044032ee6c
start_mptcp_server() shouldn't be a public helper, it only be used in MPTCP tests. This patch moves it into prog_tests/mptcp.c, and implenments it using make_sockaddr() and start_server_addr() instead of using start_server_proto(). Signed-off-by: Geliang Tang <tanggeliang@kylinos.cn> Link: https://lore.kernel.org/r/50ec7049e280c60a2924937940851f8fee2b73b8.1714014697.git.tanggeliang@kylinos.cn Signed-off-by: Martin KaFai Lau <martin.lau@kernel.org>
350 lines
7.5 KiB
C
350 lines
7.5 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/* Copyright (c) 2020, Tessares SA. */
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/* Copyright (c) 2022, SUSE. */
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#include <linux/const.h>
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#include <netinet/in.h>
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#include <test_progs.h>
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#include "cgroup_helpers.h"
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#include "network_helpers.h"
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#include "mptcp_sock.skel.h"
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#include "mptcpify.skel.h"
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#define NS_TEST "mptcp_ns"
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#ifndef IPPROTO_MPTCP
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#define IPPROTO_MPTCP 262
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#endif
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#ifndef SOL_MPTCP
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#define SOL_MPTCP 284
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#endif
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#ifndef MPTCP_INFO
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#define MPTCP_INFO 1
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#endif
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#ifndef MPTCP_INFO_FLAG_FALLBACK
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#define MPTCP_INFO_FLAG_FALLBACK _BITUL(0)
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#endif
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#ifndef MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED
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#define MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED _BITUL(1)
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#endif
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#ifndef TCP_CA_NAME_MAX
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#define TCP_CA_NAME_MAX 16
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#endif
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struct __mptcp_info {
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__u8 mptcpi_subflows;
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__u8 mptcpi_add_addr_signal;
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__u8 mptcpi_add_addr_accepted;
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__u8 mptcpi_subflows_max;
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__u8 mptcpi_add_addr_signal_max;
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__u8 mptcpi_add_addr_accepted_max;
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__u32 mptcpi_flags;
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__u32 mptcpi_token;
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__u64 mptcpi_write_seq;
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__u64 mptcpi_snd_una;
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__u64 mptcpi_rcv_nxt;
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__u8 mptcpi_local_addr_used;
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__u8 mptcpi_local_addr_max;
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__u8 mptcpi_csum_enabled;
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__u32 mptcpi_retransmits;
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__u64 mptcpi_bytes_retrans;
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__u64 mptcpi_bytes_sent;
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__u64 mptcpi_bytes_received;
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__u64 mptcpi_bytes_acked;
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};
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struct mptcp_storage {
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__u32 invoked;
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__u32 is_mptcp;
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struct sock *sk;
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__u32 token;
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struct sock *first;
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char ca_name[TCP_CA_NAME_MAX];
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};
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static struct nstoken *create_netns(void)
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{
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SYS(fail, "ip netns add %s", NS_TEST);
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SYS(fail, "ip -net %s link set dev lo up", NS_TEST);
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return open_netns(NS_TEST);
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fail:
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return NULL;
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}
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static void cleanup_netns(struct nstoken *nstoken)
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{
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if (nstoken)
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close_netns(nstoken);
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SYS_NOFAIL("ip netns del %s", NS_TEST);
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}
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static int start_mptcp_server(int family, const char *addr_str, __u16 port,
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int timeout_ms)
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{
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struct network_helper_opts opts = {
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.timeout_ms = timeout_ms,
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.proto = IPPROTO_MPTCP,
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};
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struct sockaddr_storage addr;
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socklen_t addrlen;
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if (make_sockaddr(family, addr_str, port, &addr, &addrlen))
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return -1;
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return start_server_addr(SOCK_STREAM, &addr, addrlen, &opts);
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}
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static int verify_tsk(int map_fd, int client_fd)
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{
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int err, cfd = client_fd;
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struct mptcp_storage val;
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err = bpf_map_lookup_elem(map_fd, &cfd, &val);
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if (!ASSERT_OK(err, "bpf_map_lookup_elem"))
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return err;
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if (!ASSERT_EQ(val.invoked, 1, "unexpected invoked count"))
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err++;
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if (!ASSERT_EQ(val.is_mptcp, 0, "unexpected is_mptcp"))
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err++;
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return err;
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}
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static void get_msk_ca_name(char ca_name[])
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{
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size_t len;
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int fd;
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fd = open("/proc/sys/net/ipv4/tcp_congestion_control", O_RDONLY);
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if (!ASSERT_GE(fd, 0, "failed to open tcp_congestion_control"))
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return;
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len = read(fd, ca_name, TCP_CA_NAME_MAX);
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if (!ASSERT_GT(len, 0, "failed to read ca_name"))
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goto err;
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if (len > 0 && ca_name[len - 1] == '\n')
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ca_name[len - 1] = '\0';
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err:
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close(fd);
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}
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static int verify_msk(int map_fd, int client_fd, __u32 token)
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{
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char ca_name[TCP_CA_NAME_MAX];
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int err, cfd = client_fd;
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struct mptcp_storage val;
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if (!ASSERT_GT(token, 0, "invalid token"))
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return -1;
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get_msk_ca_name(ca_name);
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err = bpf_map_lookup_elem(map_fd, &cfd, &val);
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if (!ASSERT_OK(err, "bpf_map_lookup_elem"))
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return err;
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if (!ASSERT_EQ(val.invoked, 1, "unexpected invoked count"))
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err++;
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if (!ASSERT_EQ(val.is_mptcp, 1, "unexpected is_mptcp"))
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err++;
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if (!ASSERT_EQ(val.token, token, "unexpected token"))
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err++;
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if (!ASSERT_EQ(val.first, val.sk, "unexpected first"))
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err++;
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if (!ASSERT_STRNEQ(val.ca_name, ca_name, TCP_CA_NAME_MAX, "unexpected ca_name"))
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err++;
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return err;
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}
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static int run_test(int cgroup_fd, int server_fd, bool is_mptcp)
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{
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int client_fd, prog_fd, map_fd, err;
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struct mptcp_sock *sock_skel;
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sock_skel = mptcp_sock__open_and_load();
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if (!ASSERT_OK_PTR(sock_skel, "skel_open_load"))
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return libbpf_get_error(sock_skel);
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err = mptcp_sock__attach(sock_skel);
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if (!ASSERT_OK(err, "skel_attach"))
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goto out;
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prog_fd = bpf_program__fd(sock_skel->progs._sockops);
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map_fd = bpf_map__fd(sock_skel->maps.socket_storage_map);
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err = bpf_prog_attach(prog_fd, cgroup_fd, BPF_CGROUP_SOCK_OPS, 0);
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if (!ASSERT_OK(err, "bpf_prog_attach"))
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goto out;
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client_fd = connect_to_fd(server_fd, 0);
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if (!ASSERT_GE(client_fd, 0, "connect to fd")) {
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err = -EIO;
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goto out;
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}
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err += is_mptcp ? verify_msk(map_fd, client_fd, sock_skel->bss->token) :
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verify_tsk(map_fd, client_fd);
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close(client_fd);
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out:
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mptcp_sock__destroy(sock_skel);
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return err;
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}
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static void test_base(void)
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{
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struct nstoken *nstoken = NULL;
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int server_fd, cgroup_fd;
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cgroup_fd = test__join_cgroup("/mptcp");
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if (!ASSERT_GE(cgroup_fd, 0, "test__join_cgroup"))
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return;
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nstoken = create_netns();
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if (!ASSERT_OK_PTR(nstoken, "create_netns"))
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goto fail;
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/* without MPTCP */
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server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0);
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if (!ASSERT_GE(server_fd, 0, "start_server"))
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goto with_mptcp;
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ASSERT_OK(run_test(cgroup_fd, server_fd, false), "run_test tcp");
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close(server_fd);
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with_mptcp:
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/* with MPTCP */
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server_fd = start_mptcp_server(AF_INET, NULL, 0, 0);
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if (!ASSERT_GE(server_fd, 0, "start_mptcp_server"))
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goto fail;
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ASSERT_OK(run_test(cgroup_fd, server_fd, true), "run_test mptcp");
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close(server_fd);
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fail:
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cleanup_netns(nstoken);
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close(cgroup_fd);
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}
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static void send_byte(int fd)
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{
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char b = 0x55;
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ASSERT_EQ(write(fd, &b, sizeof(b)), 1, "send single byte");
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}
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static int verify_mptcpify(int server_fd, int client_fd)
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{
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struct __mptcp_info info;
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socklen_t optlen;
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int protocol;
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int err = 0;
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optlen = sizeof(protocol);
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if (!ASSERT_OK(getsockopt(server_fd, SOL_SOCKET, SO_PROTOCOL, &protocol, &optlen),
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"getsockopt(SOL_PROTOCOL)"))
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return -1;
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if (!ASSERT_EQ(protocol, IPPROTO_MPTCP, "protocol isn't MPTCP"))
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err++;
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optlen = sizeof(info);
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if (!ASSERT_OK(getsockopt(client_fd, SOL_MPTCP, MPTCP_INFO, &info, &optlen),
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"getsockopt(MPTCP_INFO)"))
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return -1;
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if (!ASSERT_GE(info.mptcpi_flags, 0, "unexpected mptcpi_flags"))
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err++;
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if (!ASSERT_FALSE(info.mptcpi_flags & MPTCP_INFO_FLAG_FALLBACK,
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"MPTCP fallback"))
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err++;
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if (!ASSERT_TRUE(info.mptcpi_flags & MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED,
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"no remote key received"))
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err++;
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return err;
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}
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static int run_mptcpify(int cgroup_fd)
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{
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int server_fd, client_fd, err = 0;
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struct mptcpify *mptcpify_skel;
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mptcpify_skel = mptcpify__open_and_load();
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if (!ASSERT_OK_PTR(mptcpify_skel, "skel_open_load"))
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return libbpf_get_error(mptcpify_skel);
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mptcpify_skel->bss->pid = getpid();
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err = mptcpify__attach(mptcpify_skel);
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if (!ASSERT_OK(err, "skel_attach"))
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goto out;
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/* without MPTCP */
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server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0);
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if (!ASSERT_GE(server_fd, 0, "start_server")) {
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err = -EIO;
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goto out;
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}
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client_fd = connect_to_fd(server_fd, 0);
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if (!ASSERT_GE(client_fd, 0, "connect to fd")) {
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err = -EIO;
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goto close_server;
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}
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send_byte(client_fd);
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err = verify_mptcpify(server_fd, client_fd);
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close(client_fd);
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close_server:
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close(server_fd);
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out:
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mptcpify__destroy(mptcpify_skel);
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return err;
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}
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static void test_mptcpify(void)
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{
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struct nstoken *nstoken = NULL;
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int cgroup_fd;
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cgroup_fd = test__join_cgroup("/mptcpify");
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if (!ASSERT_GE(cgroup_fd, 0, "test__join_cgroup"))
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return;
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nstoken = create_netns();
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if (!ASSERT_OK_PTR(nstoken, "create_netns"))
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goto fail;
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ASSERT_OK(run_mptcpify(cgroup_fd), "run_mptcpify");
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fail:
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cleanup_netns(nstoken);
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close(cgroup_fd);
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}
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void test_mptcp(void)
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{
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if (test__start_subtest("base"))
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test_base();
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if (test__start_subtest("mptcpify"))
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test_mptcpify();
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}
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