1*6b88ce90SJakub Kicinski // SPDX-License-Identifier: GPL-2.0-only
2*6b88ce90SJakub Kicinski /*
3*6b88ce90SJakub Kicinski  * This code is taken from the Android Open Source Project and the author
4*6b88ce90SJakub Kicinski  * (Maciej Żenczykowski) has gave permission to relicense it under the
5*6b88ce90SJakub Kicinski  * GPLv2. Therefore this program is free software;
6*6b88ce90SJakub Kicinski  * You can redistribute it and/or modify it under the terms of the GNU
7*6b88ce90SJakub Kicinski  * General Public License version 2 as published by the Free Software
8*6b88ce90SJakub Kicinski  * Foundation
9*6b88ce90SJakub Kicinski 
10*6b88ce90SJakub Kicinski  * The original headers, including the original license headers, are
11*6b88ce90SJakub Kicinski  * included below for completeness.
12*6b88ce90SJakub Kicinski  *
13*6b88ce90SJakub Kicinski  * Copyright (C) 2019 The Android Open Source Project
14*6b88ce90SJakub Kicinski  *
15*6b88ce90SJakub Kicinski  * Licensed under the Apache License, Version 2.0 (the "License");
16*6b88ce90SJakub Kicinski  * you may not use this file except in compliance with the License.
17*6b88ce90SJakub Kicinski  * You may obtain a copy of the License at
18*6b88ce90SJakub Kicinski  *
19*6b88ce90SJakub Kicinski  *      http://www.apache.org/licenses/LICENSE-2.0
20*6b88ce90SJakub Kicinski  *
21*6b88ce90SJakub Kicinski  * Unless required by applicable law or agreed to in writing, software
22*6b88ce90SJakub Kicinski  * distributed under the License is distributed on an "AS IS" BASIS,
23*6b88ce90SJakub Kicinski  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
24*6b88ce90SJakub Kicinski  * See the License for the specific language governing permissions and
25*6b88ce90SJakub Kicinski  * limitations under the License.
26*6b88ce90SJakub Kicinski  */
27*6b88ce90SJakub Kicinski #include <linux/bpf.h>
28*6b88ce90SJakub Kicinski #include <linux/if.h>
29*6b88ce90SJakub Kicinski #include <linux/if_ether.h>
30*6b88ce90SJakub Kicinski #include <linux/if_packet.h>
31*6b88ce90SJakub Kicinski #include <linux/in.h>
32*6b88ce90SJakub Kicinski #include <linux/in6.h>
33*6b88ce90SJakub Kicinski #include <linux/ip.h>
34*6b88ce90SJakub Kicinski #include <linux/ipv6.h>
35*6b88ce90SJakub Kicinski #include <linux/pkt_cls.h>
36*6b88ce90SJakub Kicinski #include <linux/swab.h>
37*6b88ce90SJakub Kicinski #include <stdbool.h>
38*6b88ce90SJakub Kicinski #include <stdint.h>
39*6b88ce90SJakub Kicinski 
40*6b88ce90SJakub Kicinski 
41*6b88ce90SJakub Kicinski #include <linux/udp.h>
42*6b88ce90SJakub Kicinski 
43*6b88ce90SJakub Kicinski #include <bpf/bpf_helpers.h>
44*6b88ce90SJakub Kicinski #include <bpf/bpf_endian.h>
45*6b88ce90SJakub Kicinski 
46*6b88ce90SJakub Kicinski #define IP_DF 0x4000  // Flag: "Don't Fragment"
47*6b88ce90SJakub Kicinski 
48*6b88ce90SJakub Kicinski SEC("schedcls/ingress6/nat_6")
sched_cls_ingress6_nat_6_prog(struct __sk_buff * skb)49*6b88ce90SJakub Kicinski int sched_cls_ingress6_nat_6_prog(struct __sk_buff *skb)
50*6b88ce90SJakub Kicinski {
51*6b88ce90SJakub Kicinski 	const int l2_header_size =  sizeof(struct ethhdr);
52*6b88ce90SJakub Kicinski 	void *data = (void *)(long)skb->data;
53*6b88ce90SJakub Kicinski 	const void *data_end = (void *)(long)skb->data_end;
54*6b88ce90SJakub Kicinski 	const struct ethhdr * const eth = data;  // used iff is_ethernet
55*6b88ce90SJakub Kicinski 	const struct ipv6hdr * const ip6 =  (void *)(eth + 1);
56*6b88ce90SJakub Kicinski 
57*6b88ce90SJakub Kicinski 	// Require ethernet dst mac address to be our unicast address.
58*6b88ce90SJakub Kicinski 	if  (skb->pkt_type != PACKET_HOST)
59*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
60*6b88ce90SJakub Kicinski 
61*6b88ce90SJakub Kicinski 	// Must be meta-ethernet IPv6 frame
62*6b88ce90SJakub Kicinski 	if (skb->protocol != bpf_htons(ETH_P_IPV6))
63*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
64*6b88ce90SJakub Kicinski 
65*6b88ce90SJakub Kicinski 	// Must have (ethernet and) ipv6 header
66*6b88ce90SJakub Kicinski 	if (data + l2_header_size + sizeof(*ip6) > data_end)
67*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
68*6b88ce90SJakub Kicinski 
69*6b88ce90SJakub Kicinski 	// Ethertype - if present - must be IPv6
70*6b88ce90SJakub Kicinski 	if (eth->h_proto != bpf_htons(ETH_P_IPV6))
71*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
72*6b88ce90SJakub Kicinski 
73*6b88ce90SJakub Kicinski 	// IP version must be 6
74*6b88ce90SJakub Kicinski 	if (ip6->version != 6)
75*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
76*6b88ce90SJakub Kicinski 	// Maximum IPv6 payload length that can be translated to IPv4
77*6b88ce90SJakub Kicinski 	if (bpf_ntohs(ip6->payload_len) > 0xFFFF - sizeof(struct iphdr))
78*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
79*6b88ce90SJakub Kicinski 	switch (ip6->nexthdr) {
80*6b88ce90SJakub Kicinski 	case IPPROTO_TCP:  // For TCP & UDP the checksum neutrality of the chosen IPv6
81*6b88ce90SJakub Kicinski 	case IPPROTO_UDP:  // address means there is no need to update their checksums.
82*6b88ce90SJakub Kicinski 	case IPPROTO_GRE:  // We do not need to bother looking at GRE/ESP headers,
83*6b88ce90SJakub Kicinski 	case IPPROTO_ESP:  // since there is never a checksum to update.
84*6b88ce90SJakub Kicinski 		break;
85*6b88ce90SJakub Kicinski 	default:  // do not know how to handle anything else
86*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
87*6b88ce90SJakub Kicinski 	}
88*6b88ce90SJakub Kicinski 
89*6b88ce90SJakub Kicinski 	struct ethhdr eth2;  // used iff is_ethernet
90*6b88ce90SJakub Kicinski 
91*6b88ce90SJakub Kicinski 	eth2 = *eth;                     // Copy over the ethernet header (src/dst mac)
92*6b88ce90SJakub Kicinski 	eth2.h_proto = bpf_htons(ETH_P_IP);  // But replace the ethertype
93*6b88ce90SJakub Kicinski 
94*6b88ce90SJakub Kicinski 	struct iphdr ip = {
95*6b88ce90SJakub Kicinski 		.version = 4,                                                      // u4
96*6b88ce90SJakub Kicinski 		.ihl = sizeof(struct iphdr) / sizeof(__u32),                       // u4
97*6b88ce90SJakub Kicinski 		.tos = (ip6->priority << 4) + (ip6->flow_lbl[0] >> 4),             // u8
98*6b88ce90SJakub Kicinski 		.tot_len = bpf_htons(bpf_ntohs(ip6->payload_len) + sizeof(struct iphdr)),  // u16
99*6b88ce90SJakub Kicinski 		.id = 0,                                                           // u16
100*6b88ce90SJakub Kicinski 		.frag_off = bpf_htons(IP_DF),                                          // u16
101*6b88ce90SJakub Kicinski 		.ttl = ip6->hop_limit,                                             // u8
102*6b88ce90SJakub Kicinski 		.protocol = ip6->nexthdr,                                          // u8
103*6b88ce90SJakub Kicinski 		.check = 0,                                                        // u16
104*6b88ce90SJakub Kicinski 		.saddr = 0x0201a8c0,                            // u32
105*6b88ce90SJakub Kicinski 		.daddr = 0x0101a8c0,                                         // u32
106*6b88ce90SJakub Kicinski 	};
107*6b88ce90SJakub Kicinski 
108*6b88ce90SJakub Kicinski 	// Calculate the IPv4 one's complement checksum of the IPv4 header.
109*6b88ce90SJakub Kicinski 	__wsum sum4 = 0;
110*6b88ce90SJakub Kicinski 
111*6b88ce90SJakub Kicinski 	for (int i = 0; i < sizeof(ip) / sizeof(__u16); ++i)
112*6b88ce90SJakub Kicinski 		sum4 += ((__u16 *)&ip)[i];
113*6b88ce90SJakub Kicinski 
114*6b88ce90SJakub Kicinski 	// Note that sum4 is guaranteed to be non-zero by virtue of ip.version == 4
115*6b88ce90SJakub Kicinski 	sum4 = (sum4 & 0xFFFF) + (sum4 >> 16);  // collapse u32 into range 1 .. 0x1FFFE
116*6b88ce90SJakub Kicinski 	sum4 = (sum4 & 0xFFFF) + (sum4 >> 16);  // collapse any potential carry into u16
117*6b88ce90SJakub Kicinski 	ip.check = (__u16)~sum4;                // sum4 cannot be zero, so this is never 0xFFFF
118*6b88ce90SJakub Kicinski 
119*6b88ce90SJakub Kicinski 	// Calculate the *negative* IPv6 16-bit one's complement checksum of the IPv6 header.
120*6b88ce90SJakub Kicinski 	__wsum sum6 = 0;
121*6b88ce90SJakub Kicinski 	// We'll end up with a non-zero sum due to ip6->version == 6 (which has '0' bits)
122*6b88ce90SJakub Kicinski 	for (int i = 0; i < sizeof(*ip6) / sizeof(__u16); ++i)
123*6b88ce90SJakub Kicinski 		sum6 += ~((__u16 *)ip6)[i];  // note the bitwise negation
124*6b88ce90SJakub Kicinski 
125*6b88ce90SJakub Kicinski 	// Note that there is no L4 checksum update: we are relying on the checksum neutrality
126*6b88ce90SJakub Kicinski 	// of the ipv6 address chosen by netd's ClatdController.
127*6b88ce90SJakub Kicinski 
128*6b88ce90SJakub Kicinski 	// Packet mutations begin - point of no return, but if this first modification fails
129*6b88ce90SJakub Kicinski 	// the packet is probably still pristine, so let clatd handle it.
130*6b88ce90SJakub Kicinski 	if (bpf_skb_change_proto(skb, bpf_htons(ETH_P_IP), 0))
131*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
132*6b88ce90SJakub Kicinski 	bpf_csum_update(skb, sum6);
133*6b88ce90SJakub Kicinski 
134*6b88ce90SJakub Kicinski 	data = (void *)(long)skb->data;
135*6b88ce90SJakub Kicinski 	data_end = (void *)(long)skb->data_end;
136*6b88ce90SJakub Kicinski 	if (data + l2_header_size + sizeof(struct iphdr) > data_end)
137*6b88ce90SJakub Kicinski 		return TC_ACT_SHOT;
138*6b88ce90SJakub Kicinski 
139*6b88ce90SJakub Kicinski 	struct ethhdr *new_eth = data;
140*6b88ce90SJakub Kicinski 
141*6b88ce90SJakub Kicinski 	// Copy over the updated ethernet header
142*6b88ce90SJakub Kicinski 	*new_eth = eth2;
143*6b88ce90SJakub Kicinski 
144*6b88ce90SJakub Kicinski 	// Copy over the new ipv4 header.
145*6b88ce90SJakub Kicinski 	*(struct iphdr *)(new_eth + 1) = ip;
146*6b88ce90SJakub Kicinski 	return bpf_redirect(skb->ifindex, BPF_F_INGRESS);
147*6b88ce90SJakub Kicinski }
148*6b88ce90SJakub Kicinski 
149*6b88ce90SJakub Kicinski SEC("schedcls/egress4/snat4")
sched_cls_egress4_snat4_prog(struct __sk_buff * skb)150*6b88ce90SJakub Kicinski int sched_cls_egress4_snat4_prog(struct __sk_buff *skb)
151*6b88ce90SJakub Kicinski {
152*6b88ce90SJakub Kicinski 	const int l2_header_size =  sizeof(struct ethhdr);
153*6b88ce90SJakub Kicinski 	void *data = (void *)(long)skb->data;
154*6b88ce90SJakub Kicinski 	const void *data_end = (void *)(long)skb->data_end;
155*6b88ce90SJakub Kicinski 	const struct ethhdr *const eth = data;  // used iff is_ethernet
156*6b88ce90SJakub Kicinski 	const struct iphdr *const ip4 = (void *)(eth + 1);
157*6b88ce90SJakub Kicinski 
158*6b88ce90SJakub Kicinski 	// Must be meta-ethernet IPv4 frame
159*6b88ce90SJakub Kicinski 	if (skb->protocol != bpf_htons(ETH_P_IP))
160*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
161*6b88ce90SJakub Kicinski 
162*6b88ce90SJakub Kicinski 	// Must have ipv4 header
163*6b88ce90SJakub Kicinski 	if (data + l2_header_size + sizeof(struct ipv6hdr) > data_end)
164*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
165*6b88ce90SJakub Kicinski 
166*6b88ce90SJakub Kicinski 	// Ethertype - if present - must be IPv4
167*6b88ce90SJakub Kicinski 	if (eth->h_proto != bpf_htons(ETH_P_IP))
168*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
169*6b88ce90SJakub Kicinski 
170*6b88ce90SJakub Kicinski 	// IP version must be 4
171*6b88ce90SJakub Kicinski 	if (ip4->version != 4)
172*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
173*6b88ce90SJakub Kicinski 
174*6b88ce90SJakub Kicinski 	// We cannot handle IP options, just standard 20 byte == 5 dword minimal IPv4 header
175*6b88ce90SJakub Kicinski 	if (ip4->ihl != 5)
176*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
177*6b88ce90SJakub Kicinski 
178*6b88ce90SJakub Kicinski 	// Maximum IPv6 payload length that can be translated to IPv4
179*6b88ce90SJakub Kicinski 	if (bpf_htons(ip4->tot_len) > 0xFFFF - sizeof(struct ipv6hdr))
180*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
181*6b88ce90SJakub Kicinski 
182*6b88ce90SJakub Kicinski 	// Calculate the IPv4 one's complement checksum of the IPv4 header.
183*6b88ce90SJakub Kicinski 	__wsum sum4 = 0;
184*6b88ce90SJakub Kicinski 
185*6b88ce90SJakub Kicinski 	for (int i = 0; i < sizeof(*ip4) / sizeof(__u16); ++i)
186*6b88ce90SJakub Kicinski 		sum4 += ((__u16 *)ip4)[i];
187*6b88ce90SJakub Kicinski 
188*6b88ce90SJakub Kicinski 	// Note that sum4 is guaranteed to be non-zero by virtue of ip4->version == 4
189*6b88ce90SJakub Kicinski 	sum4 = (sum4 & 0xFFFF) + (sum4 >> 16);  // collapse u32 into range 1 .. 0x1FFFE
190*6b88ce90SJakub Kicinski 	sum4 = (sum4 & 0xFFFF) + (sum4 >> 16);  // collapse any potential carry into u16
191*6b88ce90SJakub Kicinski 	// for a correct checksum we should get *a* zero, but sum4 must be positive, ie 0xFFFF
192*6b88ce90SJakub Kicinski 	if (sum4 != 0xFFFF)
193*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
194*6b88ce90SJakub Kicinski 
195*6b88ce90SJakub Kicinski 	// Minimum IPv4 total length is the size of the header
196*6b88ce90SJakub Kicinski 	if (bpf_ntohs(ip4->tot_len) < sizeof(*ip4))
197*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
198*6b88ce90SJakub Kicinski 
199*6b88ce90SJakub Kicinski 	// We are incapable of dealing with IPv4 fragments
200*6b88ce90SJakub Kicinski 	if (ip4->frag_off & ~bpf_htons(IP_DF))
201*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
202*6b88ce90SJakub Kicinski 
203*6b88ce90SJakub Kicinski 	switch (ip4->protocol) {
204*6b88ce90SJakub Kicinski 	case IPPROTO_TCP:  // For TCP & UDP the checksum neutrality of the chosen IPv6
205*6b88ce90SJakub Kicinski 	case IPPROTO_GRE:  // address means there is no need to update their checksums.
206*6b88ce90SJakub Kicinski 	case IPPROTO_ESP:  // We do not need to bother looking at GRE/ESP headers,
207*6b88ce90SJakub Kicinski 		break;         // since there is never a checksum to update.
208*6b88ce90SJakub Kicinski 
209*6b88ce90SJakub Kicinski 	case IPPROTO_UDP:  // See above comment, but must also have UDP header...
210*6b88ce90SJakub Kicinski 		if (data + sizeof(*ip4) + sizeof(struct udphdr) > data_end)
211*6b88ce90SJakub Kicinski 			return TC_ACT_OK;
212*6b88ce90SJakub Kicinski 		const struct udphdr *uh = (const struct udphdr *)(ip4 + 1);
213*6b88ce90SJakub Kicinski 		// If IPv4/UDP checksum is 0 then fallback to clatd so it can calculate the
214*6b88ce90SJakub Kicinski 		// checksum.  Otherwise the network or more likely the NAT64 gateway might
215*6b88ce90SJakub Kicinski 		// drop the packet because in most cases IPv6/UDP packets with a zero checksum
216*6b88ce90SJakub Kicinski 		// are invalid. See RFC 6935.  TODO: calculate checksum via bpf_csum_diff()
217*6b88ce90SJakub Kicinski 		if (!uh->check)
218*6b88ce90SJakub Kicinski 			return TC_ACT_OK;
219*6b88ce90SJakub Kicinski 		break;
220*6b88ce90SJakub Kicinski 
221*6b88ce90SJakub Kicinski 	default:  // do not know how to handle anything else
222*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
223*6b88ce90SJakub Kicinski 	}
224*6b88ce90SJakub Kicinski 	struct ethhdr eth2;  // used iff is_ethernet
225*6b88ce90SJakub Kicinski 
226*6b88ce90SJakub Kicinski 	eth2 = *eth;                     // Copy over the ethernet header (src/dst mac)
227*6b88ce90SJakub Kicinski 	eth2.h_proto = bpf_htons(ETH_P_IPV6);  // But replace the ethertype
228*6b88ce90SJakub Kicinski 
229*6b88ce90SJakub Kicinski 	struct ipv6hdr ip6 = {
230*6b88ce90SJakub Kicinski 		.version = 6,                                    // __u8:4
231*6b88ce90SJakub Kicinski 		.priority = ip4->tos >> 4,                       // __u8:4
232*6b88ce90SJakub Kicinski 		.flow_lbl = {(ip4->tos & 0xF) << 4, 0, 0},       // __u8[3]
233*6b88ce90SJakub Kicinski 		.payload_len = bpf_htons(bpf_ntohs(ip4->tot_len) - 20),  // __be16
234*6b88ce90SJakub Kicinski 		.nexthdr = ip4->protocol,                        // __u8
235*6b88ce90SJakub Kicinski 		.hop_limit = ip4->ttl,                           // __u8
236*6b88ce90SJakub Kicinski 	};
237*6b88ce90SJakub Kicinski 	ip6.saddr.in6_u.u6_addr32[0] = bpf_htonl(0x20010db8);
238*6b88ce90SJakub Kicinski 	ip6.saddr.in6_u.u6_addr32[1] = 0;
239*6b88ce90SJakub Kicinski 	ip6.saddr.in6_u.u6_addr32[2] = 0;
240*6b88ce90SJakub Kicinski 	ip6.saddr.in6_u.u6_addr32[3] = bpf_htonl(1);
241*6b88ce90SJakub Kicinski 	ip6.daddr.in6_u.u6_addr32[0] = bpf_htonl(0x20010db8);
242*6b88ce90SJakub Kicinski 	ip6.daddr.in6_u.u6_addr32[1] = 0;
243*6b88ce90SJakub Kicinski 	ip6.daddr.in6_u.u6_addr32[2] = 0;
244*6b88ce90SJakub Kicinski 	ip6.daddr.in6_u.u6_addr32[3] = bpf_htonl(2);
245*6b88ce90SJakub Kicinski 
246*6b88ce90SJakub Kicinski 	// Calculate the IPv6 16-bit one's complement checksum of the IPv6 header.
247*6b88ce90SJakub Kicinski 	__wsum sum6 = 0;
248*6b88ce90SJakub Kicinski 	// We'll end up with a non-zero sum due to ip6.version == 6
249*6b88ce90SJakub Kicinski 	for (int i = 0; i < sizeof(ip6) / sizeof(__u16); ++i)
250*6b88ce90SJakub Kicinski 		sum6 += ((__u16 *)&ip6)[i];
251*6b88ce90SJakub Kicinski 
252*6b88ce90SJakub Kicinski 	// Packet mutations begin - point of no return, but if this first modification fails
253*6b88ce90SJakub Kicinski 	// the packet is probably still pristine, so let clatd handle it.
254*6b88ce90SJakub Kicinski 	if (bpf_skb_change_proto(skb, bpf_htons(ETH_P_IPV6), 0))
255*6b88ce90SJakub Kicinski 		return TC_ACT_OK;
256*6b88ce90SJakub Kicinski 
257*6b88ce90SJakub Kicinski 	// This takes care of updating the skb->csum field for a CHECKSUM_COMPLETE packet.
258*6b88ce90SJakub Kicinski 	// In such a case, skb->csum is a 16-bit one's complement sum of the entire payload,
259*6b88ce90SJakub Kicinski 	// thus we need to subtract out the ipv4 header's sum, and add in the ipv6 header's sum.
260*6b88ce90SJakub Kicinski 	// However, we've already verified the ipv4 checksum is correct and thus 0.
261*6b88ce90SJakub Kicinski 	// Thus we only need to add the ipv6 header's sum.
262*6b88ce90SJakub Kicinski 	//
263*6b88ce90SJakub Kicinski 	// bpf_csum_update() always succeeds if the skb is CHECKSUM_COMPLETE and returns an error
264*6b88ce90SJakub Kicinski 	// (-ENOTSUPP) if it isn't.  So we just ignore the return code (see above for more details).
265*6b88ce90SJakub Kicinski 	bpf_csum_update(skb, sum6);
266*6b88ce90SJakub Kicinski 
267*6b88ce90SJakub Kicinski 	// bpf_skb_change_proto() invalidates all pointers - reload them.
268*6b88ce90SJakub Kicinski 	data = (void *)(long)skb->data;
269*6b88ce90SJakub Kicinski 	data_end = (void *)(long)skb->data_end;
270*6b88ce90SJakub Kicinski 
271*6b88ce90SJakub Kicinski 	// I cannot think of any valid way for this error condition to trigger, however I do
272*6b88ce90SJakub Kicinski 	// believe the explicit check is required to keep the in kernel ebpf verifier happy.
273*6b88ce90SJakub Kicinski 	if (data + l2_header_size + sizeof(ip6) > data_end)
274*6b88ce90SJakub Kicinski 		return TC_ACT_SHOT;
275*6b88ce90SJakub Kicinski 
276*6b88ce90SJakub Kicinski 	struct ethhdr *new_eth = data;
277*6b88ce90SJakub Kicinski 
278*6b88ce90SJakub Kicinski 	// Copy over the updated ethernet header
279*6b88ce90SJakub Kicinski 	*new_eth = eth2;
280*6b88ce90SJakub Kicinski 	// Copy over the new ipv4 header.
281*6b88ce90SJakub Kicinski 	*(struct ipv6hdr *)(new_eth + 1) = ip6;
282*6b88ce90SJakub Kicinski 	return TC_ACT_OK;
283*6b88ce90SJakub Kicinski }
284*6b88ce90SJakub Kicinski 
285*6b88ce90SJakub Kicinski char _license[] SEC("license") = ("GPL");
286