1 //===- HeaderSearch.cpp - Resolve Header File Locations -------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file implements the DirectoryLookup and HeaderSearch interfaces. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "clang/Lex/HeaderSearch.h" 14 #include "clang/Basic/Diagnostic.h" 15 #include "clang/Basic/FileManager.h" 16 #include "clang/Basic/IdentifierTable.h" 17 #include "clang/Basic/Module.h" 18 #include "clang/Basic/SourceManager.h" 19 #include "clang/Lex/DirectoryLookup.h" 20 #include "clang/Lex/ExternalPreprocessorSource.h" 21 #include "clang/Lex/HeaderMap.h" 22 #include "clang/Lex/HeaderSearchOptions.h" 23 #include "clang/Lex/LexDiagnostic.h" 24 #include "clang/Lex/ModuleMap.h" 25 #include "clang/Lex/Preprocessor.h" 26 #include "llvm/ADT/APInt.h" 27 #include "llvm/ADT/Hashing.h" 28 #include "llvm/ADT/SmallString.h" 29 #include "llvm/ADT/SmallVector.h" 30 #include "llvm/ADT/Statistic.h" 31 #include "llvm/ADT/StringRef.h" 32 #include "llvm/ADT/STLExtras.h" 33 #include "llvm/Support/Allocator.h" 34 #include "llvm/Support/Capacity.h" 35 #include "llvm/Support/Errc.h" 36 #include "llvm/Support/ErrorHandling.h" 37 #include "llvm/Support/FileSystem.h" 38 #include "llvm/Support/Path.h" 39 #include "llvm/Support/VirtualFileSystem.h" 40 #include <algorithm> 41 #include <cassert> 42 #include <cstddef> 43 #include <cstdio> 44 #include <cstring> 45 #include <string> 46 #include <system_error> 47 #include <utility> 48 49 using namespace clang; 50 51 #define DEBUG_TYPE "file-search" 52 53 ALWAYS_ENABLED_STATISTIC(NumIncluded, "Number of attempted #includes."); 54 ALWAYS_ENABLED_STATISTIC( 55 NumMultiIncludeFileOptzn, 56 "Number of #includes skipped due to the multi-include optimization."); 57 ALWAYS_ENABLED_STATISTIC(NumFrameworkLookups, "Number of framework lookups."); 58 ALWAYS_ENABLED_STATISTIC(NumSubFrameworkLookups, 59 "Number of subframework lookups."); 60 61 const IdentifierInfo * 62 HeaderFileInfo::getControllingMacro(ExternalPreprocessorSource *External) { 63 if (ControllingMacro) { 64 if (ControllingMacro->isOutOfDate()) { 65 assert(External && "We must have an external source if we have a " 66 "controlling macro that is out of date."); 67 External->updateOutOfDateIdentifier( 68 *const_cast<IdentifierInfo *>(ControllingMacro)); 69 } 70 return ControllingMacro; 71 } 72 73 if (!ControllingMacroID || !External) 74 return nullptr; 75 76 ControllingMacro = External->GetIdentifier(ControllingMacroID); 77 return ControllingMacro; 78 } 79 80 ExternalHeaderFileInfoSource::~ExternalHeaderFileInfoSource() = default; 81 82 HeaderSearch::HeaderSearch(std::shared_ptr<HeaderSearchOptions> HSOpts, 83 SourceManager &SourceMgr, DiagnosticsEngine &Diags, 84 const LangOptions &LangOpts, 85 const TargetInfo *Target) 86 : HSOpts(std::move(HSOpts)), Diags(Diags), 87 FileMgr(SourceMgr.getFileManager()), FrameworkMap(64), 88 ModMap(SourceMgr, Diags, LangOpts, Target, *this) {} 89 90 void HeaderSearch::PrintStats() { 91 llvm::errs() << "\n*** HeaderSearch Stats:\n" 92 << FileInfo.size() << " files tracked.\n"; 93 unsigned NumOnceOnlyFiles = 0; 94 for (unsigned i = 0, e = FileInfo.size(); i != e; ++i) 95 NumOnceOnlyFiles += (FileInfo[i].isPragmaOnce || FileInfo[i].isImport); 96 llvm::errs() << " " << NumOnceOnlyFiles << " #import/#pragma once files.\n"; 97 98 llvm::errs() << " " << NumIncluded << " #include/#include_next/#import.\n" 99 << " " << NumMultiIncludeFileOptzn 100 << " #includes skipped due to the multi-include optimization.\n"; 101 102 llvm::errs() << NumFrameworkLookups << " framework lookups.\n" 103 << NumSubFrameworkLookups << " subframework lookups.\n"; 104 } 105 106 void HeaderSearch::SetSearchPaths( 107 std::vector<DirectoryLookup> dirs, unsigned int angledDirIdx, 108 unsigned int systemDirIdx, bool noCurDirSearch, 109 llvm::DenseMap<unsigned int, unsigned int> searchDirToHSEntry) { 110 assert(angledDirIdx <= systemDirIdx && systemDirIdx <= dirs.size() && 111 "Directory indices are unordered"); 112 SearchDirs = std::move(dirs); 113 SearchDirsUsage.assign(SearchDirs.size(), false); 114 AngledDirIdx = angledDirIdx; 115 SystemDirIdx = systemDirIdx; 116 NoCurDirSearch = noCurDirSearch; 117 SearchDirToHSEntry = std::move(searchDirToHSEntry); 118 //LookupFileCache.clear(); 119 } 120 121 void HeaderSearch::AddSearchPath(const DirectoryLookup &dir, bool isAngled) { 122 unsigned idx = isAngled ? SystemDirIdx : AngledDirIdx; 123 SearchDirs.insert(SearchDirs.begin() + idx, dir); 124 SearchDirsUsage.insert(SearchDirsUsage.begin() + idx, false); 125 if (!isAngled) 126 AngledDirIdx++; 127 SystemDirIdx++; 128 } 129 130 std::vector<bool> HeaderSearch::computeUserEntryUsage() const { 131 std::vector<bool> UserEntryUsage(HSOpts->UserEntries.size()); 132 for (unsigned I = 0, E = SearchDirsUsage.size(); I < E; ++I) { 133 // Check whether this DirectoryLookup has been successfully used. 134 if (SearchDirsUsage[I]) { 135 auto UserEntryIdxIt = SearchDirToHSEntry.find(I); 136 // Check whether this DirectoryLookup maps to a HeaderSearch::UserEntry. 137 if (UserEntryIdxIt != SearchDirToHSEntry.end()) 138 UserEntryUsage[UserEntryIdxIt->second] = true; 139 } 140 } 141 return UserEntryUsage; 142 } 143 144 /// CreateHeaderMap - This method returns a HeaderMap for the specified 145 /// FileEntry, uniquing them through the 'HeaderMaps' datastructure. 146 const HeaderMap *HeaderSearch::CreateHeaderMap(const FileEntry *FE) { 147 // We expect the number of headermaps to be small, and almost always empty. 148 // If it ever grows, use of a linear search should be re-evaluated. 149 if (!HeaderMaps.empty()) { 150 for (unsigned i = 0, e = HeaderMaps.size(); i != e; ++i) 151 // Pointer equality comparison of FileEntries works because they are 152 // already uniqued by inode. 153 if (HeaderMaps[i].first == FE) 154 return HeaderMaps[i].second.get(); 155 } 156 157 if (std::unique_ptr<HeaderMap> HM = HeaderMap::Create(FE, FileMgr)) { 158 HeaderMaps.emplace_back(FE, std::move(HM)); 159 return HeaderMaps.back().second.get(); 160 } 161 162 return nullptr; 163 } 164 165 /// Get filenames for all registered header maps. 166 void HeaderSearch::getHeaderMapFileNames( 167 SmallVectorImpl<std::string> &Names) const { 168 for (auto &HM : HeaderMaps) 169 Names.push_back(std::string(HM.first->getName())); 170 } 171 172 std::string HeaderSearch::getCachedModuleFileName(Module *Module) { 173 const FileEntry *ModuleMap = 174 getModuleMap().getModuleMapFileForUniquing(Module); 175 // The ModuleMap maybe a nullptr, when we load a cached C++ module without 176 // *.modulemap file. In this case, just return an empty string. 177 if (ModuleMap == nullptr) 178 return {}; 179 return getCachedModuleFileName(Module->Name, ModuleMap->getName()); 180 } 181 182 std::string HeaderSearch::getPrebuiltModuleFileName(StringRef ModuleName, 183 bool FileMapOnly) { 184 // First check the module name to pcm file map. 185 auto i(HSOpts->PrebuiltModuleFiles.find(ModuleName)); 186 if (i != HSOpts->PrebuiltModuleFiles.end()) 187 return i->second; 188 189 if (FileMapOnly || HSOpts->PrebuiltModulePaths.empty()) 190 return {}; 191 192 // Then go through each prebuilt module directory and try to find the pcm 193 // file. 194 for (const std::string &Dir : HSOpts->PrebuiltModulePaths) { 195 SmallString<256> Result(Dir); 196 llvm::sys::fs::make_absolute(Result); 197 if (ModuleName.contains(':')) 198 // The separator of C++20 modules partitions (':') is not good for file 199 // systems, here clang and gcc choose '-' by default since it is not a 200 // valid character of C++ indentifiers. So we could avoid conflicts. 201 llvm::sys::path::append(Result, ModuleName.split(':').first + "-" + 202 ModuleName.split(':').second + 203 ".pcm"); 204 else 205 llvm::sys::path::append(Result, ModuleName + ".pcm"); 206 if (getFileMgr().getFile(Result.str())) 207 return std::string(Result); 208 } 209 210 return {}; 211 } 212 213 std::string HeaderSearch::getPrebuiltImplicitModuleFileName(Module *Module) { 214 const FileEntry *ModuleMap = 215 getModuleMap().getModuleMapFileForUniquing(Module); 216 StringRef ModuleName = Module->Name; 217 StringRef ModuleMapPath = ModuleMap->getName(); 218 StringRef ModuleCacheHash = HSOpts->DisableModuleHash ? "" : getModuleHash(); 219 for (const std::string &Dir : HSOpts->PrebuiltModulePaths) { 220 SmallString<256> CachePath(Dir); 221 llvm::sys::fs::make_absolute(CachePath); 222 llvm::sys::path::append(CachePath, ModuleCacheHash); 223 std::string FileName = 224 getCachedModuleFileNameImpl(ModuleName, ModuleMapPath, CachePath); 225 if (!FileName.empty() && getFileMgr().getFile(FileName)) 226 return FileName; 227 } 228 return {}; 229 } 230 231 std::string HeaderSearch::getCachedModuleFileName(StringRef ModuleName, 232 StringRef ModuleMapPath) { 233 return getCachedModuleFileNameImpl(ModuleName, ModuleMapPath, 234 getModuleCachePath()); 235 } 236 237 std::string HeaderSearch::getCachedModuleFileNameImpl(StringRef ModuleName, 238 StringRef ModuleMapPath, 239 StringRef CachePath) { 240 // If we don't have a module cache path or aren't supposed to use one, we 241 // can't do anything. 242 if (CachePath.empty()) 243 return {}; 244 245 SmallString<256> Result(CachePath); 246 llvm::sys::fs::make_absolute(Result); 247 248 if (HSOpts->DisableModuleHash) { 249 llvm::sys::path::append(Result, ModuleName + ".pcm"); 250 } else { 251 // Construct the name <ModuleName>-<hash of ModuleMapPath>.pcm which should 252 // ideally be globally unique to this particular module. Name collisions 253 // in the hash are safe (because any translation unit can only import one 254 // module with each name), but result in a loss of caching. 255 // 256 // To avoid false-negatives, we form as canonical a path as we can, and map 257 // to lower-case in case we're on a case-insensitive file system. 258 std::string Parent = 259 std::string(llvm::sys::path::parent_path(ModuleMapPath)); 260 if (Parent.empty()) 261 Parent = "."; 262 auto Dir = FileMgr.getDirectory(Parent); 263 if (!Dir) 264 return {}; 265 auto DirName = FileMgr.getCanonicalName(*Dir); 266 auto FileName = llvm::sys::path::filename(ModuleMapPath); 267 268 llvm::hash_code Hash = 269 llvm::hash_combine(DirName.lower(), FileName.lower()); 270 271 SmallString<128> HashStr; 272 llvm::APInt(64, size_t(Hash)).toStringUnsigned(HashStr, /*Radix*/36); 273 llvm::sys::path::append(Result, ModuleName + "-" + HashStr + ".pcm"); 274 } 275 return Result.str().str(); 276 } 277 278 Module *HeaderSearch::lookupModule(StringRef ModuleName, 279 SourceLocation ImportLoc, bool AllowSearch, 280 bool AllowExtraModuleMapSearch) { 281 // Look in the module map to determine if there is a module by this name. 282 Module *Module = ModMap.findModule(ModuleName); 283 if (Module || !AllowSearch || !HSOpts->ImplicitModuleMaps) 284 return Module; 285 286 StringRef SearchName = ModuleName; 287 Module = lookupModule(ModuleName, SearchName, ImportLoc, 288 AllowExtraModuleMapSearch); 289 290 // The facility for "private modules" -- adjacent, optional module maps named 291 // module.private.modulemap that are supposed to define private submodules -- 292 // may have different flavors of names: FooPrivate, Foo_Private and Foo.Private. 293 // 294 // Foo.Private is now deprecated in favor of Foo_Private. Users of FooPrivate 295 // should also rename to Foo_Private. Representing private as submodules 296 // could force building unwanted dependencies into the parent module and cause 297 // dependency cycles. 298 if (!Module && SearchName.consume_back("_Private")) 299 Module = lookupModule(ModuleName, SearchName, ImportLoc, 300 AllowExtraModuleMapSearch); 301 if (!Module && SearchName.consume_back("Private")) 302 Module = lookupModule(ModuleName, SearchName, ImportLoc, 303 AllowExtraModuleMapSearch); 304 return Module; 305 } 306 307 Module *HeaderSearch::lookupModule(StringRef ModuleName, StringRef SearchName, 308 SourceLocation ImportLoc, 309 bool AllowExtraModuleMapSearch) { 310 Module *Module = nullptr; 311 312 // Look through the various header search paths to load any available module 313 // maps, searching for a module map that describes this module. 314 for (DirectoryLookup Dir : search_dir_range()) { 315 if (Dir.isFramework()) { 316 // Search for or infer a module map for a framework. Here we use 317 // SearchName rather than ModuleName, to permit finding private modules 318 // named FooPrivate in buggy frameworks named Foo. 319 SmallString<128> FrameworkDirName; 320 FrameworkDirName += Dir.getFrameworkDir()->getName(); 321 llvm::sys::path::append(FrameworkDirName, SearchName + ".framework"); 322 if (auto FrameworkDir = 323 FileMgr.getOptionalDirectoryRef(FrameworkDirName)) { 324 bool IsSystem = Dir.getDirCharacteristic() != SrcMgr::C_User; 325 Module = loadFrameworkModule(ModuleName, *FrameworkDir, IsSystem); 326 if (Module) 327 break; 328 } 329 } 330 331 // FIXME: Figure out how header maps and module maps will work together. 332 333 // Only deal with normal search directories. 334 if (!Dir.isNormalDir()) 335 continue; 336 337 bool IsSystem = Dir.isSystemHeaderDirectory(); 338 // Only returns None if not a normal directory, which we just checked 339 DirectoryEntryRef NormalDir = *Dir.getDirRef(); 340 // Search for a module map file in this directory. 341 if (loadModuleMapFile(NormalDir, IsSystem, 342 /*IsFramework*/false) == LMM_NewlyLoaded) { 343 // We just loaded a module map file; check whether the module is 344 // available now. 345 Module = ModMap.findModule(ModuleName); 346 if (Module) 347 break; 348 } 349 350 // Search for a module map in a subdirectory with the same name as the 351 // module. 352 SmallString<128> NestedModuleMapDirName; 353 NestedModuleMapDirName = Dir.getDir()->getName(); 354 llvm::sys::path::append(NestedModuleMapDirName, ModuleName); 355 if (loadModuleMapFile(NestedModuleMapDirName, IsSystem, 356 /*IsFramework*/false) == LMM_NewlyLoaded){ 357 // If we just loaded a module map file, look for the module again. 358 Module = ModMap.findModule(ModuleName); 359 if (Module) 360 break; 361 } 362 363 // If we've already performed the exhaustive search for module maps in this 364 // search directory, don't do it again. 365 if (Dir.haveSearchedAllModuleMaps()) 366 continue; 367 368 // Load all module maps in the immediate subdirectories of this search 369 // directory if ModuleName was from @import. 370 if (AllowExtraModuleMapSearch) 371 loadSubdirectoryModuleMaps(Dir); 372 373 // Look again for the module. 374 Module = ModMap.findModule(ModuleName); 375 if (Module) 376 break; 377 } 378 379 return Module; 380 } 381 382 //===----------------------------------------------------------------------===// 383 // File lookup within a DirectoryLookup scope 384 //===----------------------------------------------------------------------===// 385 386 /// getName - Return the directory or filename corresponding to this lookup 387 /// object. 388 StringRef DirectoryLookup::getName() const { 389 // FIXME: Use the name from \c DirectoryEntryRef. 390 if (isNormalDir()) 391 return getDir()->getName(); 392 if (isFramework()) 393 return getFrameworkDir()->getName(); 394 assert(isHeaderMap() && "Unknown DirectoryLookup"); 395 return getHeaderMap()->getFileName(); 396 } 397 398 Optional<FileEntryRef> HeaderSearch::getFileAndSuggestModule( 399 StringRef FileName, SourceLocation IncludeLoc, const DirectoryEntry *Dir, 400 bool IsSystemHeaderDir, Module *RequestingModule, 401 ModuleMap::KnownHeader *SuggestedModule) { 402 // If we have a module map that might map this header, load it and 403 // check whether we'll have a suggestion for a module. 404 auto File = getFileMgr().getFileRef(FileName, /*OpenFile=*/true); 405 if (!File) { 406 // For rare, surprising errors (e.g. "out of file handles"), diag the EC 407 // message. 408 std::error_code EC = llvm::errorToErrorCode(File.takeError()); 409 if (EC != llvm::errc::no_such_file_or_directory && 410 EC != llvm::errc::invalid_argument && 411 EC != llvm::errc::is_a_directory && EC != llvm::errc::not_a_directory) { 412 Diags.Report(IncludeLoc, diag::err_cannot_open_file) 413 << FileName << EC.message(); 414 } 415 return None; 416 } 417 418 // If there is a module that corresponds to this header, suggest it. 419 if (!findUsableModuleForHeader( 420 &File->getFileEntry(), Dir ? Dir : File->getFileEntry().getDir(), 421 RequestingModule, SuggestedModule, IsSystemHeaderDir)) 422 return None; 423 424 return *File; 425 } 426 427 /// LookupFile - Lookup the specified file in this search path, returning it 428 /// if it exists or returning null if not. 429 Optional<FileEntryRef> DirectoryLookup::LookupFile( 430 StringRef &Filename, HeaderSearch &HS, SourceLocation IncludeLoc, 431 SmallVectorImpl<char> *SearchPath, SmallVectorImpl<char> *RelativePath, 432 Module *RequestingModule, ModuleMap::KnownHeader *SuggestedModule, 433 bool &InUserSpecifiedSystemFramework, bool &IsFrameworkFound, 434 bool &IsInHeaderMap, SmallVectorImpl<char> &MappedName) const { 435 InUserSpecifiedSystemFramework = false; 436 IsInHeaderMap = false; 437 MappedName.clear(); 438 439 SmallString<1024> TmpDir; 440 if (isNormalDir()) { 441 // Concatenate the requested file onto the directory. 442 TmpDir = getDirRef()->getName(); 443 llvm::sys::path::append(TmpDir, Filename); 444 if (SearchPath) { 445 StringRef SearchPathRef(getDirRef()->getName()); 446 SearchPath->clear(); 447 SearchPath->append(SearchPathRef.begin(), SearchPathRef.end()); 448 } 449 if (RelativePath) { 450 RelativePath->clear(); 451 RelativePath->append(Filename.begin(), Filename.end()); 452 } 453 454 return HS.getFileAndSuggestModule(TmpDir, IncludeLoc, getDir(), 455 isSystemHeaderDirectory(), 456 RequestingModule, SuggestedModule); 457 } 458 459 if (isFramework()) 460 return DoFrameworkLookup(Filename, HS, SearchPath, RelativePath, 461 RequestingModule, SuggestedModule, 462 InUserSpecifiedSystemFramework, IsFrameworkFound); 463 464 assert(isHeaderMap() && "Unknown directory lookup"); 465 const HeaderMap *HM = getHeaderMap(); 466 SmallString<1024> Path; 467 StringRef Dest = HM->lookupFilename(Filename, Path); 468 if (Dest.empty()) 469 return None; 470 471 IsInHeaderMap = true; 472 473 auto FixupSearchPath = [&]() { 474 if (SearchPath) { 475 StringRef SearchPathRef(getName()); 476 SearchPath->clear(); 477 SearchPath->append(SearchPathRef.begin(), SearchPathRef.end()); 478 } 479 if (RelativePath) { 480 RelativePath->clear(); 481 RelativePath->append(Filename.begin(), Filename.end()); 482 } 483 }; 484 485 // Check if the headermap maps the filename to a framework include 486 // ("Foo.h" -> "Foo/Foo.h"), in which case continue header lookup using the 487 // framework include. 488 if (llvm::sys::path::is_relative(Dest)) { 489 MappedName.append(Dest.begin(), Dest.end()); 490 Filename = StringRef(MappedName.begin(), MappedName.size()); 491 Dest = HM->lookupFilename(Filename, Path); 492 } 493 494 if (auto Res = HS.getFileMgr().getOptionalFileRef(Dest)) { 495 FixupSearchPath(); 496 return *Res; 497 } 498 499 // Header maps need to be marked as used whenever the filename matches. 500 // The case where the target file **exists** is handled by callee of this 501 // function as part of the regular logic that applies to include search paths. 502 // The case where the target file **does not exist** is handled here: 503 HS.noteLookupUsage(HS.searchDirIdx(*this), IncludeLoc); 504 return None; 505 } 506 507 /// Given a framework directory, find the top-most framework directory. 508 /// 509 /// \param FileMgr The file manager to use for directory lookups. 510 /// \param DirName The name of the framework directory. 511 /// \param SubmodulePath Will be populated with the submodule path from the 512 /// returned top-level module to the originally named framework. 513 static Optional<DirectoryEntryRef> 514 getTopFrameworkDir(FileManager &FileMgr, StringRef DirName, 515 SmallVectorImpl<std::string> &SubmodulePath) { 516 assert(llvm::sys::path::extension(DirName) == ".framework" && 517 "Not a framework directory"); 518 519 // Note: as an egregious but useful hack we use the real path here, because 520 // frameworks moving between top-level frameworks to embedded frameworks tend 521 // to be symlinked, and we base the logical structure of modules on the 522 // physical layout. In particular, we need to deal with crazy includes like 523 // 524 // #include <Foo/Frameworks/Bar.framework/Headers/Wibble.h> 525 // 526 // where 'Bar' used to be embedded in 'Foo', is now a top-level framework 527 // which one should access with, e.g., 528 // 529 // #include <Bar/Wibble.h> 530 // 531 // Similar issues occur when a top-level framework has moved into an 532 // embedded framework. 533 auto TopFrameworkDir = FileMgr.getOptionalDirectoryRef(DirName); 534 535 if (TopFrameworkDir) 536 DirName = FileMgr.getCanonicalName(*TopFrameworkDir); 537 do { 538 // Get the parent directory name. 539 DirName = llvm::sys::path::parent_path(DirName); 540 if (DirName.empty()) 541 break; 542 543 // Determine whether this directory exists. 544 auto Dir = FileMgr.getOptionalDirectoryRef(DirName); 545 if (!Dir) 546 break; 547 548 // If this is a framework directory, then we're a subframework of this 549 // framework. 550 if (llvm::sys::path::extension(DirName) == ".framework") { 551 SubmodulePath.push_back(std::string(llvm::sys::path::stem(DirName))); 552 TopFrameworkDir = *Dir; 553 } 554 } while (true); 555 556 return TopFrameworkDir; 557 } 558 559 static bool needModuleLookup(Module *RequestingModule, 560 bool HasSuggestedModule) { 561 return HasSuggestedModule || 562 (RequestingModule && RequestingModule->NoUndeclaredIncludes); 563 } 564 565 /// DoFrameworkLookup - Do a lookup of the specified file in the current 566 /// DirectoryLookup, which is a framework directory. 567 Optional<FileEntryRef> DirectoryLookup::DoFrameworkLookup( 568 StringRef Filename, HeaderSearch &HS, SmallVectorImpl<char> *SearchPath, 569 SmallVectorImpl<char> *RelativePath, Module *RequestingModule, 570 ModuleMap::KnownHeader *SuggestedModule, 571 bool &InUserSpecifiedSystemFramework, bool &IsFrameworkFound) const { 572 FileManager &FileMgr = HS.getFileMgr(); 573 574 // Framework names must have a '/' in the filename. 575 size_t SlashPos = Filename.find('/'); 576 if (SlashPos == StringRef::npos) 577 return None; 578 579 // Find out if this is the home for the specified framework, by checking 580 // HeaderSearch. Possible answers are yes/no and unknown. 581 FrameworkCacheEntry &CacheEntry = 582 HS.LookupFrameworkCache(Filename.substr(0, SlashPos)); 583 584 // If it is known and in some other directory, fail. 585 if (CacheEntry.Directory && CacheEntry.Directory != getFrameworkDirRef()) 586 return None; 587 588 // Otherwise, construct the path to this framework dir. 589 590 // FrameworkName = "/System/Library/Frameworks/" 591 SmallString<1024> FrameworkName; 592 FrameworkName += getFrameworkDirRef()->getName(); 593 if (FrameworkName.empty() || FrameworkName.back() != '/') 594 FrameworkName.push_back('/'); 595 596 // FrameworkName = "/System/Library/Frameworks/Cocoa" 597 StringRef ModuleName(Filename.begin(), SlashPos); 598 FrameworkName += ModuleName; 599 600 // FrameworkName = "/System/Library/Frameworks/Cocoa.framework/" 601 FrameworkName += ".framework/"; 602 603 // If the cache entry was unresolved, populate it now. 604 if (!CacheEntry.Directory) { 605 ++NumFrameworkLookups; 606 607 // If the framework dir doesn't exist, we fail. 608 auto Dir = FileMgr.getDirectory(FrameworkName); 609 if (!Dir) 610 return None; 611 612 // Otherwise, if it does, remember that this is the right direntry for this 613 // framework. 614 CacheEntry.Directory = getFrameworkDirRef(); 615 616 // If this is a user search directory, check if the framework has been 617 // user-specified as a system framework. 618 if (getDirCharacteristic() == SrcMgr::C_User) { 619 SmallString<1024> SystemFrameworkMarker(FrameworkName); 620 SystemFrameworkMarker += ".system_framework"; 621 if (llvm::sys::fs::exists(SystemFrameworkMarker)) { 622 CacheEntry.IsUserSpecifiedSystemFramework = true; 623 } 624 } 625 } 626 627 // Set out flags. 628 InUserSpecifiedSystemFramework = CacheEntry.IsUserSpecifiedSystemFramework; 629 IsFrameworkFound = CacheEntry.Directory.has_value(); 630 631 if (RelativePath) { 632 RelativePath->clear(); 633 RelativePath->append(Filename.begin()+SlashPos+1, Filename.end()); 634 } 635 636 // Check "/System/Library/Frameworks/Cocoa.framework/Headers/file.h" 637 unsigned OrigSize = FrameworkName.size(); 638 639 FrameworkName += "Headers/"; 640 641 if (SearchPath) { 642 SearchPath->clear(); 643 // Without trailing '/'. 644 SearchPath->append(FrameworkName.begin(), FrameworkName.end()-1); 645 } 646 647 FrameworkName.append(Filename.begin()+SlashPos+1, Filename.end()); 648 649 auto File = 650 FileMgr.getOptionalFileRef(FrameworkName, /*OpenFile=*/!SuggestedModule); 651 if (!File) { 652 // Check "/System/Library/Frameworks/Cocoa.framework/PrivateHeaders/file.h" 653 const char *Private = "Private"; 654 FrameworkName.insert(FrameworkName.begin()+OrigSize, Private, 655 Private+strlen(Private)); 656 if (SearchPath) 657 SearchPath->insert(SearchPath->begin()+OrigSize, Private, 658 Private+strlen(Private)); 659 660 File = FileMgr.getOptionalFileRef(FrameworkName, 661 /*OpenFile=*/!SuggestedModule); 662 } 663 664 // If we found the header and are allowed to suggest a module, do so now. 665 if (File && needModuleLookup(RequestingModule, SuggestedModule)) { 666 // Find the framework in which this header occurs. 667 StringRef FrameworkPath = File->getFileEntry().getDir()->getName(); 668 bool FoundFramework = false; 669 do { 670 // Determine whether this directory exists. 671 auto Dir = FileMgr.getDirectory(FrameworkPath); 672 if (!Dir) 673 break; 674 675 // If this is a framework directory, then we're a subframework of this 676 // framework. 677 if (llvm::sys::path::extension(FrameworkPath) == ".framework") { 678 FoundFramework = true; 679 break; 680 } 681 682 // Get the parent directory name. 683 FrameworkPath = llvm::sys::path::parent_path(FrameworkPath); 684 if (FrameworkPath.empty()) 685 break; 686 } while (true); 687 688 bool IsSystem = getDirCharacteristic() != SrcMgr::C_User; 689 if (FoundFramework) { 690 if (!HS.findUsableModuleForFrameworkHeader( 691 &File->getFileEntry(), FrameworkPath, RequestingModule, 692 SuggestedModule, IsSystem)) 693 return None; 694 } else { 695 if (!HS.findUsableModuleForHeader(&File->getFileEntry(), getDir(), 696 RequestingModule, SuggestedModule, 697 IsSystem)) 698 return None; 699 } 700 } 701 if (File) 702 return *File; 703 return None; 704 } 705 706 void HeaderSearch::cacheLookupSuccess(LookupFileCacheInfo &CacheLookup, 707 ConstSearchDirIterator HitIt, 708 SourceLocation Loc) { 709 CacheLookup.HitIt = HitIt; 710 noteLookupUsage(HitIt.Idx, Loc); 711 } 712 713 void HeaderSearch::noteLookupUsage(unsigned HitIdx, SourceLocation Loc) { 714 SearchDirsUsage[HitIdx] = true; 715 716 auto UserEntryIdxIt = SearchDirToHSEntry.find(HitIdx); 717 if (UserEntryIdxIt != SearchDirToHSEntry.end()) 718 Diags.Report(Loc, diag::remark_pp_search_path_usage) 719 << HSOpts->UserEntries[UserEntryIdxIt->second].Path; 720 } 721 722 void HeaderSearch::setTarget(const TargetInfo &Target) { 723 ModMap.setTarget(Target); 724 } 725 726 //===----------------------------------------------------------------------===// 727 // Header File Location. 728 //===----------------------------------------------------------------------===// 729 730 /// Return true with a diagnostic if the file that MSVC would have found 731 /// fails to match the one that Clang would have found with MSVC header search 732 /// disabled. 733 static bool checkMSVCHeaderSearch(DiagnosticsEngine &Diags, 734 const FileEntry *MSFE, const FileEntry *FE, 735 SourceLocation IncludeLoc) { 736 if (MSFE && FE != MSFE) { 737 Diags.Report(IncludeLoc, diag::ext_pp_include_search_ms) << MSFE->getName(); 738 return true; 739 } 740 return false; 741 } 742 743 static const char *copyString(StringRef Str, llvm::BumpPtrAllocator &Alloc) { 744 assert(!Str.empty()); 745 char *CopyStr = Alloc.Allocate<char>(Str.size()+1); 746 std::copy(Str.begin(), Str.end(), CopyStr); 747 CopyStr[Str.size()] = '\0'; 748 return CopyStr; 749 } 750 751 static bool isFrameworkStylePath(StringRef Path, bool &IsPrivateHeader, 752 SmallVectorImpl<char> &FrameworkName, 753 SmallVectorImpl<char> &IncludeSpelling) { 754 using namespace llvm::sys; 755 path::const_iterator I = path::begin(Path); 756 path::const_iterator E = path::end(Path); 757 IsPrivateHeader = false; 758 759 // Detect different types of framework style paths: 760 // 761 // ...Foo.framework/{Headers,PrivateHeaders} 762 // ...Foo.framework/Versions/{A,Current}/{Headers,PrivateHeaders} 763 // ...Foo.framework/Frameworks/Nested.framework/{Headers,PrivateHeaders} 764 // ...<other variations with 'Versions' like in the above path> 765 // 766 // and some other variations among these lines. 767 int FoundComp = 0; 768 while (I != E) { 769 if (*I == "Headers") { 770 ++FoundComp; 771 } else if (*I == "PrivateHeaders") { 772 ++FoundComp; 773 IsPrivateHeader = true; 774 } else if (I->endswith(".framework")) { 775 StringRef Name = I->drop_back(10); // Drop .framework 776 // Need to reset the strings and counter to support nested frameworks. 777 FrameworkName.clear(); 778 FrameworkName.append(Name.begin(), Name.end()); 779 IncludeSpelling.clear(); 780 IncludeSpelling.append(Name.begin(), Name.end()); 781 FoundComp = 1; 782 } else if (FoundComp >= 2) { 783 IncludeSpelling.push_back('/'); 784 IncludeSpelling.append(I->begin(), I->end()); 785 } 786 ++I; 787 } 788 789 return !FrameworkName.empty() && FoundComp >= 2; 790 } 791 792 static void 793 diagnoseFrameworkInclude(DiagnosticsEngine &Diags, SourceLocation IncludeLoc, 794 StringRef Includer, StringRef IncludeFilename, 795 const FileEntry *IncludeFE, bool isAngled = false, 796 bool FoundByHeaderMap = false) { 797 bool IsIncluderPrivateHeader = false; 798 SmallString<128> FromFramework, ToFramework; 799 SmallString<128> FromIncludeSpelling, ToIncludeSpelling; 800 if (!isFrameworkStylePath(Includer, IsIncluderPrivateHeader, FromFramework, 801 FromIncludeSpelling)) 802 return; 803 bool IsIncludeePrivateHeader = false; 804 bool IsIncludeeInFramework = 805 isFrameworkStylePath(IncludeFE->getName(), IsIncludeePrivateHeader, 806 ToFramework, ToIncludeSpelling); 807 808 if (!isAngled && !FoundByHeaderMap) { 809 SmallString<128> NewInclude("<"); 810 if (IsIncludeeInFramework) { 811 NewInclude += ToIncludeSpelling; 812 NewInclude += ">"; 813 } else { 814 NewInclude += IncludeFilename; 815 NewInclude += ">"; 816 } 817 Diags.Report(IncludeLoc, diag::warn_quoted_include_in_framework_header) 818 << IncludeFilename 819 << FixItHint::CreateReplacement(IncludeLoc, NewInclude); 820 } 821 822 // Headers in Foo.framework/Headers should not include headers 823 // from Foo.framework/PrivateHeaders, since this violates public/private 824 // API boundaries and can cause modular dependency cycles. 825 if (!IsIncluderPrivateHeader && IsIncludeeInFramework && 826 IsIncludeePrivateHeader && FromFramework == ToFramework) 827 Diags.Report(IncludeLoc, diag::warn_framework_include_private_from_public) 828 << IncludeFilename; 829 } 830 831 /// LookupFile - Given a "foo" or \<foo> reference, look up the indicated file, 832 /// return null on failure. isAngled indicates whether the file reference is 833 /// for system \#include's or not (i.e. using <> instead of ""). Includers, if 834 /// non-empty, indicates where the \#including file(s) are, in case a relative 835 /// search is needed. Microsoft mode will pass all \#including files. 836 Optional<FileEntryRef> HeaderSearch::LookupFile( 837 StringRef Filename, SourceLocation IncludeLoc, bool isAngled, 838 ConstSearchDirIterator FromDir, ConstSearchDirIterator *CurDirArg, 839 ArrayRef<std::pair<const FileEntry *, const DirectoryEntry *>> Includers, 840 SmallVectorImpl<char> *SearchPath, SmallVectorImpl<char> *RelativePath, 841 Module *RequestingModule, ModuleMap::KnownHeader *SuggestedModule, 842 bool *IsMapped, bool *IsFrameworkFound, bool SkipCache, 843 bool BuildSystemModule) { 844 ConstSearchDirIterator CurDirLocal = nullptr; 845 ConstSearchDirIterator &CurDir = CurDirArg ? *CurDirArg : CurDirLocal; 846 847 if (IsMapped) 848 *IsMapped = false; 849 850 if (IsFrameworkFound) 851 *IsFrameworkFound = false; 852 853 if (SuggestedModule) 854 *SuggestedModule = ModuleMap::KnownHeader(); 855 856 // If 'Filename' is absolute, check to see if it exists and no searching. 857 if (llvm::sys::path::is_absolute(Filename)) { 858 CurDir = nullptr; 859 860 // If this was an #include_next "/absolute/file", fail. 861 if (FromDir) 862 return None; 863 864 if (SearchPath) 865 SearchPath->clear(); 866 if (RelativePath) { 867 RelativePath->clear(); 868 RelativePath->append(Filename.begin(), Filename.end()); 869 } 870 // Otherwise, just return the file. 871 return getFileAndSuggestModule(Filename, IncludeLoc, nullptr, 872 /*IsSystemHeaderDir*/false, 873 RequestingModule, SuggestedModule); 874 } 875 876 // This is the header that MSVC's header search would have found. 877 ModuleMap::KnownHeader MSSuggestedModule; 878 Optional<FileEntryRef> MSFE; 879 880 // Unless disabled, check to see if the file is in the #includer's 881 // directory. This cannot be based on CurDir, because each includer could be 882 // a #include of a subdirectory (#include "foo/bar.h") and a subsequent 883 // include of "baz.h" should resolve to "whatever/foo/baz.h". 884 // This search is not done for <> headers. 885 if (!Includers.empty() && !isAngled && !NoCurDirSearch) { 886 SmallString<1024> TmpDir; 887 bool First = true; 888 for (const auto &IncluderAndDir : Includers) { 889 const FileEntry *Includer = IncluderAndDir.first; 890 891 // Concatenate the requested file onto the directory. 892 // FIXME: Portability. Filename concatenation should be in sys::Path. 893 TmpDir = IncluderAndDir.second->getName(); 894 TmpDir.push_back('/'); 895 TmpDir.append(Filename.begin(), Filename.end()); 896 897 // FIXME: We don't cache the result of getFileInfo across the call to 898 // getFileAndSuggestModule, because it's a reference to an element of 899 // a container that could be reallocated across this call. 900 // 901 // If we have no includer, that means we're processing a #include 902 // from a module build. We should treat this as a system header if we're 903 // building a [system] module. 904 bool IncluderIsSystemHeader = 905 Includer ? getFileInfo(Includer).DirInfo != SrcMgr::C_User : 906 BuildSystemModule; 907 if (Optional<FileEntryRef> FE = getFileAndSuggestModule( 908 TmpDir, IncludeLoc, IncluderAndDir.second, IncluderIsSystemHeader, 909 RequestingModule, SuggestedModule)) { 910 if (!Includer) { 911 assert(First && "only first includer can have no file"); 912 return FE; 913 } 914 915 // Leave CurDir unset. 916 // This file is a system header or C++ unfriendly if the old file is. 917 // 918 // Note that we only use one of FromHFI/ToHFI at once, due to potential 919 // reallocation of the underlying vector potentially making the first 920 // reference binding dangling. 921 HeaderFileInfo &FromHFI = getFileInfo(Includer); 922 unsigned DirInfo = FromHFI.DirInfo; 923 bool IndexHeaderMapHeader = FromHFI.IndexHeaderMapHeader; 924 StringRef Framework = FromHFI.Framework; 925 926 HeaderFileInfo &ToHFI = getFileInfo(&FE->getFileEntry()); 927 ToHFI.DirInfo = DirInfo; 928 ToHFI.IndexHeaderMapHeader = IndexHeaderMapHeader; 929 ToHFI.Framework = Framework; 930 931 if (SearchPath) { 932 StringRef SearchPathRef(IncluderAndDir.second->getName()); 933 SearchPath->clear(); 934 SearchPath->append(SearchPathRef.begin(), SearchPathRef.end()); 935 } 936 if (RelativePath) { 937 RelativePath->clear(); 938 RelativePath->append(Filename.begin(), Filename.end()); 939 } 940 if (First) { 941 diagnoseFrameworkInclude(Diags, IncludeLoc, 942 IncluderAndDir.second->getName(), Filename, 943 &FE->getFileEntry()); 944 return FE; 945 } 946 947 // Otherwise, we found the path via MSVC header search rules. If 948 // -Wmsvc-include is enabled, we have to keep searching to see if we 949 // would've found this header in -I or -isystem directories. 950 if (Diags.isIgnored(diag::ext_pp_include_search_ms, IncludeLoc)) { 951 return FE; 952 } else { 953 MSFE = FE; 954 if (SuggestedModule) { 955 MSSuggestedModule = *SuggestedModule; 956 *SuggestedModule = ModuleMap::KnownHeader(); 957 } 958 break; 959 } 960 } 961 First = false; 962 } 963 } 964 965 CurDir = nullptr; 966 967 // If this is a system #include, ignore the user #include locs. 968 ConstSearchDirIterator It = 969 isAngled ? angled_dir_begin() : search_dir_begin(); 970 971 // If this is a #include_next request, start searching after the directory the 972 // file was found in. 973 if (FromDir) 974 It = FromDir; 975 976 // Cache all of the lookups performed by this method. Many headers are 977 // multiply included, and the "pragma once" optimization prevents them from 978 // being relex/pp'd, but they would still have to search through a 979 // (potentially huge) series of SearchDirs to find it. 980 LookupFileCacheInfo &CacheLookup = LookupFileCache[Filename]; 981 982 ConstSearchDirIterator NextIt = std::next(It); 983 984 // If the entry has been previously looked up, the first value will be 985 // non-zero. If the value is equal to i (the start point of our search), then 986 // this is a matching hit. 987 if (!SkipCache && CacheLookup.StartIt == NextIt) { 988 // Skip querying potentially lots of directories for this lookup. 989 if (CacheLookup.HitIt) 990 It = CacheLookup.HitIt; 991 if (CacheLookup.MappedName) { 992 Filename = CacheLookup.MappedName; 993 if (IsMapped) 994 *IsMapped = true; 995 } 996 } else { 997 // Otherwise, this is the first query, or the previous query didn't match 998 // our search start. We will fill in our found location below, so prime the 999 // start point value. 1000 CacheLookup.reset(/*NewStartIt=*/NextIt); 1001 } 1002 1003 SmallString<64> MappedName; 1004 1005 // Check each directory in sequence to see if it contains this file. 1006 for (; It != search_dir_end(); ++It) { 1007 bool InUserSpecifiedSystemFramework = false; 1008 bool IsInHeaderMap = false; 1009 bool IsFrameworkFoundInDir = false; 1010 Optional<FileEntryRef> File = It->LookupFile( 1011 Filename, *this, IncludeLoc, SearchPath, RelativePath, RequestingModule, 1012 SuggestedModule, InUserSpecifiedSystemFramework, IsFrameworkFoundInDir, 1013 IsInHeaderMap, MappedName); 1014 if (!MappedName.empty()) { 1015 assert(IsInHeaderMap && "MappedName should come from a header map"); 1016 CacheLookup.MappedName = 1017 copyString(MappedName, LookupFileCache.getAllocator()); 1018 } 1019 if (IsMapped) 1020 // A filename is mapped when a header map remapped it to a relative path 1021 // used in subsequent header search or to an absolute path pointing to an 1022 // existing file. 1023 *IsMapped |= (!MappedName.empty() || (IsInHeaderMap && File)); 1024 if (IsFrameworkFound) 1025 // Because we keep a filename remapped for subsequent search directory 1026 // lookups, ignore IsFrameworkFoundInDir after the first remapping and not 1027 // just for remapping in a current search directory. 1028 *IsFrameworkFound |= (IsFrameworkFoundInDir && !CacheLookup.MappedName); 1029 if (!File) 1030 continue; 1031 1032 CurDir = It; 1033 1034 const auto FE = &File->getFileEntry(); 1035 IncludeNames[FE] = Filename; 1036 1037 // This file is a system header or C++ unfriendly if the dir is. 1038 HeaderFileInfo &HFI = getFileInfo(FE); 1039 HFI.DirInfo = CurDir->getDirCharacteristic(); 1040 1041 // If the directory characteristic is User but this framework was 1042 // user-specified to be treated as a system framework, promote the 1043 // characteristic. 1044 if (HFI.DirInfo == SrcMgr::C_User && InUserSpecifiedSystemFramework) 1045 HFI.DirInfo = SrcMgr::C_System; 1046 1047 // If the filename matches a known system header prefix, override 1048 // whether the file is a system header. 1049 for (unsigned j = SystemHeaderPrefixes.size(); j; --j) { 1050 if (Filename.startswith(SystemHeaderPrefixes[j-1].first)) { 1051 HFI.DirInfo = SystemHeaderPrefixes[j-1].second ? SrcMgr::C_System 1052 : SrcMgr::C_User; 1053 break; 1054 } 1055 } 1056 1057 // Set the `Framework` info if this file is in a header map with framework 1058 // style include spelling or found in a framework dir. The header map case 1059 // is possible when building frameworks which use header maps. 1060 if (CurDir->isHeaderMap() && isAngled) { 1061 size_t SlashPos = Filename.find('/'); 1062 if (SlashPos != StringRef::npos) 1063 HFI.Framework = 1064 getUniqueFrameworkName(StringRef(Filename.begin(), SlashPos)); 1065 if (CurDir->isIndexHeaderMap()) 1066 HFI.IndexHeaderMapHeader = 1; 1067 } else if (CurDir->isFramework()) { 1068 size_t SlashPos = Filename.find('/'); 1069 if (SlashPos != StringRef::npos) 1070 HFI.Framework = 1071 getUniqueFrameworkName(StringRef(Filename.begin(), SlashPos)); 1072 } 1073 1074 if (checkMSVCHeaderSearch(Diags, MSFE ? &MSFE->getFileEntry() : nullptr, 1075 &File->getFileEntry(), IncludeLoc)) { 1076 if (SuggestedModule) 1077 *SuggestedModule = MSSuggestedModule; 1078 return MSFE; 1079 } 1080 1081 bool FoundByHeaderMap = !IsMapped ? false : *IsMapped; 1082 if (!Includers.empty()) 1083 diagnoseFrameworkInclude( 1084 Diags, IncludeLoc, Includers.front().second->getName(), Filename, 1085 &File->getFileEntry(), isAngled, FoundByHeaderMap); 1086 1087 // Remember this location for the next lookup we do. 1088 cacheLookupSuccess(CacheLookup, It, IncludeLoc); 1089 return File; 1090 } 1091 1092 // If we are including a file with a quoted include "foo.h" from inside 1093 // a header in a framework that is currently being built, and we couldn't 1094 // resolve "foo.h" any other way, change the include to <Foo/foo.h>, where 1095 // "Foo" is the name of the framework in which the including header was found. 1096 if (!Includers.empty() && Includers.front().first && !isAngled && 1097 !Filename.contains('/')) { 1098 HeaderFileInfo &IncludingHFI = getFileInfo(Includers.front().first); 1099 if (IncludingHFI.IndexHeaderMapHeader) { 1100 SmallString<128> ScratchFilename; 1101 ScratchFilename += IncludingHFI.Framework; 1102 ScratchFilename += '/'; 1103 ScratchFilename += Filename; 1104 1105 Optional<FileEntryRef> File = LookupFile( 1106 ScratchFilename, IncludeLoc, /*isAngled=*/true, FromDir, &CurDir, 1107 Includers.front(), SearchPath, RelativePath, RequestingModule, 1108 SuggestedModule, IsMapped, /*IsFrameworkFound=*/nullptr); 1109 1110 if (checkMSVCHeaderSearch(Diags, MSFE ? &MSFE->getFileEntry() : nullptr, 1111 File ? &File->getFileEntry() : nullptr, 1112 IncludeLoc)) { 1113 if (SuggestedModule) 1114 *SuggestedModule = MSSuggestedModule; 1115 return MSFE; 1116 } 1117 1118 cacheLookupSuccess(LookupFileCache[Filename], 1119 LookupFileCache[ScratchFilename].HitIt, IncludeLoc); 1120 // FIXME: SuggestedModule. 1121 return File; 1122 } 1123 } 1124 1125 if (checkMSVCHeaderSearch(Diags, MSFE ? &MSFE->getFileEntry() : nullptr, 1126 nullptr, IncludeLoc)) { 1127 if (SuggestedModule) 1128 *SuggestedModule = MSSuggestedModule; 1129 return MSFE; 1130 } 1131 1132 // Otherwise, didn't find it. Remember we didn't find this. 1133 CacheLookup.HitIt = search_dir_end(); 1134 return None; 1135 } 1136 1137 /// LookupSubframeworkHeader - Look up a subframework for the specified 1138 /// \#include file. For example, if \#include'ing <HIToolbox/HIToolbox.h> from 1139 /// within ".../Carbon.framework/Headers/Carbon.h", check to see if HIToolbox 1140 /// is a subframework within Carbon.framework. If so, return the FileEntry 1141 /// for the designated file, otherwise return null. 1142 Optional<FileEntryRef> HeaderSearch::LookupSubframeworkHeader( 1143 StringRef Filename, const FileEntry *ContextFileEnt, 1144 SmallVectorImpl<char> *SearchPath, SmallVectorImpl<char> *RelativePath, 1145 Module *RequestingModule, ModuleMap::KnownHeader *SuggestedModule) { 1146 assert(ContextFileEnt && "No context file?"); 1147 1148 // Framework names must have a '/' in the filename. Find it. 1149 // FIXME: Should we permit '\' on Windows? 1150 size_t SlashPos = Filename.find('/'); 1151 if (SlashPos == StringRef::npos) 1152 return None; 1153 1154 // Look up the base framework name of the ContextFileEnt. 1155 StringRef ContextName = ContextFileEnt->getName(); 1156 1157 // If the context info wasn't a framework, couldn't be a subframework. 1158 const unsigned DotFrameworkLen = 10; 1159 auto FrameworkPos = ContextName.find(".framework"); 1160 if (FrameworkPos == StringRef::npos || 1161 (ContextName[FrameworkPos + DotFrameworkLen] != '/' && 1162 ContextName[FrameworkPos + DotFrameworkLen] != '\\')) 1163 return None; 1164 1165 SmallString<1024> FrameworkName(ContextName.data(), ContextName.data() + 1166 FrameworkPos + 1167 DotFrameworkLen + 1); 1168 1169 // Append Frameworks/HIToolbox.framework/ 1170 FrameworkName += "Frameworks/"; 1171 FrameworkName.append(Filename.begin(), Filename.begin()+SlashPos); 1172 FrameworkName += ".framework/"; 1173 1174 auto &CacheLookup = 1175 *FrameworkMap.insert(std::make_pair(Filename.substr(0, SlashPos), 1176 FrameworkCacheEntry())).first; 1177 1178 // Some other location? 1179 if (CacheLookup.second.Directory && 1180 CacheLookup.first().size() == FrameworkName.size() && 1181 memcmp(CacheLookup.first().data(), &FrameworkName[0], 1182 CacheLookup.first().size()) != 0) 1183 return None; 1184 1185 // Cache subframework. 1186 if (!CacheLookup.second.Directory) { 1187 ++NumSubFrameworkLookups; 1188 1189 // If the framework dir doesn't exist, we fail. 1190 auto Dir = FileMgr.getOptionalDirectoryRef(FrameworkName); 1191 if (!Dir) 1192 return None; 1193 1194 // Otherwise, if it does, remember that this is the right direntry for this 1195 // framework. 1196 CacheLookup.second.Directory = Dir; 1197 } 1198 1199 1200 if (RelativePath) { 1201 RelativePath->clear(); 1202 RelativePath->append(Filename.begin()+SlashPos+1, Filename.end()); 1203 } 1204 1205 // Check ".../Frameworks/HIToolbox.framework/Headers/HIToolbox.h" 1206 SmallString<1024> HeadersFilename(FrameworkName); 1207 HeadersFilename += "Headers/"; 1208 if (SearchPath) { 1209 SearchPath->clear(); 1210 // Without trailing '/'. 1211 SearchPath->append(HeadersFilename.begin(), HeadersFilename.end()-1); 1212 } 1213 1214 HeadersFilename.append(Filename.begin()+SlashPos+1, Filename.end()); 1215 auto File = FileMgr.getOptionalFileRef(HeadersFilename, /*OpenFile=*/true); 1216 if (!File) { 1217 // Check ".../Frameworks/HIToolbox.framework/PrivateHeaders/HIToolbox.h" 1218 HeadersFilename = FrameworkName; 1219 HeadersFilename += "PrivateHeaders/"; 1220 if (SearchPath) { 1221 SearchPath->clear(); 1222 // Without trailing '/'. 1223 SearchPath->append(HeadersFilename.begin(), HeadersFilename.end()-1); 1224 } 1225 1226 HeadersFilename.append(Filename.begin()+SlashPos+1, Filename.end()); 1227 File = FileMgr.getOptionalFileRef(HeadersFilename, /*OpenFile=*/true); 1228 1229 if (!File) 1230 return None; 1231 } 1232 1233 // This file is a system header or C++ unfriendly if the old file is. 1234 // 1235 // Note that the temporary 'DirInfo' is required here, as either call to 1236 // getFileInfo could resize the vector and we don't want to rely on order 1237 // of evaluation. 1238 unsigned DirInfo = getFileInfo(ContextFileEnt).DirInfo; 1239 getFileInfo(&File->getFileEntry()).DirInfo = DirInfo; 1240 1241 FrameworkName.pop_back(); // remove the trailing '/' 1242 if (!findUsableModuleForFrameworkHeader(&File->getFileEntry(), FrameworkName, 1243 RequestingModule, SuggestedModule, 1244 /*IsSystem*/ false)) 1245 return None; 1246 1247 return *File; 1248 } 1249 1250 //===----------------------------------------------------------------------===// 1251 // File Info Management. 1252 //===----------------------------------------------------------------------===// 1253 1254 /// Merge the header file info provided by \p OtherHFI into the current 1255 /// header file info (\p HFI) 1256 static void mergeHeaderFileInfo(HeaderFileInfo &HFI, 1257 const HeaderFileInfo &OtherHFI) { 1258 assert(OtherHFI.External && "expected to merge external HFI"); 1259 1260 HFI.isImport |= OtherHFI.isImport; 1261 HFI.isPragmaOnce |= OtherHFI.isPragmaOnce; 1262 HFI.isModuleHeader |= OtherHFI.isModuleHeader; 1263 1264 if (!HFI.ControllingMacro && !HFI.ControllingMacroID) { 1265 HFI.ControllingMacro = OtherHFI.ControllingMacro; 1266 HFI.ControllingMacroID = OtherHFI.ControllingMacroID; 1267 } 1268 1269 HFI.DirInfo = OtherHFI.DirInfo; 1270 HFI.External = (!HFI.IsValid || HFI.External); 1271 HFI.IsValid = true; 1272 HFI.IndexHeaderMapHeader = OtherHFI.IndexHeaderMapHeader; 1273 1274 if (HFI.Framework.empty()) 1275 HFI.Framework = OtherHFI.Framework; 1276 } 1277 1278 /// getFileInfo - Return the HeaderFileInfo structure for the specified 1279 /// FileEntry. 1280 HeaderFileInfo &HeaderSearch::getFileInfo(const FileEntry *FE) { 1281 if (FE->getUID() >= FileInfo.size()) 1282 FileInfo.resize(FE->getUID() + 1); 1283 1284 HeaderFileInfo *HFI = &FileInfo[FE->getUID()]; 1285 // FIXME: Use a generation count to check whether this is really up to date. 1286 if (ExternalSource && !HFI->Resolved) { 1287 auto ExternalHFI = ExternalSource->GetHeaderFileInfo(FE); 1288 if (ExternalHFI.IsValid) { 1289 HFI->Resolved = true; 1290 if (ExternalHFI.External) 1291 mergeHeaderFileInfo(*HFI, ExternalHFI); 1292 } 1293 } 1294 1295 HFI->IsValid = true; 1296 // We have local information about this header file, so it's no longer 1297 // strictly external. 1298 HFI->External = false; 1299 return *HFI; 1300 } 1301 1302 const HeaderFileInfo * 1303 HeaderSearch::getExistingFileInfo(const FileEntry *FE, 1304 bool WantExternal) const { 1305 // If we have an external source, ensure we have the latest information. 1306 // FIXME: Use a generation count to check whether this is really up to date. 1307 HeaderFileInfo *HFI; 1308 if (ExternalSource) { 1309 if (FE->getUID() >= FileInfo.size()) { 1310 if (!WantExternal) 1311 return nullptr; 1312 FileInfo.resize(FE->getUID() + 1); 1313 } 1314 1315 HFI = &FileInfo[FE->getUID()]; 1316 if (!WantExternal && (!HFI->IsValid || HFI->External)) 1317 return nullptr; 1318 if (!HFI->Resolved) { 1319 auto ExternalHFI = ExternalSource->GetHeaderFileInfo(FE); 1320 if (ExternalHFI.IsValid) { 1321 HFI->Resolved = true; 1322 if (ExternalHFI.External) 1323 mergeHeaderFileInfo(*HFI, ExternalHFI); 1324 } 1325 } 1326 } else if (FE->getUID() >= FileInfo.size()) { 1327 return nullptr; 1328 } else { 1329 HFI = &FileInfo[FE->getUID()]; 1330 } 1331 1332 if (!HFI->IsValid || (HFI->External && !WantExternal)) 1333 return nullptr; 1334 1335 return HFI; 1336 } 1337 1338 bool HeaderSearch::isFileMultipleIncludeGuarded(const FileEntry *File) { 1339 // Check if we've entered this file and found an include guard or #pragma 1340 // once. Note that we dor't check for #import, because that's not a property 1341 // of the file itself. 1342 if (auto *HFI = getExistingFileInfo(File)) 1343 return HFI->isPragmaOnce || HFI->ControllingMacro || 1344 HFI->ControllingMacroID; 1345 return false; 1346 } 1347 1348 void HeaderSearch::MarkFileModuleHeader(const FileEntry *FE, 1349 ModuleMap::ModuleHeaderRole Role, 1350 bool isCompilingModuleHeader) { 1351 bool isModularHeader = !(Role & ModuleMap::TextualHeader); 1352 1353 // Don't mark the file info as non-external if there's nothing to change. 1354 if (!isCompilingModuleHeader) { 1355 if (!isModularHeader) 1356 return; 1357 auto *HFI = getExistingFileInfo(FE); 1358 if (HFI && HFI->isModuleHeader) 1359 return; 1360 } 1361 1362 auto &HFI = getFileInfo(FE); 1363 HFI.isModuleHeader |= isModularHeader; 1364 HFI.isCompilingModuleHeader |= isCompilingModuleHeader; 1365 } 1366 1367 bool HeaderSearch::ShouldEnterIncludeFile(Preprocessor &PP, 1368 const FileEntry *File, bool isImport, 1369 bool ModulesEnabled, Module *M, 1370 bool &IsFirstIncludeOfFile) { 1371 ++NumIncluded; // Count # of attempted #includes. 1372 1373 IsFirstIncludeOfFile = false; 1374 1375 // Get information about this file. 1376 HeaderFileInfo &FileInfo = getFileInfo(File); 1377 1378 // FIXME: this is a workaround for the lack of proper modules-aware support 1379 // for #import / #pragma once 1380 auto TryEnterImported = [&]() -> bool { 1381 if (!ModulesEnabled) 1382 return false; 1383 // Ensure FileInfo bits are up to date. 1384 ModMap.resolveHeaderDirectives(File); 1385 // Modules with builtins are special; multiple modules use builtins as 1386 // modular headers, example: 1387 // 1388 // module stddef { header "stddef.h" export * } 1389 // 1390 // After module map parsing, this expands to: 1391 // 1392 // module stddef { 1393 // header "/path_to_builtin_dirs/stddef.h" 1394 // textual "stddef.h" 1395 // } 1396 // 1397 // It's common that libc++ and system modules will both define such 1398 // submodules. Make sure cached results for a builtin header won't 1399 // prevent other builtin modules from potentially entering the builtin 1400 // header. Note that builtins are header guarded and the decision to 1401 // actually enter them is postponed to the controlling macros logic below. 1402 bool TryEnterHdr = false; 1403 if (FileInfo.isCompilingModuleHeader && FileInfo.isModuleHeader) 1404 TryEnterHdr = ModMap.isBuiltinHeader(File); 1405 1406 // Textual headers can be #imported from different modules. Since ObjC 1407 // headers find in the wild might rely only on #import and do not contain 1408 // controlling macros, be conservative and only try to enter textual headers 1409 // if such macro is present. 1410 if (!FileInfo.isModuleHeader && 1411 FileInfo.getControllingMacro(ExternalLookup)) 1412 TryEnterHdr = true; 1413 return TryEnterHdr; 1414 }; 1415 1416 // If this is a #import directive, check that we have not already imported 1417 // this header. 1418 if (isImport) { 1419 // If this has already been imported, don't import it again. 1420 FileInfo.isImport = true; 1421 1422 // Has this already been #import'ed or #include'd? 1423 if (PP.alreadyIncluded(File) && !TryEnterImported()) 1424 return false; 1425 } else { 1426 // Otherwise, if this is a #include of a file that was previously #import'd 1427 // or if this is the second #include of a #pragma once file, ignore it. 1428 if ((FileInfo.isPragmaOnce || FileInfo.isImport) && !TryEnterImported()) 1429 return false; 1430 } 1431 1432 // Next, check to see if the file is wrapped with #ifndef guards. If so, and 1433 // if the macro that guards it is defined, we know the #include has no effect. 1434 if (const IdentifierInfo *ControllingMacro 1435 = FileInfo.getControllingMacro(ExternalLookup)) { 1436 // If the header corresponds to a module, check whether the macro is already 1437 // defined in that module rather than checking in the current set of visible 1438 // modules. 1439 if (M ? PP.isMacroDefinedInLocalModule(ControllingMacro, M) 1440 : PP.isMacroDefined(ControllingMacro)) { 1441 ++NumMultiIncludeFileOptzn; 1442 return false; 1443 } 1444 } 1445 1446 IsFirstIncludeOfFile = PP.markIncluded(File); 1447 1448 return true; 1449 } 1450 1451 size_t HeaderSearch::getTotalMemory() const { 1452 return SearchDirs.capacity() 1453 + llvm::capacity_in_bytes(FileInfo) 1454 + llvm::capacity_in_bytes(HeaderMaps) 1455 + LookupFileCache.getAllocator().getTotalMemory() 1456 + FrameworkMap.getAllocator().getTotalMemory(); 1457 } 1458 1459 unsigned HeaderSearch::searchDirIdx(const DirectoryLookup &DL) const { 1460 return &DL - &*SearchDirs.begin(); 1461 } 1462 1463 StringRef HeaderSearch::getUniqueFrameworkName(StringRef Framework) { 1464 return FrameworkNames.insert(Framework).first->first(); 1465 } 1466 1467 StringRef HeaderSearch::getIncludeNameForHeader(const FileEntry *File) const { 1468 auto It = IncludeNames.find(File); 1469 if (It == IncludeNames.end()) 1470 return {}; 1471 return It->second; 1472 } 1473 1474 bool HeaderSearch::hasModuleMap(StringRef FileName, 1475 const DirectoryEntry *Root, 1476 bool IsSystem) { 1477 if (!HSOpts->ImplicitModuleMaps) 1478 return false; 1479 1480 SmallVector<const DirectoryEntry *, 2> FixUpDirectories; 1481 1482 StringRef DirName = FileName; 1483 do { 1484 // Get the parent directory name. 1485 DirName = llvm::sys::path::parent_path(DirName); 1486 if (DirName.empty()) 1487 return false; 1488 1489 // Determine whether this directory exists. 1490 auto Dir = FileMgr.getOptionalDirectoryRef(DirName); 1491 if (!Dir) 1492 return false; 1493 1494 // Try to load the module map file in this directory. 1495 switch (loadModuleMapFile(*Dir, IsSystem, 1496 llvm::sys::path::extension(Dir->getName()) == 1497 ".framework")) { 1498 case LMM_NewlyLoaded: 1499 case LMM_AlreadyLoaded: 1500 // Success. All of the directories we stepped through inherit this module 1501 // map file. 1502 for (unsigned I = 0, N = FixUpDirectories.size(); I != N; ++I) 1503 DirectoryHasModuleMap[FixUpDirectories[I]] = true; 1504 return true; 1505 1506 case LMM_NoDirectory: 1507 case LMM_InvalidModuleMap: 1508 break; 1509 } 1510 1511 // If we hit the top of our search, we're done. 1512 if (*Dir == Root) 1513 return false; 1514 1515 // Keep track of all of the directories we checked, so we can mark them as 1516 // having module maps if we eventually do find a module map. 1517 FixUpDirectories.push_back(*Dir); 1518 } while (true); 1519 } 1520 1521 ModuleMap::KnownHeader 1522 HeaderSearch::findModuleForHeader(const FileEntry *File, 1523 bool AllowTextual) const { 1524 if (ExternalSource) { 1525 // Make sure the external source has handled header info about this file, 1526 // which includes whether the file is part of a module. 1527 (void)getExistingFileInfo(File); 1528 } 1529 return ModMap.findModuleForHeader(File, AllowTextual); 1530 } 1531 1532 ArrayRef<ModuleMap::KnownHeader> 1533 HeaderSearch::findAllModulesForHeader(const FileEntry *File) const { 1534 if (ExternalSource) { 1535 // Make sure the external source has handled header info about this file, 1536 // which includes whether the file is part of a module. 1537 (void)getExistingFileInfo(File); 1538 } 1539 return ModMap.findAllModulesForHeader(File); 1540 } 1541 1542 static bool suggestModule(HeaderSearch &HS, const FileEntry *File, 1543 Module *RequestingModule, 1544 ModuleMap::KnownHeader *SuggestedModule) { 1545 ModuleMap::KnownHeader Module = 1546 HS.findModuleForHeader(File, /*AllowTextual*/true); 1547 1548 // If this module specifies [no_undeclared_includes], we cannot find any 1549 // file that's in a non-dependency module. 1550 if (RequestingModule && Module && RequestingModule->NoUndeclaredIncludes) { 1551 HS.getModuleMap().resolveUses(RequestingModule, /*Complain*/ false); 1552 if (!RequestingModule->directlyUses(Module.getModule())) { 1553 // Builtin headers are a special case. Multiple modules can use the same 1554 // builtin as a modular header (see also comment in 1555 // ShouldEnterIncludeFile()), so the builtin header may have been 1556 // "claimed" by an unrelated module. This shouldn't prevent us from 1557 // including the builtin header textually in this module. 1558 if (HS.getModuleMap().isBuiltinHeader(File)) { 1559 if (SuggestedModule) 1560 *SuggestedModule = ModuleMap::KnownHeader(); 1561 return true; 1562 } 1563 return false; 1564 } 1565 } 1566 1567 if (SuggestedModule) 1568 *SuggestedModule = (Module.getRole() & ModuleMap::TextualHeader) 1569 ? ModuleMap::KnownHeader() 1570 : Module; 1571 1572 return true; 1573 } 1574 1575 bool HeaderSearch::findUsableModuleForHeader( 1576 const FileEntry *File, const DirectoryEntry *Root, Module *RequestingModule, 1577 ModuleMap::KnownHeader *SuggestedModule, bool IsSystemHeaderDir) { 1578 if (File && needModuleLookup(RequestingModule, SuggestedModule)) { 1579 // If there is a module that corresponds to this header, suggest it. 1580 hasModuleMap(File->getName(), Root, IsSystemHeaderDir); 1581 return suggestModule(*this, File, RequestingModule, SuggestedModule); 1582 } 1583 return true; 1584 } 1585 1586 bool HeaderSearch::findUsableModuleForFrameworkHeader( 1587 const FileEntry *File, StringRef FrameworkName, Module *RequestingModule, 1588 ModuleMap::KnownHeader *SuggestedModule, bool IsSystemFramework) { 1589 // If we're supposed to suggest a module, look for one now. 1590 if (needModuleLookup(RequestingModule, SuggestedModule)) { 1591 // Find the top-level framework based on this framework. 1592 SmallVector<std::string, 4> SubmodulePath; 1593 Optional<DirectoryEntryRef> TopFrameworkDir = 1594 ::getTopFrameworkDir(FileMgr, FrameworkName, SubmodulePath); 1595 assert(TopFrameworkDir && "Could not find the top-most framework dir"); 1596 1597 // Determine the name of the top-level framework. 1598 StringRef ModuleName = llvm::sys::path::stem(TopFrameworkDir->getName()); 1599 1600 // Load this framework module. If that succeeds, find the suggested module 1601 // for this header, if any. 1602 loadFrameworkModule(ModuleName, *TopFrameworkDir, IsSystemFramework); 1603 1604 // FIXME: This can find a module not part of ModuleName, which is 1605 // important so that we're consistent about whether this header 1606 // corresponds to a module. Possibly we should lock down framework modules 1607 // so that this is not possible. 1608 return suggestModule(*this, File, RequestingModule, SuggestedModule); 1609 } 1610 return true; 1611 } 1612 1613 static const FileEntry *getPrivateModuleMap(const FileEntry *File, 1614 FileManager &FileMgr) { 1615 StringRef Filename = llvm::sys::path::filename(File->getName()); 1616 SmallString<128> PrivateFilename(File->getDir()->getName()); 1617 if (Filename == "module.map") 1618 llvm::sys::path::append(PrivateFilename, "module_private.map"); 1619 else if (Filename == "module.modulemap") 1620 llvm::sys::path::append(PrivateFilename, "module.private.modulemap"); 1621 else 1622 return nullptr; 1623 if (auto File = FileMgr.getFile(PrivateFilename)) 1624 return *File; 1625 return nullptr; 1626 } 1627 1628 bool HeaderSearch::loadModuleMapFile(const FileEntry *File, bool IsSystem, 1629 FileID ID, unsigned *Offset, 1630 StringRef OriginalModuleMapFile) { 1631 // Find the directory for the module. For frameworks, that may require going 1632 // up from the 'Modules' directory. 1633 Optional<DirectoryEntryRef> Dir; 1634 if (getHeaderSearchOpts().ModuleMapFileHomeIsCwd) { 1635 Dir = FileMgr.getOptionalDirectoryRef("."); 1636 } else { 1637 if (!OriginalModuleMapFile.empty()) { 1638 // We're building a preprocessed module map. Find or invent the directory 1639 // that it originally occupied. 1640 Dir = FileMgr.getOptionalDirectoryRef( 1641 llvm::sys::path::parent_path(OriginalModuleMapFile)); 1642 if (!Dir) { 1643 auto FakeFile = FileMgr.getVirtualFileRef(OriginalModuleMapFile, 0, 0); 1644 Dir = FakeFile.getDir(); 1645 } 1646 } else { 1647 // TODO: Replace with `Dir = File.getDir()` when `File` is switched to 1648 // `FileEntryRef`. 1649 Dir = FileMgr.getOptionalDirectoryRef(File->getDir()->getName()); 1650 } 1651 1652 assert(Dir && "parent must exist"); 1653 StringRef DirName(Dir->getName()); 1654 if (llvm::sys::path::filename(DirName) == "Modules") { 1655 DirName = llvm::sys::path::parent_path(DirName); 1656 if (DirName.endswith(".framework")) 1657 if (auto MaybeDir = FileMgr.getOptionalDirectoryRef(DirName)) 1658 Dir = *MaybeDir; 1659 // FIXME: This assert can fail if there's a race between the above check 1660 // and the removal of the directory. 1661 assert(Dir && "parent must exist"); 1662 } 1663 } 1664 1665 assert(Dir && "module map home directory must exist"); 1666 switch (loadModuleMapFileImpl(File, IsSystem, *Dir, ID, Offset)) { 1667 case LMM_AlreadyLoaded: 1668 case LMM_NewlyLoaded: 1669 return false; 1670 case LMM_NoDirectory: 1671 case LMM_InvalidModuleMap: 1672 return true; 1673 } 1674 llvm_unreachable("Unknown load module map result"); 1675 } 1676 1677 HeaderSearch::LoadModuleMapResult 1678 HeaderSearch::loadModuleMapFileImpl(const FileEntry *File, bool IsSystem, 1679 DirectoryEntryRef Dir, FileID ID, 1680 unsigned *Offset) { 1681 assert(File && "expected FileEntry"); 1682 1683 // Check whether we've already loaded this module map, and mark it as being 1684 // loaded in case we recursively try to load it from itself. 1685 auto AddResult = LoadedModuleMaps.insert(std::make_pair(File, true)); 1686 if (!AddResult.second) 1687 return AddResult.first->second ? LMM_AlreadyLoaded : LMM_InvalidModuleMap; 1688 1689 if (ModMap.parseModuleMapFile(File, IsSystem, Dir, ID, Offset)) { 1690 LoadedModuleMaps[File] = false; 1691 return LMM_InvalidModuleMap; 1692 } 1693 1694 // Try to load a corresponding private module map. 1695 if (const FileEntry *PMMFile = getPrivateModuleMap(File, FileMgr)) { 1696 if (ModMap.parseModuleMapFile(PMMFile, IsSystem, Dir)) { 1697 LoadedModuleMaps[File] = false; 1698 return LMM_InvalidModuleMap; 1699 } 1700 } 1701 1702 // This directory has a module map. 1703 return LMM_NewlyLoaded; 1704 } 1705 1706 const FileEntry * 1707 HeaderSearch::lookupModuleMapFile(const DirectoryEntry *Dir, bool IsFramework) { 1708 if (!HSOpts->ImplicitModuleMaps) 1709 return nullptr; 1710 // For frameworks, the preferred spelling is Modules/module.modulemap, but 1711 // module.map at the framework root is also accepted. 1712 SmallString<128> ModuleMapFileName(Dir->getName()); 1713 if (IsFramework) 1714 llvm::sys::path::append(ModuleMapFileName, "Modules"); 1715 llvm::sys::path::append(ModuleMapFileName, "module.modulemap"); 1716 if (auto F = FileMgr.getFile(ModuleMapFileName)) 1717 return *F; 1718 1719 // Continue to allow module.map 1720 ModuleMapFileName = Dir->getName(); 1721 llvm::sys::path::append(ModuleMapFileName, "module.map"); 1722 if (auto F = FileMgr.getFile(ModuleMapFileName)) 1723 return *F; 1724 1725 // For frameworks, allow to have a private module map with a preferred 1726 // spelling when a public module map is absent. 1727 if (IsFramework) { 1728 ModuleMapFileName = Dir->getName(); 1729 llvm::sys::path::append(ModuleMapFileName, "Modules", 1730 "module.private.modulemap"); 1731 if (auto F = FileMgr.getFile(ModuleMapFileName)) 1732 return *F; 1733 } 1734 return nullptr; 1735 } 1736 1737 Module *HeaderSearch::loadFrameworkModule(StringRef Name, DirectoryEntryRef Dir, 1738 bool IsSystem) { 1739 if (Module *Module = ModMap.findModule(Name)) 1740 return Module; 1741 1742 // Try to load a module map file. 1743 switch (loadModuleMapFile(Dir, IsSystem, /*IsFramework*/true)) { 1744 case LMM_InvalidModuleMap: 1745 // Try to infer a module map from the framework directory. 1746 if (HSOpts->ImplicitModuleMaps) 1747 ModMap.inferFrameworkModule(Dir, IsSystem, /*Parent=*/nullptr); 1748 break; 1749 1750 case LMM_AlreadyLoaded: 1751 case LMM_NoDirectory: 1752 return nullptr; 1753 1754 case LMM_NewlyLoaded: 1755 break; 1756 } 1757 1758 return ModMap.findModule(Name); 1759 } 1760 1761 HeaderSearch::LoadModuleMapResult 1762 HeaderSearch::loadModuleMapFile(StringRef DirName, bool IsSystem, 1763 bool IsFramework) { 1764 if (auto Dir = FileMgr.getOptionalDirectoryRef(DirName)) 1765 return loadModuleMapFile(*Dir, IsSystem, IsFramework); 1766 1767 return LMM_NoDirectory; 1768 } 1769 1770 HeaderSearch::LoadModuleMapResult 1771 HeaderSearch::loadModuleMapFile(DirectoryEntryRef Dir, bool IsSystem, 1772 bool IsFramework) { 1773 auto KnownDir = DirectoryHasModuleMap.find(Dir); 1774 if (KnownDir != DirectoryHasModuleMap.end()) 1775 return KnownDir->second ? LMM_AlreadyLoaded : LMM_InvalidModuleMap; 1776 1777 if (const FileEntry *ModuleMapFile = lookupModuleMapFile(Dir, IsFramework)) { 1778 LoadModuleMapResult Result = 1779 loadModuleMapFileImpl(ModuleMapFile, IsSystem, Dir); 1780 // Add Dir explicitly in case ModuleMapFile is in a subdirectory. 1781 // E.g. Foo.framework/Modules/module.modulemap 1782 // ^Dir ^ModuleMapFile 1783 if (Result == LMM_NewlyLoaded) 1784 DirectoryHasModuleMap[Dir] = true; 1785 else if (Result == LMM_InvalidModuleMap) 1786 DirectoryHasModuleMap[Dir] = false; 1787 return Result; 1788 } 1789 return LMM_InvalidModuleMap; 1790 } 1791 1792 void HeaderSearch::collectAllModules(SmallVectorImpl<Module *> &Modules) { 1793 Modules.clear(); 1794 1795 if (HSOpts->ImplicitModuleMaps) { 1796 // Load module maps for each of the header search directories. 1797 for (DirectoryLookup &DL : search_dir_range()) { 1798 bool IsSystem = DL.isSystemHeaderDirectory(); 1799 if (DL.isFramework()) { 1800 std::error_code EC; 1801 SmallString<128> DirNative; 1802 llvm::sys::path::native(DL.getFrameworkDir()->getName(), DirNative); 1803 1804 // Search each of the ".framework" directories to load them as modules. 1805 llvm::vfs::FileSystem &FS = FileMgr.getVirtualFileSystem(); 1806 for (llvm::vfs::directory_iterator Dir = FS.dir_begin(DirNative, EC), 1807 DirEnd; 1808 Dir != DirEnd && !EC; Dir.increment(EC)) { 1809 if (llvm::sys::path::extension(Dir->path()) != ".framework") 1810 continue; 1811 1812 auto FrameworkDir = FileMgr.getOptionalDirectoryRef(Dir->path()); 1813 if (!FrameworkDir) 1814 continue; 1815 1816 // Load this framework module. 1817 loadFrameworkModule(llvm::sys::path::stem(Dir->path()), *FrameworkDir, 1818 IsSystem); 1819 } 1820 continue; 1821 } 1822 1823 // FIXME: Deal with header maps. 1824 if (DL.isHeaderMap()) 1825 continue; 1826 1827 // Try to load a module map file for the search directory. 1828 loadModuleMapFile(*DL.getDirRef(), IsSystem, /*IsFramework*/ false); 1829 1830 // Try to load module map files for immediate subdirectories of this 1831 // search directory. 1832 loadSubdirectoryModuleMaps(DL); 1833 } 1834 } 1835 1836 // Populate the list of modules. 1837 llvm::transform(ModMap.modules(), std::back_inserter(Modules), 1838 [](const auto &NameAndMod) { return NameAndMod.second; }); 1839 } 1840 1841 void HeaderSearch::loadTopLevelSystemModules() { 1842 if (!HSOpts->ImplicitModuleMaps) 1843 return; 1844 1845 // Load module maps for each of the header search directories. 1846 for (const DirectoryLookup &DL : search_dir_range()) { 1847 // We only care about normal header directories. 1848 if (!DL.isNormalDir()) 1849 continue; 1850 1851 // Try to load a module map file for the search directory. 1852 loadModuleMapFile(*DL.getDirRef(), DL.isSystemHeaderDirectory(), 1853 DL.isFramework()); 1854 } 1855 } 1856 1857 void HeaderSearch::loadSubdirectoryModuleMaps(DirectoryLookup &SearchDir) { 1858 assert(HSOpts->ImplicitModuleMaps && 1859 "Should not be loading subdirectory module maps"); 1860 1861 if (SearchDir.haveSearchedAllModuleMaps()) 1862 return; 1863 1864 std::error_code EC; 1865 SmallString<128> Dir = SearchDir.getDir()->getName(); 1866 FileMgr.makeAbsolutePath(Dir); 1867 SmallString<128> DirNative; 1868 llvm::sys::path::native(Dir, DirNative); 1869 llvm::vfs::FileSystem &FS = FileMgr.getVirtualFileSystem(); 1870 for (llvm::vfs::directory_iterator Dir = FS.dir_begin(DirNative, EC), DirEnd; 1871 Dir != DirEnd && !EC; Dir.increment(EC)) { 1872 bool IsFramework = llvm::sys::path::extension(Dir->path()) == ".framework"; 1873 if (IsFramework == SearchDir.isFramework()) 1874 loadModuleMapFile(Dir->path(), SearchDir.isSystemHeaderDirectory(), 1875 SearchDir.isFramework()); 1876 } 1877 1878 SearchDir.setSearchedAllModuleMaps(true); 1879 } 1880 1881 std::string HeaderSearch::suggestPathToFileForDiagnostics( 1882 const FileEntry *File, llvm::StringRef MainFile, bool *IsSystem) { 1883 // FIXME: We assume that the path name currently cached in the FileEntry is 1884 // the most appropriate one for this analysis (and that it's spelled the 1885 // same way as the corresponding header search path). 1886 return suggestPathToFileForDiagnostics(File->getName(), /*WorkingDir=*/"", 1887 MainFile, IsSystem); 1888 } 1889 1890 std::string HeaderSearch::suggestPathToFileForDiagnostics( 1891 llvm::StringRef File, llvm::StringRef WorkingDir, llvm::StringRef MainFile, 1892 bool *IsSystem) { 1893 using namespace llvm::sys; 1894 1895 unsigned BestPrefixLength = 0; 1896 // Checks whether `Dir` is a strict path prefix of `File`. If so and that's 1897 // the longest prefix we've seen so for it, returns true and updates the 1898 // `BestPrefixLength` accordingly. 1899 auto CheckDir = [&](llvm::StringRef Dir) -> bool { 1900 llvm::SmallString<32> DirPath(Dir.begin(), Dir.end()); 1901 if (!WorkingDir.empty() && !path::is_absolute(Dir)) 1902 fs::make_absolute(WorkingDir, DirPath); 1903 path::remove_dots(DirPath, /*remove_dot_dot=*/true); 1904 Dir = DirPath; 1905 for (auto NI = path::begin(File), NE = path::end(File), 1906 DI = path::begin(Dir), DE = path::end(Dir); 1907 /*termination condition in loop*/; ++NI, ++DI) { 1908 // '.' components in File are ignored. 1909 while (NI != NE && *NI == ".") 1910 ++NI; 1911 if (NI == NE) 1912 break; 1913 1914 // '.' components in Dir are ignored. 1915 while (DI != DE && *DI == ".") 1916 ++DI; 1917 if (DI == DE) { 1918 // Dir is a prefix of File, up to '.' components and choice of path 1919 // separators. 1920 unsigned PrefixLength = NI - path::begin(File); 1921 if (PrefixLength > BestPrefixLength) { 1922 BestPrefixLength = PrefixLength; 1923 return true; 1924 } 1925 break; 1926 } 1927 1928 // Consider all path separators equal. 1929 if (NI->size() == 1 && DI->size() == 1 && 1930 path::is_separator(NI->front()) && path::is_separator(DI->front())) 1931 continue; 1932 1933 // Special case Apple .sdk folders since the search path is typically a 1934 // symlink like `iPhoneSimulator14.5.sdk` while the file is instead 1935 // located in `iPhoneSimulator.sdk` (the real folder). 1936 if (NI->endswith(".sdk") && DI->endswith(".sdk")) { 1937 StringRef NBasename = path::stem(*NI); 1938 StringRef DBasename = path::stem(*DI); 1939 if (DBasename.startswith(NBasename)) 1940 continue; 1941 } 1942 1943 if (*NI != *DI) 1944 break; 1945 } 1946 return false; 1947 }; 1948 1949 bool BestPrefixIsFramework = false; 1950 for (const DirectoryLookup &DL : search_dir_range()) { 1951 if (DL.isNormalDir()) { 1952 StringRef Dir = DL.getDir()->getName(); 1953 if (CheckDir(Dir)) { 1954 if (IsSystem) 1955 *IsSystem = BestPrefixLength && isSystem(DL.getDirCharacteristic()); 1956 BestPrefixIsFramework = false; 1957 } 1958 } else if (DL.isFramework()) { 1959 StringRef Dir = DL.getFrameworkDir()->getName(); 1960 if (CheckDir(Dir)) { 1961 if (IsSystem) 1962 *IsSystem = BestPrefixLength && isSystem(DL.getDirCharacteristic()); 1963 BestPrefixIsFramework = true; 1964 } 1965 } 1966 } 1967 1968 // Try to shorten include path using TUs directory, if we couldn't find any 1969 // suitable prefix in include search paths. 1970 if (!BestPrefixLength && CheckDir(path::parent_path(MainFile))) { 1971 if (IsSystem) 1972 *IsSystem = false; 1973 BestPrefixIsFramework = false; 1974 } 1975 1976 // Try resolving resulting filename via reverse search in header maps, 1977 // key from header name is user preferred name for the include file. 1978 StringRef Filename = File.drop_front(BestPrefixLength); 1979 for (const DirectoryLookup &DL : search_dir_range()) { 1980 if (!DL.isHeaderMap()) 1981 continue; 1982 1983 StringRef SpelledFilename = 1984 DL.getHeaderMap()->reverseLookupFilename(Filename); 1985 if (!SpelledFilename.empty()) { 1986 Filename = SpelledFilename; 1987 BestPrefixIsFramework = false; 1988 break; 1989 } 1990 } 1991 1992 // If the best prefix is a framework path, we need to compute the proper 1993 // include spelling for the framework header. 1994 bool IsPrivateHeader; 1995 SmallString<128> FrameworkName, IncludeSpelling; 1996 if (BestPrefixIsFramework && 1997 isFrameworkStylePath(Filename, IsPrivateHeader, FrameworkName, 1998 IncludeSpelling)) { 1999 Filename = IncludeSpelling; 2000 } 2001 return path::convert_to_slash(Filename); 2002 } 2003