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Chenbo Fengf2759682017-10-10 17:31:57 -07001/*
2 * Copyright (C) 2017 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
17#ifndef NETD_SERVER_TRAFFIC_CONTROLLER_H
18#define NETD_SERVER_TRAFFIC_CONTROLLER_H
19
20#include <linux/bpf.h>
21
Chenbo Fengc10a8a42017-12-15 13:56:33 -080022#include <netdutils/StatusOr.h>
Chenbo Feng89c12f12018-03-21 10:29:18 -070023#include "FirewallController.h"
Chenbo Feng116d0552017-12-04 17:25:19 -080024#include "NetlinkListener.h"
Chenbo Fengf2759682017-10-10 17:31:57 -070025#include "Network.h"
Chenbo Feng89c12f12018-03-21 10:29:18 -070026#include "android-base/thread_annotations.h"
Chenbo Fengc10a8a42017-12-15 13:56:33 -080027#include "android-base/unique_fd.h"
Chenbo Fengf2759682017-10-10 17:31:57 -070028
Chenbo Fengeac6c472018-02-05 15:06:23 -080029// Since we cannot garbage collect the stats map since device boot, we need to make these maps as
30// large as possible. The current rlimit of MEM_LOCK allows at most 10000 map entries for each
31// stats map. In the old qtaguid module, we don't have a total limit for data entries but only have
32// limitation of tags each uid can have. (default is 1024 in kernel);
33// cookie_uid_map: key: 8 bytes, value: 8 bytes, total:10000*8*2 bytes = 160Kbytes
34// uid_counter_set_map: key: 4 bytes, value: 4 bytes, total:10000*4*2 bytes = 80Kbytes
35// uid_stats_map: key: 16 bytes, value: 32 bytes, total:10000*16+10000*32 bytes = 480Kbytes
36// tag_stats_map: key: 16 bytes, value: 32 bytes, total:10000*16+10000*32 bytes = 480Kbytes
Chenbo Feng7e974052018-02-28 22:57:21 -080037// iface_index_name_map:key: 4 bytes, value: 32 bytes, total:10000*36 bytes = 360Kbytes
38// total: 1560Kbytes
Chenbo Fengeac6c472018-02-05 15:06:23 -080039constexpr const int COOKIE_UID_MAP_SIZE = 10000;
40constexpr const int UID_COUNTERSET_MAP_SIZE = 10000;
41constexpr const int UID_STATS_MAP_SIZE = 10000;
42constexpr const int TAG_STATS_MAP_SIZE = 10000;
Chenbo Feng5ed17992018-03-13 21:30:49 -070043constexpr const int IFACE_INDEX_NAME_MAP_SIZE = 1000;
44constexpr const int IFACE_STATS_MAP_SIZE = 1000;
Chenbo Fengeac6c472018-02-05 15:06:23 -080045constexpr const int UID_OWNER_MAP_SIZE = 10000;
Chenbo Fengf2759682017-10-10 17:31:57 -070046
47constexpr const int COUNTERSETS_LIMIT = 2;
48
Chenbo Fengc10a8a42017-12-15 13:56:33 -080049constexpr const int NONEXIST_COOKIE = 0;
50
Chenbo Fengf2759682017-10-10 17:31:57 -070051namespace android {
52namespace net {
53
Chenbo Fengf2759682017-10-10 17:31:57 -070054class TrafficController {
55 public:
Chenbo Feng89c12f12018-03-21 10:29:18 -070056 TrafficController();
Chenbo Fengf2759682017-10-10 17:31:57 -070057 /*
58 * Initialize the whole controller
59 */
Chenbo Fengc10a8a42017-12-15 13:56:33 -080060 netdutils::Status start();
Chenbo Fengf2759682017-10-10 17:31:57 -070061 /*
62 * Tag the socket with the specified tag and uid. In the qtaguid module, the
63 * first tag request that grab the spinlock of rb_tree can update the tag
64 * information first and other request need to wait until it finish. All the
65 * tag request will be addressed in the order of they obtaining the spinlock.
66 * In the eBPF implementation, the kernel will try to update the eBPF map
67 * entry with the tag request. And the hashmap update process is protected by
68 * the spinlock initialized with the map. So the behavior of two modules
69 * should be the same. No additional lock needed.
70 */
71 int tagSocket(int sockFd, uint32_t tag, uid_t uid);
72
73 /*
74 * The untag process is similiar to tag socket and both old qtaguid module and
75 * new eBPF module have spinlock inside the kernel for concurrent update. No
76 * external lock is required.
77 */
78 int untagSocket(int sockFd);
79
80 /*
81 * Similiar as above, no external lock required.
82 */
83 int setCounterSet(int counterSetNum, uid_t uid);
84
85 /*
86 * When deleting a tag data, the qtaguid module will grab the spinlock of each
87 * related rb_tree one by one and delete the tag information, counterSet
88 * information, iface stats information and uid stats information one by one.
89 * The new eBPF implementation is done similiarly by removing the entry on
90 * each map one by one. And deleting processes are also protected by the
91 * spinlock of the map. So no additional lock is required.
92 */
93 int deleteTagData(uint32_t tag, uid_t uid);
94
Chenbo Feng07d43fe2017-12-21 14:38:51 -080095 /*
96 * Check if the current device have the bpf traffic stats accounting service
97 * running.
98 */
99 bool checkBpfStatsEnable();
100
Chenbo Feng7e974052018-02-28 22:57:21 -0800101 /*
102 * Add the interface name and index pair into the eBPF map.
103 */
104 int addInterface(const char* name, uint32_t ifaceIndex);
105
Chenbo Feng89c12f12018-03-21 10:29:18 -0700106 int changeUidOwnerRule(ChildChain chain, const uid_t uid, FirewallRule rule, FirewallType type);
107
108 int removeUidOwnerRule(const uid_t uid);
109
110 int replaceUidOwnerMap(const std::string& name, bool isWhitelist,
111 const std::vector<int32_t>& uids);
112
113 int updateOwnerMapEntry(const base::unique_fd& map_fd, uid_t uid, FirewallRule rule,
114 FirewallType type);
115
116 int replaceUidsInMap(const base::unique_fd& map_fd, const std::vector<int32_t> &uids,
117 FirewallRule rule, FirewallType type);
118
119 int toggleUidOwnerMap(ChildChain chain, bool enable);
120
Chenbo Fengf2759682017-10-10 17:31:57 -0700121 private:
122 /*
123 * mCookieTagMap: Store the corresponding tag and uid for a specific socket.
124 * Map Key: uint64_t socket cookie
125 * Map Value: struct UidTag, contains a uint32 uid and a uint32 tag.
126 */
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800127 base::unique_fd mCookieTagMap;
Chenbo Fengf2759682017-10-10 17:31:57 -0700128
129 /*
130 * mUidCounterSetMap: Store the counterSet of a specific uid.
131 * Map Key: uint32 uid.
132 * Map Value: uint32 counterSet specifies if the traffic is a background
133 * or foreground traffic.
134 */
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800135 base::unique_fd mUidCounterSetMap;
Chenbo Fengf2759682017-10-10 17:31:57 -0700136
137 /*
138 * mUidStatsMap: Store the traffic statistics for a specific combination of
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800139 * uid, iface and counterSet. We maintain this map in addition to
140 * mTagStatsMap because we want to be able to track per-UID data usage even
141 * if mTagStatsMap is full.
Chenbo Fengf2759682017-10-10 17:31:57 -0700142 * Map Key: Struct StatsKey contains the uid, counterSet and ifaceIndex
143 * information. The Tag in the StatsKey should always be 0.
144 * Map Value: struct Stats, contains packet count and byte count of each
145 * transport protocol on egress and ingress direction.
146 */
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800147 base::unique_fd mUidStatsMap;
Chenbo Fengf2759682017-10-10 17:31:57 -0700148
149 /*
150 * mTagStatsMap: Store the traffic statistics for a specific combination of
151 * uid, tag, iface and counterSet. Only tagged socket stats should be stored
152 * in this map.
153 * Map Key: Struct StatsKey contains the uid, counterSet and ifaceIndex
154 * information. The tag field should not be 0.
155 * Map Value: struct Stats, contains packet count and byte count of each
156 * transport protocol on egress and ingress direction.
157 */
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800158 base::unique_fd mTagStatsMap;
Chenbo Fengf2759682017-10-10 17:31:57 -0700159
Chenbo Feng7e974052018-02-28 22:57:21 -0800160 /*
161 * mIfaceIndexNameMap: Store the index name pair of each interface show up
162 * on the device since boot. The interface index is used by the eBPF program
163 * to correctly match the iface name when receiving a packet.
164 */
165 base::unique_fd mIfaceIndexNameMap;
166
Chenbo Feng5ed17992018-03-13 21:30:49 -0700167 /*
168 * mIfaceStataMap: Store per iface traffic stats gathered from xt_bpf
169 * filter.
170 */
171 base::unique_fd mIfaceStatsMap;
172
Chenbo Feng89c12f12018-03-21 10:29:18 -0700173 /*
174 * mDozableUidMap: Store uids that have related rules in dozable mode owner match
175 * chain.
176 */
177 base::unique_fd mDozableUidMap GUARDED_BY(mOwnerMatchMutex);
178
179 /*
180 * mStandbyUidMap: Store uids that have related rules in standby mode owner match
181 * chain.
182 */
183 base::unique_fd mStandbyUidMap GUARDED_BY(mOwnerMatchMutex);
184
185 /*
186 * mPowerSaveUidMap: Store uids that have related rules in power save mode owner match
187 * chain.
188 */
189 base::unique_fd mPowerSaveUidMap GUARDED_BY(mOwnerMatchMutex);
190
Chenbo Feng116d0552017-12-04 17:25:19 -0800191 std::unique_ptr<NetlinkListenerInterface> mSkDestroyListener;
192
Chenbo Feng33cc1032017-10-23 15:16:37 -0700193 bool ebpfSupported;
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800194
Chenbo Feng89c12f12018-03-21 10:29:18 -0700195 std::mutex mOwnerMatchMutex;
196
Chenbo Fengc10a8a42017-12-15 13:56:33 -0800197 netdutils::Status loadAndAttachProgram(bpf_attach_type type, const char* path, const char* name,
198 base::unique_fd& cg_fd);
Chenbo Fenged37fea2017-12-13 19:35:01 -0800199
Chenbo Feng89c12f12018-03-21 10:29:18 -0700200 netdutils::Status initMaps();
Chenbo Fenged37fea2017-12-13 19:35:01 -0800201 // For testing
202 friend class TrafficControllerTest;
Chenbo Fengf2759682017-10-10 17:31:57 -0700203};
204
205} // namespace net
206} // namespace android
207
208#endif // NETD_SERVER_TRAFFIC_CONTROLLER_H