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Now that start_server_str enforces SO_REUSEADDR, there's no need to keep using start_reusport_server in tc_tunnel, especially since it only uses one server at a time. Replace start_reuseport_server with start_server_str in tc_tunnel test. Signed-off-by: Alexis Lothoré (eBPF Foundation) <alexis.lothore@bootlin.com> Signed-off-by: Martin KaFai Lau <martin.lau@kernel.org> Link: https://patch.msgid.link/20251105-start-server-soreuseaddr-v1-2-1bbd9c1f8d65@bootlin.com
715 lines
18 KiB
C
715 lines
18 KiB
C
// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
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/*
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* End-to-end eBPF tunnel test suite
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* The file tests BPF network tunnels implementation. For each tunnel
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* type, the test validates that:
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* - basic communication can first be established between the two veths
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* - when adding a BPF-based encapsulation on client egress, it now fails
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* to communicate with the server
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* - when adding a kernel-based decapsulation on server ingress, client
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* can now connect
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* - when replacing the kernel-based decapsulation with a BPF-based one,
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* the client can still connect
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*/
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#include <stdio.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <sys/socket.h>
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#include <bpf/libbpf.h>
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#include "test_progs.h"
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#include "network_helpers.h"
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#include "test_tc_tunnel.skel.h"
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#define SERVER_NS "tc-tunnel-server-ns"
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#define CLIENT_NS "tc-tunnel-client-ns"
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#define MAC_ADDR_VETH1 "00:11:22:33:44:55"
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#define IP4_ADDR_VETH1 "192.168.1.1"
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#define IP6_ADDR_VETH1 "fd::1"
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#define MAC_ADDR_VETH2 "66:77:88:99:AA:BB"
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#define IP4_ADDR_VETH2 "192.168.1.2"
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#define IP6_ADDR_VETH2 "fd::2"
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#define TEST_NAME_MAX_LEN 64
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#define PROG_NAME_MAX_LEN 64
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#define TUNNEL_ARGS_MAX_LEN 128
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#define BUFFER_LEN 2000
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#define DEFAULT_TEST_DATA_SIZE 100
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#define GSO_TEST_DATA_SIZE BUFFER_LEN
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#define TIMEOUT_MS 1000
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#define TEST_PORT 8000
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#define UDP_PORT 5555
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#define MPLS_UDP_PORT 6635
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#define FOU_MPLS_PROTO 137
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#define VXLAN_ID 1
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#define VXLAN_PORT 8472
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#define MPLS_TABLE_ENTRIES_COUNT 65536
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static char tx_buffer[BUFFER_LEN], rx_buffer[BUFFER_LEN];
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struct subtest_cfg {
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char *ebpf_tun_type;
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char *iproute_tun_type;
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char *mac_tun_type;
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int ipproto;
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void (*extra_decap_mod_args_cb)(struct subtest_cfg *cfg, char *dst);
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bool tunnel_need_veth_mac;
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bool configure_fou_rx_port;
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char *tmode;
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bool expect_kern_decap_failure;
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bool configure_mpls;
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bool test_gso;
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char *tunnel_client_addr;
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char *tunnel_server_addr;
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char name[TEST_NAME_MAX_LEN];
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char *server_addr;
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int client_egress_prog_fd;
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int server_ingress_prog_fd;
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char extra_decap_mod_args[TUNNEL_ARGS_MAX_LEN];
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int server_fd;
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};
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struct connection {
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int client_fd;
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int server_fd;
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};
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static int build_subtest_name(struct subtest_cfg *cfg, char *dst, size_t size)
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{
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int ret;
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ret = snprintf(dst, size, "%s_%s", cfg->ebpf_tun_type,
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cfg->mac_tun_type);
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return ret < 0 ? ret : 0;
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}
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static int set_subtest_progs(struct subtest_cfg *cfg, struct test_tc_tunnel *skel)
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{
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char prog_name[PROG_NAME_MAX_LEN];
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struct bpf_program *prog;
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int ret;
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ret = snprintf(prog_name, PROG_NAME_MAX_LEN, "__encap_");
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if (ret < 0)
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return ret;
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ret = build_subtest_name(cfg, prog_name + ret, PROG_NAME_MAX_LEN - ret);
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if (ret < 0)
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return ret;
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prog = bpf_object__find_program_by_name(skel->obj, prog_name);
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if (!prog)
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return -1;
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cfg->client_egress_prog_fd = bpf_program__fd(prog);
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cfg->server_ingress_prog_fd = bpf_program__fd(skel->progs.decap_f);
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return 0;
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}
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static void set_subtest_addresses(struct subtest_cfg *cfg)
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{
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if (cfg->ipproto == 6)
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cfg->server_addr = IP6_ADDR_VETH2;
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else
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cfg->server_addr = IP4_ADDR_VETH2;
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/* Some specific tunnel types need specific addressing, it then
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* has been already set in the configuration table. Otherwise,
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* deduce the relevant addressing from the ipproto
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*/
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if (cfg->tunnel_client_addr && cfg->tunnel_server_addr)
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return;
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if (cfg->ipproto == 6) {
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cfg->tunnel_client_addr = IP6_ADDR_VETH1;
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cfg->tunnel_server_addr = IP6_ADDR_VETH2;
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} else {
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cfg->tunnel_client_addr = IP4_ADDR_VETH1;
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cfg->tunnel_server_addr = IP4_ADDR_VETH2;
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}
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}
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static int run_server(struct subtest_cfg *cfg)
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{
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int family = cfg->ipproto == 6 ? AF_INET6 : AF_INET;
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struct nstoken *nstoken;
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struct network_helper_opts opts = {
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.timeout_ms = TIMEOUT_MS
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};
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nstoken = open_netns(SERVER_NS);
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if (!ASSERT_OK_PTR(nstoken, "open server ns"))
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return -1;
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cfg->server_fd = start_server_str(family, SOCK_STREAM, cfg->server_addr,
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TEST_PORT, &opts);
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close_netns(nstoken);
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if (!ASSERT_OK_FD(cfg->server_fd, "start server"))
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return -1;
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return 0;
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}
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static int check_server_rx_data(struct subtest_cfg *cfg,
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struct connection *conn, int len)
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{
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int err;
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memset(rx_buffer, 0, BUFFER_LEN);
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err = recv(conn->server_fd, rx_buffer, len, 0);
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if (!ASSERT_EQ(err, len, "check rx data len"))
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return 1;
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if (!ASSERT_MEMEQ(tx_buffer, rx_buffer, len, "check received data"))
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return 1;
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return 0;
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}
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static struct connection *connect_client_to_server(struct subtest_cfg *cfg)
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{
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struct network_helper_opts opts = {.timeout_ms = 500};
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int family = cfg->ipproto == 6 ? AF_INET6 : AF_INET;
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struct connection *conn = NULL;
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int client_fd, server_fd;
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conn = malloc(sizeof(struct connection));
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if (!conn)
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return conn;
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client_fd = connect_to_addr_str(family, SOCK_STREAM, cfg->server_addr,
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TEST_PORT, &opts);
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if (client_fd < 0) {
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free(conn);
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return NULL;
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}
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server_fd = accept(cfg->server_fd, NULL, NULL);
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if (server_fd < 0) {
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close(client_fd);
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free(conn);
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return NULL;
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}
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conn->server_fd = server_fd;
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conn->client_fd = client_fd;
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return conn;
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}
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static void disconnect_client_from_server(struct subtest_cfg *cfg,
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struct connection *conn)
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{
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close(conn->server_fd);
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close(conn->client_fd);
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free(conn);
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}
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static int send_and_test_data(struct subtest_cfg *cfg, bool must_succeed)
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{
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struct connection *conn;
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int err, res = -1;
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conn = connect_client_to_server(cfg);
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if (!must_succeed && !ASSERT_ERR_PTR(conn, "connection that must fail"))
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goto end;
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else if (!must_succeed)
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return 0;
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if (!ASSERT_OK_PTR(conn, "connection that must succeed"))
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return -1;
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err = send(conn->client_fd, tx_buffer, DEFAULT_TEST_DATA_SIZE, 0);
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if (!ASSERT_EQ(err, DEFAULT_TEST_DATA_SIZE, "send data from client"))
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goto end;
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if (check_server_rx_data(cfg, conn, DEFAULT_TEST_DATA_SIZE))
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goto end;
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if (!cfg->test_gso) {
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res = 0;
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goto end;
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}
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err = send(conn->client_fd, tx_buffer, GSO_TEST_DATA_SIZE, 0);
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if (!ASSERT_EQ(err, GSO_TEST_DATA_SIZE, "send (large) data from client"))
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goto end;
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if (check_server_rx_data(cfg, conn, DEFAULT_TEST_DATA_SIZE))
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goto end;
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res = 0;
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end:
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disconnect_client_from_server(cfg, conn);
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return res;
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}
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static void vxlan_decap_mod_args_cb(struct subtest_cfg *cfg, char *dst)
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{
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snprintf(dst, TUNNEL_ARGS_MAX_LEN, "id %d dstport %d udp6zerocsumrx",
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VXLAN_ID, VXLAN_PORT);
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}
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static void udp_decap_mod_args_cb(struct subtest_cfg *cfg, char *dst)
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{
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bool is_mpls = !strcmp(cfg->mac_tun_type, "mpls");
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snprintf(dst, TUNNEL_ARGS_MAX_LEN,
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"encap fou encap-sport auto encap-dport %d",
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is_mpls ? MPLS_UDP_PORT : UDP_PORT);
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}
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static int configure_fou_rx_port(struct subtest_cfg *cfg, bool add)
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{
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bool is_mpls = strcmp(cfg->mac_tun_type, "mpls") == 0;
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int fou_proto;
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if (is_mpls)
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fou_proto = FOU_MPLS_PROTO;
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else
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fou_proto = cfg->ipproto == 6 ? 41 : 4;
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SYS(fail, "ip fou %s port %d ipproto %d%s", add ? "add" : "del",
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is_mpls ? MPLS_UDP_PORT : UDP_PORT, fou_proto,
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cfg->ipproto == 6 ? " -6" : "");
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return 0;
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fail:
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return 1;
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}
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static int add_fou_rx_port(struct subtest_cfg *cfg)
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{
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return configure_fou_rx_port(cfg, true);
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}
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static int del_fou_rx_port(struct subtest_cfg *cfg)
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{
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return configure_fou_rx_port(cfg, false);
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}
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static int update_tunnel_intf_addr(struct subtest_cfg *cfg)
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{
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SYS(fail, "ip link set dev testtun0 address " MAC_ADDR_VETH2);
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return 0;
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fail:
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return -1;
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}
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static int configure_kernel_for_mpls(struct subtest_cfg *cfg)
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{
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SYS(fail, "sysctl -qw net.mpls.platform_labels=%d",
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MPLS_TABLE_ENTRIES_COUNT);
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SYS(fail, "ip -f mpls route add 1000 dev lo");
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SYS(fail, "ip link set lo up");
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SYS(fail, "sysctl -qw net.mpls.conf.testtun0.input=1");
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SYS(fail, "sysctl -qw net.ipv4.conf.lo.rp_filter=0");
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return 0;
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fail:
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return -1;
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}
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static int configure_encapsulation(struct subtest_cfg *cfg)
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{
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int ret;
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ret = tc_prog_attach("veth1", -1, cfg->client_egress_prog_fd);
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return ret;
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}
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static int configure_kernel_decapsulation(struct subtest_cfg *cfg)
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{
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struct nstoken *nstoken = open_netns(SERVER_NS);
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int ret = -1;
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if (!ASSERT_OK_PTR(nstoken, "open server ns"))
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return ret;
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if (cfg->configure_fou_rx_port &&
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!ASSERT_OK(add_fou_rx_port(cfg), "configure FOU RX port"))
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goto fail;
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SYS(fail, "ip link add name testtun0 type %s %s remote %s local %s %s",
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cfg->iproute_tun_type, cfg->tmode ? cfg->tmode : "",
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cfg->tunnel_client_addr, cfg->tunnel_server_addr,
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cfg->extra_decap_mod_args);
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if (cfg->tunnel_need_veth_mac &&
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!ASSERT_OK(update_tunnel_intf_addr(cfg), "update testtun0 mac"))
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goto fail;
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if (cfg->configure_mpls &&
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(!ASSERT_OK(configure_kernel_for_mpls(cfg),
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"configure MPLS decap")))
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goto fail;
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SYS(fail, "sysctl -qw net.ipv4.conf.all.rp_filter=0");
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SYS(fail, "sysctl -qw net.ipv4.conf.testtun0.rp_filter=0");
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SYS(fail, "ip link set dev testtun0 up");
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ret = 0;
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fail:
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close_netns(nstoken);
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return ret;
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}
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static void remove_kernel_decapsulation(struct subtest_cfg *cfg)
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{
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SYS_NOFAIL("ip link del testtun0");
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if (cfg->configure_mpls)
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SYS_NOFAIL("ip -f mpls route del 1000 dev lo");
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if (cfg->configure_fou_rx_port)
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del_fou_rx_port(cfg);
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}
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static int configure_ebpf_decapsulation(struct subtest_cfg *cfg)
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{
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struct nstoken *nstoken = open_netns(SERVER_NS);
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int ret = -1;
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if (!ASSERT_OK_PTR(nstoken, "open server ns"))
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return ret;
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if (!cfg->expect_kern_decap_failure)
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SYS(fail, "ip link del testtun0");
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if (!ASSERT_OK(tc_prog_attach("veth2", cfg->server_ingress_prog_fd, -1),
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"attach_program"))
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goto fail;
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ret = 0;
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fail:
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close_netns(nstoken);
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return ret;
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}
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static void run_test(struct subtest_cfg *cfg)
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{
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struct nstoken *nstoken;
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if (!ASSERT_OK(run_server(cfg), "run server"))
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return;
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nstoken = open_netns(CLIENT_NS);
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if (!ASSERT_OK_PTR(nstoken, "open client ns"))
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goto fail;
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/* Basic communication must work */
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if (!ASSERT_OK(send_and_test_data(cfg, true), "connect without any encap"))
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goto fail;
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/* Attach encapsulation program to client */
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if (!ASSERT_OK(configure_encapsulation(cfg), "configure encapsulation"))
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goto fail;
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/* If supported, insert kernel decap module, connection must succeed */
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if (!cfg->expect_kern_decap_failure) {
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if (!ASSERT_OK(configure_kernel_decapsulation(cfg),
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"configure kernel decapsulation"))
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goto fail;
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if (!ASSERT_OK(send_and_test_data(cfg, true),
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"connect with encap prog and kern decap"))
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goto fail;
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}
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/* Replace kernel decapsulation with BPF decapsulation, test must pass */
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if (!ASSERT_OK(configure_ebpf_decapsulation(cfg), "configure ebpf decapsulation"))
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goto fail;
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ASSERT_OK(send_and_test_data(cfg, true), "connect with encap and decap progs");
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fail:
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close_netns(nstoken);
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close(cfg->server_fd);
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}
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static int setup(void)
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{
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struct nstoken *nstoken_client, *nstoken_server;
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int fd, err;
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fd = open("/dev/urandom", O_RDONLY);
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if (!ASSERT_OK_FD(fd, "open urandom"))
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goto fail;
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err = read(fd, tx_buffer, BUFFER_LEN);
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close(fd);
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if (!ASSERT_EQ(err, BUFFER_LEN, "read random bytes"))
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goto fail;
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/* Configure the testing network */
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if (!ASSERT_OK(make_netns(CLIENT_NS), "create client ns") ||
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!ASSERT_OK(make_netns(SERVER_NS), "create server ns"))
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goto fail;
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nstoken_client = open_netns(CLIENT_NS);
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if (!ASSERT_OK_PTR(nstoken_client, "open client ns"))
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goto fail_delete_ns;
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SYS(fail_close_ns_client, "ip link add %s type veth peer name %s",
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"veth1 mtu 1500 netns " CLIENT_NS " address " MAC_ADDR_VETH1,
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"veth2 mtu 1500 netns " SERVER_NS " address " MAC_ADDR_VETH2);
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SYS(fail_close_ns_client, "ethtool -K veth1 tso off");
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SYS(fail_close_ns_client, "ip link set veth1 up");
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nstoken_server = open_netns(SERVER_NS);
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if (!ASSERT_OK_PTR(nstoken_server, "open server ns"))
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goto fail_close_ns_client;
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SYS(fail_close_ns_server, "ip link set veth2 up");
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close_netns(nstoken_server);
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close_netns(nstoken_client);
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return 0;
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fail_close_ns_server:
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close_netns(nstoken_server);
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fail_close_ns_client:
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close_netns(nstoken_client);
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fail_delete_ns:
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SYS_NOFAIL("ip netns del " CLIENT_NS);
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SYS_NOFAIL("ip netns del " SERVER_NS);
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fail:
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return -1;
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}
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static int subtest_setup(struct test_tc_tunnel *skel, struct subtest_cfg *cfg)
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{
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struct nstoken *nstoken_client, *nstoken_server;
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int ret = -1;
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set_subtest_addresses(cfg);
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if (!ASSERT_OK(set_subtest_progs(cfg, skel),
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"find subtest progs"))
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goto fail;
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if (cfg->extra_decap_mod_args_cb)
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cfg->extra_decap_mod_args_cb(cfg, cfg->extra_decap_mod_args);
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nstoken_client = open_netns(CLIENT_NS);
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if (!ASSERT_OK_PTR(nstoken_client, "open client ns"))
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goto fail;
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|
SYS(fail_close_client_ns,
|
|
"ip -4 addr add " IP4_ADDR_VETH1 "/24 dev veth1");
|
|
SYS(fail_close_client_ns, "ip -4 route flush table main");
|
|
SYS(fail_close_client_ns,
|
|
"ip -4 route add " IP4_ADDR_VETH2 " mtu 1450 dev veth1");
|
|
SYS(fail_close_client_ns,
|
|
"ip -6 addr add " IP6_ADDR_VETH1 "/64 dev veth1 nodad");
|
|
SYS(fail_close_client_ns, "ip -6 route flush table main");
|
|
SYS(fail_close_client_ns,
|
|
"ip -6 route add " IP6_ADDR_VETH2 " mtu 1430 dev veth1");
|
|
nstoken_server = open_netns(SERVER_NS);
|
|
if (!ASSERT_OK_PTR(nstoken_server, "open server ns"))
|
|
goto fail_close_client_ns;
|
|
SYS(fail_close_server_ns,
|
|
"ip -4 addr add " IP4_ADDR_VETH2 "/24 dev veth2");
|
|
SYS(fail_close_server_ns,
|
|
"ip -6 addr add " IP6_ADDR_VETH2 "/64 dev veth2 nodad");
|
|
|
|
ret = 0;
|
|
|
|
fail_close_server_ns:
|
|
close_netns(nstoken_server);
|
|
fail_close_client_ns:
|
|
close_netns(nstoken_client);
|
|
fail:
|
|
return ret;
|
|
}
|
|
|
|
|
|
static void subtest_cleanup(struct subtest_cfg *cfg)
|
|
{
|
|
struct nstoken *nstoken;
|
|
|
|
nstoken = open_netns(CLIENT_NS);
|
|
if (ASSERT_OK_PTR(nstoken, "open clien ns")) {
|
|
SYS_NOFAIL("tc qdisc delete dev veth1 parent ffff:fff1");
|
|
SYS_NOFAIL("ip a flush veth1");
|
|
close_netns(nstoken);
|
|
}
|
|
nstoken = open_netns(SERVER_NS);
|
|
if (ASSERT_OK_PTR(nstoken, "open clien ns")) {
|
|
SYS_NOFAIL("tc qdisc delete dev veth2 parent ffff:fff1");
|
|
SYS_NOFAIL("ip a flush veth2");
|
|
if (!cfg->expect_kern_decap_failure)
|
|
remove_kernel_decapsulation(cfg);
|
|
close_netns(nstoken);
|
|
}
|
|
}
|
|
|
|
static void cleanup(void)
|
|
{
|
|
remove_netns(CLIENT_NS);
|
|
remove_netns(SERVER_NS);
|
|
}
|
|
|
|
static struct subtest_cfg subtests_cfg[] = {
|
|
{
|
|
.ebpf_tun_type = "ipip",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "ipip",
|
|
.ipproto = 4,
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ipip6",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "ip6tnl",
|
|
.ipproto = 4,
|
|
.tunnel_client_addr = IP6_ADDR_VETH1,
|
|
.tunnel_server_addr = IP6_ADDR_VETH2,
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6tnl",
|
|
.iproute_tun_type = "ip6tnl",
|
|
.mac_tun_type = "none",
|
|
.ipproto = 6,
|
|
},
|
|
{
|
|
.mac_tun_type = "none",
|
|
.ebpf_tun_type = "sit",
|
|
.iproute_tun_type = "sit",
|
|
.ipproto = 6,
|
|
.tunnel_client_addr = IP4_ADDR_VETH1,
|
|
.tunnel_server_addr = IP4_ADDR_VETH2,
|
|
},
|
|
{
|
|
.ebpf_tun_type = "vxlan",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "vxlan",
|
|
.ipproto = 4,
|
|
.extra_decap_mod_args_cb = vxlan_decap_mod_args_cb,
|
|
.tunnel_need_veth_mac = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6vxlan",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "vxlan",
|
|
.ipproto = 6,
|
|
.extra_decap_mod_args_cb = vxlan_decap_mod_args_cb,
|
|
.tunnel_need_veth_mac = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "gre",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "gre",
|
|
.ipproto = 4,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "gre",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "gretap",
|
|
.ipproto = 4,
|
|
.tunnel_need_veth_mac = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "gre",
|
|
.mac_tun_type = "mpls",
|
|
.iproute_tun_type = "gre",
|
|
.ipproto = 4,
|
|
.configure_mpls = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6gre",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "ip6gre",
|
|
.ipproto = 6,
|
|
.test_gso = true,
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6gre",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "ip6gretap",
|
|
.ipproto = 6,
|
|
.tunnel_need_veth_mac = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6gre",
|
|
.mac_tun_type = "mpls",
|
|
.iproute_tun_type = "ip6gre",
|
|
.ipproto = 6,
|
|
.configure_mpls = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "udp",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "ipip",
|
|
.ipproto = 4,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "udp",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "ipip",
|
|
.ipproto = 4,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.expect_kern_decap_failure = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "udp",
|
|
.mac_tun_type = "mpls",
|
|
.iproute_tun_type = "ipip",
|
|
.ipproto = 4,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.tmode = "mode any ttl 255",
|
|
.configure_mpls = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6udp",
|
|
.mac_tun_type = "none",
|
|
.iproute_tun_type = "ip6tnl",
|
|
.ipproto = 6,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6udp",
|
|
.mac_tun_type = "eth",
|
|
.iproute_tun_type = "ip6tnl",
|
|
.ipproto = 6,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.expect_kern_decap_failure = true,
|
|
.test_gso = true
|
|
},
|
|
{
|
|
.ebpf_tun_type = "ip6udp",
|
|
.mac_tun_type = "mpls",
|
|
.iproute_tun_type = "ip6tnl",
|
|
.ipproto = 6,
|
|
.extra_decap_mod_args_cb = udp_decap_mod_args_cb,
|
|
.configure_fou_rx_port = true,
|
|
.tmode = "mode any ttl 255",
|
|
.expect_kern_decap_failure = true,
|
|
.test_gso = true
|
|
},
|
|
};
|
|
|
|
void test_tc_tunnel(void)
|
|
{
|
|
struct test_tc_tunnel *skel;
|
|
struct subtest_cfg *cfg;
|
|
int i, ret;
|
|
|
|
skel = test_tc_tunnel__open_and_load();
|
|
if (!ASSERT_OK_PTR(skel, "skel open and load"))
|
|
return;
|
|
|
|
if (!ASSERT_OK(setup(), "global setup"))
|
|
return;
|
|
|
|
for (i = 0; i < ARRAY_SIZE(subtests_cfg); i++) {
|
|
cfg = &subtests_cfg[i];
|
|
ret = build_subtest_name(cfg, cfg->name, TEST_NAME_MAX_LEN);
|
|
if (ret < 0 || !test__start_subtest(cfg->name))
|
|
continue;
|
|
if (subtest_setup(skel, cfg) == 0)
|
|
run_test(cfg);
|
|
subtest_cleanup(cfg);
|
|
}
|
|
cleanup();
|
|
}
|