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selftests/bpf: Add tests for new nf_conntrack kfuncs
Introduce selftests for the following kfunc helpers: - bpf_xdp_ct_alloc - bpf_skb_ct_alloc - bpf_ct_insert_entry - bpf_ct_set_timeout - bpf_ct_change_timeout - bpf_ct_set_status - bpf_ct_change_status Signed-off-by: Lorenzo Bianconi <lorenzo@kernel.org> Signed-off-by: Kumar Kartikeya Dwivedi <memxor@gmail.com> Link: https://lore.kernel.org/r/20220721134245.2450-12-memxor@gmail.com Signed-off-by: Alexei Starovoitov <ast@kernel.org>
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@ -39,6 +39,14 @@ void test_bpf_nf_ct(int mode)
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ASSERT_EQ(skel->bss->test_enonet_netns_id, -ENONET, "Test ENONET for bad but valid netns_id");
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ASSERT_EQ(skel->bss->test_enoent_lookup, -ENOENT, "Test ENOENT for failed lookup");
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ASSERT_EQ(skel->bss->test_eafnosupport, -EAFNOSUPPORT, "Test EAFNOSUPPORT for invalid len__tuple");
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ASSERT_EQ(skel->data->test_alloc_entry, 0, "Test for alloc new entry");
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ASSERT_EQ(skel->data->test_insert_entry, 0, "Test for insert new entry");
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ASSERT_EQ(skel->data->test_succ_lookup, 0, "Test for successful lookup");
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/* allow some tolerance for test_delta_timeout value to avoid races. */
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ASSERT_GT(skel->bss->test_delta_timeout, 8, "Test for min ct timeout update");
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ASSERT_LE(skel->bss->test_delta_timeout, 10, "Test for max ct timeout update");
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/* expected status is IPS_SEEN_REPLY */
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ASSERT_EQ(skel->bss->test_status, 2, "Test for ct status update ");
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end:
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test_bpf_nf__destroy(skel);
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}
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@ -8,6 +8,8 @@
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#define EINVAL 22
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#define ENOENT 2
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extern unsigned long CONFIG_HZ __kconfig;
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int test_einval_bpf_tuple = 0;
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int test_einval_reserved = 0;
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int test_einval_netns_id = 0;
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@ -16,6 +18,11 @@ int test_eproto_l4proto = 0;
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int test_enonet_netns_id = 0;
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int test_enoent_lookup = 0;
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int test_eafnosupport = 0;
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int test_alloc_entry = -EINVAL;
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int test_insert_entry = -EAFNOSUPPORT;
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int test_succ_lookup = -ENOENT;
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u32 test_delta_timeout = 0;
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u32 test_status = 0;
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struct nf_conn;
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@ -26,31 +33,44 @@ struct bpf_ct_opts___local {
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u8 reserved[3];
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} __attribute__((preserve_access_index));
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struct nf_conn *bpf_xdp_ct_alloc(struct xdp_md *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32) __ksym;
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struct nf_conn *bpf_xdp_ct_lookup(struct xdp_md *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32) __ksym;
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struct nf_conn *bpf_skb_ct_alloc(struct __sk_buff *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32) __ksym;
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struct nf_conn *bpf_skb_ct_lookup(struct __sk_buff *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32) __ksym;
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struct nf_conn *bpf_ct_insert_entry(struct nf_conn *) __ksym;
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void bpf_ct_release(struct nf_conn *) __ksym;
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void bpf_ct_set_timeout(struct nf_conn *, u32) __ksym;
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int bpf_ct_change_timeout(struct nf_conn *, u32) __ksym;
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int bpf_ct_set_status(struct nf_conn *, u32) __ksym;
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int bpf_ct_change_status(struct nf_conn *, u32) __ksym;
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static __always_inline void
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nf_ct_test(struct nf_conn *(*func)(void *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32),
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nf_ct_test(struct nf_conn *(*lookup_fn)(void *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32),
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struct nf_conn *(*alloc_fn)(void *, struct bpf_sock_tuple *, u32,
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struct bpf_ct_opts___local *, u32),
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void *ctx)
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{
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struct bpf_ct_opts___local opts_def = { .l4proto = IPPROTO_TCP, .netns_id = -1 };
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struct bpf_sock_tuple bpf_tuple;
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struct nf_conn *ct;
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int err;
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__builtin_memset(&bpf_tuple, 0, sizeof(bpf_tuple.ipv4));
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ct = func(ctx, NULL, 0, &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, NULL, 0, &opts_def, sizeof(opts_def));
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if (ct)
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bpf_ct_release(ct);
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else
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test_einval_bpf_tuple = opts_def.error;
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opts_def.reserved[0] = 1;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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opts_def.reserved[0] = 0;
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opts_def.l4proto = IPPROTO_TCP;
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if (ct)
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@ -59,21 +79,24 @@ nf_ct_test(struct nf_conn *(*func)(void *, struct bpf_sock_tuple *, u32,
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test_einval_reserved = opts_def.error;
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opts_def.netns_id = -2;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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opts_def.netns_id = -1;
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if (ct)
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bpf_ct_release(ct);
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else
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test_einval_netns_id = opts_def.error;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def) - 1);
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def) - 1);
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if (ct)
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bpf_ct_release(ct);
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else
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test_einval_len_opts = opts_def.error;
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opts_def.l4proto = IPPROTO_ICMP;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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opts_def.l4proto = IPPROTO_TCP;
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if (ct)
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bpf_ct_release(ct);
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@ -81,37 +104,75 @@ nf_ct_test(struct nf_conn *(*func)(void *, struct bpf_sock_tuple *, u32,
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test_eproto_l4proto = opts_def.error;
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opts_def.netns_id = 0xf00f;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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opts_def.netns_id = -1;
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if (ct)
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bpf_ct_release(ct);
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else
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test_enonet_netns_id = opts_def.error;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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if (ct)
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bpf_ct_release(ct);
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else
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test_enoent_lookup = opts_def.error;
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ct = func(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4) - 1, &opts_def, sizeof(opts_def));
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ct = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4) - 1, &opts_def,
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sizeof(opts_def));
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if (ct)
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bpf_ct_release(ct);
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else
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test_eafnosupport = opts_def.error;
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bpf_tuple.ipv4.saddr = bpf_get_prandom_u32(); /* src IP */
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bpf_tuple.ipv4.daddr = bpf_get_prandom_u32(); /* dst IP */
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bpf_tuple.ipv4.sport = bpf_get_prandom_u32(); /* src port */
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bpf_tuple.ipv4.dport = bpf_get_prandom_u32(); /* dst port */
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ct = alloc_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4), &opts_def,
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sizeof(opts_def));
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if (ct) {
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struct nf_conn *ct_ins;
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bpf_ct_set_timeout(ct, 10000);
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bpf_ct_set_status(ct, IPS_CONFIRMED);
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ct_ins = bpf_ct_insert_entry(ct);
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if (ct_ins) {
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struct nf_conn *ct_lk;
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ct_lk = lookup_fn(ctx, &bpf_tuple, sizeof(bpf_tuple.ipv4),
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&opts_def, sizeof(opts_def));
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if (ct_lk) {
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/* update ct entry timeout */
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bpf_ct_change_timeout(ct_lk, 10000);
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test_delta_timeout = ct_lk->timeout - bpf_jiffies64();
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test_delta_timeout /= CONFIG_HZ;
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test_status = IPS_SEEN_REPLY;
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bpf_ct_change_status(ct_lk, IPS_SEEN_REPLY);
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bpf_ct_release(ct_lk);
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test_succ_lookup = 0;
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}
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bpf_ct_release(ct_ins);
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test_insert_entry = 0;
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}
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test_alloc_entry = 0;
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}
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}
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SEC("xdp")
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int nf_xdp_ct_test(struct xdp_md *ctx)
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{
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nf_ct_test((void *)bpf_xdp_ct_lookup, ctx);
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nf_ct_test((void *)bpf_xdp_ct_lookup, (void *)bpf_xdp_ct_alloc, ctx);
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return 0;
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}
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SEC("tc")
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int nf_skb_ct_test(struct __sk_buff *ctx)
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{
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nf_ct_test((void *)bpf_skb_ct_lookup, ctx);
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nf_ct_test((void *)bpf_skb_ct_lookup, (void *)bpf_skb_ct_alloc, ctx);
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return 0;
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}
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