221 lines
7.8 KiB
C++
221 lines
7.8 KiB
C++
/*
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* Copyright (C) 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "adb_utils.h"
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#ifdef _WIN32
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#include <windows.h>
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#include <userenv.h>
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#endif
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#include <string>
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#include <gtest/gtest.h>
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#include <stdlib.h>
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#include <string.h>
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#include "sysdeps.h"
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#include <base/macros.h>
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#include <base/test_utils.h>
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#ifdef _WIN32
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static std::string subdir(const char* parent, const char* child) {
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std::string str(parent);
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str += OS_PATH_SEPARATOR;
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str += child;
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return str;
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}
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#endif
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TEST(adb_utils, directory_exists) {
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#ifdef _WIN32
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char profiles_dir[MAX_PATH];
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DWORD cch = arraysize(profiles_dir);
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// On typical Windows 7, returns C:\Users
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ASSERT_TRUE(GetProfilesDirectoryA(profiles_dir, &cch));
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ASSERT_TRUE(directory_exists(profiles_dir));
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// On modern (English?) Windows, this is a directory symbolic link to
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// C:\ProgramData. Symbolic links are rare on Windows and the user requires
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// a special permission (by default granted to Administrative users) to
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// create symbolic links.
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ASSERT_FALSE(directory_exists(subdir(profiles_dir, "All Users")));
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// On modern (English?) Windows, this is a directory junction to
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// C:\Users\Default. Junctions are used throughout user profile directories
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// for backwards compatibility and they don't require any special permissions
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// to create.
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ASSERT_FALSE(directory_exists(subdir(profiles_dir, "Default User")));
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ASSERT_FALSE(directory_exists(subdir(profiles_dir, "does-not-exist")));
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#else
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ASSERT_TRUE(directory_exists("/proc"));
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ASSERT_FALSE(directory_exists("/proc/self")); // Symbolic link.
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ASSERT_FALSE(directory_exists("/proc/does-not-exist"));
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#endif
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}
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TEST(adb_utils, escape_arg) {
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ASSERT_EQ(R"('')", escape_arg(""));
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ASSERT_EQ(R"('abc')", escape_arg("abc"));
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ASSERT_EQ(R"(' abc')", escape_arg(" abc"));
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ASSERT_EQ(R"(''\''abc')", escape_arg("'abc"));
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ASSERT_EQ(R"('"abc')", escape_arg("\"abc"));
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ASSERT_EQ(R"('\abc')", escape_arg("\\abc"));
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ASSERT_EQ(R"('(abc')", escape_arg("(abc"));
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ASSERT_EQ(R"(')abc')", escape_arg(")abc"));
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ASSERT_EQ(R"('abc abc')", escape_arg("abc abc"));
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ASSERT_EQ(R"('abc'\''abc')", escape_arg("abc'abc"));
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ASSERT_EQ(R"('abc"abc')", escape_arg("abc\"abc"));
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ASSERT_EQ(R"('abc\abc')", escape_arg("abc\\abc"));
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ASSERT_EQ(R"('abc(abc')", escape_arg("abc(abc"));
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ASSERT_EQ(R"('abc)abc')", escape_arg("abc)abc"));
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ASSERT_EQ(R"('abc ')", escape_arg("abc "));
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ASSERT_EQ(R"('abc'\''')", escape_arg("abc'"));
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ASSERT_EQ(R"('abc"')", escape_arg("abc\""));
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ASSERT_EQ(R"('abc\')", escape_arg("abc\\"));
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ASSERT_EQ(R"('abc(')", escape_arg("abc("));
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ASSERT_EQ(R"('abc)')", escape_arg("abc)"));
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}
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TEST(adb_utils, adb_basename) {
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EXPECT_EQ("sh", adb_basename("/system/bin/sh"));
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EXPECT_EQ("sh", adb_basename("sh"));
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}
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TEST(adb_utils, parse_host_and_port) {
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std::string canonical_address;
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std::string host;
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int port;
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std::string error;
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// Name, default port.
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port = 123;
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ASSERT_TRUE(parse_host_and_port("www.google.com", &canonical_address, &host, &port, &error));
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ASSERT_EQ("www.google.com:123", canonical_address);
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ASSERT_EQ("www.google.com", host);
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ASSERT_EQ(123, port);
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// Name, explicit port.
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ASSERT_TRUE(parse_host_and_port("www.google.com:666", &canonical_address, &host, &port, &error));
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ASSERT_EQ("www.google.com:666", canonical_address);
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ASSERT_EQ("www.google.com", host);
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ASSERT_EQ(666, port);
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// IPv4, default port.
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port = 123;
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ASSERT_TRUE(parse_host_and_port("1.2.3.4", &canonical_address, &host, &port, &error));
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ASSERT_EQ("1.2.3.4:123", canonical_address);
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ASSERT_EQ("1.2.3.4", host);
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ASSERT_EQ(123, port);
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// IPv4, explicit port.
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ASSERT_TRUE(parse_host_and_port("1.2.3.4:666", &canonical_address, &host, &port, &error));
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ASSERT_EQ("1.2.3.4:666", canonical_address);
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ASSERT_EQ("1.2.3.4", host);
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ASSERT_EQ(666, port);
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// Simple IPv6, default port.
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port = 123;
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ASSERT_TRUE(parse_host_and_port("::1", &canonical_address, &host, &port, &error));
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ASSERT_EQ("[::1]:123", canonical_address);
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ASSERT_EQ("::1", host);
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ASSERT_EQ(123, port);
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// Simple IPv6, explicit port.
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ASSERT_TRUE(parse_host_and_port("[::1]:666", &canonical_address, &host, &port, &error));
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ASSERT_EQ("[::1]:666", canonical_address);
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ASSERT_EQ("::1", host);
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ASSERT_EQ(666, port);
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// Hairy IPv6, default port.
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port = 123;
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ASSERT_TRUE(parse_host_and_port("fe80::200:5aee:feaa:20a2", &canonical_address, &host, &port, &error));
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ASSERT_EQ("[fe80::200:5aee:feaa:20a2]:123", canonical_address);
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ASSERT_EQ("fe80::200:5aee:feaa:20a2", host);
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ASSERT_EQ(123, port);
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// Simple IPv6, explicit port.
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ASSERT_TRUE(parse_host_and_port("[fe80::200:5aee:feaa:20a2]:666", &canonical_address, &host, &port, &error));
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ASSERT_EQ("[fe80::200:5aee:feaa:20a2]:666", canonical_address);
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ASSERT_EQ("fe80::200:5aee:feaa:20a2", host);
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ASSERT_EQ(666, port);
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// Invalid IPv4.
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EXPECT_FALSE(parse_host_and_port("1.2.3.4:", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("1.2.3.4::", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("1.2.3.4:hello", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port(":123", &canonical_address, &host, &port, &error));
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// Invalid IPv6.
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EXPECT_FALSE(parse_host_and_port(":1", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("::::::::1", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]:", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]::", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]:hello", &canonical_address, &host, &port, &error));
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// Invalid ports.
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EXPECT_FALSE(parse_host_and_port("[::1]:-1", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]:0", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("[::1]:65536", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("1.2.3.4:-1", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("1.2.3.4:0", &canonical_address, &host, &port, &error));
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EXPECT_FALSE(parse_host_and_port("1.2.3.4:65536", &canonical_address, &host, &port, &error));
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}
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void test_mkdirs(const std::string basepath) {
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EXPECT_TRUE(mkdirs(basepath));
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EXPECT_NE(-1, adb_creat(basepath.c_str(), 0600));
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EXPECT_FALSE(mkdirs(basepath + "/subdir/"));
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}
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TEST(adb_utils, mkdirs) {
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TemporaryDir td;
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// Absolute paths.
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test_mkdirs(std::string(td.path) + "/dir/subdir/file");
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// Relative paths.
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ASSERT_EQ(0, chdir(td.path)) << strerror(errno);
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test_mkdirs(std::string("relative/subrel/file"));
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}
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#if !defined(_WIN32)
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TEST(adb_utils, set_file_block_mode) {
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int fd = adb_open("/dev/null", O_RDWR | O_APPEND);
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ASSERT_GE(fd, 0);
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int flags = fcntl(fd, F_GETFL, 0);
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ASSERT_EQ(O_RDWR | O_APPEND, (flags & (O_RDWR | O_APPEND)));
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ASSERT_TRUE(set_file_block_mode(fd, false));
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int new_flags = fcntl(fd, F_GETFL, 0);
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ASSERT_EQ(flags | O_NONBLOCK, new_flags);
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ASSERT_TRUE(set_file_block_mode(fd, true));
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new_flags = fcntl(fd, F_GETFL, 0);
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ASSERT_EQ(flags, new_flags);
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ASSERT_EQ(0, adb_close(fd));
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}
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#endif
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