mirror of
https://github.com/google/sandboxed-api.git
synced 2024-03-22 13:11:30 +08:00
Modernize namespace_test
a little
PiperOrigin-RevId: 402795383 Change-Id: Ia576259078f40a3ca6b96094bd15c3ea7b0b79d9
This commit is contained in:
parent
1260b5f38b
commit
d85f40b8b0
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@ -19,6 +19,8 @@
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#include <syscall.h>
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#include <syscall.h>
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#include <unistd.h>
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#include <unistd.h>
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#include <initializer_list>
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#include <memory>
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#include <utility>
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#include <utility>
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#include <glog/logging.h>
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#include <glog/logging.h>
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@ -46,25 +48,36 @@ namespace file_util = ::sapi::file_util;
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using ::sapi::CreateNamedTempFile;
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using ::sapi::CreateNamedTempFile;
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using ::sapi::GetTestSourcePath;
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using ::sapi::GetTestSourcePath;
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using ::sapi::GetTestTempPath;
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using ::sapi::GetTestTempPath;
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using ::testing::Eq;
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using ::testing::Ne;
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int RunSandboxeeWithArgsAndPolicy(const std::string& sandboxee,
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std::initializer_list<std::string> args,
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std::unique_ptr<Policy> policy) {
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Sandbox2 sandbox(absl::make_unique<Executor>(sandboxee, args),
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std::move(policy));
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Result result = sandbox.Run();
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EXPECT_THAT(result.final_status(), Eq(Result::OK));
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return result.reason_code();
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}
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constexpr absl::string_view kNamespaceTestBinary =
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"sandbox2/testcases/namespace";
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constexpr absl::string_view kHostnameTestBinary = "sandbox2/testcases/hostname";
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TEST(NamespaceTest, FileNamespaceWorks) {
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TEST(NamespaceTest, FileNamespaceWorks) {
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// Mount /binary_path RO and check that it exists and is readable.
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// Mount /binary_path RO and check that it exists and is readable.
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// /etc/passwd should not exist.
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// /etc/passwd should not exist.
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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std::vector<std::string> args = {path, "0", "/binary_path", "/etc/passwd"};
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auto executor = absl::make_unique<Executor>(path, args);
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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// Don't restrict the syscalls at all
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.DangerDefaultAllowAll()
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.AddFileAt(path, "/binary_path")
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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auto result = sandbox.Run();
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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path, {path, "0", "/binary_path", "/etc/passwd"},
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ASSERT_EQ(result.final_status(), Result::OK);
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PolicyBuilder()
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EXPECT_EQ(result.reason_code(), 2);
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.DangerDefaultAllowAll() // Do not restrict syscalls
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.AddFileAt(path, "/binary_path")
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.BuildOrDie());
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EXPECT_THAT(reason_code, Eq(2));
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}
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}
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TEST(NamespaceTest, ReadOnlyIsRespected) {
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TEST(NamespaceTest, ReadOnlyIsRespected) {
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@ -72,205 +85,134 @@ TEST(NamespaceTest, ReadOnlyIsRespected) {
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auto [name, fd] = CreateNamedTempFile(GetTestTempPath("temp_file")).value();
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auto [name, fd] = CreateNamedTempFile(GetTestTempPath("temp_file")).value();
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file_util::fileops::FDCloser temp_closer(fd);
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file_util::fileops::FDCloser temp_closer(fd);
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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{
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{
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// First check that it is readable
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// Check that it is readable
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std::vector<std::string> args = {path, "0", "/temp_file"};
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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auto executor = absl::make_unique<Executor>(path, args);
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path, {path, "0", "/temp_file"},
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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PolicyBuilder()
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.DangerDefaultAllowAll() // Do not restrict syscalls
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// Don't restrict the syscalls at all
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.AddFileAt(name, "/temp_file")
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.AddFileAt(name, "/temp_file")
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EXPECT_THAT(reason_code, Eq(0));
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 0);
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}
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}
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{
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{
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// Then check that it is not writeable
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// Now check that it is not writeable
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std::vector<std::string> args = {path, "1", "/temp_file"};
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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auto executor = absl::make_unique<Executor>(path, args);
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path, {path, "1", "/temp_file"},
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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PolicyBuilder()
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.DangerDefaultAllowAll() // Do not restrict syscalls
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// Don't restrict the syscalls at all
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.AddFileAt(name, "/temp_file")
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.AddFileAt(name, "/temp_file")
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EXPECT_THAT(reason_code, Eq(1));
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 1);
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}
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}
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}
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}
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TEST(NamespaceTest, UserNamespaceWorks) {
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TEST(NamespaceTest, UserNamespaceWorks) {
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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// Check that getpid() returns 2 (which is the case inside pid NS).
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// Check that getpid() returns 2 (which is the case inside pid NS).
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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std::vector<std::string> args = {path, "2"};
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{
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{
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auto executor = absl::make_unique<Executor>(path, args);
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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path, {path, "2"},
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PolicyBuilder()
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PolicyBuilder()
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// Don't restrict the syscalls at all
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.DangerDefaultAllowAll() // Do not restrict syscalls
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.TryBuild());
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EXPECT_THAT(reason_code, Eq(0));
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 0);
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}
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}
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// Validate that getpid() does not return 2 when outside of an pid NS.
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// Validate that getpid() does not return 2 when outside of a pid NS.
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{
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{
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auto executor = absl::make_unique<Executor>(path, args);
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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path, {path, "2"},
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PolicyBuilder()
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PolicyBuilder()
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.DisableNamespaces()
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.DisableNamespaces()
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// Don't restrict the syscalls at all
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.DangerDefaultAllowAll() // Do not restrict syscalls
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.TryBuild());
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EXPECT_THAT(reason_code, Ne(0));
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_NE(result.reason_code(), 0);
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}
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}
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}
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}
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TEST(NamespaceTest, UserNamespaceIDMapWritten) {
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TEST(NamespaceTest, UserNamespaceIDMapWritten) {
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// Check that the idmap is initialized before the sandbox application is
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// Check that the idmap is initialized before the sandbox application is
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// started.
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// started.
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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{
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{
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std::vector<std::string> args = {path, "3", "1000", "1000"};
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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auto executor = absl::make_unique<Executor>(path, args);
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path, {path, "3", "1000", "1000"},
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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PolicyBuilder()
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.DangerDefaultAllowAll() // Do not restrict syscalls
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// Don't restrict the syscalls at all
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.BuildOrDie());
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.DangerDefaultAllowAll()
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EXPECT_THAT(reason_code, Eq(0));
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 0);
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}
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}
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// Check that the uid/gid is the same when not using namespaces.
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// Check that the uid/gid is the same when not using namespaces.
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{
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{
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const std::string uid = absl::StrCat(getuid());
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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const std::string gid = absl::StrCat(getgid());
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path, {path, "3", absl::StrCat(getuid()), absl::StrCat(getgid())},
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std::vector<std::string> args = {path, "3", uid, gid};
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PolicyBuilder()
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auto executor = absl::make_unique<Executor>(path, args);
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.DisableNamespaces()
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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.DangerDefaultAllowAll() // Do not restrict syscalls
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PolicyBuilder()
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.BuildOrDie());
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.DisableNamespaces()
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EXPECT_THAT(reason_code, Eq(0));
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// Don't restrict the syscalls at all
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.DangerDefaultAllowAll()
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 0);
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}
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}
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}
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}
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TEST(NamespaceTest, RootReadOnly) {
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TEST(NamespaceTest, RootReadOnly) {
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// Mount rw tmpfs at /tmp and check it is rw.
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// Mount rw tmpfs at /tmp and check it is RW.
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// Check also that / is ro.
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// Check also that / is RO.
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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std::vector<std::string> args = {path, "4", "/tmp/testfile", "/testfile"};
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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auto executor = absl::make_unique<Executor>(path, args);
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path, {path, "4", "/tmp/testfile", "/testfile"},
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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PolicyBuilder()
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.DangerDefaultAllowAll() // Do not restrict syscalls
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// Don't restrict the syscalls at all
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.AddTmpfs("/tmp", /*size=*/4ULL << 20 /* 4 MiB */)
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.AddTmpfs("/tmp")
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EXPECT_THAT(reason_code, Eq(2));
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 2);
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}
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}
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TEST(NamespaceTest, RootWritable) {
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TEST(NamespaceTest, RootWritable) {
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// Mount root rw and check it
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// Mount root rw and check it
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const std::string path = GetTestSourcePath("sandbox2/testcases/namespace");
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const std::string path = GetTestSourcePath(kNamespaceTestBinary);
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std::vector<std::string> args = {path, "4", "/testfile"};
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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auto executor = absl::make_unique<Executor>(path, args);
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path, {path, "4", "/testfile"},
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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PolicyBuilder()
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.DangerDefaultAllowAll() // Do not restrict syscalls
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// Don't restrict the syscalls at all
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.SetRootWritable()
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.DangerDefaultAllowAll()
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.BuildOrDie());
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.SetRootWritable()
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EXPECT_THAT(reason_code, Eq(0));
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.TryBuild());
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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auto result = sandbox.Run();
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_EQ(result.reason_code(), 0);
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}
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}
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class HostnameTest : public testing::Test {
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TEST(HostnameTest, None) {
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protected:
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const std::string path = GetTestSourcePath(kHostnameTestBinary);
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void Try(std::string arg, std::unique_ptr<Policy> policy) {
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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const std::string path = GetTestSourcePath("sandbox2/testcases/hostname");
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path, {path, "sandbox2"},
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std::vector<std::string> args = {path, std::move(arg)};
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PolicyBuilder()
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auto executor = absl::make_unique<Executor>(path, args);
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.DisableNamespaces()
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Sandbox2 sandbox(std::move(executor), std::move(policy));
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.DangerDefaultAllowAll() // Do not restrict syscalls
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auto result = sandbox.Run();
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.BuildOrDie());
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ASSERT_EQ(result.final_status(), Result::OK);
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EXPECT_THAT(reason_code, Eq(1));
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code_ = result.reason_code();
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}
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int code_;
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};
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TEST_F(HostnameTest, None) {
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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PolicyBuilder()
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.DisableNamespaces()
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// Don't restrict the syscalls at all
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.DangerDefaultAllowAll()
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.TryBuild());
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Try("sandbox2", std::move(policy));
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EXPECT_EQ(code_, 1);
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}
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}
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TEST_F(HostnameTest, Default) {
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TEST(HostnameTest, Default) {
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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const std::string path = GetTestSourcePath(kHostnameTestBinary);
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PolicyBuilder()
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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// Don't restrict the syscalls at all
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path, {path, "sandbox2"},
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.DangerDefaultAllowAll()
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PolicyBuilder()
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.TryBuild());
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.DangerDefaultAllowAll() // Do not restrict syscalls
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Try("sandbox2", std::move(policy));
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.BuildOrDie());
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EXPECT_EQ(code_, 0);
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EXPECT_THAT(reason_code, Eq(0));
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}
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}
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TEST_F(HostnameTest, Configured) {
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TEST(HostnameTest, Configured) {
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SAPI_ASSERT_OK_AND_ASSIGN(auto policy,
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const std::string path = GetTestSourcePath(kHostnameTestBinary);
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PolicyBuilder()
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int reason_code = RunSandboxeeWithArgsAndPolicy(
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// Don't restrict the syscalls at all
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path, {path, "configured"},
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.DangerDefaultAllowAll()
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PolicyBuilder()
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.SetHostname("configured")
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.DangerDefaultAllowAll() // Do not restrict syscalls
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.TryBuild());
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.SetHostname("configured")
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Try("configured", std::move(policy));
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.BuildOrDie());
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EXPECT_EQ(code_, 0);
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EXPECT_THAT(reason_code, Eq(0));
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}
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}
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} // namespace
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} // namespace
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