bpf: Add support for writing to nf_conn:mark
Support direct writes to nf_conn:mark from TC and XDP prog types. This is useful when applications want to store per-connection metadata. This is also particularly useful for applications that run both bpf and iptables/nftables because the latter can trivially access this metadata. One example use case would be if a bpf prog is responsible for advanced packet classification and iptables/nftables is later used for routing due to pre-existing/legacy code. Signed-off-by: Daniel Xu <dxu@dxuuu.xyz> Link: https://lore.kernel.org/r/ebca06dea366e3e7e861c12f375a548cc4c61108.1662568410.git.dxu@dxuuu.xyz Signed-off-by: Alexei Starovoitov <ast@kernel.org>
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@ -3,13 +3,22 @@
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#ifndef _NF_CONNTRACK_BPF_H
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#define _NF_CONNTRACK_BPF_H
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#include <linux/bpf.h>
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#include <linux/btf.h>
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#include <linux/kconfig.h>
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#include <linux/mutex.h>
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#if (IS_BUILTIN(CONFIG_NF_CONNTRACK) && IS_ENABLED(CONFIG_DEBUG_INFO_BTF)) || \
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(IS_MODULE(CONFIG_NF_CONNTRACK) && IS_ENABLED(CONFIG_DEBUG_INFO_BTF_MODULES))
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extern int register_nf_conntrack_bpf(void);
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extern void cleanup_nf_conntrack_bpf(void);
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extern struct mutex nf_conn_btf_access_lock;
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extern int (*nfct_bsa)(struct bpf_verifier_log *log, const struct btf *btf,
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const struct btf_type *t, int off, int size,
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enum bpf_access_type atype, u32 *next_btf_id,
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enum bpf_type_flag *flag);
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#else
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@ -18,6 +27,20 @@ static inline int register_nf_conntrack_bpf(void)
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return 0;
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}
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static inline void cleanup_nf_conntrack_bpf(void)
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{
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}
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static inline int nf_conntrack_btf_struct_access(struct bpf_verifier_log *log,
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const struct btf *btf,
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const struct btf_type *t, int off,
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int size, enum bpf_access_type atype,
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u32 *next_btf_id,
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enum bpf_type_flag *flag)
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{
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return -EACCES;
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}
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#endif
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#endif /* _NF_CONNTRACK_BPF_H */
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@ -18,6 +18,7 @@
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*/
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#include <linux/atomic.h>
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#include <linux/bpf_verifier.h>
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#include <linux/module.h>
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#include <linux/types.h>
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#include <linux/mm.h>
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@ -8604,6 +8605,36 @@ static bool tc_cls_act_is_valid_access(int off, int size,
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return bpf_skb_is_valid_access(off, size, type, prog, info);
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}
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DEFINE_MUTEX(nf_conn_btf_access_lock);
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EXPORT_SYMBOL_GPL(nf_conn_btf_access_lock);
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int (*nfct_bsa)(struct bpf_verifier_log *log, const struct btf *btf,
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const struct btf_type *t, int off, int size,
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enum bpf_access_type atype, u32 *next_btf_id,
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enum bpf_type_flag *flag);
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EXPORT_SYMBOL_GPL(nfct_bsa);
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static int tc_cls_act_btf_struct_access(struct bpf_verifier_log *log,
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const struct btf *btf,
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const struct btf_type *t, int off,
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int size, enum bpf_access_type atype,
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u32 *next_btf_id,
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enum bpf_type_flag *flag)
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{
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int ret = -EACCES;
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if (atype == BPF_READ)
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return btf_struct_access(log, btf, t, off, size, atype, next_btf_id,
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flag);
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mutex_lock(&nf_conn_btf_access_lock);
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if (nfct_bsa)
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ret = nfct_bsa(log, btf, t, off, size, atype, next_btf_id, flag);
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mutex_unlock(&nf_conn_btf_access_lock);
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return ret;
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}
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static bool __is_valid_xdp_access(int off, int size)
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{
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if (off < 0 || off >= sizeof(struct xdp_md))
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@ -8663,6 +8694,27 @@ void bpf_warn_invalid_xdp_action(struct net_device *dev, struct bpf_prog *prog,
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}
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EXPORT_SYMBOL_GPL(bpf_warn_invalid_xdp_action);
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static int xdp_btf_struct_access(struct bpf_verifier_log *log,
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const struct btf *btf,
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const struct btf_type *t, int off,
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int size, enum bpf_access_type atype,
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u32 *next_btf_id,
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enum bpf_type_flag *flag)
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{
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int ret = -EACCES;
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if (atype == BPF_READ)
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return btf_struct_access(log, btf, t, off, size, atype, next_btf_id,
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flag);
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mutex_lock(&nf_conn_btf_access_lock);
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if (nfct_bsa)
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ret = nfct_bsa(log, btf, t, off, size, atype, next_btf_id, flag);
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mutex_unlock(&nf_conn_btf_access_lock);
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return ret;
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}
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static bool sock_addr_is_valid_access(int off, int size,
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enum bpf_access_type type,
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const struct bpf_prog *prog,
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@ -10557,6 +10609,7 @@ const struct bpf_verifier_ops tc_cls_act_verifier_ops = {
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.convert_ctx_access = tc_cls_act_convert_ctx_access,
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.gen_prologue = tc_cls_act_prologue,
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.gen_ld_abs = bpf_gen_ld_abs,
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.btf_struct_access = tc_cls_act_btf_struct_access,
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};
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const struct bpf_prog_ops tc_cls_act_prog_ops = {
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@ -10568,6 +10621,7 @@ const struct bpf_verifier_ops xdp_verifier_ops = {
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.is_valid_access = xdp_is_valid_access,
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.convert_ctx_access = xdp_convert_ctx_access,
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.gen_prologue = bpf_noop_prologue,
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.btf_struct_access = xdp_btf_struct_access,
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};
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const struct bpf_prog_ops xdp_prog_ops = {
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@ -6,8 +6,10 @@
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* are exposed through to BPF programs is explicitly unstable.
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*/
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#include <linux/bpf_verifier.h>
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#include <linux/bpf.h>
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#include <linux/btf.h>
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#include <linux/mutex.h>
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#include <linux/types.h>
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#include <linux/btf_ids.h>
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#include <linux/net_namespace.h>
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@ -184,6 +186,54 @@ static struct nf_conn *__bpf_nf_ct_lookup(struct net *net,
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return ct;
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}
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BTF_ID_LIST(btf_nf_conn_ids)
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BTF_ID(struct, nf_conn)
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BTF_ID(struct, nf_conn___init)
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/* Check writes into `struct nf_conn` */
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static int _nf_conntrack_btf_struct_access(struct bpf_verifier_log *log,
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const struct btf *btf,
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const struct btf_type *t, int off,
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int size, enum bpf_access_type atype,
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u32 *next_btf_id,
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enum bpf_type_flag *flag)
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{
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const struct btf_type *ncit;
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const struct btf_type *nct;
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size_t end;
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ncit = btf_type_by_id(btf, btf_nf_conn_ids[1]);
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nct = btf_type_by_id(btf, btf_nf_conn_ids[0]);
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if (t != nct && t != ncit) {
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bpf_log(log, "only read is supported\n");
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return -EACCES;
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}
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/* `struct nf_conn` and `struct nf_conn___init` have the same layout
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* so we are safe to simply merge offset checks here
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*/
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switch (off) {
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#if defined(CONFIG_NF_CONNTRACK_MARK)
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case offsetof(struct nf_conn, mark):
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end = offsetofend(struct nf_conn, mark);
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break;
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#endif
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default:
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bpf_log(log, "no write support to nf_conn at off %d\n", off);
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return -EACCES;
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}
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if (off + size > end) {
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bpf_log(log,
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"write access at off %d with size %d beyond the member of nf_conn ended at %zu\n",
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off, size, end);
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return -EACCES;
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}
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return 0;
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}
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__diag_push();
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__diag_ignore_all("-Wmissing-prototypes",
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"Global functions as their definitions will be in nf_conntrack BTF");
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@ -449,5 +499,19 @@ int register_nf_conntrack_bpf(void)
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int ret;
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ret = register_btf_kfunc_id_set(BPF_PROG_TYPE_XDP, &nf_conntrack_kfunc_set);
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return ret ?: register_btf_kfunc_id_set(BPF_PROG_TYPE_SCHED_CLS, &nf_conntrack_kfunc_set);
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ret = ret ?: register_btf_kfunc_id_set(BPF_PROG_TYPE_SCHED_CLS, &nf_conntrack_kfunc_set);
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if (!ret) {
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mutex_lock(&nf_conn_btf_access_lock);
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nfct_bsa = _nf_conntrack_btf_struct_access;
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mutex_unlock(&nf_conn_btf_access_lock);
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}
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return ret;
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}
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void cleanup_nf_conntrack_bpf(void)
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{
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mutex_lock(&nf_conn_btf_access_lock);
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nfct_bsa = NULL;
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mutex_unlock(&nf_conn_btf_access_lock);
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}
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@ -2512,6 +2512,7 @@ static int kill_all(struct nf_conn *i, void *data)
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void nf_conntrack_cleanup_start(void)
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{
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cleanup_nf_conntrack_bpf();
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conntrack_gc_work.exiting = true;
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}
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