As I move towards implementing std::filesystem, there is a need to make the existing tests run against both the std and experimental versions. Additionally, it's helpful to allow running the tests against other implementations of filesystem. This patch converts the test to easily target either. First, it adds a filesystem_include.hpp header which is soley responsible for selecting and including the correct implementation. Second, it converts existing tests to use this header instead of including filesystem directly. git-svn-id: https://llvm.org/svn/llvm-project/libcxx/trunk@328475 91177308-0d34-0410-b5e6-96231b3b80d8
160 lines
5.5 KiB
C++
160 lines
5.5 KiB
C++
//===----------------------------------------------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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// UNSUPPORTED: c++98, c++03
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// <experimental/filesystem>
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// void permissions(const path& p, perms prms);
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// void permissions(const path& p, perms prms, std::error_code& ec) noexcept;
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#include "filesystem_include.hpp"
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#include "test_macros.h"
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#include "rapid-cxx-test.hpp"
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#include "filesystem_test_helper.hpp"
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using namespace fs;
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using PR = fs::perms;
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TEST_SUITE(filesystem_permissions_test_suite)
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TEST_CASE(test_signatures)
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{
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const path p; ((void)p);
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const perms opts{}; ((void)opts);
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std::error_code ec; ((void)ec);
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ASSERT_NOT_NOEXCEPT(fs::permissions(p, opts));
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// Not noexcept because of narrow contract
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LIBCPP_ONLY(
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ASSERT_NOT_NOEXCEPT(fs::permissions(p, opts, ec)));
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}
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TEST_CASE(test_error_reporting)
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{
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auto checkThrow = [](path const& f, fs::perms opts, const std::error_code& ec)
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{
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#ifndef TEST_HAS_NO_EXCEPTIONS
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try {
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fs::permissions(f, opts);
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return false;
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} catch (filesystem_error const& err) {
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return err.path1() == f
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&& err.path2() == ""
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&& err.code() == ec;
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}
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#else
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((void)f); ((void)opts); ((void)ec);
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return true;
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#endif
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};
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scoped_test_env env;
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const path dne = env.make_env_path("dne");
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const path dne_sym = env.create_symlink(dne, "dne_sym");
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{ // !exists
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std::error_code ec;
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fs::permissions(dne, fs::perms{}, ec);
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TEST_REQUIRE(ec);
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TEST_CHECK(checkThrow(dne, fs::perms{}, ec));
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}
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{
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std::error_code ec;
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fs::permissions(dne_sym, fs::perms{}, ec);
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TEST_REQUIRE(ec);
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TEST_CHECK(checkThrow(dne_sym, fs::perms{}, ec));
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}
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}
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TEST_CASE(basic_permissions_test)
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{
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scoped_test_env env;
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const path file = env.create_file("file1", 42);
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const path dir = env.create_dir("dir1");
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const path file_for_sym = env.create_file("file2", 42);
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const path sym = env.create_symlink(file_for_sym, "sym");
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const perms AP = perms::add_perms;
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const perms RP = perms::remove_perms;
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const perms NF = perms::symlink_nofollow;
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struct TestCase {
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path p;
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perms set_perms;
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perms expected;
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} cases[] = {
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// test file
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{file, perms::none, perms::none},
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{file, perms::owner_all, perms::owner_all},
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{file, perms::group_all | AP, perms::owner_all | perms::group_all},
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{file, perms::group_all | RP, perms::owner_all},
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// test directory
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{dir, perms::none, perms::none},
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{dir, perms::owner_all, perms::owner_all},
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{dir, perms::group_all | AP, perms::owner_all | perms::group_all},
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{dir, perms::group_all | RP, perms::owner_all},
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// test symlink without symlink_nofollow
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{sym, perms::none, perms::none},
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{sym, perms::owner_all, perms::owner_all},
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{sym, perms::group_all | AP, perms::owner_all | perms::group_all},
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{sym, perms::group_all | RP , perms::owner_all},
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// test non-symlink with symlink_nofollow. The last test on file/dir
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// will have set their permissions to perms::owner_all
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{file, perms::group_all | AP | NF, perms::owner_all | perms::group_all},
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{dir, perms::group_all | AP | NF, perms::owner_all | perms::group_all}
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};
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for (auto const& TC : cases) {
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TEST_CHECK(status(TC.p).permissions() != TC.expected);
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// Set the error code to ensure it's cleared.
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std::error_code ec = std::make_error_code(std::errc::bad_address);
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permissions(TC.p, TC.set_perms, ec);
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TEST_CHECK(!ec);
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auto pp = status(TC.p).permissions();
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TEST_CHECK(pp == TC.expected);
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}
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}
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TEST_CASE(test_no_resolve_symlink_on_symlink)
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{
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scoped_test_env env;
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const path file = env.create_file("file", 42);
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const path sym = env.create_symlink(file, "sym");
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const auto file_perms = status(file).permissions();
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struct TestCase {
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perms set_perms;
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perms expected; // only expected on platform that support symlink perms.
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} cases[] = {
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{perms::owner_all, perms::owner_all},
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{perms::group_all | perms::add_perms, perms::owner_all | perms::group_all},
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{perms::owner_all | perms::remove_perms, perms::group_all},
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};
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for (auto const& TC : cases) {
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#if defined(__APPLE__) || defined(__FreeBSD__)
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// On OS X symlink permissions are supported. We should get an empty
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// error code and the expected permissions.
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const auto expected_link_perms = TC.expected;
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std::error_code expected_ec;
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#else
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// On linux symlink permissions are not supported. The error code should
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// be 'operation_not_supported' and the symlink permissions should be
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// unchanged.
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const auto expected_link_perms = symlink_status(sym).permissions();
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std::error_code expected_ec = std::make_error_code(std::errc::operation_not_supported);
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#endif
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std::error_code ec = std::make_error_code(std::errc::bad_address);
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permissions(sym, TC.set_perms | perms::symlink_nofollow, ec);
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TEST_CHECK(ec == expected_ec);
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TEST_CHECK(status(file).permissions() == file_perms);
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TEST_CHECK(symlink_status(sym).permissions() == expected_link_perms);
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}
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}
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TEST_SUITE_END()
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