variable->mType;
  2045. if (variable->mLocationData == NULL)
  2046. {
  2047. if (variable->mIsConst)
  2048. {
  2049. if (variable->mType->IsCompositeType())
  2050. {
  2051. *outType = dwSubprogram->mCompileUnit->mDbgModule->GetConstType(*outType);
  2052. *outAddr = (intptr)variable;
  2053. *outAddrType = DbgAddrType_LocalSplat;
  2054. return true;
  2055. }
  2056. }
  2057. return false;
  2058. }
  2059. *outAddr = variable->mCompileUnit->mDbgModule->EvaluateLocation(dwSubprogram, variable->mLocationData, variable->mLocationLen, stackFrame, outAddrType);
  2060. _FixParam(variable);
  2061. return true;
  2062. }
  2063. else
  2064. _CheckName(variable->mName);
  2065. }
  2066. }
  2067. return false;
  2068. }
  2069. bool DebugTarget::GetValueByNameInBlock(DbgSubprogram* dwSubprogram, DbgBlock* dwBlock, String& name, WdStackFrame* stackFrame, intptr* outAddr, DbgType** outType, DbgAddrType* outAddrType)
  2070. {
  2071. addr_target pc = stackFrame->GetSourcePC();
  2072. if (dwSubprogram != NULL)
  2073. {
  2074. auto dbgModule = dwSubprogram->mCompileUnit->mDbgModule;
  2075. if (dwBlock->mLowPC == -1)
  2076. {
  2077. //Debug ranges
  2078. addr_target* rangeData = (addr_target*)(dbgModule->mDebugRangesData + dwBlock->mHighPC);
  2079. while (true)
  2080. {
  2081. addr_target lowPC = *(rangeData++);
  2082. if (lowPC == 0)
  2083. return false;
  2084. addr_target highPC = *(rangeData++);
  2085. // Matches?
  2086. if ((pc >= lowPC) && (pc < highPC))
  2087. break;
  2088. }
  2089. }
  2090. else if ((pc < dwBlock->mLowPC) || (pc >= dwBlock->mHighPC))
  2091. return false;
  2092. }
  2093. for (auto subBlock : dwBlock->mSubBlocks)
  2094. {
  2095. if (GetValueByNameInBlock(dwSubprogram, subBlock, name, stackFrame, outAddr, outType, outAddrType))
  2096. return true;
  2097. }
  2098. if (GetValueByNameInBlock_Helper(dwSubprogram, dwBlock, name, stackFrame, outAddr, outType, outAddrType))
  2099. return true;
  2100. return false;
  2101. }
  2102. const DbgMemoryFlags DebugTarget::ReadOrigImageData(addr_target address, uint8* data, int size)
  2103. {
  2104. for (auto dwarf : mDbgModules)
  2105. {
  2106. if ((address >= dwarf->mImageBase) && (address < dwarf->mImageBase + dwarf->mImageSize) && (dwarf->mOrigImageData != NULL))
  2107. {
  2108. return dwarf->mOrigImageData->Read(address, data, size);
  2109. }
  2110. //return dbgModule->mOrigImageData + (address - dbgModule->mImageBase);
  2111. }
  2112. return DbgMemoryFlags_None;
  2113. }
  2114. bool DebugTarget::DecodeInstruction(addr_target address, CPUInst* inst)
  2115. {
  2116. for (auto dwarf : mDbgModules)
  2117. {
  2118. if ((address >= dwarf->mImageBase) && (address < dwarf->mImageBase + dwarf->mImageSize) && (dwarf->mOrigImageData != NULL))
  2119. {
  2120. return mDebugger->mCPU->Decode(address, dwarf->mOrigImageData, inst);
  2121. }
  2122. }
  2123. return false;
  2124. }
  2125. bool DebugTarget::IsObjectAccessBreak(addr_target address, CPURegisters* registers, intptr_target* objAddr)
  2126. {
  2127. for (auto dwarf : mDbgModules)
  2128. {
  2129. if ((address >= dwarf->mImageBase) && (address < dwarf->mImageBase + dwarf->mImageSize) && (dwarf->mOrigImageData != NULL))
  2130. {
  2131. bool result = mDebugger->mCPU->IsObjectAccessBreak(address, dwarf->mOrigImageData, registers->mIntRegsArray, objAddr);
  2132. return result;
  2133. }
  2134. }
  2135. return false;
  2136. }
  2137. DbgModule* DebugTarget::FindDbgModuleForAddress(addr_target address)
  2138. {
  2139. for (auto dwarf : mDbgModules)
  2140. {
  2141. if ((address >= dwarf->mImageBase) && (address < dwarf->mImageBase + dwarf->mImageSize))
  2142. return dwarf;
  2143. }
  2144. return NULL;
  2145. }
  2146. DbgModule* DebugTarget::GetMainDbgModule()
  2147. {
  2148. return mTargetBinary;
  2149. }
  2150. #ifdef BF_DBG_32
  2151. template <typename T>
  2152. void ReportRadixMap(MemReporter* memReporter, RadixMap32<T>& radixMap)
  2153. {
  2154. memReporter->Add(sizeof(void*) * RadixMap32<T>::ROOT_LENGTH);
  2155. for (int rootIdx = 0; rootIdx < RadixMap32<T>::ROOT_LENGTH; rootIdx++)
  2156. {
  2157. auto root = radixMap.mRoot[rootIdx];
  2158. if (root != NULL)
  2159. {
  2160. memReporter->Add(sizeof(RadixMap32<T>::Leaf));
  2161. }
  2162. }
  2163. }
  2164. #else
  2165. template <typename T>
  2166. void ReportRadixMap(MemReporter* memReporter, RadixMap64<T>& radixMap)
  2167. {
  2168. memReporter->Add(sizeof(void*) * RadixMap64<T>::ROOT_LENGTH);
  2169. for (int rootIdx = 0; rootIdx < RadixMap64<T>::ROOT_LENGTH; rootIdx++)
  2170. {
  2171. auto mid = radixMap.mRoot[rootIdx];
  2172. if (mid != NULL)
  2173. {
  2174. memReporter->Add(sizeof(RadixMap64<T>::Mid));
  2175. for (int midIdx = 0; midIdx < RadixMap64<T>::MID_LENGTH; midIdx++)
  2176. {
  2177. auto leaf = mid->mLeafs[midIdx];
  2178. if (leaf != NULL)
  2179. {
  2180. memReporter->Add(sizeof(RadixMap64<T>::Leaf));
  2181. }
  2182. }
  2183. }
  2184. }
  2185. }
  2186. #endif
  2187. void DebugTarget::ReportMemory(MemReporter* memReporter)
  2188. {
  2189. memReporter->BeginSection("SymbolMap");
  2190. ReportRadixMap(memReporter, mSymbolMap);
  2191. memReporter->EndSection();
  2192. memReporter->BeginSection("SubprogramMap");
  2193. ReportRadixMap(memReporter, mSubprogramMap);
  2194. memReporter->EndSection();
  2195. memReporter->BeginSection("ExceptionDirectoryMap");
  2196. ReportRadixMap(memReporter, mExceptionDirectoryMap);
  2197. memReporter->EndSection();
  2198. memReporter->BeginSection("ContribMap");
  2199. ReportRadixMap(memReporter, mContribMap);
  2200. memReporter->EndSection();
  2201. memReporter->BeginSection("CommonFrameDescriptors");
  2202. memReporter->AddVec(mCommonFrameDescriptors);
  2203. memReporter->EndSection();
  2204. for (auto dbgModule : mDbgModules)
  2205. {
  2206. memReporter->BeginSection("DbgModules");
  2207. dbgModule->ReportMemory(memReporter);
  2208. memReporter->EndSection();
  2209. }
  2210. }
  2211. template <typename T>
  2212. struct VectorRemoveCtx
  2213. {
  2214. T* mVec;
  2215. int mMatchStartIdx;
  2216. bool mFinished;
  2217. VectorRemoveCtx(T& vec)
  2218. {
  2219. mVec = &vec;
  2220. mMatchStartIdx = -1;
  2221. mFinished = false;
  2222. }
  2223. ~VectorRemoveCtx()
  2224. {
  2225. BF_ASSERT(mFinished);
  2226. }
  2227. void RemoveCond(int& idx, bool doRemove)
  2228. {
  2229. if (doRemove)
  2230. {
  2231. if (mMatchStartIdx == -1)
  2232. mMatchStartIdx = idx;
  2233. }
  2234. else
  2235. {
  2236. if (mMatchStartIdx != -1)
  2237. {
  2238. mVec->RemoveRange(mMatchStartIdx, idx - mMatchStartIdx);
  2239. idx = mMatchStartIdx;
  2240. mMatchStartIdx = -1;
  2241. }
  2242. }
  2243. }
  2244. void Finish()
  2245. {
  2246. if (mMatchStartIdx != -1)
  2247. mVec->RemoveRange(mMatchStartIdx, (int)mVec->size() - mMatchStartIdx);
  2248. mFinished = true;
  2249. }
  2250. };
  2251. void DebugTarget::RemoveTargetData()
  2252. {
  2253. BP_ZONE("DebugTarget::RemoveTargetData");
  2254. #ifdef _DEBUG
  2255. DbgModule* problemModule = NULL;
  2256. int checkIdx = 0;
  2257. for (DbgSymbol* headNode : mSymbolMap)
  2258. {
  2259. auto node = headNode;
  2260. while (node != NULL)
  2261. {
  2262. checkIdx++;
  2263. auto next = node->mNext;
  2264. if (node->mDbgModule->mDeleting)
  2265. {
  2266. problemModule = node->mDbgModule;
  2267. //OutputDebugStrF("Should have been removed by DbgModule::RemoveTargetData %@ %s\n", node->mAddress, node->mName);
  2268. BF_DBG_FATAL("Should have been removed by DbgModule::RemoveTargetData");
  2269. mSymbolMap.Remove(node);
  2270. }
  2271. node = next;
  2272. }
  2273. }
  2274. if (problemModule != NULL)
  2275. {
  2276. problemModule->RemoveTargetData();
  2277. }
  2278. for (DbgSubprogramMapEntry* headNode : mSubprogramMap)
  2279. {
  2280. auto node = headNode;
  2281. while (node != NULL)
  2282. {
  2283. auto next = node->mNext;
  2284. if (node->mEntry->mCompileUnit->mDbgModule->mDeleting)
  2285. {
  2286. //OutputDebugStrF("Should have been removed by DbgModule::RemoveTargetData %s\n", node->mEntry->mName);
  2287. BF_DBG_FATAL("Should have been removed by DbgModule::RemoveTargetData");
  2288. mSubprogramMap.Remove(node);
  2289. }
  2290. node = next;
  2291. }
  2292. }
  2293. for (DbgExceptionDirectoryEntry* exDirEntry : mExceptionDirectoryMap)
  2294. {
  2295. auto node = exDirEntry;
  2296. while (node != NULL)
  2297. {
  2298. auto next = node->mNext;
  2299. if (node->mDbgModule->mDeleting)
  2300. {
  2301. //BF_DBG_FATAL("Should have been removed by DbgModule::RemoveTargetData");
  2302. mExceptionDirectoryMap.Remove(node);
  2303. }
  2304. node = next;
  2305. }
  2306. }
  2307. #endif
  2308. VectorRemoveCtx<Array<DwCommonFrameDescriptor*>> cieRemoveCtx(mCommonFrameDescriptors);
  2309. for (int dieIdx = 0; dieIdx < (int)mCommonFrameDescriptors.size(); dieIdx++)
  2310. {
  2311. DwCommonFrameDescriptor* commonFrameDescriptor = mCommonFrameDescriptors[dieIdx];
  2312. cieRemoveCtx.RemoveCond(dieIdx, commonFrameDescriptor->mDbgModule->mDeleting);
  2313. }
  2314. cieRemoveCtx.Finish();
  2315. auto frameDescItr = mDwFrameDescriptorMap.begin();
  2316. while (frameDescItr != mDwFrameDescriptorMap.end())
  2317. {
  2318. DwFrameDescriptor* frameDesc = &frameDescItr->second;
  2319. if (frameDesc->mCommonFrameDescriptor->mDbgModule->mDeleting)
  2320. frameDescItr = mDwFrameDescriptorMap.erase(frameDescItr);
  2321. else
  2322. ++frameDescItr;
  2323. }
  2324. }