blob: 70e0ae7cdd7b62babd50be06505dbb02d59e5c00 [file] [log] [blame]
Chenbo Feng2236e1b2019-02-26 14:30:19 -08001/*
2 * Copyright (C) 2018 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
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080017#include <bpf_helpers.h>
Chenbo Feng2236e1b2019-02-26 14:30:19 -080018#include <linux/bpf.h>
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080019#include <linux/if.h>
20#include <linux/if_ether.h>
Maciej Żenczykowskic6c8d4f2019-09-19 08:28:19 -070021#include <linux/if_packet.h>
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080022#include <linux/in.h>
23#include <linux/in6.h>
24#include <linux/ip.h>
25#include <linux/ipv6.h>
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -080026#include <linux/tcp.h>
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080027#include <stdbool.h>
28#include <stdint.h>
29#include "bpf_net_helpers.h"
30#include "netdbpf/bpf_shared.h"
31
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080032// This is defined for cgroup bpf filter only.
33#define BPF_PASS 1
34#define BPF_DROP 0
35
36// This is used for xt_bpf program only.
37#define BPF_NOMATCH 0
38#define BPF_MATCH 1
39
40#define BPF_EGRESS 0
41#define BPF_INGRESS 1
42
43#define IP_PROTO_OFF offsetof(struct iphdr, protocol)
44#define IPV6_PROTO_OFF offsetof(struct ipv6hdr, nexthdr)
45#define IPPROTO_IHL_OFF 0
46#define TCP_FLAG_OFF 13
47#define RST_OFFSET 2
48
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -080049DEFINE_BPF_MAP_GRO(cookie_tag_map, HASH, uint64_t, UidTagValue, COOKIE_UID_MAP_SIZE,
50 AID_NET_BW_ACCT)
51DEFINE_BPF_MAP_GRO(uid_counterset_map, HASH, uint32_t, uint8_t, UID_COUNTERSET_MAP_SIZE,
52 AID_NET_BW_ACCT)
53DEFINE_BPF_MAP_GRO(app_uid_stats_map, HASH, uint32_t, StatsValue, APP_STATS_MAP_SIZE,
54 AID_NET_BW_STATS)
55DEFINE_BPF_MAP_GRW(stats_map_A, HASH, StatsKey, StatsValue, STATS_MAP_SIZE, AID_NET_BW_STATS)
56DEFINE_BPF_MAP_GRW(stats_map_B, HASH, StatsKey, StatsValue, STATS_MAP_SIZE, AID_NET_BW_STATS)
57DEFINE_BPF_MAP_GRO(iface_stats_map, HASH, uint32_t, StatsValue, IFACE_STATS_MAP_SIZE,
58 AID_NET_BW_STATS)
59DEFINE_BPF_MAP_GRO(configuration_map, HASH, uint32_t, uint8_t, CONFIGURATION_MAP_SIZE,
60 AID_NET_BW_STATS)
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080061DEFINE_BPF_MAP(uid_owner_map, HASH, uint32_t, UidOwnerValue, UID_OWNER_MAP_SIZE)
62
63/* never actually used from ebpf */
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -080064DEFINE_BPF_MAP_GRO(iface_index_name_map, HASH, uint32_t, IfaceValue, IFACE_INDEX_NAME_MAP_SIZE,
65 AID_NET_BW_STATS)
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080066
67static __always_inline int is_system_uid(uint32_t uid) {
68 return (uid <= MAX_SYSTEM_UID) && (uid >= MIN_SYSTEM_UID);
69}
70
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -080071/*
72 * Note: this blindly assumes an MTU of 1500, and that packets > MTU are always TCP,
73 * and that TCP is using the Linux default settings with TCP timestamp option enabled
74 * which uses 12 TCP option bytes per frame.
75 *
76 * These are not unreasonable assumptions:
77 *
78 * The internet does not really support MTUs greater than 1500, so most TCP traffic will
79 * be at that MTU, or slightly below it (worst case our upwards adjustment is too small).
80 *
81 * The chance our traffic isn't IP at all is basically zero, so the IP overhead correction
82 * is bound to be needed.
83 *
84 * Furthermore, the likelyhood that we're having to deal with GSO (ie. > MTU) packets that
85 * are not IP/TCP is pretty small (few other things are supported by Linux) and worse case
86 * our extra overhead will be slightly off, but probably still better than assuming none.
87 *
88 * Most servers are also Linux and thus support/default to using TCP timestamp option
89 * (and indeed TCP timestamp option comes from RFC 1323 titled "TCP Extensions for High
90 * Performance" which also defined TCP window scaling and are thus absolutely ancient...).
91 *
92 * All together this should be more correct than if we simply ignored GSO frames
93 * (ie. counted them as single packets with no extra overhead)
94 *
95 * Especially since the number of packets is important for any future clat offload correction.
96 * (which adjusts upward by 20 bytes per packet to account for ipv4 -> ipv6 header conversion)
97 */
Maciej Żenczykowskib601c042019-12-30 04:15:53 -080098#define DEFINE_UPDATE_STATS(the_stats_map, TypeOfKey) \
99 static __always_inline inline void update_##the_stats_map(struct __sk_buff* skb, \
100 int direction, TypeOfKey* key) { \
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -0800101 StatsValue* value = bpf_##the_stats_map##_lookup_elem(key); \
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800102 if (!value) { \
Maciej Żenczykowski11ec78b2019-12-30 06:39:32 -0800103 StatsValue newValue = {}; \
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800104 bpf_##the_stats_map##_update_elem(key, &newValue, BPF_NOEXIST); \
105 value = bpf_##the_stats_map##_lookup_elem(key); \
106 } \
107 if (value) { \
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -0800108 const int mtu = 1500; \
109 uint64_t packets = 1; \
110 uint64_t bytes = skb->len; \
111 if (bytes > mtu) { \
112 bool is_ipv6 = (skb->protocol == htons(ETH_P_IPV6)); \
113 int ip_overhead = (is_ipv6 ? sizeof(struct ipv6hdr) : sizeof(struct iphdr)); \
114 int tcp_overhead = ip_overhead + sizeof(struct tcphdr) + 12; \
115 int mss = mtu - tcp_overhead; \
116 uint64_t payload = bytes - tcp_overhead; \
117 packets = (payload + mss - 1) / mss; \
118 bytes = tcp_overhead * packets + payload; \
119 } \
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800120 if (direction == BPF_EGRESS) { \
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -0800121 __sync_fetch_and_add(&value->txPackets, packets); \
122 __sync_fetch_and_add(&value->txBytes, bytes); \
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800123 } else if (direction == BPF_INGRESS) { \
Maciej Żenczykowski3aaf2942020-01-04 05:09:45 -0800124 __sync_fetch_and_add(&value->rxPackets, packets); \
125 __sync_fetch_and_add(&value->rxBytes, bytes); \
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800126 } \
127 } \
128 }
129
130DEFINE_UPDATE_STATS(app_uid_stats_map, uint32_t)
131DEFINE_UPDATE_STATS(iface_stats_map, uint32_t)
Maciej Żenczykowski11ec78b2019-12-30 06:39:32 -0800132DEFINE_UPDATE_STATS(stats_map_A, StatsKey)
133DEFINE_UPDATE_STATS(stats_map_B, StatsKey)
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800134
135static inline bool skip_owner_match(struct __sk_buff* skb) {
136 int offset = -1;
137 int ret = 0;
138 if (skb->protocol == htons(ETH_P_IP)) {
139 offset = IP_PROTO_OFF;
140 uint8_t proto, ihl;
Maciej Żenczykowski33d82f02020-04-26 13:33:21 +0000141 uint8_t flag;
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800142 ret = bpf_skb_load_bytes(skb, offset, &proto, 1);
143 if (!ret) {
144 if (proto == IPPROTO_ESP) {
145 return true;
146 } else if (proto == IPPROTO_TCP) {
147 ret = bpf_skb_load_bytes(skb, IPPROTO_IHL_OFF, &ihl, 1);
148 ihl = ihl & 0x0F;
149 ret = bpf_skb_load_bytes(skb, ihl * 4 + TCP_FLAG_OFF, &flag, 1);
150 if (ret == 0 && (flag >> RST_OFFSET & 1)) {
151 return true;
152 }
153 }
154 }
155 } else if (skb->protocol == htons(ETH_P_IPV6)) {
156 offset = IPV6_PROTO_OFF;
157 uint8_t proto;
158 ret = bpf_skb_load_bytes(skb, offset, &proto, 1);
159 if (!ret) {
160 if (proto == IPPROTO_ESP) {
161 return true;
162 } else if (proto == IPPROTO_TCP) {
Maciej Żenczykowski33d82f02020-04-26 13:33:21 +0000163 uint8_t flag;
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800164 ret = bpf_skb_load_bytes(skb, sizeof(struct ipv6hdr) + TCP_FLAG_OFF, &flag, 1);
165 if (ret == 0 && (flag >> RST_OFFSET & 1)) {
166 return true;
167 }
168 }
169 }
170 }
171 return false;
172}
173
174static __always_inline BpfConfig getConfig(uint32_t configKey) {
175 uint32_t mapSettingKey = configKey;
176 BpfConfig* config = bpf_configuration_map_lookup_elem(&mapSettingKey);
177 if (!config) {
178 // Couldn't read configuration entry. Assume everything is disabled.
179 return DEFAULT_CONFIG;
180 }
181 return *config;
182}
183
184static inline int bpf_owner_match(struct __sk_buff* skb, uint32_t uid, int direction) {
185 if (skip_owner_match(skb)) return BPF_PASS;
186
Treehugger Robot16723c32020-05-26 04:29:20 +0000187 if (is_system_uid(uid)) return BPF_PASS;
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800188
189 BpfConfig enabledRules = getConfig(UID_RULES_CONFIGURATION_KEY);
190
191 UidOwnerValue* uidEntry = bpf_uid_owner_map_lookup_elem(&uid);
192 uint8_t uidRules = uidEntry ? uidEntry->rule : 0;
193 uint32_t allowed_iif = uidEntry ? uidEntry->iif : 0;
194
195 if (enabledRules) {
196 if ((enabledRules & DOZABLE_MATCH) && !(uidRules & DOZABLE_MATCH)) {
197 return BPF_DROP;
198 }
199 if ((enabledRules & STANDBY_MATCH) && (uidRules & STANDBY_MATCH)) {
200 return BPF_DROP;
201 }
202 if ((enabledRules & POWERSAVE_MATCH) && !(uidRules & POWERSAVE_MATCH)) {
203 return BPF_DROP;
204 }
205 }
206 if (direction == BPF_INGRESS && (uidRules & IIF_MATCH)) {
207 // Drops packets not coming from lo nor the whitelisted interface
208 if (allowed_iif && skb->ifindex != 1 && skb->ifindex != allowed_iif) {
209 return BPF_DROP;
210 }
211 }
212 return BPF_PASS;
213}
214
215static __always_inline inline void update_stats_with_config(struct __sk_buff* skb, int direction,
Maciej Żenczykowski11ec78b2019-12-30 06:39:32 -0800216 StatsKey* key, uint8_t selectedMap) {
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800217 if (selectedMap == SELECT_MAP_A) {
218 update_stats_map_A(skb, direction, key);
219 } else if (selectedMap == SELECT_MAP_B) {
220 update_stats_map_B(skb, direction, key);
221 }
222}
223
224static __always_inline inline int bpf_traffic_account(struct __sk_buff* skb, int direction) {
225 uint32_t sock_uid = bpf_get_socket_uid(skb);
Maciej Żenczykowskied20ec32020-05-28 03:22:28 +0000226 // Always allow and never count clat traffic. Only the IPv4 traffic on the stacked
227 // interface is accounted for and subject to usage restrictions.
228 if (sock_uid == AID_CLAT) {
229 return BPF_PASS;
230 }
231
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800232 int match = bpf_owner_match(skb, sock_uid, direction);
233 if ((direction == BPF_EGRESS) && (match == BPF_DROP)) {
234 // If an outbound packet is going to be dropped, we do not count that
235 // traffic.
236 return match;
237 }
238
239 uint64_t cookie = bpf_get_socket_cookie(skb);
Maciej Żenczykowski11ec78b2019-12-30 06:39:32 -0800240 UidTagValue* utag = bpf_cookie_tag_map_lookup_elem(&cookie);
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800241 uint32_t uid, tag;
242 if (utag) {
243 uid = utag->uid;
244 tag = utag->tag;
245 } else {
246 uid = sock_uid;
247 tag = 0;
248 }
249
Maciej Żenczykowski11ec78b2019-12-30 06:39:32 -0800250 StatsKey key = {.uid = uid, .tag = tag, .counterSet = 0, .ifaceIndex = skb->ifindex};
Maciej Żenczykowskib601c042019-12-30 04:15:53 -0800251
252 uint8_t* counterSet = bpf_uid_counterset_map_lookup_elem(&uid);
253 if (counterSet) key.counterSet = (uint32_t)*counterSet;
254
255 uint32_t mapSettingKey = CURRENT_STATS_MAP_CONFIGURATION_KEY;
256 uint8_t* selectedMap = bpf_configuration_map_lookup_elem(&mapSettingKey);
257 if (!selectedMap) {
258 return match;
259 }
260
261 if (key.tag) {
262 update_stats_with_config(skb, direction, &key, *selectedMap);
263 key.tag = 0;
264 }
265
266 update_stats_with_config(skb, direction, &key, *selectedMap);
267 update_app_uid_stats_map(skb, direction, &uid);
268 return match;
269}
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800270
271SEC("cgroupskb/ingress/stats")
272int bpf_cgroup_ingress(struct __sk_buff* skb) {
273 return bpf_traffic_account(skb, BPF_INGRESS);
274}
275
276SEC("cgroupskb/egress/stats")
277int bpf_cgroup_egress(struct __sk_buff* skb) {
278 return bpf_traffic_account(skb, BPF_EGRESS);
279}
280
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -0800281DEFINE_BPF_PROG("skfilter/egress/xtbpf", AID_ROOT, AID_NET_ADMIN, xt_bpf_egress_prog)
282(struct __sk_buff* skb) {
Maciej Żenczykowski24d16962020-05-25 19:50:34 +0000283 // Clat daemon does not generate new traffic, all its traffic is accounted for already
284 // on the v4-* interfaces (except for the 20 (or 28) extra bytes of IPv6 vs IPv4 overhead,
285 // but that can be corrected for later when merging v4-foo stats into interface foo's).
286 uint32_t sock_uid = bpf_get_socket_uid(skb);
287 if (sock_uid == AID_CLAT) return BPF_NOMATCH;
288
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800289 uint32_t key = skb->ifindex;
Maciej Żenczykowski0f24d322019-04-19 17:51:33 -0700290 update_iface_stats_map(skb, BPF_EGRESS, &key);
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800291 return BPF_MATCH;
292}
293
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -0800294DEFINE_BPF_PROG("skfilter/ingress/xtbpf", AID_ROOT, AID_NET_ADMIN, xt_bpf_ingress_prog)
295(struct __sk_buff* skb) {
Maciej Żenczykowski24d16962020-05-25 19:50:34 +0000296 // Clat daemon traffic is not accounted by virtue of iptables raw prerouting drop rule
297 // (in clat_raw_PREROUTING chain), which triggers before this (in bw_raw_PREROUTING chain).
298 // It will be accounted for on the v4-* clat interface instead.
299 // Keep that in mind when moving this out of iptables xt_bpf and into tc ingress (or xdp).
300
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800301 uint32_t key = skb->ifindex;
Maciej Żenczykowski0f24d322019-04-19 17:51:33 -0700302 update_iface_stats_map(skb, BPF_INGRESS, &key);
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800303 return BPF_MATCH;
304}
305
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -0800306DEFINE_BPF_PROG("skfilter/whitelist/xtbpf", AID_ROOT, AID_NET_ADMIN, xt_bpf_whitelist_prog)
307(struct __sk_buff* skb) {
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800308 uint32_t sock_uid = bpf_get_socket_uid(skb);
309 if (is_system_uid(sock_uid)) return BPF_MATCH;
Maciej Żenczykowskic6c8d4f2019-09-19 08:28:19 -0700310
311 // 65534 is the overflow 'nobody' uid, usually this being returned means
312 // that skb->sk is NULL during RX (early decap socket lookup failure),
313 // which commonly happens for incoming packets to an unconnected udp socket.
314 // Additionally bpf_get_socket_cookie() returns 0 if skb->sk is NULL
Maciej Żenczykowski0b60d602019-10-30 23:51:34 -0700315 if ((sock_uid == 65534) && !bpf_get_socket_cookie(skb) && is_received_skb(skb))
Maciej Żenczykowskic6c8d4f2019-09-19 08:28:19 -0700316 return BPF_MATCH;
317
Maciej Żenczykowskib8a7be52019-04-19 21:47:08 -0700318 UidOwnerValue* whitelistMatch = bpf_uid_owner_map_lookup_elem(&sock_uid);
Maciej Żenczykowskic6c8d4f2019-09-19 08:28:19 -0700319 if (whitelistMatch) return whitelistMatch->rule & HAPPY_BOX_MATCH ? BPF_MATCH : BPF_NOMATCH;
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800320 return BPF_NOMATCH;
321}
322
Maciej Żenczykowski565b6fb2020-01-27 01:58:40 -0800323DEFINE_BPF_PROG("skfilter/blacklist/xtbpf", AID_ROOT, AID_NET_ADMIN, xt_bpf_blacklist_prog)
324(struct __sk_buff* skb) {
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800325 uint32_t sock_uid = bpf_get_socket_uid(skb);
Maciej Żenczykowskib8a7be52019-04-19 21:47:08 -0700326 UidOwnerValue* blacklistMatch = bpf_uid_owner_map_lookup_elem(&sock_uid);
Maciej Żenczykowskic6c8d4f2019-09-19 08:28:19 -0700327 if (blacklistMatch) return blacklistMatch->rule & PENALTY_BOX_MATCH ? BPF_MATCH : BPF_NOMATCH;
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800328 return BPF_NOMATCH;
329}
330
Maciej Żenczykowskib8a7be52019-04-19 21:47:08 -0700331DEFINE_BPF_MAP(uid_permission_map, HASH, uint32_t, uint8_t, UID_OWNER_MAP_SIZE)
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800332
Maciej Żenczykowskic07dbe42020-02-19 14:16:56 -0800333DEFINE_BPF_PROG_KVER("cgroupsock/inet/create", AID_ROOT, AID_ROOT, inet_socket_create,
334 KVER(4, 14, 0))
335(struct bpf_sock* sk) {
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800336 uint64_t gid_uid = bpf_get_current_uid_gid();
337 /*
338 * A given app is guaranteed to have the same app ID in all the profiles in
339 * which it is installed, and install permission is granted to app for all
340 * user at install time so we only check the appId part of a request uid at
341 * run time. See UserHandle#isSameApp for detail.
342 */
343 uint32_t appId = (gid_uid & 0xffffffff) % PER_USER_RANGE;
Maciej Żenczykowskib8a7be52019-04-19 21:47:08 -0700344 uint8_t* permissions = bpf_uid_permission_map_lookup_elem(&appId);
Chenbo Fengbf660aa2019-02-26 16:12:27 -0800345 if (!permissions) {
346 // UID not in map. Default to just INTERNET permission.
347 return 1;
348 }
349
350 // A return value of 1 means allow, everything else means deny.
351 return (*permissions & BPF_PERMISSION_INTERNET) == BPF_PERMISSION_INTERNET;
Chenbo Feng2236e1b2019-02-26 14:30:19 -0800352}
353
Treehugger Robot2b9df0c2020-03-20 23:23:27 +0000354LICENSE("Apache 2.0");
Maciej Żenczykowskia60b74e2020-06-15 08:25:49 +0000355CRITICAL("netd");