mirror of https://gitee.com/openkylin/linux.git
selftests/bpf: Add test cases to test narrower ctx field loads
Add test cases in test_verifier and test_progs. Negative tests are added in test_verifier as well. The test in test_progs will compare the value of narrower ctx field load result vs. the masked value of normal full-field load result, and will fail if they are not the same. Acked-by: Daniel Borkmann <daniel@iogearbox.net> Signed-off-by: Yonghong Song <yhs@fb.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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31fd85816d
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18f3d6be6b
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@ -14,7 +14,8 @@ LDLIBS += -lcap -lelf
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TEST_GEN_PROGS = test_verifier test_tag test_maps test_lru_map test_lpm_map test_progs \
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test_align
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TEST_GEN_FILES = test_pkt_access.o test_xdp.o test_l4lb.o test_tcp_estats.o test_obj_id.o
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TEST_GEN_FILES = test_pkt_access.o test_xdp.o test_l4lb.o test_tcp_estats.o test_obj_id.o \
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test_pkt_md_access.o
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TEST_PROGS := test_kmod.sh
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@ -0,0 +1,35 @@
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/* Copyright (c) 2017 Facebook
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of version 2 of the GNU General Public
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* License as published by the Free Software Foundation.
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*/
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#include <stddef.h>
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#include <string.h>
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#include <linux/bpf.h>
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#include <linux/pkt_cls.h>
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#include "bpf_helpers.h"
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int _version SEC("version") = 1;
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#define TEST_FIELD(TYPE, FIELD, MASK) \
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{ \
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TYPE tmp = *(volatile TYPE *)&skb->FIELD; \
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if (tmp != ((*(volatile __u32 *)&skb->FIELD) & MASK)) \
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return TC_ACT_SHOT; \
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}
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SEC("test1")
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int process(struct __sk_buff *skb)
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{
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TEST_FIELD(__u8, len, 0xFF);
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TEST_FIELD(__u16, len, 0xFFFF);
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TEST_FIELD(__u32, len, 0xFFFFFFFF);
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TEST_FIELD(__u16, protocol, 0xFFFF);
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TEST_FIELD(__u32, protocol, 0xFFFFFFFF);
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TEST_FIELD(__u8, hash, 0xFF);
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TEST_FIELD(__u16, hash, 0xFFFF);
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TEST_FIELD(__u32, hash, 0xFFFFFFFF);
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return TC_ACT_OK;
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}
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@ -484,6 +484,26 @@ static void test_bpf_obj_id(void)
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bpf_object__close(objs[i]);
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}
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static void test_pkt_md_access(void)
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{
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const char *file = "./test_pkt_md_access.o";
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struct bpf_object *obj;
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__u32 duration, retval;
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int err, prog_fd;
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err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd);
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if (err)
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return;
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err = bpf_prog_test_run(prog_fd, 10, &pkt_v4, sizeof(pkt_v4),
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NULL, NULL, &retval, &duration);
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CHECK(err || retval, "",
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"err %d errno %d retval %d duration %d\n",
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err, errno, retval, duration);
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bpf_object__close(obj);
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}
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int main(void)
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{
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struct rlimit rinf = { RLIM_INFINITY, RLIM_INFINITY };
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@ -495,6 +515,7 @@ int main(void)
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test_l4lb();
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test_tcp_estats();
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test_bpf_obj_id();
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test_pkt_md_access();
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printf("Summary: %d PASSED, %d FAILED\n", pass_cnt, error_cnt);
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return error_cnt ? EXIT_FAILURE : EXIT_SUCCESS;
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@ -1094,6 +1094,59 @@ static struct bpf_test tests[] = {
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check skb->hash byte load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash)),
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#else
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 3),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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},
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{
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"check skb->hash byte load not permitted 1",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 1),
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BPF_EXIT_INSN(),
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},
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check skb->hash byte load not permitted 2",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 2),
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BPF_EXIT_INSN(),
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},
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check skb->hash byte load not permitted 3",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 3),
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#else
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash)),
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#endif
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BPF_EXIT_INSN(),
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},
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check cb access: byte, wrong type",
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.insns = {
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@ -1187,6 +1240,37 @@ static struct bpf_test tests[] = {
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check skb->hash half load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash)),
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#else
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 2),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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},
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{
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"check skb->hash half load not permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash) + 2),
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#else
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, hash)),
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#endif
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BPF_EXIT_INSN(),
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},
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.errstr = "invalid bpf_context access",
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.result = REJECT,
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},
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{
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"check cb access: half, wrong type",
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.insns = {
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@ -5103,6 +5187,98 @@ static struct bpf_test tests[] = {
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},
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.result = ACCEPT,
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},
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{
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"check bpf_perf_event_data->sample_period byte load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period)),
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#else
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BPF_LDX_MEM(BPF_B, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period) + 7),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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.prog_type = BPF_PROG_TYPE_PERF_EVENT,
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},
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{
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"check bpf_perf_event_data->sample_period half load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period)),
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#else
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period) + 6),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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.prog_type = BPF_PROG_TYPE_PERF_EVENT,
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},
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{
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"check bpf_perf_event_data->sample_period word load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_W, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period)),
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#else
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BPF_LDX_MEM(BPF_W, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period) + 4),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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.prog_type = BPF_PROG_TYPE_PERF_EVENT,
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},
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{
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"check bpf_perf_event_data->sample_period dword load permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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BPF_LDX_MEM(BPF_DW, BPF_REG_0, BPF_REG_1,
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offsetof(struct bpf_perf_event_data, sample_period)),
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BPF_EXIT_INSN(),
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},
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.result = ACCEPT,
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.prog_type = BPF_PROG_TYPE_PERF_EVENT,
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},
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{
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"check skb->data half load not permitted",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, data)),
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#else
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, data) + 2),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = REJECT,
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.errstr = "invalid bpf_context access",
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},
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{
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"check skb->tc_classid half load not permitted for lwt prog",
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.insns = {
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BPF_MOV64_IMM(BPF_REG_0, 0),
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#ifdef __LITTLE_ENDIAN
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, tc_classid)),
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#else
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BPF_LDX_MEM(BPF_H, BPF_REG_0, BPF_REG_1,
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offsetof(struct __sk_buff, tc_classid) + 2),
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#endif
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BPF_EXIT_INSN(),
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},
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.result = REJECT,
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.errstr = "invalid bpf_context access",
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.prog_type = BPF_PROG_TYPE_LWT_IN,
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},
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};
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static int probe_filter_length(const struct bpf_insn *fp)
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