1 //===-- Path.cpp - Implement OS Path Concept ------------------------------===// 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 operating system Path API. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "llvm/Support/Path.h" 14 #include "llvm/ADT/ArrayRef.h" 15 #include "llvm/Config/llvm-config.h" 16 #include "llvm/Support/Endian.h" 17 #include "llvm/Support/Errc.h" 18 #include "llvm/Support/ErrorHandling.h" 19 #include "llvm/Support/FileSystem.h" 20 #include "llvm/Support/Process.h" 21 #include "llvm/Support/Signals.h" 22 #include <cctype> 23 #include <cstring> 24 25 #if !defined(_MSC_VER) && !defined(__MINGW32__) 26 #include <unistd.h> 27 #else 28 #include <io.h> 29 #endif 30 31 using namespace llvm; 32 using namespace llvm::support::endian; 33 34 namespace { 35 using llvm::StringRef; 36 using llvm::sys::path::is_separator; 37 using llvm::sys::path::Style; 38 39 inline Style real_style(Style style) { 40 #ifdef _WIN32 41 return (style == Style::posix) ? Style::posix : Style::windows; 42 #else 43 return (style == Style::windows) ? Style::windows : Style::posix; 44 #endif 45 } 46 47 inline const char *separators(Style style) { 48 if (real_style(style) == Style::windows) 49 return "\\/"; 50 return "/"; 51 } 52 53 inline char preferred_separator(Style style) { 54 if (real_style(style) == Style::windows) 55 return '\\'; 56 return '/'; 57 } 58 59 StringRef find_first_component(StringRef path, Style style) { 60 // Look for this first component in the following order. 61 // * empty (in this case we return an empty string) 62 // * either C: or {//,\\}net. 63 // * {/,\} 64 // * {file,directory}name 65 66 if (path.empty()) 67 return path; 68 69 if (real_style(style) == Style::windows) { 70 // C: 71 if (path.size() >= 2 && 72 std::isalpha(static_cast<unsigned char>(path[0])) && path[1] == ':') 73 return path.substr(0, 2); 74 } 75 76 // //net 77 if ((path.size() > 2) && is_separator(path[0], style) && 78 path[0] == path[1] && !is_separator(path[2], style)) { 79 // Find the next directory separator. 80 size_t end = path.find_first_of(separators(style), 2); 81 return path.substr(0, end); 82 } 83 84 // {/,\} 85 if (is_separator(path[0], style)) 86 return path.substr(0, 1); 87 88 // * {file,directory}name 89 size_t end = path.find_first_of(separators(style)); 90 return path.substr(0, end); 91 } 92 93 // Returns the first character of the filename in str. For paths ending in 94 // '/', it returns the position of the '/'. 95 size_t filename_pos(StringRef str, Style style) { 96 if (str.size() > 0 && is_separator(str[str.size() - 1], style)) 97 return str.size() - 1; 98 99 size_t pos = str.find_last_of(separators(style), str.size() - 1); 100 101 if (real_style(style) == Style::windows) { 102 if (pos == StringRef::npos) 103 pos = str.find_last_of(':', str.size() - 2); 104 } 105 106 if (pos == StringRef::npos || (pos == 1 && is_separator(str[0], style))) 107 return 0; 108 109 return pos + 1; 110 } 111 112 // Returns the position of the root directory in str. If there is no root 113 // directory in str, it returns StringRef::npos. 114 size_t root_dir_start(StringRef str, Style style) { 115 // case "c:/" 116 if (real_style(style) == Style::windows) { 117 if (str.size() > 2 && str[1] == ':' && is_separator(str[2], style)) 118 return 2; 119 } 120 121 // case "//net" 122 if (str.size() > 3 && is_separator(str[0], style) && str[0] == str[1] && 123 !is_separator(str[2], style)) { 124 return str.find_first_of(separators(style), 2); 125 } 126 127 // case "/" 128 if (str.size() > 0 && is_separator(str[0], style)) 129 return 0; 130 131 return StringRef::npos; 132 } 133 134 // Returns the position past the end of the "parent path" of path. The parent 135 // path will not end in '/', unless the parent is the root directory. If the 136 // path has no parent, 0 is returned. 137 size_t parent_path_end(StringRef path, Style style) { 138 size_t end_pos = filename_pos(path, style); 139 140 bool filename_was_sep = 141 path.size() > 0 && is_separator(path[end_pos], style); 142 143 // Skip separators until we reach root dir (or the start of the string). 144 size_t root_dir_pos = root_dir_start(path, style); 145 while (end_pos > 0 && 146 (root_dir_pos == StringRef::npos || end_pos > root_dir_pos) && 147 is_separator(path[end_pos - 1], style)) 148 --end_pos; 149 150 if (end_pos == root_dir_pos && !filename_was_sep) { 151 // We've reached the root dir and the input path was *not* ending in a 152 // sequence of slashes. Include the root dir in the parent path. 153 return root_dir_pos + 1; 154 } 155 156 // Otherwise, just include before the last slash. 157 return end_pos; 158 } 159 } // end unnamed namespace 160 161 enum FSEntity { 162 FS_Dir, 163 FS_File, 164 FS_Name 165 }; 166 167 static std::error_code 168 createUniqueEntity(const Twine &Model, int &ResultFD, 169 SmallVectorImpl<char> &ResultPath, bool MakeAbsolute, 170 unsigned Mode, FSEntity Type, 171 sys::fs::OpenFlags Flags = sys::fs::OF_None) { 172 173 // Limit the number of attempts we make, so that we don't infinite loop. E.g. 174 // "permission denied" could be for a specific file (so we retry with a 175 // different name) or for the whole directory (retry would always fail). 176 // Checking which is racy, so we try a number of times, then give up. 177 std::error_code EC; 178 for (int Retries = 128; Retries > 0; --Retries) { 179 sys::fs::createUniquePath(Model, ResultPath, MakeAbsolute); 180 // Try to open + create the file. 181 switch (Type) { 182 case FS_File: { 183 EC = sys::fs::openFileForReadWrite(Twine(ResultPath.begin()), ResultFD, 184 sys::fs::CD_CreateNew, Flags, Mode); 185 if (EC) { 186 // errc::permission_denied happens on Windows when we try to open a file 187 // that has been marked for deletion. 188 if (EC == errc::file_exists || EC == errc::permission_denied) 189 continue; 190 return EC; 191 } 192 193 return std::error_code(); 194 } 195 196 case FS_Name: { 197 EC = sys::fs::access(ResultPath.begin(), sys::fs::AccessMode::Exist); 198 if (EC == errc::no_such_file_or_directory) 199 return std::error_code(); 200 if (EC) 201 return EC; 202 continue; 203 } 204 205 case FS_Dir: { 206 EC = sys::fs::create_directory(ResultPath.begin(), false); 207 if (EC) { 208 if (EC == errc::file_exists) 209 continue; 210 return EC; 211 } 212 return std::error_code(); 213 } 214 } 215 llvm_unreachable("Invalid Type"); 216 } 217 return EC; 218 } 219 220 namespace llvm { 221 namespace sys { 222 namespace path { 223 224 const_iterator begin(StringRef path, Style style) { 225 const_iterator i; 226 i.Path = path; 227 i.Component = find_first_component(path, style); 228 i.Position = 0; 229 i.S = style; 230 return i; 231 } 232 233 const_iterator end(StringRef path) { 234 const_iterator i; 235 i.Path = path; 236 i.Position = path.size(); 237 return i; 238 } 239 240 const_iterator &const_iterator::operator++() { 241 assert(Position < Path.size() && "Tried to increment past end!"); 242 243 // Increment Position to past the current component 244 Position += Component.size(); 245 246 // Check for end. 247 if (Position == Path.size()) { 248 Component = StringRef(); 249 return *this; 250 } 251 252 // Both POSIX and Windows treat paths that begin with exactly two separators 253 // specially. 254 bool was_net = Component.size() > 2 && is_separator(Component[0], S) && 255 Component[1] == Component[0] && !is_separator(Component[2], S); 256 257 // Handle separators. 258 if (is_separator(Path[Position], S)) { 259 // Root dir. 260 if (was_net || 261 // c:/ 262 (real_style(S) == Style::windows && Component.endswith(":"))) { 263 Component = Path.substr(Position, 1); 264 return *this; 265 } 266 267 // Skip extra separators. 268 while (Position != Path.size() && is_separator(Path[Position], S)) { 269 ++Position; 270 } 271 272 // Treat trailing '/' as a '.', unless it is the root dir. 273 if (Position == Path.size() && Component != "/") { 274 --Position; 275 Component = "."; 276 return *this; 277 } 278 } 279 280 // Find next component. 281 size_t end_pos = Path.find_first_of(separators(S), Position); 282 Component = Path.slice(Position, end_pos); 283 284 return *this; 285 } 286 287 bool const_iterator::operator==(const const_iterator &RHS) const { 288 return Path.begin() == RHS.Path.begin() && Position == RHS.Position; 289 } 290 291 ptrdiff_t const_iterator::operator-(const const_iterator &RHS) const { 292 return Position - RHS.Position; 293 } 294 295 reverse_iterator rbegin(StringRef Path, Style style) { 296 reverse_iterator I; 297 I.Path = Path; 298 I.Position = Path.size(); 299 I.S = style; 300 ++I; 301 return I; 302 } 303 304 reverse_iterator rend(StringRef Path) { 305 reverse_iterator I; 306 I.Path = Path; 307 I.Component = Path.substr(0, 0); 308 I.Position = 0; 309 return I; 310 } 311 312 reverse_iterator &reverse_iterator::operator++() { 313 size_t root_dir_pos = root_dir_start(Path, S); 314 315 // Skip separators unless it's the root directory. 316 size_t end_pos = Position; 317 while (end_pos > 0 && (end_pos - 1) != root_dir_pos && 318 is_separator(Path[end_pos - 1], S)) 319 --end_pos; 320 321 // Treat trailing '/' as a '.', unless it is the root dir. 322 if (Position == Path.size() && !Path.empty() && 323 is_separator(Path.back(), S) && 324 (root_dir_pos == StringRef::npos || end_pos - 1 > root_dir_pos)) { 325 --Position; 326 Component = "."; 327 return *this; 328 } 329 330 // Find next separator. 331 size_t start_pos = filename_pos(Path.substr(0, end_pos), S); 332 Component = Path.slice(start_pos, end_pos); 333 Position = start_pos; 334 return *this; 335 } 336 337 bool reverse_iterator::operator==(const reverse_iterator &RHS) const { 338 return Path.begin() == RHS.Path.begin() && Component == RHS.Component && 339 Position == RHS.Position; 340 } 341 342 ptrdiff_t reverse_iterator::operator-(const reverse_iterator &RHS) const { 343 return Position - RHS.Position; 344 } 345 346 StringRef root_path(StringRef path, Style style) { 347 const_iterator b = begin(path, style), pos = b, e = end(path); 348 if (b != e) { 349 bool has_net = 350 b->size() > 2 && is_separator((*b)[0], style) && (*b)[1] == (*b)[0]; 351 bool has_drive = (real_style(style) == Style::windows) && b->endswith(":"); 352 353 if (has_net || has_drive) { 354 if ((++pos != e) && is_separator((*pos)[0], style)) { 355 // {C:/,//net/}, so get the first two components. 356 return path.substr(0, b->size() + pos->size()); 357 } else { 358 // just {C:,//net}, return the first component. 359 return *b; 360 } 361 } 362 363 // POSIX style root directory. 364 if (is_separator((*b)[0], style)) { 365 return *b; 366 } 367 } 368 369 return StringRef(); 370 } 371 372 StringRef root_name(StringRef path, Style style) { 373 const_iterator b = begin(path, style), e = end(path); 374 if (b != e) { 375 bool has_net = 376 b->size() > 2 && is_separator((*b)[0], style) && (*b)[1] == (*b)[0]; 377 bool has_drive = (real_style(style) == Style::windows) && b->endswith(":"); 378 379 if (has_net || has_drive) { 380 // just {C:,//net}, return the first component. 381 return *b; 382 } 383 } 384 385 // No path or no name. 386 return StringRef(); 387 } 388 389 StringRef root_directory(StringRef path, Style style) { 390 const_iterator b = begin(path, style), pos = b, e = end(path); 391 if (b != e) { 392 bool has_net = 393 b->size() > 2 && is_separator((*b)[0], style) && (*b)[1] == (*b)[0]; 394 bool has_drive = (real_style(style) == Style::windows) && b->endswith(":"); 395 396 if ((has_net || has_drive) && 397 // {C:,//net}, skip to the next component. 398 (++pos != e) && is_separator((*pos)[0], style)) { 399 return *pos; 400 } 401 402 // POSIX style root directory. 403 if (!has_net && is_separator((*b)[0], style)) { 404 return *b; 405 } 406 } 407 408 // No path or no root. 409 return StringRef(); 410 } 411 412 StringRef relative_path(StringRef path, Style style) { 413 StringRef root = root_path(path, style); 414 return path.substr(root.size()); 415 } 416 417 void append(SmallVectorImpl<char> &path, Style style, const Twine &a, 418 const Twine &b, const Twine &c, const Twine &d) { 419 SmallString<32> a_storage; 420 SmallString<32> b_storage; 421 SmallString<32> c_storage; 422 SmallString<32> d_storage; 423 424 SmallVector<StringRef, 4> components; 425 if (!a.isTriviallyEmpty()) components.push_back(a.toStringRef(a_storage)); 426 if (!b.isTriviallyEmpty()) components.push_back(b.toStringRef(b_storage)); 427 if (!c.isTriviallyEmpty()) components.push_back(c.toStringRef(c_storage)); 428 if (!d.isTriviallyEmpty()) components.push_back(d.toStringRef(d_storage)); 429 430 for (auto &component : components) { 431 bool path_has_sep = 432 !path.empty() && is_separator(path[path.size() - 1], style); 433 if (path_has_sep) { 434 // Strip separators from beginning of component. 435 size_t loc = component.find_first_not_of(separators(style)); 436 StringRef c = component.substr(loc); 437 438 // Append it. 439 path.append(c.begin(), c.end()); 440 continue; 441 } 442 443 bool component_has_sep = 444 !component.empty() && is_separator(component[0], style); 445 if (!component_has_sep && 446 !(path.empty() || has_root_name(component, style))) { 447 // Add a separator. 448 path.push_back(preferred_separator(style)); 449 } 450 451 path.append(component.begin(), component.end()); 452 } 453 } 454 455 void append(SmallVectorImpl<char> &path, const Twine &a, const Twine &b, 456 const Twine &c, const Twine &d) { 457 append(path, Style::native, a, b, c, d); 458 } 459 460 void append(SmallVectorImpl<char> &path, const_iterator begin, 461 const_iterator end, Style style) { 462 for (; begin != end; ++begin) 463 path::append(path, style, *begin); 464 } 465 466 StringRef parent_path(StringRef path, Style style) { 467 size_t end_pos = parent_path_end(path, style); 468 if (end_pos == StringRef::npos) 469 return StringRef(); 470 else 471 return path.substr(0, end_pos); 472 } 473 474 void remove_filename(SmallVectorImpl<char> &path, Style style) { 475 size_t end_pos = parent_path_end(StringRef(path.begin(), path.size()), style); 476 if (end_pos != StringRef::npos) 477 path.set_size(end_pos); 478 } 479 480 void replace_extension(SmallVectorImpl<char> &path, const Twine &extension, 481 Style style) { 482 StringRef p(path.begin(), path.size()); 483 SmallString<32> ext_storage; 484 StringRef ext = extension.toStringRef(ext_storage); 485 486 // Erase existing extension. 487 size_t pos = p.find_last_of('.'); 488 if (pos != StringRef::npos && pos >= filename_pos(p, style)) 489 path.set_size(pos); 490 491 // Append '.' if needed. 492 if (ext.size() > 0 && ext[0] != '.') 493 path.push_back('.'); 494 495 // Append extension. 496 path.append(ext.begin(), ext.end()); 497 } 498 499 bool replace_path_prefix(SmallVectorImpl<char> &Path, StringRef OldPrefix, 500 StringRef NewPrefix) { 501 if (OldPrefix.empty() && NewPrefix.empty()) 502 return false; 503 504 StringRef OrigPath(Path.begin(), Path.size()); 505 if (!OrigPath.startswith(OldPrefix)) 506 return false; 507 508 // If prefixes have the same size we can simply copy the new one over. 509 if (OldPrefix.size() == NewPrefix.size()) { 510 llvm::copy(NewPrefix, Path.begin()); 511 return true; 512 } 513 514 StringRef RelPath = OrigPath.substr(OldPrefix.size()); 515 SmallString<256> NewPath; 516 (Twine(NewPrefix) + RelPath).toVector(NewPath); 517 Path.swap(NewPath); 518 return true; 519 } 520 521 void native(const Twine &path, SmallVectorImpl<char> &result, Style style) { 522 assert((!path.isSingleStringRef() || 523 path.getSingleStringRef().data() != result.data()) && 524 "path and result are not allowed to overlap!"); 525 // Clear result. 526 result.clear(); 527 path.toVector(result); 528 native(result, style); 529 } 530 531 void native(SmallVectorImpl<char> &Path, Style style) { 532 if (Path.empty()) 533 return; 534 if (real_style(style) == Style::windows) { 535 std::replace(Path.begin(), Path.end(), '/', '\\'); 536 if (Path[0] == '~' && (Path.size() == 1 || is_separator(Path[1], style))) { 537 SmallString<128> PathHome; 538 home_directory(PathHome); 539 PathHome.append(Path.begin() + 1, Path.end()); 540 Path = PathHome; 541 } 542 } else { 543 for (auto PI = Path.begin(), PE = Path.end(); PI < PE; ++PI) 544 if (*PI == '\\') 545 *PI = '/'; 546 } 547 } 548 549 std::string convert_to_slash(StringRef path, Style style) { 550 if (real_style(style) != Style::windows) 551 return std::string(path); 552 553 std::string s = path.str(); 554 std::replace(s.begin(), s.end(), '\\', '/'); 555 return s; 556 } 557 558 StringRef filename(StringRef path, Style style) { return *rbegin(path, style); } 559 560 StringRef stem(StringRef path, Style style) { 561 StringRef fname = filename(path, style); 562 size_t pos = fname.find_last_of('.'); 563 if (pos == StringRef::npos) 564 return fname; 565 else 566 if ((fname.size() == 1 && fname == ".") || 567 (fname.size() == 2 && fname == "..")) 568 return fname; 569 else 570 return fname.substr(0, pos); 571 } 572 573 StringRef extension(StringRef path, Style style) { 574 StringRef fname = filename(path, style); 575 size_t pos = fname.find_last_of('.'); 576 if (pos == StringRef::npos) 577 return StringRef(); 578 else 579 if ((fname.size() == 1 && fname == ".") || 580 (fname.size() == 2 && fname == "..")) 581 return StringRef(); 582 else 583 return fname.substr(pos); 584 } 585 586 bool is_separator(char value, Style style) { 587 if (value == '/') 588 return true; 589 if (real_style(style) == Style::windows) 590 return value == '\\'; 591 return false; 592 } 593 594 StringRef get_separator(Style style) { 595 if (real_style(style) == Style::windows) 596 return "\\"; 597 return "/"; 598 } 599 600 bool has_root_name(const Twine &path, Style style) { 601 SmallString<128> path_storage; 602 StringRef p = path.toStringRef(path_storage); 603 604 return !root_name(p, style).empty(); 605 } 606 607 bool has_root_directory(const Twine &path, Style style) { 608 SmallString<128> path_storage; 609 StringRef p = path.toStringRef(path_storage); 610 611 return !root_directory(p, style).empty(); 612 } 613 614 bool has_root_path(const Twine &path, Style style) { 615 SmallString<128> path_storage; 616 StringRef p = path.toStringRef(path_storage); 617 618 return !root_path(p, style).empty(); 619 } 620 621 bool has_relative_path(const Twine &path, Style style) { 622 SmallString<128> path_storage; 623 StringRef p = path.toStringRef(path_storage); 624 625 return !relative_path(p, style).empty(); 626 } 627 628 bool has_filename(const Twine &path, Style style) { 629 SmallString<128> path_storage; 630 StringRef p = path.toStringRef(path_storage); 631 632 return !filename(p, style).empty(); 633 } 634 635 bool has_parent_path(const Twine &path, Style style) { 636 SmallString<128> path_storage; 637 StringRef p = path.toStringRef(path_storage); 638 639 return !parent_path(p, style).empty(); 640 } 641 642 bool has_stem(const Twine &path, Style style) { 643 SmallString<128> path_storage; 644 StringRef p = path.toStringRef(path_storage); 645 646 return !stem(p, style).empty(); 647 } 648 649 bool has_extension(const Twine &path, Style style) { 650 SmallString<128> path_storage; 651 StringRef p = path.toStringRef(path_storage); 652 653 return !extension(p, style).empty(); 654 } 655 656 bool is_absolute(const Twine &path, Style style) { 657 SmallString<128> path_storage; 658 StringRef p = path.toStringRef(path_storage); 659 660 bool rootDir = has_root_directory(p, style); 661 bool rootName = 662 (real_style(style) != Style::windows) || has_root_name(p, style); 663 664 return rootDir && rootName; 665 } 666 667 bool is_relative(const Twine &path, Style style) { 668 return !is_absolute(path, style); 669 } 670 671 StringRef remove_leading_dotslash(StringRef Path, Style style) { 672 // Remove leading "./" (or ".//" or "././" etc.) 673 while (Path.size() > 2 && Path[0] == '.' && is_separator(Path[1], style)) { 674 Path = Path.substr(2); 675 while (Path.size() > 0 && is_separator(Path[0], style)) 676 Path = Path.substr(1); 677 } 678 return Path; 679 } 680 681 // Remove path traversal components ("." and "..") when possible, and 682 // canonicalize slashes. 683 bool remove_dots(SmallVectorImpl<char> &the_path, bool remove_dot_dot, 684 Style style) { 685 style = real_style(style); 686 StringRef remaining(the_path.data(), the_path.size()); 687 bool needs_change = false; 688 SmallVector<StringRef, 16> components; 689 690 // Consume the root path, if present. 691 StringRef root = path::root_path(remaining, style); 692 bool absolute = !root.empty(); 693 if (absolute) 694 remaining = remaining.drop_front(root.size()); 695 696 // Loop over path components manually. This makes it easier to detect 697 // non-preferred slashes and double separators that must be canonicalized. 698 while (!remaining.empty()) { 699 size_t next_slash = remaining.find_first_of(separators(style)); 700 if (next_slash == StringRef::npos) 701 next_slash = remaining.size(); 702 StringRef component = remaining.take_front(next_slash); 703 remaining = remaining.drop_front(next_slash); 704 705 // Eat the slash, and check if it is the preferred separator. 706 if (!remaining.empty()) { 707 needs_change |= remaining.front() != preferred_separator(style); 708 remaining = remaining.drop_front(); 709 // The path needs to be rewritten if it has a trailing slash. 710 // FIXME: This is emergent behavior that could be removed. 711 needs_change |= remaining.empty(); 712 } 713 714 // Check for path traversal components or double separators. 715 if (component.empty() || component == ".") { 716 needs_change = true; 717 } else if (remove_dot_dot && component == "..") { 718 needs_change = true; 719 // Do not allow ".." to remove the root component. If this is the 720 // beginning of a relative path, keep the ".." component. 721 if (!components.empty() && components.back() != "..") { 722 components.pop_back(); 723 } else if (!absolute) { 724 components.push_back(component); 725 } 726 } else { 727 components.push_back(component); 728 } 729 } 730 731 // Avoid rewriting the path unless we have to. 732 if (!needs_change) 733 return false; 734 735 SmallString<256> buffer = root; 736 if (!components.empty()) { 737 buffer += components[0]; 738 for (StringRef C : makeArrayRef(components).drop_front()) { 739 buffer += preferred_separator(style); 740 buffer += C; 741 } 742 } 743 the_path.swap(buffer); 744 return true; 745 } 746 747 } // end namespace path 748 749 namespace fs { 750 751 std::error_code getUniqueID(const Twine Path, UniqueID &Result) { 752 file_status Status; 753 std::error_code EC = status(Path, Status); 754 if (EC) 755 return EC; 756 Result = Status.getUniqueID(); 757 return std::error_code(); 758 } 759 760 void createUniquePath(const Twine &Model, SmallVectorImpl<char> &ResultPath, 761 bool MakeAbsolute) { 762 SmallString<128> ModelStorage; 763 Model.toVector(ModelStorage); 764 765 if (MakeAbsolute) { 766 // Make model absolute by prepending a temp directory if it's not already. 767 if (!sys::path::is_absolute(Twine(ModelStorage))) { 768 SmallString<128> TDir; 769 sys::path::system_temp_directory(true, TDir); 770 sys::path::append(TDir, Twine(ModelStorage)); 771 ModelStorage.swap(TDir); 772 } 773 } 774 775 ResultPath = ModelStorage; 776 ResultPath.push_back(0); 777 ResultPath.pop_back(); 778 779 // Replace '%' with random chars. 780 for (unsigned i = 0, e = ModelStorage.size(); i != e; ++i) { 781 if (ModelStorage[i] == '%') 782 ResultPath[i] = "0123456789abcdef"[sys::Process::GetRandomNumber() & 15]; 783 } 784 } 785 786 std::error_code createUniqueFile(const Twine &Model, int &ResultFd, 787 SmallVectorImpl<char> &ResultPath, 788 unsigned Mode) { 789 return createUniqueEntity(Model, ResultFd, ResultPath, false, Mode, FS_File); 790 } 791 792 static std::error_code createUniqueFile(const Twine &Model, int &ResultFd, 793 SmallVectorImpl<char> &ResultPath, 794 unsigned Mode, OpenFlags Flags) { 795 return createUniqueEntity(Model, ResultFd, ResultPath, false, Mode, FS_File, 796 Flags); 797 } 798 799 std::error_code createUniqueFile(const Twine &Model, 800 SmallVectorImpl<char> &ResultPath, 801 unsigned Mode) { 802 int FD; 803 auto EC = createUniqueFile(Model, FD, ResultPath, Mode); 804 if (EC) 805 return EC; 806 // FD is only needed to avoid race conditions. Close it right away. 807 close(FD); 808 return EC; 809 } 810 811 static std::error_code 812 createTemporaryFile(const Twine &Model, int &ResultFD, 813 llvm::SmallVectorImpl<char> &ResultPath, FSEntity Type) { 814 SmallString<128> Storage; 815 StringRef P = Model.toNullTerminatedStringRef(Storage); 816 assert(P.find_first_of(separators(Style::native)) == StringRef::npos && 817 "Model must be a simple filename."); 818 // Use P.begin() so that createUniqueEntity doesn't need to recreate Storage. 819 return createUniqueEntity(P.begin(), ResultFD, ResultPath, true, 820 owner_read | owner_write, Type); 821 } 822 823 static std::error_code 824 createTemporaryFile(const Twine &Prefix, StringRef Suffix, int &ResultFD, 825 llvm::SmallVectorImpl<char> &ResultPath, FSEntity Type) { 826 const char *Middle = Suffix.empty() ? "-%%%%%%" : "-%%%%%%."; 827 return createTemporaryFile(Prefix + Middle + Suffix, ResultFD, ResultPath, 828 Type); 829 } 830 831 std::error_code createTemporaryFile(const Twine &Prefix, StringRef Suffix, 832 int &ResultFD, 833 SmallVectorImpl<char> &ResultPath) { 834 return createTemporaryFile(Prefix, Suffix, ResultFD, ResultPath, FS_File); 835 } 836 837 std::error_code createTemporaryFile(const Twine &Prefix, StringRef Suffix, 838 SmallVectorImpl<char> &ResultPath) { 839 int FD; 840 auto EC = createTemporaryFile(Prefix, Suffix, FD, ResultPath); 841 if (EC) 842 return EC; 843 // FD is only needed to avoid race conditions. Close it right away. 844 close(FD); 845 return EC; 846 } 847 848 849 // This is a mkdtemp with a different pattern. We use createUniqueEntity mostly 850 // for consistency. We should try using mkdtemp. 851 std::error_code createUniqueDirectory(const Twine &Prefix, 852 SmallVectorImpl<char> &ResultPath) { 853 int Dummy; 854 return createUniqueEntity(Prefix + "-%%%%%%", Dummy, ResultPath, true, 0, 855 FS_Dir); 856 } 857 858 std::error_code 859 getPotentiallyUniqueFileName(const Twine &Model, 860 SmallVectorImpl<char> &ResultPath) { 861 int Dummy; 862 return createUniqueEntity(Model, Dummy, ResultPath, false, 0, FS_Name); 863 } 864 865 std::error_code 866 getPotentiallyUniqueTempFileName(const Twine &Prefix, StringRef Suffix, 867 SmallVectorImpl<char> &ResultPath) { 868 int Dummy; 869 return createTemporaryFile(Prefix, Suffix, Dummy, ResultPath, FS_Name); 870 } 871 872 void make_absolute(const Twine ¤t_directory, 873 SmallVectorImpl<char> &path) { 874 StringRef p(path.data(), path.size()); 875 876 bool rootDirectory = path::has_root_directory(p); 877 bool rootName = path::has_root_name(p); 878 879 // Already absolute. 880 if ((rootName || real_style(Style::native) != Style::windows) && 881 rootDirectory) 882 return; 883 884 // All of the following conditions will need the current directory. 885 SmallString<128> current_dir; 886 current_directory.toVector(current_dir); 887 888 // Relative path. Prepend the current directory. 889 if (!rootName && !rootDirectory) { 890 // Append path to the current directory. 891 path::append(current_dir, p); 892 // Set path to the result. 893 path.swap(current_dir); 894 return; 895 } 896 897 if (!rootName && rootDirectory) { 898 StringRef cdrn = path::root_name(current_dir); 899 SmallString<128> curDirRootName(cdrn.begin(), cdrn.end()); 900 path::append(curDirRootName, p); 901 // Set path to the result. 902 path.swap(curDirRootName); 903 return; 904 } 905 906 if (rootName && !rootDirectory) { 907 StringRef pRootName = path::root_name(p); 908 StringRef bRootDirectory = path::root_directory(current_dir); 909 StringRef bRelativePath = path::relative_path(current_dir); 910 StringRef pRelativePath = path::relative_path(p); 911 912 SmallString<128> res; 913 path::append(res, pRootName, bRootDirectory, bRelativePath, pRelativePath); 914 path.swap(res); 915 return; 916 } 917 918 llvm_unreachable("All rootName and rootDirectory combinations should have " 919 "occurred above!"); 920 } 921 922 std::error_code make_absolute(SmallVectorImpl<char> &path) { 923 if (path::is_absolute(path)) 924 return {}; 925 926 SmallString<128> current_dir; 927 if (std::error_code ec = current_path(current_dir)) 928 return ec; 929 930 make_absolute(current_dir, path); 931 return {}; 932 } 933 934 std::error_code create_directories(const Twine &Path, bool IgnoreExisting, 935 perms Perms) { 936 SmallString<128> PathStorage; 937 StringRef P = Path.toStringRef(PathStorage); 938 939 // Be optimistic and try to create the directory 940 std::error_code EC = create_directory(P, IgnoreExisting, Perms); 941 // If we succeeded, or had any error other than the parent not existing, just 942 // return it. 943 if (EC != errc::no_such_file_or_directory) 944 return EC; 945 946 // We failed because of a no_such_file_or_directory, try to create the 947 // parent. 948 StringRef Parent = path::parent_path(P); 949 if (Parent.empty()) 950 return EC; 951 952 if ((EC = create_directories(Parent, IgnoreExisting, Perms))) 953 return EC; 954 955 return create_directory(P, IgnoreExisting, Perms); 956 } 957 958 static std::error_code copy_file_internal(int ReadFD, int WriteFD) { 959 const size_t BufSize = 4096; 960 char *Buf = new char[BufSize]; 961 int BytesRead = 0, BytesWritten = 0; 962 for (;;) { 963 BytesRead = read(ReadFD, Buf, BufSize); 964 if (BytesRead <= 0) 965 break; 966 while (BytesRead) { 967 BytesWritten = write(WriteFD, Buf, BytesRead); 968 if (BytesWritten < 0) 969 break; 970 BytesRead -= BytesWritten; 971 } 972 if (BytesWritten < 0) 973 break; 974 } 975 delete[] Buf; 976 977 if (BytesRead < 0 || BytesWritten < 0) 978 return std::error_code(errno, std::generic_category()); 979 return std::error_code(); 980 } 981 982 #ifndef __APPLE__ 983 std::error_code copy_file(const Twine &From, const Twine &To) { 984 int ReadFD, WriteFD; 985 if (std::error_code EC = openFileForRead(From, ReadFD, OF_None)) 986 return EC; 987 if (std::error_code EC = 988 openFileForWrite(To, WriteFD, CD_CreateAlways, OF_None)) { 989 close(ReadFD); 990 return EC; 991 } 992 993 std::error_code EC = copy_file_internal(ReadFD, WriteFD); 994 995 close(ReadFD); 996 close(WriteFD); 997 998 return EC; 999 } 1000 #endif 1001 1002 std::error_code copy_file(const Twine &From, int ToFD) { 1003 int ReadFD; 1004 if (std::error_code EC = openFileForRead(From, ReadFD, OF_None)) 1005 return EC; 1006 1007 std::error_code EC = copy_file_internal(ReadFD, ToFD); 1008 1009 close(ReadFD); 1010 1011 return EC; 1012 } 1013 1014 ErrorOr<MD5::MD5Result> md5_contents(int FD) { 1015 MD5 Hash; 1016 1017 constexpr size_t BufSize = 4096; 1018 std::vector<uint8_t> Buf(BufSize); 1019 int BytesRead = 0; 1020 for (;;) { 1021 BytesRead = read(FD, Buf.data(), BufSize); 1022 if (BytesRead <= 0) 1023 break; 1024 Hash.update(makeArrayRef(Buf.data(), BytesRead)); 1025 } 1026 1027 if (BytesRead < 0) 1028 return std::error_code(errno, std::generic_category()); 1029 MD5::MD5Result Result; 1030 Hash.final(Result); 1031 return Result; 1032 } 1033 1034 ErrorOr<MD5::MD5Result> md5_contents(const Twine &Path) { 1035 int FD; 1036 if (auto EC = openFileForRead(Path, FD, OF_None)) 1037 return EC; 1038 1039 auto Result = md5_contents(FD); 1040 close(FD); 1041 return Result; 1042 } 1043 1044 bool exists(const basic_file_status &status) { 1045 return status_known(status) && status.type() != file_type::file_not_found; 1046 } 1047 1048 bool status_known(const basic_file_status &s) { 1049 return s.type() != file_type::status_error; 1050 } 1051 1052 file_type get_file_type(const Twine &Path, bool Follow) { 1053 file_status st; 1054 if (status(Path, st, Follow)) 1055 return file_type::status_error; 1056 return st.type(); 1057 } 1058 1059 bool is_directory(const basic_file_status &status) { 1060 return status.type() == file_type::directory_file; 1061 } 1062 1063 std::error_code is_directory(const Twine &path, bool &result) { 1064 file_status st; 1065 if (std::error_code ec = status(path, st)) 1066 return ec; 1067 result = is_directory(st); 1068 return std::error_code(); 1069 } 1070 1071 bool is_regular_file(const basic_file_status &status) { 1072 return status.type() == file_type::regular_file; 1073 } 1074 1075 std::error_code is_regular_file(const Twine &path, bool &result) { 1076 file_status st; 1077 if (std::error_code ec = status(path, st)) 1078 return ec; 1079 result = is_regular_file(st); 1080 return std::error_code(); 1081 } 1082 1083 bool is_symlink_file(const basic_file_status &status) { 1084 return status.type() == file_type::symlink_file; 1085 } 1086 1087 std::error_code is_symlink_file(const Twine &path, bool &result) { 1088 file_status st; 1089 if (std::error_code ec = status(path, st, false)) 1090 return ec; 1091 result = is_symlink_file(st); 1092 return std::error_code(); 1093 } 1094 1095 bool is_other(const basic_file_status &status) { 1096 return exists(status) && 1097 !is_regular_file(status) && 1098 !is_directory(status); 1099 } 1100 1101 std::error_code is_other(const Twine &Path, bool &Result) { 1102 file_status FileStatus; 1103 if (std::error_code EC = status(Path, FileStatus)) 1104 return EC; 1105 Result = is_other(FileStatus); 1106 return std::error_code(); 1107 } 1108 1109 void directory_entry::replace_filename(const Twine &Filename, file_type Type, 1110 basic_file_status Status) { 1111 SmallString<128> PathStr = path::parent_path(Path); 1112 path::append(PathStr, Filename); 1113 this->Path = std::string(PathStr.str()); 1114 this->Type = Type; 1115 this->Status = Status; 1116 } 1117 1118 ErrorOr<perms> getPermissions(const Twine &Path) { 1119 file_status Status; 1120 if (std::error_code EC = status(Path, Status)) 1121 return EC; 1122 1123 return Status.permissions(); 1124 } 1125 1126 } // end namespace fs 1127 } // end namespace sys 1128 } // end namespace llvm 1129 1130 // Include the truly platform-specific parts. 1131 #if defined(LLVM_ON_UNIX) 1132 #include "Unix/Path.inc" 1133 #endif 1134 #if defined(_WIN32) 1135 #include "Windows/Path.inc" 1136 #endif 1137 1138 namespace llvm { 1139 namespace sys { 1140 namespace fs { 1141 TempFile::TempFile(StringRef Name, int FD) 1142 : TmpName(std::string(Name)), FD(FD) {} 1143 TempFile::TempFile(TempFile &&Other) { *this = std::move(Other); } 1144 TempFile &TempFile::operator=(TempFile &&Other) { 1145 TmpName = std::move(Other.TmpName); 1146 FD = Other.FD; 1147 Other.Done = true; 1148 Other.FD = -1; 1149 return *this; 1150 } 1151 1152 TempFile::~TempFile() { assert(Done); } 1153 1154 Error TempFile::discard() { 1155 Done = true; 1156 if (FD != -1 && close(FD) == -1) { 1157 std::error_code EC = std::error_code(errno, std::generic_category()); 1158 return errorCodeToError(EC); 1159 } 1160 FD = -1; 1161 1162 #ifdef _WIN32 1163 // On windows closing will remove the file. 1164 TmpName = ""; 1165 return Error::success(); 1166 #else 1167 // Always try to close and remove. 1168 std::error_code RemoveEC; 1169 if (!TmpName.empty()) { 1170 RemoveEC = fs::remove(TmpName); 1171 sys::DontRemoveFileOnSignal(TmpName); 1172 if (!RemoveEC) 1173 TmpName = ""; 1174 } 1175 return errorCodeToError(RemoveEC); 1176 #endif 1177 } 1178 1179 Error TempFile::keep(const Twine &Name) { 1180 assert(!Done); 1181 Done = true; 1182 // Always try to close and rename. 1183 #ifdef _WIN32 1184 // If we can't cancel the delete don't rename. 1185 auto H = reinterpret_cast<HANDLE>(_get_osfhandle(FD)); 1186 std::error_code RenameEC = setDeleteDisposition(H, false); 1187 if (!RenameEC) { 1188 RenameEC = rename_fd(FD, Name); 1189 // If rename failed because it's cross-device, copy instead 1190 if (RenameEC == 1191 std::error_code(ERROR_NOT_SAME_DEVICE, std::system_category())) { 1192 RenameEC = copy_file(TmpName, Name); 1193 setDeleteDisposition(H, true); 1194 } 1195 } 1196 1197 // If we can't rename, discard the temporary file. 1198 if (RenameEC) 1199 setDeleteDisposition(H, true); 1200 #else 1201 std::error_code RenameEC = fs::rename(TmpName, Name); 1202 if (RenameEC) { 1203 // If we can't rename, try to copy to work around cross-device link issues. 1204 RenameEC = sys::fs::copy_file(TmpName, Name); 1205 // If we can't rename or copy, discard the temporary file. 1206 if (RenameEC) 1207 remove(TmpName); 1208 } 1209 sys::DontRemoveFileOnSignal(TmpName); 1210 #endif 1211 1212 if (!RenameEC) 1213 TmpName = ""; 1214 1215 if (close(FD) == -1) { 1216 std::error_code EC(errno, std::generic_category()); 1217 return errorCodeToError(EC); 1218 } 1219 FD = -1; 1220 1221 return errorCodeToError(RenameEC); 1222 } 1223 1224 Error TempFile::keep() { 1225 assert(!Done); 1226 Done = true; 1227 1228 #ifdef _WIN32 1229 auto H = reinterpret_cast<HANDLE>(_get_osfhandle(FD)); 1230 if (std::error_code EC = setDeleteDisposition(H, false)) 1231 return errorCodeToError(EC); 1232 #else 1233 sys::DontRemoveFileOnSignal(TmpName); 1234 #endif 1235 1236 TmpName = ""; 1237 1238 if (close(FD) == -1) { 1239 std::error_code EC(errno, std::generic_category()); 1240 return errorCodeToError(EC); 1241 } 1242 FD = -1; 1243 1244 return Error::success(); 1245 } 1246 1247 Expected<TempFile> TempFile::create(const Twine &Model, unsigned Mode) { 1248 int FD; 1249 SmallString<128> ResultPath; 1250 if (std::error_code EC = 1251 createUniqueFile(Model, FD, ResultPath, Mode, OF_Delete)) 1252 return errorCodeToError(EC); 1253 1254 TempFile Ret(ResultPath, FD); 1255 #ifndef _WIN32 1256 if (sys::RemoveFileOnSignal(ResultPath)) { 1257 // Make sure we delete the file when RemoveFileOnSignal fails. 1258 consumeError(Ret.discard()); 1259 std::error_code EC(errc::operation_not_permitted); 1260 return errorCodeToError(EC); 1261 } 1262 #endif 1263 return std::move(Ret); 1264 } 1265 } 1266 1267 } // end namsspace sys 1268 } // end namespace llvm 1269