1 //===- llvm/unittest/Support/Path.cpp - Path tests ------------------------===// 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 #include "llvm/Support/Path.h" 10 #include "llvm/ADT/STLExtras.h" 11 #include "llvm/ADT/ScopeExit.h" 12 #include "llvm/ADT/SmallVector.h" 13 #include "llvm/ADT/Triple.h" 14 #include "llvm/BinaryFormat/Magic.h" 15 #include "llvm/Config/llvm-config.h" 16 #include "llvm/Support/Compiler.h" 17 #include "llvm/Support/ConvertUTF.h" 18 #include "llvm/Support/Duration.h" 19 #include "llvm/Support/Errc.h" 20 #include "llvm/Support/ErrorHandling.h" 21 #include "llvm/Support/FileSystem.h" 22 #include "llvm/Support/FileUtilities.h" 23 #include "llvm/Support/Host.h" 24 #include "llvm/Support/MemoryBuffer.h" 25 #include "llvm/Support/raw_ostream.h" 26 #include "llvm/Testing/Support/Error.h" 27 #include "llvm/Testing/Support/SupportHelpers.h" 28 #include "gmock/gmock.h" 29 #include "gtest/gtest.h" 30 31 #ifdef _WIN32 32 #include "llvm/ADT/ArrayRef.h" 33 #include "llvm/Support/Chrono.h" 34 #include "llvm/Support/Windows/WindowsSupport.h" 35 #include <windows.h> 36 #include <winerror.h> 37 #endif 38 39 #ifdef LLVM_ON_UNIX 40 #include <pwd.h> 41 #include <sys/stat.h> 42 #endif 43 44 using namespace llvm; 45 using namespace llvm::sys; 46 47 #define ASSERT_NO_ERROR(x) \ 48 if (std::error_code ASSERT_NO_ERROR_ec = x) { \ 49 SmallString<128> MessageStorage; \ 50 raw_svector_ostream Message(MessageStorage); \ 51 Message << #x ": did not return errc::success.\n" \ 52 << "error number: " << ASSERT_NO_ERROR_ec.value() << "\n" \ 53 << "error message: " << ASSERT_NO_ERROR_ec.message() << "\n"; \ 54 GTEST_FATAL_FAILURE_(MessageStorage.c_str()); \ 55 } else { \ 56 } 57 58 #define ASSERT_ERROR(x) \ 59 if (!x) { \ 60 SmallString<128> MessageStorage; \ 61 raw_svector_ostream Message(MessageStorage); \ 62 Message << #x ": did not return a failure error code.\n"; \ 63 GTEST_FATAL_FAILURE_(MessageStorage.c_str()); \ 64 } 65 66 namespace { 67 68 void checkSeparators(StringRef Path) { 69 #ifdef _WIN32 70 char UndesiredSeparator = sys::path::get_separator()[0] == '/' ? '\\' : '/'; 71 ASSERT_EQ(Path.find(UndesiredSeparator), StringRef::npos); 72 #endif 73 } 74 75 struct FileDescriptorCloser { 76 explicit FileDescriptorCloser(int FD) : FD(FD) {} 77 ~FileDescriptorCloser() { ::close(FD); } 78 int FD; 79 }; 80 81 TEST(is_style_Style, Works) { 82 using namespace llvm::sys::path; 83 // Check platform-independent results. 84 EXPECT_TRUE(is_style_posix(Style::posix)); 85 EXPECT_TRUE(is_style_windows(Style::windows)); 86 EXPECT_TRUE(is_style_windows(Style::windows_slash)); 87 EXPECT_FALSE(is_style_posix(Style::windows)); 88 EXPECT_FALSE(is_style_posix(Style::windows_slash)); 89 EXPECT_FALSE(is_style_windows(Style::posix)); 90 91 // Check platform-dependent results. 92 #if defined(_WIN32) 93 EXPECT_FALSE(is_style_posix(Style::native)); 94 EXPECT_TRUE(is_style_windows(Style::native)); 95 #else 96 EXPECT_TRUE(is_style_posix(Style::native)); 97 EXPECT_FALSE(is_style_windows(Style::native)); 98 #endif 99 } 100 101 TEST(is_separator, Works) { 102 EXPECT_TRUE(path::is_separator('/')); 103 EXPECT_FALSE(path::is_separator('\0')); 104 EXPECT_FALSE(path::is_separator('-')); 105 EXPECT_FALSE(path::is_separator(' ')); 106 107 EXPECT_TRUE(path::is_separator('\\', path::Style::windows)); 108 EXPECT_TRUE(path::is_separator('\\', path::Style::windows_slash)); 109 EXPECT_FALSE(path::is_separator('\\', path::Style::posix)); 110 111 EXPECT_EQ(path::is_style_windows(path::Style::native), 112 path::is_separator('\\')); 113 } 114 115 TEST(get_separator, Works) { 116 EXPECT_EQ(path::get_separator(path::Style::posix), "/"); 117 EXPECT_EQ(path::get_separator(path::Style::windows_backslash), "\\"); 118 EXPECT_EQ(path::get_separator(path::Style::windows_slash), "/"); 119 } 120 121 TEST(is_absolute_gnu, Works) { 122 // Test tuple <Path, ExpectedPosixValue, ExpectedWindowsValue>. 123 const std::tuple<StringRef, bool, bool> Paths[] = { 124 std::make_tuple("", false, false), 125 std::make_tuple("/", true, true), 126 std::make_tuple("/foo", true, true), 127 std::make_tuple("\\", false, true), 128 std::make_tuple("\\foo", false, true), 129 std::make_tuple("foo", false, false), 130 std::make_tuple("c", false, false), 131 std::make_tuple("c:", false, true), 132 std::make_tuple("c:\\", false, true), 133 std::make_tuple("!:", false, true), 134 std::make_tuple("xx:", false, false), 135 std::make_tuple("c:abc\\", false, true), 136 std::make_tuple(":", false, false)}; 137 138 for (const auto &Path : Paths) { 139 EXPECT_EQ(path::is_absolute_gnu(std::get<0>(Path), path::Style::posix), 140 std::get<1>(Path)); 141 EXPECT_EQ(path::is_absolute_gnu(std::get<0>(Path), path::Style::windows), 142 std::get<2>(Path)); 143 144 constexpr int Native = is_style_posix(path::Style::native) ? 1 : 2; 145 EXPECT_EQ(path::is_absolute_gnu(std::get<0>(Path), path::Style::native), 146 std::get<Native>(Path)); 147 } 148 } 149 150 TEST(Support, Path) { 151 SmallVector<StringRef, 40> paths; 152 paths.push_back(""); 153 paths.push_back("."); 154 paths.push_back(".."); 155 paths.push_back("foo"); 156 paths.push_back("/"); 157 paths.push_back("/foo"); 158 paths.push_back("foo/"); 159 paths.push_back("/foo/"); 160 paths.push_back("foo/bar"); 161 paths.push_back("/foo/bar"); 162 paths.push_back("//net"); 163 paths.push_back("//net/"); 164 paths.push_back("//net/foo"); 165 paths.push_back("///foo///"); 166 paths.push_back("///foo///bar"); 167 paths.push_back("/."); 168 paths.push_back("./"); 169 paths.push_back("/.."); 170 paths.push_back("../"); 171 paths.push_back("foo/."); 172 paths.push_back("foo/.."); 173 paths.push_back("foo/./"); 174 paths.push_back("foo/./bar"); 175 paths.push_back("foo/.."); 176 paths.push_back("foo/../"); 177 paths.push_back("foo/../bar"); 178 paths.push_back("c:"); 179 paths.push_back("c:/"); 180 paths.push_back("c:foo"); 181 paths.push_back("c:/foo"); 182 paths.push_back("c:foo/"); 183 paths.push_back("c:/foo/"); 184 paths.push_back("c:/foo/bar"); 185 paths.push_back("prn:"); 186 paths.push_back("c:\\"); 187 paths.push_back("c:foo"); 188 paths.push_back("c:\\foo"); 189 paths.push_back("c:foo\\"); 190 paths.push_back("c:\\foo\\"); 191 paths.push_back("c:\\foo/"); 192 paths.push_back("c:/foo\\bar"); 193 194 for (SmallVector<StringRef, 40>::const_iterator i = paths.begin(), 195 e = paths.end(); 196 i != e; 197 ++i) { 198 SCOPED_TRACE(*i); 199 SmallVector<StringRef, 5> ComponentStack; 200 for (sys::path::const_iterator ci = sys::path::begin(*i), 201 ce = sys::path::end(*i); 202 ci != ce; 203 ++ci) { 204 EXPECT_FALSE(ci->empty()); 205 ComponentStack.push_back(*ci); 206 } 207 208 SmallVector<StringRef, 5> ReverseComponentStack; 209 for (sys::path::reverse_iterator ci = sys::path::rbegin(*i), 210 ce = sys::path::rend(*i); 211 ci != ce; 212 ++ci) { 213 EXPECT_FALSE(ci->empty()); 214 ReverseComponentStack.push_back(*ci); 215 } 216 std::reverse(ReverseComponentStack.begin(), ReverseComponentStack.end()); 217 EXPECT_THAT(ComponentStack, testing::ContainerEq(ReverseComponentStack)); 218 219 // Crash test most of the API - since we're iterating over all of our paths 220 // here there isn't really anything reasonable to assert on in the results. 221 (void)path::has_root_path(*i); 222 (void)path::root_path(*i); 223 (void)path::has_root_name(*i); 224 (void)path::root_name(*i); 225 (void)path::has_root_directory(*i); 226 (void)path::root_directory(*i); 227 (void)path::has_parent_path(*i); 228 (void)path::parent_path(*i); 229 (void)path::has_filename(*i); 230 (void)path::filename(*i); 231 (void)path::has_stem(*i); 232 (void)path::stem(*i); 233 (void)path::has_extension(*i); 234 (void)path::extension(*i); 235 (void)path::is_absolute(*i); 236 (void)path::is_absolute_gnu(*i); 237 (void)path::is_relative(*i); 238 239 SmallString<128> temp_store; 240 temp_store = *i; 241 ASSERT_NO_ERROR(fs::make_absolute(temp_store)); 242 temp_store = *i; 243 path::remove_filename(temp_store); 244 245 temp_store = *i; 246 path::replace_extension(temp_store, "ext"); 247 StringRef filename(temp_store.begin(), temp_store.size()), stem, ext; 248 stem = path::stem(filename); 249 ext = path::extension(filename); 250 EXPECT_EQ(*sys::path::rbegin(filename), (stem + ext).str()); 251 252 path::native(*i, temp_store); 253 } 254 255 { 256 SmallString<32> Relative("foo.cpp"); 257 sys::fs::make_absolute("/root", Relative); 258 Relative[5] = '/'; // Fix up windows paths. 259 ASSERT_EQ("/root/foo.cpp", Relative); 260 } 261 262 { 263 SmallString<32> Relative("foo.cpp"); 264 sys::fs::make_absolute("//root", Relative); 265 Relative[6] = '/'; // Fix up windows paths. 266 ASSERT_EQ("//root/foo.cpp", Relative); 267 } 268 } 269 270 TEST(Support, PathRoot) { 271 ASSERT_EQ(path::root_name("//net/hello", path::Style::posix).str(), "//net"); 272 ASSERT_EQ(path::root_name("c:/hello", path::Style::posix).str(), ""); 273 ASSERT_EQ(path::root_name("c:/hello", path::Style::windows).str(), "c:"); 274 ASSERT_EQ(path::root_name("/hello", path::Style::posix).str(), ""); 275 276 ASSERT_EQ(path::root_directory("/goo/hello", path::Style::posix).str(), "/"); 277 ASSERT_EQ(path::root_directory("c:/hello", path::Style::windows).str(), "/"); 278 ASSERT_EQ(path::root_directory("d/file.txt", path::Style::posix).str(), ""); 279 ASSERT_EQ(path::root_directory("d/file.txt", path::Style::windows).str(), ""); 280 281 SmallVector<StringRef, 40> paths; 282 paths.push_back(""); 283 paths.push_back("."); 284 paths.push_back(".."); 285 paths.push_back("foo"); 286 paths.push_back("/"); 287 paths.push_back("/foo"); 288 paths.push_back("foo/"); 289 paths.push_back("/foo/"); 290 paths.push_back("foo/bar"); 291 paths.push_back("/foo/bar"); 292 paths.push_back("//net"); 293 paths.push_back("//net/"); 294 paths.push_back("//net/foo"); 295 paths.push_back("///foo///"); 296 paths.push_back("///foo///bar"); 297 paths.push_back("/."); 298 paths.push_back("./"); 299 paths.push_back("/.."); 300 paths.push_back("../"); 301 paths.push_back("foo/."); 302 paths.push_back("foo/.."); 303 paths.push_back("foo/./"); 304 paths.push_back("foo/./bar"); 305 paths.push_back("foo/.."); 306 paths.push_back("foo/../"); 307 paths.push_back("foo/../bar"); 308 paths.push_back("c:"); 309 paths.push_back("c:/"); 310 paths.push_back("c:foo"); 311 paths.push_back("c:/foo"); 312 paths.push_back("c:foo/"); 313 paths.push_back("c:/foo/"); 314 paths.push_back("c:/foo/bar"); 315 paths.push_back("prn:"); 316 paths.push_back("c:\\"); 317 paths.push_back("c:foo"); 318 paths.push_back("c:\\foo"); 319 paths.push_back("c:foo\\"); 320 paths.push_back("c:\\foo\\"); 321 paths.push_back("c:\\foo/"); 322 paths.push_back("c:/foo\\bar"); 323 324 for (StringRef p : paths) { 325 ASSERT_EQ( 326 path::root_name(p, path::Style::posix).str() + path::root_directory(p, path::Style::posix).str(), 327 path::root_path(p, path::Style::posix).str()); 328 329 ASSERT_EQ( 330 path::root_name(p, path::Style::windows).str() + path::root_directory(p, path::Style::windows).str(), 331 path::root_path(p, path::Style::windows).str()); 332 } 333 } 334 335 TEST(Support, FilenameParent) { 336 EXPECT_EQ("/", path::filename("/")); 337 EXPECT_EQ("", path::parent_path("/")); 338 339 EXPECT_EQ("\\", path::filename("c:\\", path::Style::windows)); 340 EXPECT_EQ("c:", path::parent_path("c:\\", path::Style::windows)); 341 342 EXPECT_EQ("/", path::filename("///")); 343 EXPECT_EQ("", path::parent_path("///")); 344 345 EXPECT_EQ("\\", path::filename("c:\\\\", path::Style::windows)); 346 EXPECT_EQ("c:", path::parent_path("c:\\\\", path::Style::windows)); 347 348 EXPECT_EQ("bar", path::filename("/foo/bar")); 349 EXPECT_EQ("/foo", path::parent_path("/foo/bar")); 350 351 EXPECT_EQ("foo", path::filename("/foo")); 352 EXPECT_EQ("/", path::parent_path("/foo")); 353 354 EXPECT_EQ("foo", path::filename("foo")); 355 EXPECT_EQ("", path::parent_path("foo")); 356 357 EXPECT_EQ(".", path::filename("foo/")); 358 EXPECT_EQ("foo", path::parent_path("foo/")); 359 360 EXPECT_EQ("//net", path::filename("//net")); 361 EXPECT_EQ("", path::parent_path("//net")); 362 363 EXPECT_EQ("/", path::filename("//net/")); 364 EXPECT_EQ("//net", path::parent_path("//net/")); 365 366 EXPECT_EQ("foo", path::filename("//net/foo")); 367 EXPECT_EQ("//net/", path::parent_path("//net/foo")); 368 369 // These checks are just to make sure we do something reasonable with the 370 // paths below. They are not meant to prescribe the one true interpretation of 371 // these paths. Other decompositions (e.g. "//" -> "" + "//") are also 372 // possible. 373 EXPECT_EQ("/", path::filename("//")); 374 EXPECT_EQ("", path::parent_path("//")); 375 376 EXPECT_EQ("\\", path::filename("\\\\", path::Style::windows)); 377 EXPECT_EQ("", path::parent_path("\\\\", path::Style::windows)); 378 379 EXPECT_EQ("\\", path::filename("\\\\\\", path::Style::windows)); 380 EXPECT_EQ("", path::parent_path("\\\\\\", path::Style::windows)); 381 } 382 383 static std::vector<StringRef> 384 GetComponents(StringRef Path, path::Style S = path::Style::native) { 385 return {path::begin(Path, S), path::end(Path)}; 386 } 387 388 TEST(Support, PathIterator) { 389 EXPECT_THAT(GetComponents("/foo"), testing::ElementsAre("/", "foo")); 390 EXPECT_THAT(GetComponents("/"), testing::ElementsAre("/")); 391 EXPECT_THAT(GetComponents("//"), testing::ElementsAre("/")); 392 EXPECT_THAT(GetComponents("///"), testing::ElementsAre("/")); 393 EXPECT_THAT(GetComponents("c/d/e/foo.txt"), 394 testing::ElementsAre("c", "d", "e", "foo.txt")); 395 EXPECT_THAT(GetComponents(".c/.d/../."), 396 testing::ElementsAre(".c", ".d", "..", ".")); 397 EXPECT_THAT(GetComponents("/c/d/e/foo.txt"), 398 testing::ElementsAre("/", "c", "d", "e", "foo.txt")); 399 EXPECT_THAT(GetComponents("/.c/.d/../."), 400 testing::ElementsAre("/", ".c", ".d", "..", ".")); 401 EXPECT_THAT(GetComponents("c:\\c\\e\\foo.txt", path::Style::windows), 402 testing::ElementsAre("c:", "\\", "c", "e", "foo.txt")); 403 EXPECT_THAT(GetComponents("c:\\c\\e\\foo.txt", path::Style::windows_slash), 404 testing::ElementsAre("c:", "\\", "c", "e", "foo.txt")); 405 EXPECT_THAT(GetComponents("//net/"), testing::ElementsAre("//net", "/")); 406 EXPECT_THAT(GetComponents("//net/c/foo.txt"), 407 testing::ElementsAre("//net", "/", "c", "foo.txt")); 408 } 409 410 TEST(Support, AbsolutePathIteratorEnd) { 411 // Trailing slashes are converted to '.' unless they are part of the root path. 412 SmallVector<std::pair<StringRef, path::Style>, 4> Paths; 413 Paths.emplace_back("/foo/", path::Style::native); 414 Paths.emplace_back("/foo//", path::Style::native); 415 Paths.emplace_back("//net/foo/", path::Style::native); 416 Paths.emplace_back("c:\\foo\\", path::Style::windows); 417 418 for (auto &Path : Paths) { 419 SCOPED_TRACE(Path.first); 420 StringRef LastComponent = *path::rbegin(Path.first, Path.second); 421 EXPECT_EQ(".", LastComponent); 422 } 423 424 SmallVector<std::pair<StringRef, path::Style>, 3> RootPaths; 425 RootPaths.emplace_back("/", path::Style::native); 426 RootPaths.emplace_back("//net/", path::Style::native); 427 RootPaths.emplace_back("c:\\", path::Style::windows); 428 RootPaths.emplace_back("//net//", path::Style::native); 429 RootPaths.emplace_back("c:\\\\", path::Style::windows); 430 431 for (auto &Path : RootPaths) { 432 SCOPED_TRACE(Path.first); 433 StringRef LastComponent = *path::rbegin(Path.first, Path.second); 434 EXPECT_EQ(1u, LastComponent.size()); 435 EXPECT_TRUE(path::is_separator(LastComponent[0], Path.second)); 436 } 437 } 438 439 #ifdef _WIN32 440 std::string getEnvWin(const wchar_t *Var) { 441 std::string expected; 442 if (wchar_t const *path = ::_wgetenv(Var)) { 443 auto pathLen = ::wcslen(path); 444 ArrayRef<char> ref{reinterpret_cast<char const *>(path), 445 pathLen * sizeof(wchar_t)}; 446 convertUTF16ToUTF8String(ref, expected); 447 SmallString<32> Buf(expected); 448 path::make_preferred(Buf); 449 expected.assign(Buf.begin(), Buf.end()); 450 } 451 return expected; 452 } 453 #else 454 // RAII helper to set and restore an environment variable. 455 class WithEnv { 456 const char *Var; 457 llvm::Optional<std::string> OriginalValue; 458 459 public: 460 WithEnv(const char *Var, const char *Value) : Var(Var) { 461 if (const char *V = ::getenv(Var)) 462 OriginalValue.emplace(V); 463 if (Value) 464 ::setenv(Var, Value, 1); 465 else 466 ::unsetenv(Var); 467 } 468 ~WithEnv() { 469 if (OriginalValue) 470 ::setenv(Var, OriginalValue->c_str(), 1); 471 else 472 ::unsetenv(Var); 473 } 474 }; 475 #endif 476 477 TEST(Support, HomeDirectory) { 478 std::string expected; 479 #ifdef _WIN32 480 expected = getEnvWin(L"USERPROFILE"); 481 #else 482 if (char const *path = ::getenv("HOME")) 483 expected = path; 484 #endif 485 // Do not try to test it if we don't know what to expect. 486 // On Windows we use something better than env vars. 487 if (expected.empty()) 488 GTEST_SKIP(); 489 SmallString<128> HomeDir; 490 auto status = path::home_directory(HomeDir); 491 EXPECT_TRUE(status); 492 EXPECT_EQ(expected, HomeDir); 493 } 494 495 // Apple has their own solution for this. 496 #if defined(LLVM_ON_UNIX) && !defined(__APPLE__) 497 TEST(Support, HomeDirectoryWithNoEnv) { 498 WithEnv Env("HOME", nullptr); 499 500 // Don't run the test if we have nothing to compare against. 501 struct passwd *pw = getpwuid(getuid()); 502 if (!pw || !pw->pw_dir) return; 503 std::string PwDir = pw->pw_dir; 504 505 SmallString<128> HomeDir; 506 EXPECT_TRUE(path::home_directory(HomeDir)); 507 EXPECT_EQ(PwDir, HomeDir); 508 } 509 510 TEST(Support, ConfigDirectoryWithEnv) { 511 WithEnv Env("XDG_CONFIG_HOME", "/xdg/config"); 512 513 SmallString<128> ConfigDir; 514 EXPECT_TRUE(path::user_config_directory(ConfigDir)); 515 EXPECT_EQ("/xdg/config", ConfigDir); 516 } 517 518 TEST(Support, ConfigDirectoryNoEnv) { 519 WithEnv Env("XDG_CONFIG_HOME", nullptr); 520 521 SmallString<128> Fallback; 522 ASSERT_TRUE(path::home_directory(Fallback)); 523 path::append(Fallback, ".config"); 524 525 SmallString<128> CacheDir; 526 EXPECT_TRUE(path::user_config_directory(CacheDir)); 527 EXPECT_EQ(Fallback, CacheDir); 528 } 529 530 TEST(Support, CacheDirectoryWithEnv) { 531 WithEnv Env("XDG_CACHE_HOME", "/xdg/cache"); 532 533 SmallString<128> CacheDir; 534 EXPECT_TRUE(path::cache_directory(CacheDir)); 535 EXPECT_EQ("/xdg/cache", CacheDir); 536 } 537 538 TEST(Support, CacheDirectoryNoEnv) { 539 WithEnv Env("XDG_CACHE_HOME", nullptr); 540 541 SmallString<128> Fallback; 542 ASSERT_TRUE(path::home_directory(Fallback)); 543 path::append(Fallback, ".cache"); 544 545 SmallString<128> CacheDir; 546 EXPECT_TRUE(path::cache_directory(CacheDir)); 547 EXPECT_EQ(Fallback, CacheDir); 548 } 549 #endif 550 551 #ifdef __APPLE__ 552 TEST(Support, ConfigDirectory) { 553 SmallString<128> Fallback; 554 ASSERT_TRUE(path::home_directory(Fallback)); 555 path::append(Fallback, "Library/Preferences"); 556 557 SmallString<128> ConfigDir; 558 EXPECT_TRUE(path::user_config_directory(ConfigDir)); 559 EXPECT_EQ(Fallback, ConfigDir); 560 } 561 #endif 562 563 #ifdef _WIN32 564 TEST(Support, ConfigDirectory) { 565 std::string Expected = getEnvWin(L"LOCALAPPDATA"); 566 // Do not try to test it if we don't know what to expect. 567 if (Expected.empty()) 568 GTEST_SKIP(); 569 SmallString<128> CacheDir; 570 EXPECT_TRUE(path::user_config_directory(CacheDir)); 571 EXPECT_EQ(Expected, CacheDir); 572 } 573 574 TEST(Support, CacheDirectory) { 575 std::string Expected = getEnvWin(L"LOCALAPPDATA"); 576 // Do not try to test it if we don't know what to expect. 577 if (Expected.empty()) 578 GTEST_SKIP(); 579 SmallString<128> CacheDir; 580 EXPECT_TRUE(path::cache_directory(CacheDir)); 581 EXPECT_EQ(Expected, CacheDir); 582 } 583 #endif 584 585 TEST(Support, TempDirectory) { 586 SmallString<32> TempDir; 587 path::system_temp_directory(false, TempDir); 588 EXPECT_TRUE(!TempDir.empty()); 589 TempDir.clear(); 590 path::system_temp_directory(true, TempDir); 591 EXPECT_TRUE(!TempDir.empty()); 592 } 593 594 #ifdef _WIN32 595 static std::string path2regex(std::string Path) { 596 size_t Pos = 0; 597 bool Forward = path::get_separator()[0] == '/'; 598 while ((Pos = Path.find('\\', Pos)) != std::string::npos) { 599 if (Forward) { 600 Path.replace(Pos, 1, "/"); 601 Pos += 1; 602 } else { 603 Path.replace(Pos, 1, "\\\\"); 604 Pos += 2; 605 } 606 } 607 return Path; 608 } 609 610 /// Helper for running temp dir test in separated process. See below. 611 #define EXPECT_TEMP_DIR(prepare, expected) \ 612 EXPECT_EXIT( \ 613 { \ 614 prepare; \ 615 SmallString<300> TempDir; \ 616 path::system_temp_directory(true, TempDir); \ 617 raw_os_ostream(std::cerr) << TempDir; \ 618 std::exit(0); \ 619 }, \ 620 ::testing::ExitedWithCode(0), path2regex(expected)) 621 622 TEST(SupportDeathTest, TempDirectoryOnWindows) { 623 // In this test we want to check how system_temp_directory responds to 624 // different values of specific env vars. To prevent corrupting env vars of 625 // the current process all checks are done in separated processes. 626 EXPECT_TEMP_DIR(_wputenv_s(L"TMP", L"C:\\OtherFolder"), "C:\\OtherFolder"); 627 EXPECT_TEMP_DIR(_wputenv_s(L"TMP", L"C:/Unix/Path/Seperators"), 628 "C:\\Unix\\Path\\Seperators"); 629 EXPECT_TEMP_DIR(_wputenv_s(L"TMP", L"Local Path"), ".+\\Local Path$"); 630 EXPECT_TEMP_DIR(_wputenv_s(L"TMP", L"F:\\TrailingSep\\"), "F:\\TrailingSep"); 631 EXPECT_TEMP_DIR( 632 _wputenv_s(L"TMP", L"C:\\2\x03C0r-\x00B5\x00B3\\\x2135\x2080"), 633 "C:\\2\xCF\x80r-\xC2\xB5\xC2\xB3\\\xE2\x84\xB5\xE2\x82\x80"); 634 635 // Test $TMP empty, $TEMP set. 636 EXPECT_TEMP_DIR( 637 { 638 _wputenv_s(L"TMP", L""); 639 _wputenv_s(L"TEMP", L"C:\\Valid\\Path"); 640 }, 641 "C:\\Valid\\Path"); 642 643 // All related env vars empty 644 EXPECT_TEMP_DIR( 645 { 646 _wputenv_s(L"TMP", L""); 647 _wputenv_s(L"TEMP", L""); 648 _wputenv_s(L"USERPROFILE", L""); 649 }, 650 "C:\\Temp"); 651 652 // Test evn var / path with 260 chars. 653 SmallString<270> Expected{"C:\\Temp\\AB\\123456789"}; 654 while (Expected.size() < 260) 655 Expected.append("\\DirNameWith19Charss"); 656 ASSERT_EQ(260U, Expected.size()); 657 EXPECT_TEMP_DIR(_putenv_s("TMP", Expected.c_str()), Expected.c_str()); 658 } 659 #endif 660 661 class FileSystemTest : public testing::Test { 662 protected: 663 /// Unique temporary directory in which all created filesystem entities must 664 /// be placed. It is removed at the end of each test (must be empty). 665 SmallString<128> TestDirectory; 666 SmallString<128> NonExistantFile; 667 668 void SetUp() override { 669 ASSERT_NO_ERROR( 670 fs::createUniqueDirectory("file-system-test", TestDirectory)); 671 // We don't care about this specific file. 672 errs() << "Test Directory: " << TestDirectory << '\n'; 673 errs().flush(); 674 NonExistantFile = TestDirectory; 675 676 // Even though this value is hardcoded, is a 128-bit GUID, so we should be 677 // guaranteed that this file will never exist. 678 sys::path::append(NonExistantFile, "1B28B495C16344CB9822E588CD4C3EF0"); 679 } 680 681 void TearDown() override { ASSERT_NO_ERROR(fs::remove(TestDirectory.str())); } 682 }; 683 684 TEST_F(FileSystemTest, Unique) { 685 // Create a temp file. 686 int FileDescriptor; 687 SmallString<64> TempPath; 688 ASSERT_NO_ERROR( 689 fs::createTemporaryFile("prefix", "temp", FileDescriptor, TempPath)); 690 691 // The same file should return an identical unique id. 692 fs::UniqueID F1, F2; 693 ASSERT_NO_ERROR(fs::getUniqueID(Twine(TempPath), F1)); 694 ASSERT_NO_ERROR(fs::getUniqueID(Twine(TempPath), F2)); 695 ASSERT_EQ(F1, F2); 696 697 // Different files should return different unique ids. 698 int FileDescriptor2; 699 SmallString<64> TempPath2; 700 ASSERT_NO_ERROR( 701 fs::createTemporaryFile("prefix", "temp", FileDescriptor2, TempPath2)); 702 703 fs::UniqueID D; 704 ASSERT_NO_ERROR(fs::getUniqueID(Twine(TempPath2), D)); 705 ASSERT_NE(D, F1); 706 ::close(FileDescriptor2); 707 708 ASSERT_NO_ERROR(fs::remove(Twine(TempPath2))); 709 710 // Two paths representing the same file on disk should still provide the 711 // same unique id. We can test this by making a hard link. 712 ASSERT_NO_ERROR(fs::create_link(Twine(TempPath), Twine(TempPath2))); 713 fs::UniqueID D2; 714 ASSERT_NO_ERROR(fs::getUniqueID(Twine(TempPath2), D2)); 715 ASSERT_EQ(D2, F1); 716 717 ::close(FileDescriptor); 718 719 SmallString<128> Dir1; 720 ASSERT_NO_ERROR( 721 fs::createUniqueDirectory("dir1", Dir1)); 722 ASSERT_NO_ERROR(fs::getUniqueID(Dir1.c_str(), F1)); 723 ASSERT_NO_ERROR(fs::getUniqueID(Dir1.c_str(), F2)); 724 ASSERT_EQ(F1, F2); 725 726 SmallString<128> Dir2; 727 ASSERT_NO_ERROR( 728 fs::createUniqueDirectory("dir2", Dir2)); 729 ASSERT_NO_ERROR(fs::getUniqueID(Dir2.c_str(), F2)); 730 ASSERT_NE(F1, F2); 731 ASSERT_NO_ERROR(fs::remove(Dir1)); 732 ASSERT_NO_ERROR(fs::remove(Dir2)); 733 ASSERT_NO_ERROR(fs::remove(TempPath2)); 734 ASSERT_NO_ERROR(fs::remove(TempPath)); 735 } 736 737 TEST_F(FileSystemTest, RealPath) { 738 ASSERT_NO_ERROR( 739 fs::create_directories(Twine(TestDirectory) + "/test1/test2/test3")); 740 ASSERT_TRUE(fs::exists(Twine(TestDirectory) + "/test1/test2/test3")); 741 742 SmallString<64> RealBase; 743 SmallString<64> Expected; 744 SmallString<64> Actual; 745 746 // TestDirectory itself might be under a symlink or have been specified with 747 // a different case than the existing temp directory. In such cases real_path 748 // on the concatenated path will differ in the TestDirectory portion from 749 // how we specified it. Make sure to compare against the real_path of the 750 // TestDirectory, and not just the value of TestDirectory. 751 ASSERT_NO_ERROR(fs::real_path(TestDirectory, RealBase)); 752 checkSeparators(RealBase); 753 path::native(Twine(RealBase) + "/test1/test2", Expected); 754 755 ASSERT_NO_ERROR(fs::real_path( 756 Twine(TestDirectory) + "/././test1/../test1/test2/./test3/..", Actual)); 757 checkSeparators(Actual); 758 759 EXPECT_EQ(Expected, Actual); 760 761 SmallString<64> HomeDir; 762 763 // This can fail if $HOME is not set and getpwuid fails. 764 bool Result = llvm::sys::path::home_directory(HomeDir); 765 if (Result) { 766 checkSeparators(HomeDir); 767 ASSERT_NO_ERROR(fs::real_path(HomeDir, Expected)); 768 checkSeparators(Expected); 769 ASSERT_NO_ERROR(fs::real_path("~", Actual, true)); 770 EXPECT_EQ(Expected, Actual); 771 ASSERT_NO_ERROR(fs::real_path("~/", Actual, true)); 772 EXPECT_EQ(Expected, Actual); 773 } 774 775 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + "/test1")); 776 } 777 778 TEST_F(FileSystemTest, ExpandTilde) { 779 SmallString<64> Expected; 780 SmallString<64> Actual; 781 SmallString<64> HomeDir; 782 783 // This can fail if $HOME is not set and getpwuid fails. 784 bool Result = llvm::sys::path::home_directory(HomeDir); 785 if (Result) { 786 fs::expand_tilde(HomeDir, Expected); 787 788 fs::expand_tilde("~", Actual); 789 EXPECT_EQ(Expected, Actual); 790 791 #ifdef _WIN32 792 Expected += "\\foo"; 793 fs::expand_tilde("~\\foo", Actual); 794 #else 795 Expected += "/foo"; 796 fs::expand_tilde("~/foo", Actual); 797 #endif 798 799 EXPECT_EQ(Expected, Actual); 800 } 801 } 802 803 #ifdef LLVM_ON_UNIX 804 TEST_F(FileSystemTest, RealPathNoReadPerm) { 805 SmallString<64> Expanded; 806 807 ASSERT_NO_ERROR( 808 fs::create_directories(Twine(TestDirectory) + "/noreadperm")); 809 ASSERT_TRUE(fs::exists(Twine(TestDirectory) + "/noreadperm")); 810 811 fs::setPermissions(Twine(TestDirectory) + "/noreadperm", fs::no_perms); 812 fs::setPermissions(Twine(TestDirectory) + "/noreadperm", fs::all_exe); 813 814 ASSERT_NO_ERROR(fs::real_path(Twine(TestDirectory) + "/noreadperm", Expanded, 815 false)); 816 817 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + "/noreadperm")); 818 } 819 TEST_F(FileSystemTest, RemoveDirectoriesNoExePerm) { 820 SmallString<64> Expanded; 821 822 ASSERT_NO_ERROR( 823 fs::create_directories(Twine(TestDirectory) + "/noexeperm/foo")); 824 ASSERT_TRUE(fs::exists(Twine(TestDirectory) + "/noexeperm/foo")); 825 826 fs::setPermissions(Twine(TestDirectory) + "/noexeperm", 827 fs::all_read | fs::all_write); 828 829 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + "/noexeperm", 830 /*IgnoreErrors=*/true)); 831 832 // It's expected that the directory exists, but some environments appear to 833 // allow the removal despite missing the 'x' permission, so be flexible. 834 if (fs::exists(Twine(TestDirectory) + "/noexeperm")) { 835 fs::setPermissions(Twine(TestDirectory) + "/noexeperm", fs::all_perms); 836 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + "/noexeperm", 837 /*IgnoreErrors=*/false)); 838 } 839 } 840 #endif 841 842 843 TEST_F(FileSystemTest, TempFileKeepDiscard) { 844 // We can keep then discard. 845 auto TempFileOrError = fs::TempFile::create(TestDirectory + "/test-%%%%"); 846 ASSERT_TRUE((bool)TempFileOrError); 847 fs::TempFile File = std::move(*TempFileOrError); 848 ASSERT_EQ(-1, TempFileOrError->FD); 849 ASSERT_FALSE((bool)File.keep(TestDirectory + "/keep")); 850 ASSERT_FALSE((bool)File.discard()); 851 ASSERT_TRUE(fs::exists(TestDirectory + "/keep")); 852 ASSERT_NO_ERROR(fs::remove(TestDirectory + "/keep")); 853 } 854 855 TEST_F(FileSystemTest, TempFileDiscardDiscard) { 856 // We can discard twice. 857 auto TempFileOrError = fs::TempFile::create(TestDirectory + "/test-%%%%"); 858 ASSERT_TRUE((bool)TempFileOrError); 859 fs::TempFile File = std::move(*TempFileOrError); 860 ASSERT_EQ(-1, TempFileOrError->FD); 861 ASSERT_FALSE((bool)File.discard()); 862 ASSERT_FALSE((bool)File.discard()); 863 ASSERT_FALSE(fs::exists(TestDirectory + "/keep")); 864 } 865 866 TEST_F(FileSystemTest, TempFiles) { 867 // Create a temp file. 868 int FileDescriptor; 869 SmallString<64> TempPath; 870 ASSERT_NO_ERROR( 871 fs::createTemporaryFile("prefix", "temp", FileDescriptor, TempPath)); 872 873 // Make sure it exists. 874 ASSERT_TRUE(sys::fs::exists(Twine(TempPath))); 875 876 // Create another temp tile. 877 int FD2; 878 SmallString<64> TempPath2; 879 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD2, TempPath2)); 880 ASSERT_TRUE(TempPath2.endswith(".temp")); 881 ASSERT_NE(TempPath.str(), TempPath2.str()); 882 883 fs::file_status A, B; 884 ASSERT_NO_ERROR(fs::status(Twine(TempPath), A)); 885 ASSERT_NO_ERROR(fs::status(Twine(TempPath2), B)); 886 EXPECT_FALSE(fs::equivalent(A, B)); 887 888 ::close(FD2); 889 890 // Remove Temp2. 891 ASSERT_NO_ERROR(fs::remove(Twine(TempPath2))); 892 ASSERT_NO_ERROR(fs::remove(Twine(TempPath2))); 893 ASSERT_EQ(fs::remove(Twine(TempPath2), false), 894 errc::no_such_file_or_directory); 895 896 std::error_code EC = fs::status(TempPath2.c_str(), B); 897 EXPECT_EQ(EC, errc::no_such_file_or_directory); 898 EXPECT_EQ(B.type(), fs::file_type::file_not_found); 899 900 // Make sure Temp2 doesn't exist. 901 ASSERT_EQ(fs::access(Twine(TempPath2), sys::fs::AccessMode::Exist), 902 errc::no_such_file_or_directory); 903 904 SmallString<64> TempPath3; 905 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "", TempPath3)); 906 ASSERT_FALSE(TempPath3.endswith(".")); 907 FileRemover Cleanup3(TempPath3); 908 909 // Create a hard link to Temp1. 910 ASSERT_NO_ERROR(fs::create_link(Twine(TempPath), Twine(TempPath2))); 911 bool equal; 912 ASSERT_NO_ERROR(fs::equivalent(Twine(TempPath), Twine(TempPath2), equal)); 913 EXPECT_TRUE(equal); 914 ASSERT_NO_ERROR(fs::status(Twine(TempPath), A)); 915 ASSERT_NO_ERROR(fs::status(Twine(TempPath2), B)); 916 EXPECT_TRUE(fs::equivalent(A, B)); 917 918 // Remove Temp1. 919 ::close(FileDescriptor); 920 ASSERT_NO_ERROR(fs::remove(Twine(TempPath))); 921 922 // Remove the hard link. 923 ASSERT_NO_ERROR(fs::remove(Twine(TempPath2))); 924 925 // Make sure Temp1 doesn't exist. 926 ASSERT_EQ(fs::access(Twine(TempPath), sys::fs::AccessMode::Exist), 927 errc::no_such_file_or_directory); 928 929 #ifdef _WIN32 930 // Path name > 260 chars should get an error. 931 const char *Path270 = 932 "abcdefghijklmnopqrstuvwxyz9abcdefghijklmnopqrstuvwxyz8" 933 "abcdefghijklmnopqrstuvwxyz7abcdefghijklmnopqrstuvwxyz6" 934 "abcdefghijklmnopqrstuvwxyz5abcdefghijklmnopqrstuvwxyz4" 935 "abcdefghijklmnopqrstuvwxyz3abcdefghijklmnopqrstuvwxyz2" 936 "abcdefghijklmnopqrstuvwxyz1abcdefghijklmnopqrstuvwxyz0"; 937 EXPECT_EQ(fs::createUniqueFile(Path270, FileDescriptor, TempPath), 938 errc::invalid_argument); 939 // Relative path < 247 chars, no problem. 940 const char *Path216 = 941 "abcdefghijklmnopqrstuvwxyz7abcdefghijklmnopqrstuvwxyz6" 942 "abcdefghijklmnopqrstuvwxyz5abcdefghijklmnopqrstuvwxyz4" 943 "abcdefghijklmnopqrstuvwxyz3abcdefghijklmnopqrstuvwxyz2" 944 "abcdefghijklmnopqrstuvwxyz1abcdefghijklmnopqrstuvwxyz0"; 945 ASSERT_NO_ERROR(fs::createTemporaryFile(Path216, "", TempPath)); 946 ASSERT_NO_ERROR(fs::remove(Twine(TempPath))); 947 #endif 948 } 949 950 TEST_F(FileSystemTest, TempFileCollisions) { 951 SmallString<128> TestDirectory; 952 ASSERT_NO_ERROR( 953 fs::createUniqueDirectory("CreateUniqueFileTest", TestDirectory)); 954 FileRemover Cleanup(TestDirectory); 955 SmallString<128> Model = TestDirectory; 956 path::append(Model, "%.tmp"); 957 SmallString<128> Path; 958 std::vector<fs::TempFile> TempFiles; 959 960 auto TryCreateTempFile = [&]() { 961 Expected<fs::TempFile> T = fs::TempFile::create(Model); 962 if (T) { 963 TempFiles.push_back(std::move(*T)); 964 return true; 965 } else { 966 logAllUnhandledErrors(T.takeError(), errs(), 967 "Failed to create temporary file: "); 968 return false; 969 } 970 }; 971 972 // Our single-character template allows for 16 unique names. Check that 973 // calling TryCreateTempFile repeatedly results in 16 successes. 974 // Because the test depends on random numbers, it could theoretically fail. 975 // However, the probability of this happening is tiny: with 32 calls, each 976 // of which will retry up to 128 times, to not get a given digit we would 977 // have to fail at least 15 + 17 * 128 = 2191 attempts. The probability of 978 // 2191 attempts not producing a given hexadecimal digit is 979 // (1 - 1/16) ** 2191 or 3.88e-62. 980 int Successes = 0; 981 for (int i = 0; i < 32; ++i) 982 if (TryCreateTempFile()) ++Successes; 983 EXPECT_EQ(Successes, 16); 984 985 for (fs::TempFile &T : TempFiles) 986 cantFail(T.discard()); 987 } 988 989 TEST_F(FileSystemTest, CreateDir) { 990 ASSERT_NO_ERROR(fs::create_directory(Twine(TestDirectory) + "foo")); 991 ASSERT_NO_ERROR(fs::create_directory(Twine(TestDirectory) + "foo")); 992 ASSERT_EQ(fs::create_directory(Twine(TestDirectory) + "foo", false), 993 errc::file_exists); 994 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "foo")); 995 996 #ifdef LLVM_ON_UNIX 997 // Set a 0000 umask so that we can test our directory permissions. 998 mode_t OldUmask = ::umask(0000); 999 1000 fs::file_status Status; 1001 ASSERT_NO_ERROR( 1002 fs::create_directory(Twine(TestDirectory) + "baz500", false, 1003 fs::perms::owner_read | fs::perms::owner_exe)); 1004 ASSERT_NO_ERROR(fs::status(Twine(TestDirectory) + "baz500", Status)); 1005 ASSERT_EQ(Status.permissions() & fs::perms::all_all, 1006 fs::perms::owner_read | fs::perms::owner_exe); 1007 ASSERT_NO_ERROR(fs::create_directory(Twine(TestDirectory) + "baz777", false, 1008 fs::perms::all_all)); 1009 ASSERT_NO_ERROR(fs::status(Twine(TestDirectory) + "baz777", Status)); 1010 ASSERT_EQ(Status.permissions() & fs::perms::all_all, fs::perms::all_all); 1011 1012 // Restore umask to be safe. 1013 ::umask(OldUmask); 1014 #endif 1015 1016 #ifdef _WIN32 1017 // Prove that create_directories() can handle a pathname > 248 characters, 1018 // which is the documented limit for CreateDirectory(). 1019 // (248 is MAX_PATH subtracting room for an 8.3 filename.) 1020 // Generate a directory path guaranteed to fall into that range. 1021 size_t TmpLen = TestDirectory.size(); 1022 const char *OneDir = "\\123456789"; 1023 size_t OneDirLen = strlen(OneDir); 1024 ASSERT_LT(OneDirLen, 12U); 1025 size_t NLevels = ((248 - TmpLen) / OneDirLen) + 1; 1026 SmallString<260> LongDir(TestDirectory); 1027 for (size_t I = 0; I < NLevels; ++I) 1028 LongDir.append(OneDir); 1029 ASSERT_NO_ERROR(fs::create_directories(Twine(LongDir))); 1030 ASSERT_NO_ERROR(fs::create_directories(Twine(LongDir))); 1031 ASSERT_EQ(fs::create_directories(Twine(LongDir), false), 1032 errc::file_exists); 1033 // Tidy up, "recursively" removing the directories. 1034 StringRef ThisDir(LongDir); 1035 for (size_t J = 0; J < NLevels; ++J) { 1036 ASSERT_NO_ERROR(fs::remove(ThisDir)); 1037 ThisDir = path::parent_path(ThisDir); 1038 } 1039 1040 // Also verify that paths with Unix separators are handled correctly. 1041 std::string LongPathWithUnixSeparators(TestDirectory.str()); 1042 // Add at least one subdirectory to TestDirectory, and replace slashes with 1043 // backslashes 1044 do { 1045 LongPathWithUnixSeparators.append("/DirNameWith19Charss"); 1046 } while (LongPathWithUnixSeparators.size() < 260); 1047 std::replace(LongPathWithUnixSeparators.begin(), 1048 LongPathWithUnixSeparators.end(), 1049 '\\', '/'); 1050 ASSERT_NO_ERROR(fs::create_directories(Twine(LongPathWithUnixSeparators))); 1051 // cleanup 1052 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + 1053 "/DirNameWith19Charss")); 1054 1055 // Similarly for a relative pathname. Need to set the current directory to 1056 // TestDirectory so that the one we create ends up in the right place. 1057 char PreviousDir[260]; 1058 size_t PreviousDirLen = ::GetCurrentDirectoryA(260, PreviousDir); 1059 ASSERT_GT(PreviousDirLen, 0U); 1060 ASSERT_LT(PreviousDirLen, 260U); 1061 ASSERT_NE(::SetCurrentDirectoryA(TestDirectory.c_str()), 0); 1062 LongDir.clear(); 1063 // Generate a relative directory name with absolute length > 248. 1064 size_t LongDirLen = 249 - TestDirectory.size(); 1065 LongDir.assign(LongDirLen, 'a'); 1066 ASSERT_NO_ERROR(fs::create_directory(Twine(LongDir))); 1067 // While we're here, prove that .. and . handling works in these long paths. 1068 const char *DotDotDirs = "\\..\\.\\b"; 1069 LongDir.append(DotDotDirs); 1070 ASSERT_NO_ERROR(fs::create_directory("b")); 1071 ASSERT_EQ(fs::create_directory(Twine(LongDir), false), errc::file_exists); 1072 // And clean up. 1073 ASSERT_NO_ERROR(fs::remove("b")); 1074 ASSERT_NO_ERROR(fs::remove( 1075 Twine(LongDir.substr(0, LongDir.size() - strlen(DotDotDirs))))); 1076 ASSERT_NE(::SetCurrentDirectoryA(PreviousDir), 0); 1077 #endif 1078 } 1079 1080 TEST_F(FileSystemTest, DirectoryIteration) { 1081 std::error_code ec; 1082 for (fs::directory_iterator i(".", ec), e; i != e; i.increment(ec)) 1083 ASSERT_NO_ERROR(ec); 1084 1085 // Create a known hierarchy to recurse over. 1086 ASSERT_NO_ERROR( 1087 fs::create_directories(Twine(TestDirectory) + "/recursive/a0/aa1")); 1088 ASSERT_NO_ERROR( 1089 fs::create_directories(Twine(TestDirectory) + "/recursive/a0/ab1")); 1090 ASSERT_NO_ERROR(fs::create_directories(Twine(TestDirectory) + 1091 "/recursive/dontlookhere/da1")); 1092 ASSERT_NO_ERROR( 1093 fs::create_directories(Twine(TestDirectory) + "/recursive/z0/za1")); 1094 ASSERT_NO_ERROR( 1095 fs::create_directories(Twine(TestDirectory) + "/recursive/pop/p1")); 1096 typedef std::vector<std::string> v_t; 1097 v_t visited; 1098 for (fs::recursive_directory_iterator i(Twine(TestDirectory) 1099 + "/recursive", ec), e; i != e; i.increment(ec)){ 1100 ASSERT_NO_ERROR(ec); 1101 if (path::filename(i->path()) == "p1") { 1102 i.pop(); 1103 // FIXME: recursive_directory_iterator should be more robust. 1104 if (i == e) break; 1105 } 1106 if (path::filename(i->path()) == "dontlookhere") 1107 i.no_push(); 1108 visited.push_back(std::string(path::filename(i->path()))); 1109 } 1110 v_t::const_iterator a0 = find(visited, "a0"); 1111 v_t::const_iterator aa1 = find(visited, "aa1"); 1112 v_t::const_iterator ab1 = find(visited, "ab1"); 1113 v_t::const_iterator dontlookhere = find(visited, "dontlookhere"); 1114 v_t::const_iterator da1 = find(visited, "da1"); 1115 v_t::const_iterator z0 = find(visited, "z0"); 1116 v_t::const_iterator za1 = find(visited, "za1"); 1117 v_t::const_iterator pop = find(visited, "pop"); 1118 v_t::const_iterator p1 = find(visited, "p1"); 1119 1120 // Make sure that each path was visited correctly. 1121 ASSERT_NE(a0, visited.end()); 1122 ASSERT_NE(aa1, visited.end()); 1123 ASSERT_NE(ab1, visited.end()); 1124 ASSERT_NE(dontlookhere, visited.end()); 1125 ASSERT_EQ(da1, visited.end()); // Not visited. 1126 ASSERT_NE(z0, visited.end()); 1127 ASSERT_NE(za1, visited.end()); 1128 ASSERT_NE(pop, visited.end()); 1129 ASSERT_EQ(p1, visited.end()); // Not visited. 1130 1131 // Make sure that parents were visited before children. No other ordering 1132 // guarantees can be made across siblings. 1133 ASSERT_LT(a0, aa1); 1134 ASSERT_LT(a0, ab1); 1135 ASSERT_LT(z0, za1); 1136 1137 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/a0/aa1")); 1138 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/a0/ab1")); 1139 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/a0")); 1140 ASSERT_NO_ERROR( 1141 fs::remove(Twine(TestDirectory) + "/recursive/dontlookhere/da1")); 1142 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/dontlookhere")); 1143 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/pop/p1")); 1144 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/pop")); 1145 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/z0/za1")); 1146 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive/z0")); 1147 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/recursive")); 1148 1149 // Test recursive_directory_iterator level() 1150 ASSERT_NO_ERROR( 1151 fs::create_directories(Twine(TestDirectory) + "/reclevel/a/b/c")); 1152 fs::recursive_directory_iterator I(Twine(TestDirectory) + "/reclevel", ec), E; 1153 for (int l = 0; I != E; I.increment(ec), ++l) { 1154 ASSERT_NO_ERROR(ec); 1155 EXPECT_EQ(I.level(), l); 1156 } 1157 EXPECT_EQ(I, E); 1158 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/reclevel/a/b/c")); 1159 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/reclevel/a/b")); 1160 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/reclevel/a")); 1161 ASSERT_NO_ERROR(fs::remove(Twine(TestDirectory) + "/reclevel")); 1162 } 1163 1164 TEST_F(FileSystemTest, DirectoryNotExecutable) { 1165 ASSERT_EQ(fs::access(TestDirectory, sys::fs::AccessMode::Execute), 1166 errc::permission_denied); 1167 } 1168 1169 #ifdef LLVM_ON_UNIX 1170 TEST_F(FileSystemTest, BrokenSymlinkDirectoryIteration) { 1171 // Create a known hierarchy to recurse over. 1172 ASSERT_NO_ERROR(fs::create_directories(Twine(TestDirectory) + "/symlink")); 1173 ASSERT_NO_ERROR( 1174 fs::create_link("no_such_file", Twine(TestDirectory) + "/symlink/a")); 1175 ASSERT_NO_ERROR( 1176 fs::create_directories(Twine(TestDirectory) + "/symlink/b/bb")); 1177 ASSERT_NO_ERROR( 1178 fs::create_link("no_such_file", Twine(TestDirectory) + "/symlink/b/ba")); 1179 ASSERT_NO_ERROR( 1180 fs::create_link("no_such_file", Twine(TestDirectory) + "/symlink/b/bc")); 1181 ASSERT_NO_ERROR( 1182 fs::create_link("no_such_file", Twine(TestDirectory) + "/symlink/c")); 1183 ASSERT_NO_ERROR( 1184 fs::create_directories(Twine(TestDirectory) + "/symlink/d/dd/ddd")); 1185 ASSERT_NO_ERROR(fs::create_link(Twine(TestDirectory) + "/symlink/d/dd", 1186 Twine(TestDirectory) + "/symlink/d/da")); 1187 ASSERT_NO_ERROR( 1188 fs::create_link("no_such_file", Twine(TestDirectory) + "/symlink/e")); 1189 1190 typedef std::vector<std::string> v_t; 1191 v_t VisitedNonBrokenSymlinks; 1192 v_t VisitedBrokenSymlinks; 1193 std::error_code ec; 1194 using testing::UnorderedElementsAre; 1195 using testing::UnorderedElementsAreArray; 1196 1197 // Broken symbol links are expected to throw an error. 1198 for (fs::directory_iterator i(Twine(TestDirectory) + "/symlink", ec), e; 1199 i != e; i.increment(ec)) { 1200 ASSERT_NO_ERROR(ec); 1201 if (i->status().getError() == 1202 std::make_error_code(std::errc::no_such_file_or_directory)) { 1203 VisitedBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1204 continue; 1205 } 1206 VisitedNonBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1207 } 1208 EXPECT_THAT(VisitedNonBrokenSymlinks, UnorderedElementsAre("b", "d")); 1209 VisitedNonBrokenSymlinks.clear(); 1210 1211 EXPECT_THAT(VisitedBrokenSymlinks, UnorderedElementsAre("a", "c", "e")); 1212 VisitedBrokenSymlinks.clear(); 1213 1214 // Broken symbol links are expected to throw an error. 1215 for (fs::recursive_directory_iterator i( 1216 Twine(TestDirectory) + "/symlink", ec), e; i != e; i.increment(ec)) { 1217 ASSERT_NO_ERROR(ec); 1218 if (i->status().getError() == 1219 std::make_error_code(std::errc::no_such_file_or_directory)) { 1220 VisitedBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1221 continue; 1222 } 1223 VisitedNonBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1224 } 1225 EXPECT_THAT(VisitedNonBrokenSymlinks, 1226 UnorderedElementsAre("b", "bb", "d", "da", "dd", "ddd", "ddd")); 1227 VisitedNonBrokenSymlinks.clear(); 1228 1229 EXPECT_THAT(VisitedBrokenSymlinks, 1230 UnorderedElementsAre("a", "ba", "bc", "c", "e")); 1231 VisitedBrokenSymlinks.clear(); 1232 1233 for (fs::recursive_directory_iterator i( 1234 Twine(TestDirectory) + "/symlink", ec, /*follow_symlinks=*/false), e; 1235 i != e; i.increment(ec)) { 1236 ASSERT_NO_ERROR(ec); 1237 if (i->status().getError() == 1238 std::make_error_code(std::errc::no_such_file_or_directory)) { 1239 VisitedBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1240 continue; 1241 } 1242 VisitedNonBrokenSymlinks.push_back(std::string(path::filename(i->path()))); 1243 } 1244 EXPECT_THAT(VisitedNonBrokenSymlinks, 1245 UnorderedElementsAreArray({"a", "b", "ba", "bb", "bc", "c", "d", 1246 "da", "dd", "ddd", "e"})); 1247 VisitedNonBrokenSymlinks.clear(); 1248 1249 EXPECT_THAT(VisitedBrokenSymlinks, UnorderedElementsAre()); 1250 VisitedBrokenSymlinks.clear(); 1251 1252 ASSERT_NO_ERROR(fs::remove_directories(Twine(TestDirectory) + "/symlink")); 1253 } 1254 #endif 1255 1256 #ifdef _WIN32 1257 TEST_F(FileSystemTest, UTF8ToUTF16DirectoryIteration) { 1258 // The Windows filesystem support uses UTF-16 and converts paths from the 1259 // input UTF-8. The UTF-16 equivalent of the input path can be shorter in 1260 // length. 1261 1262 // This test relies on TestDirectory not being so long such that MAX_PATH 1263 // would be exceeded (see widenPath). If that were the case, the UTF-16 1264 // path is likely to be longer than the input. 1265 const char *Pi = "\xcf\x80"; // UTF-8 lower case pi. 1266 std::string RootDir = (TestDirectory + "/" + Pi).str(); 1267 1268 // Create test directories. 1269 ASSERT_NO_ERROR(fs::create_directories(Twine(RootDir) + "/a")); 1270 ASSERT_NO_ERROR(fs::create_directories(Twine(RootDir) + "/b")); 1271 1272 std::error_code EC; 1273 unsigned Count = 0; 1274 for (fs::directory_iterator I(Twine(RootDir), EC), E; I != E; 1275 I.increment(EC)) { 1276 ASSERT_NO_ERROR(EC); 1277 StringRef DirName = path::filename(I->path()); 1278 EXPECT_TRUE(DirName == "a" || DirName == "b"); 1279 ++Count; 1280 } 1281 EXPECT_EQ(Count, 2U); 1282 1283 ASSERT_NO_ERROR(fs::remove(Twine(RootDir) + "/a")); 1284 ASSERT_NO_ERROR(fs::remove(Twine(RootDir) + "/b")); 1285 ASSERT_NO_ERROR(fs::remove(Twine(RootDir))); 1286 } 1287 #endif 1288 1289 TEST_F(FileSystemTest, Remove) { 1290 SmallString<64> BaseDir; 1291 SmallString<64> Paths[4]; 1292 int fds[4]; 1293 ASSERT_NO_ERROR(fs::createUniqueDirectory("fs_remove", BaseDir)); 1294 1295 ASSERT_NO_ERROR(fs::create_directories(Twine(BaseDir) + "/foo/bar/baz")); 1296 ASSERT_NO_ERROR(fs::create_directories(Twine(BaseDir) + "/foo/bar/buzz")); 1297 ASSERT_NO_ERROR(fs::createUniqueFile( 1298 Twine(BaseDir) + "/foo/bar/baz/%%%%%%.tmp", fds[0], Paths[0])); 1299 ASSERT_NO_ERROR(fs::createUniqueFile( 1300 Twine(BaseDir) + "/foo/bar/baz/%%%%%%.tmp", fds[1], Paths[1])); 1301 ASSERT_NO_ERROR(fs::createUniqueFile( 1302 Twine(BaseDir) + "/foo/bar/buzz/%%%%%%.tmp", fds[2], Paths[2])); 1303 ASSERT_NO_ERROR(fs::createUniqueFile( 1304 Twine(BaseDir) + "/foo/bar/buzz/%%%%%%.tmp", fds[3], Paths[3])); 1305 1306 for (int fd : fds) 1307 ::close(fd); 1308 1309 EXPECT_TRUE(fs::exists(Twine(BaseDir) + "/foo/bar/baz")); 1310 EXPECT_TRUE(fs::exists(Twine(BaseDir) + "/foo/bar/buzz")); 1311 EXPECT_TRUE(fs::exists(Paths[0])); 1312 EXPECT_TRUE(fs::exists(Paths[1])); 1313 EXPECT_TRUE(fs::exists(Paths[2])); 1314 EXPECT_TRUE(fs::exists(Paths[3])); 1315 1316 ASSERT_NO_ERROR(fs::remove_directories("D:/footest")); 1317 1318 ASSERT_NO_ERROR(fs::remove_directories(BaseDir)); 1319 ASSERT_FALSE(fs::exists(BaseDir)); 1320 } 1321 1322 #ifdef _WIN32 1323 TEST_F(FileSystemTest, CarriageReturn) { 1324 SmallString<128> FilePathname(TestDirectory); 1325 std::error_code EC; 1326 path::append(FilePathname, "test"); 1327 1328 { 1329 raw_fd_ostream File(FilePathname, EC, sys::fs::OF_TextWithCRLF); 1330 ASSERT_NO_ERROR(EC); 1331 File << '\n'; 1332 } 1333 { 1334 auto Buf = MemoryBuffer::getFile(FilePathname.str()); 1335 EXPECT_TRUE((bool)Buf); 1336 EXPECT_EQ(Buf.get()->getBuffer(), "\r\n"); 1337 } 1338 1339 { 1340 raw_fd_ostream File(FilePathname, EC, sys::fs::OF_None); 1341 ASSERT_NO_ERROR(EC); 1342 File << '\n'; 1343 } 1344 { 1345 auto Buf = MemoryBuffer::getFile(FilePathname.str()); 1346 EXPECT_TRUE((bool)Buf); 1347 EXPECT_EQ(Buf.get()->getBuffer(), "\n"); 1348 } 1349 ASSERT_NO_ERROR(fs::remove(Twine(FilePathname))); 1350 } 1351 #endif 1352 1353 TEST_F(FileSystemTest, Resize) { 1354 int FD; 1355 SmallString<64> TempPath; 1356 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD, TempPath)); 1357 ASSERT_NO_ERROR(fs::resize_file(FD, 123)); 1358 fs::file_status Status; 1359 ASSERT_NO_ERROR(fs::status(FD, Status)); 1360 ASSERT_EQ(Status.getSize(), 123U); 1361 ::close(FD); 1362 ASSERT_NO_ERROR(fs::remove(TempPath)); 1363 } 1364 1365 TEST_F(FileSystemTest, ResizeBeforeMapping) { 1366 // Create a temp file. 1367 int FD; 1368 SmallString<64> TempPath; 1369 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD, TempPath)); 1370 ASSERT_NO_ERROR(fs::resize_file_before_mapping_readwrite(FD, 123)); 1371 1372 // Map in temp file. On Windows, fs::resize_file_before_mapping_readwrite is 1373 // a no-op and the mapping itself will resize the file. 1374 std::error_code EC; 1375 { 1376 fs::mapped_file_region mfr(fs::convertFDToNativeFile(FD), 1377 fs::mapped_file_region::readwrite, 123, 0, EC); 1378 ASSERT_NO_ERROR(EC); 1379 // Unmap temp file 1380 } 1381 1382 // Check the size. 1383 fs::file_status Status; 1384 ASSERT_NO_ERROR(fs::status(FD, Status)); 1385 ASSERT_EQ(Status.getSize(), 123U); 1386 ::close(FD); 1387 ASSERT_NO_ERROR(fs::remove(TempPath)); 1388 } 1389 1390 TEST_F(FileSystemTest, MD5) { 1391 int FD; 1392 SmallString<64> TempPath; 1393 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD, TempPath)); 1394 StringRef Data("abcdefghijklmnopqrstuvwxyz"); 1395 ASSERT_EQ(write(FD, Data.data(), Data.size()), static_cast<ssize_t>(Data.size())); 1396 lseek(FD, 0, SEEK_SET); 1397 auto Hash = fs::md5_contents(FD); 1398 ::close(FD); 1399 ASSERT_NO_ERROR(Hash.getError()); 1400 1401 EXPECT_STREQ("c3fcd3d76192e4007dfb496cca67e13b", Hash->digest().c_str()); 1402 } 1403 1404 TEST_F(FileSystemTest, FileMapping) { 1405 // Create a temp file. 1406 int FileDescriptor; 1407 SmallString<64> TempPath; 1408 ASSERT_NO_ERROR( 1409 fs::createTemporaryFile("prefix", "temp", FileDescriptor, TempPath)); 1410 unsigned Size = 4096; 1411 ASSERT_NO_ERROR( 1412 fs::resize_file_before_mapping_readwrite(FileDescriptor, Size)); 1413 1414 // Map in temp file and add some content 1415 std::error_code EC; 1416 StringRef Val("hello there"); 1417 fs::mapped_file_region MaybeMFR; 1418 EXPECT_FALSE(MaybeMFR); 1419 { 1420 fs::mapped_file_region mfr(fs::convertFDToNativeFile(FileDescriptor), 1421 fs::mapped_file_region::readwrite, Size, 0, EC); 1422 ASSERT_NO_ERROR(EC); 1423 std::copy(Val.begin(), Val.end(), mfr.data()); 1424 // Explicitly add a 0. 1425 mfr.data()[Val.size()] = 0; 1426 1427 // Move it out of the scope and confirm mfr is reset. 1428 MaybeMFR = std::move(mfr); 1429 EXPECT_FALSE(mfr); 1430 #if !defined(NDEBUG) && GTEST_HAS_DEATH_TEST 1431 EXPECT_DEATH(mfr.data(), "Mapping failed but used anyway!"); 1432 EXPECT_DEATH(mfr.size(), "Mapping failed but used anyway!"); 1433 #endif 1434 } 1435 1436 // Check that the moved-to region is still valid. 1437 EXPECT_EQ(Val, StringRef(MaybeMFR.data())); 1438 EXPECT_EQ(Size, MaybeMFR.size()); 1439 1440 // Unmap temp file. 1441 MaybeMFR.unmap(); 1442 1443 ASSERT_EQ(close(FileDescriptor), 0); 1444 1445 // Map it back in read-only 1446 { 1447 int FD; 1448 EC = fs::openFileForRead(Twine(TempPath), FD); 1449 ASSERT_NO_ERROR(EC); 1450 fs::mapped_file_region mfr(fs::convertFDToNativeFile(FD), 1451 fs::mapped_file_region::readonly, Size, 0, EC); 1452 ASSERT_NO_ERROR(EC); 1453 1454 // Verify content 1455 EXPECT_EQ(StringRef(mfr.const_data()), Val); 1456 1457 // Unmap temp file 1458 fs::mapped_file_region m(fs::convertFDToNativeFile(FD), 1459 fs::mapped_file_region::readonly, Size, 0, EC); 1460 ASSERT_NO_ERROR(EC); 1461 ASSERT_EQ(close(FD), 0); 1462 } 1463 ASSERT_NO_ERROR(fs::remove(TempPath)); 1464 } 1465 1466 TEST(Support, NormalizePath) { 1467 // Input, Expected Win, Expected Posix 1468 using TestTuple = std::tuple<const char *, const char *, const char *>; 1469 std::vector<TestTuple> Tests; 1470 Tests.emplace_back("a", "a", "a"); 1471 Tests.emplace_back("a/b", "a\\b", "a/b"); 1472 Tests.emplace_back("a\\b", "a\\b", "a/b"); 1473 Tests.emplace_back("a\\\\b", "a\\\\b", "a//b"); 1474 Tests.emplace_back("\\a", "\\a", "/a"); 1475 Tests.emplace_back("a\\", "a\\", "a/"); 1476 Tests.emplace_back("a\\t", "a\\t", "a/t"); 1477 1478 for (auto &T : Tests) { 1479 SmallString<64> Win(std::get<0>(T)); 1480 SmallString<64> Posix(Win); 1481 SmallString<64> WinSlash(Win); 1482 path::native(Win, path::Style::windows); 1483 path::native(Posix, path::Style::posix); 1484 path::native(WinSlash, path::Style::windows_slash); 1485 EXPECT_EQ(std::get<1>(T), Win); 1486 EXPECT_EQ(std::get<2>(T), Posix); 1487 EXPECT_EQ(std::get<2>(T), WinSlash); 1488 } 1489 1490 for (auto &T : Tests) { 1491 SmallString<64> WinBackslash(std::get<0>(T)); 1492 SmallString<64> Posix(WinBackslash); 1493 SmallString<64> WinSlash(WinBackslash); 1494 path::make_preferred(WinBackslash, path::Style::windows_backslash); 1495 path::make_preferred(Posix, path::Style::posix); 1496 path::make_preferred(WinSlash, path::Style::windows_slash); 1497 EXPECT_EQ(std::get<1>(T), WinBackslash); 1498 EXPECT_EQ(std::get<0>(T), Posix); // Posix remains unchanged here 1499 EXPECT_EQ(std::get<2>(T), WinSlash); 1500 } 1501 1502 #if defined(_WIN32) 1503 SmallString<64> PathHome; 1504 path::home_directory(PathHome); 1505 1506 const char *Path7a = "~/aaa"; 1507 SmallString<64> Path7(Path7a); 1508 path::native(Path7, path::Style::windows_backslash); 1509 EXPECT_TRUE(Path7.endswith("\\aaa")); 1510 EXPECT_TRUE(Path7.startswith(PathHome)); 1511 EXPECT_EQ(Path7.size(), PathHome.size() + strlen(Path7a + 1)); 1512 Path7 = Path7a; 1513 path::native(Path7, path::Style::windows_slash); 1514 EXPECT_TRUE(Path7.endswith("/aaa")); 1515 EXPECT_TRUE(Path7.startswith(PathHome)); 1516 EXPECT_EQ(Path7.size(), PathHome.size() + strlen(Path7a + 1)); 1517 1518 const char *Path8a = "~"; 1519 SmallString<64> Path8(Path8a); 1520 path::native(Path8); 1521 EXPECT_EQ(Path8, PathHome); 1522 1523 const char *Path9a = "~aaa"; 1524 SmallString<64> Path9(Path9a); 1525 path::native(Path9); 1526 EXPECT_EQ(Path9, "~aaa"); 1527 1528 const char *Path10a = "aaa/~/b"; 1529 SmallString<64> Path10(Path10a); 1530 path::native(Path10, path::Style::windows_backslash); 1531 EXPECT_EQ(Path10, "aaa\\~\\b"); 1532 #endif 1533 } 1534 1535 TEST(Support, RemoveLeadingDotSlash) { 1536 StringRef Path1("././/foolz/wat"); 1537 StringRef Path2("./////"); 1538 1539 Path1 = path::remove_leading_dotslash(Path1); 1540 EXPECT_EQ(Path1, "foolz/wat"); 1541 Path2 = path::remove_leading_dotslash(Path2); 1542 EXPECT_EQ(Path2, ""); 1543 } 1544 1545 static std::string remove_dots(StringRef path, bool remove_dot_dot, 1546 path::Style style) { 1547 SmallString<256> buffer(path); 1548 path::remove_dots(buffer, remove_dot_dot, style); 1549 return std::string(buffer.str()); 1550 } 1551 1552 TEST(Support, RemoveDots) { 1553 EXPECT_EQ("foolz\\wat", 1554 remove_dots(".\\.\\\\foolz\\wat", false, path::Style::windows)); 1555 EXPECT_EQ("", remove_dots(".\\\\\\\\\\", false, path::Style::windows)); 1556 1557 EXPECT_EQ("a\\..\\b\\c", 1558 remove_dots(".\\a\\..\\b\\c", false, path::Style::windows)); 1559 EXPECT_EQ("b\\c", remove_dots(".\\a\\..\\b\\c", true, path::Style::windows)); 1560 EXPECT_EQ("c", remove_dots(".\\.\\c", true, path::Style::windows)); 1561 EXPECT_EQ("..\\a\\c", 1562 remove_dots("..\\a\\b\\..\\c", true, path::Style::windows)); 1563 EXPECT_EQ("..\\..\\a\\c", 1564 remove_dots("..\\..\\a\\b\\..\\c", true, path::Style::windows)); 1565 EXPECT_EQ("C:\\a\\c", remove_dots("C:\\foo\\bar//..\\..\\a\\c", true, 1566 path::Style::windows)); 1567 1568 EXPECT_EQ("C:\\bar", 1569 remove_dots("C:/foo/../bar", true, path::Style::windows)); 1570 EXPECT_EQ("C:\\foo\\bar", 1571 remove_dots("C:/foo/bar", true, path::Style::windows)); 1572 EXPECT_EQ("C:\\foo\\bar", 1573 remove_dots("C:/foo\\bar", true, path::Style::windows)); 1574 EXPECT_EQ("\\", remove_dots("/", true, path::Style::windows)); 1575 EXPECT_EQ("C:\\", remove_dots("C:/", true, path::Style::windows)); 1576 1577 // Some clients of remove_dots expect it to remove trailing slashes. Again, 1578 // this is emergent behavior that VFS relies on, and not inherently part of 1579 // the specification. 1580 EXPECT_EQ("C:\\foo\\bar", 1581 remove_dots("C:\\foo\\bar\\", true, path::Style::windows)); 1582 EXPECT_EQ("/foo/bar", 1583 remove_dots("/foo/bar/", true, path::Style::posix)); 1584 1585 // A double separator is rewritten. 1586 EXPECT_EQ("C:\\foo\\bar", 1587 remove_dots("C:/foo//bar", true, path::Style::windows)); 1588 1589 SmallString<64> Path1(".\\.\\c"); 1590 EXPECT_TRUE(path::remove_dots(Path1, true, path::Style::windows)); 1591 EXPECT_EQ("c", Path1); 1592 1593 EXPECT_EQ("foolz/wat", 1594 remove_dots("././/foolz/wat", false, path::Style::posix)); 1595 EXPECT_EQ("", remove_dots("./////", false, path::Style::posix)); 1596 1597 EXPECT_EQ("a/../b/c", remove_dots("./a/../b/c", false, path::Style::posix)); 1598 EXPECT_EQ("b/c", remove_dots("./a/../b/c", true, path::Style::posix)); 1599 EXPECT_EQ("c", remove_dots("././c", true, path::Style::posix)); 1600 EXPECT_EQ("../a/c", remove_dots("../a/b/../c", true, path::Style::posix)); 1601 EXPECT_EQ("../../a/c", 1602 remove_dots("../../a/b/../c", true, path::Style::posix)); 1603 EXPECT_EQ("/a/c", remove_dots("/../../a/c", true, path::Style::posix)); 1604 EXPECT_EQ("/a/c", 1605 remove_dots("/../a/b//../././/c", true, path::Style::posix)); 1606 EXPECT_EQ("/", remove_dots("/", true, path::Style::posix)); 1607 1608 // FIXME: Leaving behind this double leading slash seems like a bug. 1609 EXPECT_EQ("//foo/bar", 1610 remove_dots("//foo/bar/", true, path::Style::posix)); 1611 1612 SmallString<64> Path2("././c"); 1613 EXPECT_TRUE(path::remove_dots(Path2, true, path::Style::posix)); 1614 EXPECT_EQ("c", Path2); 1615 } 1616 1617 TEST(Support, ReplacePathPrefix) { 1618 SmallString<64> Path1("/foo"); 1619 SmallString<64> Path2("/old/foo"); 1620 SmallString<64> Path3("/oldnew/foo"); 1621 SmallString<64> Path4("C:\\old/foo\\bar"); 1622 SmallString<64> OldPrefix("/old"); 1623 SmallString<64> OldPrefixSep("/old/"); 1624 SmallString<64> OldPrefixWin("c:/oLD/F"); 1625 SmallString<64> NewPrefix("/new"); 1626 SmallString<64> NewPrefix2("/longernew"); 1627 SmallString<64> EmptyPrefix(""); 1628 bool Found; 1629 1630 SmallString<64> Path = Path1; 1631 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix); 1632 EXPECT_FALSE(Found); 1633 EXPECT_EQ(Path, "/foo"); 1634 Path = Path2; 1635 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix); 1636 EXPECT_TRUE(Found); 1637 EXPECT_EQ(Path, "/new/foo"); 1638 Path = Path2; 1639 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix2); 1640 EXPECT_TRUE(Found); 1641 EXPECT_EQ(Path, "/longernew/foo"); 1642 Path = Path1; 1643 Found = path::replace_path_prefix(Path, EmptyPrefix, NewPrefix); 1644 EXPECT_TRUE(Found); 1645 EXPECT_EQ(Path, "/new/foo"); 1646 Path = Path2; 1647 Found = path::replace_path_prefix(Path, OldPrefix, EmptyPrefix); 1648 EXPECT_TRUE(Found); 1649 EXPECT_EQ(Path, "/foo"); 1650 Path = Path2; 1651 Found = path::replace_path_prefix(Path, OldPrefixSep, EmptyPrefix); 1652 EXPECT_TRUE(Found); 1653 EXPECT_EQ(Path, "foo"); 1654 Path = Path3; 1655 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix); 1656 EXPECT_TRUE(Found); 1657 EXPECT_EQ(Path, "/newnew/foo"); 1658 Path = Path3; 1659 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix2); 1660 EXPECT_TRUE(Found); 1661 EXPECT_EQ(Path, "/longernewnew/foo"); 1662 Path = Path1; 1663 Found = path::replace_path_prefix(Path, EmptyPrefix, NewPrefix); 1664 EXPECT_TRUE(Found); 1665 EXPECT_EQ(Path, "/new/foo"); 1666 Path = OldPrefix; 1667 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix); 1668 EXPECT_TRUE(Found); 1669 EXPECT_EQ(Path, "/new"); 1670 Path = OldPrefixSep; 1671 Found = path::replace_path_prefix(Path, OldPrefix, NewPrefix); 1672 EXPECT_TRUE(Found); 1673 EXPECT_EQ(Path, "/new/"); 1674 Path = OldPrefix; 1675 Found = path::replace_path_prefix(Path, OldPrefixSep, NewPrefix); 1676 EXPECT_FALSE(Found); 1677 EXPECT_EQ(Path, "/old"); 1678 Path = Path4; 1679 Found = path::replace_path_prefix(Path, OldPrefixWin, NewPrefix, 1680 path::Style::windows); 1681 EXPECT_TRUE(Found); 1682 EXPECT_EQ(Path, "/newoo\\bar"); 1683 Path = Path4; 1684 Found = path::replace_path_prefix(Path, OldPrefixWin, NewPrefix, 1685 path::Style::posix); 1686 EXPECT_FALSE(Found); 1687 EXPECT_EQ(Path, "C:\\old/foo\\bar"); 1688 } 1689 1690 TEST_F(FileSystemTest, OpenFileForRead) { 1691 // Create a temp file. 1692 int FileDescriptor; 1693 SmallString<64> TempPath; 1694 ASSERT_NO_ERROR( 1695 fs::createTemporaryFile("prefix", "temp", FileDescriptor, TempPath)); 1696 FileRemover Cleanup(TempPath); 1697 1698 // Make sure it exists. 1699 ASSERT_TRUE(sys::fs::exists(Twine(TempPath))); 1700 1701 // Open the file for read 1702 int FileDescriptor2; 1703 SmallString<64> ResultPath; 1704 ASSERT_NO_ERROR(fs::openFileForRead(Twine(TempPath), FileDescriptor2, 1705 fs::OF_None, &ResultPath)) 1706 1707 // If we succeeded, check that the paths are the same (modulo case): 1708 if (!ResultPath.empty()) { 1709 // The paths returned by createTemporaryFile and getPathFromOpenFD 1710 // should reference the same file on disk. 1711 fs::UniqueID D1, D2; 1712 ASSERT_NO_ERROR(fs::getUniqueID(Twine(TempPath), D1)); 1713 ASSERT_NO_ERROR(fs::getUniqueID(Twine(ResultPath), D2)); 1714 ASSERT_EQ(D1, D2); 1715 } 1716 ::close(FileDescriptor); 1717 ::close(FileDescriptor2); 1718 1719 #ifdef _WIN32 1720 // Since Windows Vista, file access time is not updated by default. 1721 // This is instead updated manually by openFileForRead. 1722 // https://blogs.technet.microsoft.com/filecab/2006/11/07/disabling-last-access-time-in-windows-vista-to-improve-ntfs-performance/ 1723 // This part of the unit test is Windows specific as the updating of 1724 // access times can be disabled on Linux using /etc/fstab. 1725 1726 // Set access time to UNIX epoch. 1727 ASSERT_NO_ERROR(sys::fs::openFileForWrite(Twine(TempPath), FileDescriptor, 1728 fs::CD_OpenExisting)); 1729 TimePoint<> Epoch(std::chrono::milliseconds(0)); 1730 ASSERT_NO_ERROR(fs::setLastAccessAndModificationTime(FileDescriptor, Epoch)); 1731 ::close(FileDescriptor); 1732 1733 // Open the file and ensure access time is updated, when forced. 1734 ASSERT_NO_ERROR(fs::openFileForRead(Twine(TempPath), FileDescriptor, 1735 fs::OF_UpdateAtime, &ResultPath)); 1736 1737 sys::fs::file_status Status; 1738 ASSERT_NO_ERROR(sys::fs::status(FileDescriptor, Status)); 1739 auto FileAccessTime = Status.getLastAccessedTime(); 1740 1741 ASSERT_NE(Epoch, FileAccessTime); 1742 ::close(FileDescriptor); 1743 1744 // Ideally this test would include a case when ATime is not forced to update, 1745 // however the expected behaviour will differ depending on the configuration 1746 // of the Windows file system. 1747 #endif 1748 } 1749 1750 static void createFileWithData(const Twine &Path, bool ShouldExistBefore, 1751 fs::CreationDisposition Disp, StringRef Data) { 1752 int FD; 1753 ASSERT_EQ(ShouldExistBefore, fs::exists(Path)); 1754 ASSERT_NO_ERROR(fs::openFileForWrite(Path, FD, Disp)); 1755 FileDescriptorCloser Closer(FD); 1756 ASSERT_TRUE(fs::exists(Path)); 1757 1758 ASSERT_EQ(Data.size(), (size_t)write(FD, Data.data(), Data.size())); 1759 } 1760 1761 static void verifyFileContents(const Twine &Path, StringRef Contents) { 1762 auto Buffer = MemoryBuffer::getFile(Path); 1763 ASSERT_TRUE((bool)Buffer); 1764 StringRef Data = Buffer.get()->getBuffer(); 1765 ASSERT_EQ(Data, Contents); 1766 } 1767 1768 TEST_F(FileSystemTest, CreateNew) { 1769 int FD; 1770 Optional<FileDescriptorCloser> Closer; 1771 1772 // Succeeds if the file does not exist. 1773 ASSERT_FALSE(fs::exists(NonExistantFile)); 1774 ASSERT_NO_ERROR(fs::openFileForWrite(NonExistantFile, FD, fs::CD_CreateNew)); 1775 ASSERT_TRUE(fs::exists(NonExistantFile)); 1776 1777 FileRemover Cleanup(NonExistantFile); 1778 Closer.emplace(FD); 1779 1780 // And creates a file of size 0. 1781 sys::fs::file_status Status; 1782 ASSERT_NO_ERROR(sys::fs::status(FD, Status)); 1783 EXPECT_EQ(0ULL, Status.getSize()); 1784 1785 // Close this first, before trying to re-open the file. 1786 Closer.reset(); 1787 1788 // But fails if the file does exist. 1789 ASSERT_ERROR(fs::openFileForWrite(NonExistantFile, FD, fs::CD_CreateNew)); 1790 } 1791 1792 TEST_F(FileSystemTest, CreateAlways) { 1793 int FD; 1794 Optional<FileDescriptorCloser> Closer; 1795 1796 // Succeeds if the file does not exist. 1797 ASSERT_FALSE(fs::exists(NonExistantFile)); 1798 ASSERT_NO_ERROR( 1799 fs::openFileForWrite(NonExistantFile, FD, fs::CD_CreateAlways)); 1800 1801 Closer.emplace(FD); 1802 1803 ASSERT_TRUE(fs::exists(NonExistantFile)); 1804 1805 FileRemover Cleanup(NonExistantFile); 1806 1807 // And creates a file of size 0. 1808 uint64_t FileSize; 1809 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1810 ASSERT_EQ(0ULL, FileSize); 1811 1812 // If we write some data to it re-create it with CreateAlways, it succeeds and 1813 // truncates to 0 bytes. 1814 ASSERT_EQ(4, write(FD, "Test", 4)); 1815 1816 Closer.reset(); 1817 1818 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1819 ASSERT_EQ(4ULL, FileSize); 1820 1821 ASSERT_NO_ERROR( 1822 fs::openFileForWrite(NonExistantFile, FD, fs::CD_CreateAlways)); 1823 Closer.emplace(FD); 1824 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1825 ASSERT_EQ(0ULL, FileSize); 1826 } 1827 1828 TEST_F(FileSystemTest, OpenExisting) { 1829 int FD; 1830 1831 // Fails if the file does not exist. 1832 ASSERT_FALSE(fs::exists(NonExistantFile)); 1833 ASSERT_ERROR(fs::openFileForWrite(NonExistantFile, FD, fs::CD_OpenExisting)); 1834 ASSERT_FALSE(fs::exists(NonExistantFile)); 1835 1836 // Make a dummy file now so that we can try again when the file does exist. 1837 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "Fizz"); 1838 FileRemover Cleanup(NonExistantFile); 1839 uint64_t FileSize; 1840 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1841 ASSERT_EQ(4ULL, FileSize); 1842 1843 // If we re-create it with different data, it overwrites rather than 1844 // appending. 1845 createFileWithData(NonExistantFile, true, fs::CD_OpenExisting, "Buzz"); 1846 verifyFileContents(NonExistantFile, "Buzz"); 1847 } 1848 1849 TEST_F(FileSystemTest, OpenAlways) { 1850 // Succeeds if the file does not exist. 1851 createFileWithData(NonExistantFile, false, fs::CD_OpenAlways, "Fizz"); 1852 FileRemover Cleanup(NonExistantFile); 1853 uint64_t FileSize; 1854 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1855 ASSERT_EQ(4ULL, FileSize); 1856 1857 // Now re-open it and write again, verifying the contents get over-written. 1858 createFileWithData(NonExistantFile, true, fs::CD_OpenAlways, "Bu"); 1859 verifyFileContents(NonExistantFile, "Buzz"); 1860 } 1861 1862 TEST_F(FileSystemTest, AppendSetsCorrectFileOffset) { 1863 fs::CreationDisposition Disps[] = {fs::CD_CreateAlways, fs::CD_OpenAlways, 1864 fs::CD_OpenExisting}; 1865 1866 // Write some data and re-open it with every possible disposition (this is a 1867 // hack that shouldn't work, but is left for compatibility. OF_Append 1868 // overrides 1869 // the specified disposition. 1870 for (fs::CreationDisposition Disp : Disps) { 1871 int FD; 1872 Optional<FileDescriptorCloser> Closer; 1873 1874 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "Fizz"); 1875 1876 FileRemover Cleanup(NonExistantFile); 1877 1878 uint64_t FileSize; 1879 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1880 ASSERT_EQ(4ULL, FileSize); 1881 ASSERT_NO_ERROR( 1882 fs::openFileForWrite(NonExistantFile, FD, Disp, fs::OF_Append)); 1883 Closer.emplace(FD); 1884 ASSERT_NO_ERROR(sys::fs::file_size(NonExistantFile, FileSize)); 1885 ASSERT_EQ(4ULL, FileSize); 1886 1887 ASSERT_EQ(4, write(FD, "Buzz", 4)); 1888 Closer.reset(); 1889 1890 verifyFileContents(NonExistantFile, "FizzBuzz"); 1891 } 1892 } 1893 1894 static void verifyRead(int FD, StringRef Data, bool ShouldSucceed) { 1895 std::vector<char> Buffer; 1896 Buffer.resize(Data.size()); 1897 int Result = ::read(FD, Buffer.data(), Buffer.size()); 1898 if (ShouldSucceed) { 1899 ASSERT_EQ((size_t)Result, Data.size()); 1900 ASSERT_EQ(Data, StringRef(Buffer.data(), Buffer.size())); 1901 } else { 1902 ASSERT_EQ(-1, Result); 1903 ASSERT_EQ(EBADF, errno); 1904 } 1905 } 1906 1907 static void verifyWrite(int FD, StringRef Data, bool ShouldSucceed) { 1908 int Result = ::write(FD, Data.data(), Data.size()); 1909 if (ShouldSucceed) 1910 ASSERT_EQ((size_t)Result, Data.size()); 1911 else { 1912 ASSERT_EQ(-1, Result); 1913 ASSERT_EQ(EBADF, errno); 1914 } 1915 } 1916 1917 TEST_F(FileSystemTest, ReadOnlyFileCantWrite) { 1918 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "Fizz"); 1919 FileRemover Cleanup(NonExistantFile); 1920 1921 int FD; 1922 ASSERT_NO_ERROR(fs::openFileForRead(NonExistantFile, FD)); 1923 FileDescriptorCloser Closer(FD); 1924 1925 verifyWrite(FD, "Buzz", false); 1926 verifyRead(FD, "Fizz", true); 1927 } 1928 1929 TEST_F(FileSystemTest, WriteOnlyFileCantRead) { 1930 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "Fizz"); 1931 FileRemover Cleanup(NonExistantFile); 1932 1933 int FD; 1934 ASSERT_NO_ERROR( 1935 fs::openFileForWrite(NonExistantFile, FD, fs::CD_OpenExisting)); 1936 FileDescriptorCloser Closer(FD); 1937 verifyRead(FD, "Fizz", false); 1938 verifyWrite(FD, "Buzz", true); 1939 } 1940 1941 TEST_F(FileSystemTest, ReadWriteFileCanReadOrWrite) { 1942 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "Fizz"); 1943 FileRemover Cleanup(NonExistantFile); 1944 1945 int FD; 1946 ASSERT_NO_ERROR(fs::openFileForReadWrite(NonExistantFile, FD, 1947 fs::CD_OpenExisting, fs::OF_None)); 1948 FileDescriptorCloser Closer(FD); 1949 verifyRead(FD, "Fizz", true); 1950 verifyWrite(FD, "Buzz", true); 1951 } 1952 1953 TEST_F(FileSystemTest, readNativeFile) { 1954 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "01234"); 1955 FileRemover Cleanup(NonExistantFile); 1956 const auto &Read = [&](size_t ToRead) -> Expected<std::string> { 1957 std::string Buf(ToRead, '?'); 1958 Expected<fs::file_t> FD = fs::openNativeFileForRead(NonExistantFile); 1959 if (!FD) 1960 return FD.takeError(); 1961 auto Close = make_scope_exit([&] { fs::closeFile(*FD); }); 1962 if (Expected<size_t> BytesRead = fs::readNativeFile( 1963 *FD, makeMutableArrayRef(&*Buf.begin(), Buf.size()))) 1964 return Buf.substr(0, *BytesRead); 1965 else 1966 return BytesRead.takeError(); 1967 }; 1968 EXPECT_THAT_EXPECTED(Read(5), HasValue("01234")); 1969 EXPECT_THAT_EXPECTED(Read(3), HasValue("012")); 1970 EXPECT_THAT_EXPECTED(Read(6), HasValue("01234")); 1971 } 1972 1973 TEST_F(FileSystemTest, readNativeFileToEOF) { 1974 constexpr StringLiteral Content = "0123456789"; 1975 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, Content); 1976 FileRemover Cleanup(NonExistantFile); 1977 const auto &Read = [&](SmallVectorImpl<char> &V, 1978 Optional<ssize_t> ChunkSize) { 1979 Expected<fs::file_t> FD = fs::openNativeFileForRead(NonExistantFile); 1980 if (!FD) 1981 return FD.takeError(); 1982 auto Close = make_scope_exit([&] { fs::closeFile(*FD); }); 1983 if (ChunkSize) 1984 return fs::readNativeFileToEOF(*FD, V, *ChunkSize); 1985 return fs::readNativeFileToEOF(*FD, V); 1986 }; 1987 1988 // Check basic operation. 1989 { 1990 SmallString<0> NoSmall; 1991 SmallString<fs::DefaultReadChunkSize + Content.size()> StaysSmall; 1992 SmallVectorImpl<char> *Vectors[] = { 1993 static_cast<SmallVectorImpl<char> *>(&NoSmall), 1994 static_cast<SmallVectorImpl<char> *>(&StaysSmall), 1995 }; 1996 for (SmallVectorImpl<char> *V : Vectors) { 1997 ASSERT_THAT_ERROR(Read(*V, std::nullopt), Succeeded()); 1998 ASSERT_EQ(Content, StringRef(V->begin(), V->size())); 1999 } 2000 ASSERT_EQ(fs::DefaultReadChunkSize + Content.size(), StaysSmall.capacity()); 2001 2002 // Check appending. 2003 { 2004 constexpr StringLiteral Prefix = "prefix-"; 2005 for (SmallVectorImpl<char> *V : Vectors) { 2006 V->assign(Prefix.begin(), Prefix.end()); 2007 ASSERT_THAT_ERROR(Read(*V, std::nullopt), Succeeded()); 2008 ASSERT_EQ((Prefix + Content).str(), StringRef(V->begin(), V->size())); 2009 } 2010 } 2011 } 2012 2013 // Check that the chunk size (if specified) is respected. 2014 SmallString<Content.size() + 5> SmallChunks; 2015 ASSERT_THAT_ERROR(Read(SmallChunks, 5), Succeeded()); 2016 ASSERT_EQ(SmallChunks, Content); 2017 ASSERT_EQ(Content.size() + 5, SmallChunks.capacity()); 2018 } 2019 2020 TEST_F(FileSystemTest, readNativeFileSlice) { 2021 createFileWithData(NonExistantFile, false, fs::CD_CreateNew, "01234"); 2022 FileRemover Cleanup(NonExistantFile); 2023 Expected<fs::file_t> FD = fs::openNativeFileForRead(NonExistantFile); 2024 ASSERT_THAT_EXPECTED(FD, Succeeded()); 2025 auto Close = make_scope_exit([&] { fs::closeFile(*FD); }); 2026 const auto &Read = [&](size_t Offset, 2027 size_t ToRead) -> Expected<std::string> { 2028 std::string Buf(ToRead, '?'); 2029 if (Expected<size_t> BytesRead = fs::readNativeFileSlice( 2030 *FD, makeMutableArrayRef(&*Buf.begin(), Buf.size()), Offset)) 2031 return Buf.substr(0, *BytesRead); 2032 else 2033 return BytesRead.takeError(); 2034 }; 2035 EXPECT_THAT_EXPECTED(Read(0, 5), HasValue("01234")); 2036 EXPECT_THAT_EXPECTED(Read(0, 3), HasValue("012")); 2037 EXPECT_THAT_EXPECTED(Read(2, 3), HasValue("234")); 2038 EXPECT_THAT_EXPECTED(Read(0, 6), HasValue("01234")); 2039 EXPECT_THAT_EXPECTED(Read(2, 6), HasValue("234")); 2040 EXPECT_THAT_EXPECTED(Read(5, 5), HasValue("")); 2041 } 2042 2043 TEST_F(FileSystemTest, is_local) { 2044 bool TestDirectoryIsLocal; 2045 ASSERT_NO_ERROR(fs::is_local(TestDirectory, TestDirectoryIsLocal)); 2046 EXPECT_EQ(TestDirectoryIsLocal, fs::is_local(TestDirectory)); 2047 2048 int FD; 2049 SmallString<128> TempPath; 2050 ASSERT_NO_ERROR( 2051 fs::createUniqueFile(Twine(TestDirectory) + "/temp", FD, TempPath)); 2052 FileRemover Cleanup(TempPath); 2053 2054 // Make sure it exists. 2055 ASSERT_TRUE(sys::fs::exists(Twine(TempPath))); 2056 2057 bool TempFileIsLocal; 2058 ASSERT_NO_ERROR(fs::is_local(FD, TempFileIsLocal)); 2059 EXPECT_EQ(TempFileIsLocal, fs::is_local(FD)); 2060 ::close(FD); 2061 2062 // Expect that the file and its parent directory are equally local or equally 2063 // remote. 2064 EXPECT_EQ(TestDirectoryIsLocal, TempFileIsLocal); 2065 } 2066 2067 TEST_F(FileSystemTest, getUmask) { 2068 #ifdef _WIN32 2069 EXPECT_EQ(fs::getUmask(), 0U) << "Should always be 0 on Windows."; 2070 #else 2071 unsigned OldMask = ::umask(0022); 2072 unsigned CurrentMask = fs::getUmask(); 2073 EXPECT_EQ(CurrentMask, 0022U) 2074 << "getUmask() didn't return previously set umask()"; 2075 EXPECT_EQ(::umask(OldMask), mode_t(0022U)) 2076 << "getUmask() may have changed umask()"; 2077 #endif 2078 } 2079 2080 TEST_F(FileSystemTest, RespectUmask) { 2081 #ifndef _WIN32 2082 unsigned OldMask = ::umask(0022); 2083 2084 int FD; 2085 SmallString<128> TempPath; 2086 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD, TempPath)); 2087 2088 fs::perms AllRWE = static_cast<fs::perms>(0777); 2089 2090 ASSERT_NO_ERROR(fs::setPermissions(TempPath, AllRWE)); 2091 2092 ErrorOr<fs::perms> Perms = fs::getPermissions(TempPath); 2093 ASSERT_TRUE(!!Perms); 2094 EXPECT_EQ(Perms.get(), AllRWE) << "Should have ignored umask by default"; 2095 2096 ASSERT_NO_ERROR(fs::setPermissions(TempPath, AllRWE)); 2097 2098 Perms = fs::getPermissions(TempPath); 2099 ASSERT_TRUE(!!Perms); 2100 EXPECT_EQ(Perms.get(), AllRWE) << "Should have ignored umask"; 2101 2102 ASSERT_NO_ERROR( 2103 fs::setPermissions(FD, static_cast<fs::perms>(AllRWE & ~fs::getUmask()))); 2104 Perms = fs::getPermissions(TempPath); 2105 ASSERT_TRUE(!!Perms); 2106 EXPECT_EQ(Perms.get(), static_cast<fs::perms>(0755)) 2107 << "Did not respect umask"; 2108 2109 (void)::umask(0057); 2110 2111 ASSERT_NO_ERROR( 2112 fs::setPermissions(FD, static_cast<fs::perms>(AllRWE & ~fs::getUmask()))); 2113 Perms = fs::getPermissions(TempPath); 2114 ASSERT_TRUE(!!Perms); 2115 EXPECT_EQ(Perms.get(), static_cast<fs::perms>(0720)) 2116 << "Did not respect umask"; 2117 2118 (void)::umask(OldMask); 2119 (void)::close(FD); 2120 #endif 2121 } 2122 2123 TEST_F(FileSystemTest, set_current_path) { 2124 SmallString<128> path; 2125 2126 ASSERT_NO_ERROR(fs::current_path(path)); 2127 ASSERT_NE(TestDirectory, path); 2128 2129 struct RestorePath { 2130 SmallString<128> path; 2131 RestorePath(const SmallString<128> &path) : path(path) {} 2132 ~RestorePath() { fs::set_current_path(path); } 2133 } restore_path(path); 2134 2135 ASSERT_NO_ERROR(fs::set_current_path(TestDirectory)); 2136 2137 ASSERT_NO_ERROR(fs::current_path(path)); 2138 2139 fs::UniqueID D1, D2; 2140 ASSERT_NO_ERROR(fs::getUniqueID(TestDirectory, D1)); 2141 ASSERT_NO_ERROR(fs::getUniqueID(path, D2)); 2142 ASSERT_EQ(D1, D2) << "D1: " << TestDirectory << "\nD2: " << path; 2143 } 2144 2145 TEST_F(FileSystemTest, permissions) { 2146 int FD; 2147 SmallString<64> TempPath; 2148 ASSERT_NO_ERROR(fs::createTemporaryFile("prefix", "temp", FD, TempPath)); 2149 FileRemover Cleanup(TempPath); 2150 2151 // Make sure it exists. 2152 ASSERT_TRUE(fs::exists(Twine(TempPath))); 2153 2154 auto CheckPermissions = [&](fs::perms Expected) { 2155 ErrorOr<fs::perms> Actual = fs::getPermissions(TempPath); 2156 return Actual && *Actual == Expected; 2157 }; 2158 2159 std::error_code NoError; 2160 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_all), NoError); 2161 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2162 2163 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_read | fs::all_exe), NoError); 2164 EXPECT_TRUE(CheckPermissions(fs::all_read | fs::all_exe)); 2165 2166 #if defined(_WIN32) 2167 fs::perms ReadOnly = fs::all_read | fs::all_exe; 2168 EXPECT_EQ(fs::setPermissions(TempPath, fs::no_perms), NoError); 2169 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2170 2171 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_read), NoError); 2172 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2173 2174 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_write), NoError); 2175 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2176 2177 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_exe), NoError); 2178 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2179 2180 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_all), NoError); 2181 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2182 2183 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_read), NoError); 2184 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2185 2186 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_write), NoError); 2187 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2188 2189 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_exe), NoError); 2190 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2191 2192 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_all), NoError); 2193 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2194 2195 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_read), NoError); 2196 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2197 2198 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_write), NoError); 2199 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2200 2201 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_exe), NoError); 2202 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2203 2204 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_all), NoError); 2205 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2206 2207 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_read), NoError); 2208 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2209 2210 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_write), NoError); 2211 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2212 2213 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_exe), NoError); 2214 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2215 2216 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_uid_on_exe), NoError); 2217 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2218 2219 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_gid_on_exe), NoError); 2220 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2221 2222 EXPECT_EQ(fs::setPermissions(TempPath, fs::sticky_bit), NoError); 2223 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2224 2225 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_uid_on_exe | 2226 fs::set_gid_on_exe | 2227 fs::sticky_bit), 2228 NoError); 2229 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2230 2231 EXPECT_EQ(fs::setPermissions(TempPath, ReadOnly | fs::set_uid_on_exe | 2232 fs::set_gid_on_exe | 2233 fs::sticky_bit), 2234 NoError); 2235 EXPECT_TRUE(CheckPermissions(ReadOnly)); 2236 2237 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_perms), NoError); 2238 EXPECT_TRUE(CheckPermissions(fs::all_all)); 2239 #else 2240 EXPECT_EQ(fs::setPermissions(TempPath, fs::no_perms), NoError); 2241 EXPECT_TRUE(CheckPermissions(fs::no_perms)); 2242 2243 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_read), NoError); 2244 EXPECT_TRUE(CheckPermissions(fs::owner_read)); 2245 2246 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_write), NoError); 2247 EXPECT_TRUE(CheckPermissions(fs::owner_write)); 2248 2249 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_exe), NoError); 2250 EXPECT_TRUE(CheckPermissions(fs::owner_exe)); 2251 2252 EXPECT_EQ(fs::setPermissions(TempPath, fs::owner_all), NoError); 2253 EXPECT_TRUE(CheckPermissions(fs::owner_all)); 2254 2255 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_read), NoError); 2256 EXPECT_TRUE(CheckPermissions(fs::group_read)); 2257 2258 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_write), NoError); 2259 EXPECT_TRUE(CheckPermissions(fs::group_write)); 2260 2261 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_exe), NoError); 2262 EXPECT_TRUE(CheckPermissions(fs::group_exe)); 2263 2264 EXPECT_EQ(fs::setPermissions(TempPath, fs::group_all), NoError); 2265 EXPECT_TRUE(CheckPermissions(fs::group_all)); 2266 2267 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_read), NoError); 2268 EXPECT_TRUE(CheckPermissions(fs::others_read)); 2269 2270 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_write), NoError); 2271 EXPECT_TRUE(CheckPermissions(fs::others_write)); 2272 2273 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_exe), NoError); 2274 EXPECT_TRUE(CheckPermissions(fs::others_exe)); 2275 2276 EXPECT_EQ(fs::setPermissions(TempPath, fs::others_all), NoError); 2277 EXPECT_TRUE(CheckPermissions(fs::others_all)); 2278 2279 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_read), NoError); 2280 EXPECT_TRUE(CheckPermissions(fs::all_read)); 2281 2282 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_write), NoError); 2283 EXPECT_TRUE(CheckPermissions(fs::all_write)); 2284 2285 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_exe), NoError); 2286 EXPECT_TRUE(CheckPermissions(fs::all_exe)); 2287 2288 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_uid_on_exe), NoError); 2289 EXPECT_TRUE(CheckPermissions(fs::set_uid_on_exe)); 2290 2291 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_gid_on_exe), NoError); 2292 EXPECT_TRUE(CheckPermissions(fs::set_gid_on_exe)); 2293 2294 // Modern BSDs require root to set the sticky bit on files. 2295 // AIX and Solaris without root will mask off (i.e., lose) the sticky bit 2296 // on files. 2297 #if !defined(__FreeBSD__) && !defined(__NetBSD__) && !defined(__OpenBSD__) && \ 2298 !defined(_AIX) && !(defined(__sun__) && defined(__svr4__)) 2299 EXPECT_EQ(fs::setPermissions(TempPath, fs::sticky_bit), NoError); 2300 EXPECT_TRUE(CheckPermissions(fs::sticky_bit)); 2301 2302 EXPECT_EQ(fs::setPermissions(TempPath, fs::set_uid_on_exe | 2303 fs::set_gid_on_exe | 2304 fs::sticky_bit), 2305 NoError); 2306 EXPECT_TRUE(CheckPermissions(fs::set_uid_on_exe | fs::set_gid_on_exe | 2307 fs::sticky_bit)); 2308 2309 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_read | fs::set_uid_on_exe | 2310 fs::set_gid_on_exe | 2311 fs::sticky_bit), 2312 NoError); 2313 EXPECT_TRUE(CheckPermissions(fs::all_read | fs::set_uid_on_exe | 2314 fs::set_gid_on_exe | fs::sticky_bit)); 2315 2316 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_perms), NoError); 2317 EXPECT_TRUE(CheckPermissions(fs::all_perms)); 2318 #endif // !FreeBSD && !NetBSD && !OpenBSD && !AIX 2319 2320 EXPECT_EQ(fs::setPermissions(TempPath, fs::all_perms & ~fs::sticky_bit), 2321 NoError); 2322 EXPECT_TRUE(CheckPermissions(fs::all_perms & ~fs::sticky_bit)); 2323 #endif 2324 } 2325 2326 #ifdef _WIN32 2327 TEST_F(FileSystemTest, widenPath) { 2328 const std::wstring LongPathPrefix(L"\\\\?\\"); 2329 2330 // Test that the length limit is checked against the UTF-16 length and not the 2331 // UTF-8 length. 2332 std::string Input("C:\\foldername\\"); 2333 const std::string Pi("\xcf\x80"); // UTF-8 lower case pi. 2334 // Add Pi up to the MAX_PATH limit. 2335 const size_t NumChars = MAX_PATH - Input.size() - 1; 2336 for (size_t i = 0; i < NumChars; ++i) 2337 Input += Pi; 2338 // Check that UTF-8 length already exceeds MAX_PATH. 2339 EXPECT_GT(Input.size(), (size_t)MAX_PATH); 2340 SmallVector<wchar_t, MAX_PATH + 16> Result; 2341 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2342 // Result should not start with the long path prefix. 2343 EXPECT_TRUE(std::wmemcmp(Result.data(), LongPathPrefix.c_str(), 2344 LongPathPrefix.size()) != 0); 2345 EXPECT_EQ(Result.size(), (size_t)MAX_PATH - 1); 2346 2347 // Add another Pi to exceed the MAX_PATH limit. 2348 Input += Pi; 2349 // Construct the expected result. 2350 SmallVector<wchar_t, MAX_PATH + 16> Expected; 2351 ASSERT_NO_ERROR(windows::UTF8ToUTF16(Input, Expected)); 2352 Expected.insert(Expected.begin(), LongPathPrefix.begin(), 2353 LongPathPrefix.end()); 2354 2355 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2356 EXPECT_EQ(Result, Expected); 2357 // Pass a path with forward slashes, check that it ends up with 2358 // backslashes when widened with the long path prefix. 2359 SmallString<MAX_PATH + 16> InputForward(Input); 2360 path::make_preferred(InputForward, path::Style::windows_slash); 2361 ASSERT_NO_ERROR(windows::widenPath(InputForward, Result)); 2362 EXPECT_EQ(Result, Expected); 2363 2364 // Pass a path which has the long path prefix prepended originally, but 2365 // which is short enough to not require the long path prefix. If such a 2366 // path is passed with forward slashes, make sure it gets normalized to 2367 // backslashes. 2368 SmallString<MAX_PATH + 16> PrefixedPath("\\\\?\\C:\\foldername"); 2369 ASSERT_NO_ERROR(windows::UTF8ToUTF16(PrefixedPath, Expected)); 2370 // Mangle the input to forward slashes. 2371 path::make_preferred(PrefixedPath, path::Style::windows_slash); 2372 ASSERT_NO_ERROR(windows::widenPath(PrefixedPath, Result)); 2373 EXPECT_EQ(Result, Expected); 2374 2375 // A short path with an inconsistent prefix is passed through as-is; this 2376 // is a degenerate case that we currently don't care about handling. 2377 PrefixedPath.assign("/\\?/C:/foldername"); 2378 ASSERT_NO_ERROR(windows::UTF8ToUTF16(PrefixedPath, Expected)); 2379 ASSERT_NO_ERROR(windows::widenPath(PrefixedPath, Result)); 2380 EXPECT_EQ(Result, Expected); 2381 2382 // Test that UNC paths are handled correctly. 2383 const std::string ShareName("\\\\sharename\\"); 2384 const std::string FileName("\\filename"); 2385 // Initialize directory name so that the input is within the MAX_PATH limit. 2386 const char DirChar = 'x'; 2387 std::string DirName(MAX_PATH - ShareName.size() - FileName.size() - 1, 2388 DirChar); 2389 2390 Input = ShareName + DirName + FileName; 2391 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2392 // Result should not start with the long path prefix. 2393 EXPECT_TRUE(std::wmemcmp(Result.data(), LongPathPrefix.c_str(), 2394 LongPathPrefix.size()) != 0); 2395 EXPECT_EQ(Result.size(), (size_t)MAX_PATH - 1); 2396 2397 // Extend the directory name so the input exceeds the MAX_PATH limit. 2398 DirName += DirChar; 2399 Input = ShareName + DirName + FileName; 2400 // Construct the expected result. 2401 ASSERT_NO_ERROR(windows::UTF8ToUTF16(StringRef(Input).substr(2), Expected)); 2402 const std::wstring UNCPrefix(LongPathPrefix + L"UNC\\"); 2403 Expected.insert(Expected.begin(), UNCPrefix.begin(), UNCPrefix.end()); 2404 2405 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2406 EXPECT_EQ(Result, Expected); 2407 2408 // Check that Unix separators are handled correctly. 2409 std::replace(Input.begin(), Input.end(), '\\', '/'); 2410 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2411 EXPECT_EQ(Result, Expected); 2412 2413 // Check the removal of "dots". 2414 Input = ShareName + DirName + "\\.\\foo\\.\\.." + FileName; 2415 ASSERT_NO_ERROR(windows::widenPath(Input, Result)); 2416 EXPECT_EQ(Result, Expected); 2417 } 2418 #endif 2419 2420 #ifdef _WIN32 2421 // Windows refuses lock request if file region is already locked by the same 2422 // process. POSIX system in this case updates the existing lock. 2423 TEST_F(FileSystemTest, FileLocker) { 2424 using namespace std::chrono; 2425 int FD; 2426 std::error_code EC; 2427 SmallString<64> TempPath; 2428 EC = fs::createTemporaryFile("test", "temp", FD, TempPath); 2429 ASSERT_NO_ERROR(EC); 2430 FileRemover Cleanup(TempPath); 2431 raw_fd_ostream Stream(TempPath, EC); 2432 2433 EC = fs::tryLockFile(FD); 2434 ASSERT_NO_ERROR(EC); 2435 EC = fs::unlockFile(FD); 2436 ASSERT_NO_ERROR(EC); 2437 2438 if (auto L = Stream.lock()) { 2439 ASSERT_ERROR(fs::tryLockFile(FD)); 2440 ASSERT_NO_ERROR(L->unlock()); 2441 ASSERT_NO_ERROR(fs::tryLockFile(FD)); 2442 ASSERT_NO_ERROR(fs::unlockFile(FD)); 2443 } else { 2444 ADD_FAILURE(); 2445 handleAllErrors(L.takeError(), [&](ErrorInfoBase &EIB) {}); 2446 } 2447 2448 ASSERT_NO_ERROR(fs::tryLockFile(FD)); 2449 ASSERT_NO_ERROR(fs::unlockFile(FD)); 2450 2451 { 2452 Expected<fs::FileLocker> L1 = Stream.lock(); 2453 ASSERT_THAT_EXPECTED(L1, Succeeded()); 2454 raw_fd_ostream Stream2(FD, false); 2455 Expected<fs::FileLocker> L2 = Stream2.tryLockFor(250ms); 2456 ASSERT_THAT_EXPECTED(L2, Failed()); 2457 ASSERT_NO_ERROR(L1->unlock()); 2458 Expected<fs::FileLocker> L3 = Stream.tryLockFor(0ms); 2459 ASSERT_THAT_EXPECTED(L3, Succeeded()); 2460 } 2461 2462 ASSERT_NO_ERROR(fs::tryLockFile(FD)); 2463 ASSERT_NO_ERROR(fs::unlockFile(FD)); 2464 } 2465 #endif 2466 2467 TEST_F(FileSystemTest, CopyFile) { 2468 unittest::TempDir RootTestDirectory("CopyFileTest", /*Unique=*/true); 2469 2470 SmallVector<std::string> Data; 2471 SmallVector<SmallString<128>> Sources; 2472 for (int I = 0, E = 3; I != E; ++I) { 2473 Data.push_back(Twine(I).str()); 2474 Sources.emplace_back(RootTestDirectory.path()); 2475 path::append(Sources.back(), "source" + Data.back() + ".txt"); 2476 createFileWithData(Sources.back(), /*ShouldExistBefore=*/false, 2477 fs::CD_CreateNew, Data.back()); 2478 } 2479 2480 // Copy the first file to a non-existing file. 2481 SmallString<128> Destination(RootTestDirectory.path()); 2482 path::append(Destination, "destination"); 2483 ASSERT_FALSE(fs::exists(Destination)); 2484 fs::copy_file(Sources[0], Destination); 2485 verifyFileContents(Destination, Data[0]); 2486 2487 // Copy the second file to an existing file. 2488 fs::copy_file(Sources[1], Destination); 2489 verifyFileContents(Destination, Data[1]); 2490 2491 // Note: The remaining logic is targeted at a potential failure case related 2492 // to file cloning and symlinks on Darwin. On Windows, fs::create_link() does 2493 // not return success here so the test is skipped. 2494 #if !defined(_WIN32) 2495 // Set up a symlink to the third file. 2496 SmallString<128> Symlink(RootTestDirectory.path()); 2497 path::append(Symlink, "symlink"); 2498 ASSERT_NO_ERROR(fs::create_link(path::filename(Sources[2]), Symlink)); 2499 verifyFileContents(Symlink, Data[2]); 2500 2501 // fs::getUniqueID() should follow symlinks. Otherwise, this isn't good test 2502 // coverage. 2503 fs::UniqueID SymlinkID; 2504 fs::UniqueID Data2ID; 2505 ASSERT_NO_ERROR(fs::getUniqueID(Symlink, SymlinkID)); 2506 ASSERT_NO_ERROR(fs::getUniqueID(Sources[2], Data2ID)); 2507 ASSERT_EQ(SymlinkID, Data2ID); 2508 2509 // Copy the third file through the symlink. 2510 fs::copy_file(Symlink, Destination); 2511 verifyFileContents(Destination, Data[2]); 2512 2513 // Confirm the destination is not a link to the original file, and not a 2514 // symlink. 2515 bool IsDestinationSymlink; 2516 ASSERT_NO_ERROR(fs::is_symlink_file(Destination, IsDestinationSymlink)); 2517 ASSERT_FALSE(IsDestinationSymlink); 2518 fs::UniqueID DestinationID; 2519 ASSERT_NO_ERROR(fs::getUniqueID(Destination, DestinationID)); 2520 ASSERT_NE(SymlinkID, DestinationID); 2521 #endif 2522 } 2523 2524 } // anonymous namespace 2525