blob: 5510a20ac3b433d37ea1c98effe012d55cf8102f [file] [log] [blame]
Ken Chen587d4232022-01-17 17:18:43 +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 Żenczykowski11141da2024-03-15 18:21:33 -070017// The resulting .o needs to load on Android T+
Maciej Żenczykowski4e4f8722024-06-15 06:38:08 -070018#define BPFLOADER_MIN_VER BPFLOADER_MAINLINE_T_VERSION
Maciej Żenczykowskiacebffb2022-05-16 16:05:15 -070019
Ken Chen587d4232022-01-17 17:18:43 +080020#include "bpf_net_helpers.h"
Maciej Żenczykowski513474c2022-12-08 16:20:43 +000021#include "netd.h"
Ken Chen587d4232022-01-17 17:18:43 +080022
23// This is defined for cgroup bpf filter only.
Maciej Żenczykowski55474982022-11-20 13:48:39 +000024static const int DROP = 0;
25static const int PASS = 1;
26static const int DROP_UNLESS_DNS = 2; // internal to our program
Ken Chen587d4232022-01-17 17:18:43 +080027
Ryan Zuklie9419d252023-01-20 17:03:56 -080028// Used for 'bool enable_tracing'
29static const bool TRACE_ON = true;
30static const bool TRACE_OFF = false;
Maciej Żenczykowski879839a12022-08-03 10:48:25 +000031
32// offsetof(struct iphdr, ihl) -- but that's a bitfield
Ken Chen587d4232022-01-17 17:18:43 +080033#define IPPROTO_IHL_OFF 0
Maciej Żenczykowski879839a12022-08-03 10:48:25 +000034
35// This is offsetof(struct tcphdr, "32 bit tcp flag field")
36// The tcp flags are after be16 source, dest & be32 seq, ack_seq, hence 12 bytes in.
37//
38// Note that TCP_FLAG_{ACK,PSH,RST,SYN,FIN} are htonl(0x00{10,08,04,02,01}0000)
39// see include/uapi/linux/tcp.h
40#define TCP_FLAG32_OFF 12
Ken Chen587d4232022-01-17 17:18:43 +080041
Maciej Żenczykowskia8cb8252023-09-11 21:29:28 +000042#define TCP_FLAG8_OFF (TCP_FLAG32_OFF + 1)
43
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070044// For maps netd does not need to access
Maciej Żenczykowskic1126292023-10-03 05:14:25 +000045#define DEFINE_BPF_MAP_NO_NETD(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries) \
46 DEFINE_BPF_MAP_EXT(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries, \
47 AID_ROOT, AID_NET_BW_ACCT, 0060, "fs_bpf_net_shared", "", \
48 PRIVATE, BPFLOADER_MIN_VER, BPFLOADER_MAX_VER, \
Sarup Dalwani5c01da82025-01-07 21:22:57 +000049 LOAD_ON_ENG, LOAD_ON_USER, LOAD_ON_USERDEBUG, 0)
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070050
51// For maps netd only needs read only access to
Maciej Żenczykowskic1126292023-10-03 05:14:25 +000052#define DEFINE_BPF_MAP_RO_NETD(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries) \
53 DEFINE_BPF_MAP_EXT(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries, \
54 AID_ROOT, AID_NET_BW_ACCT, 0460, "fs_bpf_netd_readonly", "", \
55 PRIVATE, BPFLOADER_MIN_VER, BPFLOADER_MAX_VER, \
Sarup Dalwani5c01da82025-01-07 21:22:57 +000056 LOAD_ON_ENG, LOAD_ON_USER, LOAD_ON_USERDEBUG, 0)
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070057
58// For maps netd needs to be able to read and write
59#define DEFINE_BPF_MAP_RW_NETD(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries) \
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -070060 DEFINE_BPF_MAP_UGM(the_map, TYPE, TypeOfKey, TypeOfValue, num_entries, \
61 AID_ROOT, AID_NET_BW_ACCT, 0660)
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070062
Maciej Żenczykowskib10e0552022-06-16 14:49:27 -070063// Bpf map arrays on creation are preinitialized to 0 and do not support deletion of a key,
64// see: kernel/bpf/arraymap.c array_map_delete_elem() returns -EINVAL (from both syscall and ebpf)
65// Additionally on newer kernels the bpf jit can optimize out the lookups.
66// only valid indexes are [0..CONFIGURATION_MAP_SIZE-1]
67DEFINE_BPF_MAP_RO_NETD(configuration_map, ARRAY, uint32_t, uint32_t, CONFIGURATION_MAP_SIZE)
68
Maciej Żenczykowski1b7c1f12022-11-21 09:39:23 +000069// TODO: consider whether we can merge some of these maps
70// for example it might be possible to merge 2 or 3 of:
71// uid_counterset_map + uid_owner_map + uid_permission_map
Maciej Żenczykowski3ad37942024-09-19 00:13:04 +000072DEFINE_BPF_MAP_NO_NETD(blocked_ports_map, ARRAY, int, uint64_t,
73 1024 /* 64K ports -> 1024 u64s */)
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070074DEFINE_BPF_MAP_RW_NETD(cookie_tag_map, HASH, uint64_t, UidTagValue, COOKIE_UID_MAP_SIZE)
75DEFINE_BPF_MAP_NO_NETD(uid_counterset_map, HASH, uint32_t, uint8_t, UID_COUNTERSET_MAP_SIZE)
76DEFINE_BPF_MAP_NO_NETD(app_uid_stats_map, HASH, uint32_t, StatsValue, APP_STATS_MAP_SIZE)
Maciej Żenczykowski7e2f53e2023-09-28 01:08:28 +000077DEFINE_BPF_MAP_RO_NETD(stats_map_A, HASH, StatsKey, StatsValue, STATS_MAP_SIZE)
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070078DEFINE_BPF_MAP_RO_NETD(stats_map_B, HASH, StatsKey, StatsValue, STATS_MAP_SIZE)
79DEFINE_BPF_MAP_NO_NETD(iface_stats_map, HASH, uint32_t, StatsValue, IFACE_STATS_MAP_SIZE)
Ken Chenec0f7ac2023-09-08 14:14:55 +080080DEFINE_BPF_MAP_RO_NETD(uid_owner_map, HASH, uint32_t, UidOwnerValue, UID_OWNER_MAP_SIZE)
Maciej Żenczykowski7e2f53e2023-09-28 01:08:28 +000081DEFINE_BPF_MAP_RO_NETD(uid_permission_map, HASH, uint32_t, uint8_t, UID_OWNER_MAP_SIZE)
Maciej Żenczykowski6109d942023-08-29 18:39:28 +000082DEFINE_BPF_MAP_NO_NETD(ingress_discard_map, HASH, IngressDiscardKey, IngressDiscardValue,
83 INGRESS_DISCARD_MAP_SIZE)
Ken Chen587d4232022-01-17 17:18:43 +080084
Maciej Żenczykowski52018c82024-06-04 16:05:16 +000085DEFINE_BPF_MAP_RW_NETD(lock_array_test_map, ARRAY, uint32_t, bool, 1)
86DEFINE_BPF_MAP_RW_NETD(lock_hash_test_map, HASH, uint32_t, bool, 1)
87
Ken Chen587d4232022-01-17 17:18:43 +080088/* never actually used from ebpf */
Maciej Żenczykowskia4a58a32022-06-13 17:56:06 -070089DEFINE_BPF_MAP_NO_NETD(iface_index_name_map, HASH, uint32_t, IfaceValue, IFACE_INDEX_NAME_MAP_SIZE)
Ken Chen587d4232022-01-17 17:18:43 +080090
Ryan Zuklie9419d252023-01-20 17:03:56 -080091// A single-element configuration array, packet tracing is enabled when 'true'.
92DEFINE_BPF_MAP_EXT(packet_trace_enabled_map, ARRAY, uint32_t, bool, 1,
Maciej Żenczykowskic1126292023-10-03 05:14:25 +000093 AID_ROOT, AID_SYSTEM, 0060, "fs_bpf_net_shared", "", PRIVATE,
Maciej Żenczykowski4e4f8722024-06-15 06:38:08 -070094 BPFLOADER_MAINLINE_U_VERSION, BPFLOADER_MAX_VER, LOAD_ON_ENG,
Sarup Dalwani5c01da82025-01-07 21:22:57 +000095 LOAD_ON_USER, LOAD_ON_USERDEBUG, 0)
Ryan Zuklie9419d252023-01-20 17:03:56 -080096
Ryan Zuklie9fb8f182023-09-28 15:50:59 -070097// A ring buffer on which packet information is pushed.
Ryan Zuklie9419d252023-01-20 17:03:56 -080098DEFINE_BPF_RINGBUF_EXT(packet_trace_ringbuf, PacketTrace, PACKET_TRACE_BUF_SIZE,
Maciej Żenczykowskic1126292023-10-03 05:14:25 +000099 AID_ROOT, AID_SYSTEM, 0060, "fs_bpf_net_shared", "", PRIVATE,
Maciej Żenczykowski4e4f8722024-06-15 06:38:08 -0700100 BPFLOADER_MAINLINE_U_VERSION, BPFLOADER_MAX_VER, LOAD_ON_ENG,
Ryan Zuklie9fb8f182023-09-28 15:50:59 -0700101 LOAD_ON_USER, LOAD_ON_USERDEBUG);
Ryan Zuklie9419d252023-01-20 17:03:56 -0800102
Ken Chen24330172023-10-20 13:02:14 +0800103DEFINE_BPF_MAP_RO_NETD(data_saver_enabled_map, ARRAY, uint32_t, bool,
104 DATA_SAVER_ENABLED_MAP_SIZE)
105
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700106// iptables xt_bpf programs need to be usable by both netd and netutils_wrappers
Maciej Żenczykowski285f7052022-08-09 17:50:31 +0000107// selinux contexts, because even non-xt_bpf iptables mutations are implemented as
Maciej Żenczykowski06085b02022-08-09 14:15:34 +0000108// a full table dump, followed by an update in userspace, and then a reload into the kernel,
109// where any already in-use xt_bpf matchers are serialized as the path to the pinned
110// program (see XT_BPF_MODE_PATH_PINNED) and then the iptables binary (or rather
111// the kernel acting on behalf of it) must be able to retrieve the pinned program
112// for the reload to succeed
Maciej Żenczykowski2d995302025-01-21 15:38:36 -0800113#define DEFINE_XTBPF_PROG(SECTION_NAME, the_prog) \
114 DEFINE_BPF_PROG(SECTION_NAME, AID_ROOT, AID_NET_ADMIN, the_prog)
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700115
116// programs that need to be usable by netd, but not by netutils_wrappers
Maciej Żenczykowski06085b02022-08-09 14:15:34 +0000117// (this is because these are currently attached by the mainline provided libnetd_updatable .so
118// which is loaded into netd and thus runs as netd uid/gid/selinux context)
Maciej Żenczykowski40c96752025-01-21 16:23:52 -0800119#define DEFINE_NETD_BPF_PROG_RANGES(SECTION_NAME, the_prog, minKV, maxKV, min_loader, max_loader) \
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800120 DEFINE_BPF_PROG_EXT(SECTION_NAME, AID_ROOT, AID_ROOT, the_prog, \
Maciej Żenczykowski40c96752025-01-21 16:23:52 -0800121 minKV, maxKV, min_loader, max_loader, MANDATORY, \
Maciej Żenczykowskic1126292023-10-03 05:14:25 +0000122 "fs_bpf_netd_readonly", "", LOAD_ON_ENG, LOAD_ON_USER, LOAD_ON_USERDEBUG)
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700123
Maciej Żenczykowski40c96752025-01-21 16:23:52 -0800124#define DEFINE_NETD_BPF_PROG_KVER_RANGE(SECTION_NAME, the_prog, minKV, maxKV) \
125 DEFINE_NETD_BPF_PROG_RANGES(SECTION_NAME, the_prog, minKV, maxKV, BPFLOADER_MIN_VER, BPFLOADER_MAX_VER)
126
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800127#define DEFINE_NETD_BPF_PROG_KVER(SECTION_NAME, the_prog, min_kv) \
128 DEFINE_NETD_BPF_PROG_KVER_RANGE(SECTION_NAME, the_prog, min_kv, KVER_INF)
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000129
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800130#define DEFINE_NETD_BPF_PROG(SECTION_NAME, the_prog) \
131 DEFINE_NETD_BPF_PROG_KVER(SECTION_NAME, the_prog, KVER_NONE)
Lorenzo Colitti3505b582022-10-27 19:36:27 +0900132
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800133#define DEFINE_NETD_V_BPF_PROG_KVER(SECTION_NAME, the_prog, minKV) \
134 DEFINE_BPF_PROG_EXT(SECTION_NAME, AID_ROOT, AID_ROOT, the_prog, minKV, \
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700135 KVER_INF, BPFLOADER_MAINLINE_V_VERSION, BPFLOADER_MAX_VER, MANDATORY, \
136 "fs_bpf_netd_readonly", "", LOAD_ON_ENG, LOAD_ON_USER, LOAD_ON_USERDEBUG)
137
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700138// programs that only need to be usable by the system server
Maciej Żenczykowskidd8ee1e2025-01-21 15:41:54 -0800139#define DEFINE_SYS_BPF_PROG(SECTION_NAME, the_prog) \
140 DEFINE_BPF_PROG_EXT(SECTION_NAME, AID_ROOT, AID_NET_ADMIN, the_prog, KVER_NONE, KVER_INF, \
Maciej Żenczykowskic1126292023-10-03 05:14:25 +0000141 BPFLOADER_MIN_VER, BPFLOADER_MAX_VER, MANDATORY, \
142 "fs_bpf_net_shared", "", LOAD_ON_ENG, LOAD_ON_USER, LOAD_ON_USERDEBUG)
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700143
Ken Chen587d4232022-01-17 17:18:43 +0800144/*
145 * Note: this blindly assumes an MTU of 1500, and that packets > MTU are always TCP,
146 * and that TCP is using the Linux default settings with TCP timestamp option enabled
147 * which uses 12 TCP option bytes per frame.
148 *
149 * These are not unreasonable assumptions:
150 *
151 * The internet does not really support MTUs greater than 1500, so most TCP traffic will
152 * be at that MTU, or slightly below it (worst case our upwards adjustment is too small).
153 *
154 * The chance our traffic isn't IP at all is basically zero, so the IP overhead correction
155 * is bound to be needed.
156 *
157 * Furthermore, the likelyhood that we're having to deal with GSO (ie. > MTU) packets that
158 * are not IP/TCP is pretty small (few other things are supported by Linux) and worse case
159 * our extra overhead will be slightly off, but probably still better than assuming none.
160 *
161 * Most servers are also Linux and thus support/default to using TCP timestamp option
162 * (and indeed TCP timestamp option comes from RFC 1323 titled "TCP Extensions for High
163 * Performance" which also defined TCP window scaling and are thus absolutely ancient...).
164 *
165 * All together this should be more correct than if we simply ignored GSO frames
166 * (ie. counted them as single packets with no extra overhead)
167 *
168 * Especially since the number of packets is important for any future clat offload correction.
169 * (which adjusts upward by 20 bytes per packet to account for ipv4 -> ipv6 header conversion)
170 */
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000171#define DEFINE_UPDATE_STATS(the_stats_map, TypeOfKey) \
172 static __always_inline inline void update_##the_stats_map(const struct __sk_buff* const skb, \
173 const TypeOfKey* const key, \
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700174 const struct egress_bool egress, \
Maciej Żenczykowski2e0da9b2024-07-24 17:54:47 -0700175 __unused const struct kver_uint kver) { \
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000176 StatsValue* value = bpf_##the_stats_map##_lookup_elem(key); \
177 if (!value) { \
178 StatsValue newValue = {}; \
179 bpf_##the_stats_map##_update_elem(key, &newValue, BPF_NOEXIST); \
180 value = bpf_##the_stats_map##_lookup_elem(key); \
181 } \
182 if (value) { \
183 const int mtu = 1500; \
184 uint64_t packets = 1; \
185 uint64_t bytes = skb->len; \
186 if (bytes > mtu) { \
187 bool is_ipv6 = (skb->protocol == htons(ETH_P_IPV6)); \
188 int ip_overhead = (is_ipv6 ? sizeof(struct ipv6hdr) : sizeof(struct iphdr)); \
189 int tcp_overhead = ip_overhead + sizeof(struct tcphdr) + 12; \
190 int mss = mtu - tcp_overhead; \
191 uint64_t payload = bytes - tcp_overhead; \
192 packets = (payload + mss - 1) / mss; \
193 bytes = tcp_overhead * packets + payload; \
194 } \
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700195 if (egress.egress) { \
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000196 __sync_fetch_and_add(&value->txPackets, packets); \
197 __sync_fetch_and_add(&value->txBytes, bytes); \
198 } else { \
199 __sync_fetch_and_add(&value->rxPackets, packets); \
200 __sync_fetch_and_add(&value->rxBytes, bytes); \
201 } \
202 } \
Ken Chen587d4232022-01-17 17:18:43 +0800203 }
204
205DEFINE_UPDATE_STATS(app_uid_stats_map, uint32_t)
206DEFINE_UPDATE_STATS(iface_stats_map, uint32_t)
207DEFINE_UPDATE_STATS(stats_map_A, StatsKey)
208DEFINE_UPDATE_STATS(stats_map_B, StatsKey)
209
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000210// both of these return 0 on success or -EFAULT on failure (and zero out the buffer)
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000211static __always_inline inline int bpf_skb_load_bytes_net(const struct __sk_buff* const skb,
212 const int L3_off,
213 void* const to,
214 const int len,
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700215 const struct kver_uint kver) {
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000216 // 'kver' (here and throughout) is the compile time guaranteed minimum kernel version,
217 // ie. we're building (a version of) the bpf program for kver (or newer!) kernels.
218 //
219 // 4.19+ kernels support the 'bpf_skb_load_bytes_relative()' bpf helper function,
220 // so we can use it. On pre-4.19 kernels we cannot use the relative load helper,
221 // and thus will simply get things wrong if there's any L2 (ethernet) header in the skb.
222 //
223 // Luckily, for cellular traffic, there likely isn't any, as cell is usually 'rawip'.
224 //
225 // However, this does mean that wifi (and ethernet) on 4.14 is basically a lost cause:
226 // we'll be making decisions based on the *wrong* bytes (fetched from the wrong offset),
227 // because the 'L3_off' passed to bpf_skb_load_bytes() should be increased by l2_header_size,
228 // which for ethernet is 14 and not 0 like it is for rawip.
229 //
230 // For similar reasons this will fail with non-offloaded VLAN tags on < 4.19 kernels,
231 // since those extend the ethernet header from 14 to 18 bytes.
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700232 return KVER_IS_AT_LEAST(kver, 4, 19, 0)
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000233 ? bpf_skb_load_bytes_relative(skb, L3_off, to, len, BPF_HDR_START_NET)
234 : bpf_skb_load_bytes(skb, L3_off, to, len);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000235}
236
Ryan Zuklie9419d252023-01-20 17:03:56 -0800237static __always_inline inline void do_packet_tracing(
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700238 const struct __sk_buff* const skb, const struct egress_bool egress, const uint32_t uid,
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700239 const uint32_t tag, const bool enable_tracing, const struct kver_uint kver) {
Ryan Zuklie9419d252023-01-20 17:03:56 -0800240 if (!enable_tracing) return;
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700241 if (!KVER_IS_AT_LEAST(kver, 5, 8, 0)) return;
Ryan Zuklie9419d252023-01-20 17:03:56 -0800242
243 uint32_t mapKey = 0;
244 bool* traceConfig = bpf_packet_trace_enabled_map_lookup_elem(&mapKey);
245 if (traceConfig == NULL) return;
246 if (*traceConfig == false) return;
247
248 PacketTrace* pkt = bpf_packet_trace_ringbuf_reserve();
249 if (pkt == NULL) return;
250
251 // Errors from bpf_skb_load_bytes_net are ignored to favor returning something
252 // over returning nothing. In the event of an error, the kernel will fill in
253 // zero for the destination memory. Do not change the default '= 0' below.
254
255 uint8_t proto = 0;
256 uint8_t L4_off = 0;
257 uint8_t ipVersion = 0;
258 if (skb->protocol == htons(ETH_P_IP)) {
259 (void)bpf_skb_load_bytes_net(skb, IP4_OFFSET(protocol), &proto, sizeof(proto), kver);
260 (void)bpf_skb_load_bytes_net(skb, IPPROTO_IHL_OFF, &L4_off, sizeof(L4_off), kver);
261 L4_off = (L4_off & 0x0F) * 4; // IHL calculation.
262 ipVersion = 4;
263 } else if (skb->protocol == htons(ETH_P_IPV6)) {
264 (void)bpf_skb_load_bytes_net(skb, IP6_OFFSET(nexthdr), &proto, sizeof(proto), kver);
265 L4_off = sizeof(struct ipv6hdr);
266 ipVersion = 6;
Maciej Żenczykowski73896a72023-09-13 06:09:01 +0000267 // skip over a *single* HOPOPTS or DSTOPTS extension header (if present)
268 if (proto == IPPROTO_HOPOPTS || proto == IPPROTO_DSTOPTS) {
269 struct {
270 uint8_t proto, len;
271 } ext_hdr;
272 if (!bpf_skb_load_bytes_net(skb, L4_off, &ext_hdr, sizeof(ext_hdr), kver)) {
273 proto = ext_hdr.proto;
274 L4_off += (ext_hdr.len + 1) * 8;
275 }
276 }
Ryan Zuklie9419d252023-01-20 17:03:56 -0800277 }
278
279 uint8_t flags = 0;
280 __be16 sport = 0, dport = 0;
Maciej Żenczykowskia8cb8252023-09-11 21:29:28 +0000281 if (L4_off >= 20) {
282 switch (proto) {
283 case IPPROTO_TCP:
284 (void)bpf_skb_load_bytes_net(skb, L4_off + TCP_FLAG8_OFF, &flags, sizeof(flags), kver);
285 // fallthrough
286 case IPPROTO_DCCP:
287 case IPPROTO_UDP:
288 case IPPROTO_UDPLITE:
289 case IPPROTO_SCTP:
290 // all of these L4 protocols start with be16 src & dst port
291 (void)bpf_skb_load_bytes_net(skb, L4_off + 0, &sport, sizeof(sport), kver);
292 (void)bpf_skb_load_bytes_net(skb, L4_off + 2, &dport, sizeof(dport), kver);
293 break;
294 case IPPROTO_ICMP:
295 case IPPROTO_ICMPV6:
296 // Both IPv4 and IPv6 icmp start with u8 type & code, which we store in the bottom
297 // (ie. second) byte of sport/dport (which are be16s), the top byte is already zero.
298 (void)bpf_skb_load_bytes_net(skb, L4_off + 0, (char *)&sport + 1, 1, kver); //type
299 (void)bpf_skb_load_bytes_net(skb, L4_off + 1, (char *)&dport + 1, 1, kver); //code
300 break;
301 }
Ryan Zuklie9419d252023-01-20 17:03:56 -0800302 }
303
304 pkt->timestampNs = bpf_ktime_get_boot_ns();
305 pkt->ifindex = skb->ifindex;
306 pkt->length = skb->len;
307
308 pkt->uid = uid;
309 pkt->tag = tag;
310 pkt->sport = sport;
311 pkt->dport = dport;
312
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700313 pkt->egress = egress.egress;
314 pkt->wakeup = !egress.egress && (skb->mark & 0x80000000); // Fwmark.ingress_cpu_wakeup
Ryan Zuklie9419d252023-01-20 17:03:56 -0800315 pkt->ipProto = proto;
316 pkt->tcpFlags = flags;
317 pkt->ipVersion = ipVersion;
318
319 bpf_packet_trace_ringbuf_submit(pkt);
320}
321
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700322static __always_inline inline bool skip_owner_match(struct __sk_buff* skb,
323 const struct egress_bool egress,
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700324 const struct kver_uint kver) {
Maciej Żenczykowski3621cbd2022-11-20 13:31:06 +0000325 uint32_t flag = 0;
Ken Chen587d4232022-01-17 17:18:43 +0800326 if (skb->protocol == htons(ETH_P_IP)) {
Ken Chen587d4232022-01-17 17:18:43 +0800327 uint8_t proto;
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000328 // no need to check for success, proto will be zeroed if bpf_skb_load_bytes_net() fails
Ryan Zuklie1db34f32023-01-20 17:00:04 -0800329 (void)bpf_skb_load_bytes_net(skb, IP4_OFFSET(protocol), &proto, sizeof(proto), kver);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000330 if (proto == IPPROTO_ESP) return true;
331 if (proto != IPPROTO_TCP) return false; // handles read failure above
332 uint8_t ihl;
333 // we don't check for success, as this cannot fail, as it is earlier in the packet than
334 // proto, the reading of which must have succeeded, additionally the next read
335 // (a little bit deeper in the packet in spite of ihl being zeroed) of the tcp flags
336 // field will also fail, and that failure we already handle correctly
337 // (we also don't check that ihl in [0x45,0x4F] nor that ipv4 header checksum is correct)
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000338 (void)bpf_skb_load_bytes_net(skb, IPPROTO_IHL_OFF, &ihl, sizeof(ihl), kver);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000339 // if the read below fails, we'll just assume no TCP flags are set, which is fine.
340 (void)bpf_skb_load_bytes_net(skb, (ihl & 0xF) * 4 + TCP_FLAG32_OFF,
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000341 &flag, sizeof(flag), kver);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000342 } else if (skb->protocol == htons(ETH_P_IPV6)) {
343 uint8_t proto;
344 // no need to check for success, proto will be zeroed if bpf_skb_load_bytes_net() fails
Ryan Zuklie1db34f32023-01-20 17:00:04 -0800345 (void)bpf_skb_load_bytes_net(skb, IP6_OFFSET(nexthdr), &proto, sizeof(proto), kver);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000346 if (proto == IPPROTO_ESP) return true;
347 if (proto != IPPROTO_TCP) return false; // handles read failure above
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000348 // if the read below fails, we'll just assume no TCP flags are set, which is fine.
349 (void)bpf_skb_load_bytes_net(skb, sizeof(struct ipv6hdr) + TCP_FLAG32_OFF,
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000350 &flag, sizeof(flag), kver);
Maciej Żenczykowski3621cbd2022-11-20 13:31:06 +0000351 } else {
352 return false;
Ken Chen587d4232022-01-17 17:18:43 +0800353 }
Maciej Żenczykowskibdccc502023-04-18 06:45:35 +0000354 // Always allow RST's, and additionally allow ingress FINs
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700355 return flag & (TCP_FLAG_RST | (egress.egress ? 0 : TCP_FLAG_FIN)); // false on read failure
Ken Chen587d4232022-01-17 17:18:43 +0800356}
357
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000358static __always_inline inline BpfConfig getConfig(uint32_t configKey) {
Ken Chen587d4232022-01-17 17:18:43 +0800359 uint32_t mapSettingKey = configKey;
360 BpfConfig* config = bpf_configuration_map_lookup_elem(&mapSettingKey);
361 if (!config) {
362 // Couldn't read configuration entry. Assume everything is disabled.
363 return DEFAULT_CONFIG;
364 }
365 return *config;
366}
367
Maciej Żenczykowski6109d942023-08-29 18:39:28 +0000368static __always_inline inline bool ingress_should_discard(struct __sk_buff* skb,
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700369 const struct kver_uint kver) {
Maciej Żenczykowski6109d942023-08-29 18:39:28 +0000370 // Require 4.19, since earlier kernels don't have bpf_skb_load_bytes_relative() which
371 // provides relative to L3 header reads. Without that we could fetch the wrong bytes.
372 // Additionally earlier bpf verifiers are much harder to please.
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700373 if (!KVER_IS_AT_LEAST(kver, 4, 19, 0)) return false;
Maciej Żenczykowski6109d942023-08-29 18:39:28 +0000374
375 IngressDiscardKey k = {};
376 if (skb->protocol == htons(ETH_P_IP)) {
377 k.daddr.s6_addr32[2] = htonl(0xFFFF);
378 (void)bpf_skb_load_bytes_net(skb, IP4_OFFSET(daddr), &k.daddr.s6_addr32[3], 4, kver);
379 } else if (skb->protocol == htons(ETH_P_IPV6)) {
380 (void)bpf_skb_load_bytes_net(skb, IP6_OFFSET(daddr), &k.daddr, sizeof(k.daddr), kver);
381 } else {
382 return false; // non IPv4/IPv6, so no IP to match on
383 }
384
385 // we didn't check for load success, because destination bytes will be zeroed if
386 // bpf_skb_load_bytes_net() fails, instead we rely on daddr of '::' and '::ffff:0.0.0.0'
387 // never being present in the map itself
388
389 IngressDiscardValue* v = bpf_ingress_discard_map_lookup_elem(&k);
390 if (!v) return false; // lookup failure -> no protection in place -> allow
391 // if (skb->ifindex == 1) return false; // allow 'lo', but can't happen - see callsite
392 if (skb->ifindex == v->iif[0]) return false; // allowed interface
393 if (skb->ifindex == v->iif[1]) return false; // allowed interface
394 return true; // disallowed interface
395}
396
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000397static __always_inline inline int bpf_owner_match(struct __sk_buff* skb, uint32_t uid,
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700398 const struct egress_bool egress,
399 const struct kver_uint kver) {
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000400 if (is_system_uid(uid)) return PASS;
Ken Chen587d4232022-01-17 17:18:43 +0800401
Maciej Żenczykowskibdccc502023-04-18 06:45:35 +0000402 if (skip_owner_match(skb, egress, kver)) return PASS;
Maciej Żenczykowskie4c04732023-03-02 00:18:05 +0000403
Ken Chen587d4232022-01-17 17:18:43 +0800404 BpfConfig enabledRules = getConfig(UID_RULES_CONFIGURATION_KEY);
405
Maciej Żenczykowski95d85062024-02-08 00:37:17 +0000406 // BACKGROUND match does not apply to loopback traffic
407 if (skb->ifindex == 1) enabledRules &= ~BACKGROUND_MATCH;
408
Ken Chen587d4232022-01-17 17:18:43 +0800409 UidOwnerValue* uidEntry = bpf_uid_owner_map_lookup_elem(&uid);
Motomu Utsumi42edc602022-05-12 13:57:42 +0000410 uint32_t uidRules = uidEntry ? uidEntry->rule : 0;
Ken Chen587d4232022-01-17 17:18:43 +0800411 uint32_t allowed_iif = uidEntry ? uidEntry->iif : 0;
412
Ken Chenf7d23e12023-09-16 16:44:42 +0800413 if (isBlockedByUidRules(enabledRules, uidRules)) return DROP;
Maciej Żenczykowski474512a2022-06-07 23:22:53 +0000414
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700415 if (!egress.egress && skb->ifindex != 1) {
Maciej Żenczykowski6109d942023-08-29 18:39:28 +0000416 if (ingress_should_discard(skb, kver)) return DROP;
Motomu Utsumib08654c2022-05-11 05:56:26 +0000417 if (uidRules & IIF_MATCH) {
418 if (allowed_iif && skb->ifindex != allowed_iif) {
419 // Drops packets not coming from lo nor the allowed interface
420 // allowed interface=0 is a wildcard and does not drop packets
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000421 return DROP_UNLESS_DNS;
Motomu Utsumib08654c2022-05-11 05:56:26 +0000422 }
423 } else if (uidRules & LOCKDOWN_VPN_MATCH) {
424 // Drops packets not coming from lo and rule does not have IIF_MATCH but has
425 // LOCKDOWN_VPN_MATCH
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000426 return DROP_UNLESS_DNS;
Ken Chen587d4232022-01-17 17:18:43 +0800427 }
428 }
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000429 return PASS;
Ken Chen587d4232022-01-17 17:18:43 +0800430}
431
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000432static __always_inline inline void update_stats_with_config(const uint32_t selectedMap,
433 const struct __sk_buff* const skb,
434 const StatsKey* const key,
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700435 const struct egress_bool egress,
Maciej Żenczykowski3a645682023-10-06 15:11:01 -0700436 const struct kver_uint kver) {
Ken Chen587d4232022-01-17 17:18:43 +0800437 if (selectedMap == SELECT_MAP_A) {
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000438 update_stats_map_A(skb, key, egress, kver);
Maciej Żenczykowski28b9a292022-12-29 12:06:33 +0000439 } else {
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000440 update_stats_map_B(skb, key, egress, kver);
Ken Chen587d4232022-01-17 17:18:43 +0800441 }
442}
443
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700444static __always_inline inline int bpf_traffic_account(struct __sk_buff* skb,
445 const struct egress_bool egress,
Ryan Zuklie9419d252023-01-20 17:03:56 -0800446 const bool enable_tracing,
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800447 const struct kver_uint kver,
448 const struct sdk_level_uint lvl) {
Maciej Żenczykowskia08846c2024-02-07 01:30:01 +0000449 // sock_uid will be 'overflowuid' if !sk_fullsock(sk_to_full_sk(skb->sk))
Ken Chen587d4232022-01-17 17:18:43 +0800450 uint32_t sock_uid = bpf_get_socket_uid(skb);
Maciej Żenczykowskia08846c2024-02-07 01:30:01 +0000451
452 // kernel's DEFAULT_OVERFLOWUID is 65534, this is the overflow 'nobody' uid,
453 // usually this being returned means that skb->sk is NULL during RX
454 // (early decap socket lookup failure), which commonly happens for incoming
455 // packets to an unconnected udp socket.
456 // But it can also happen for egress from a timewait socket.
457 // Let's treat such cases as 'root' which is_system_uid()
458 if (sock_uid == 65534) sock_uid = 0;
459
460 uint64_t cookie = bpf_get_socket_cookie(skb); // 0 iff !skb->sk
Ken Chen587d4232022-01-17 17:18:43 +0800461 UidTagValue* utag = bpf_cookie_tag_map_lookup_elem(&cookie);
462 uint32_t uid, tag;
463 if (utag) {
464 uid = utag->uid;
465 tag = utag->tag;
466 } else {
467 uid = sock_uid;
468 tag = 0;
469 }
470
471 // Always allow and never count clat traffic. Only the IPv4 traffic on the stacked
472 // interface is accounted for and subject to usage restrictions.
Maciej Żenczykowski83dde6b2023-05-20 17:24:47 +0000473 // CLAT IPv6 TX sockets are *always* tagged with CLAT uid, see tagSocketAsClat()
Maciej Żenczykowskifca4ee42023-08-29 15:00:01 +0000474 // CLAT daemon receives via an untagged AF_PACKET socket.
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700475 if (egress.egress && uid == AID_CLAT) return PASS;
Ken Chen587d4232022-01-17 17:18:43 +0800476
Maciej Żenczykowski0966bbe2022-12-29 11:39:48 +0000477 int match = bpf_owner_match(skb, sock_uid, egress, kver);
Ken Chen587d4232022-01-17 17:18:43 +0800478
479// Workaround for secureVPN with VpnIsolation enabled, refer to b/159994981 for details.
480// Keep TAG_SYSTEM_DNS in sync with DnsResolver/include/netd_resolv/resolv.h
481// and TrafficStatsConstants.java
482#define TAG_SYSTEM_DNS 0xFFFFFF82
483 if (tag == TAG_SYSTEM_DNS && uid == AID_DNS) {
484 uid = sock_uid;
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000485 if (match == DROP_UNLESS_DNS) match = PASS;
Ken Chen587d4232022-01-17 17:18:43 +0800486 } else {
Maciej Żenczykowski55474982022-11-20 13:48:39 +0000487 if (match == DROP_UNLESS_DNS) match = DROP;
Ken Chen587d4232022-01-17 17:18:43 +0800488 }
489
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800490 if (SDK_LEVEL_IS_AT_LEAST(lvl, 25Q2) && (match != DROP)) {
491 // TODO: implement local network blocking
492 }
493
Maciej Żenczykowski8e4a7942023-03-02 00:07:00 +0000494 // If an outbound packet is going to be dropped, we do not count that traffic.
Maciej Żenczykowskia8852b22023-10-08 18:31:12 -0700495 if (egress.egress && (match == DROP)) return DROP;
Maciej Żenczykowski8e4a7942023-03-02 00:07:00 +0000496
Ken Chen587d4232022-01-17 17:18:43 +0800497 StatsKey key = {.uid = uid, .tag = tag, .counterSet = 0, .ifaceIndex = skb->ifindex};
498
499 uint8_t* counterSet = bpf_uid_counterset_map_lookup_elem(&uid);
500 if (counterSet) key.counterSet = (uint32_t)*counterSet;
501
502 uint32_t mapSettingKey = CURRENT_STATS_MAP_CONFIGURATION_KEY;
Lorenzo Colitti60cbed32022-03-03 17:49:01 +0900503 uint32_t* selectedMap = bpf_configuration_map_lookup_elem(&mapSettingKey);
Ken Chen587d4232022-01-17 17:18:43 +0800504
Maciej Żenczykowski399c9f22023-05-20 17:11:27 +0000505 if (!selectedMap) return PASS; // cannot happen, needed to keep bpf verifier happy
Ken Chen587d4232022-01-17 17:18:43 +0800506
Ryan Zuklie9419d252023-01-20 17:03:56 -0800507 do_packet_tracing(skb, egress, uid, tag, enable_tracing, kver);
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000508 update_stats_with_config(*selectedMap, skb, &key, egress, kver);
509 update_app_uid_stats_map(skb, &uid, egress, kver);
Maciej Żenczykowski399c9f22023-05-20 17:11:27 +0000510
511 // We've already handled DROP_UNLESS_DNS up above, thus when we reach here the only
512 // possible values of match are DROP(0) or PASS(1), however we need to use
513 // "match &= 1" before 'return match' to help the kernel's bpf verifier,
514 // so that it can be 100% certain that the returned value is always 0 or 1.
515 // We use assembly so that it cannot be optimized out by a too smart compiler.
Ken Chen587d4232022-01-17 17:18:43 +0800516 asm("%0 &= 1" : "+r"(match));
517 return match;
518}
519
Maciej Żenczykowski276dd9d2025-01-21 11:40:26 -0800520// Tracing on Android U+ 5.10+
Maciej Żenczykowski40c96752025-01-21 16:23:52 -0800521DEFINE_NETD_BPF_PROG_RANGES("cgroupskb/ingress/stats$trace",
522 bpf_cgroup_ingress_trace, KVER_5_10, KVER_INF,
523 BPFLOADER_MAINLINE_U_VERSION, BPFLOADER_MAX_VER)
Ryan Zuklie9419d252023-01-20 17:03:56 -0800524(struct __sk_buff* skb) {
Maciej Żenczykowski276dd9d2025-01-21 11:40:26 -0800525 return bpf_traffic_account(skb, INGRESS, TRACE_ON, KVER_5_10, SDK_LEVEL_U);
Ryan Zuklie9419d252023-01-20 17:03:56 -0800526}
527
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800528DEFINE_NETD_BPF_PROG_KVER_RANGE("cgroupskb/ingress/stats$4_19",
Maciej Żenczykowski901c7102023-10-06 15:47:46 -0700529 bpf_cgroup_ingress_4_19, KVER_4_19, KVER_INF)
Ken Chen587d4232022-01-17 17:18:43 +0800530(struct __sk_buff* skb) {
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800531 return bpf_traffic_account(skb, INGRESS, TRACE_OFF, KVER_4_19, SDK_LEVEL_NONE);
Ken Chen587d4232022-01-17 17:18:43 +0800532}
533
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800534DEFINE_NETD_BPF_PROG_KVER_RANGE("cgroupskb/ingress/stats$4_14",
Maciej Żenczykowski901c7102023-10-06 15:47:46 -0700535 bpf_cgroup_ingress_4_14, KVER_NONE, KVER_4_19)
Ken Chen587d4232022-01-17 17:18:43 +0800536(struct __sk_buff* skb) {
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800537 return bpf_traffic_account(skb, INGRESS, TRACE_OFF, KVER_NONE, SDK_LEVEL_NONE);
Ryan Zuklie9419d252023-01-20 17:03:56 -0800538}
539
Maciej Żenczykowski276dd9d2025-01-21 11:40:26 -0800540// Tracing on Android U+ 5.10+
Maciej Żenczykowski40c96752025-01-21 16:23:52 -0800541DEFINE_NETD_BPF_PROG_RANGES("cgroupskb/egress/stats$trace",
542 bpf_cgroup_egress_trace, KVER_5_10, KVER_INF,
543 BPFLOADER_MAINLINE_U_VERSION, BPFLOADER_MAX_VER)
Ryan Zuklie9419d252023-01-20 17:03:56 -0800544(struct __sk_buff* skb) {
Maciej Żenczykowski276dd9d2025-01-21 11:40:26 -0800545 return bpf_traffic_account(skb, EGRESS, TRACE_ON, KVER_5_10, SDK_LEVEL_U);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000546}
547
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800548DEFINE_NETD_BPF_PROG_KVER_RANGE("cgroupskb/egress/stats$4_19",
Maciej Żenczykowski901c7102023-10-06 15:47:46 -0700549 bpf_cgroup_egress_4_19, KVER_4_19, KVER_INF)
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000550(struct __sk_buff* skb) {
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800551 return bpf_traffic_account(skb, EGRESS, TRACE_OFF, KVER_4_19, SDK_LEVEL_NONE);
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000552}
553
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800554DEFINE_NETD_BPF_PROG_KVER_RANGE("cgroupskb/egress/stats$4_14",
Maciej Żenczykowski901c7102023-10-06 15:47:46 -0700555 bpf_cgroup_egress_4_14, KVER_NONE, KVER_4_19)
Maciej Żenczykowski879839a12022-08-03 10:48:25 +0000556(struct __sk_buff* skb) {
Maciej Żenczykowski1ef91d62025-01-21 11:34:49 -0800557 return bpf_traffic_account(skb, EGRESS, TRACE_OFF, KVER_NONE, SDK_LEVEL_NONE);
Ken Chen587d4232022-01-17 17:18:43 +0800558}
559
Maciej Żenczykowski12057372022-06-14 14:36:34 -0700560// WARNING: Android T's non-updatable netd depends on the name of this program.
Maciej Żenczykowski2d995302025-01-21 15:38:36 -0800561DEFINE_XTBPF_PROG("skfilter/egress/xtbpf", xt_bpf_egress_prog)
Ken Chen587d4232022-01-17 17:18:43 +0800562(struct __sk_buff* skb) {
563 // Clat daemon does not generate new traffic, all its traffic is accounted for already
564 // on the v4-* interfaces (except for the 20 (or 28) extra bytes of IPv6 vs IPv4 overhead,
565 // but that can be corrected for later when merging v4-foo stats into interface foo's).
Maciej Żenczykowski83dde6b2023-05-20 17:24:47 +0000566 // CLAT sockets are created by system server and tagged as uid CLAT, see tagSocketAsClat()
Ken Chen587d4232022-01-17 17:18:43 +0800567 uint32_t sock_uid = bpf_get_socket_uid(skb);
Ken Chen587d4232022-01-17 17:18:43 +0800568 if (sock_uid == AID_SYSTEM) {
569 uint64_t cookie = bpf_get_socket_cookie(skb);
570 UidTagValue* utag = bpf_cookie_tag_map_lookup_elem(&cookie);
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700571 if (utag && utag->uid == AID_CLAT) return XTBPF_NOMATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800572 }
573
574 uint32_t key = skb->ifindex;
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000575 update_iface_stats_map(skb, &key, EGRESS, KVER_NONE);
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700576 return XTBPF_MATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800577}
578
Maciej Żenczykowski12057372022-06-14 14:36:34 -0700579// WARNING: Android T's non-updatable netd depends on the name of this program.
Maciej Żenczykowski2d995302025-01-21 15:38:36 -0800580DEFINE_XTBPF_PROG("skfilter/ingress/xtbpf", xt_bpf_ingress_prog)
Ken Chen587d4232022-01-17 17:18:43 +0800581(struct __sk_buff* skb) {
582 // Clat daemon traffic is not accounted by virtue of iptables raw prerouting drop rule
583 // (in clat_raw_PREROUTING chain), which triggers before this (in bw_raw_PREROUTING chain).
584 // It will be accounted for on the v4-* clat interface instead.
585 // Keep that in mind when moving this out of iptables xt_bpf and into tc ingress (or xdp).
586
587 uint32_t key = skb->ifindex;
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000588 update_iface_stats_map(skb, &key, INGRESS, KVER_NONE);
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700589 return XTBPF_MATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800590}
591
Maciej Żenczykowskidd8ee1e2025-01-21 15:41:54 -0800592DEFINE_SYS_BPF_PROG("schedact/ingress/account",
Maciej Żenczykowskicae181d2022-06-16 23:26:33 -0700593 tc_bpf_ingress_account_prog)
Ken Chen587d4232022-01-17 17:18:43 +0800594(struct __sk_buff* skb) {
Patrick Rohr148aea82022-02-24 14:12:32 +0100595 if (is_received_skb(skb)) {
596 // Account for ingress traffic before tc drops it.
597 uint32_t key = skb->ifindex;
Maciej Żenczykowski99a1a262022-12-29 11:57:23 +0000598 update_iface_stats_map(skb, &key, INGRESS, KVER_NONE);
Patrick Rohr148aea82022-02-24 14:12:32 +0100599 }
Ken Chen587d4232022-01-17 17:18:43 +0800600 return TC_ACT_UNSPEC;
601}
602
Maciej Żenczykowski12057372022-06-14 14:36:34 -0700603// WARNING: Android T's non-updatable netd depends on the name of this program.
Maciej Żenczykowski2d995302025-01-21 15:38:36 -0800604DEFINE_XTBPF_PROG("skfilter/allowlist/xtbpf", xt_bpf_allowlist_prog)
Ken Chen587d4232022-01-17 17:18:43 +0800605(struct __sk_buff* skb) {
606 uint32_t sock_uid = bpf_get_socket_uid(skb);
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700607 if (is_system_uid(sock_uid)) return XTBPF_MATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800608
Maciej Żenczykowskid54374f2024-02-08 00:24:26 +0000609 // kernel's DEFAULT_OVERFLOWUID is 65534, this is the overflow 'nobody' uid,
610 // usually this being returned means that skb->sk is NULL during RX
611 // (early decap socket lookup failure), which commonly happens for incoming
612 // packets to an unconnected udp socket.
613 // But it can also happen for egress from a timewait socket.
614 // Let's treat such cases as 'root' which is_system_uid()
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700615 if (sock_uid == 65534) return XTBPF_MATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800616
617 UidOwnerValue* allowlistMatch = bpf_uid_owner_map_lookup_elem(&sock_uid);
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700618 if (allowlistMatch) return allowlistMatch->rule & HAPPY_BOX_MATCH ? XTBPF_MATCH : XTBPF_NOMATCH;
619 return XTBPF_NOMATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800620}
621
Maciej Żenczykowski12057372022-06-14 14:36:34 -0700622// WARNING: Android T's non-updatable netd depends on the name of this program.
Maciej Żenczykowski2d995302025-01-21 15:38:36 -0800623DEFINE_XTBPF_PROG("skfilter/denylist/xtbpf", xt_bpf_denylist_prog)
Ken Chen587d4232022-01-17 17:18:43 +0800624(struct __sk_buff* skb) {
625 uint32_t sock_uid = bpf_get_socket_uid(skb);
626 UidOwnerValue* denylistMatch = bpf_uid_owner_map_lookup_elem(&sock_uid);
Motomu Utsumi11d33452024-04-02 18:29:08 +0900627 uint32_t penalty_box = PENALTY_BOX_USER_MATCH | PENALTY_BOX_ADMIN_MATCH;
Maciej Żenczykowski1604b652024-08-16 15:06:33 -0700628 if (denylistMatch) return denylistMatch->rule & penalty_box ? XTBPF_MATCH : XTBPF_NOMATCH;
629 return XTBPF_NOMATCH;
Ken Chen587d4232022-01-17 17:18:43 +0800630}
631
Maciej Żenczykowskif0608492023-10-07 19:33:39 +0000632static __always_inline inline uint8_t get_app_permissions() {
Ken Chen587d4232022-01-17 17:18:43 +0800633 uint64_t gid_uid = bpf_get_current_uid_gid();
634 /*
635 * A given app is guaranteed to have the same app ID in all the profiles in
636 * which it is installed, and install permission is granted to app for all
637 * user at install time so we only check the appId part of a request uid at
638 * run time. See UserHandle#isSameApp for detail.
639 */
Maciej Żenczykowskib909d8a2022-06-15 00:40:43 -0700640 uint32_t appId = (gid_uid & 0xffffffff) % AID_USER_OFFSET; // == PER_USER_RANGE == 100000
Ken Chen587d4232022-01-17 17:18:43 +0800641 uint8_t* permissions = bpf_uid_permission_map_lookup_elem(&appId);
Maciej Żenczykowskif0608492023-10-07 19:33:39 +0000642 // if UID not in map, then default to just INTERNET permission.
643 return permissions ? *permissions : BPF_PERMISSION_INTERNET;
644}
Ken Chen587d4232022-01-17 17:18:43 +0800645
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800646DEFINE_NETD_BPF_PROG_KVER("cgroupsock/inet_create", inet_socket_create, KVER_4_14)
Maciej Żenczykowski2e0da9b2024-07-24 17:54:47 -0700647(__unused struct bpf_sock* sk) {
Maciej Żenczykowski1745e542024-08-16 15:52:55 -0700648 return (get_app_permissions() & BPF_PERMISSION_INTERNET) ? BPF_ALLOW : BPF_DISALLOW;
Ken Chen587d4232022-01-17 17:18:43 +0800649}
650
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800651DEFINE_NETD_BPF_PROG_KVER("cgroupsockrelease/inet_release", inet_socket_release, KVER_5_10)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700652(struct bpf_sock* sk) {
653 uint64_t cookie = bpf_get_sk_cookie(sk);
654 if (cookie) bpf_cookie_tag_map_delete_elem(&cookie);
655
656 return 1;
657}
658
Maciej Żenczykowski2e0da9b2024-07-24 17:54:47 -0700659static __always_inline inline int check_localhost(__unused struct bpf_sock_addr *ctx) {
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700660 // See include/uapi/linux/bpf.h:
661 //
662 // struct bpf_sock_addr {
663 // __u32 user_family; // R: 4 byte
664 // __u32 user_ip4; // BE, R: 1,2,4-byte, W: 4-byte
665 // __u32 user_ip6[4]; // BE, R: 1,2,4,8-byte, W: 4,8-byte
666 // __u32 user_port; // BE, R: 1,2,4-byte, W: 4-byte
667 // __u32 family; // R: 4 byte
668 // __u32 type; // R: 4 byte
669 // __u32 protocol; // R: 4 byte
670 // __u32 msg_src_ip4; // BE, R: 1,2,4-byte, W: 4-byte
671 // __u32 msg_src_ip6[4]; // BE, R: 1,2,4,8-byte, W: 4,8-byte
672 // __bpf_md_ptr(struct bpf_sock *, sk);
673 // };
Maciej Żenczykowski1745e542024-08-16 15:52:55 -0700674 return BPF_ALLOW;
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700675}
676
Maciej Żenczykowski3ad37942024-09-19 00:13:04 +0000677static inline __always_inline int block_port(struct bpf_sock_addr *ctx) {
678 if (!ctx->user_port) return BPF_ALLOW;
679
680 switch (ctx->protocol) {
681 case IPPROTO_TCP:
682 case IPPROTO_MPTCP:
683 case IPPROTO_UDP:
684 case IPPROTO_UDPLITE:
685 case IPPROTO_DCCP:
686 case IPPROTO_SCTP:
687 break;
688 default:
689 return BPF_ALLOW; // unknown protocols are allowed
690 }
691
692 int key = ctx->user_port >> 6;
693 int shift = ctx->user_port & 63;
694
695 uint64_t *val = bpf_blocked_ports_map_lookup_elem(&key);
696 // Lookup should never fail in reality, but if it does return here to keep the
697 // BPF verifier happy.
698 if (!val) return BPF_ALLOW;
699
700 if ((*val >> shift) & 1) return BPF_DISALLOW;
701 return BPF_ALLOW;
702}
703
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800704DEFINE_NETD_BPF_PROG_KVER("bind4/inet4_bind", inet4_bind, KVER_4_19)
Maciej Żenczykowski3ad37942024-09-19 00:13:04 +0000705(struct bpf_sock_addr *ctx) {
706 return block_port(ctx);
707}
708
Maciej Żenczykowski871e4ba2025-01-21 16:03:56 -0800709DEFINE_NETD_BPF_PROG_KVER("bind6/inet6_bind", inet6_bind, KVER_4_19)
Maciej Żenczykowski3ad37942024-09-19 00:13:04 +0000710(struct bpf_sock_addr *ctx) {
711 return block_port(ctx);
712}
713
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800714DEFINE_NETD_V_BPF_PROG_KVER("connect4/inet4_connect", inet4_connect, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700715(struct bpf_sock_addr *ctx) {
716 return check_localhost(ctx);
717}
718
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800719DEFINE_NETD_V_BPF_PROG_KVER("connect6/inet6_connect", inet6_connect, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700720(struct bpf_sock_addr *ctx) {
721 return check_localhost(ctx);
722}
723
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800724DEFINE_NETD_V_BPF_PROG_KVER("recvmsg4/udp4_recvmsg", udp4_recvmsg, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700725(struct bpf_sock_addr *ctx) {
726 return check_localhost(ctx);
727}
728
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800729DEFINE_NETD_V_BPF_PROG_KVER("recvmsg6/udp6_recvmsg", udp6_recvmsg, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700730(struct bpf_sock_addr *ctx) {
731 return check_localhost(ctx);
732}
733
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800734DEFINE_NETD_V_BPF_PROG_KVER("sendmsg4/udp4_sendmsg", udp4_sendmsg, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700735(struct bpf_sock_addr *ctx) {
736 return check_localhost(ctx);
737}
738
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800739DEFINE_NETD_V_BPF_PROG_KVER("sendmsg6/udp6_sendmsg", udp6_sendmsg, KVER_4_19)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700740(struct bpf_sock_addr *ctx) {
741 return check_localhost(ctx);
742}
743
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800744DEFINE_NETD_V_BPF_PROG_KVER("getsockopt/prog", getsockopt_prog, KVER_5_4)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700745(struct bpf_sockopt *ctx) {
Maciej Żenczykowski05ebcf02024-06-18 17:49:19 -0700746 // Tell kernel to return 'original' kernel reply (instead of the bpf modified buffer)
747 // This is important if the answer is larger than PAGE_SIZE (max size this bpf hook can provide)
748 ctx->optlen = 0;
Maciej Żenczykowski1745e542024-08-16 15:52:55 -0700749 return BPF_ALLOW;
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700750}
751
Maciej Żenczykowskicb469992025-01-21 15:57:41 -0800752DEFINE_NETD_V_BPF_PROG_KVER("setsockopt/prog", setsockopt_prog, KVER_5_4)
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700753(struct bpf_sockopt *ctx) {
Maciej Żenczykowski05ebcf02024-06-18 17:49:19 -0700754 // Tell kernel to use/process original buffer provided by userspace.
755 // This is important if it is larger than PAGE_SIZE (max size this bpf hook can handle).
756 ctx->optlen = 0;
Maciej Żenczykowski1745e542024-08-16 15:52:55 -0700757 return BPF_ALLOW;
Maciej Żenczykowski22db5902024-05-10 06:44:08 -0700758}
759
Ken Chen587d4232022-01-17 17:18:43 +0800760LICENSE("Apache 2.0");
Maciej Żenczykowskic41e35d2022-08-04 13:58:46 +0000761CRITICAL("Connectivity and netd");