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Lorenzo Colitti89faa342016-02-26 11:38:47 +09001/*
2 * Copyright 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 *
16 * binder_test.cpp - unit tests for netd binder RPCs.
17 */
18
Robin Leeb8087362016-03-30 18:43:08 +010019#include <cerrno>
Luke Huang528af602018-08-29 19:06:05 +080020#include <chrono>
Robin Leeb8087362016-03-30 18:43:08 +010021#include <cinttypes>
Luke Huang528af602018-08-29 19:06:05 +080022#include <condition_variable>
Lorenzo Colitti89faa342016-02-26 11:38:47 +090023#include <cstdint>
Lorenzo Colittidedd2712016-03-22 12:36:29 +090024#include <cstdio>
25#include <cstdlib>
Luke Huang528af602018-08-29 19:06:05 +080026#include <mutex>
Lorenzo Colitti563d98b2016-04-24 13:13:14 +090027#include <set>
Lorenzo Colitti89faa342016-02-26 11:38:47 +090028#include <vector>
29
Luke Huangf7782042018-08-08 13:13:04 +080030#include <dirent.h>
Lorenzo Colitti755faa92016-07-27 22:10:49 +090031#include <fcntl.h>
Erik Klinecc4f2732016-08-03 11:24:27 +090032#include <ifaddrs.h>
Lorenzo Colitti755faa92016-07-27 22:10:49 +090033#include <linux/if.h>
34#include <linux/if_tun.h>
Benedict Wonga450e722018-05-07 10:29:02 -070035#include <net/if.h>
Luke Huangf7782042018-08-08 13:13:04 +080036#include <netdb.h>
37#include <netinet/in.h>
Ben Schwartze7601812017-04-28 16:38:29 -040038#include <openssl/base64.h>
Luke Huangf7782042018-08-08 13:13:04 +080039#include <sys/socket.h>
40#include <sys/types.h>
Lorenzo Colitti563d98b2016-04-24 13:13:14 +090041
Luke Huang531f5d32018-08-03 15:19:05 +080042#include <android-base/file.h>
Erik Klinecc4f2732016-08-03 11:24:27 +090043#include <android-base/macros.h>
Lorenzo Colitti89faa342016-02-26 11:38:47 +090044#include <android-base/stringprintf.h>
Lorenzo Colittidedd2712016-03-22 12:36:29 +090045#include <android-base/strings.h>
Chenbo Feng48eaed32018-12-26 17:40:21 -080046#include <bpf/BpfMap.h>
Chenbo Feng837ddfc2018-05-08 13:45:08 -070047#include <bpf/BpfUtils.h>
Robin Leeb8087362016-03-30 18:43:08 +010048#include <cutils/multiuser.h>
Lorenzo Colitti89faa342016-02-26 11:38:47 +090049#include <gtest/gtest.h>
50#include <logwrap/logwrap.h>
Chenbo Feng48eaed32018-12-26 17:40:21 -080051#include <netdbpf/bpf_shared.h>
Lorenzo Colitti755faa92016-07-27 22:10:49 +090052#include <netutils/ifc.h>
Lorenzo Colitti89faa342016-02-26 11:38:47 +090053
Nathan Harold21299f72018-03-16 20:13:03 -070054#include "InterfaceController.h"
Lorenzo Colitti89faa342016-02-26 11:38:47 +090055#include "NetdConstants.h"
Robin Lee7e05cc92016-09-21 16:31:33 +090056#include "Stopwatch.h"
Luke Huang528af602018-08-29 19:06:05 +080057#include "TestUnsolService.h"
Nathan Harold21299f72018-03-16 20:13:03 -070058#include "XfrmController.h"
Lorenzo Colitti89faa342016-02-26 11:38:47 +090059#include "android/net/INetd.h"
60#include "binder/IServiceManager.h"
Nathan Harold21299f72018-03-16 20:13:03 -070061#include "netdutils/Syscalls.h"
Mike Yu5ae61542018-10-19 22:11:43 +080062#include "tun_interface.h"
Lorenzo Colitti89faa342016-02-26 11:38:47 +090063
Lorenzo Colitti5c68b9c2017-08-10 18:50:10 +090064#define IP_PATH "/system/bin/ip"
65#define IP6TABLES_PATH "/system/bin/ip6tables"
66#define IPTABLES_PATH "/system/bin/iptables"
Lorenzo Colitti755faa92016-07-27 22:10:49 +090067#define TUN_DEV "/dev/tun"
Luke Huang0051a622018-07-23 20:30:16 +080068#define RAW_TABLE "raw"
69#define MANGLE_TABLE "mangle"
Luke Huang531f5d32018-08-03 15:19:05 +080070#define FILTER_TABLE "filter"
Luke Huang19b49c52018-10-22 12:12:05 +090071#define NAT_TABLE "nat"
Lorenzo Colitti755faa92016-07-27 22:10:49 +090072
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +090073namespace binder = android::binder;
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +090074
75using android::IBinder;
76using android::IServiceManager;
77using android::sp;
78using android::String16;
79using android::String8;
80using android::base::Join;
Luke Huang531f5d32018-08-03 15:19:05 +080081using android::base::ReadFileToString;
Lorenzo Colittiaff28792017-09-26 17:46:18 +090082using android::base::StartsWith;
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +090083using android::base::StringPrintf;
Luke Huang531f5d32018-08-03 15:19:05 +080084using android::base::Trim;
Lorenzo Colitti89faa342016-02-26 11:38:47 +090085using android::net::INetd;
Luke Huangf7782042018-08-08 13:13:04 +080086using android::net::InterfaceConfigurationParcel;
87using android::net::InterfaceController;
Luke Huangcaebcbb2018-09-27 20:37:14 +080088using android::net::TetherStatsParcel;
Lorenzo Colitti1e299c62017-02-27 17:16:10 +090089using android::net::TunInterface;
Luke Huang94658ac2018-10-18 19:35:12 +090090using android::net::UidRangeParcel;
Luke Huangf7782042018-08-08 13:13:04 +080091using android::netdutils::sSyscalls;
Robin Leeb8087362016-03-30 18:43:08 +010092
93static const char* IP_RULE_V4 = "-4";
94static const char* IP_RULE_V6 = "-6";
Lorenzo Colittid33e96d2016-12-15 23:59:01 +090095static const int TEST_NETID1 = 65501;
96static const int TEST_NETID2 = 65502;
Chenbo Feng48eaed32018-12-26 17:40:21 -080097
98// Use maximum reserved appId for applications to avoid conflict with existing
99// uids.
100static const int TEST_UID1 = 99999;
101static const int TEST_UID2 = 99998;
102
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900103constexpr int BASE_UID = AID_USER_OFFSET * 5;
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900104
Benedict Wongb2daefb2017-12-06 22:05:46 -0800105static const std::string NO_SOCKET_ALLOW_RULE("! owner UID match 0-4294967294");
106static const std::string ESP_ALLOW_RULE("esp");
107
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900108class BinderTest : public ::testing::Test {
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900109 public:
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900110 BinderTest() {
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900111 sp<IServiceManager> sm = android::defaultServiceManager();
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900112 sp<IBinder> binder = sm->getService(String16("netd"));
113 if (binder != nullptr) {
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900114 mNetd = android::interface_cast<INetd>(binder);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900115 }
116 }
117
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900118 void SetUp() override {
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900119 ASSERT_NE(nullptr, mNetd.get());
120 }
121
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900122 void TearDown() override {
123 mNetd->networkDestroy(TEST_NETID1);
124 mNetd->networkDestroy(TEST_NETID2);
125 }
126
Bernie Innocenti6f9fd902018-10-11 20:50:23 +0900127 bool allocateIpSecResources(bool expectOk, int32_t* spi);
Nathan Harold21299f72018-03-16 20:13:03 -0700128
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900129 // Static because setting up the tun interface takes about 40ms.
130 static void SetUpTestCase() {
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900131 ASSERT_EQ(0, sTun.init());
Luke Huang19b49c52018-10-22 12:12:05 +0900132 ASSERT_EQ(0, sTun2.init());
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900133 ASSERT_LE(sTun.name().size(), static_cast<size_t>(IFNAMSIZ));
Luke Huang19b49c52018-10-22 12:12:05 +0900134 ASSERT_LE(sTun2.name().size(), static_cast<size_t>(IFNAMSIZ));
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900135 }
136
137 static void TearDownTestCase() {
138 // Closing the socket removes the interface and IP addresses.
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900139 sTun.destroy();
Luke Huang19b49c52018-10-22 12:12:05 +0900140 sTun2.destroy();
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900141 }
142
143 static void fakeRemoteSocketPair(int *clientSocket, int *serverSocket, int *acceptedSocket);
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900144
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900145 protected:
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900146 sp<INetd> mNetd;
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900147 static TunInterface sTun;
Luke Huang19b49c52018-10-22 12:12:05 +0900148 static TunInterface sTun2;
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900149};
150
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900151TunInterface BinderTest::sTun;
Luke Huang19b49c52018-10-22 12:12:05 +0900152TunInterface BinderTest::sTun2;
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900153
Lorenzo Colitti699aa992016-04-15 10:22:37 +0900154class TimedOperation : public Stopwatch {
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900155 public:
Chih-Hung Hsieh18051052016-05-06 10:36:13 -0700156 explicit TimedOperation(const std::string &name): mName(name) {}
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900157 virtual ~TimedOperation() {
Lorenzo Colitti699aa992016-04-15 10:22:37 +0900158 fprintf(stderr, " %s: %6.1f ms\n", mName.c_str(), timeTaken());
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900159 }
160
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900161 private:
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900162 std::string mName;
163};
164
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900165TEST_F(BinderTest, IsAlive) {
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900166 TimedOperation t("isAlive RPC");
167 bool isAlive = false;
168 mNetd->isAlive(&isAlive);
169 ASSERT_TRUE(isAlive);
170}
171
172static int randomUid() {
173 return 100000 * arc4random_uniform(7) + 10000 + arc4random_uniform(5000);
174}
175
Robin Leeb8087362016-03-30 18:43:08 +0100176static std::vector<std::string> runCommand(const std::string& command) {
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900177 std::vector<std::string> lines;
Bernie Innocentif6918262018-06-11 17:37:35 +0900178 FILE *f = popen(command.c_str(), "r"); // NOLINT(cert-env33-c)
179 if (f == nullptr) {
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900180 perror("popen");
181 return lines;
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900182 }
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900183
184 char *line = nullptr;
Robin Leeb8087362016-03-30 18:43:08 +0100185 size_t bufsize = 0;
186 ssize_t linelen = 0;
187 while ((linelen = getline(&line, &bufsize, f)) >= 0) {
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900188 lines.push_back(std::string(line, linelen));
189 free(line);
190 line = nullptr;
191 }
192
193 pclose(f);
194 return lines;
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900195}
196
Robin Leeb8087362016-03-30 18:43:08 +0100197static std::vector<std::string> listIpRules(const char *ipVersion) {
198 std::string command = StringPrintf("%s %s rule list", IP_PATH, ipVersion);
199 return runCommand(command);
200}
201
202static std::vector<std::string> listIptablesRule(const char *binary, const char *chainName) {
Lorenzo Colitti80545772016-06-09 14:20:08 +0900203 std::string command = StringPrintf("%s -w -n -L %s", binary, chainName);
Robin Leeb8087362016-03-30 18:43:08 +0100204 return runCommand(command);
205}
206
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900207static int iptablesRuleLineLength(const char *binary, const char *chainName) {
208 return listIptablesRule(binary, chainName).size();
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900209}
210
Benedict Wongb2daefb2017-12-06 22:05:46 -0800211static bool iptablesRuleExists(const char *binary,
212 const char *chainName,
Bernie Innocentif6918262018-06-11 17:37:35 +0900213 const std::string& expectedRule) {
Benedict Wongb2daefb2017-12-06 22:05:46 -0800214 std::vector<std::string> rules = listIptablesRule(binary, chainName);
Bernie Innocentif6918262018-06-11 17:37:35 +0900215 for (const auto& rule : rules) {
Benedict Wongb2daefb2017-12-06 22:05:46 -0800216 if(rule.find(expectedRule) != std::string::npos) {
217 return true;
218 }
219 }
220 return false;
221}
222
223static bool iptablesNoSocketAllowRuleExists(const char *chainName){
224 return iptablesRuleExists(IPTABLES_PATH, chainName, NO_SOCKET_ALLOW_RULE) &&
225 iptablesRuleExists(IP6TABLES_PATH, chainName, NO_SOCKET_ALLOW_RULE);
226}
227
228static bool iptablesEspAllowRuleExists(const char *chainName){
229 return iptablesRuleExists(IPTABLES_PATH, chainName, ESP_ALLOW_RULE) &&
230 iptablesRuleExists(IP6TABLES_PATH, chainName, ESP_ALLOW_RULE);
231}
232
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900233TEST_F(BinderTest, FirewallReplaceUidChain) {
Chenbo Feng837ddfc2018-05-08 13:45:08 -0700234 SKIP_IF_BPF_SUPPORTED;
235
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900236 std::string chainName = StringPrintf("netd_binder_test_%u", arc4random_uniform(10000));
237 const int kNumUids = 500;
238 std::vector<int32_t> noUids(0);
239 std::vector<int32_t> uids(kNumUids);
240 for (int i = 0; i < kNumUids; i++) {
241 uids[i] = randomUid();
242 }
243
244 bool ret;
245 {
246 TimedOperation op(StringPrintf("Programming %d-UID whitelist chain", kNumUids));
Erik Klinef52d4522018-03-14 15:01:46 +0900247 mNetd->firewallReplaceUidChain(chainName, true, uids, &ret);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900248 }
249 EXPECT_EQ(true, ret);
Benedict Wongb2daefb2017-12-06 22:05:46 -0800250 EXPECT_EQ((int) uids.size() + 9, iptablesRuleLineLength(IPTABLES_PATH, chainName.c_str()));
251 EXPECT_EQ((int) uids.size() + 15, iptablesRuleLineLength(IP6TABLES_PATH, chainName.c_str()));
252 EXPECT_EQ(true, iptablesNoSocketAllowRuleExists(chainName.c_str()));
253 EXPECT_EQ(true, iptablesEspAllowRuleExists(chainName.c_str()));
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900254 {
255 TimedOperation op("Clearing whitelist chain");
Erik Klinef52d4522018-03-14 15:01:46 +0900256 mNetd->firewallReplaceUidChain(chainName, false, noUids, &ret);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900257 }
258 EXPECT_EQ(true, ret);
Lorenzo Colitti50b198a2017-03-30 02:50:09 +0900259 EXPECT_EQ(5, iptablesRuleLineLength(IPTABLES_PATH, chainName.c_str()));
260 EXPECT_EQ(5, iptablesRuleLineLength(IP6TABLES_PATH, chainName.c_str()));
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900261
262 {
263 TimedOperation op(StringPrintf("Programming %d-UID blacklist chain", kNumUids));
Erik Klinef52d4522018-03-14 15:01:46 +0900264 mNetd->firewallReplaceUidChain(chainName, false, uids, &ret);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900265 }
266 EXPECT_EQ(true, ret);
Lorenzo Colitti50b198a2017-03-30 02:50:09 +0900267 EXPECT_EQ((int) uids.size() + 5, iptablesRuleLineLength(IPTABLES_PATH, chainName.c_str()));
268 EXPECT_EQ((int) uids.size() + 5, iptablesRuleLineLength(IP6TABLES_PATH, chainName.c_str()));
Benedict Wongb2daefb2017-12-06 22:05:46 -0800269 EXPECT_EQ(false, iptablesNoSocketAllowRuleExists(chainName.c_str()));
270 EXPECT_EQ(false, iptablesEspAllowRuleExists(chainName.c_str()));
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900271
272 {
273 TimedOperation op("Clearing blacklist chain");
Erik Klinef52d4522018-03-14 15:01:46 +0900274 mNetd->firewallReplaceUidChain(chainName, false, noUids, &ret);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900275 }
276 EXPECT_EQ(true, ret);
Lorenzo Colitti50b198a2017-03-30 02:50:09 +0900277 EXPECT_EQ(5, iptablesRuleLineLength(IPTABLES_PATH, chainName.c_str()));
278 EXPECT_EQ(5, iptablesRuleLineLength(IP6TABLES_PATH, chainName.c_str()));
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900279
280 // Check that the call fails if iptables returns an error.
281 std::string veryLongStringName = "netd_binder_test_UnacceptablyLongIptablesChainName";
Erik Klinef52d4522018-03-14 15:01:46 +0900282 mNetd->firewallReplaceUidChain(veryLongStringName, true, noUids, &ret);
Lorenzo Colitti89faa342016-02-26 11:38:47 +0900283 EXPECT_EQ(false, ret);
284}
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900285
Benedict Wong319f17e2018-05-15 17:06:44 -0700286TEST_F(BinderTest, IpSecTunnelInterface) {
George Burgess IVc4a6d272018-05-21 14:41:57 -0700287 const struct TestData {
288 const std::string family;
289 const std::string deviceName;
290 const std::string localAddress;
291 const std::string remoteAddress;
manojboopathi8707f232018-01-02 14:45:47 -0800292 int32_t iKey;
293 int32_t oKey;
Benedict Wonga450e722018-05-07 10:29:02 -0700294 int32_t ifId;
manojboopathi8707f232018-01-02 14:45:47 -0800295 } kTestData[] = {
Benedict Wonga450e722018-05-07 10:29:02 -0700296 {"IPV4", "ipsec_test", "127.0.0.1", "8.8.8.8", 0x1234 + 53, 0x1234 + 53, 0xFFFE},
297 {"IPV6", "ipsec_test6", "::1", "2001:4860:4860::8888", 0x1234 + 50, 0x1234 + 50,
298 0xFFFE},
manojboopathi8707f232018-01-02 14:45:47 -0800299 };
300
Sehee Park8659b8d2018-11-16 10:53:16 +0900301 for (size_t i = 0; i < std::size(kTestData); i++) {
Nathan Harold21299f72018-03-16 20:13:03 -0700302 const auto& td = kTestData[i];
manojboopathi8707f232018-01-02 14:45:47 -0800303
304 binder::Status status;
305
Benedict Wong319f17e2018-05-15 17:06:44 -0700306 // Create Tunnel Interface.
307 status = mNetd->ipSecAddTunnelInterface(td.deviceName, td.localAddress, td.remoteAddress,
Benedict Wonga450e722018-05-07 10:29:02 -0700308 td.iKey, td.oKey, td.ifId);
manojboopathi8707f232018-01-02 14:45:47 -0800309 EXPECT_TRUE(status.isOk()) << td.family << status.exceptionMessage();
310
Benedict Wonga450e722018-05-07 10:29:02 -0700311 // Check that the interface exists
Sehee Park8659b8d2018-11-16 10:53:16 +0900312 EXPECT_NE(0U, if_nametoindex(td.deviceName.c_str()));
Benedict Wonga450e722018-05-07 10:29:02 -0700313
Benedict Wong319f17e2018-05-15 17:06:44 -0700314 // Update Tunnel Interface.
315 status = mNetd->ipSecUpdateTunnelInterface(td.deviceName, td.localAddress, td.remoteAddress,
Benedict Wonga450e722018-05-07 10:29:02 -0700316 td.iKey, td.oKey, td.ifId);
manojboopathi8707f232018-01-02 14:45:47 -0800317 EXPECT_TRUE(status.isOk()) << td.family << status.exceptionMessage();
318
Benedict Wong319f17e2018-05-15 17:06:44 -0700319 // Remove Tunnel Interface.
320 status = mNetd->ipSecRemoveTunnelInterface(td.deviceName);
manojboopathi8707f232018-01-02 14:45:47 -0800321 EXPECT_TRUE(status.isOk()) << td.family << status.exceptionMessage();
Benedict Wonga450e722018-05-07 10:29:02 -0700322
323 // Check that the interface no longer exists
Sehee Park8659b8d2018-11-16 10:53:16 +0900324 EXPECT_EQ(0U, if_nametoindex(td.deviceName.c_str()));
manojboopathi8707f232018-01-02 14:45:47 -0800325 }
326}
327
Benedict Wong1cb73df2018-12-03 00:54:14 -0800328TEST_F(BinderTest, IpSecSetEncapSocketOwner) {
329 android::base::unique_fd uniqueFd(socket(AF_INET, SOCK_DGRAM | SOCK_CLOEXEC, 0));
330 android::os::ParcelFileDescriptor sockFd(std::move(uniqueFd));
331
332 int sockOptVal = UDP_ENCAP_ESPINUDP;
333 setsockopt(sockFd.get(), IPPROTO_UDP, UDP_ENCAP, &sockOptVal, sizeof(sockOptVal));
334
335 binder::Status res = mNetd->ipSecSetEncapSocketOwner(sockFd, 1001);
336 EXPECT_TRUE(res.isOk());
337
338 struct stat info;
339 EXPECT_EQ(0, fstat(sockFd.get(), &info));
340 EXPECT_EQ(1001, (int) info.st_uid);
341}
342
Nathan Harold2deff322018-05-10 14:03:48 -0700343// IPsec tests are not run in 32 bit mode; both 32-bit kernels and
344// mismatched ABIs (64-bit kernel with 32-bit userspace) are unsupported.
345#if INTPTR_MAX != INT32_MAX
Bernie Innocentia5161a02019-01-30 22:40:53 +0900346
347using android::net::XfrmController;
348
Benedict Wonga04ffa72018-05-09 21:42:42 -0700349static const int XFRM_DIRECTIONS[] = {static_cast<int>(android::net::XfrmDirection::IN),
350 static_cast<int>(android::net::XfrmDirection::OUT)};
351static const int ADDRESS_FAMILIES[] = {AF_INET, AF_INET6};
352
Nathan Harold21299f72018-03-16 20:13:03 -0700353#define RETURN_FALSE_IF_NEQ(_expect_, _ret_) \
354 do { if ((_expect_) != (_ret_)) return false; } while(false)
Bernie Innocenti6f9fd902018-10-11 20:50:23 +0900355bool BinderTest::allocateIpSecResources(bool expectOk, int32_t* spi) {
Bernie Innocentia5161a02019-01-30 22:40:53 +0900356 android::netdutils::Status status = XfrmController::ipSecAllocateSpi(0, "::", "::1", 123, spi);
Nathan Harold21299f72018-03-16 20:13:03 -0700357 SCOPED_TRACE(status);
358 RETURN_FALSE_IF_NEQ(status.ok(), expectOk);
359
360 // Add a policy
Benedict Wonga450e722018-05-07 10:29:02 -0700361 status = XfrmController::ipSecAddSecurityPolicy(0, AF_INET6, 0, "::", "::1", 123, 0, 0, 0);
Nathan Harold21299f72018-03-16 20:13:03 -0700362 SCOPED_TRACE(status);
363 RETURN_FALSE_IF_NEQ(status.ok(), expectOk);
364
365 // Add an ipsec interface
Benedict Wonga450e722018-05-07 10:29:02 -0700366 return expectOk == XfrmController::ipSecAddTunnelInterface("ipsec_test", "::", "::1", 0xF00D,
367 0xD00D, 0xE00D, false)
368 .ok();
Nathan Harold21299f72018-03-16 20:13:03 -0700369}
370
Benedict Wonga04ffa72018-05-09 21:42:42 -0700371TEST_F(BinderTest, XfrmDualSelectorTunnelModePoliciesV4) {
Bernie Innocentia5161a02019-01-30 22:40:53 +0900372 android::binder::Status status;
Benedict Wonga04ffa72018-05-09 21:42:42 -0700373
374 // Repeat to ensure cleanup and recreation works correctly
375 for (int i = 0; i < 2; i++) {
376 for (int direction : XFRM_DIRECTIONS) {
377 for (int addrFamily : ADDRESS_FAMILIES) {
378 status = mNetd->ipSecAddSecurityPolicy(0, addrFamily, direction, "127.0.0.5",
Benedict Wonga450e722018-05-07 10:29:02 -0700379 "127.0.0.6", 123, 0, 0, 0);
Benedict Wonga04ffa72018-05-09 21:42:42 -0700380 EXPECT_TRUE(status.isOk())
381 << " family: " << addrFamily << " direction: " << direction;
382 }
383 }
384
385 // Cleanup
386 for (int direction : XFRM_DIRECTIONS) {
387 for (int addrFamily : ADDRESS_FAMILIES) {
Benedict Wonga450e722018-05-07 10:29:02 -0700388 status = mNetd->ipSecDeleteSecurityPolicy(0, addrFamily, direction, 0, 0, 0);
Benedict Wonga04ffa72018-05-09 21:42:42 -0700389 EXPECT_TRUE(status.isOk());
390 }
391 }
392 }
393}
394
395TEST_F(BinderTest, XfrmDualSelectorTunnelModePoliciesV6) {
396 binder::Status status;
397
398 // Repeat to ensure cleanup and recreation works correctly
399 for (int i = 0; i < 2; i++) {
400 for (int direction : XFRM_DIRECTIONS) {
401 for (int addrFamily : ADDRESS_FAMILIES) {
402 status = mNetd->ipSecAddSecurityPolicy(0, addrFamily, direction, "2001:db8::f00d",
Benedict Wonga450e722018-05-07 10:29:02 -0700403 "2001:db8::d00d", 123, 0, 0, 0);
Benedict Wonga04ffa72018-05-09 21:42:42 -0700404 EXPECT_TRUE(status.isOk())
405 << " family: " << addrFamily << " direction: " << direction;
406 }
407 }
408
409 // Cleanup
410 for (int direction : XFRM_DIRECTIONS) {
411 for (int addrFamily : ADDRESS_FAMILIES) {
Benedict Wonga450e722018-05-07 10:29:02 -0700412 status = mNetd->ipSecDeleteSecurityPolicy(0, addrFamily, direction, 0, 0, 0);
Benedict Wonga04ffa72018-05-09 21:42:42 -0700413 EXPECT_TRUE(status.isOk());
414 }
415 }
416 }
417}
418
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900419TEST_F(BinderTest, XfrmControllerInit) {
Bernie Innocentia5161a02019-01-30 22:40:53 +0900420 android::netdutils::Status status;
Nathan Harold21299f72018-03-16 20:13:03 -0700421 status = XfrmController::Init();
422 SCOPED_TRACE(status);
Nathan Harold2deff322018-05-10 14:03:48 -0700423
424 // Older devices or devices with mismatched Kernel/User ABI cannot support the IPsec
425 // feature.
426 if (status.code() == EOPNOTSUPP) return;
427
Nathan Harold21299f72018-03-16 20:13:03 -0700428 ASSERT_TRUE(status.ok());
429
430 int32_t spi = 0;
431
432 ASSERT_TRUE(allocateIpSecResources(true, &spi));
433 ASSERT_TRUE(allocateIpSecResources(false, &spi));
434
435 status = XfrmController::Init();
Nathan Harold39ad6622018-04-25 12:56:56 -0700436 ASSERT_TRUE(status.ok());
Nathan Harold21299f72018-03-16 20:13:03 -0700437 ASSERT_TRUE(allocateIpSecResources(true, &spi));
438
439 // Clean up
Benedict Wonga450e722018-05-07 10:29:02 -0700440 status = XfrmController::ipSecDeleteSecurityAssociation(0, "::", "::1", 123, spi, 0, 0);
Nathan Harold21299f72018-03-16 20:13:03 -0700441 SCOPED_TRACE(status);
442 ASSERT_TRUE(status.ok());
443
Benedict Wonga450e722018-05-07 10:29:02 -0700444 status = XfrmController::ipSecDeleteSecurityPolicy(0, AF_INET6, 0, 0, 0, 0);
Nathan Harold21299f72018-03-16 20:13:03 -0700445 SCOPED_TRACE(status);
446 ASSERT_TRUE(status.ok());
447
448 // Remove Virtual Tunnel Interface.
Benedict Wong319f17e2018-05-15 17:06:44 -0700449 ASSERT_TRUE(XfrmController::ipSecRemoveTunnelInterface("ipsec_test").ok());
Nathan Harold21299f72018-03-16 20:13:03 -0700450}
Bernie Innocentia5161a02019-01-30 22:40:53 +0900451
452#endif // INTPTR_MAX != INT32_MAX
Nathan Harold21299f72018-03-16 20:13:03 -0700453
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900454static int bandwidthDataSaverEnabled(const char *binary) {
Lorenzo Colitti464eabe2016-03-25 13:38:19 +0900455 std::vector<std::string> lines = listIptablesRule(binary, "bw_data_saver");
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900456
457 // Output looks like this:
458 //
Lorenzo Colitti464eabe2016-03-25 13:38:19 +0900459 // Chain bw_data_saver (1 references)
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900460 // target prot opt source destination
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900461 // RETURN all -- 0.0.0.0/0 0.0.0.0/0
Lorenzo Colittiaff28792017-09-26 17:46:18 +0900462 //
463 // or:
464 //
465 // Chain bw_data_saver (1 references)
466 // target prot opt source destination
467 // ... possibly connectivity critical packet rules here ...
468 // REJECT all -- ::/0 ::/0
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900469
Lorenzo Colittiaff28792017-09-26 17:46:18 +0900470 EXPECT_GE(lines.size(), 3U);
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900471
Lorenzo Colittiaff28792017-09-26 17:46:18 +0900472 if (lines.size() == 3 && StartsWith(lines[2], "RETURN ")) {
473 // Data saver disabled.
474 return 0;
475 }
476
477 size_t minSize = (std::string(binary) == IPTABLES_PATH) ? 3 : 9;
478
479 if (lines.size() >= minSize && StartsWith(lines[lines.size() -1], "REJECT ")) {
480 // Data saver enabled.
481 return 1;
482 }
483
484 return -1;
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900485}
486
487bool enableDataSaver(sp<INetd>& netd, bool enable) {
488 TimedOperation op(enable ? " Enabling data saver" : "Disabling data saver");
489 bool ret;
490 netd->bandwidthEnableDataSaver(enable, &ret);
491 return ret;
492}
493
494int getDataSaverState() {
495 const int enabled4 = bandwidthDataSaverEnabled(IPTABLES_PATH);
496 const int enabled6 = bandwidthDataSaverEnabled(IP6TABLES_PATH);
497 EXPECT_EQ(enabled4, enabled6);
498 EXPECT_NE(-1, enabled4);
499 EXPECT_NE(-1, enabled6);
500 if (enabled4 != enabled6 || (enabled6 != 0 && enabled6 != 1)) {
501 return -1;
502 }
503 return enabled6;
504}
505
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900506TEST_F(BinderTest, BandwidthEnableDataSaver) {
Lorenzo Colittidedd2712016-03-22 12:36:29 +0900507 const int wasEnabled = getDataSaverState();
508 ASSERT_NE(-1, wasEnabled);
509
510 if (wasEnabled) {
511 ASSERT_TRUE(enableDataSaver(mNetd, false));
512 EXPECT_EQ(0, getDataSaverState());
513 }
514
515 ASSERT_TRUE(enableDataSaver(mNetd, false));
516 EXPECT_EQ(0, getDataSaverState());
517
518 ASSERT_TRUE(enableDataSaver(mNetd, true));
519 EXPECT_EQ(1, getDataSaverState());
520
521 ASSERT_TRUE(enableDataSaver(mNetd, true));
522 EXPECT_EQ(1, getDataSaverState());
523
524 if (!wasEnabled) {
525 ASSERT_TRUE(enableDataSaver(mNetd, false));
526 EXPECT_EQ(0, getDataSaverState());
527 }
528}
Robin Leeb8087362016-03-30 18:43:08 +0100529
Luke Huang94658ac2018-10-18 19:35:12 +0900530static bool ipRuleExistsForRange(const uint32_t priority, const UidRangeParcel& range,
531 const std::string& action, const char* ipVersion) {
Robin Leeb8087362016-03-30 18:43:08 +0100532 // Output looks like this:
Robin Lee6c84ef62016-05-03 13:17:58 +0100533 // "12500:\tfrom all fwmark 0x0/0x20000 iif lo uidrange 1000-2000 prohibit"
Robin Leeb8087362016-03-30 18:43:08 +0100534 std::vector<std::string> rules = listIpRules(ipVersion);
535
536 std::string prefix = StringPrintf("%" PRIu32 ":", priority);
Luke Huang94658ac2018-10-18 19:35:12 +0900537 std::string suffix =
538 StringPrintf(" iif lo uidrange %d-%d %s\n", range.start, range.stop, action.c_str());
Bernie Innocentif6918262018-06-11 17:37:35 +0900539 for (const auto& line : rules) {
Elliott Hughes2f445082017-12-20 12:39:35 -0800540 if (android::base::StartsWith(line, prefix) && android::base::EndsWith(line, suffix)) {
Robin Leeb8087362016-03-30 18:43:08 +0100541 return true;
542 }
543 }
544 return false;
545}
546
Luke Huang94658ac2018-10-18 19:35:12 +0900547static bool ipRuleExistsForRange(const uint32_t priority, const UidRangeParcel& range,
548 const std::string& action) {
Robin Leeb8087362016-03-30 18:43:08 +0100549 bool existsIp4 = ipRuleExistsForRange(priority, range, action, IP_RULE_V4);
550 bool existsIp6 = ipRuleExistsForRange(priority, range, action, IP_RULE_V6);
551 EXPECT_EQ(existsIp4, existsIp6);
552 return existsIp4;
553}
554
Luke Huang94658ac2018-10-18 19:35:12 +0900555namespace {
556
557UidRangeParcel makeUidRangeParcel(int start, int stop) {
558 UidRangeParcel res;
559 res.start = start;
560 res.stop = stop;
561
562 return res;
563}
564
565} // namespace
566
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900567TEST_F(BinderTest, NetworkInterfaces) {
Luke Huangb670d162018-08-23 20:01:13 +0800568 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
569 EXPECT_EQ(EEXIST, mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE)
570 .serviceSpecificErrorCode());
cken67cd14c2018-12-05 17:26:59 +0900571 EXPECT_EQ(EEXIST, mNetd->networkCreateVpn(TEST_NETID1, true).serviceSpecificErrorCode());
572 EXPECT_TRUE(mNetd->networkCreateVpn(TEST_NETID2, true).isOk());
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900573
574 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
575 EXPECT_EQ(EBUSY,
576 mNetd->networkAddInterface(TEST_NETID2, sTun.name()).serviceSpecificErrorCode());
577
578 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
579 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID2, sTun.name()).isOk());
580 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID2).isOk());
Luke Huangb670d162018-08-23 20:01:13 +0800581 EXPECT_EQ(ENONET, mNetd->networkDestroy(TEST_NETID1).serviceSpecificErrorCode());
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900582}
583
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900584TEST_F(BinderTest, NetworkUidRules) {
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900585 const uint32_t RULE_PRIORITY_SECURE_VPN = 12000;
586
cken67cd14c2018-12-05 17:26:59 +0900587 EXPECT_TRUE(mNetd->networkCreateVpn(TEST_NETID1, true).isOk());
588 EXPECT_EQ(EEXIST, mNetd->networkCreateVpn(TEST_NETID1, true).serviceSpecificErrorCode());
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900589 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
590
Luke Huang94658ac2018-10-18 19:35:12 +0900591 std::vector<UidRangeParcel> uidRanges = {makeUidRangeParcel(BASE_UID + 8005, BASE_UID + 8012),
592 makeUidRangeParcel(BASE_UID + 8090, BASE_UID + 8099)};
593 UidRangeParcel otherRange = makeUidRangeParcel(BASE_UID + 8190, BASE_UID + 8299);
Lorenzo Colittid33e96d2016-12-15 23:59:01 +0900594 std::string suffix = StringPrintf("lookup %s ", sTun.name().c_str());
595
596 EXPECT_TRUE(mNetd->networkAddUidRanges(TEST_NETID1, uidRanges).isOk());
597
598 EXPECT_TRUE(ipRuleExistsForRange(RULE_PRIORITY_SECURE_VPN, uidRanges[0], suffix));
599 EXPECT_FALSE(ipRuleExistsForRange(RULE_PRIORITY_SECURE_VPN, otherRange, suffix));
600 EXPECT_TRUE(mNetd->networkRemoveUidRanges(TEST_NETID1, uidRanges).isOk());
601 EXPECT_FALSE(ipRuleExistsForRange(RULE_PRIORITY_SECURE_VPN, uidRanges[0], suffix));
602
603 EXPECT_TRUE(mNetd->networkAddUidRanges(TEST_NETID1, uidRanges).isOk());
604 EXPECT_TRUE(ipRuleExistsForRange(RULE_PRIORITY_SECURE_VPN, uidRanges[1], suffix));
605 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
606 EXPECT_FALSE(ipRuleExistsForRange(RULE_PRIORITY_SECURE_VPN, uidRanges[1], suffix));
607
608 EXPECT_EQ(ENONET, mNetd->networkDestroy(TEST_NETID1).serviceSpecificErrorCode());
609}
610
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900611TEST_F(BinderTest, NetworkRejectNonSecureVpn) {
Robin Lee6c84ef62016-05-03 13:17:58 +0100612 constexpr uint32_t RULE_PRIORITY = 12500;
Robin Leeb8087362016-03-30 18:43:08 +0100613
Luke Huang94658ac2018-10-18 19:35:12 +0900614 std::vector<UidRangeParcel> uidRanges = {makeUidRangeParcel(BASE_UID + 150, BASE_UID + 224),
615 makeUidRangeParcel(BASE_UID + 226, BASE_UID + 300)};
Robin Leeb8087362016-03-30 18:43:08 +0100616
617 const std::vector<std::string> initialRulesV4 = listIpRules(IP_RULE_V4);
618 const std::vector<std::string> initialRulesV6 = listIpRules(IP_RULE_V6);
619
620 // Create two valid rules.
621 ASSERT_TRUE(mNetd->networkRejectNonSecureVpn(true, uidRanges).isOk());
622 EXPECT_EQ(initialRulesV4.size() + 2, listIpRules(IP_RULE_V4).size());
623 EXPECT_EQ(initialRulesV6.size() + 2, listIpRules(IP_RULE_V6).size());
624 for (auto const& range : uidRanges) {
625 EXPECT_TRUE(ipRuleExistsForRange(RULE_PRIORITY, range, "prohibit"));
626 }
627
628 // Remove the rules.
629 ASSERT_TRUE(mNetd->networkRejectNonSecureVpn(false, uidRanges).isOk());
630 EXPECT_EQ(initialRulesV4.size(), listIpRules(IP_RULE_V4).size());
631 EXPECT_EQ(initialRulesV6.size(), listIpRules(IP_RULE_V6).size());
632 for (auto const& range : uidRanges) {
633 EXPECT_FALSE(ipRuleExistsForRange(RULE_PRIORITY, range, "prohibit"));
634 }
635
636 // Fail to remove the rules a second time after they are already deleted.
637 binder::Status status = mNetd->networkRejectNonSecureVpn(false, uidRanges);
638 ASSERT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
639 EXPECT_EQ(ENOENT, status.serviceSpecificErrorCode());
640
641 // All rules should be the same as before.
642 EXPECT_EQ(initialRulesV4, listIpRules(IP_RULE_V4));
643 EXPECT_EQ(initialRulesV6, listIpRules(IP_RULE_V6));
644}
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900645
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900646// Create a socket pair that isLoopbackSocket won't think is local.
647void BinderTest::fakeRemoteSocketPair(int *clientSocket, int *serverSocket, int *acceptedSocket) {
Bernie Innocentif6918262018-06-11 17:37:35 +0900648 *serverSocket = socket(AF_INET6, SOCK_STREAM | SOCK_CLOEXEC, 0);
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900649 struct sockaddr_in6 server6 = { .sin6_family = AF_INET6, .sin6_addr = sTun.dstAddr() };
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900650 ASSERT_EQ(0, bind(*serverSocket, (struct sockaddr *) &server6, sizeof(server6)));
651
652 socklen_t addrlen = sizeof(server6);
653 ASSERT_EQ(0, getsockname(*serverSocket, (struct sockaddr *) &server6, &addrlen));
654 ASSERT_EQ(0, listen(*serverSocket, 10));
655
Bernie Innocentif6918262018-06-11 17:37:35 +0900656 *clientSocket = socket(AF_INET6, SOCK_STREAM | SOCK_CLOEXEC, 0);
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900657 struct sockaddr_in6 client6 = { .sin6_family = AF_INET6, .sin6_addr = sTun.srcAddr() };
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900658 ASSERT_EQ(0, bind(*clientSocket, (struct sockaddr *) &client6, sizeof(client6)));
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900659 ASSERT_EQ(0, connect(*clientSocket, (struct sockaddr *) &server6, sizeof(server6)));
660 ASSERT_EQ(0, getsockname(*clientSocket, (struct sockaddr *) &client6, &addrlen));
661
Bernie Innocentif6918262018-06-11 17:37:35 +0900662 *acceptedSocket = accept4(*serverSocket, (struct sockaddr *) &server6, &addrlen, SOCK_CLOEXEC);
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900663 ASSERT_NE(-1, *acceptedSocket);
664
665 ASSERT_EQ(0, memcmp(&client6, &server6, sizeof(client6)));
666}
667
668void checkSocketpairOpen(int clientSocket, int acceptedSocket) {
669 char buf[4096];
670 EXPECT_EQ(4, write(clientSocket, "foo", sizeof("foo")));
671 EXPECT_EQ(4, read(acceptedSocket, buf, sizeof(buf)));
672 EXPECT_EQ(0, memcmp(buf, "foo", sizeof("foo")));
673}
674
675void checkSocketpairClosed(int clientSocket, int acceptedSocket) {
676 // Check that the client socket was closed with ECONNABORTED.
677 int ret = write(clientSocket, "foo", sizeof("foo"));
678 int err = errno;
679 EXPECT_EQ(-1, ret);
680 EXPECT_EQ(ECONNABORTED, err);
681
682 // Check that it sent a RST to the server.
683 ret = write(acceptedSocket, "foo", sizeof("foo"));
684 err = errno;
685 EXPECT_EQ(-1, ret);
686 EXPECT_EQ(ECONNRESET, err);
687}
688
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900689TEST_F(BinderTest, SocketDestroy) {
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900690 int clientSocket, serverSocket, acceptedSocket;
Lorenzo Colitti755faa92016-07-27 22:10:49 +0900691 ASSERT_NO_FATAL_FAILURE(fakeRemoteSocketPair(&clientSocket, &serverSocket, &acceptedSocket));
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900692
693 // Pick a random UID in the system UID range.
694 constexpr int baseUid = AID_APP - 2000;
695 static_assert(baseUid > 0, "Not enough UIDs? Please fix this test.");
696 int uid = baseUid + 500 + arc4random_uniform(1000);
697 EXPECT_EQ(0, fchown(clientSocket, uid, -1));
698
699 // UID ranges that don't contain uid.
Luke Huang94658ac2018-10-18 19:35:12 +0900700 std::vector<UidRangeParcel> uidRanges = {
701 makeUidRangeParcel(baseUid + 42, baseUid + 449),
702 makeUidRangeParcel(baseUid + 1536, AID_APP - 4),
703 makeUidRangeParcel(baseUid + 498, uid - 1),
704 makeUidRangeParcel(uid + 1, baseUid + 1520),
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900705 };
706 // A skip list that doesn't contain UID.
707 std::vector<int32_t> skipUids { baseUid + 123, baseUid + 1600 };
708
709 // Close sockets. Our test socket should be intact.
710 EXPECT_TRUE(mNetd->socketDestroy(uidRanges, skipUids).isOk());
711 checkSocketpairOpen(clientSocket, acceptedSocket);
712
713 // UID ranges that do contain uid.
714 uidRanges = {
Luke Huang94658ac2018-10-18 19:35:12 +0900715 makeUidRangeParcel(baseUid + 42, baseUid + 449),
716 makeUidRangeParcel(baseUid + 1536, AID_APP - 4),
717 makeUidRangeParcel(baseUid + 498, baseUid + 1520),
Lorenzo Colitti563d98b2016-04-24 13:13:14 +0900718 };
719 // Add uid to the skip list.
720 skipUids.push_back(uid);
721
722 // Close sockets. Our test socket should still be intact because it's in the skip list.
723 EXPECT_TRUE(mNetd->socketDestroy(uidRanges, skipUids).isOk());
724 checkSocketpairOpen(clientSocket, acceptedSocket);
725
726 // Now remove uid from skipUids, and close sockets. Our test socket should have been closed.
727 skipUids.resize(skipUids.size() - 1);
728 EXPECT_TRUE(mNetd->socketDestroy(uidRanges, skipUids).isOk());
729 checkSocketpairClosed(clientSocket, acceptedSocket);
730
731 close(clientSocket);
732 close(serverSocket);
733 close(acceptedSocket);
734}
Erik Klinecc4f2732016-08-03 11:24:27 +0900735
736namespace {
737
738int netmaskToPrefixLength(const uint8_t *buf, size_t buflen) {
739 if (buf == nullptr) return -1;
740
741 int prefixLength = 0;
742 bool endOfContiguousBits = false;
743 for (unsigned int i = 0; i < buflen; i++) {
744 const uint8_t value = buf[i];
745
746 // Bad bit sequence: check for a contiguous set of bits from the high
747 // end by verifying that the inverted value + 1 is a power of 2
748 // (power of 2 iff. (v & (v - 1)) == 0).
749 const uint8_t inverse = ~value + 1;
750 if ((inverse & (inverse - 1)) != 0) return -1;
751
752 prefixLength += (value == 0) ? 0 : CHAR_BIT - ffs(value) + 1;
753
754 // Bogus netmask.
755 if (endOfContiguousBits && value != 0) return -1;
756
757 if (value != 0xff) endOfContiguousBits = true;
758 }
759
760 return prefixLength;
761}
762
763template<typename T>
764int netmaskToPrefixLength(const T *p) {
765 return netmaskToPrefixLength(reinterpret_cast<const uint8_t*>(p), sizeof(T));
766}
767
768
769static bool interfaceHasAddress(
770 const std::string &ifname, const char *addrString, int prefixLength) {
771 struct addrinfo *addrinfoList = nullptr;
Erik Klinecc4f2732016-08-03 11:24:27 +0900772
773 const struct addrinfo hints = {
774 .ai_flags = AI_NUMERICHOST,
775 .ai_family = AF_UNSPEC,
776 .ai_socktype = SOCK_DGRAM,
777 };
778 if (getaddrinfo(addrString, nullptr, &hints, &addrinfoList) != 0 ||
779 addrinfoList == nullptr || addrinfoList->ai_addr == nullptr) {
780 return false;
781 }
Bernie Innocenti9bf749f2018-08-30 08:37:22 +0900782 ScopedAddrinfo addrinfoCleanup(addrinfoList);
Erik Klinecc4f2732016-08-03 11:24:27 +0900783
784 struct ifaddrs *ifaddrsList = nullptr;
785 ScopedIfaddrs ifaddrsCleanup(ifaddrsList);
786
787 if (getifaddrs(&ifaddrsList) != 0) {
788 return false;
789 }
790
791 for (struct ifaddrs *addr = ifaddrsList; addr != nullptr; addr = addr->ifa_next) {
792 if (std::string(addr->ifa_name) != ifname ||
793 addr->ifa_addr == nullptr ||
794 addr->ifa_addr->sa_family != addrinfoList->ai_addr->sa_family) {
795 continue;
796 }
797
798 switch (addr->ifa_addr->sa_family) {
799 case AF_INET: {
800 auto *addr4 = reinterpret_cast<const struct sockaddr_in*>(addr->ifa_addr);
801 auto *want = reinterpret_cast<const struct sockaddr_in*>(addrinfoList->ai_addr);
802 if (memcmp(&addr4->sin_addr, &want->sin_addr, sizeof(want->sin_addr)) != 0) {
803 continue;
804 }
805
806 if (prefixLength < 0) return true; // not checking prefix lengths
807
808 if (addr->ifa_netmask == nullptr) return false;
809 auto *nm = reinterpret_cast<const struct sockaddr_in*>(addr->ifa_netmask);
810 EXPECT_EQ(prefixLength, netmaskToPrefixLength(&nm->sin_addr));
811 return (prefixLength == netmaskToPrefixLength(&nm->sin_addr));
812 }
813 case AF_INET6: {
814 auto *addr6 = reinterpret_cast<const struct sockaddr_in6*>(addr->ifa_addr);
815 auto *want = reinterpret_cast<const struct sockaddr_in6*>(addrinfoList->ai_addr);
816 if (memcmp(&addr6->sin6_addr, &want->sin6_addr, sizeof(want->sin6_addr)) != 0) {
817 continue;
818 }
819
820 if (prefixLength < 0) return true; // not checking prefix lengths
821
822 if (addr->ifa_netmask == nullptr) return false;
823 auto *nm = reinterpret_cast<const struct sockaddr_in6*>(addr->ifa_netmask);
824 EXPECT_EQ(prefixLength, netmaskToPrefixLength(&nm->sin6_addr));
825 return (prefixLength == netmaskToPrefixLength(&nm->sin6_addr));
826 }
827 default:
828 // Cannot happen because we have already screened for matching
829 // address families at the top of each iteration.
830 continue;
831 }
832 }
833
834 return false;
835}
836
837} // namespace
838
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900839TEST_F(BinderTest, InterfaceAddRemoveAddress) {
Erik Klinecc4f2732016-08-03 11:24:27 +0900840 static const struct TestData {
841 const char *addrString;
842 const int prefixLength;
843 const bool expectSuccess;
844 } kTestData[] = {
845 { "192.0.2.1", 24, true },
846 { "192.0.2.2", 25, true },
847 { "192.0.2.3", 32, true },
848 { "192.0.2.4", 33, false },
849 { "192.not.an.ip", 24, false },
850 { "2001:db8::1", 64, true },
851 { "2001:db8::2", 65, true },
852 { "2001:db8::3", 128, true },
853 { "2001:db8::4", 129, false },
854 { "foo:bar::bad", 64, false },
855 };
856
Sehee Park8659b8d2018-11-16 10:53:16 +0900857 for (size_t i = 0; i < std::size(kTestData); i++) {
Erik Klinecc4f2732016-08-03 11:24:27 +0900858 const auto &td = kTestData[i];
859
860 // [1.a] Add the address.
861 binder::Status status = mNetd->interfaceAddAddress(
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900862 sTun.name(), td.addrString, td.prefixLength);
Erik Klinecc4f2732016-08-03 11:24:27 +0900863 if (td.expectSuccess) {
864 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
865 } else {
866 ASSERT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
867 ASSERT_NE(0, status.serviceSpecificErrorCode());
868 }
869
870 // [1.b] Verify the addition meets the expectation.
871 if (td.expectSuccess) {
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900872 EXPECT_TRUE(interfaceHasAddress(sTun.name(), td.addrString, td.prefixLength));
Erik Klinecc4f2732016-08-03 11:24:27 +0900873 } else {
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900874 EXPECT_FALSE(interfaceHasAddress(sTun.name(), td.addrString, -1));
Erik Klinecc4f2732016-08-03 11:24:27 +0900875 }
876
877 // [2.a] Try to remove the address. If it was not previously added, removing it fails.
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900878 status = mNetd->interfaceDelAddress(sTun.name(), td.addrString, td.prefixLength);
Erik Klinecc4f2732016-08-03 11:24:27 +0900879 if (td.expectSuccess) {
880 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
881 } else {
882 ASSERT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
883 ASSERT_NE(0, status.serviceSpecificErrorCode());
884 }
885
886 // [2.b] No matter what, the address should not be present.
Lorenzo Colitti1e299c62017-02-27 17:16:10 +0900887 EXPECT_FALSE(interfaceHasAddress(sTun.name(), td.addrString, -1));
Erik Klinecc4f2732016-08-03 11:24:27 +0900888 }
889}
Erik Kline55b06f82016-07-04 09:57:18 +0900890
Erik Kline38e51f12018-09-06 20:14:44 +0900891TEST_F(BinderTest, GetProcSysNet) {
892 const char LOOPBACK[] = "lo";
893 static const struct {
894 const int ipversion;
Erik Kline55b06f82016-07-04 09:57:18 +0900895 const int which;
Erik Kline38e51f12018-09-06 20:14:44 +0900896 const char* ifname;
897 const char* parameter;
898 const char* expectedValue;
Erik Kline55b06f82016-07-04 09:57:18 +0900899 const int expectedReturnCode;
900 } kTestData[] = {
Erik Kline38e51f12018-09-06 20:14:44 +0900901 {INetd::IPV4, INetd::CONF, LOOPBACK, "arp_ignore", "0", 0},
902 {-1, INetd::CONF, sTun.name().c_str(), "arp_ignore", nullptr, EAFNOSUPPORT},
903 {INetd::IPV4, -1, sTun.name().c_str(), "arp_ignore", nullptr, EINVAL},
904 {INetd::IPV4, INetd::CONF, "..", "conf/lo/arp_ignore", nullptr, EINVAL},
905 {INetd::IPV4, INetd::CONF, ".", "lo/arp_ignore", nullptr, EINVAL},
906 {INetd::IPV4, INetd::CONF, sTun.name().c_str(), "../all/arp_ignore", nullptr, EINVAL},
907 {INetd::IPV6, INetd::NEIGH, LOOPBACK, "ucast_solicit", "3", 0},
Erik Kline55b06f82016-07-04 09:57:18 +0900908 };
909
Sehee Park8659b8d2018-11-16 10:53:16 +0900910 for (size_t i = 0; i < std::size(kTestData); i++) {
Erik Kline38e51f12018-09-06 20:14:44 +0900911 const auto& td = kTestData[i];
Erik Kline55b06f82016-07-04 09:57:18 +0900912
Erik Kline38e51f12018-09-06 20:14:44 +0900913 std::string value;
914 const binder::Status status =
915 mNetd->getProcSysNet(td.ipversion, td.which, td.ifname, td.parameter, &value);
916
917 if (td.expectedReturnCode == 0) {
Sehee Park8659b8d2018-11-16 10:53:16 +0900918 SCOPED_TRACE(String8::format("test case %zu should have passed", i));
Erik Kline38e51f12018-09-06 20:14:44 +0900919 EXPECT_EQ(0, status.exceptionCode());
920 EXPECT_EQ(0, status.serviceSpecificErrorCode());
921 EXPECT_EQ(td.expectedValue, value);
922 } else {
Sehee Park8659b8d2018-11-16 10:53:16 +0900923 SCOPED_TRACE(String8::format("test case %zu should have failed", i));
Erik Kline38e51f12018-09-06 20:14:44 +0900924 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
925 EXPECT_EQ(td.expectedReturnCode, status.serviceSpecificErrorCode());
926 }
927 }
928}
929
930TEST_F(BinderTest, SetProcSysNet) {
931 static const struct {
932 const int ipversion;
933 const int which;
934 const char* ifname;
935 const char* parameter;
936 const char* value;
937 const int expectedReturnCode;
938 } kTestData[] = {
939 {INetd::IPV4, INetd::CONF, sTun.name().c_str(), "arp_ignore", "1", 0},
940 {-1, INetd::CONF, sTun.name().c_str(), "arp_ignore", "1", EAFNOSUPPORT},
941 {INetd::IPV4, -1, sTun.name().c_str(), "arp_ignore", "1", EINVAL},
942 {INetd::IPV4, INetd::CONF, "..", "conf/lo/arp_ignore", "1", EINVAL},
943 {INetd::IPV4, INetd::CONF, ".", "lo/arp_ignore", "1", EINVAL},
944 {INetd::IPV4, INetd::CONF, sTun.name().c_str(), "../all/arp_ignore", "1", EINVAL},
945 {INetd::IPV6, INetd::NEIGH, sTun.name().c_str(), "ucast_solicit", "7", 0},
946 };
947
Sehee Park8659b8d2018-11-16 10:53:16 +0900948 for (size_t i = 0; i < std::size(kTestData); i++) {
Erik Kline38e51f12018-09-06 20:14:44 +0900949 const auto& td = kTestData[i];
Erik Kline38e51f12018-09-06 20:14:44 +0900950 const binder::Status status =
951 mNetd->setProcSysNet(td.ipversion, td.which, td.ifname, td.parameter, td.value);
Erik Kline55b06f82016-07-04 09:57:18 +0900952
953 if (td.expectedReturnCode == 0) {
Sehee Park8659b8d2018-11-16 10:53:16 +0900954 SCOPED_TRACE(String8::format("test case %zu should have passed", i));
Erik Kline55b06f82016-07-04 09:57:18 +0900955 EXPECT_EQ(0, status.exceptionCode());
956 EXPECT_EQ(0, status.serviceSpecificErrorCode());
957 } else {
Sehee Park8659b8d2018-11-16 10:53:16 +0900958 SCOPED_TRACE(String8::format("test case %zu should have failed", i));
Erik Kline55b06f82016-07-04 09:57:18 +0900959 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
960 EXPECT_EQ(td.expectedReturnCode, status.serviceSpecificErrorCode());
961 }
962 }
963}
Ben Schwartze7601812017-04-28 16:38:29 -0400964
Erik Kline38e51f12018-09-06 20:14:44 +0900965TEST_F(BinderTest, GetSetProcSysNet) {
966 const int ipversion = INetd::IPV6;
967 const int category = INetd::NEIGH;
968 const std::string& tun = sTun.name();
969 const std::string parameter("ucast_solicit");
970
971 std::string value{};
972 EXPECT_TRUE(mNetd->getProcSysNet(ipversion, category, tun, parameter, &value).isOk());
973 EXPECT_FALSE(value.empty());
974 const int ival = std::stoi(value);
975 EXPECT_GT(ival, 0);
976 // Try doubling the parameter value (always best!).
977 EXPECT_TRUE(mNetd->setProcSysNet(ipversion, category, tun, parameter, std::to_string(2 * ival))
978 .isOk());
979 EXPECT_TRUE(mNetd->getProcSysNet(ipversion, category, tun, parameter, &value).isOk());
980 EXPECT_EQ(2 * ival, std::stoi(value));
981 // Try resetting the parameter.
982 EXPECT_TRUE(mNetd->setProcSysNet(ipversion, category, tun, parameter, std::to_string(ival))
983 .isOk());
984 EXPECT_TRUE(mNetd->getProcSysNet(ipversion, category, tun, parameter, &value).isOk());
985 EXPECT_EQ(ival, std::stoi(value));
986}
987
Ben Schwartze7601812017-04-28 16:38:29 -0400988static std::string base64Encode(const std::vector<uint8_t>& input) {
989 size_t out_len;
990 EXPECT_EQ(1, EVP_EncodedLength(&out_len, input.size()));
991 // out_len includes the trailing NULL.
992 uint8_t output_bytes[out_len];
993 EXPECT_EQ(out_len - 1, EVP_EncodeBlock(output_bytes, input.data(), input.size()));
994 return std::string(reinterpret_cast<char*>(output_bytes));
995}
996
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +0900997TEST_F(BinderTest, SetResolverConfiguration_Tls) {
Erik Klinea1476fb2018-03-04 21:01:56 +0900998 const std::vector<std::string> LOCALLY_ASSIGNED_DNS{"8.8.8.8", "2001:4860:4860::8888"};
Ben Schwartze7601812017-04-28 16:38:29 -0400999 std::vector<uint8_t> fp(SHA256_SIZE);
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001000 std::vector<uint8_t> short_fp(1);
1001 std::vector<uint8_t> long_fp(SHA256_SIZE + 1);
1002 std::vector<std::string> test_domains;
1003 std::vector<int> test_params = { 300, 25, 8, 8 };
1004 unsigned test_netid = 0;
Ben Schwartze7601812017-04-28 16:38:29 -04001005 static const struct TestData {
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001006 const std::vector<std::string> servers;
1007 const std::string tlsName;
1008 const std::vector<std::vector<uint8_t>> tlsFingerprints;
Ben Schwartze7601812017-04-28 16:38:29 -04001009 const int expectedReturnCode;
Erik Klinea1476fb2018-03-04 21:01:56 +09001010 } kTlsTestData[] = {
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001011 { {"192.0.2.1"}, "", {}, 0 },
1012 { {"2001:db8::2"}, "host.name", {}, 0 },
1013 { {"192.0.2.3"}, "@@@@", { fp }, 0 },
1014 { {"2001:db8::4"}, "", { fp }, 0 },
Erik Klinea1476fb2018-03-04 21:01:56 +09001015 { {}, "", {}, 0 },
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001016 { {""}, "", {}, EINVAL },
Erik Klinea1476fb2018-03-04 21:01:56 +09001017 { {"192.0.*.5"}, "", {}, EINVAL },
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001018 { {"2001:dg8::6"}, "", {}, EINVAL },
1019 { {"2001:db8::c"}, "", { short_fp }, EINVAL },
1020 { {"192.0.2.12"}, "", { long_fp }, EINVAL },
1021 { {"2001:db8::e"}, "", { fp, fp, fp }, 0 },
1022 { {"192.0.2.14"}, "", { fp, short_fp }, EINVAL },
Ben Schwartze7601812017-04-28 16:38:29 -04001023 };
1024
Sehee Park8659b8d2018-11-16 10:53:16 +09001025 for (size_t i = 0; i < std::size(kTlsTestData); i++) {
Erik Klinea1476fb2018-03-04 21:01:56 +09001026 const auto &td = kTlsTestData[i];
Ben Schwartze7601812017-04-28 16:38:29 -04001027
1028 std::vector<std::string> fingerprints;
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001029 for (const auto& fingerprint : td.tlsFingerprints) {
Ben Schwartze7601812017-04-28 16:38:29 -04001030 fingerprints.push_back(base64Encode(fingerprint));
1031 }
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001032 binder::Status status = mNetd->setResolverConfiguration(
Erik Klinea1476fb2018-03-04 21:01:56 +09001033 test_netid, LOCALLY_ASSIGNED_DNS, test_domains, test_params,
1034 td.tlsName, td.servers, fingerprints);
Ben Schwartze7601812017-04-28 16:38:29 -04001035
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001036 if (td.expectedReturnCode == 0) {
Sehee Park8659b8d2018-11-16 10:53:16 +09001037 SCOPED_TRACE(String8::format("test case %zu should have passed", i));
Ben Schwartze7601812017-04-28 16:38:29 -04001038 SCOPED_TRACE(status.toString8());
1039 EXPECT_EQ(0, status.exceptionCode());
1040 } else {
Sehee Park8659b8d2018-11-16 10:53:16 +09001041 SCOPED_TRACE(String8::format("test case %zu should have failed", i));
Ben Schwartze7601812017-04-28 16:38:29 -04001042 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001043 EXPECT_EQ(td.expectedReturnCode, status.serviceSpecificErrorCode());
Ben Schwartze7601812017-04-28 16:38:29 -04001044 }
Ben Schwartze7601812017-04-28 16:38:29 -04001045 }
Ben Schwartz4204ecf2017-10-02 12:35:48 -04001046 // Ensure TLS is disabled before the start of the next test.
1047 mNetd->setResolverConfiguration(
Erik Klinea1476fb2018-03-04 21:01:56 +09001048 test_netid, kTlsTestData[0].servers, test_domains, test_params,
1049 "", {}, {});
Ben Schwartze7601812017-04-28 16:38:29 -04001050}
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001051
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001052namespace {
1053
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001054void expectNoTestCounterRules() {
1055 for (const auto& binary : { IPTABLES_PATH, IP6TABLES_PATH }) {
1056 std::string command = StringPrintf("%s -w -nvL tetherctrl_counters", binary);
1057 std::string allRules = Join(runCommand(command), "\n");
1058 EXPECT_EQ(std::string::npos, allRules.find("netdtest_"));
1059 }
1060}
1061
Bernie Innocentif6918262018-06-11 17:37:35 +09001062void addTetherCounterValues(const char* path, const std::string& if1, const std::string& if2,
1063 int byte, int pkt) {
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001064 runCommand(StringPrintf("%s -w -A tetherctrl_counters -i %s -o %s -j RETURN -c %d %d",
1065 path, if1.c_str(), if2.c_str(), pkt, byte));
1066}
1067
Bernie Innocentif6918262018-06-11 17:37:35 +09001068void delTetherCounterValues(const char* path, const std::string& if1, const std::string& if2) {
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001069 runCommand(StringPrintf("%s -w -D tetherctrl_counters -i %s -o %s -j RETURN",
1070 path, if1.c_str(), if2.c_str()));
1071 runCommand(StringPrintf("%s -w -D tetherctrl_counters -i %s -o %s -j RETURN",
1072 path, if2.c_str(), if1.c_str()));
1073}
1074
Luke Huangcaebcbb2018-09-27 20:37:14 +08001075std::vector<int64_t> getStatsVectorByIf(const std::vector<TetherStatsParcel>& statsVec,
1076 const std::string& iface) {
1077 for (auto& stats : statsVec) {
1078 if (stats.iface == iface) {
1079 return {stats.rxBytes, stats.rxPackets, stats.txBytes, stats.txPackets};
1080 }
1081 }
1082 return {};
1083}
1084
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001085} // namespace
1086
1087TEST_F(BinderTest, TetherGetStats) {
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001088 expectNoTestCounterRules();
1089
1090 // TODO: fold this into more comprehensive tests once we have binder RPCs for enabling and
1091 // disabling tethering. We don't check the return value because these commands will fail if
1092 // tethering is already enabled.
1093 runCommand(StringPrintf("%s -w -N tetherctrl_counters", IPTABLES_PATH));
1094 runCommand(StringPrintf("%s -w -N tetherctrl_counters", IP6TABLES_PATH));
1095
1096 std::string intIface1 = StringPrintf("netdtest_%u", arc4random_uniform(10000));
1097 std::string intIface2 = StringPrintf("netdtest_%u", arc4random_uniform(10000));
1098 std::string intIface3 = StringPrintf("netdtest_%u", arc4random_uniform(10000));
1099 std::string extIface1 = StringPrintf("netdtest_%u", arc4random_uniform(10000));
1100 std::string extIface2 = StringPrintf("netdtest_%u", arc4random_uniform(10000));
1101
1102 addTetherCounterValues(IPTABLES_PATH, intIface1, extIface1, 123, 111);
1103 addTetherCounterValues(IP6TABLES_PATH, intIface1, extIface1, 456, 10);
1104 addTetherCounterValues(IPTABLES_PATH, extIface1, intIface1, 321, 222);
1105 addTetherCounterValues(IP6TABLES_PATH, extIface1, intIface1, 654, 20);
1106 // RX is from external to internal, and TX is from internal to external.
1107 // So rxBytes is 321 + 654 = 975, txBytes is 123 + 456 = 579, etc.
1108 std::vector<int64_t> expected1 = { 975, 242, 579, 121 };
1109
1110 addTetherCounterValues(IPTABLES_PATH, intIface2, extIface2, 1000, 333);
1111 addTetherCounterValues(IP6TABLES_PATH, intIface2, extIface2, 3000, 30);
1112
1113 addTetherCounterValues(IPTABLES_PATH, extIface2, intIface2, 2000, 444);
1114 addTetherCounterValues(IP6TABLES_PATH, extIface2, intIface2, 4000, 40);
1115
1116 addTetherCounterValues(IP6TABLES_PATH, intIface3, extIface2, 1000, 25);
1117 addTetherCounterValues(IP6TABLES_PATH, extIface2, intIface3, 2000, 35);
1118 std::vector<int64_t> expected2 = { 8000, 519, 5000, 388 };
1119
Luke Huangcaebcbb2018-09-27 20:37:14 +08001120 std::vector<TetherStatsParcel> statsVec;
1121 binder::Status status = mNetd->tetherGetStats(&statsVec);
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001122 EXPECT_TRUE(status.isOk()) << "Getting tethering stats failed: " << status;
1123
Luke Huangcaebcbb2018-09-27 20:37:14 +08001124 EXPECT_EQ(expected1, getStatsVectorByIf(statsVec, extIface1));
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001125
Luke Huangcaebcbb2018-09-27 20:37:14 +08001126 EXPECT_EQ(expected2, getStatsVectorByIf(statsVec, extIface2));
Lorenzo Colitti9a8a9ff2017-01-31 19:06:59 +09001127
1128 for (const auto& path : { IPTABLES_PATH, IP6TABLES_PATH }) {
1129 delTetherCounterValues(path, intIface1, extIface1);
1130 delTetherCounterValues(path, intIface2, extIface2);
1131 if (path == IP6TABLES_PATH) {
1132 delTetherCounterValues(path, intIface3, extIface2);
1133 }
1134 }
1135
1136 expectNoTestCounterRules();
1137}
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001138
Luke Huang0051a622018-07-23 20:30:16 +08001139namespace {
1140
Luke Huanga5211072018-08-01 23:36:29 +08001141constexpr char IDLETIMER_RAW_PREROUTING[] = "idletimer_raw_PREROUTING";
1142constexpr char IDLETIMER_MANGLE_POSTROUTING[] = "idletimer_mangle_POSTROUTING";
Luke Huang0051a622018-07-23 20:30:16 +08001143
1144static std::vector<std::string> listIptablesRuleByTable(const char* binary, const char* table,
1145 const char* chainName) {
1146 std::string command = StringPrintf("%s -t %s -w -n -v -L %s", binary, table, chainName);
1147 return runCommand(command);
1148}
1149
Luke Huang19b49c52018-10-22 12:12:05 +09001150// TODO: It is a duplicate function, need to remove it
Luke Huanga5211072018-08-01 23:36:29 +08001151bool iptablesIdleTimerInterfaceRuleExists(const char* binary, const char* chainName,
Luke Huang0051a622018-07-23 20:30:16 +08001152 const std::string& expectedInterface,
1153 const std::string& expectedRule, const char* table) {
1154 std::vector<std::string> rules = listIptablesRuleByTable(binary, table, chainName);
1155 for (const auto& rule : rules) {
1156 if (rule.find(expectedInterface) != std::string::npos) {
1157 if (rule.find(expectedRule) != std::string::npos) {
1158 return true;
1159 }
1160 }
1161 }
1162 return false;
1163}
1164
1165void expectIdletimerInterfaceRuleExists(const std::string& ifname, int timeout,
Luke Huanga5211072018-08-01 23:36:29 +08001166 const std::string& classLabel) {
Luke Huang0051a622018-07-23 20:30:16 +08001167 std::string IdletimerRule =
Luke Huanga5211072018-08-01 23:36:29 +08001168 StringPrintf("timeout:%u label:%s send_nl_msg:1", timeout, classLabel.c_str());
Luke Huang0051a622018-07-23 20:30:16 +08001169 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
Luke Huanga5211072018-08-01 23:36:29 +08001170 EXPECT_TRUE(iptablesIdleTimerInterfaceRuleExists(binary, IDLETIMER_RAW_PREROUTING, ifname,
1171 IdletimerRule, RAW_TABLE));
1172 EXPECT_TRUE(iptablesIdleTimerInterfaceRuleExists(binary, IDLETIMER_MANGLE_POSTROUTING,
Luke Huang0051a622018-07-23 20:30:16 +08001173 ifname, IdletimerRule, MANGLE_TABLE));
1174 }
1175}
1176
1177void expectIdletimerInterfaceRuleNotExists(const std::string& ifname, int timeout,
Luke Huanga5211072018-08-01 23:36:29 +08001178 const std::string& classLabel) {
Luke Huang0051a622018-07-23 20:30:16 +08001179 std::string IdletimerRule =
Luke Huanga5211072018-08-01 23:36:29 +08001180 StringPrintf("timeout:%u label:%s send_nl_msg:1", timeout, classLabel.c_str());
Luke Huang0051a622018-07-23 20:30:16 +08001181 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
Luke Huanga5211072018-08-01 23:36:29 +08001182 EXPECT_FALSE(iptablesIdleTimerInterfaceRuleExists(binary, IDLETIMER_RAW_PREROUTING, ifname,
1183 IdletimerRule, RAW_TABLE));
1184 EXPECT_FALSE(iptablesIdleTimerInterfaceRuleExists(binary, IDLETIMER_MANGLE_POSTROUTING,
Luke Huang0051a622018-07-23 20:30:16 +08001185 ifname, IdletimerRule, MANGLE_TABLE));
1186 }
1187}
1188
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001189} // namespace
1190
1191TEST_F(BinderTest, IdletimerAddRemoveInterface) {
Luke Huang0051a622018-07-23 20:30:16 +08001192 // TODO: We will get error in if expectIdletimerInterfaceRuleNotExists if there are the same
1193 // rule in the table. Because we only check the result after calling remove function. We might
1194 // check the actual rule which is removed by our function (maybe compare the results between
1195 // calling function before and after)
1196 binder::Status status;
1197 const struct TestData {
1198 const std::string ifname;
1199 int32_t timeout;
1200 const std::string classLabel;
1201 } idleTestData[] = {
1202 {"wlan0", 1234, "happyday"},
1203 {"rmnet_data0", 4567, "friday"},
1204 };
1205 for (const auto& td : idleTestData) {
1206 status = mNetd->idletimerAddInterface(td.ifname, td.timeout, td.classLabel);
1207 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1208 expectIdletimerInterfaceRuleExists(td.ifname, td.timeout, td.classLabel);
1209
1210 status = mNetd->idletimerRemoveInterface(td.ifname, td.timeout, td.classLabel);
1211 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1212 expectIdletimerInterfaceRuleNotExists(td.ifname, td.timeout, td.classLabel);
1213 }
1214}
1215
Luke Huanga67dd562018-07-17 19:58:25 +08001216namespace {
1217
1218constexpr char STRICT_OUTPUT[] = "st_OUTPUT";
1219constexpr char STRICT_CLEAR_CAUGHT[] = "st_clear_caught";
1220
1221void expectStrictSetUidAccept(const int uid) {
1222 std::string uidRule = StringPrintf("owner UID match %u", uid);
1223 std::string perUidChain = StringPrintf("st_clear_caught_%u", uid);
1224 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1225 EXPECT_FALSE(iptablesRuleExists(binary, STRICT_OUTPUT, uidRule.c_str()));
1226 EXPECT_FALSE(iptablesRuleExists(binary, STRICT_CLEAR_CAUGHT, uidRule.c_str()));
1227 EXPECT_EQ(0, iptablesRuleLineLength(binary, perUidChain.c_str()));
1228 }
1229}
1230
1231void expectStrictSetUidLog(const int uid) {
1232 static const char logRule[] = "st_penalty_log all";
1233 std::string uidRule = StringPrintf("owner UID match %u", uid);
1234 std::string perUidChain = StringPrintf("st_clear_caught_%u", uid);
1235 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1236 EXPECT_TRUE(iptablesRuleExists(binary, STRICT_OUTPUT, uidRule.c_str()));
1237 EXPECT_TRUE(iptablesRuleExists(binary, STRICT_CLEAR_CAUGHT, uidRule.c_str()));
1238 EXPECT_TRUE(iptablesRuleExists(binary, perUidChain.c_str(), logRule));
1239 }
1240}
1241
1242void expectStrictSetUidReject(const int uid) {
1243 static const char rejectRule[] = "st_penalty_reject all";
1244 std::string uidRule = StringPrintf("owner UID match %u", uid);
1245 std::string perUidChain = StringPrintf("st_clear_caught_%u", uid);
1246 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1247 EXPECT_TRUE(iptablesRuleExists(binary, STRICT_OUTPUT, uidRule.c_str()));
1248 EXPECT_TRUE(iptablesRuleExists(binary, STRICT_CLEAR_CAUGHT, uidRule.c_str()));
1249 EXPECT_TRUE(iptablesRuleExists(binary, perUidChain.c_str(), rejectRule));
1250 }
1251}
1252
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001253} // namespace
1254
1255TEST_F(BinderTest, StrictSetUidCleartextPenalty) {
Luke Huanga67dd562018-07-17 19:58:25 +08001256 binder::Status status;
1257 int32_t uid = randomUid();
1258
1259 // setUidCleartextPenalty Policy:Log with randomUid
1260 status = mNetd->strictUidCleartextPenalty(uid, INetd::PENALTY_POLICY_LOG);
1261 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1262 expectStrictSetUidLog(uid);
1263
1264 // setUidCleartextPenalty Policy:Accept with randomUid
1265 status = mNetd->strictUidCleartextPenalty(uid, INetd::PENALTY_POLICY_ACCEPT);
1266 expectStrictSetUidAccept(uid);
1267
1268 // setUidCleartextPenalty Policy:Reject with randomUid
1269 status = mNetd->strictUidCleartextPenalty(uid, INetd::PENALTY_POLICY_REJECT);
1270 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1271 expectStrictSetUidReject(uid);
1272
1273 // setUidCleartextPenalty Policy:Accept with randomUid
1274 status = mNetd->strictUidCleartextPenalty(uid, INetd::PENALTY_POLICY_ACCEPT);
1275 expectStrictSetUidAccept(uid);
1276
1277 // test wrong policy
1278 int32_t wrongPolicy = -123;
1279 status = mNetd->strictUidCleartextPenalty(uid, wrongPolicy);
1280 EXPECT_EQ(EINVAL, status.serviceSpecificErrorCode());
1281}
1282
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001283namespace {
Luke Huang6d301232018-08-01 14:05:18 +08001284
Luke Huangd1675922019-03-11 17:29:27 +08001285std::vector<std::string> tryToFindProcesses(const std::string& processName, uint32_t maxTries = 1,
1286 uint32_t intervalMs = 0) {
1287 // Output looks like:(clatd)
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001288 // clat 4963 850 1 12:16:51 ? 00:00:00 clatd-netd10a88 -i netd10a88 ...
1289 // ...
1290 // root 5221 5219 0 12:18:12 ? 00:00:00 sh -c ps -Af | grep ' clatd-netdcc1a0'
1291
Luke Huangd1675922019-03-11 17:29:27 +08001292 // (dnsmasq)
1293 // dns_tether 4620 792 0 16:51:28 ? 00:00:00 dnsmasq --keep-in-foreground ...
1294
1295 if (maxTries == 0) return {};
1296
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001297 std::string cmd = StringPrintf("ps -Af | grep '[0-9] %s'", processName.c_str());
Luke Huangd1675922019-03-11 17:29:27 +08001298 std::vector<std::string> result;
1299 for (uint32_t run = 1;;) {
1300 result = runCommand(cmd.c_str());
1301 if (result.size() || ++run > maxTries) {
1302 break;
1303 }
1304
1305 usleep(intervalMs);
1306 }
1307 return result;
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001308}
1309
Luke Huangd1675922019-03-11 17:29:27 +08001310void expectProcessExists(const std::string& processName) {
1311 EXPECT_EQ(1U, tryToFindProcesses(processName, 5 /*maxTries*/, 50 /*intervalMs*/).size());
1312}
1313
1314void expectProcessDoesNotExists(const std::string& processName) {
1315 EXPECT_FALSE(tryToFindProcesses(processName).size());
Luke Huang6d301232018-08-01 14:05:18 +08001316}
1317
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001318} // namespace
1319
1320TEST_F(BinderTest, ClatdStartStop) {
Luke Huang6d301232018-08-01 14:05:18 +08001321 binder::Status status;
Luke Huang6d301232018-08-01 14:05:18 +08001322
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001323 const std::string clatdName = StringPrintf("clatd-%s", sTun.name().c_str());
1324 std::string clatAddress;
1325 std::string nat64Prefix = "2001:db8:cafe:f00d:1:2::/96";
Luke Huang6d301232018-08-01 14:05:18 +08001326
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001327 // Can't start clatd on an interface that's not part of any network...
1328 status = mNetd->clatdStart(sTun.name(), nat64Prefix, &clatAddress);
1329 EXPECT_FALSE(status.isOk());
1330 EXPECT_EQ(ENODEV, status.serviceSpecificErrorCode());
1331
1332 // ... so create a test physical network and add our tun to it.
1333 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
1334 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
1335
1336 // Prefix must be 96 bits long.
1337 status = mNetd->clatdStart(sTun.name(), "2001:db8:cafe:f00d::/64", &clatAddress);
1338 EXPECT_FALSE(status.isOk());
1339 EXPECT_EQ(EINVAL, status.serviceSpecificErrorCode());
1340
1341 // Can't start clatd unless there's a default route...
1342 status = mNetd->clatdStart(sTun.name(), nat64Prefix, &clatAddress);
1343 EXPECT_FALSE(status.isOk());
1344 EXPECT_EQ(EADDRNOTAVAIL, status.serviceSpecificErrorCode());
1345
1346 // so add a default route.
1347 EXPECT_TRUE(mNetd->networkAddRoute(TEST_NETID1, sTun.name(), "::/0", "").isOk());
1348
1349 // Can't start clatd unless there's a global address...
1350 status = mNetd->clatdStart(sTun.name(), nat64Prefix, &clatAddress);
1351 EXPECT_FALSE(status.isOk());
1352 EXPECT_EQ(EADDRNOTAVAIL, status.serviceSpecificErrorCode());
1353
1354 // ... so add a global address.
1355 const std::string v6 = "2001:db8:1:2:f076:ae99:124e:aa99";
Lorenzo Colitti8a9f1ad2019-02-26 00:30:18 +09001356 EXPECT_EQ(0, sTun.addAddress(v6.c_str(), 64));
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001357
1358 // Now expect clatd to start successfully.
1359 status = mNetd->clatdStart(sTun.name(), nat64Prefix, &clatAddress);
1360 EXPECT_TRUE(status.isOk());
1361 EXPECT_EQ(0, status.serviceSpecificErrorCode());
1362
1363 // Starting it again returns EBUSY.
1364 status = mNetd->clatdStart(sTun.name(), nat64Prefix, &clatAddress);
1365 EXPECT_FALSE(status.isOk());
1366 EXPECT_EQ(EBUSY, status.serviceSpecificErrorCode());
1367
Luke Huangd1675922019-03-11 17:29:27 +08001368 expectProcessExists(clatdName);
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001369
1370 // Expect clatd to stop successfully.
1371 status = mNetd->clatdStop(sTun.name());
Luke Huang6d301232018-08-01 14:05:18 +08001372 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangd1675922019-03-11 17:29:27 +08001373 expectProcessDoesNotExists(clatdName);
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001374
1375 // Stopping a clatd that doesn't exist returns ENODEV.
1376 status = mNetd->clatdStop(sTun.name());
1377 EXPECT_FALSE(status.isOk());
1378 EXPECT_EQ(ENODEV, status.serviceSpecificErrorCode());
Luke Huangd1675922019-03-11 17:29:27 +08001379 expectProcessDoesNotExists(clatdName);
Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001380
1381 // Clean up.
1382 EXPECT_TRUE(mNetd->networkRemoveRoute(TEST_NETID1, sTun.name(), "::/0", "").isOk());
1383 EXPECT_EQ(0, ifc_del_address(sTun.name().c_str(), v6.c_str(), 64));
1384 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
Luke Huang6d301232018-08-01 14:05:18 +08001385}
Luke Huang457d4702018-08-16 15:39:15 +08001386
1387namespace {
1388
1389bool getIpfwdV4Enable() {
1390 static const char ipv4IpfwdCmd[] = "cat /proc/sys/net/ipv4/ip_forward";
1391 std::vector<std::string> result = runCommand(ipv4IpfwdCmd);
1392 EXPECT_TRUE(!result.empty());
1393 int v4Enable = std::stoi(result[0]);
1394 return v4Enable;
1395}
1396
1397bool getIpfwdV6Enable() {
1398 static const char ipv6IpfwdCmd[] = "cat proc/sys/net/ipv6/conf/all/forwarding";
1399 std::vector<std::string> result = runCommand(ipv6IpfwdCmd);
1400 EXPECT_TRUE(!result.empty());
1401 int v6Enable = std::stoi(result[0]);
1402 return v6Enable;
1403}
1404
1405void expectIpfwdEnable(bool enable) {
1406 int enableIPv4 = getIpfwdV4Enable();
1407 int enableIPv6 = getIpfwdV6Enable();
1408 EXPECT_EQ(enable, enableIPv4);
1409 EXPECT_EQ(enable, enableIPv6);
1410}
1411
Bernie Innocenti1bdf10d2018-09-10 18:46:07 +09001412bool ipRuleIpfwdExists(const char* ipVersion, const std::string& ipfwdRule) {
Luke Huang457d4702018-08-16 15:39:15 +08001413 std::vector<std::string> rules = listIpRules(ipVersion);
1414 for (const auto& rule : rules) {
1415 if (rule.find(ipfwdRule) != std::string::npos) {
1416 return true;
1417 }
1418 }
1419 return false;
1420}
1421
1422void expectIpfwdRuleExists(const char* fromIf, const char* toIf) {
1423 std::string ipfwdRule = StringPrintf("18000:\tfrom all iif %s lookup %s ", fromIf, toIf);
1424
1425 for (const auto& ipVersion : {IP_RULE_V4, IP_RULE_V6}) {
1426 EXPECT_TRUE(ipRuleIpfwdExists(ipVersion, ipfwdRule));
1427 }
1428}
1429
1430void expectIpfwdRuleNotExists(const char* fromIf, const char* toIf) {
1431 std::string ipfwdRule = StringPrintf("18000:\tfrom all iif %s lookup %s ", fromIf, toIf);
1432
1433 for (const auto& ipVersion : {IP_RULE_V4, IP_RULE_V6}) {
1434 EXPECT_FALSE(ipRuleIpfwdExists(ipVersion, ipfwdRule));
1435 }
1436}
1437
1438} // namespace
1439
1440TEST_F(BinderTest, TestIpfwdEnableDisableStatusForwarding) {
1441 // Netd default enable Ipfwd with requester NetdHwService
1442 const std::string defaultRequester = "NetdHwService";
1443
1444 binder::Status status = mNetd->ipfwdDisableForwarding(defaultRequester);
1445 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1446 expectIpfwdEnable(false);
1447
1448 bool ipfwdEnabled;
1449 status = mNetd->ipfwdEnabled(&ipfwdEnabled);
1450 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1451 EXPECT_FALSE(ipfwdEnabled);
1452
1453 status = mNetd->ipfwdEnableForwarding(defaultRequester);
1454 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1455 expectIpfwdEnable(true);
1456
1457 status = mNetd->ipfwdEnabled(&ipfwdEnabled);
1458 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1459 EXPECT_TRUE(ipfwdEnabled);
1460}
1461
1462TEST_F(BinderTest, TestIpfwdAddRemoveInterfaceForward) {
Luke Huangd1827b82019-02-15 15:03:27 +08001463 // Add test physical network
1464 EXPECT_TRUE(
1465 mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
1466 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
1467 EXPECT_TRUE(
1468 mNetd->networkCreatePhysical(TEST_NETID2, INetd::PERMISSION_NONE).isOk());
1469 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID2, sTun2.name()).isOk());
Luke Huang457d4702018-08-16 15:39:15 +08001470
Luke Huangd1827b82019-02-15 15:03:27 +08001471 binder::Status status =
1472 mNetd->ipfwdAddInterfaceForward(sTun.name(), sTun2.name());
1473 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1474 expectIpfwdRuleExists(sTun.name().c_str(), sTun2.name().c_str());
Luke Huang457d4702018-08-16 15:39:15 +08001475
Luke Huangd1827b82019-02-15 15:03:27 +08001476 status = mNetd->ipfwdRemoveInterfaceForward(sTun.name(), sTun2.name());
1477 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1478 expectIpfwdRuleNotExists(sTun.name().c_str(), sTun2.name().c_str());
Bernie Innocenti1bcc25a2018-08-10 17:15:00 +09001479}
Luke Huang531f5d32018-08-03 15:19:05 +08001480
1481namespace {
1482
1483constexpr char BANDWIDTH_INPUT[] = "bw_INPUT";
1484constexpr char BANDWIDTH_OUTPUT[] = "bw_OUTPUT";
1485constexpr char BANDWIDTH_FORWARD[] = "bw_FORWARD";
1486constexpr char BANDWIDTH_NAUGHTY[] = "bw_penalty_box";
1487constexpr char BANDWIDTH_NICE[] = "bw_happy_box";
Luke Huangae038f82018-11-05 11:17:31 +09001488constexpr char BANDWIDTH_ALERT[] = "bw_global_alert";
Luke Huang531f5d32018-08-03 15:19:05 +08001489
Luke Huang19b49c52018-10-22 12:12:05 +09001490// TODO: Move iptablesTargetsExists and listIptablesRuleByTable to the top.
1491// Use either a std::vector<std::string> of things to match, or a variadic function.
Luke Huang531f5d32018-08-03 15:19:05 +08001492bool iptablesTargetsExists(const char* binary, int expectedCount, const char* table,
1493 const char* chainName, const std::string& expectedTargetA,
1494 const std::string& expectedTargetB) {
1495 std::vector<std::string> rules = listIptablesRuleByTable(binary, table, chainName);
1496 int matchCount = 0;
1497
1498 for (const auto& rule : rules) {
1499 if (rule.find(expectedTargetA) != std::string::npos) {
1500 if (rule.find(expectedTargetB) != std::string::npos) {
1501 matchCount++;
1502 }
1503 }
1504 }
1505 return matchCount == expectedCount;
1506}
1507
1508void expectXtQuotaValueEqual(const char* ifname, long quotaBytes) {
1509 std::string path = StringPrintf("/proc/net/xt_quota/%s", ifname);
1510 std::string result = "";
1511
1512 EXPECT_TRUE(ReadFileToString(path, &result));
Luke Huang4953ca22018-09-14 14:08:50 +08001513 // Quota value might be decreased while matching packets
1514 EXPECT_GE(quotaBytes, std::stol(Trim(result)));
Luke Huang531f5d32018-08-03 15:19:05 +08001515}
1516
1517void expectBandwidthInterfaceQuotaRuleExists(const char* ifname, long quotaBytes) {
1518 std::string BANDWIDTH_COSTLY_IF = StringPrintf("bw_costly_%s", ifname);
1519 std::string quotaRule = StringPrintf("quota %s", ifname);
1520
1521 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1522 EXPECT_TRUE(iptablesTargetsExists(binary, 1, FILTER_TABLE, BANDWIDTH_INPUT, ifname,
1523 BANDWIDTH_COSTLY_IF));
1524 EXPECT_TRUE(iptablesTargetsExists(binary, 1, FILTER_TABLE, BANDWIDTH_OUTPUT, ifname,
1525 BANDWIDTH_COSTLY_IF));
1526 EXPECT_TRUE(iptablesTargetsExists(binary, 2, FILTER_TABLE, BANDWIDTH_FORWARD, ifname,
1527 BANDWIDTH_COSTLY_IF));
1528 EXPECT_TRUE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), BANDWIDTH_NAUGHTY));
1529 EXPECT_TRUE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), quotaRule));
1530 }
1531 expectXtQuotaValueEqual(ifname, quotaBytes);
1532}
1533
1534void expectBandwidthInterfaceQuotaRuleDoesNotExist(const char* ifname) {
1535 std::string BANDWIDTH_COSTLY_IF = StringPrintf("bw_costly_%s", ifname);
1536 std::string quotaRule = StringPrintf("quota %s", ifname);
1537
1538 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1539 EXPECT_FALSE(iptablesTargetsExists(binary, 1, FILTER_TABLE, BANDWIDTH_INPUT, ifname,
1540 BANDWIDTH_COSTLY_IF));
1541 EXPECT_FALSE(iptablesTargetsExists(binary, 1, FILTER_TABLE, BANDWIDTH_OUTPUT, ifname,
1542 BANDWIDTH_COSTLY_IF));
1543 EXPECT_FALSE(iptablesTargetsExists(binary, 2, FILTER_TABLE, BANDWIDTH_FORWARD, ifname,
1544 BANDWIDTH_COSTLY_IF));
1545 EXPECT_FALSE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), BANDWIDTH_NAUGHTY));
1546 EXPECT_FALSE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), quotaRule));
1547 }
1548}
1549
1550void expectBandwidthInterfaceAlertRuleExists(const char* ifname, long alertBytes) {
1551 std::string BANDWIDTH_COSTLY_IF = StringPrintf("bw_costly_%s", ifname);
1552 std::string alertRule = StringPrintf("quota %sAlert", ifname);
1553 std::string alertName = StringPrintf("%sAlert", ifname);
1554
1555 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1556 EXPECT_TRUE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), alertRule));
1557 }
1558 expectXtQuotaValueEqual(alertName.c_str(), alertBytes);
1559}
1560
1561void expectBandwidthInterfaceAlertRuleDoesNotExist(const char* ifname) {
1562 std::string BANDWIDTH_COSTLY_IF = StringPrintf("bw_costly_%s", ifname);
1563 std::string alertRule = StringPrintf("quota %sAlert", ifname);
1564
1565 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1566 EXPECT_FALSE(iptablesRuleExists(binary, BANDWIDTH_COSTLY_IF.c_str(), alertRule));
1567 }
1568}
1569
1570void expectBandwidthGlobalAlertRuleExists(long alertBytes) {
1571 static const char globalAlertRule[] = "quota globalAlert";
1572 static const char globalAlertName[] = "globalAlert";
1573
1574 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
Luke Huangae038f82018-11-05 11:17:31 +09001575 EXPECT_TRUE(iptablesRuleExists(binary, BANDWIDTH_ALERT, globalAlertRule));
Luke Huang531f5d32018-08-03 15:19:05 +08001576 }
1577 expectXtQuotaValueEqual(globalAlertName, alertBytes);
1578}
1579
1580void expectBandwidthManipulateSpecialAppRuleExists(const char* chain, const char* target, int uid) {
1581 std::string uidRule = StringPrintf("owner UID match %u", uid);
1582
1583 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1584 EXPECT_TRUE(iptablesTargetsExists(binary, 1, FILTER_TABLE, chain, target, uidRule));
1585 }
1586}
1587
1588void expectBandwidthManipulateSpecialAppRuleDoesNotExist(const char* chain, int uid) {
1589 std::string uidRule = StringPrintf("owner UID match %u", uid);
1590
1591 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1592 EXPECT_FALSE(iptablesRuleExists(binary, chain, uidRule));
1593 }
1594}
1595
1596} // namespace
1597
1598TEST_F(BinderTest, BandwidthSetRemoveInterfaceQuota) {
1599 long testQuotaBytes = 5550;
1600
1601 // Add test physical network
Luke Huangb670d162018-08-23 20:01:13 +08001602 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
Luke Huang531f5d32018-08-03 15:19:05 +08001603 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
1604
1605 binder::Status status = mNetd->bandwidthSetInterfaceQuota(sTun.name(), testQuotaBytes);
1606 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1607 expectBandwidthInterfaceQuotaRuleExists(sTun.name().c_str(), testQuotaBytes);
1608
1609 status = mNetd->bandwidthRemoveInterfaceQuota(sTun.name());
1610 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1611 expectBandwidthInterfaceQuotaRuleDoesNotExist(sTun.name().c_str());
1612
1613 // Remove test physical network
1614 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
1615}
1616
1617TEST_F(BinderTest, BandwidthSetRemoveInterfaceAlert) {
1618 long testAlertBytes = 373;
Luke Huang531f5d32018-08-03 15:19:05 +08001619 // Add test physical network
Luke Huangb670d162018-08-23 20:01:13 +08001620 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
Luke Huang531f5d32018-08-03 15:19:05 +08001621 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
Luke Huang531f5d32018-08-03 15:19:05 +08001622 // Need to have a prior interface quota set to set an alert
1623 binder::Status status = mNetd->bandwidthSetInterfaceQuota(sTun.name(), testAlertBytes);
1624 status = mNetd->bandwidthSetInterfaceAlert(sTun.name(), testAlertBytes);
1625 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1626 expectBandwidthInterfaceAlertRuleExists(sTun.name().c_str(), testAlertBytes);
1627
1628 status = mNetd->bandwidthRemoveInterfaceAlert(sTun.name());
1629 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1630 expectBandwidthInterfaceAlertRuleDoesNotExist(sTun.name().c_str());
1631
1632 // Remove interface quota
1633 status = mNetd->bandwidthRemoveInterfaceQuota(sTun.name());
1634 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1635 expectBandwidthInterfaceQuotaRuleDoesNotExist(sTun.name().c_str());
1636
1637 // Remove test physical network
1638 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
1639}
1640
1641TEST_F(BinderTest, BandwidthSetGlobalAlert) {
1642 long testAlertBytes = 2097149;
1643
1644 binder::Status status = mNetd->bandwidthSetGlobalAlert(testAlertBytes);
1645 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1646 expectBandwidthGlobalAlertRuleExists(testAlertBytes);
1647
1648 testAlertBytes = 2097152;
1649 status = mNetd->bandwidthSetGlobalAlert(testAlertBytes);
1650 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1651 expectBandwidthGlobalAlertRuleExists(testAlertBytes);
1652}
1653
1654TEST_F(BinderTest, BandwidthManipulateSpecialApp) {
1655 SKIP_IF_BPF_SUPPORTED;
1656
1657 int32_t uid = randomUid();
1658 static const char targetReject[] = "REJECT";
1659 static const char targetReturn[] = "RETURN";
1660
1661 // add NaughtyApp
1662 binder::Status status = mNetd->bandwidthAddNaughtyApp(uid);
1663 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1664 expectBandwidthManipulateSpecialAppRuleExists(BANDWIDTH_NAUGHTY, targetReject, uid);
1665
1666 // remove NaughtyApp
1667 status = mNetd->bandwidthRemoveNaughtyApp(uid);
1668 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1669 expectBandwidthManipulateSpecialAppRuleDoesNotExist(BANDWIDTH_NAUGHTY, uid);
1670
1671 // add NiceApp
1672 status = mNetd->bandwidthAddNiceApp(uid);
1673 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1674 expectBandwidthManipulateSpecialAppRuleExists(BANDWIDTH_NICE, targetReturn, uid);
1675
1676 // remove NiceApp
1677 status = mNetd->bandwidthRemoveNiceApp(uid);
1678 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1679 expectBandwidthManipulateSpecialAppRuleDoesNotExist(BANDWIDTH_NICE, uid);
1680}
Luke Huangb5733d72018-08-21 17:17:19 +08001681
1682namespace {
1683
Luke Huangb670d162018-08-23 20:01:13 +08001684std::vector<std::string> listIpRoutes(const char* ipVersion, const char* table) {
1685 std::string command = StringPrintf("%s %s route ls table %s", IP_PATH, ipVersion, table);
1686 return runCommand(command);
1687}
1688
Luke Huangc3252cc2018-10-16 15:43:23 +08001689bool ipRouteExists(const char* ipVersion, const char* table, const std::string& ipRoute) {
Luke Huangb670d162018-08-23 20:01:13 +08001690 std::vector<std::string> routes = listIpRoutes(ipVersion, table);
1691 for (const auto& route : routes) {
1692 if (route.find(ipRoute) != std::string::npos) {
1693 return true;
1694 }
1695 }
1696 return false;
1697}
1698
Luke Huangc3252cc2018-10-16 15:43:23 +08001699std::string ipRouteString(const std::string& ifName, const std::string& dst,
1700 const std::string& nextHop) {
1701 std::string dstString = (dst == "0.0.0.0/0" || dst == "::/0") ? "default" : dst;
1702
1703 if (!nextHop.empty()) {
1704 dstString += " via " + nextHop;
Luke Huangb670d162018-08-23 20:01:13 +08001705 }
1706
Luke Huangc3252cc2018-10-16 15:43:23 +08001707 return dstString + " dev " + ifName;
Luke Huangb670d162018-08-23 20:01:13 +08001708}
1709
Luke Huangc3252cc2018-10-16 15:43:23 +08001710void expectNetworkRouteExists(const char* ipVersion, const std::string& ifName,
1711 const std::string& dst, const std::string& nextHop,
1712 const char* table) {
1713 EXPECT_TRUE(ipRouteExists(ipVersion, table, ipRouteString(ifName, dst, nextHop)));
1714}
1715
1716void expectNetworkRouteDoesNotExist(const char* ipVersion, const std::string& ifName,
Luke Huangb670d162018-08-23 20:01:13 +08001717 const std::string& dst, const std::string& nextHop,
1718 const char* table) {
Luke Huangc3252cc2018-10-16 15:43:23 +08001719 EXPECT_FALSE(ipRouteExists(ipVersion, table, ipRouteString(ifName, dst, nextHop)));
Luke Huangb670d162018-08-23 20:01:13 +08001720}
1721
1722bool ipRuleExists(const char* ipVersion, const std::string& ipRule) {
1723 std::vector<std::string> rules = listIpRules(ipVersion);
1724 for (const auto& rule : rules) {
1725 if (rule.find(ipRule) != std::string::npos) {
1726 return true;
1727 }
1728 }
1729 return false;
1730}
1731
1732void expectNetworkDefaultIpRuleExists(const char* ifName) {
1733 std::string networkDefaultRule =
1734 StringPrintf("22000:\tfrom all fwmark 0x0/0xffff iif lo lookup %s", ifName);
1735
1736 for (const auto& ipVersion : {IP_RULE_V4, IP_RULE_V6}) {
1737 EXPECT_TRUE(ipRuleExists(ipVersion, networkDefaultRule));
1738 }
1739}
1740
1741void expectNetworkDefaultIpRuleDoesNotExist() {
1742 static const char networkDefaultRule[] = "22000:\tfrom all fwmark 0x0/0xffff iif lo";
1743
1744 for (const auto& ipVersion : {IP_RULE_V4, IP_RULE_V6}) {
1745 EXPECT_FALSE(ipRuleExists(ipVersion, networkDefaultRule));
1746 }
1747}
1748
1749void expectNetworkPermissionIpRuleExists(const char* ifName, int permission) {
1750 std::string networkPermissionRule = "";
1751 switch (permission) {
1752 case INetd::PERMISSION_NONE:
1753 networkPermissionRule = StringPrintf(
1754 "13000:\tfrom all fwmark 0x1ffdd/0x1ffff iif lo lookup %s", ifName);
1755 break;
1756 case INetd::PERMISSION_NETWORK:
1757 networkPermissionRule = StringPrintf(
1758 "13000:\tfrom all fwmark 0x5ffdd/0x5ffff iif lo lookup %s", ifName);
1759 break;
1760 case INetd::PERMISSION_SYSTEM:
1761 networkPermissionRule = StringPrintf(
1762 "13000:\tfrom all fwmark 0xdffdd/0xdffff iif lo lookup %s", ifName);
1763 break;
1764 }
1765
1766 for (const auto& ipVersion : {IP_RULE_V4, IP_RULE_V6}) {
1767 EXPECT_TRUE(ipRuleExists(ipVersion, networkPermissionRule));
1768 }
1769}
1770
1771// TODO: It is a duplicate function, need to remove it
1772bool iptablesNetworkPermissionIptablesRuleExists(const char* binary, const char* chainName,
1773 const std::string& expectedInterface,
1774 const std::string& expectedRule,
1775 const char* table) {
1776 std::vector<std::string> rules = listIptablesRuleByTable(binary, table, chainName);
1777 for (const auto& rule : rules) {
1778 if (rule.find(expectedInterface) != std::string::npos) {
1779 if (rule.find(expectedRule) != std::string::npos) {
1780 return true;
1781 }
1782 }
1783 }
1784 return false;
1785}
1786
1787void expectNetworkPermissionIptablesRuleExists(const char* ifName, int permission) {
1788 static const char ROUTECTRL_INPUT[] = "routectrl_mangle_INPUT";
1789 std::string networkIncomingPacketMarkRule = "";
1790 switch (permission) {
1791 case INetd::PERMISSION_NONE:
1792 networkIncomingPacketMarkRule = "MARK xset 0x3ffdd/0xffefffff";
1793 break;
1794 case INetd::PERMISSION_NETWORK:
1795 networkIncomingPacketMarkRule = "MARK xset 0x7ffdd/0xffefffff";
1796 break;
1797 case INetd::PERMISSION_SYSTEM:
1798 networkIncomingPacketMarkRule = "MARK xset 0xfffdd/0xffefffff";
1799 break;
1800 }
1801
1802 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
1803 EXPECT_TRUE(iptablesNetworkPermissionIptablesRuleExists(
1804 binary, ROUTECTRL_INPUT, ifName, networkIncomingPacketMarkRule, MANGLE_TABLE));
1805 }
1806}
1807
1808} // namespace
1809
1810TEST_F(BinderTest, NetworkAddRemoveRouteUserPermission) {
Luke Huangc3252cc2018-10-16 15:43:23 +08001811 static const struct {
Luke Huangb670d162018-08-23 20:01:13 +08001812 const char* ipVersion;
1813 const char* testDest;
1814 const char* testNextHop;
1815 const bool expectSuccess;
1816 } kTestData[] = {
1817 {IP_RULE_V4, "0.0.0.0/0", "", true},
Luke Huangc3252cc2018-10-16 15:43:23 +08001818 {IP_RULE_V4, "0.0.0.0/0", "10.251.10.0", true},
1819 {IP_RULE_V4, "10.251.0.0/16", "", true},
1820 {IP_RULE_V4, "10.251.0.0/16", "10.251.10.0", true},
1821 {IP_RULE_V4, "10.251.0.0/16", "fe80::/64", false},
Luke Huangb670d162018-08-23 20:01:13 +08001822 {IP_RULE_V6, "::/0", "", true},
Luke Huangc3252cc2018-10-16 15:43:23 +08001823 {IP_RULE_V6, "::/0", "2001:db8::", true},
1824 {IP_RULE_V6, "2001:db8:cafe::/64", "2001:db8::", true},
Luke Huangb670d162018-08-23 20:01:13 +08001825 {IP_RULE_V4, "fe80::/64", "0.0.0.0", false},
1826 };
1827
Luke Huangc3252cc2018-10-16 15:43:23 +08001828 static const struct {
1829 const char* ipVersion;
1830 const char* testDest;
1831 const char* testNextHop;
1832 } kTestDataWithNextHop[] = {
1833 {IP_RULE_V4, "10.251.10.0/30", ""},
1834 {IP_RULE_V6, "2001:db8::/32", ""},
1835 };
1836
Luke Huangb670d162018-08-23 20:01:13 +08001837 static const char testTableLegacySystem[] = "legacy_system";
Luke Huangc3252cc2018-10-16 15:43:23 +08001838 static const char testTableLegacyNetwork[] = "legacy_network";
Luke Huangb670d162018-08-23 20:01:13 +08001839 const int testUid = randomUid();
1840 const std::vector<int32_t> testUids = {testUid};
1841
1842 // Add test physical network
1843 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
1844 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
1845
Luke Huangc3252cc2018-10-16 15:43:23 +08001846 // Setup route for testing nextHop
Sehee Park8659b8d2018-11-16 10:53:16 +09001847 for (size_t i = 0; i < std::size(kTestDataWithNextHop); i++) {
Luke Huangc3252cc2018-10-16 15:43:23 +08001848 const auto& td = kTestDataWithNextHop[i];
1849
1850 // All route for test tun will disappear once the tun interface is deleted.
1851 binder::Status status =
1852 mNetd->networkAddRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop);
1853 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1854 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1855 sTun.name().c_str());
1856
1857 // Add system permission for test uid, setup route in legacy system table.
1858 EXPECT_TRUE(mNetd->networkSetPermissionForUser(INetd::PERMISSION_SYSTEM, testUids).isOk());
1859
1860 status = mNetd->networkAddLegacyRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop,
1861 testUid);
1862 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1863 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1864 testTableLegacySystem);
1865
1866 // Remove system permission for test uid, setup route in legacy network table.
1867 EXPECT_TRUE(mNetd->networkClearPermissionForUser(testUids).isOk());
1868
1869 status = mNetd->networkAddLegacyRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop,
1870 testUid);
1871 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1872 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1873 testTableLegacyNetwork);
1874 }
1875
Sehee Park8659b8d2018-11-16 10:53:16 +09001876 for (size_t i = 0; i < std::size(kTestData); i++) {
Luke Huangb670d162018-08-23 20:01:13 +08001877 const auto& td = kTestData[i];
1878
1879 binder::Status status =
1880 mNetd->networkAddRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop);
1881 if (td.expectSuccess) {
1882 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangc3252cc2018-10-16 15:43:23 +08001883 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
Luke Huangb670d162018-08-23 20:01:13 +08001884 sTun.name().c_str());
1885 } else {
Luke Huangc3252cc2018-10-16 15:43:23 +08001886 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1887 EXPECT_NE(0, status.serviceSpecificErrorCode());
Luke Huangb670d162018-08-23 20:01:13 +08001888 }
1889
1890 status = mNetd->networkRemoveRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop);
1891 if (td.expectSuccess) {
1892 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangc3252cc2018-10-16 15:43:23 +08001893 expectNetworkRouteDoesNotExist(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1894 sTun.name().c_str());
Luke Huangb670d162018-08-23 20:01:13 +08001895 } else {
Luke Huangc3252cc2018-10-16 15:43:23 +08001896 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1897 EXPECT_NE(0, status.serviceSpecificErrorCode());
Luke Huangb670d162018-08-23 20:01:13 +08001898 }
1899
Luke Huangc3252cc2018-10-16 15:43:23 +08001900 // Add system permission for test uid, route will be added into legacy system table.
1901 EXPECT_TRUE(mNetd->networkSetPermissionForUser(INetd::PERMISSION_SYSTEM, testUids).isOk());
Luke Huangb670d162018-08-23 20:01:13 +08001902
1903 status = mNetd->networkAddLegacyRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop,
1904 testUid);
1905 if (td.expectSuccess) {
1906 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangc3252cc2018-10-16 15:43:23 +08001907 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
Luke Huangb670d162018-08-23 20:01:13 +08001908 testTableLegacySystem);
1909 } else {
Luke Huangc3252cc2018-10-16 15:43:23 +08001910 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1911 EXPECT_NE(0, status.serviceSpecificErrorCode());
Luke Huangb670d162018-08-23 20:01:13 +08001912 }
1913
1914 status = mNetd->networkRemoveLegacyRoute(TEST_NETID1, sTun.name(), td.testDest,
1915 td.testNextHop, testUid);
1916 if (td.expectSuccess) {
1917 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangc3252cc2018-10-16 15:43:23 +08001918 expectNetworkRouteDoesNotExist(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1919 testTableLegacySystem);
Luke Huangb670d162018-08-23 20:01:13 +08001920 } else {
Luke Huangc3252cc2018-10-16 15:43:23 +08001921 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1922 EXPECT_NE(0, status.serviceSpecificErrorCode());
Luke Huangb670d162018-08-23 20:01:13 +08001923 }
1924
Luke Huangc3252cc2018-10-16 15:43:23 +08001925 // Remove system permission for test uid, route will be added into legacy network table.
1926 EXPECT_TRUE(mNetd->networkClearPermissionForUser(testUids).isOk());
1927
1928 status = mNetd->networkAddLegacyRoute(TEST_NETID1, sTun.name(), td.testDest, td.testNextHop,
1929 testUid);
1930 if (td.expectSuccess) {
1931 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1932 expectNetworkRouteExists(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1933 testTableLegacyNetwork);
1934 } else {
1935 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1936 EXPECT_NE(0, status.serviceSpecificErrorCode());
1937 }
1938
1939 status = mNetd->networkRemoveLegacyRoute(TEST_NETID1, sTun.name(), td.testDest,
1940 td.testNextHop, testUid);
1941 if (td.expectSuccess) {
1942 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1943 expectNetworkRouteDoesNotExist(td.ipVersion, sTun.name(), td.testDest, td.testNextHop,
1944 testTableLegacyNetwork);
1945 } else {
1946 EXPECT_EQ(binder::Status::EX_SERVICE_SPECIFIC, status.exceptionCode());
1947 EXPECT_NE(0, status.serviceSpecificErrorCode());
1948 }
Luke Huangb670d162018-08-23 20:01:13 +08001949 }
1950
1951 // Remove test physical network
1952 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
1953}
1954
1955TEST_F(BinderTest, NetworkPermissionDefault) {
1956 // Add test physical network
1957 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
1958 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
1959
Luke Huangc3252cc2018-10-16 15:43:23 +08001960 // Get current default network NetId
Luke Huangb670d162018-08-23 20:01:13 +08001961 int currentNetid;
1962 binder::Status status = mNetd->networkGetDefault(&currentNetid);
1963 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1964
1965 // Test SetDefault
1966 status = mNetd->networkSetDefault(TEST_NETID1);
1967 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1968 expectNetworkDefaultIpRuleExists(sTun.name().c_str());
1969
1970 status = mNetd->networkClearDefault();
1971 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1972 expectNetworkDefaultIpRuleDoesNotExist();
1973
1974 // Add default network back
1975 status = mNetd->networkSetDefault(currentNetid);
1976 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1977
1978 // Test SetPermission
1979 status = mNetd->networkSetPermissionForNetwork(TEST_NETID1, INetd::PERMISSION_SYSTEM);
1980 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1981 expectNetworkPermissionIpRuleExists(sTun.name().c_str(), INetd::PERMISSION_SYSTEM);
1982 expectNetworkPermissionIptablesRuleExists(sTun.name().c_str(), INetd::PERMISSION_SYSTEM);
1983
1984 status = mNetd->networkSetPermissionForNetwork(TEST_NETID1, INetd::PERMISSION_NONE);
1985 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1986 expectNetworkPermissionIpRuleExists(sTun.name().c_str(), INetd::PERMISSION_NONE);
1987 expectNetworkPermissionIptablesRuleExists(sTun.name().c_str(), INetd::PERMISSION_NONE);
1988
1989 // Remove test physical network
1990 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
1991}
1992
1993TEST_F(BinderTest, NetworkSetProtectAllowDeny) {
1994 const int testUid = randomUid();
1995 binder::Status status = mNetd->networkSetProtectAllow(testUid);
1996 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
1997 bool ret = false;
1998 status = mNetd->networkCanProtect(testUid, &ret);
1999 EXPECT_TRUE(ret);
2000
2001 status = mNetd->networkSetProtectDeny(testUid);
2002 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2003 status = mNetd->networkCanProtect(testUid, &ret);
2004 EXPECT_FALSE(ret);
2005}
2006
2007namespace {
2008
Luke Huangb5733d72018-08-21 17:17:19 +08002009int readIntFromPath(const std::string& path) {
2010 std::string result = "";
2011 EXPECT_TRUE(ReadFileToString(path, &result));
2012 return std::stoi(result);
2013}
2014
2015int getTetherAcceptIPv6Ra(const std::string& ifName) {
2016 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/accept_ra", ifName.c_str());
2017 return readIntFromPath(path);
2018}
2019
2020bool getTetherAcceptIPv6Dad(const std::string& ifName) {
2021 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/accept_dad", ifName.c_str());
2022 return readIntFromPath(path);
2023}
2024
2025int getTetherIPv6DadTransmits(const std::string& ifName) {
2026 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/dad_transmits", ifName.c_str());
2027 return readIntFromPath(path);
2028}
2029
2030bool getTetherEnableIPv6(const std::string& ifName) {
2031 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/disable_ipv6", ifName.c_str());
2032 int disableIPv6 = readIntFromPath(path);
2033 return !disableIPv6;
2034}
2035
2036bool interfaceListContains(const std::vector<std::string>& ifList, const std::string& ifName) {
2037 for (const auto& iface : ifList) {
2038 if (iface == ifName) {
2039 return true;
2040 }
2041 }
2042 return false;
2043}
2044
2045void expectTetherInterfaceConfigureForIPv6Router(const std::string& ifName) {
2046 EXPECT_EQ(getTetherAcceptIPv6Ra(ifName), 0);
2047 EXPECT_FALSE(getTetherAcceptIPv6Dad(ifName));
2048 EXPECT_EQ(getTetherIPv6DadTransmits(ifName), 0);
2049 EXPECT_TRUE(getTetherEnableIPv6(ifName));
2050}
2051
2052void expectTetherInterfaceConfigureForIPv6Client(const std::string& ifName) {
2053 EXPECT_EQ(getTetherAcceptIPv6Ra(ifName), 2);
2054 EXPECT_TRUE(getTetherAcceptIPv6Dad(ifName));
2055 EXPECT_EQ(getTetherIPv6DadTransmits(ifName), 1);
2056 EXPECT_FALSE(getTetherEnableIPv6(ifName));
2057}
2058
2059void expectTetherInterfaceExists(const std::vector<std::string>& ifList,
2060 const std::string& ifName) {
2061 EXPECT_TRUE(interfaceListContains(ifList, ifName));
2062}
2063
2064void expectTetherInterfaceNotExists(const std::vector<std::string>& ifList,
2065 const std::string& ifName) {
2066 EXPECT_FALSE(interfaceListContains(ifList, ifName));
2067}
2068
2069void expectTetherDnsListEquals(const std::vector<std::string>& dnsList,
2070 const std::vector<std::string>& testDnsAddrs) {
2071 EXPECT_TRUE(dnsList == testDnsAddrs);
2072}
2073
2074} // namespace
2075
2076TEST_F(BinderTest, TetherStartStopStatus) {
2077 std::vector<std::string> noDhcpRange = {};
2078 static const char dnsdName[] = "dnsmasq";
2079
2080 binder::Status status = mNetd->tetherStart(noDhcpRange);
2081 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangd1675922019-03-11 17:29:27 +08002082 expectProcessExists(dnsdName);
Luke Huangb5733d72018-08-21 17:17:19 +08002083
2084 bool tetherEnabled;
2085 status = mNetd->tetherIsEnabled(&tetherEnabled);
2086 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2087 EXPECT_TRUE(tetherEnabled);
2088
2089 status = mNetd->tetherStop();
2090 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
Luke Huangd1675922019-03-11 17:29:27 +08002091 expectProcessDoesNotExists(dnsdName);
Luke Huangb5733d72018-08-21 17:17:19 +08002092
2093 status = mNetd->tetherIsEnabled(&tetherEnabled);
2094 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2095 EXPECT_FALSE(tetherEnabled);
2096}
2097
2098TEST_F(BinderTest, TetherInterfaceAddRemoveList) {
2099 // TODO: verify if dnsmasq update interface successfully
2100
2101 binder::Status status = mNetd->tetherInterfaceAdd(sTun.name());
2102 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2103 expectTetherInterfaceConfigureForIPv6Router(sTun.name());
2104
2105 std::vector<std::string> ifList;
2106 status = mNetd->tetherInterfaceList(&ifList);
2107 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2108 expectTetherInterfaceExists(ifList, sTun.name());
2109
2110 status = mNetd->tetherInterfaceRemove(sTun.name());
2111 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2112 expectTetherInterfaceConfigureForIPv6Client(sTun.name());
2113
2114 status = mNetd->tetherInterfaceList(&ifList);
2115 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2116 expectTetherInterfaceNotExists(ifList, sTun.name());
2117}
2118
2119TEST_F(BinderTest, TetherDnsSetList) {
2120 // TODO: verify if dnsmasq update dns successfully
2121 std::vector<std::string> testDnsAddrs = {"192.168.1.37", "213.137.100.3"};
2122
2123 binder::Status status = mNetd->tetherDnsSet(TEST_NETID1, testDnsAddrs);
2124 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2125
2126 std::vector<std::string> dnsList;
2127 status = mNetd->tetherDnsList(&dnsList);
2128 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2129 expectTetherDnsListEquals(dnsList, testDnsAddrs);
Luke Huange64fa382018-07-24 16:38:22 +08002130}
2131
2132namespace {
2133
2134constexpr char FIREWALL_INPUT[] = "fw_INPUT";
2135constexpr char FIREWALL_OUTPUT[] = "fw_OUTPUT";
2136constexpr char FIREWALL_FORWARD[] = "fw_FORWARD";
2137constexpr char FIREWALL_DOZABLE[] = "fw_dozable";
2138constexpr char FIREWALL_POWERSAVE[] = "fw_powersave";
2139constexpr char FIREWALL_STANDBY[] = "fw_standby";
2140constexpr char targetReturn[] = "RETURN";
2141constexpr char targetDrop[] = "DROP";
2142
2143void expectFirewallWhitelistMode() {
2144 static const char dropRule[] = "DROP all";
2145 static const char rejectRule[] = "REJECT all";
2146 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2147 EXPECT_TRUE(iptablesRuleExists(binary, FIREWALL_INPUT, dropRule));
2148 EXPECT_TRUE(iptablesRuleExists(binary, FIREWALL_OUTPUT, rejectRule));
2149 EXPECT_TRUE(iptablesRuleExists(binary, FIREWALL_FORWARD, rejectRule));
2150 }
2151}
2152
2153void expectFirewallBlacklistMode() {
2154 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2155 EXPECT_EQ(2, iptablesRuleLineLength(binary, FIREWALL_INPUT));
2156 EXPECT_EQ(2, iptablesRuleLineLength(binary, FIREWALL_OUTPUT));
2157 EXPECT_EQ(2, iptablesRuleLineLength(binary, FIREWALL_FORWARD));
2158 }
2159}
2160
2161bool iptablesFirewallInterfaceFirstRuleExists(const char* binary, const char* chainName,
2162 const std::string& expectedInterface,
2163 const std::string& expectedRule) {
2164 std::vector<std::string> rules = listIptablesRuleByTable(binary, FILTER_TABLE, chainName);
2165 // Expected rule:
2166 // Chain fw_INPUT (1 references)
2167 // pkts bytes target prot opt in out source destination
2168 // 0 0 RETURN all -- expectedInterface * 0.0.0.0/0 0.0.0.0/0
2169 // 0 0 DROP all -- * * 0.0.0.0/0 0.0.0.0/0
2170 int firstRuleIndex = 2;
2171 if (rules.size() < 4) return false;
2172 if (rules[firstRuleIndex].find(expectedInterface) != std::string::npos) {
2173 if (rules[firstRuleIndex].find(expectedRule) != std::string::npos) {
2174 return true;
2175 }
2176 }
2177 return false;
2178}
2179
2180// TODO: It is a duplicate function, need to remove it
2181bool iptablesFirewallInterfaceRuleExists(const char* binary, const char* chainName,
2182 const std::string& expectedInterface,
2183 const std::string& expectedRule) {
2184 std::vector<std::string> rules = listIptablesRuleByTable(binary, FILTER_TABLE, chainName);
2185 for (const auto& rule : rules) {
2186 if (rule.find(expectedInterface) != std::string::npos) {
2187 if (rule.find(expectedRule) != std::string::npos) {
2188 return true;
2189 }
2190 }
2191 }
2192 return false;
2193}
2194
2195void expectFirewallInterfaceRuleAllowExists(const std::string& ifname) {
2196 static const char returnRule[] = "RETURN all";
2197 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2198 EXPECT_TRUE(iptablesFirewallInterfaceFirstRuleExists(binary, FIREWALL_INPUT, ifname,
2199 returnRule));
2200 EXPECT_TRUE(iptablesFirewallInterfaceFirstRuleExists(binary, FIREWALL_OUTPUT, ifname,
2201 returnRule));
2202 }
2203}
2204
2205void expectFireWallInterfaceRuleAllowDoesNotExist(const std::string& ifname) {
2206 static const char returnRule[] = "RETURN all";
2207 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2208 EXPECT_FALSE(
2209 iptablesFirewallInterfaceRuleExists(binary, FIREWALL_INPUT, ifname, returnRule));
2210 EXPECT_FALSE(
2211 iptablesFirewallInterfaceRuleExists(binary, FIREWALL_OUTPUT, ifname, returnRule));
2212 }
2213}
2214
2215bool iptablesFirewallUidFirstRuleExists(const char* binary, const char* chainName,
2216 const std::string& expectedTarget,
2217 const std::string& expectedRule) {
2218 std::vector<std::string> rules = listIptablesRuleByTable(binary, FILTER_TABLE, chainName);
2219 int firstRuleIndex = 2;
2220 if (rules.size() < 4) return false;
2221 if (rules[firstRuleIndex].find(expectedTarget) != std::string::npos) {
2222 if (rules[firstRuleIndex].find(expectedRule) != std::string::npos) {
2223 return true;
2224 }
2225 }
2226 return false;
2227}
2228
2229bool iptablesFirewallUidLastRuleExists(const char* binary, const char* chainName,
2230 const std::string& expectedTarget,
2231 const std::string& expectedRule) {
2232 std::vector<std::string> rules = listIptablesRuleByTable(binary, FILTER_TABLE, chainName);
2233 int lastRuleIndex = rules.size() - 1;
2234 if (lastRuleIndex < 0) return false;
2235 if (rules[lastRuleIndex].find(expectedTarget) != std::string::npos) {
2236 if (rules[lastRuleIndex].find(expectedRule) != std::string::npos) {
2237 return true;
2238 }
2239 }
2240 return false;
2241}
2242
2243void expectFirewallUidFirstRuleExists(const char* chainName, int32_t uid) {
2244 std::string uidRule = StringPrintf("owner UID match %u", uid);
2245 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH})
2246 EXPECT_TRUE(iptablesFirewallUidFirstRuleExists(binary, chainName, targetReturn, uidRule));
2247}
2248
2249void expectFirewallUidFirstRuleDoesNotExist(const char* chainName, int32_t uid) {
2250 std::string uidRule = StringPrintf("owner UID match %u", uid);
2251 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH})
2252 EXPECT_FALSE(iptablesFirewallUidFirstRuleExists(binary, chainName, targetReturn, uidRule));
2253}
2254
2255void expectFirewallUidLastRuleExists(const char* chainName, int32_t uid) {
2256 std::string uidRule = StringPrintf("owner UID match %u", uid);
2257 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH})
2258 EXPECT_TRUE(iptablesFirewallUidLastRuleExists(binary, chainName, targetDrop, uidRule));
2259}
2260
2261void expectFirewallUidLastRuleDoesNotExist(const char* chainName, int32_t uid) {
2262 std::string uidRule = StringPrintf("owner UID match %u", uid);
2263 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH})
2264 EXPECT_FALSE(iptablesFirewallUidLastRuleExists(binary, chainName, targetDrop, uidRule));
2265}
2266
2267bool iptablesFirewallChildChainsLastRuleExists(const char* binary, const char* chainName) {
2268 std::vector<std::string> inputRules =
2269 listIptablesRuleByTable(binary, FILTER_TABLE, FIREWALL_INPUT);
2270 std::vector<std::string> outputRules =
2271 listIptablesRuleByTable(binary, FILTER_TABLE, FIREWALL_OUTPUT);
2272 int inputLastRuleIndex = inputRules.size() - 1;
2273 int outputLastRuleIndex = outputRules.size() - 1;
2274
2275 if (inputLastRuleIndex < 0 || outputLastRuleIndex < 0) return false;
2276 if (inputRules[inputLastRuleIndex].find(chainName) != std::string::npos) {
2277 if (outputRules[outputLastRuleIndex].find(chainName) != std::string::npos) {
2278 return true;
2279 }
2280 }
2281 return false;
2282}
2283
2284void expectFirewallChildChainsLastRuleExists(const char* chainRule) {
2285 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH})
2286 EXPECT_TRUE(iptablesFirewallChildChainsLastRuleExists(binary, chainRule));
2287}
2288
2289void expectFirewallChildChainsLastRuleDoesNotExist(const char* chainRule) {
2290 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2291 EXPECT_FALSE(iptablesRuleExists(binary, FIREWALL_INPUT, chainRule));
2292 EXPECT_FALSE(iptablesRuleExists(binary, FIREWALL_OUTPUT, chainRule));
2293 }
2294}
2295
2296} // namespace
2297
2298TEST_F(BinderTest, FirewallSetFirewallType) {
2299 binder::Status status = mNetd->firewallSetFirewallType(INetd::FIREWALL_WHITELIST);
2300 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2301 expectFirewallWhitelistMode();
2302
2303 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2304 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2305 expectFirewallBlacklistMode();
2306
2307 // set firewall type blacklist twice
2308 mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2309 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2310 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2311 expectFirewallBlacklistMode();
2312
2313 // set firewall type whitelist twice
2314 mNetd->firewallSetFirewallType(INetd::FIREWALL_WHITELIST);
2315 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_WHITELIST);
2316 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2317 expectFirewallWhitelistMode();
2318
2319 // reset firewall type to default
2320 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2321 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2322 expectFirewallBlacklistMode();
2323}
2324
2325TEST_F(BinderTest, FirewallSetInterfaceRule) {
2326 // setinterfaceRule is not supported in BLACKLIST MODE
2327 binder::Status status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2328 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2329
2330 status = mNetd->firewallSetInterfaceRule(sTun.name(), INetd::FIREWALL_RULE_ALLOW);
2331 EXPECT_FALSE(status.isOk()) << status.exceptionMessage();
2332
2333 // set WHITELIST mode first
2334 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_WHITELIST);
2335 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2336
2337 status = mNetd->firewallSetInterfaceRule(sTun.name(), INetd::FIREWALL_RULE_ALLOW);
2338 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2339 expectFirewallInterfaceRuleAllowExists(sTun.name());
2340
2341 status = mNetd->firewallSetInterfaceRule(sTun.name(), INetd::FIREWALL_RULE_DENY);
2342 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2343 expectFireWallInterfaceRuleAllowDoesNotExist(sTun.name());
2344
2345 // reset firewall mode to default
2346 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2347 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2348 expectFirewallBlacklistMode();
2349}
2350
2351TEST_F(BinderTest, FirewallSetUidRule) {
2352 SKIP_IF_BPF_SUPPORTED;
2353
2354 int32_t uid = randomUid();
2355
2356 // Doze allow
2357 binder::Status status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_DOZABLE, uid,
2358 INetd::FIREWALL_RULE_ALLOW);
2359 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2360 expectFirewallUidFirstRuleExists(FIREWALL_DOZABLE, uid);
2361
2362 // Doze deny
2363 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_DOZABLE, uid,
2364 INetd::FIREWALL_RULE_DENY);
2365 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2366 expectFirewallUidFirstRuleDoesNotExist(FIREWALL_DOZABLE, uid);
2367
2368 // Powersave allow
2369 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_POWERSAVE, uid,
2370 INetd::FIREWALL_RULE_ALLOW);
2371 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2372 expectFirewallUidFirstRuleExists(FIREWALL_POWERSAVE, uid);
2373
2374 // Powersave deny
2375 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_POWERSAVE, uid,
2376 INetd::FIREWALL_RULE_DENY);
2377 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2378 expectFirewallUidFirstRuleDoesNotExist(FIREWALL_POWERSAVE, uid);
2379
2380 // Standby deny
2381 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_STANDBY, uid,
2382 INetd::FIREWALL_RULE_DENY);
2383 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2384 expectFirewallUidLastRuleExists(FIREWALL_STANDBY, uid);
2385
2386 // Standby allow
2387 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_STANDBY, uid,
2388 INetd::FIREWALL_RULE_ALLOW);
2389 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2390 expectFirewallUidLastRuleDoesNotExist(FIREWALL_STANDBY, uid);
2391
2392 // None deny in BLACKLIST
2393 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_NONE, uid, INetd::FIREWALL_RULE_DENY);
2394 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2395 expectFirewallUidLastRuleExists(FIREWALL_INPUT, uid);
2396 expectFirewallUidLastRuleExists(FIREWALL_OUTPUT, uid);
2397
2398 // None allow in BLACKLIST
2399 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_NONE, uid, INetd::FIREWALL_RULE_ALLOW);
2400 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2401 expectFirewallUidLastRuleDoesNotExist(FIREWALL_INPUT, uid);
2402 expectFirewallUidLastRuleDoesNotExist(FIREWALL_OUTPUT, uid);
2403
2404 // set firewall type whitelist twice
2405 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_WHITELIST);
2406 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2407 expectFirewallWhitelistMode();
2408
2409 // None allow in WHITELIST
2410 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_NONE, uid, INetd::FIREWALL_RULE_ALLOW);
2411 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2412 expectFirewallUidFirstRuleExists(FIREWALL_INPUT, uid);
2413 expectFirewallUidFirstRuleExists(FIREWALL_OUTPUT, uid);
2414
2415 // None deny in WHITELIST
2416 status = mNetd->firewallSetUidRule(INetd::FIREWALL_CHAIN_NONE, uid, INetd::FIREWALL_RULE_DENY);
2417 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2418 expectFirewallUidFirstRuleDoesNotExist(FIREWALL_INPUT, uid);
2419 expectFirewallUidFirstRuleDoesNotExist(FIREWALL_OUTPUT, uid);
2420
2421 // reset firewall mode to default
2422 status = mNetd->firewallSetFirewallType(INetd::FIREWALL_BLACKLIST);
2423 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2424 expectFirewallBlacklistMode();
2425}
2426
2427TEST_F(BinderTest, FirewallEnableDisableChildChains) {
2428 SKIP_IF_BPF_SUPPORTED;
2429
2430 binder::Status status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_DOZABLE, true);
2431 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2432 expectFirewallChildChainsLastRuleExists(FIREWALL_DOZABLE);
2433
2434 status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_STANDBY, true);
2435 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2436 expectFirewallChildChainsLastRuleExists(FIREWALL_STANDBY);
2437
2438 status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_POWERSAVE, true);
2439 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2440 expectFirewallChildChainsLastRuleExists(FIREWALL_POWERSAVE);
2441
2442 status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_DOZABLE, false);
2443 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2444 expectFirewallChildChainsLastRuleDoesNotExist(FIREWALL_DOZABLE);
2445
2446 status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_STANDBY, false);
2447 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2448 expectFirewallChildChainsLastRuleDoesNotExist(FIREWALL_STANDBY);
2449
2450 status = mNetd->firewallEnableChildChain(INetd::FIREWALL_CHAIN_POWERSAVE, false);
2451 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2452 expectFirewallChildChainsLastRuleDoesNotExist(FIREWALL_POWERSAVE);
2453}
Luke Huangf7782042018-08-08 13:13:04 +08002454
2455namespace {
2456
2457std::string hwAddrToStr(unsigned char* hwaddr) {
2458 return StringPrintf("%02x:%02x:%02x:%02x:%02x:%02x", hwaddr[0], hwaddr[1], hwaddr[2], hwaddr[3],
2459 hwaddr[4], hwaddr[5]);
2460}
2461
2462int ipv4NetmaskToPrefixLength(in_addr_t mask) {
2463 int prefixLength = 0;
2464 uint32_t m = ntohl(mask);
2465 while (m & (1 << 31)) {
2466 prefixLength++;
2467 m = m << 1;
2468 }
2469 return prefixLength;
2470}
2471
2472std::string toStdString(const String16& s) {
2473 return std::string(String8(s.string()));
2474}
2475
2476android::netdutils::StatusOr<ifreq> ioctlByIfName(const std::string& ifName, unsigned long flag) {
2477 const auto& sys = sSyscalls.get();
2478 auto fd = sys.socket(AF_INET, SOCK_DGRAM | SOCK_CLOEXEC, 0);
2479 EXPECT_TRUE(isOk(fd.status()));
2480
2481 struct ifreq ifr = {};
2482 strlcpy(ifr.ifr_name, ifName.c_str(), IFNAMSIZ);
2483
2484 return sys.ioctl(fd.value(), flag, &ifr);
2485}
2486
2487std::string getInterfaceHwAddr(const std::string& ifName) {
2488 auto res = ioctlByIfName(ifName, SIOCGIFHWADDR);
2489
2490 unsigned char hwaddr[ETH_ALEN] = {};
2491 if (isOk(res.status())) {
2492 memcpy((void*) hwaddr, &res.value().ifr_hwaddr.sa_data, ETH_ALEN);
2493 }
2494
2495 return hwAddrToStr(hwaddr);
2496}
2497
2498int getInterfaceIPv4Prefix(const std::string& ifName) {
2499 auto res = ioctlByIfName(ifName, SIOCGIFNETMASK);
2500
2501 int prefixLength = 0;
2502 if (isOk(res.status())) {
2503 prefixLength = ipv4NetmaskToPrefixLength(
2504 ((struct sockaddr_in*) &res.value().ifr_addr)->sin_addr.s_addr);
2505 }
2506
2507 return prefixLength;
2508}
2509
2510std::string getInterfaceIPv4Addr(const std::string& ifName) {
2511 auto res = ioctlByIfName(ifName, SIOCGIFADDR);
2512
2513 struct in_addr addr = {};
2514 if (isOk(res.status())) {
2515 addr.s_addr = ((struct sockaddr_in*) &res.value().ifr_addr)->sin_addr.s_addr;
2516 }
2517
2518 return std::string(inet_ntoa(addr));
2519}
2520
2521std::vector<std::string> getInterfaceFlags(const std::string& ifName) {
2522 auto res = ioctlByIfName(ifName, SIOCGIFFLAGS);
2523
2524 unsigned flags = 0;
2525 if (isOk(res.status())) {
2526 flags = res.value().ifr_flags;
2527 }
2528
2529 std::vector<std::string> ifFlags;
2530 ifFlags.push_back(flags & IFF_UP ? toStdString(INetd::IF_STATE_UP())
2531 : toStdString(INetd::IF_STATE_DOWN()));
2532
2533 if (flags & IFF_BROADCAST) ifFlags.push_back(toStdString(INetd::IF_FLAG_BROADCAST()));
2534 if (flags & IFF_LOOPBACK) ifFlags.push_back(toStdString(INetd::IF_FLAG_LOOPBACK()));
2535 if (flags & IFF_POINTOPOINT) ifFlags.push_back(toStdString(INetd::IF_FLAG_POINTOPOINT()));
2536 if (flags & IFF_RUNNING) ifFlags.push_back(toStdString(INetd::IF_FLAG_RUNNING()));
2537 if (flags & IFF_MULTICAST) ifFlags.push_back(toStdString(INetd::IF_FLAG_MULTICAST()));
2538
2539 return ifFlags;
2540}
2541
2542bool compareListInterface(const std::vector<std::string>& interfaceList) {
2543 const auto& res = InterfaceController::getIfaceNames();
2544 EXPECT_TRUE(isOk(res));
2545
2546 std::vector<std::string> resIfList;
2547 resIfList.reserve(res.value().size());
2548 resIfList.insert(end(resIfList), begin(res.value()), end(res.value()));
2549
2550 return resIfList == interfaceList;
2551}
2552
2553int getInterfaceIPv6PrivacyExtensions(const std::string& ifName) {
2554 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/use_tempaddr", ifName.c_str());
2555 return readIntFromPath(path);
2556}
2557
2558bool getInterfaceEnableIPv6(const std::string& ifName) {
2559 std::string path = StringPrintf("/proc/sys/net/ipv6/conf/%s/disable_ipv6", ifName.c_str());
2560
2561 int disableIPv6 = readIntFromPath(path);
2562 return !disableIPv6;
2563}
2564
2565int getInterfaceMtu(const std::string& ifName) {
2566 std::string path = StringPrintf("/sys/class/net/%s/mtu", ifName.c_str());
2567 return readIntFromPath(path);
2568}
2569
2570void expectInterfaceList(const std::vector<std::string>& interfaceList) {
2571 EXPECT_TRUE(compareListInterface(interfaceList));
2572}
2573
2574void expectCurrentInterfaceConfigurationEquals(const std::string& ifName,
2575 const InterfaceConfigurationParcel& interfaceCfg) {
2576 EXPECT_EQ(getInterfaceIPv4Addr(ifName), interfaceCfg.ipv4Addr);
2577 EXPECT_EQ(getInterfaceIPv4Prefix(ifName), interfaceCfg.prefixLength);
2578 EXPECT_EQ(getInterfaceHwAddr(ifName), interfaceCfg.hwAddr);
2579 EXPECT_EQ(getInterfaceFlags(ifName), interfaceCfg.flags);
2580}
2581
2582void expectCurrentInterfaceConfigurationAlmostEqual(const InterfaceConfigurationParcel& setCfg) {
2583 EXPECT_EQ(getInterfaceIPv4Addr(setCfg.ifName), setCfg.ipv4Addr);
2584 EXPECT_EQ(getInterfaceIPv4Prefix(setCfg.ifName), setCfg.prefixLength);
2585
2586 const auto& ifFlags = getInterfaceFlags(setCfg.ifName);
2587 for (const auto& flag : setCfg.flags) {
2588 EXPECT_TRUE(std::find(ifFlags.begin(), ifFlags.end(), flag) != ifFlags.end());
2589 }
2590}
2591
2592void expectInterfaceIPv6PrivacyExtensions(const std::string& ifName, bool enable) {
2593 int v6PrivacyExtensions = getInterfaceIPv6PrivacyExtensions(ifName);
2594 EXPECT_EQ(v6PrivacyExtensions, enable ? 2 : 0);
2595}
2596
2597void expectInterfaceNoAddr(const std::string& ifName) {
2598 // noAddr
2599 EXPECT_EQ(getInterfaceIPv4Addr(ifName), "0.0.0.0");
2600 // noPrefix
2601 EXPECT_EQ(getInterfaceIPv4Prefix(ifName), 0);
2602}
2603
2604void expectInterfaceEnableIPv6(const std::string& ifName, bool enable) {
2605 int enableIPv6 = getInterfaceEnableIPv6(ifName);
2606 EXPECT_EQ(enableIPv6, enable);
2607}
2608
2609void expectInterfaceMtu(const std::string& ifName, const int mtu) {
2610 int mtuSize = getInterfaceMtu(ifName);
2611 EXPECT_EQ(mtu, mtuSize);
2612}
2613
2614InterfaceConfigurationParcel makeInterfaceCfgParcel(const std::string& ifName,
2615 const std::string& addr, int prefixLength,
2616 const std::vector<std::string>& flags) {
2617 InterfaceConfigurationParcel cfg;
2618 cfg.ifName = ifName;
2619 cfg.hwAddr = "";
2620 cfg.ipv4Addr = addr;
2621 cfg.prefixLength = prefixLength;
2622 cfg.flags = flags;
2623 return cfg;
2624}
2625
2626void expectTunFlags(const InterfaceConfigurationParcel& interfaceCfg) {
2627 std::vector<std::string> expectedFlags = {"up", "point-to-point", "running", "multicast"};
2628 std::vector<std::string> unexpectedFlags = {"down", "broadcast"};
2629
2630 for (const auto& flag : expectedFlags) {
2631 EXPECT_TRUE(std::find(interfaceCfg.flags.begin(), interfaceCfg.flags.end(), flag) !=
2632 interfaceCfg.flags.end());
2633 }
2634
2635 for (const auto& flag : unexpectedFlags) {
2636 EXPECT_TRUE(std::find(interfaceCfg.flags.begin(), interfaceCfg.flags.end(), flag) ==
2637 interfaceCfg.flags.end());
2638 }
2639}
2640
2641} // namespace
2642
2643TEST_F(BinderTest, InterfaceList) {
2644 std::vector<std::string> interfaceListResult;
2645
2646 binder::Status status = mNetd->interfaceGetList(&interfaceListResult);
2647 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2648 expectInterfaceList(interfaceListResult);
2649}
2650
2651TEST_F(BinderTest, InterfaceGetCfg) {
2652 InterfaceConfigurationParcel interfaceCfgResult;
2653
2654 // Add test physical network
2655 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
2656 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
2657
2658 binder::Status status = mNetd->interfaceGetCfg(sTun.name(), &interfaceCfgResult);
2659 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2660 expectCurrentInterfaceConfigurationEquals(sTun.name(), interfaceCfgResult);
2661 expectTunFlags(interfaceCfgResult);
2662
2663 // Remove test physical network
2664 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
2665}
2666
2667TEST_F(BinderTest, InterfaceSetCfg) {
2668 const std::string testAddr = "192.0.2.3";
2669 const int testPrefixLength = 24;
2670 std::vector<std::string> upFlags = {"up"};
2671 std::vector<std::string> downFlags = {"down"};
2672
2673 // Add test physical network
2674 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
2675 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
2676
2677 // Set tun interface down.
2678 auto interfaceCfg = makeInterfaceCfgParcel(sTun.name(), testAddr, testPrefixLength, downFlags);
2679 binder::Status status = mNetd->interfaceSetCfg(interfaceCfg);
2680 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2681 expectCurrentInterfaceConfigurationAlmostEqual(interfaceCfg);
2682
2683 // Set tun interface up again.
2684 interfaceCfg = makeInterfaceCfgParcel(sTun.name(), testAddr, testPrefixLength, upFlags);
2685 status = mNetd->interfaceSetCfg(interfaceCfg);
2686 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2687 status = mNetd->interfaceClearAddrs(sTun.name());
2688 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2689
2690 // Remove test physical network
2691 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
2692}
2693
2694TEST_F(BinderTest, InterfaceSetIPv6PrivacyExtensions) {
2695 // enable
2696 binder::Status status = mNetd->interfaceSetIPv6PrivacyExtensions(sTun.name(), true);
2697 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2698 expectInterfaceIPv6PrivacyExtensions(sTun.name(), true);
2699
2700 // disable
2701 status = mNetd->interfaceSetIPv6PrivacyExtensions(sTun.name(), false);
2702 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2703 expectInterfaceIPv6PrivacyExtensions(sTun.name(), false);
2704}
2705
2706TEST_F(BinderTest, InterfaceClearAddr) {
2707 const std::string testAddr = "192.0.2.3";
2708 const int testPrefixLength = 24;
2709 std::vector<std::string> noFlags{};
2710
2711 // Add test physical network
2712 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
2713 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
2714
2715 auto interfaceCfg = makeInterfaceCfgParcel(sTun.name(), testAddr, testPrefixLength, noFlags);
2716 binder::Status status = mNetd->interfaceSetCfg(interfaceCfg);
2717 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2718 expectCurrentInterfaceConfigurationAlmostEqual(interfaceCfg);
2719
2720 status = mNetd->interfaceClearAddrs(sTun.name());
2721 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2722 expectInterfaceNoAddr(sTun.name());
2723
2724 // Remove test physical network
2725 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
2726}
2727
2728TEST_F(BinderTest, InterfaceSetEnableIPv6) {
2729 // Add test physical network
2730 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
2731 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
2732
2733 // disable
2734 binder::Status status = mNetd->interfaceSetEnableIPv6(sTun.name(), false);
2735 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2736 expectInterfaceEnableIPv6(sTun.name(), false);
2737
2738 // enable
2739 status = mNetd->interfaceSetEnableIPv6(sTun.name(), true);
2740 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2741 expectInterfaceEnableIPv6(sTun.name(), true);
2742
2743 // Remove test physical network
2744 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
2745}
2746
2747TEST_F(BinderTest, InterfaceSetMtu) {
2748 const int testMtu = 1200;
2749
2750 // Add test physical network
2751 EXPECT_TRUE(mNetd->networkCreatePhysical(TEST_NETID1, INetd::PERMISSION_NONE).isOk());
2752 EXPECT_TRUE(mNetd->networkAddInterface(TEST_NETID1, sTun.name()).isOk());
2753
2754 binder::Status status = mNetd->interfaceSetMtu(sTun.name(), testMtu);
2755 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2756 expectInterfaceMtu(sTun.name(), testMtu);
2757
2758 // Remove test physical network
2759 EXPECT_TRUE(mNetd->networkDestroy(TEST_NETID1).isOk());
2760}
Luke Huang19b49c52018-10-22 12:12:05 +09002761
2762namespace {
2763
2764constexpr const char TETHER_FORWARD[] = "tetherctrl_FORWARD";
2765constexpr const char TETHER_NAT_POSTROUTING[] = "tetherctrl_nat_POSTROUTING";
Luke Huangae038f82018-11-05 11:17:31 +09002766constexpr const char TETHER_RAW_PREROUTING[] = "tetherctrl_raw_PREROUTING";
Luke Huang19b49c52018-10-22 12:12:05 +09002767constexpr const char TETHER_COUNTERS_CHAIN[] = "tetherctrl_counters";
2768
Luke Huangae038f82018-11-05 11:17:31 +09002769int iptablesCountRules(const char* binary, const char* table, const char* chainName) {
Luke Huang19b49c52018-10-22 12:12:05 +09002770 return listIptablesRuleByTable(binary, table, chainName).size();
2771}
2772
2773bool iptablesChainMatch(const char* binary, const char* table, const char* chainName,
2774 const std::vector<std::string>& targetVec) {
2775 std::vector<std::string> rules = listIptablesRuleByTable(binary, table, chainName);
2776 if (targetVec.size() != rules.size() - 2) {
2777 return false;
2778 }
2779
2780 /*
Luke Huangae038f82018-11-05 11:17:31 +09002781 * Check that the rules match. Note that this function matches substrings, not entire rules,
2782 * because otherwise rules where "pkts" or "bytes" are nonzero would not match.
Luke Huang19b49c52018-10-22 12:12:05 +09002783 * Skip first two lines since rules start from third line.
2784 * Chain chainName (x references)
2785 * pkts bytes target prot opt in out source destination
2786 * ...
2787 */
2788 int rIndex = 2;
2789 for (const auto& target : targetVec) {
2790 if (rules[rIndex].find(target) == std::string::npos) {
2791 return false;
2792 }
2793 rIndex++;
2794 }
2795 return true;
2796}
2797
2798void expectNatEnable(const std::string& intIf, const std::string& extIf) {
2799 std::vector<std::string> postroutingV4Match = {"MASQUERADE"};
2800 std::vector<std::string> preroutingV4Match = {"CT helper ftp", "CT helper pptp"};
2801 std::vector<std::string> forwardV4Match = {
Luke Huangae038f82018-11-05 11:17:31 +09002802 "bw_global_alert", "state RELATED", "state INVALID",
Luke Huang19b49c52018-10-22 12:12:05 +09002803 StringPrintf("tetherctrl_counters all -- %s %s", intIf.c_str(), extIf.c_str()),
2804 "DROP"};
2805
2806 // V4
2807 EXPECT_TRUE(iptablesChainMatch(IPTABLES_PATH, NAT_TABLE, TETHER_NAT_POSTROUTING,
2808 postroutingV4Match));
Luke Huangae038f82018-11-05 11:17:31 +09002809 EXPECT_TRUE(
2810 iptablesChainMatch(IPTABLES_PATH, RAW_TABLE, TETHER_RAW_PREROUTING, preroutingV4Match));
Luke Huang19b49c52018-10-22 12:12:05 +09002811 EXPECT_TRUE(iptablesChainMatch(IPTABLES_PATH, FILTER_TABLE, TETHER_FORWARD, forwardV4Match));
2812
Luke Huangae038f82018-11-05 11:17:31 +09002813 std::vector<std::string> forwardV6Match = {"bw_global_alert", "tetherctrl_counters"};
Luke Huang19b49c52018-10-22 12:12:05 +09002814 std::vector<std::string> preroutingV6Match = {"rpfilter invert"};
2815
2816 // V6
2817 EXPECT_TRUE(iptablesChainMatch(IP6TABLES_PATH, FILTER_TABLE, TETHER_FORWARD, forwardV6Match));
Luke Huangae038f82018-11-05 11:17:31 +09002818 EXPECT_TRUE(iptablesChainMatch(IP6TABLES_PATH, RAW_TABLE, TETHER_RAW_PREROUTING,
2819 preroutingV6Match));
Luke Huang19b49c52018-10-22 12:12:05 +09002820
2821 for (const auto& binary : {IPTABLES_PATH, IP6TABLES_PATH}) {
2822 EXPECT_TRUE(iptablesTargetsExists(binary, 2, FILTER_TABLE, TETHER_COUNTERS_CHAIN, intIf,
2823 extIf));
2824 }
2825}
2826
2827void expectNatDisable() {
2828 // It is the default DROP rule with tethering disable.
2829 // Chain tetherctrl_FORWARD (1 references)
2830 // pkts bytes target prot opt in out source destination
2831 // 0 0 DROP all -- * * 0.0.0.0/0 0.0.0.0/0
2832 std::vector<std::string> forwardV4Match = {"DROP"};
2833 EXPECT_TRUE(iptablesChainMatch(IPTABLES_PATH, FILTER_TABLE, TETHER_FORWARD, forwardV4Match));
2834
2835 // We expect that these chains should be empty.
Luke Huangae038f82018-11-05 11:17:31 +09002836 EXPECT_EQ(2, iptablesCountRules(IPTABLES_PATH, NAT_TABLE, TETHER_NAT_POSTROUTING));
2837 EXPECT_EQ(2, iptablesCountRules(IPTABLES_PATH, RAW_TABLE, TETHER_RAW_PREROUTING));
Luke Huang19b49c52018-10-22 12:12:05 +09002838
Luke Huangae038f82018-11-05 11:17:31 +09002839 EXPECT_EQ(2, iptablesCountRules(IP6TABLES_PATH, FILTER_TABLE, TETHER_FORWARD));
2840 EXPECT_EQ(2, iptablesCountRules(IP6TABLES_PATH, RAW_TABLE, TETHER_RAW_PREROUTING));
Luke Huang19b49c52018-10-22 12:12:05 +09002841
2842 // Netd won't clear tether quota rule, we don't care rule in tetherctrl_counters.
2843}
2844
2845} // namespace
2846
2847TEST_F(BinderTest, TetherForwardAddRemove) {
Luke Huang19b49c52018-10-22 12:12:05 +09002848 binder::Status status = mNetd->tetherAddForward(sTun.name(), sTun2.name());
2849 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2850 expectNatEnable(sTun.name(), sTun2.name());
2851
2852 status = mNetd->tetherRemoveForward(sTun.name(), sTun2.name());
2853 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2854 expectNatDisable();
Luke Huang19b49c52018-10-22 12:12:05 +09002855}
Chenbo Fengf5663d82018-11-08 16:10:48 -08002856
2857namespace {
2858
2859using TripleInt = std::array<int, 3>;
2860
2861TripleInt readProcFileToTripleInt(const std::string& path) {
2862 std::string valueString;
2863 int min, def, max;
2864 EXPECT_TRUE(ReadFileToString(path, &valueString));
2865 EXPECT_EQ(3, sscanf(valueString.c_str(), "%d %d %d", &min, &def, &max));
2866 return {min, def, max};
2867}
2868
2869void updateAndCheckTcpBuffer(sp<INetd>& netd, TripleInt& rmemValues, TripleInt& wmemValues) {
2870 std::string testRmemValues =
2871 StringPrintf("%u %u %u", rmemValues[0], rmemValues[1], rmemValues[2]);
2872 std::string testWmemValues =
2873 StringPrintf("%u %u %u", wmemValues[0], wmemValues[1], wmemValues[2]);
2874 EXPECT_TRUE(netd->setTcpRWmemorySize(testRmemValues, testWmemValues).isOk());
2875
2876 TripleInt newRmemValues = readProcFileToTripleInt(TCP_RMEM_PROC_FILE);
2877 TripleInt newWmemValues = readProcFileToTripleInt(TCP_WMEM_PROC_FILE);
2878
2879 for (int i = 0; i < 3; i++) {
2880 SCOPED_TRACE(StringPrintf("tcp_mem value %d should be equal", i));
2881 EXPECT_EQ(rmemValues[i], newRmemValues[i]);
2882 EXPECT_EQ(wmemValues[i], newWmemValues[i]);
2883 }
2884}
2885
2886} // namespace
2887
2888TEST_F(BinderTest, TcpBufferSet) {
2889 TripleInt rmemValue = readProcFileToTripleInt(TCP_RMEM_PROC_FILE);
2890 TripleInt testRmemValue{rmemValue[0] + 42, rmemValue[1] + 42, rmemValue[2] + 42};
2891 TripleInt wmemValue = readProcFileToTripleInt(TCP_WMEM_PROC_FILE);
2892 TripleInt testWmemValue{wmemValue[0] + 42, wmemValue[1] + 42, wmemValue[2] + 42};
2893
2894 updateAndCheckTcpBuffer(mNetd, testRmemValue, testWmemValue);
2895 updateAndCheckTcpBuffer(mNetd, rmemValue, wmemValue);
2896}
Luke Huang528af602018-08-29 19:06:05 +08002897
Chenbo Feng48eaed32018-12-26 17:40:21 -08002898namespace {
2899
2900void checkUidsExist(std::vector<int32_t>& uids, bool exist) {
2901 android::bpf::BpfMap<uint32_t, uint8_t> uidPermissionMap(
2902 android::bpf::mapRetrieve(UID_PERMISSION_MAP_PATH, 0));
2903 for (int32_t uid : uids) {
2904 android::netdutils::StatusOr<uint8_t> permission = uidPermissionMap.readValue(uid);
2905 if (exist) {
2906 EXPECT_TRUE(isOk(permission));
2907 EXPECT_EQ(ALLOW_SOCK_CREATE, permission.value());
2908 } else {
2909 EXPECT_FALSE(isOk(permission));
2910 EXPECT_EQ(ENOENT, permission.status().code());
2911 }
2912 }
2913}
2914
2915} // namespace
2916
2917TEST_F(BinderTest, TestInternetPermission) {
2918 SKIP_IF_BPF_NOT_SUPPORTED;
2919
2920 std::vector<int32_t> appUids = {TEST_UID1, TEST_UID2};
2921
2922 mNetd->trafficSetNetPermForUids(INetd::PERMISSION_INTERNET, appUids);
2923 checkUidsExist(appUids, true);
2924 mNetd->trafficSetNetPermForUids(INetd::NO_PERMISSIONS, appUids);
2925 checkUidsExist(appUids, false);
2926}
2927
Luke Huang528af602018-08-29 19:06:05 +08002928TEST_F(BinderTest, UnsolEvents) {
2929 auto testUnsolService = android::net::TestUnsolService::start();
2930 std::string oldTunName = sTun.name();
2931 std::string newTunName = "unsolTest";
2932 testUnsolService->tarVec.push_back(oldTunName);
2933 testUnsolService->tarVec.push_back(newTunName);
2934 auto& cv = testUnsolService->getCv();
2935 auto& cvMutex = testUnsolService->getCvMutex();
2936 binder::Status status = mNetd->registerUnsolicitedEventListener(
2937 android::interface_cast<android::net::INetdUnsolicitedEventListener>(testUnsolService));
2938 EXPECT_TRUE(status.isOk()) << status.exceptionMessage();
2939
2940 // TODO: Add test for below events
2941 // StrictCleartextDetected / InterfaceDnsServersAdded
2942 // InterfaceClassActivity / QuotaLimitReached / InterfaceAddressRemoved
2943
2944 {
2945 std::unique_lock lock(cvMutex);
2946
2947 // Re-init test Tun, and we expect that we will get some unsol events.
2948 // Use the test Tun device name to verify if we receive its unsol events.
2949 sTun.destroy();
2950 // Use predefined name
2951 sTun.init(newTunName);
2952
2953 EXPECT_EQ(std::cv_status::no_timeout, cv.wait_for(lock, std::chrono::seconds(2)));
2954 }
2955
2956 // bit mask 1101101000
2957 // Test only covers below events currently
2958 const uint32_t kExpectedEvents = InterfaceAddressUpdated | InterfaceAdded | InterfaceRemoved |
2959 InterfaceLinkStatusChanged | RouteChanged;
2960 EXPECT_EQ(kExpectedEvents, testUnsolService->getReceived());
Bernie Innocentia5161a02019-01-30 22:40:53 +09002961}