123458901SLorenz Bauer // SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
223458901SLorenz Bauer // Copyright (c) 2019, 2020 Cloudflare
323458901SLorenz Bauer 
423458901SLorenz Bauer #include <stdbool.h>
523458901SLorenz Bauer #include <stddef.h>
623458901SLorenz Bauer #include <stdint.h>
723458901SLorenz Bauer #include <string.h>
823458901SLorenz Bauer 
923458901SLorenz Bauer #include <linux/bpf.h>
1023458901SLorenz Bauer #include <linux/icmp.h>
1123458901SLorenz Bauer #include <linux/icmpv6.h>
1223458901SLorenz Bauer #include <linux/if_ether.h>
1323458901SLorenz Bauer #include <linux/in.h>
1423458901SLorenz Bauer #include <linux/ip.h>
1523458901SLorenz Bauer #include <linux/ipv6.h>
1623458901SLorenz Bauer #include <linux/pkt_cls.h>
1723458901SLorenz Bauer #include <linux/tcp.h>
1823458901SLorenz Bauer #include <linux/udp.h>
1923458901SLorenz Bauer 
2023458901SLorenz Bauer #include <bpf/bpf_helpers.h>
2123458901SLorenz Bauer #include <bpf/bpf_endian.h>
2223458901SLorenz Bauer 
2323458901SLorenz Bauer #include "test_cls_redirect.h"
2423458901SLorenz Bauer 
2523458901SLorenz Bauer #define offsetofend(TYPE, MEMBER) \
2623458901SLorenz Bauer 	(offsetof(TYPE, MEMBER) + sizeof((((TYPE *)0)->MEMBER)))
2723458901SLorenz Bauer 
2823458901SLorenz Bauer #define IP_OFFSET_MASK (0x1FFF)
2923458901SLorenz Bauer #define IP_MF (0x2000)
3023458901SLorenz Bauer 
3123458901SLorenz Bauer char _license[] SEC("license") = "Dual BSD/GPL";
3223458901SLorenz Bauer 
3323458901SLorenz Bauer /**
3423458901SLorenz Bauer  * Destination port and IP used for UDP encapsulation.
3523458901SLorenz Bauer  */
3623458901SLorenz Bauer static volatile const __be16 ENCAPSULATION_PORT;
3723458901SLorenz Bauer static volatile const __be32 ENCAPSULATION_IP;
3823458901SLorenz Bauer 
3923458901SLorenz Bauer typedef struct {
4023458901SLorenz Bauer 	uint64_t processed_packets_total;
4123458901SLorenz Bauer 	uint64_t l3_protocol_packets_total_ipv4;
4223458901SLorenz Bauer 	uint64_t l3_protocol_packets_total_ipv6;
4323458901SLorenz Bauer 	uint64_t l4_protocol_packets_total_tcp;
4423458901SLorenz Bauer 	uint64_t l4_protocol_packets_total_udp;
4523458901SLorenz Bauer 	uint64_t accepted_packets_total_syn;
4623458901SLorenz Bauer 	uint64_t accepted_packets_total_syn_cookies;
4723458901SLorenz Bauer 	uint64_t accepted_packets_total_last_hop;
4823458901SLorenz Bauer 	uint64_t accepted_packets_total_icmp_echo_request;
4923458901SLorenz Bauer 	uint64_t accepted_packets_total_established;
5023458901SLorenz Bauer 	uint64_t forwarded_packets_total_gue;
5123458901SLorenz Bauer 	uint64_t forwarded_packets_total_gre;
5223458901SLorenz Bauer 
5323458901SLorenz Bauer 	uint64_t errors_total_unknown_l3_proto;
5423458901SLorenz Bauer 	uint64_t errors_total_unknown_l4_proto;
5523458901SLorenz Bauer 	uint64_t errors_total_malformed_ip;
5623458901SLorenz Bauer 	uint64_t errors_total_fragmented_ip;
5723458901SLorenz Bauer 	uint64_t errors_total_malformed_icmp;
5823458901SLorenz Bauer 	uint64_t errors_total_unwanted_icmp;
5923458901SLorenz Bauer 	uint64_t errors_total_malformed_icmp_pkt_too_big;
6023458901SLorenz Bauer 	uint64_t errors_total_malformed_tcp;
6123458901SLorenz Bauer 	uint64_t errors_total_malformed_udp;
6223458901SLorenz Bauer 	uint64_t errors_total_icmp_echo_replies;
6323458901SLorenz Bauer 	uint64_t errors_total_malformed_encapsulation;
6423458901SLorenz Bauer 	uint64_t errors_total_encap_adjust_failed;
6523458901SLorenz Bauer 	uint64_t errors_total_encap_buffer_too_small;
6623458901SLorenz Bauer 	uint64_t errors_total_redirect_loop;
6723458901SLorenz Bauer } metrics_t;
6823458901SLorenz Bauer 
6923458901SLorenz Bauer typedef enum {
7023458901SLorenz Bauer 	INVALID = 0,
7123458901SLorenz Bauer 	UNKNOWN,
7223458901SLorenz Bauer 	ECHO_REQUEST,
7323458901SLorenz Bauer 	SYN,
7423458901SLorenz Bauer 	SYN_COOKIE,
7523458901SLorenz Bauer 	ESTABLISHED,
7623458901SLorenz Bauer } verdict_t;
7723458901SLorenz Bauer 
7823458901SLorenz Bauer typedef struct {
7923458901SLorenz Bauer 	uint16_t src, dst;
8023458901SLorenz Bauer } flow_ports_t;
8123458901SLorenz Bauer 
8223458901SLorenz Bauer _Static_assert(
8323458901SLorenz Bauer 	sizeof(flow_ports_t) !=
8423458901SLorenz Bauer 		offsetofend(struct bpf_sock_tuple, ipv4.dport) -
8523458901SLorenz Bauer 			offsetof(struct bpf_sock_tuple, ipv4.sport) - 1,
8623458901SLorenz Bauer 	"flow_ports_t must match sport and dport in struct bpf_sock_tuple");
8723458901SLorenz Bauer _Static_assert(
8823458901SLorenz Bauer 	sizeof(flow_ports_t) !=
8923458901SLorenz Bauer 		offsetofend(struct bpf_sock_tuple, ipv6.dport) -
9023458901SLorenz Bauer 			offsetof(struct bpf_sock_tuple, ipv6.sport) - 1,
9123458901SLorenz Bauer 	"flow_ports_t must match sport and dport in struct bpf_sock_tuple");
9223458901SLorenz Bauer 
9323458901SLorenz Bauer typedef int ret_t;
9423458901SLorenz Bauer 
9523458901SLorenz Bauer /* This is a bit of a hack. We need a return value which allows us to
9623458901SLorenz Bauer  * indicate that the regular flow of the program should continue,
9723458901SLorenz Bauer  * while allowing functions to use XDP_PASS and XDP_DROP, etc.
9823458901SLorenz Bauer  */
9923458901SLorenz Bauer static const ret_t CONTINUE_PROCESSING = -1;
10023458901SLorenz Bauer 
10123458901SLorenz Bauer /* Convenience macro to call functions which return ret_t.
10223458901SLorenz Bauer  */
10323458901SLorenz Bauer #define MAYBE_RETURN(x)                           \
10423458901SLorenz Bauer 	do {                                      \
10523458901SLorenz Bauer 		ret_t __ret = x;                  \
10623458901SLorenz Bauer 		if (__ret != CONTINUE_PROCESSING) \
10723458901SLorenz Bauer 			return __ret;             \
10823458901SLorenz Bauer 	} while (0)
10923458901SLorenz Bauer 
11023458901SLorenz Bauer /* Linux packet pointers are either aligned to NET_IP_ALIGN (aka 2 bytes),
11123458901SLorenz Bauer  * or not aligned if the arch supports efficient unaligned access.
11223458901SLorenz Bauer  *
11323458901SLorenz Bauer  * Since the verifier ensures that eBPF packet accesses follow these rules,
11423458901SLorenz Bauer  * we can tell LLVM to emit code as if we always had a larger alignment.
11523458901SLorenz Bauer  * It will yell at us if we end up on a platform where this is not valid.
11623458901SLorenz Bauer  */
11723458901SLorenz Bauer typedef uint8_t *net_ptr __attribute__((align_value(8)));
11823458901SLorenz Bauer 
11923458901SLorenz Bauer typedef struct buf {
12023458901SLorenz Bauer 	struct __sk_buff *skb;
12123458901SLorenz Bauer 	net_ptr head;
12223458901SLorenz Bauer 	/* NB: tail musn't have alignment other than 1, otherwise
12323458901SLorenz Bauer 	* LLVM will go and eliminate code, e.g. when checking packet lengths.
12423458901SLorenz Bauer 	*/
12523458901SLorenz Bauer 	uint8_t *const tail;
12623458901SLorenz Bauer } buf_t;
12723458901SLorenz Bauer 
12823458901SLorenz Bauer static size_t buf_off(const buf_t *buf)
12923458901SLorenz Bauer {
13023458901SLorenz Bauer 	/* Clang seems to optimize constructs like
13123458901SLorenz Bauer 	 *    a - b + c
13223458901SLorenz Bauer 	 * if c is known:
13323458901SLorenz Bauer 	 *    r? = c
13423458901SLorenz Bauer 	 *    r? -= b
13523458901SLorenz Bauer 	 *    r? += a
13623458901SLorenz Bauer 	 *
13723458901SLorenz Bauer 	 * This is a problem if a and b are packet pointers,
13823458901SLorenz Bauer 	 * since the verifier allows subtracting two pointers to
13923458901SLorenz Bauer 	 * get a scalar, but not a scalar and a pointer.
14023458901SLorenz Bauer 	 *
14123458901SLorenz Bauer 	 * Use inline asm to break this optimization.
14223458901SLorenz Bauer 	 */
14323458901SLorenz Bauer 	size_t off = (size_t)buf->head;
14423458901SLorenz Bauer 	asm("%0 -= %1" : "+r"(off) : "r"(buf->skb->data));
14523458901SLorenz Bauer 	return off;
14623458901SLorenz Bauer }
14723458901SLorenz Bauer 
14823458901SLorenz Bauer static bool buf_copy(buf_t *buf, void *dst, size_t len)
14923458901SLorenz Bauer {
15023458901SLorenz Bauer 	if (bpf_skb_load_bytes(buf->skb, buf_off(buf), dst, len)) {
15123458901SLorenz Bauer 		return false;
15223458901SLorenz Bauer 	}
15323458901SLorenz Bauer 
15423458901SLorenz Bauer 	buf->head += len;
15523458901SLorenz Bauer 	return true;
15623458901SLorenz Bauer }
15723458901SLorenz Bauer 
15823458901SLorenz Bauer static bool buf_skip(buf_t *buf, const size_t len)
15923458901SLorenz Bauer {
16023458901SLorenz Bauer 	/* Check whether off + len is valid in the non-linear part. */
16123458901SLorenz Bauer 	if (buf_off(buf) + len > buf->skb->len) {
16223458901SLorenz Bauer 		return false;
16323458901SLorenz Bauer 	}
16423458901SLorenz Bauer 
16523458901SLorenz Bauer 	buf->head += len;
16623458901SLorenz Bauer 	return true;
16723458901SLorenz Bauer }
16823458901SLorenz Bauer 
16923458901SLorenz Bauer /* Returns a pointer to the start of buf, or NULL if len is
17023458901SLorenz Bauer  * larger than the remaining data. Consumes len bytes on a successful
17123458901SLorenz Bauer  * call.
17223458901SLorenz Bauer  *
17323458901SLorenz Bauer  * If scratch is not NULL, the function will attempt to load non-linear
17423458901SLorenz Bauer  * data via bpf_skb_load_bytes. On success, scratch is returned.
17523458901SLorenz Bauer  */
17623458901SLorenz Bauer static void *buf_assign(buf_t *buf, const size_t len, void *scratch)
17723458901SLorenz Bauer {
17823458901SLorenz Bauer 	if (buf->head + len > buf->tail) {
17923458901SLorenz Bauer 		if (scratch == NULL) {
18023458901SLorenz Bauer 			return NULL;
18123458901SLorenz Bauer 		}
18223458901SLorenz Bauer 
18323458901SLorenz Bauer 		return buf_copy(buf, scratch, len) ? scratch : NULL;
18423458901SLorenz Bauer 	}
18523458901SLorenz Bauer 
18623458901SLorenz Bauer 	void *ptr = buf->head;
18723458901SLorenz Bauer 	buf->head += len;
18823458901SLorenz Bauer 	return ptr;
18923458901SLorenz Bauer }
19023458901SLorenz Bauer 
19123458901SLorenz Bauer static bool pkt_skip_ipv4_options(buf_t *buf, const struct iphdr *ipv4)
19223458901SLorenz Bauer {
19323458901SLorenz Bauer 	if (ipv4->ihl <= 5) {
19423458901SLorenz Bauer 		return true;
19523458901SLorenz Bauer 	}
19623458901SLorenz Bauer 
19723458901SLorenz Bauer 	return buf_skip(buf, (ipv4->ihl - 5) * 4);
19823458901SLorenz Bauer }
19923458901SLorenz Bauer 
20023458901SLorenz Bauer static bool ipv4_is_fragment(const struct iphdr *ip)
20123458901SLorenz Bauer {
20223458901SLorenz Bauer 	uint16_t frag_off = ip->frag_off & bpf_htons(IP_OFFSET_MASK);
20323458901SLorenz Bauer 	return (ip->frag_off & bpf_htons(IP_MF)) != 0 || frag_off > 0;
20423458901SLorenz Bauer }
20523458901SLorenz Bauer 
20623458901SLorenz Bauer static struct iphdr *pkt_parse_ipv4(buf_t *pkt, struct iphdr *scratch)
20723458901SLorenz Bauer {
20823458901SLorenz Bauer 	struct iphdr *ipv4 = buf_assign(pkt, sizeof(*ipv4), scratch);
20923458901SLorenz Bauer 	if (ipv4 == NULL) {
21023458901SLorenz Bauer 		return NULL;
21123458901SLorenz Bauer 	}
21223458901SLorenz Bauer 
21323458901SLorenz Bauer 	if (ipv4->ihl < 5) {
21423458901SLorenz Bauer 		return NULL;
21523458901SLorenz Bauer 	}
21623458901SLorenz Bauer 
21723458901SLorenz Bauer 	if (!pkt_skip_ipv4_options(pkt, ipv4)) {
21823458901SLorenz Bauer 		return NULL;
21923458901SLorenz Bauer 	}
22023458901SLorenz Bauer 
22123458901SLorenz Bauer 	return ipv4;
22223458901SLorenz Bauer }
22323458901SLorenz Bauer 
22423458901SLorenz Bauer /* Parse the L4 ports from a packet, assuming a layout like TCP or UDP. */
22523458901SLorenz Bauer static bool pkt_parse_icmp_l4_ports(buf_t *pkt, flow_ports_t *ports)
22623458901SLorenz Bauer {
22723458901SLorenz Bauer 	if (!buf_copy(pkt, ports, sizeof(*ports))) {
22823458901SLorenz Bauer 		return false;
22923458901SLorenz Bauer 	}
23023458901SLorenz Bauer 
23123458901SLorenz Bauer 	/* Ports in the L4 headers are reversed, since we are parsing an ICMP
23223458901SLorenz Bauer 	 * payload which is going towards the eyeball.
23323458901SLorenz Bauer 	 */
23423458901SLorenz Bauer 	uint16_t dst = ports->src;
23523458901SLorenz Bauer 	ports->src = ports->dst;
23623458901SLorenz Bauer 	ports->dst = dst;
23723458901SLorenz Bauer 	return true;
23823458901SLorenz Bauer }
23923458901SLorenz Bauer 
24023458901SLorenz Bauer static uint16_t pkt_checksum_fold(uint32_t csum)
24123458901SLorenz Bauer {
24223458901SLorenz Bauer 	/* The highest reasonable value for an IPv4 header
24323458901SLorenz Bauer 	 * checksum requires two folds, so we just do that always.
24423458901SLorenz Bauer 	 */
24523458901SLorenz Bauer 	csum = (csum & 0xffff) + (csum >> 16);
24623458901SLorenz Bauer 	csum = (csum & 0xffff) + (csum >> 16);
24723458901SLorenz Bauer 	return (uint16_t)~csum;
24823458901SLorenz Bauer }
24923458901SLorenz Bauer 
25023458901SLorenz Bauer static void pkt_ipv4_checksum(struct iphdr *iph)
25123458901SLorenz Bauer {
25223458901SLorenz Bauer 	iph->check = 0;
25323458901SLorenz Bauer 
25423458901SLorenz Bauer 	/* An IP header without options is 20 bytes. Two of those
25523458901SLorenz Bauer 	 * are the checksum, which we always set to zero. Hence,
25623458901SLorenz Bauer 	 * the maximum accumulated value is 18 / 2 * 0xffff = 0x8fff7,
25723458901SLorenz Bauer 	 * which fits in 32 bit.
25823458901SLorenz Bauer 	 */
25923458901SLorenz Bauer 	_Static_assert(sizeof(struct iphdr) == 20, "iphdr must be 20 bytes");
26023458901SLorenz Bauer 	uint32_t acc = 0;
26123458901SLorenz Bauer 	uint16_t *ipw = (uint16_t *)iph;
26223458901SLorenz Bauer 
26323458901SLorenz Bauer #pragma clang loop unroll(full)
26423458901SLorenz Bauer 	for (size_t i = 0; i < sizeof(struct iphdr) / 2; i++) {
26523458901SLorenz Bauer 		acc += ipw[i];
26623458901SLorenz Bauer 	}
26723458901SLorenz Bauer 
26823458901SLorenz Bauer 	iph->check = pkt_checksum_fold(acc);
26923458901SLorenz Bauer }
27023458901SLorenz Bauer 
27123458901SLorenz Bauer static bool pkt_skip_ipv6_extension_headers(buf_t *pkt,
27223458901SLorenz Bauer 					    const struct ipv6hdr *ipv6,
27323458901SLorenz Bauer 					    uint8_t *upper_proto,
27423458901SLorenz Bauer 					    bool *is_fragment)
27523458901SLorenz Bauer {
27623458901SLorenz Bauer 	/* We understand five extension headers.
27723458901SLorenz Bauer 	 * https://tools.ietf.org/html/rfc8200#section-4.1 states that all
27823458901SLorenz Bauer 	 * headers should occur once, except Destination Options, which may
27923458901SLorenz Bauer 	 * occur twice. Hence we give up after 6 headers.
28023458901SLorenz Bauer 	 */
28123458901SLorenz Bauer 	struct {
28223458901SLorenz Bauer 		uint8_t next;
28323458901SLorenz Bauer 		uint8_t len;
28423458901SLorenz Bauer 	} exthdr = {
28523458901SLorenz Bauer 		.next = ipv6->nexthdr,
28623458901SLorenz Bauer 	};
28723458901SLorenz Bauer 	*is_fragment = false;
28823458901SLorenz Bauer 
28923458901SLorenz Bauer #pragma clang loop unroll(full)
29023458901SLorenz Bauer 	for (int i = 0; i < 6; i++) {
29123458901SLorenz Bauer 		switch (exthdr.next) {
29223458901SLorenz Bauer 		case IPPROTO_FRAGMENT:
29323458901SLorenz Bauer 			*is_fragment = true;
29423458901SLorenz Bauer 			/* NB: We don't check that hdrlen == 0 as per spec. */
29523458901SLorenz Bauer 			/* fallthrough; */
29623458901SLorenz Bauer 
29723458901SLorenz Bauer 		case IPPROTO_HOPOPTS:
29823458901SLorenz Bauer 		case IPPROTO_ROUTING:
29923458901SLorenz Bauer 		case IPPROTO_DSTOPTS:
30023458901SLorenz Bauer 		case IPPROTO_MH:
30123458901SLorenz Bauer 			if (!buf_copy(pkt, &exthdr, sizeof(exthdr))) {
30223458901SLorenz Bauer 				return false;
30323458901SLorenz Bauer 			}
30423458901SLorenz Bauer 
30523458901SLorenz Bauer 			/* hdrlen is in 8-octet units, and excludes the first 8 octets. */
30623458901SLorenz Bauer 			if (!buf_skip(pkt,
30723458901SLorenz Bauer 				      (exthdr.len + 1) * 8 - sizeof(exthdr))) {
30823458901SLorenz Bauer 				return false;
30923458901SLorenz Bauer 			}
31023458901SLorenz Bauer 
31123458901SLorenz Bauer 			/* Decode next header */
31223458901SLorenz Bauer 			break;
31323458901SLorenz Bauer 
31423458901SLorenz Bauer 		default:
31523458901SLorenz Bauer 			/* The next header is not one of the known extension
31623458901SLorenz Bauer 			 * headers, treat it as the upper layer header.
31723458901SLorenz Bauer 			 *
31823458901SLorenz Bauer 			 * This handles IPPROTO_NONE.
31923458901SLorenz Bauer 			 *
32023458901SLorenz Bauer 			 * Encapsulating Security Payload (50) and Authentication
32123458901SLorenz Bauer 			 * Header (51) also end up here (and will trigger an
32223458901SLorenz Bauer 			 * unknown proto error later). They have a custom header
32323458901SLorenz Bauer 			 * format and seem too esoteric to care about.
32423458901SLorenz Bauer 			 */
32523458901SLorenz Bauer 			*upper_proto = exthdr.next;
32623458901SLorenz Bauer 			return true;
32723458901SLorenz Bauer 		}
32823458901SLorenz Bauer 	}
32923458901SLorenz Bauer 
33023458901SLorenz Bauer 	/* We never found an upper layer header. */
33123458901SLorenz Bauer 	return false;
33223458901SLorenz Bauer }
33323458901SLorenz Bauer 
33423458901SLorenz Bauer /* This function has to be inlined, because the verifier otherwise rejects it
33523458901SLorenz Bauer  * due to returning a pointer to the stack. This is technically correct, since
33623458901SLorenz Bauer  * scratch is allocated on the stack. However, this usage should be safe since
33723458901SLorenz Bauer  * it's the callers stack after all.
33823458901SLorenz Bauer  */
33923458901SLorenz Bauer static inline __attribute__((__always_inline__)) struct ipv6hdr *
34023458901SLorenz Bauer pkt_parse_ipv6(buf_t *pkt, struct ipv6hdr *scratch, uint8_t *proto,
34123458901SLorenz Bauer 	       bool *is_fragment)
34223458901SLorenz Bauer {
34323458901SLorenz Bauer 	struct ipv6hdr *ipv6 = buf_assign(pkt, sizeof(*ipv6), scratch);
34423458901SLorenz Bauer 	if (ipv6 == NULL) {
34523458901SLorenz Bauer 		return NULL;
34623458901SLorenz Bauer 	}
34723458901SLorenz Bauer 
34823458901SLorenz Bauer 	if (!pkt_skip_ipv6_extension_headers(pkt, ipv6, proto, is_fragment)) {
34923458901SLorenz Bauer 		return NULL;
35023458901SLorenz Bauer 	}
35123458901SLorenz Bauer 
35223458901SLorenz Bauer 	return ipv6;
35323458901SLorenz Bauer }
35423458901SLorenz Bauer 
35523458901SLorenz Bauer /* Global metrics, per CPU
35623458901SLorenz Bauer  */
35723458901SLorenz Bauer struct bpf_map_def metrics_map SEC("maps") = {
35823458901SLorenz Bauer 	.type = BPF_MAP_TYPE_PERCPU_ARRAY,
35923458901SLorenz Bauer 	.key_size = sizeof(unsigned int),
36023458901SLorenz Bauer 	.value_size = sizeof(metrics_t),
36123458901SLorenz Bauer 	.max_entries = 1,
36223458901SLorenz Bauer };
36323458901SLorenz Bauer 
36423458901SLorenz Bauer static metrics_t *get_global_metrics(void)
36523458901SLorenz Bauer {
36623458901SLorenz Bauer 	uint64_t key = 0;
36723458901SLorenz Bauer 	return bpf_map_lookup_elem(&metrics_map, &key);
36823458901SLorenz Bauer }
36923458901SLorenz Bauer 
37023458901SLorenz Bauer static ret_t accept_locally(struct __sk_buff *skb, encap_headers_t *encap)
37123458901SLorenz Bauer {
37223458901SLorenz Bauer 	const int payload_off =
37323458901SLorenz Bauer 		sizeof(*encap) +
37423458901SLorenz Bauer 		sizeof(struct in_addr) * encap->unigue.hop_count;
37523458901SLorenz Bauer 	int32_t encap_overhead = payload_off - sizeof(struct ethhdr);
37623458901SLorenz Bauer 
37723458901SLorenz Bauer 	// Changing the ethertype if the encapsulated packet is ipv6
37823458901SLorenz Bauer 	if (encap->gue.proto_ctype == IPPROTO_IPV6) {
37923458901SLorenz Bauer 		encap->eth.h_proto = bpf_htons(ETH_P_IPV6);
38023458901SLorenz Bauer 	}
38123458901SLorenz Bauer 
38223458901SLorenz Bauer 	if (bpf_skb_adjust_room(skb, -encap_overhead, BPF_ADJ_ROOM_MAC,
38323458901SLorenz Bauer 				BPF_F_ADJ_ROOM_FIXED_GSO)) {
38423458901SLorenz Bauer 		return TC_ACT_SHOT;
38523458901SLorenz Bauer 	}
38623458901SLorenz Bauer 
38723458901SLorenz Bauer 	return bpf_redirect(skb->ifindex, BPF_F_INGRESS);
38823458901SLorenz Bauer }
38923458901SLorenz Bauer 
39023458901SLorenz Bauer static ret_t forward_with_gre(struct __sk_buff *skb, encap_headers_t *encap,
39123458901SLorenz Bauer 			      struct in_addr *next_hop, metrics_t *metrics)
39223458901SLorenz Bauer {
39323458901SLorenz Bauer 	metrics->forwarded_packets_total_gre++;
39423458901SLorenz Bauer 
39523458901SLorenz Bauer 	const int payload_off =
39623458901SLorenz Bauer 		sizeof(*encap) +
39723458901SLorenz Bauer 		sizeof(struct in_addr) * encap->unigue.hop_count;
39823458901SLorenz Bauer 	int32_t encap_overhead =
39923458901SLorenz Bauer 		payload_off - sizeof(struct ethhdr) - sizeof(struct iphdr);
40023458901SLorenz Bauer 	int32_t delta = sizeof(struct gre_base_hdr) - encap_overhead;
40123458901SLorenz Bauer 	uint16_t proto = ETH_P_IP;
40223458901SLorenz Bauer 
40323458901SLorenz Bauer 	/* Loop protection: the inner packet's TTL is decremented as a safeguard
40423458901SLorenz Bauer 	 * against any forwarding loop. As the only interesting field is the TTL
40523458901SLorenz Bauer 	 * hop limit for IPv6, it is easier to use bpf_skb_load_bytes/bpf_skb_store_bytes
40623458901SLorenz Bauer 	 * as they handle the split packets if needed (no need for the data to be
40723458901SLorenz Bauer 	 * in the linear section).
40823458901SLorenz Bauer 	 */
40923458901SLorenz Bauer 	if (encap->gue.proto_ctype == IPPROTO_IPV6) {
41023458901SLorenz Bauer 		proto = ETH_P_IPV6;
41123458901SLorenz Bauer 		uint8_t ttl;
41223458901SLorenz Bauer 		int rc;
41323458901SLorenz Bauer 
41423458901SLorenz Bauer 		rc = bpf_skb_load_bytes(
41523458901SLorenz Bauer 			skb, payload_off + offsetof(struct ipv6hdr, hop_limit),
41623458901SLorenz Bauer 			&ttl, 1);
41723458901SLorenz Bauer 		if (rc != 0) {
41823458901SLorenz Bauer 			metrics->errors_total_malformed_encapsulation++;
41923458901SLorenz Bauer 			return TC_ACT_SHOT;
42023458901SLorenz Bauer 		}
42123458901SLorenz Bauer 
42223458901SLorenz Bauer 		if (ttl == 0) {
42323458901SLorenz Bauer 			metrics->errors_total_redirect_loop++;
42423458901SLorenz Bauer 			return TC_ACT_SHOT;
42523458901SLorenz Bauer 		}
42623458901SLorenz Bauer 
42723458901SLorenz Bauer 		ttl--;
42823458901SLorenz Bauer 		rc = bpf_skb_store_bytes(
42923458901SLorenz Bauer 			skb, payload_off + offsetof(struct ipv6hdr, hop_limit),
43023458901SLorenz Bauer 			&ttl, 1, 0);
43123458901SLorenz Bauer 		if (rc != 0) {
43223458901SLorenz Bauer 			metrics->errors_total_malformed_encapsulation++;
43323458901SLorenz Bauer 			return TC_ACT_SHOT;
43423458901SLorenz Bauer 		}
43523458901SLorenz Bauer 	} else {
43623458901SLorenz Bauer 		uint8_t ttl;
43723458901SLorenz Bauer 		int rc;
43823458901SLorenz Bauer 
43923458901SLorenz Bauer 		rc = bpf_skb_load_bytes(
44023458901SLorenz Bauer 			skb, payload_off + offsetof(struct iphdr, ttl), &ttl,
44123458901SLorenz Bauer 			1);
44223458901SLorenz Bauer 		if (rc != 0) {
44323458901SLorenz Bauer 			metrics->errors_total_malformed_encapsulation++;
44423458901SLorenz Bauer 			return TC_ACT_SHOT;
44523458901SLorenz Bauer 		}
44623458901SLorenz Bauer 
44723458901SLorenz Bauer 		if (ttl == 0) {
44823458901SLorenz Bauer 			metrics->errors_total_redirect_loop++;
44923458901SLorenz Bauer 			return TC_ACT_SHOT;
45023458901SLorenz Bauer 		}
45123458901SLorenz Bauer 
45223458901SLorenz Bauer 		/* IPv4 also has a checksum to patch. While the TTL is only one byte,
45323458901SLorenz Bauer 		 * this function only works for 2 and 4 bytes arguments (the result is
45423458901SLorenz Bauer 		 * the same).
45523458901SLorenz Bauer 		 */
45623458901SLorenz Bauer 		rc = bpf_l3_csum_replace(
45723458901SLorenz Bauer 			skb, payload_off + offsetof(struct iphdr, check), ttl,
45823458901SLorenz Bauer 			ttl - 1, 2);
45923458901SLorenz Bauer 		if (rc != 0) {
46023458901SLorenz Bauer 			metrics->errors_total_malformed_encapsulation++;
46123458901SLorenz Bauer 			return TC_ACT_SHOT;
46223458901SLorenz Bauer 		}
46323458901SLorenz Bauer 
46423458901SLorenz Bauer 		ttl--;
46523458901SLorenz Bauer 		rc = bpf_skb_store_bytes(
46623458901SLorenz Bauer 			skb, payload_off + offsetof(struct iphdr, ttl), &ttl, 1,
46723458901SLorenz Bauer 			0);
46823458901SLorenz Bauer 		if (rc != 0) {
46923458901SLorenz Bauer 			metrics->errors_total_malformed_encapsulation++;
47023458901SLorenz Bauer 			return TC_ACT_SHOT;
47123458901SLorenz Bauer 		}
47223458901SLorenz Bauer 	}
47323458901SLorenz Bauer 
47423458901SLorenz Bauer 	if (bpf_skb_adjust_room(skb, delta, BPF_ADJ_ROOM_NET,
47523458901SLorenz Bauer 				BPF_F_ADJ_ROOM_FIXED_GSO)) {
47623458901SLorenz Bauer 		metrics->errors_total_encap_adjust_failed++;
47723458901SLorenz Bauer 		return TC_ACT_SHOT;
47823458901SLorenz Bauer 	}
47923458901SLorenz Bauer 
48023458901SLorenz Bauer 	if (bpf_skb_pull_data(skb, sizeof(encap_gre_t))) {
48123458901SLorenz Bauer 		metrics->errors_total_encap_buffer_too_small++;
48223458901SLorenz Bauer 		return TC_ACT_SHOT;
48323458901SLorenz Bauer 	}
48423458901SLorenz Bauer 
48523458901SLorenz Bauer 	buf_t pkt = {
48623458901SLorenz Bauer 		.skb = skb,
48723458901SLorenz Bauer 		.head = (uint8_t *)(long)skb->data,
48823458901SLorenz Bauer 		.tail = (uint8_t *)(long)skb->data_end,
48923458901SLorenz Bauer 	};
49023458901SLorenz Bauer 
49123458901SLorenz Bauer 	encap_gre_t *encap_gre = buf_assign(&pkt, sizeof(encap_gre_t), NULL);
49223458901SLorenz Bauer 	if (encap_gre == NULL) {
49323458901SLorenz Bauer 		metrics->errors_total_encap_buffer_too_small++;
49423458901SLorenz Bauer 		return TC_ACT_SHOT;
49523458901SLorenz Bauer 	}
49623458901SLorenz Bauer 
49723458901SLorenz Bauer 	encap_gre->ip.protocol = IPPROTO_GRE;
49823458901SLorenz Bauer 	encap_gre->ip.daddr = next_hop->s_addr;
49923458901SLorenz Bauer 	encap_gre->ip.saddr = ENCAPSULATION_IP;
50023458901SLorenz Bauer 	encap_gre->ip.tot_len =
50123458901SLorenz Bauer 		bpf_htons(bpf_ntohs(encap_gre->ip.tot_len) + delta);
50223458901SLorenz Bauer 	encap_gre->gre.flags = 0;
50323458901SLorenz Bauer 	encap_gre->gre.protocol = bpf_htons(proto);
50423458901SLorenz Bauer 	pkt_ipv4_checksum((void *)&encap_gre->ip);
50523458901SLorenz Bauer 
50623458901SLorenz Bauer 	return bpf_redirect(skb->ifindex, 0);
50723458901SLorenz Bauer }
50823458901SLorenz Bauer 
50923458901SLorenz Bauer static ret_t forward_to_next_hop(struct __sk_buff *skb, encap_headers_t *encap,
51023458901SLorenz Bauer 				 struct in_addr *next_hop, metrics_t *metrics)
51123458901SLorenz Bauer {
51223458901SLorenz Bauer 	/* swap L2 addresses */
51323458901SLorenz Bauer 	/* This assumes that packets are received from a router.
51423458901SLorenz Bauer 	 * So just swapping the MAC addresses here will make the packet go back to
51523458901SLorenz Bauer 	 * the router, which will send it to the appropriate machine.
51623458901SLorenz Bauer 	 */
51723458901SLorenz Bauer 	unsigned char temp[ETH_ALEN];
51823458901SLorenz Bauer 	memcpy(temp, encap->eth.h_dest, sizeof(temp));
51923458901SLorenz Bauer 	memcpy(encap->eth.h_dest, encap->eth.h_source,
52023458901SLorenz Bauer 	       sizeof(encap->eth.h_dest));
52123458901SLorenz Bauer 	memcpy(encap->eth.h_source, temp, sizeof(encap->eth.h_source));
52223458901SLorenz Bauer 
52323458901SLorenz Bauer 	if (encap->unigue.next_hop == encap->unigue.hop_count - 1 &&
52423458901SLorenz Bauer 	    encap->unigue.last_hop_gre) {
52523458901SLorenz Bauer 		return forward_with_gre(skb, encap, next_hop, metrics);
52623458901SLorenz Bauer 	}
52723458901SLorenz Bauer 
52823458901SLorenz Bauer 	metrics->forwarded_packets_total_gue++;
52923458901SLorenz Bauer 	uint32_t old_saddr = encap->ip.saddr;
53023458901SLorenz Bauer 	encap->ip.saddr = encap->ip.daddr;
53123458901SLorenz Bauer 	encap->ip.daddr = next_hop->s_addr;
53223458901SLorenz Bauer 	if (encap->unigue.next_hop < encap->unigue.hop_count) {
53323458901SLorenz Bauer 		encap->unigue.next_hop++;
53423458901SLorenz Bauer 	}
53523458901SLorenz Bauer 
53623458901SLorenz Bauer 	/* Remove ip->saddr, add next_hop->s_addr */
53723458901SLorenz Bauer 	const uint64_t off = offsetof(typeof(*encap), ip.check);
53823458901SLorenz Bauer 	int ret = bpf_l3_csum_replace(skb, off, old_saddr, next_hop->s_addr, 4);
53923458901SLorenz Bauer 	if (ret < 0) {
54023458901SLorenz Bauer 		return TC_ACT_SHOT;
54123458901SLorenz Bauer 	}
54223458901SLorenz Bauer 
54323458901SLorenz Bauer 	return bpf_redirect(skb->ifindex, 0);
54423458901SLorenz Bauer }
54523458901SLorenz Bauer 
54623458901SLorenz Bauer static ret_t skip_next_hops(buf_t *pkt, int n)
54723458901SLorenz Bauer {
54823458901SLorenz Bauer 	switch (n) {
54923458901SLorenz Bauer 	case 1:
55023458901SLorenz Bauer 		if (!buf_skip(pkt, sizeof(struct in_addr)))
55123458901SLorenz Bauer 			return TC_ACT_SHOT;
55223458901SLorenz Bauer 	case 0:
55323458901SLorenz Bauer 		return CONTINUE_PROCESSING;
55423458901SLorenz Bauer 
55523458901SLorenz Bauer 	default:
55623458901SLorenz Bauer 		return TC_ACT_SHOT;
55723458901SLorenz Bauer 	}
55823458901SLorenz Bauer }
55923458901SLorenz Bauer 
56023458901SLorenz Bauer /* Get the next hop from the GLB header.
56123458901SLorenz Bauer  *
56223458901SLorenz Bauer  * Sets next_hop->s_addr to 0 if there are no more hops left.
56323458901SLorenz Bauer  * pkt is positioned just after the variable length GLB header
56423458901SLorenz Bauer  * iff the call is successful.
56523458901SLorenz Bauer  */
56623458901SLorenz Bauer static ret_t get_next_hop(buf_t *pkt, encap_headers_t *encap,
56723458901SLorenz Bauer 			  struct in_addr *next_hop)
56823458901SLorenz Bauer {
56923458901SLorenz Bauer 	if (encap->unigue.next_hop > encap->unigue.hop_count) {
57023458901SLorenz Bauer 		return TC_ACT_SHOT;
57123458901SLorenz Bauer 	}
57223458901SLorenz Bauer 
57323458901SLorenz Bauer 	/* Skip "used" next hops. */
57423458901SLorenz Bauer 	MAYBE_RETURN(skip_next_hops(pkt, encap->unigue.next_hop));
57523458901SLorenz Bauer 
57623458901SLorenz Bauer 	if (encap->unigue.next_hop == encap->unigue.hop_count) {
57723458901SLorenz Bauer 		/* No more next hops, we are at the end of the GLB header. */
57823458901SLorenz Bauer 		next_hop->s_addr = 0;
57923458901SLorenz Bauer 		return CONTINUE_PROCESSING;
58023458901SLorenz Bauer 	}
58123458901SLorenz Bauer 
58223458901SLorenz Bauer 	if (!buf_copy(pkt, next_hop, sizeof(*next_hop))) {
58323458901SLorenz Bauer 		return TC_ACT_SHOT;
58423458901SLorenz Bauer 	}
58523458901SLorenz Bauer 
58623458901SLorenz Bauer 	/* Skip the remainig next hops (may be zero). */
58723458901SLorenz Bauer 	return skip_next_hops(pkt, encap->unigue.hop_count -
58823458901SLorenz Bauer 					   encap->unigue.next_hop - 1);
58923458901SLorenz Bauer }
59023458901SLorenz Bauer 
59123458901SLorenz Bauer /* Fill a bpf_sock_tuple to be used with the socket lookup functions.
59223458901SLorenz Bauer  * This is a kludge that let's us work around verifier limitations:
59323458901SLorenz Bauer  *
59423458901SLorenz Bauer  *    fill_tuple(&t, foo, sizeof(struct iphdr), 123, 321)
59523458901SLorenz Bauer  *
59623458901SLorenz Bauer  * clang will substitue a costant for sizeof, which allows the verifier
59723458901SLorenz Bauer  * to track it's value. Based on this, it can figure out the constant
59823458901SLorenz Bauer  * return value, and calling code works while still being "generic" to
59923458901SLorenz Bauer  * IPv4 and IPv6.
60023458901SLorenz Bauer  */
60123458901SLorenz Bauer static uint64_t fill_tuple(struct bpf_sock_tuple *tuple, void *iph,
60223458901SLorenz Bauer 			   uint64_t iphlen, uint16_t sport, uint16_t dport)
60323458901SLorenz Bauer {
60423458901SLorenz Bauer 	switch (iphlen) {
60523458901SLorenz Bauer 	case sizeof(struct iphdr): {
60623458901SLorenz Bauer 		struct iphdr *ipv4 = (struct iphdr *)iph;
60723458901SLorenz Bauer 		tuple->ipv4.daddr = ipv4->daddr;
60823458901SLorenz Bauer 		tuple->ipv4.saddr = ipv4->saddr;
60923458901SLorenz Bauer 		tuple->ipv4.sport = sport;
61023458901SLorenz Bauer 		tuple->ipv4.dport = dport;
61123458901SLorenz Bauer 		return sizeof(tuple->ipv4);
61223458901SLorenz Bauer 	}
61323458901SLorenz Bauer 
61423458901SLorenz Bauer 	case sizeof(struct ipv6hdr): {
61523458901SLorenz Bauer 		struct ipv6hdr *ipv6 = (struct ipv6hdr *)iph;
61623458901SLorenz Bauer 		memcpy(&tuple->ipv6.daddr, &ipv6->daddr,
61723458901SLorenz Bauer 		       sizeof(tuple->ipv6.daddr));
61823458901SLorenz Bauer 		memcpy(&tuple->ipv6.saddr, &ipv6->saddr,
61923458901SLorenz Bauer 		       sizeof(tuple->ipv6.saddr));
62023458901SLorenz Bauer 		tuple->ipv6.sport = sport;
62123458901SLorenz Bauer 		tuple->ipv6.dport = dport;
62223458901SLorenz Bauer 		return sizeof(tuple->ipv6);
62323458901SLorenz Bauer 	}
62423458901SLorenz Bauer 
62523458901SLorenz Bauer 	default:
62623458901SLorenz Bauer 		return 0;
62723458901SLorenz Bauer 	}
62823458901SLorenz Bauer }
62923458901SLorenz Bauer 
63023458901SLorenz Bauer static verdict_t classify_tcp(struct __sk_buff *skb,
63123458901SLorenz Bauer 			      struct bpf_sock_tuple *tuple, uint64_t tuplen,
63223458901SLorenz Bauer 			      void *iph, struct tcphdr *tcp)
63323458901SLorenz Bauer {
63423458901SLorenz Bauer 	struct bpf_sock *sk =
63523458901SLorenz Bauer 		bpf_skc_lookup_tcp(skb, tuple, tuplen, BPF_F_CURRENT_NETNS, 0);
63623458901SLorenz Bauer 	if (sk == NULL) {
63723458901SLorenz Bauer 		return UNKNOWN;
63823458901SLorenz Bauer 	}
63923458901SLorenz Bauer 
64023458901SLorenz Bauer 	if (sk->state != BPF_TCP_LISTEN) {
64123458901SLorenz Bauer 		bpf_sk_release(sk);
64223458901SLorenz Bauer 		return ESTABLISHED;
64323458901SLorenz Bauer 	}
64423458901SLorenz Bauer 
64523458901SLorenz Bauer 	if (iph != NULL && tcp != NULL) {
64623458901SLorenz Bauer 		/* Kludge: we've run out of arguments, but need the length of the ip header. */
64723458901SLorenz Bauer 		uint64_t iphlen = sizeof(struct iphdr);
64823458901SLorenz Bauer 		if (tuplen == sizeof(tuple->ipv6)) {
64923458901SLorenz Bauer 			iphlen = sizeof(struct ipv6hdr);
65023458901SLorenz Bauer 		}
65123458901SLorenz Bauer 
65223458901SLorenz Bauer 		if (bpf_tcp_check_syncookie(sk, iph, iphlen, tcp,
65323458901SLorenz Bauer 					    sizeof(*tcp)) == 0) {
65423458901SLorenz Bauer 			bpf_sk_release(sk);
65523458901SLorenz Bauer 			return SYN_COOKIE;
65623458901SLorenz Bauer 		}
65723458901SLorenz Bauer 	}
65823458901SLorenz Bauer 
65923458901SLorenz Bauer 	bpf_sk_release(sk);
66023458901SLorenz Bauer 	return UNKNOWN;
66123458901SLorenz Bauer }
66223458901SLorenz Bauer 
66323458901SLorenz Bauer static verdict_t classify_udp(struct __sk_buff *skb,
66423458901SLorenz Bauer 			      struct bpf_sock_tuple *tuple, uint64_t tuplen)
66523458901SLorenz Bauer {
66623458901SLorenz Bauer 	struct bpf_sock *sk =
66723458901SLorenz Bauer 		bpf_sk_lookup_udp(skb, tuple, tuplen, BPF_F_CURRENT_NETNS, 0);
66823458901SLorenz Bauer 	if (sk == NULL) {
66923458901SLorenz Bauer 		return UNKNOWN;
67023458901SLorenz Bauer 	}
67123458901SLorenz Bauer 
67223458901SLorenz Bauer 	if (sk->state == BPF_TCP_ESTABLISHED) {
67323458901SLorenz Bauer 		bpf_sk_release(sk);
67423458901SLorenz Bauer 		return ESTABLISHED;
67523458901SLorenz Bauer 	}
67623458901SLorenz Bauer 
67723458901SLorenz Bauer 	bpf_sk_release(sk);
67823458901SLorenz Bauer 	return UNKNOWN;
67923458901SLorenz Bauer }
68023458901SLorenz Bauer 
68123458901SLorenz Bauer static verdict_t classify_icmp(struct __sk_buff *skb, uint8_t proto,
68223458901SLorenz Bauer 			       struct bpf_sock_tuple *tuple, uint64_t tuplen,
68323458901SLorenz Bauer 			       metrics_t *metrics)
68423458901SLorenz Bauer {
68523458901SLorenz Bauer 	switch (proto) {
68623458901SLorenz Bauer 	case IPPROTO_TCP:
68723458901SLorenz Bauer 		return classify_tcp(skb, tuple, tuplen, NULL, NULL);
68823458901SLorenz Bauer 
68923458901SLorenz Bauer 	case IPPROTO_UDP:
69023458901SLorenz Bauer 		return classify_udp(skb, tuple, tuplen);
69123458901SLorenz Bauer 
69223458901SLorenz Bauer 	default:
69323458901SLorenz Bauer 		metrics->errors_total_malformed_icmp++;
69423458901SLorenz Bauer 		return INVALID;
69523458901SLorenz Bauer 	}
69623458901SLorenz Bauer }
69723458901SLorenz Bauer 
69823458901SLorenz Bauer static verdict_t process_icmpv4(buf_t *pkt, metrics_t *metrics)
69923458901SLorenz Bauer {
70023458901SLorenz Bauer 	struct icmphdr icmp;
70123458901SLorenz Bauer 	if (!buf_copy(pkt, &icmp, sizeof(icmp))) {
70223458901SLorenz Bauer 		metrics->errors_total_malformed_icmp++;
70323458901SLorenz Bauer 		return INVALID;
70423458901SLorenz Bauer 	}
70523458901SLorenz Bauer 
70623458901SLorenz Bauer 	/* We should never receive encapsulated echo replies. */
70723458901SLorenz Bauer 	if (icmp.type == ICMP_ECHOREPLY) {
70823458901SLorenz Bauer 		metrics->errors_total_icmp_echo_replies++;
70923458901SLorenz Bauer 		return INVALID;
71023458901SLorenz Bauer 	}
71123458901SLorenz Bauer 
71223458901SLorenz Bauer 	if (icmp.type == ICMP_ECHO) {
71323458901SLorenz Bauer 		return ECHO_REQUEST;
71423458901SLorenz Bauer 	}
71523458901SLorenz Bauer 
71623458901SLorenz Bauer 	if (icmp.type != ICMP_DEST_UNREACH || icmp.code != ICMP_FRAG_NEEDED) {
71723458901SLorenz Bauer 		metrics->errors_total_unwanted_icmp++;
71823458901SLorenz Bauer 		return INVALID;
71923458901SLorenz Bauer 	}
72023458901SLorenz Bauer 
72123458901SLorenz Bauer 	struct iphdr _ip4;
72223458901SLorenz Bauer 	const struct iphdr *ipv4 = pkt_parse_ipv4(pkt, &_ip4);
72323458901SLorenz Bauer 	if (ipv4 == NULL) {
72423458901SLorenz Bauer 		metrics->errors_total_malformed_icmp_pkt_too_big++;
72523458901SLorenz Bauer 		return INVALID;
72623458901SLorenz Bauer 	}
72723458901SLorenz Bauer 
72823458901SLorenz Bauer 	/* The source address in the outer IP header is from the entity that
72923458901SLorenz Bauer 	 * originated the ICMP message. Use the original IP header to restore
73023458901SLorenz Bauer 	 * the correct flow tuple.
73123458901SLorenz Bauer 	 */
73223458901SLorenz Bauer 	struct bpf_sock_tuple tuple;
73323458901SLorenz Bauer 	tuple.ipv4.saddr = ipv4->daddr;
73423458901SLorenz Bauer 	tuple.ipv4.daddr = ipv4->saddr;
73523458901SLorenz Bauer 
73623458901SLorenz Bauer 	if (!pkt_parse_icmp_l4_ports(pkt, (flow_ports_t *)&tuple.ipv4.sport)) {
73723458901SLorenz Bauer 		metrics->errors_total_malformed_icmp_pkt_too_big++;
73823458901SLorenz Bauer 		return INVALID;
73923458901SLorenz Bauer 	}
74023458901SLorenz Bauer 
74123458901SLorenz Bauer 	return classify_icmp(pkt->skb, ipv4->protocol, &tuple,
74223458901SLorenz Bauer 			     sizeof(tuple.ipv4), metrics);
74323458901SLorenz Bauer }
74423458901SLorenz Bauer 
74523458901SLorenz Bauer static verdict_t process_icmpv6(buf_t *pkt, metrics_t *metrics)
74623458901SLorenz Bauer {
74723458901SLorenz Bauer 	struct icmp6hdr icmp6;
74823458901SLorenz Bauer 	if (!buf_copy(pkt, &icmp6, sizeof(icmp6))) {
74923458901SLorenz Bauer 		metrics->errors_total_malformed_icmp++;
75023458901SLorenz Bauer 		return INVALID;
75123458901SLorenz Bauer 	}
75223458901SLorenz Bauer 
75323458901SLorenz Bauer 	/* We should never receive encapsulated echo replies. */
75423458901SLorenz Bauer 	if (icmp6.icmp6_type == ICMPV6_ECHO_REPLY) {
75523458901SLorenz Bauer 		metrics->errors_total_icmp_echo_replies++;
75623458901SLorenz Bauer 		return INVALID;
75723458901SLorenz Bauer 	}
75823458901SLorenz Bauer 
75923458901SLorenz Bauer 	if (icmp6.icmp6_type == ICMPV6_ECHO_REQUEST) {
76023458901SLorenz Bauer 		return ECHO_REQUEST;
76123458901SLorenz Bauer 	}
76223458901SLorenz Bauer 
76323458901SLorenz Bauer 	if (icmp6.icmp6_type != ICMPV6_PKT_TOOBIG) {
76423458901SLorenz Bauer 		metrics->errors_total_unwanted_icmp++;
76523458901SLorenz Bauer 		return INVALID;
76623458901SLorenz Bauer 	}
76723458901SLorenz Bauer 
76823458901SLorenz Bauer 	bool is_fragment;
76923458901SLorenz Bauer 	uint8_t l4_proto;
77023458901SLorenz Bauer 	struct ipv6hdr _ipv6;
77123458901SLorenz Bauer 	const struct ipv6hdr *ipv6 =
77223458901SLorenz Bauer 		pkt_parse_ipv6(pkt, &_ipv6, &l4_proto, &is_fragment);
77323458901SLorenz Bauer 	if (ipv6 == NULL) {
77423458901SLorenz Bauer 		metrics->errors_total_malformed_icmp_pkt_too_big++;
77523458901SLorenz Bauer 		return INVALID;
77623458901SLorenz Bauer 	}
77723458901SLorenz Bauer 
77823458901SLorenz Bauer 	if (is_fragment) {
77923458901SLorenz Bauer 		metrics->errors_total_fragmented_ip++;
78023458901SLorenz Bauer 		return INVALID;
78123458901SLorenz Bauer 	}
78223458901SLorenz Bauer 
78323458901SLorenz Bauer 	/* Swap source and dest addresses. */
78423458901SLorenz Bauer 	struct bpf_sock_tuple tuple;
78523458901SLorenz Bauer 	memcpy(&tuple.ipv6.saddr, &ipv6->daddr, sizeof(tuple.ipv6.saddr));
78623458901SLorenz Bauer 	memcpy(&tuple.ipv6.daddr, &ipv6->saddr, sizeof(tuple.ipv6.daddr));
78723458901SLorenz Bauer 
78823458901SLorenz Bauer 	if (!pkt_parse_icmp_l4_ports(pkt, (flow_ports_t *)&tuple.ipv6.sport)) {
78923458901SLorenz Bauer 		metrics->errors_total_malformed_icmp_pkt_too_big++;
79023458901SLorenz Bauer 		return INVALID;
79123458901SLorenz Bauer 	}
79223458901SLorenz Bauer 
79323458901SLorenz Bauer 	return classify_icmp(pkt->skb, l4_proto, &tuple, sizeof(tuple.ipv6),
79423458901SLorenz Bauer 			     metrics);
79523458901SLorenz Bauer }
79623458901SLorenz Bauer 
79723458901SLorenz Bauer static verdict_t process_tcp(buf_t *pkt, void *iph, uint64_t iphlen,
79823458901SLorenz Bauer 			     metrics_t *metrics)
79923458901SLorenz Bauer {
80023458901SLorenz Bauer 	metrics->l4_protocol_packets_total_tcp++;
80123458901SLorenz Bauer 
80223458901SLorenz Bauer 	struct tcphdr _tcp;
80323458901SLorenz Bauer 	struct tcphdr *tcp = buf_assign(pkt, sizeof(_tcp), &_tcp);
80423458901SLorenz Bauer 	if (tcp == NULL) {
80523458901SLorenz Bauer 		metrics->errors_total_malformed_tcp++;
80623458901SLorenz Bauer 		return INVALID;
80723458901SLorenz Bauer 	}
80823458901SLorenz Bauer 
80923458901SLorenz Bauer 	if (tcp->syn) {
81023458901SLorenz Bauer 		return SYN;
81123458901SLorenz Bauer 	}
81223458901SLorenz Bauer 
81323458901SLorenz Bauer 	struct bpf_sock_tuple tuple;
81423458901SLorenz Bauer 	uint64_t tuplen =
81523458901SLorenz Bauer 		fill_tuple(&tuple, iph, iphlen, tcp->source, tcp->dest);
81623458901SLorenz Bauer 	return classify_tcp(pkt->skb, &tuple, tuplen, iph, tcp);
81723458901SLorenz Bauer }
81823458901SLorenz Bauer 
81923458901SLorenz Bauer static verdict_t process_udp(buf_t *pkt, void *iph, uint64_t iphlen,
82023458901SLorenz Bauer 			     metrics_t *metrics)
82123458901SLorenz Bauer {
82223458901SLorenz Bauer 	metrics->l4_protocol_packets_total_udp++;
82323458901SLorenz Bauer 
82423458901SLorenz Bauer 	struct udphdr _udp;
82523458901SLorenz Bauer 	struct udphdr *udph = buf_assign(pkt, sizeof(_udp), &_udp);
82623458901SLorenz Bauer 	if (udph == NULL) {
82723458901SLorenz Bauer 		metrics->errors_total_malformed_udp++;
82823458901SLorenz Bauer 		return INVALID;
82923458901SLorenz Bauer 	}
83023458901SLorenz Bauer 
83123458901SLorenz Bauer 	struct bpf_sock_tuple tuple;
83223458901SLorenz Bauer 	uint64_t tuplen =
83323458901SLorenz Bauer 		fill_tuple(&tuple, iph, iphlen, udph->source, udph->dest);
83423458901SLorenz Bauer 	return classify_udp(pkt->skb, &tuple, tuplen);
83523458901SLorenz Bauer }
83623458901SLorenz Bauer 
83723458901SLorenz Bauer static verdict_t process_ipv4(buf_t *pkt, metrics_t *metrics)
83823458901SLorenz Bauer {
83923458901SLorenz Bauer 	metrics->l3_protocol_packets_total_ipv4++;
84023458901SLorenz Bauer 
84123458901SLorenz Bauer 	struct iphdr _ip4;
84223458901SLorenz Bauer 	struct iphdr *ipv4 = pkt_parse_ipv4(pkt, &_ip4);
84323458901SLorenz Bauer 	if (ipv4 == NULL) {
84423458901SLorenz Bauer 		metrics->errors_total_malformed_ip++;
84523458901SLorenz Bauer 		return INVALID;
84623458901SLorenz Bauer 	}
84723458901SLorenz Bauer 
84823458901SLorenz Bauer 	if (ipv4->version != 4) {
84923458901SLorenz Bauer 		metrics->errors_total_malformed_ip++;
85023458901SLorenz Bauer 		return INVALID;
85123458901SLorenz Bauer 	}
85223458901SLorenz Bauer 
85323458901SLorenz Bauer 	if (ipv4_is_fragment(ipv4)) {
85423458901SLorenz Bauer 		metrics->errors_total_fragmented_ip++;
85523458901SLorenz Bauer 		return INVALID;
85623458901SLorenz Bauer 	}
85723458901SLorenz Bauer 
85823458901SLorenz Bauer 	switch (ipv4->protocol) {
85923458901SLorenz Bauer 	case IPPROTO_ICMP:
86023458901SLorenz Bauer 		return process_icmpv4(pkt, metrics);
86123458901SLorenz Bauer 
86223458901SLorenz Bauer 	case IPPROTO_TCP:
86323458901SLorenz Bauer 		return process_tcp(pkt, ipv4, sizeof(*ipv4), metrics);
86423458901SLorenz Bauer 
86523458901SLorenz Bauer 	case IPPROTO_UDP:
86623458901SLorenz Bauer 		return process_udp(pkt, ipv4, sizeof(*ipv4), metrics);
86723458901SLorenz Bauer 
86823458901SLorenz Bauer 	default:
86923458901SLorenz Bauer 		metrics->errors_total_unknown_l4_proto++;
87023458901SLorenz Bauer 		return INVALID;
87123458901SLorenz Bauer 	}
87223458901SLorenz Bauer }
87323458901SLorenz Bauer 
87423458901SLorenz Bauer static verdict_t process_ipv6(buf_t *pkt, metrics_t *metrics)
87523458901SLorenz Bauer {
87623458901SLorenz Bauer 	metrics->l3_protocol_packets_total_ipv6++;
87723458901SLorenz Bauer 
87823458901SLorenz Bauer 	uint8_t l4_proto;
87923458901SLorenz Bauer 	bool is_fragment;
88023458901SLorenz Bauer 	struct ipv6hdr _ipv6;
88123458901SLorenz Bauer 	struct ipv6hdr *ipv6 =
88223458901SLorenz Bauer 		pkt_parse_ipv6(pkt, &_ipv6, &l4_proto, &is_fragment);
88323458901SLorenz Bauer 	if (ipv6 == NULL) {
88423458901SLorenz Bauer 		metrics->errors_total_malformed_ip++;
88523458901SLorenz Bauer 		return INVALID;
88623458901SLorenz Bauer 	}
88723458901SLorenz Bauer 
88823458901SLorenz Bauer 	if (ipv6->version != 6) {
88923458901SLorenz Bauer 		metrics->errors_total_malformed_ip++;
89023458901SLorenz Bauer 		return INVALID;
89123458901SLorenz Bauer 	}
89223458901SLorenz Bauer 
89323458901SLorenz Bauer 	if (is_fragment) {
89423458901SLorenz Bauer 		metrics->errors_total_fragmented_ip++;
89523458901SLorenz Bauer 		return INVALID;
89623458901SLorenz Bauer 	}
89723458901SLorenz Bauer 
89823458901SLorenz Bauer 	switch (l4_proto) {
89923458901SLorenz Bauer 	case IPPROTO_ICMPV6:
90023458901SLorenz Bauer 		return process_icmpv6(pkt, metrics);
90123458901SLorenz Bauer 
90223458901SLorenz Bauer 	case IPPROTO_TCP:
90323458901SLorenz Bauer 		return process_tcp(pkt, ipv6, sizeof(*ipv6), metrics);
90423458901SLorenz Bauer 
90523458901SLorenz Bauer 	case IPPROTO_UDP:
90623458901SLorenz Bauer 		return process_udp(pkt, ipv6, sizeof(*ipv6), metrics);
90723458901SLorenz Bauer 
90823458901SLorenz Bauer 	default:
90923458901SLorenz Bauer 		metrics->errors_total_unknown_l4_proto++;
91023458901SLorenz Bauer 		return INVALID;
91123458901SLorenz Bauer 	}
91223458901SLorenz Bauer }
91323458901SLorenz Bauer 
91423458901SLorenz Bauer SEC("classifier/cls_redirect")
91523458901SLorenz Bauer int cls_redirect(struct __sk_buff *skb)
91623458901SLorenz Bauer {
91723458901SLorenz Bauer 	metrics_t *metrics = get_global_metrics();
91823458901SLorenz Bauer 	if (metrics == NULL) {
91923458901SLorenz Bauer 		return TC_ACT_SHOT;
92023458901SLorenz Bauer 	}
92123458901SLorenz Bauer 
92223458901SLorenz Bauer 	metrics->processed_packets_total++;
92323458901SLorenz Bauer 
92423458901SLorenz Bauer 	/* Pass bogus packets as long as we're not sure they're
92523458901SLorenz Bauer 	 * destined for us.
92623458901SLorenz Bauer 	 */
92723458901SLorenz Bauer 	if (skb->protocol != bpf_htons(ETH_P_IP)) {
92823458901SLorenz Bauer 		return TC_ACT_OK;
92923458901SLorenz Bauer 	}
93023458901SLorenz Bauer 
93123458901SLorenz Bauer 	encap_headers_t *encap;
93223458901SLorenz Bauer 
93323458901SLorenz Bauer 	/* Make sure that all encapsulation headers are available in
93423458901SLorenz Bauer 	 * the linear portion of the skb. This makes it easy to manipulate them.
93523458901SLorenz Bauer 	 */
93623458901SLorenz Bauer 	if (bpf_skb_pull_data(skb, sizeof(*encap))) {
93723458901SLorenz Bauer 		return TC_ACT_OK;
93823458901SLorenz Bauer 	}
93923458901SLorenz Bauer 
94023458901SLorenz Bauer 	buf_t pkt = {
94123458901SLorenz Bauer 		.skb = skb,
94223458901SLorenz Bauer 		.head = (uint8_t *)(long)skb->data,
94323458901SLorenz Bauer 		.tail = (uint8_t *)(long)skb->data_end,
94423458901SLorenz Bauer 	};
94523458901SLorenz Bauer 
94623458901SLorenz Bauer 	encap = buf_assign(&pkt, sizeof(*encap), NULL);
94723458901SLorenz Bauer 	if (encap == NULL) {
94823458901SLorenz Bauer 		return TC_ACT_OK;
94923458901SLorenz Bauer 	}
95023458901SLorenz Bauer 
95123458901SLorenz Bauer 	if (encap->ip.ihl != 5) {
95223458901SLorenz Bauer 		/* We never have any options. */
95323458901SLorenz Bauer 		return TC_ACT_OK;
95423458901SLorenz Bauer 	}
95523458901SLorenz Bauer 
95623458901SLorenz Bauer 	if (encap->ip.daddr != ENCAPSULATION_IP ||
95723458901SLorenz Bauer 	    encap->ip.protocol != IPPROTO_UDP) {
95823458901SLorenz Bauer 		return TC_ACT_OK;
95923458901SLorenz Bauer 	}
96023458901SLorenz Bauer 
96123458901SLorenz Bauer 	/* TODO Check UDP length? */
96223458901SLorenz Bauer 	if (encap->udp.dest != ENCAPSULATION_PORT) {
96323458901SLorenz Bauer 		return TC_ACT_OK;
96423458901SLorenz Bauer 	}
96523458901SLorenz Bauer 
96623458901SLorenz Bauer 	/* We now know that the packet is destined to us, we can
96723458901SLorenz Bauer 	 * drop bogus ones.
96823458901SLorenz Bauer 	 */
96923458901SLorenz Bauer 	if (ipv4_is_fragment((void *)&encap->ip)) {
97023458901SLorenz Bauer 		metrics->errors_total_fragmented_ip++;
97123458901SLorenz Bauer 		return TC_ACT_SHOT;
97223458901SLorenz Bauer 	}
97323458901SLorenz Bauer 
97423458901SLorenz Bauer 	if (encap->gue.variant != 0) {
97523458901SLorenz Bauer 		metrics->errors_total_malformed_encapsulation++;
97623458901SLorenz Bauer 		return TC_ACT_SHOT;
97723458901SLorenz Bauer 	}
97823458901SLorenz Bauer 
97923458901SLorenz Bauer 	if (encap->gue.control != 0) {
98023458901SLorenz Bauer 		metrics->errors_total_malformed_encapsulation++;
98123458901SLorenz Bauer 		return TC_ACT_SHOT;
98223458901SLorenz Bauer 	}
98323458901SLorenz Bauer 
98423458901SLorenz Bauer 	if (encap->gue.flags != 0) {
98523458901SLorenz Bauer 		metrics->errors_total_malformed_encapsulation++;
98623458901SLorenz Bauer 		return TC_ACT_SHOT;
98723458901SLorenz Bauer 	}
98823458901SLorenz Bauer 
98923458901SLorenz Bauer 	if (encap->gue.hlen !=
99023458901SLorenz Bauer 	    sizeof(encap->unigue) / 4 + encap->unigue.hop_count) {
99123458901SLorenz Bauer 		metrics->errors_total_malformed_encapsulation++;
99223458901SLorenz Bauer 		return TC_ACT_SHOT;
99323458901SLorenz Bauer 	}
99423458901SLorenz Bauer 
99523458901SLorenz Bauer 	if (encap->unigue.version != 0) {
99623458901SLorenz Bauer 		metrics->errors_total_malformed_encapsulation++;
99723458901SLorenz Bauer 		return TC_ACT_SHOT;
99823458901SLorenz Bauer 	}
99923458901SLorenz Bauer 
100023458901SLorenz Bauer 	if (encap->unigue.reserved != 0) {
100123458901SLorenz Bauer 		return TC_ACT_SHOT;
100223458901SLorenz Bauer 	}
100323458901SLorenz Bauer 
100423458901SLorenz Bauer 	struct in_addr next_hop;
100523458901SLorenz Bauer 	MAYBE_RETURN(get_next_hop(&pkt, encap, &next_hop));
100623458901SLorenz Bauer 
100723458901SLorenz Bauer 	if (next_hop.s_addr == 0) {
100823458901SLorenz Bauer 		metrics->accepted_packets_total_last_hop++;
100923458901SLorenz Bauer 		return accept_locally(skb, encap);
101023458901SLorenz Bauer 	}
101123458901SLorenz Bauer 
101223458901SLorenz Bauer 	verdict_t verdict;
101323458901SLorenz Bauer 	switch (encap->gue.proto_ctype) {
101423458901SLorenz Bauer 	case IPPROTO_IPIP:
101523458901SLorenz Bauer 		verdict = process_ipv4(&pkt, metrics);
101623458901SLorenz Bauer 		break;
101723458901SLorenz Bauer 
101823458901SLorenz Bauer 	case IPPROTO_IPV6:
101923458901SLorenz Bauer 		verdict = process_ipv6(&pkt, metrics);
102023458901SLorenz Bauer 		break;
102123458901SLorenz Bauer 
102223458901SLorenz Bauer 	default:
102323458901SLorenz Bauer 		metrics->errors_total_unknown_l3_proto++;
102423458901SLorenz Bauer 		return TC_ACT_SHOT;
102523458901SLorenz Bauer 	}
102623458901SLorenz Bauer 
102723458901SLorenz Bauer 	switch (verdict) {
102823458901SLorenz Bauer 	case INVALID:
102923458901SLorenz Bauer 		/* metrics have already been bumped */
103023458901SLorenz Bauer 		return TC_ACT_SHOT;
103123458901SLorenz Bauer 
103223458901SLorenz Bauer 	case UNKNOWN:
103323458901SLorenz Bauer 		return forward_to_next_hop(skb, encap, &next_hop, metrics);
103423458901SLorenz Bauer 
103523458901SLorenz Bauer 	case ECHO_REQUEST:
103623458901SLorenz Bauer 		metrics->accepted_packets_total_icmp_echo_request++;
103723458901SLorenz Bauer 		break;
103823458901SLorenz Bauer 
103923458901SLorenz Bauer 	case SYN:
104023458901SLorenz Bauer 		if (encap->unigue.forward_syn) {
104123458901SLorenz Bauer 			return forward_to_next_hop(skb, encap, &next_hop,
104223458901SLorenz Bauer 						   metrics);
104323458901SLorenz Bauer 		}
104423458901SLorenz Bauer 
104523458901SLorenz Bauer 		metrics->accepted_packets_total_syn++;
104623458901SLorenz Bauer 		break;
104723458901SLorenz Bauer 
104823458901SLorenz Bauer 	case SYN_COOKIE:
104923458901SLorenz Bauer 		metrics->accepted_packets_total_syn_cookies++;
105023458901SLorenz Bauer 		break;
105123458901SLorenz Bauer 
105223458901SLorenz Bauer 	case ESTABLISHED:
105323458901SLorenz Bauer 		metrics->accepted_packets_total_established++;
105423458901SLorenz Bauer 		break;
105523458901SLorenz Bauer 	}
105623458901SLorenz Bauer 
105723458901SLorenz Bauer 	return accept_locally(skb, encap);
105823458901SLorenz Bauer }
1059