blob: a5aae90b5e841581abd35905bbcf109a022c4dd7 [file] [log] [blame]
Hungming Chen56c632c2020-09-10 15:42:58 +08001/*
2 * Copyright (C) 2020 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#include <linux/if.h>
18#include <linux/ip.h>
19#include <linux/ipv6.h>
20#include <linux/pkt_cls.h>
21#include <linux/tcp.h>
22
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -080023// bionic kernel uapi linux/udp.h header is munged...
24#define __kernel_udphdr udphdr
25#include <linux/udp.h>
26
Hungming Chen56c632c2020-09-10 15:42:58 +080027#include "bpf_helpers.h"
28#include "bpf_net_helpers.h"
Lorenzo Colittib81584d2021-02-06 00:00:58 +090029#include "bpf_tethering.h"
Hungming Chen56c632c2020-09-10 15:42:58 +080030#include "netdbpf/bpf_shared.h"
31
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -080032// From kernel:include/net/ip.h
33#define IP_DF 0x4000 // Flag: "Don't Fragment"
34
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -080035// ----- Helper functions for offsets to fields -----
36
37// They all assume simple IP packets:
38// - no VLAN ethernet tags
39// - no IPv4 options (see IPV4_HLEN/TCP4_OFFSET/UDP4_OFFSET)
40// - no IPv6 extension headers
41// - no TCP options (see TCP_HLEN)
42
43//#define ETH_HLEN sizeof(struct ethhdr)
44#define IP4_HLEN sizeof(struct iphdr)
45#define IP6_HLEN sizeof(struct ipv6hdr)
46#define TCP_HLEN sizeof(struct tcphdr)
47#define UDP_HLEN sizeof(struct udphdr)
48
49// Offsets from beginning of L4 (TCP/UDP) header
50#define TCP_OFFSET(field) offsetof(struct tcphdr, field)
51#define UDP_OFFSET(field) offsetof(struct udphdr, field)
52
53// Offsets from beginning of L3 (IPv4) header
54#define IP4_OFFSET(field) offsetof(struct iphdr, field)
55#define IP4_TCP_OFFSET(field) (IP4_HLEN + TCP_OFFSET(field))
56#define IP4_UDP_OFFSET(field) (IP4_HLEN + UDP_OFFSET(field))
57
58// Offsets from beginning of L3 (IPv6) header
59#define IP6_OFFSET(field) offsetof(struct ipv6hdr, field)
60#define IP6_TCP_OFFSET(field) (IP6_HLEN + TCP_OFFSET(field))
61#define IP6_UDP_OFFSET(field) (IP6_HLEN + UDP_OFFSET(field))
62
63// Offsets from beginning of L2 (ie. Ethernet) header (which must be present)
64#define ETH_IP4_OFFSET(field) (ETH_HLEN + IP4_OFFSET(field))
65#define ETH_IP4_TCP_OFFSET(field) (ETH_HLEN + IP4_TCP_OFFSET(field))
66#define ETH_IP4_UDP_OFFSET(field) (ETH_HLEN + IP4_UDP_OFFSET(field))
67#define ETH_IP6_OFFSET(field) (ETH_HLEN + IP6_OFFSET(field))
68#define ETH_IP6_TCP_OFFSET(field) (ETH_HLEN + IP6_TCP_OFFSET(field))
69#define ETH_IP6_UDP_OFFSET(field) (ETH_HLEN + IP6_UDP_OFFSET(field))
70
Maciej Żenczykowskie982f092021-02-04 20:26:26 -080071// ----- Tethering Error Counters -----
72
73DEFINE_BPF_MAP_GRW(tether_error_map, ARRAY, uint32_t, uint32_t, BPF_TETHER_ERR__MAX,
74 AID_NETWORK_STACK)
75
76#define COUNT_AND_RETURN(counter, ret) do { \
77 uint32_t code = BPF_TETHER_ERR_ ## counter; \
78 uint32_t *count = bpf_tether_error_map_lookup_elem(&code); \
79 if (count) __sync_fetch_and_add(count, 1); \
80 return ret; \
81} while(0)
82
83#define TC_DROP(counter) COUNT_AND_RETURN(counter, TC_ACT_SHOT)
84#define TC_PUNT(counter) COUNT_AND_RETURN(counter, TC_ACT_OK)
85
86#define XDP_DROP(counter) COUNT_AND_RETURN(counter, XDP_DROP)
87#define XDP_PUNT(counter) COUNT_AND_RETURN(counter, XDP_PASS)
88
89// ----- Tethering Data Stats and Limits -----
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -080090
Hungming Chen56c632c2020-09-10 15:42:58 +080091// Tethering stats, indexed by upstream interface.
Maciej Żenczykowski088fe192021-01-20 13:34:17 -080092DEFINE_BPF_MAP_GRW(tether_stats_map, HASH, TetherStatsKey, TetherStatsValue, 16, AID_NETWORK_STACK)
Hungming Chen56c632c2020-09-10 15:42:58 +080093
94// Tethering data limit, indexed by upstream interface.
95// (tethering allowed when stats[iif].rxBytes + stats[iif].txBytes < limit[iif])
Maciej Żenczykowski088fe192021-01-20 13:34:17 -080096DEFINE_BPF_MAP_GRW(tether_limit_map, HASH, TetherLimitKey, TetherLimitValue, 16, AID_NETWORK_STACK)
97
98// ----- IPv6 Support -----
99
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800100DEFINE_BPF_MAP_GRW(tether_downstream6_map, HASH, TetherDownstream6Key, Tether6Value, 64,
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800101 AID_NETWORK_STACK)
102
103DEFINE_BPF_MAP_GRW(tether_downstream64_map, HASH, TetherDownstream64Key, TetherDownstream64Value,
104 64, AID_NETWORK_STACK)
105
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800106DEFINE_BPF_MAP_GRW(tether_upstream6_map, HASH, TetherUpstream6Key, Tether6Value, 64,
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800107 AID_NETWORK_STACK)
Hungming Chen56c632c2020-09-10 15:42:58 +0800108
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800109static inline __always_inline int do_forward6(struct __sk_buff* skb, const bool is_ethernet,
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800110 const bool downstream) {
111 const int l2_header_size = is_ethernet ? sizeof(struct ethhdr) : 0;
Hungming Chen56c632c2020-09-10 15:42:58 +0800112 void* data = (void*)(long)skb->data;
113 const void* data_end = (void*)(long)skb->data_end;
114 struct ethhdr* eth = is_ethernet ? data : NULL; // used iff is_ethernet
115 struct ipv6hdr* ip6 = is_ethernet ? (void*)(eth + 1) : data;
116
Maciej Żenczykowski18552e82021-01-24 19:59:05 -0800117 // Require ethernet dst mac address to be our unicast address.
118 if (is_ethernet && (skb->pkt_type != PACKET_HOST)) return TC_ACT_OK;
119
Hungming Chen56c632c2020-09-10 15:42:58 +0800120 // Must be meta-ethernet IPv6 frame
121 if (skb->protocol != htons(ETH_P_IPV6)) return TC_ACT_OK;
122
123 // Must have (ethernet and) ipv6 header
124 if (data + l2_header_size + sizeof(*ip6) > data_end) return TC_ACT_OK;
125
126 // Ethertype - if present - must be IPv6
127 if (is_ethernet && (eth->h_proto != htons(ETH_P_IPV6))) return TC_ACT_OK;
128
129 // IP version must be 6
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800130 if (ip6->version != 6) TC_PUNT(INVALID_IP_VERSION);
Hungming Chen56c632c2020-09-10 15:42:58 +0800131
132 // Cannot decrement during forward if already zero or would be zero,
133 // Let the kernel's stack handle these cases and generate appropriate ICMP errors.
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800134 if (ip6->hop_limit <= 1) TC_PUNT(LOW_TTL);
Hungming Chen56c632c2020-09-10 15:42:58 +0800135
Maciej Żenczykowskifc4f6542021-01-22 22:19:45 -0800136 // If hardware offload is running and programming flows based on conntrack entries,
137 // try not to interfere with it.
138 if (ip6->nexthdr == IPPROTO_TCP) {
139 struct tcphdr* tcph = (void*)(ip6 + 1);
140
141 // Make sure we can get at the tcp header
Lorenzo Colittib81584d2021-02-06 00:00:58 +0900142 if (data + l2_header_size + sizeof(*ip6) + sizeof(*tcph) > data_end)
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800143 TC_PUNT(INVALID_TCP_HEADER);
Maciej Żenczykowskifc4f6542021-01-22 22:19:45 -0800144
145 // Do not offload TCP packets with any one of the SYN/FIN/RST flags
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800146 if (tcph->syn || tcph->fin || tcph->rst) TC_PUNT(TCP_CONTROL_PACKET);
Maciej Żenczykowskifc4f6542021-01-22 22:19:45 -0800147 }
148
Hungming Chen56c632c2020-09-10 15:42:58 +0800149 // Protect against forwarding packets sourced from ::1 or fe80::/64 or other weirdness.
150 __be32 src32 = ip6->saddr.s6_addr32[0];
151 if (src32 != htonl(0x0064ff9b) && // 64:ff9b:/32 incl. XLAT464 WKP
152 (src32 & htonl(0xe0000000)) != htonl(0x20000000)) // 2000::/3 Global Unicast
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800153 TC_PUNT(NON_GLOBAL_SRC);
Hungming Chen56c632c2020-09-10 15:42:58 +0800154
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800155 // Protect against forwarding packets destined to ::1 or fe80::/64 or other weirdness.
156 __be32 dst32 = ip6->daddr.s6_addr32[0];
157 if (dst32 != htonl(0x0064ff9b) && // 64:ff9b:/32 incl. XLAT464 WKP
158 (dst32 & htonl(0xe0000000)) != htonl(0x20000000)) // 2000::/3 Global Unicast
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800159 TC_PUNT(NON_GLOBAL_DST);
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800160
161 // In the upstream direction do not forward traffic within the same /64 subnet.
162 if (!downstream && (src32 == dst32) && (ip6->saddr.s6_addr32[1] == ip6->daddr.s6_addr32[1]))
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800163 TC_PUNT(LOCAL_SRC_DST);
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800164
165 TetherDownstream6Key kd = {
Hungming Chen56c632c2020-09-10 15:42:58 +0800166 .iif = skb->ifindex,
167 .neigh6 = ip6->daddr,
168 };
169
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800170 TetherUpstream6Key ku = {
171 .iif = skb->ifindex,
172 };
173
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800174 Tether6Value* v = downstream ? bpf_tether_downstream6_map_lookup_elem(&kd)
175 : bpf_tether_upstream6_map_lookup_elem(&ku);
Hungming Chen56c632c2020-09-10 15:42:58 +0800176
177 // If we don't find any offload information then simply let the core stack handle it...
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800178 if (!v) return TC_ACT_OK;
Hungming Chen56c632c2020-09-10 15:42:58 +0800179
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800180 uint32_t stat_and_limit_k = downstream ? skb->ifindex : v->oif;
Hungming Chen56c632c2020-09-10 15:42:58 +0800181
182 TetherStatsValue* stat_v = bpf_tether_stats_map_lookup_elem(&stat_and_limit_k);
183
184 // If we don't have anywhere to put stats, then abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800185 if (!stat_v) TC_PUNT(NO_STATS_ENTRY);
Hungming Chen56c632c2020-09-10 15:42:58 +0800186
187 uint64_t* limit_v = bpf_tether_limit_map_lookup_elem(&stat_and_limit_k);
188
189 // If we don't have a limit, then abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800190 if (!limit_v) TC_PUNT(NO_LIMIT_ENTRY);
Hungming Chen56c632c2020-09-10 15:42:58 +0800191
192 // Required IPv6 minimum mtu is 1280, below that not clear what we should do, abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800193 if (v->pmtu < IPV6_MIN_MTU) TC_PUNT(BELOW_IPV6_MTU);
Hungming Chen56c632c2020-09-10 15:42:58 +0800194
195 // Approximate handling of TCP/IPv6 overhead for incoming LRO/GRO packets: default
196 // outbound path mtu of 1500 is not necessarily correct, but worst case we simply
197 // undercount, which is still better then not accounting for this overhead at all.
198 // Note: this really shouldn't be device/path mtu at all, but rather should be
199 // derived from this particular connection's mss (ie. from gro segment size).
200 // This would require a much newer kernel with newer ebpf accessors.
201 // (This is also blindly assuming 12 bytes of tcp timestamp option in tcp header)
202 uint64_t packets = 1;
203 uint64_t bytes = skb->len;
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800204 if (bytes > v->pmtu) {
Hungming Chen56c632c2020-09-10 15:42:58 +0800205 const int tcp_overhead = sizeof(struct ipv6hdr) + sizeof(struct tcphdr) + 12;
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800206 const int mss = v->pmtu - tcp_overhead;
Hungming Chen56c632c2020-09-10 15:42:58 +0800207 const uint64_t payload = bytes - tcp_overhead;
208 packets = (payload + mss - 1) / mss;
209 bytes = tcp_overhead * packets + payload;
210 }
211
212 // Are we past the limit? If so, then abort...
213 // Note: will not overflow since u64 is 936 years even at 5Gbps.
214 // Do not drop here. Offload is just that, whenever we fail to handle
215 // a packet we let the core stack deal with things.
216 // (The core stack needs to handle limits correctly anyway,
217 // since we don't offload all traffic in both directions)
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800218 if (stat_v->rxBytes + stat_v->txBytes + bytes > *limit_v) TC_PUNT(LIMIT_REACHED);
Hungming Chen56c632c2020-09-10 15:42:58 +0800219
220 if (!is_ethernet) {
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800221 // Try to inject an ethernet header, and simply return if we fail.
222 // We do this even if TX interface is RAWIP and thus does not need an ethernet header,
223 // because this is easier and the kernel will strip extraneous ethernet header.
224 if (bpf_skb_change_head(skb, sizeof(struct ethhdr), /*flags*/ 0)) {
225 __sync_fetch_and_add(downstream ? &stat_v->rxErrors : &stat_v->txErrors, 1);
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800226 TC_PUNT(CHANGE_HEAD_FAILED);
Hungming Chen56c632c2020-09-10 15:42:58 +0800227 }
228
229 // bpf_skb_change_head() invalidates all pointers - reload them
230 data = (void*)(long)skb->data;
231 data_end = (void*)(long)skb->data_end;
232 eth = data;
233 ip6 = (void*)(eth + 1);
234
235 // I do not believe this can ever happen, but keep the verifier happy...
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800236 if (data + sizeof(struct ethhdr) + sizeof(*ip6) > data_end) {
237 __sync_fetch_and_add(downstream ? &stat_v->rxErrors : &stat_v->txErrors, 1);
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800238 TC_DROP(TOO_SHORT);
Hungming Chen56c632c2020-09-10 15:42:58 +0800239 }
240 };
241
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800242 // At this point we always have an ethernet header - which will get stripped by the
243 // kernel during transmit through a rawip interface. ie. 'eth' pointer is valid.
244 // Additionally note that 'is_ethernet' and 'l2_header_size' are no longer correct.
245
Hungming Chen56c632c2020-09-10 15:42:58 +0800246 // CHECKSUM_COMPLETE is a 16-bit one's complement sum,
247 // thus corrections for it need to be done in 16-byte chunks at even offsets.
248 // IPv6 nexthdr is at offset 6, while hop limit is at offset 7
249 uint8_t old_hl = ip6->hop_limit;
250 --ip6->hop_limit;
251 uint8_t new_hl = ip6->hop_limit;
252
253 // bpf_csum_update() always succeeds if the skb is CHECKSUM_COMPLETE and returns an error
254 // (-ENOTSUPP) if it isn't.
255 bpf_csum_update(skb, 0xFFFF - ntohs(old_hl) + ntohs(new_hl));
256
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800257 __sync_fetch_and_add(downstream ? &stat_v->rxPackets : &stat_v->txPackets, packets);
258 __sync_fetch_and_add(downstream ? &stat_v->rxBytes : &stat_v->txBytes, bytes);
Hungming Chen56c632c2020-09-10 15:42:58 +0800259
260 // Overwrite any mac header with the new one
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800261 // For a rawip tx interface it will simply be a bunch of zeroes and later stripped.
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800262 *eth = v->macHeader;
Hungming Chen56c632c2020-09-10 15:42:58 +0800263
264 // Redirect to forwarded interface.
265 //
266 // Note that bpf_redirect() cannot fail unless you pass invalid flags.
267 // The redirect actually happens after the ebpf program has already terminated,
268 // and can fail for example for mtu reasons at that point in time, but there's nothing
269 // we can do about it here.
Maciej Żenczykowski7dfbcf52021-01-26 16:08:57 -0800270 return bpf_redirect(v->oif, 0 /* this is effectively BPF_F_EGRESS */);
Hungming Chen56c632c2020-09-10 15:42:58 +0800271}
272
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800273DEFINE_BPF_PROG("schedcls/tether_downstream6_ether", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski770e0a72021-01-18 20:14:03 -0800274 sched_cls_tether_downstream6_ether)
Maciej Żenczykowski6b7829f2021-01-18 00:03:37 -0800275(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800276 return do_forward6(skb, /* is_ethernet */ true, /* downstream */ true);
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800277}
278
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800279DEFINE_BPF_PROG("schedcls/tether_upstream6_ether", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800280 sched_cls_tether_upstream6_ether)
281(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800282 return do_forward6(skb, /* is_ethernet */ true, /* downstream */ false);
Hungming Chen56c632c2020-09-10 15:42:58 +0800283}
284
285// Note: section names must be unique to prevent programs from appending to each other,
286// so instead the bpf loader will strip everything past the final $ symbol when actually
287// pinning the program into the filesystem.
288//
289// bpf_skb_change_head() is only present on 4.14+ and 2 trivial kernel patches are needed:
290// ANDROID: net: bpf: Allow TC programs to call BPF_FUNC_skb_change_head
291// ANDROID: net: bpf: permit redirect from ingress L3 to egress L2 devices at near max mtu
292// (the first of those has already been upstreamed)
293//
294// 5.4 kernel support was only added to Android Common Kernel in R,
295// and thus a 5.4 kernel always supports this.
296//
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800297// Hence, these mandatory (must load successfully) implementations for 5.4+ kernels:
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800298DEFINE_BPF_PROG_KVER("schedcls/tether_downstream6_rawip$5_4", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski770e0a72021-01-18 20:14:03 -0800299 sched_cls_tether_downstream6_rawip_5_4, KVER(5, 4, 0))
Hungming Chen56c632c2020-09-10 15:42:58 +0800300(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800301 return do_forward6(skb, /* is_ethernet */ false, /* downstream */ true);
Hungming Chen56c632c2020-09-10 15:42:58 +0800302}
303
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800304DEFINE_BPF_PROG_KVER("schedcls/tether_upstream6_rawip$5_4", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800305 sched_cls_tether_upstream6_rawip_5_4, KVER(5, 4, 0))
306(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800307 return do_forward6(skb, /* is_ethernet */ false, /* downstream */ false);
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800308}
309
310// and these identical optional (may fail to load) implementations for [4.14..5.4) patched kernels:
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800311DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_downstream6_rawip$4_14",
312 AID_ROOT, AID_NETWORK_STACK,
313 sched_cls_tether_downstream6_rawip_4_14,
314 KVER(4, 14, 0), KVER(5, 4, 0))
Hungming Chen56c632c2020-09-10 15:42:58 +0800315(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800316 return do_forward6(skb, /* is_ethernet */ false, /* downstream */ true);
Hungming Chen56c632c2020-09-10 15:42:58 +0800317}
318
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800319DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_upstream6_rawip$4_14",
320 AID_ROOT, AID_NETWORK_STACK,
321 sched_cls_tether_upstream6_rawip_4_14,
322 KVER(4, 14, 0), KVER(5, 4, 0))
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800323(struct __sk_buff* skb) {
Maciej Żenczykowskibf8ec1a2021-01-24 19:56:39 -0800324 return do_forward6(skb, /* is_ethernet */ false, /* downstream */ false);
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800325}
326
327// and define no-op stubs for [4.9,4.14) and unpatched [4.14,5.4) kernels.
Hungming Chen56c632c2020-09-10 15:42:58 +0800328// (if the above real 4.14+ program loaded successfully, then bpfloader will have already pinned
329// it at the same location this one would be pinned at and will thus skip loading this stub)
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800330DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_downstream6_rawip$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski770e0a72021-01-18 20:14:03 -0800331 sched_cls_tether_downstream6_rawip_stub, KVER_NONE, KVER(5, 4, 0))
Hungming Chen56c632c2020-09-10 15:42:58 +0800332(struct __sk_buff* skb) {
333 return TC_ACT_OK;
334}
335
Maciej Żenczykowski5b00fbd2021-01-19 23:37:51 -0800336DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_upstream6_rawip$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowskibca0c852021-01-19 01:22:17 -0800337 sched_cls_tether_upstream6_rawip_stub, KVER_NONE, KVER(5, 4, 0))
338(struct __sk_buff* skb) {
339 return TC_ACT_OK;
340}
341
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800342// ----- IPv4 Support -----
343
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800344DEFINE_BPF_MAP_GRW(tether_downstream4_map, HASH, Tether4Key, Tether4Value, 64, AID_NETWORK_STACK)
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800345
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800346DEFINE_BPF_MAP_GRW(tether_upstream4_map, HASH, Tether4Key, Tether4Value, 64, AID_NETWORK_STACK)
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800347
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800348static inline __always_inline int do_forward4(struct __sk_buff* skb, const bool is_ethernet,
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800349 const bool downstream, const bool updatetime) {
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800350 const int l2_header_size = is_ethernet ? sizeof(struct ethhdr) : 0;
351 void* data = (void*)(long)skb->data;
352 const void* data_end = (void*)(long)skb->data_end;
353 struct ethhdr* eth = is_ethernet ? data : NULL; // used iff is_ethernet
354 struct iphdr* ip = is_ethernet ? (void*)(eth + 1) : data;
355
356 // Require ethernet dst mac address to be our unicast address.
357 if (is_ethernet && (skb->pkt_type != PACKET_HOST)) return TC_ACT_OK;
358
359 // Must be meta-ethernet IPv4 frame
360 if (skb->protocol != htons(ETH_P_IP)) return TC_ACT_OK;
361
362 // Must have (ethernet and) ipv4 header
363 if (data + l2_header_size + sizeof(*ip) > data_end) return TC_ACT_OK;
364
365 // Ethertype - if present - must be IPv4
366 if (is_ethernet && (eth->h_proto != htons(ETH_P_IP))) return TC_ACT_OK;
367
368 // IP version must be 4
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800369 if (ip->version != 4) TC_PUNT(INVALID_IP_VERSION);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800370
371 // We cannot handle IP options, just standard 20 byte == 5 dword minimal IPv4 header
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800372 if (ip->ihl != 5) TC_PUNT(HAS_IP_OPTIONS);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800373
374 // Calculate the IPv4 one's complement checksum of the IPv4 header.
375 __wsum sum4 = 0;
376 for (int i = 0; i < sizeof(*ip) / sizeof(__u16); ++i) {
377 sum4 += ((__u16*)ip)[i];
378 }
379 // Note that sum4 is guaranteed to be non-zero by virtue of ip4->version == 4
380 sum4 = (sum4 & 0xFFFF) + (sum4 >> 16); // collapse u32 into range 1 .. 0x1FFFE
381 sum4 = (sum4 & 0xFFFF) + (sum4 >> 16); // collapse any potential carry into u16
382 // for a correct checksum we should get *a* zero, but sum4 must be positive, ie 0xFFFF
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800383 if (sum4 != 0xFFFF) TC_PUNT(CHECKSUM);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800384
385 // Minimum IPv4 total length is the size of the header
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800386 if (ntohs(ip->tot_len) < sizeof(*ip)) TC_PUNT(TRUNCATED_IPV4);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800387
388 // We are incapable of dealing with IPv4 fragments
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800389 if (ip->frag_off & ~htons(IP_DF)) TC_PUNT(IS_IP_FRAG);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800390
391 // Cannot decrement during forward if already zero or would be zero,
392 // Let the kernel's stack handle these cases and generate appropriate ICMP errors.
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800393 if (ip->ttl <= 1) TC_PUNT(LOW_TTL);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800394
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800395 // If we cannot update the 'last_used' field due to lack of bpf_ktime_get_boot_ns() helper,
396 // then it is not safe to offload UDP due to the small conntrack timeouts, as such,
397 // in such a situation we can only support TCP. This also has the added nice benefit of
398 // using a separate error counter, and thus making it obvious which version of the program
399 // is loaded.
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800400 if (!updatetime && ip->protocol != IPPROTO_TCP) TC_PUNT(NON_TCP);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800401
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800402 // We do not support offloading anything besides IPv4 TCP and UDP, due to need for NAT,
403 // but no need to check this if !updatetime due to check immediately above.
404 if (updatetime && (ip->protocol != IPPROTO_TCP) && (ip->protocol != IPPROTO_UDP))
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800405 TC_PUNT(NON_TCP_UDP);
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800406
407 // We want to make sure that the compiler will, in the !updatetime case, entirely optimize
408 // out all the non-tcp logic. Also note that at this point is_udp === !is_tcp.
409 const bool is_tcp = !updatetime || (ip->protocol == IPPROTO_TCP);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800410
Maciej Żenczykowski82ee26b2021-02-16 16:10:08 -0800411 // This is a bit of a hack to make things easier on the bpf verifier.
412 // (In particular I believe the Linux 4.14 kernel's verifier can get confused later on about
413 // what offsets into the packet are valid and can spuriously reject the program, this is
414 // because it fails to realize that is_tcp && !is_tcp is impossible)
415 //
416 // For both TCP & UDP we'll need to read and modify the src/dst ports, which so happen to
417 // always be in the first 4 bytes of the L4 header. Additionally for UDP we'll need access
418 // to the checksum field which is in bytes 7 and 8. While for TCP we'll need to read the
419 // TCP flags (at offset 13) and access to the checksum field (2 bytes at offset 16).
420 // As such we *always* need access to at least 8 bytes.
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800421 if (data + l2_header_size + sizeof(*ip) + 8 > data_end) TC_PUNT(SHORT_L4_HEADER);
Maciej Żenczykowski82ee26b2021-02-16 16:10:08 -0800422
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800423 struct tcphdr* tcph = is_tcp ? (void*)(ip + 1) : NULL;
424 struct udphdr* udph = is_tcp ? NULL : (void*)(ip + 1);
425
426 if (is_tcp) {
427 // Make sure we can get at the tcp header
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800428 if (data + l2_header_size + sizeof(*ip) + sizeof(*tcph) > data_end)
429 TC_PUNT(SHORT_TCP_HEADER);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800430
431 // If hardware offload is running and programming flows based on conntrack entries, try not
432 // to interfere with it, so do not offload TCP packets with any one of the SYN/FIN/RST flags
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800433 if (tcph->syn || tcph->fin || tcph->rst) TC_PUNT(TCP_CONTROL_PACKET);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800434 } else { // UDP
435 // Make sure we can get at the udp header
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800436 if (data + l2_header_size + sizeof(*ip) + sizeof(*udph) > data_end)
437 TC_PUNT(SHORT_UDP_HEADER);
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800438
439 // Skip handling of CHECKSUM_COMPLETE packets with udp checksum zero due to need for
440 // additional updating of skb->csum (this could be fixed up manually with more effort).
441 //
442 // Note that the in-kernel implementation of 'int64_t bpf_csum_update(skb, u32 csum)' is:
443 // if (skb->ip_summed == CHECKSUM_COMPLETE)
444 // return (skb->csum = csum_add(skb->csum, csum));
445 // else
446 // return -ENOTSUPP;
447 //
448 // So this will punt any CHECKSUM_COMPLETE packet with a zero UDP checksum,
449 // and leave all other packets unaffected (since it just at most adds zero to skb->csum).
450 //
451 // In practice this should almost never trigger because most nics do not generate
452 // CHECKSUM_COMPLETE packets on receive - especially so for nics/drivers on a phone.
453 //
454 // Additionally since we're forwarding, in most cases the value of the skb->csum field
455 // shouldn't matter (it's not used by physical nic egress).
456 //
457 // It only matters if we're ingressing through a CHECKSUM_COMPLETE capable nic
458 // and egressing through a virtual interface looping back to the kernel itself
459 // (ie. something like veth) where the CHECKSUM_COMPLETE/skb->csum can get reused
460 // on ingress.
461 //
462 // If we were in the kernel we'd simply probably call
463 // void skb_checksum_complete_unset(struct sk_buff *skb) {
464 // if (skb->ip_summed == CHECKSUM_COMPLETE) skb->ip_summed = CHECKSUM_NONE;
465 // }
466 // here instead. Perhaps there should be a bpf helper for that?
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800467 if (!udph->check && (bpf_csum_update(skb, 0) >= 0)) TC_PUNT(UDP_CSUM_ZERO);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800468 }
469
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800470 Tether4Key k = {
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800471 .iif = skb->ifindex,
472 .l4Proto = ip->protocol,
473 .src4.s_addr = ip->saddr,
474 .dst4.s_addr = ip->daddr,
475 .srcPort = is_tcp ? tcph->source : udph->source,
476 .dstPort = is_tcp ? tcph->dest : udph->dest,
477 };
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800478 if (is_ethernet) for (int i = 0; i < ETH_ALEN; ++i) k.dstMac[i] = eth->h_dest[i];
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800479
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800480 Tether4Value* v = downstream ? bpf_tether_downstream4_map_lookup_elem(&k)
481 : bpf_tether_upstream4_map_lookup_elem(&k);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800482
483 // If we don't find any offload information then simply let the core stack handle it...
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800484 if (!v) return TC_ACT_OK;
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800485
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800486 uint32_t stat_and_limit_k = downstream ? skb->ifindex : v->oif;
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800487
488 TetherStatsValue* stat_v = bpf_tether_stats_map_lookup_elem(&stat_and_limit_k);
489
490 // If we don't have anywhere to put stats, then abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800491 if (!stat_v) TC_PUNT(NO_STATS_ENTRY);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800492
493 uint64_t* limit_v = bpf_tether_limit_map_lookup_elem(&stat_and_limit_k);
494
495 // If we don't have a limit, then abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800496 if (!limit_v) TC_PUNT(NO_LIMIT_ENTRY);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800497
498 // Required IPv4 minimum mtu is 68, below that not clear what we should do, abort...
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800499 if (v->pmtu < 68) TC_PUNT(BELOW_IPV4_MTU);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800500
501 // Approximate handling of TCP/IPv4 overhead for incoming LRO/GRO packets: default
502 // outbound path mtu of 1500 is not necessarily correct, but worst case we simply
503 // undercount, which is still better then not accounting for this overhead at all.
504 // Note: this really shouldn't be device/path mtu at all, but rather should be
505 // derived from this particular connection's mss (ie. from gro segment size).
506 // This would require a much newer kernel with newer ebpf accessors.
507 // (This is also blindly assuming 12 bytes of tcp timestamp option in tcp header)
508 uint64_t packets = 1;
509 uint64_t bytes = skb->len;
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800510 if (bytes > v->pmtu) {
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800511 const int tcp_overhead = sizeof(struct iphdr) + sizeof(struct tcphdr) + 12;
Maciej Żenczykowski1feb8b42021-01-25 12:01:31 -0800512 const int mss = v->pmtu - tcp_overhead;
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800513 const uint64_t payload = bytes - tcp_overhead;
514 packets = (payload + mss - 1) / mss;
515 bytes = tcp_overhead * packets + payload;
516 }
517
518 // Are we past the limit? If so, then abort...
519 // Note: will not overflow since u64 is 936 years even at 5Gbps.
520 // Do not drop here. Offload is just that, whenever we fail to handle
521 // a packet we let the core stack deal with things.
522 // (The core stack needs to handle limits correctly anyway,
523 // since we don't offload all traffic in both directions)
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800524 if (stat_v->rxBytes + stat_v->txBytes + bytes > *limit_v) TC_PUNT(LIMIT_REACHED);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800525
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800526 if (!is_ethernet) {
527 // Try to inject an ethernet header, and simply return if we fail.
528 // We do this even if TX interface is RAWIP and thus does not need an ethernet header,
529 // because this is easier and the kernel will strip extraneous ethernet header.
530 if (bpf_skb_change_head(skb, sizeof(struct ethhdr), /*flags*/ 0)) {
531 __sync_fetch_and_add(downstream ? &stat_v->rxErrors : &stat_v->txErrors, 1);
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800532 TC_PUNT(CHANGE_HEAD_FAILED);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800533 }
534
535 // bpf_skb_change_head() invalidates all pointers - reload them
536 data = (void*)(long)skb->data;
537 data_end = (void*)(long)skb->data_end;
538 eth = data;
539 ip = (void*)(eth + 1);
540 tcph = is_tcp ? (void*)(ip + 1) : NULL;
541 udph = is_tcp ? NULL : (void*)(ip + 1);
542
543 // I do not believe this can ever happen, but keep the verifier happy...
544 if (data + sizeof(struct ethhdr) + sizeof(*ip) + (is_tcp ? sizeof(*tcph) : sizeof(*udph)) > data_end) {
545 __sync_fetch_and_add(downstream ? &stat_v->rxErrors : &stat_v->txErrors, 1);
Maciej Żenczykowskie982f092021-02-04 20:26:26 -0800546 TC_DROP(TOO_SHORT);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800547 }
548 };
549
550 // At this point we always have an ethernet header - which will get stripped by the
551 // kernel during transmit through a rawip interface. ie. 'eth' pointer is valid.
552 // Additionally note that 'is_ethernet' and 'l2_header_size' are no longer correct.
553
554 // Overwrite any mac header with the new one
555 // For a rawip tx interface it will simply be a bunch of zeroes and later stripped.
556 *eth = v->macHeader;
557
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800558 const int l4_offs_csum = is_tcp ? ETH_IP4_TCP_OFFSET(check) : ETH_IP4_UDP_OFFSET(check);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800559 const int sz4 = sizeof(__be32);
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800560 // UDP 0 is special and stored as FFFF (this flag also causes a csum of 0 to be unmodified)
561 const int l4_flags = is_tcp ? 0 : BPF_F_MARK_MANGLED_0;
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800562 const __be32 old_daddr = k.dst4.s_addr;
563 const __be32 old_saddr = k.src4.s_addr;
564 const __be32 new_daddr = v->dst46.s6_addr32[3];
565 const __be32 new_saddr = v->src46.s6_addr32[3];
566
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800567 bpf_l4_csum_replace(skb, l4_offs_csum, old_daddr, new_daddr, sz4 | BPF_F_PSEUDO_HDR | l4_flags);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800568 bpf_l3_csum_replace(skb, ETH_IP4_OFFSET(check), old_daddr, new_daddr, sz4);
569 bpf_skb_store_bytes(skb, ETH_IP4_OFFSET(daddr), &new_daddr, sz4, 0);
570
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800571 bpf_l4_csum_replace(skb, l4_offs_csum, old_saddr, new_saddr, sz4 | BPF_F_PSEUDO_HDR | l4_flags);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800572 bpf_l3_csum_replace(skb, ETH_IP4_OFFSET(check), old_saddr, new_saddr, sz4);
573 bpf_skb_store_bytes(skb, ETH_IP4_OFFSET(saddr), &new_saddr, sz4, 0);
574
575 const int sz2 = sizeof(__be16);
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800576 // The offsets for TCP and UDP ports: source (u16 @ L4 offset 0) & dest (u16 @ L4 offset 2) are
577 // actually the same, so the compiler should just optimize them both down to a constant.
578 bpf_l4_csum_replace(skb, l4_offs_csum, k.srcPort, v->srcPort, sz2 | l4_flags);
579 bpf_skb_store_bytes(skb, is_tcp ? ETH_IP4_TCP_OFFSET(source) : ETH_IP4_UDP_OFFSET(source),
580 &v->srcPort, sz2, 0);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800581
Maciej Żenczykowskie4a726a2021-02-16 17:27:34 -0800582 bpf_l4_csum_replace(skb, l4_offs_csum, k.dstPort, v->dstPort, sz2 | l4_flags);
583 bpf_skb_store_bytes(skb, is_tcp ? ETH_IP4_TCP_OFFSET(dest) : ETH_IP4_UDP_OFFSET(dest),
584 &v->dstPort, sz2, 0);
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800585
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800586 // TEMP HACK: lack of TTL decrement
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800587
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800588 // This requires the bpf_ktime_get_boot_ns() helper which was added in 5.8,
589 // and backported to all Android Common Kernel 4.14+ trees.
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800590 if (updatetime) v->last_used = bpf_ktime_get_boot_ns();
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800591
592 __sync_fetch_and_add(downstream ? &stat_v->rxPackets : &stat_v->txPackets, packets);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800593 __sync_fetch_and_add(downstream ? &stat_v->rxBytes : &stat_v->txBytes, bytes);
594
Maciej Żenczykowskiec5f67d2021-01-25 02:32:01 -0800595 // Redirect to forwarded interface.
596 //
597 // Note that bpf_redirect() cannot fail unless you pass invalid flags.
598 // The redirect actually happens after the ebpf program has already terminated,
599 // and can fail for example for mtu reasons at that point in time, but there's nothing
600 // we can do about it here.
601 return bpf_redirect(v->oif, 0 /* this is effectively BPF_F_EGRESS */);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800602}
603
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800604// Full featured (required) implementations for 5.8+ kernels
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800605
Maciej Żenczykowskib0ac41f2021-02-14 21:34:03 -0800606DEFINE_BPF_PROG_KVER("schedcls/tether_downstream4_ether$5_8", AID_ROOT, AID_NETWORK_STACK,
607 sched_cls_tether_downstream4_ether_5_8, KVER(5, 8, 0))
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800608(struct __sk_buff* skb) {
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800609 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ true, /* updatetime */ true);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800610}
611
Maciej Żenczykowskib0ac41f2021-02-14 21:34:03 -0800612DEFINE_BPF_PROG_KVER("schedcls/tether_downstream4_rawip$5_8", AID_ROOT, AID_NETWORK_STACK,
613 sched_cls_tether_downstream4_rawip_5_8, KVER(5, 8, 0))
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800614(struct __sk_buff* skb) {
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800615 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ true, /* updatetime */ true);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800616}
617
Maciej Żenczykowskib0ac41f2021-02-14 21:34:03 -0800618DEFINE_BPF_PROG_KVER("schedcls/tether_upstream4_ether$5_8", AID_ROOT, AID_NETWORK_STACK,
619 sched_cls_tether_upstream4_ether_5_8, KVER(5, 8, 0))
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800620(struct __sk_buff* skb) {
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800621 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ false, /* updatetime */ true);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800622}
623
Maciej Żenczykowskib0ac41f2021-02-14 21:34:03 -0800624DEFINE_BPF_PROG_KVER("schedcls/tether_upstream4_rawip$5_8", AID_ROOT, AID_NETWORK_STACK,
625 sched_cls_tether_upstream4_rawip_5_8, KVER(5, 8, 0))
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800626(struct __sk_buff* skb) {
Maciej Żenczykowskiaefa0952021-02-14 23:15:19 -0800627 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ false, /* updatetime */ true);
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800628}
629
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800630// Full featured (optional) implementations for [4.14..5.8) kernels
631
632DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_ether$opt",
633 AID_ROOT, AID_NETWORK_STACK,
634 sched_cls_tether_downstream4_ether_opt,
635 KVER(4, 14, 0), KVER(5, 8, 0))
636(struct __sk_buff* skb) {
637 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ true, /* updatetime */ true);
638}
639
640DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_rawip$opt",
641 AID_ROOT, AID_NETWORK_STACK,
642 sched_cls_tether_downstream4_rawip_opt,
643 KVER(4, 14, 0), KVER(5, 8, 0))
644(struct __sk_buff* skb) {
645 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ true, /* updatetime */ true);
646}
647
648DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_ether$opt",
649 AID_ROOT, AID_NETWORK_STACK,
650 sched_cls_tether_upstream4_ether_opt,
651 KVER(4, 14, 0), KVER(5, 8, 0))
652(struct __sk_buff* skb) {
653 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ false, /* updatetime */ true);
654}
655
656DEFINE_OPTIONAL_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_rawip$opt",
657 AID_ROOT, AID_NETWORK_STACK,
658 sched_cls_tether_upstream4_rawip_opt,
659 KVER(4, 14, 0), KVER(5, 8, 0))
660(struct __sk_buff* skb) {
661 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ false, /* updatetime */ true);
662}
663
664// Partial (TCP-only: will not update 'last_used' field) implementations for 4.14+ kernels.
665// These will be loaded only if the above optional ones failed (loading of *these* must succeed).
666//
667// [Note: as a result TCP connections will not have their conntrack timeout refreshed, however,
668// since /proc/sys/net/netfilter/nf_conntrack_tcp_timeout_established defaults to 432000 (seconds),
669// this in practice means they'll break only after 5 days. This seems an acceptable trade-off.
670//
671// Additionally kernel/tests change "net-test: add bpf_ktime_get_ns / bpf_ktime_get_boot_ns tests"
672// which enforces and documents the required kernel cherrypicks will make it pretty unlikely that
673// many devices upgrading to S will end up relying on these fallback programs.
674
675DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_ether$4_14", AID_ROOT, AID_NETWORK_STACK,
676 sched_cls_tether_downstream4_ether_4_14, KVER(4, 14, 0), KVER(5, 8, 0))
677(struct __sk_buff* skb) {
678 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ true, /* updatetime */ false);
679}
680
681DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_rawip$4_14", AID_ROOT, AID_NETWORK_STACK,
682 sched_cls_tether_downstream4_rawip_4_14, KVER(4, 14, 0), KVER(5, 8, 0))
683(struct __sk_buff* skb) {
684 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ true, /* updatetime */ false);
685}
686
687DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_ether$4_14", AID_ROOT, AID_NETWORK_STACK,
688 sched_cls_tether_upstream4_ether_4_14, KVER(4, 14, 0), KVER(5, 8, 0))
689(struct __sk_buff* skb) {
690 return do_forward4(skb, /* is_ethernet */ true, /* downstream */ false, /* updatetime */ false);
691}
692
693DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_rawip$4_14", AID_ROOT, AID_NETWORK_STACK,
694 sched_cls_tether_upstream4_rawip_4_14, KVER(4, 14, 0), KVER(5, 8, 0))
695(struct __sk_buff* skb) {
696 return do_forward4(skb, /* is_ethernet */ false, /* downstream */ false, /* updatetime */ false);
697}
698
699// Placeholder (no-op) implementations for older pre-4.14 kernels
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800700
701DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_ether$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800702 sched_cls_tether_downstream4_ether_stub, KVER_NONE, KVER(4, 14, 0))
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800703(struct __sk_buff* skb) {
704 return TC_ACT_OK;
705}
706
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800707DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_downstream4_rawip$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800708 sched_cls_tether_downstream4_rawip_stub, KVER_NONE, KVER(4, 14, 0))
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800709(struct __sk_buff* skb) {
710 return TC_ACT_OK;
711}
712
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800713DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_ether$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800714 sched_cls_tether_upstream4_ether_stub, KVER_NONE, KVER(4, 14, 0))
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800715(struct __sk_buff* skb) {
716 return TC_ACT_OK;
717}
718
Maciej Żenczykowskic2b01462021-01-24 21:01:29 -0800719DEFINE_BPF_PROG_KVER_RANGE("schedcls/tether_upstream4_rawip$stub", AID_ROOT, AID_NETWORK_STACK,
Maciej Żenczykowski36867352021-02-15 01:53:17 -0800720 sched_cls_tether_upstream4_rawip_stub, KVER_NONE, KVER(4, 14, 0))
Maciej Żenczykowski088fe192021-01-20 13:34:17 -0800721(struct __sk_buff* skb) {
722 return TC_ACT_OK;
723}
724
Maciej Żenczykowskib1997422021-01-20 14:31:50 -0800725// ----- XDP Support -----
726
727#define DEFINE_XDP_PROG(str, func) \
728 DEFINE_BPF_PROG_KVER(str, AID_ROOT, AID_NETWORK_STACK, func, KVER(5, 9, 0))(struct xdp_md *ctx)
729
730DEFINE_XDP_PROG("xdp/tether_downstream_ether",
731 xdp_tether_downstream_ether) {
732 return XDP_PASS;
733}
734
735DEFINE_XDP_PROG("xdp/tether_downstream_rawip",
736 xdp_tether_downstream_rawip) {
737 return XDP_PASS;
738}
739
740DEFINE_XDP_PROG("xdp/tether_upstream_ether",
741 xdp_tether_upstream_ether) {
742 return XDP_PASS;
743}
744
745DEFINE_XDP_PROG("xdp/tether_upstream_rawip",
746 xdp_tether_upstream_rawip) {
747 return XDP_PASS;
748}
749
Hungming Chen56c632c2020-09-10 15:42:58 +0800750LICENSE("Apache 2.0");
Maciej Żenczykowski607d6dd2021-02-25 19:09:47 -0800751CRITICAL("tethering");