207 lines
5.4 KiB
C
207 lines
5.4 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/* Copyright (c) 2020 Jesper Dangaard Brouer */
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#include <linux/if_link.h> /* before test_progs.h, avoid bpf_util.h redefines */
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#include <test_progs.h>
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#include "test_check_mtu.skel.h"
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#include "network_helpers.h"
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#include <stdlib.h>
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#include <inttypes.h>
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#define IFINDEX_LO 1
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static __u32 duration; /* Hint: needed for CHECK macro */
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static int read_mtu_device_lo(void)
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{
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const char *filename = "/sys/class/net/lo/mtu";
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char buf[11] = {};
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int value, n, fd;
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fd = open(filename, 0, O_RDONLY);
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if (fd == -1)
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return -1;
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n = read(fd, buf, sizeof(buf));
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close(fd);
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if (n == -1)
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return -2;
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value = strtoimax(buf, NULL, 10);
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if (errno == ERANGE)
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return -3;
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return value;
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}
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static void test_check_mtu_xdp_attach(void)
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{
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struct bpf_link_info link_info;
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__u32 link_info_len = sizeof(link_info);
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struct test_check_mtu *skel;
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struct bpf_program *prog;
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struct bpf_link *link;
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int err = 0;
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int fd;
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skel = test_check_mtu__open_and_load();
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if (CHECK(!skel, "open and load skel", "failed"))
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return; /* Exit if e.g. helper unknown to kernel */
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prog = skel->progs.xdp_use_helper_basic;
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link = bpf_program__attach_xdp(prog, IFINDEX_LO);
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if (!ASSERT_OK_PTR(link, "link_attach"))
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goto out;
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skel->links.xdp_use_helper_basic = link;
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memset(&link_info, 0, sizeof(link_info));
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fd = bpf_link__fd(link);
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err = bpf_obj_get_info_by_fd(fd, &link_info, &link_info_len);
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if (CHECK(err, "link_info", "failed: %d\n", err))
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goto out;
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CHECK(link_info.type != BPF_LINK_TYPE_XDP, "link_type",
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"got %u != exp %u\n", link_info.type, BPF_LINK_TYPE_XDP);
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CHECK(link_info.xdp.ifindex != IFINDEX_LO, "link_ifindex",
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"got %u != exp %u\n", link_info.xdp.ifindex, IFINDEX_LO);
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err = bpf_link__detach(link);
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CHECK(err, "link_detach", "failed %d\n", err);
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out:
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test_check_mtu__destroy(skel);
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}
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static void test_check_mtu_run_xdp(struct test_check_mtu *skel,
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struct bpf_program *prog,
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__u32 mtu_expect)
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{
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int retval_expect = XDP_PASS;
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__u32 mtu_result = 0;
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char buf[256] = {};
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int err, prog_fd = bpf_program__fd(prog);
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LIBBPF_OPTS(bpf_test_run_opts, topts,
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.repeat = 1,
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.data_in = &pkt_v4,
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.data_size_in = sizeof(pkt_v4),
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.data_out = buf,
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.data_size_out = sizeof(buf),
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);
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err = bpf_prog_test_run_opts(prog_fd, &topts);
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ASSERT_OK(err, "test_run");
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ASSERT_EQ(topts.retval, retval_expect, "retval");
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/* Extract MTU that BPF-prog got */
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mtu_result = skel->bss->global_bpf_mtu_xdp;
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ASSERT_EQ(mtu_result, mtu_expect, "MTU-compare-user");
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}
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static void test_check_mtu_xdp(__u32 mtu, __u32 ifindex)
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{
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struct test_check_mtu *skel;
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int err;
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skel = test_check_mtu__open();
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if (CHECK(!skel, "skel_open", "failed"))
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return;
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/* Update "constants" in BPF-prog *BEFORE* libbpf load */
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skel->rodata->GLOBAL_USER_MTU = mtu;
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skel->rodata->GLOBAL_USER_IFINDEX = ifindex;
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err = test_check_mtu__load(skel);
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if (CHECK(err, "skel_load", "failed: %d\n", err))
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goto cleanup;
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test_check_mtu_run_xdp(skel, skel->progs.xdp_use_helper, mtu);
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test_check_mtu_run_xdp(skel, skel->progs.xdp_exceed_mtu, mtu);
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test_check_mtu_run_xdp(skel, skel->progs.xdp_minus_delta, mtu);
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test_check_mtu_run_xdp(skel, skel->progs.xdp_input_len, mtu);
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test_check_mtu_run_xdp(skel, skel->progs.xdp_input_len_exceed, mtu);
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cleanup:
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test_check_mtu__destroy(skel);
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}
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static void test_check_mtu_run_tc(struct test_check_mtu *skel,
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struct bpf_program *prog,
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__u32 mtu_expect)
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{
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int retval_expect = BPF_OK;
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__u32 mtu_result = 0;
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char buf[256] = {};
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int err, prog_fd = bpf_program__fd(prog);
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LIBBPF_OPTS(bpf_test_run_opts, topts,
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.data_in = &pkt_v4,
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.data_size_in = sizeof(pkt_v4),
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.data_out = buf,
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.data_size_out = sizeof(buf),
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.repeat = 1,
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);
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err = bpf_prog_test_run_opts(prog_fd, &topts);
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ASSERT_OK(err, "test_run");
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ASSERT_EQ(topts.retval, retval_expect, "retval");
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/* Extract MTU that BPF-prog got */
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mtu_result = skel->bss->global_bpf_mtu_tc;
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ASSERT_EQ(mtu_result, mtu_expect, "MTU-compare-user");
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}
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static void test_check_mtu_tc(__u32 mtu, __u32 ifindex)
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{
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struct test_check_mtu *skel;
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int err;
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skel = test_check_mtu__open();
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if (CHECK(!skel, "skel_open", "failed"))
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return;
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/* Update "constants" in BPF-prog *BEFORE* libbpf load */
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skel->rodata->GLOBAL_USER_MTU = mtu;
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skel->rodata->GLOBAL_USER_IFINDEX = ifindex;
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err = test_check_mtu__load(skel);
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if (CHECK(err, "skel_load", "failed: %d\n", err))
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goto cleanup;
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test_check_mtu_run_tc(skel, skel->progs.tc_use_helper, mtu);
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test_check_mtu_run_tc(skel, skel->progs.tc_exceed_mtu, mtu);
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test_check_mtu_run_tc(skel, skel->progs.tc_exceed_mtu_da, mtu);
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test_check_mtu_run_tc(skel, skel->progs.tc_minus_delta, mtu);
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test_check_mtu_run_tc(skel, skel->progs.tc_input_len, mtu);
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test_check_mtu_run_tc(skel, skel->progs.tc_input_len_exceed, mtu);
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cleanup:
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test_check_mtu__destroy(skel);
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}
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void serial_test_check_mtu(void)
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{
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int mtu_lo;
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if (test__start_subtest("bpf_check_mtu XDP-attach"))
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test_check_mtu_xdp_attach();
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mtu_lo = read_mtu_device_lo();
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if (CHECK(mtu_lo < 0, "reading MTU value", "failed (err:%d)", mtu_lo))
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return;
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if (test__start_subtest("bpf_check_mtu XDP-run"))
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test_check_mtu_xdp(mtu_lo, 0);
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if (test__start_subtest("bpf_check_mtu XDP-run ifindex-lookup"))
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test_check_mtu_xdp(mtu_lo, IFINDEX_LO);
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if (test__start_subtest("bpf_check_mtu TC-run"))
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test_check_mtu_tc(mtu_lo, 0);
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if (test__start_subtest("bpf_check_mtu TC-run ifindex-lookup"))
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test_check_mtu_tc(mtu_lo, IFINDEX_LO);
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}
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