bpf: Support passing args to sock_ops bpf function
Adds support for passing up to 4 arguments to sock_ops bpf functions. It reusues the reply union, so the bpf_sock_ops structures are not increased in size. Signed-off-by: Lawrence Brakmo <brakmo@fb.com> Signed-off-by: Alexei Starovoitov <ast@kernel.org>
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@ -1003,6 +1003,7 @@ struct bpf_sock_ops_kern {
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struct sock *sk;
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u32 op;
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union {
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u32 args[4];
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u32 reply;
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u32 replylong[4];
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};
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@ -2006,7 +2006,7 @@ void tcp_cleanup_ulp(struct sock *sk);
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* program loaded).
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*/
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#ifdef CONFIG_BPF
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static inline int tcp_call_bpf(struct sock *sk, int op)
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static inline int tcp_call_bpf(struct sock *sk, int op, u32 nargs, u32 *args)
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{
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struct bpf_sock_ops_kern sock_ops;
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int ret;
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@ -2019,6 +2019,8 @@ static inline int tcp_call_bpf(struct sock *sk, int op)
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sock_ops.sk = sk;
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sock_ops.op = op;
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if (nargs > 0)
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memcpy(sock_ops.args, args, nargs * sizeof(*args));
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ret = BPF_CGROUP_RUN_PROG_SOCK_OPS(&sock_ops);
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if (ret == 0)
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@ -2027,18 +2029,46 @@ static inline int tcp_call_bpf(struct sock *sk, int op)
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ret = -1;
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return ret;
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}
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static inline int tcp_call_bpf_2arg(struct sock *sk, int op, u32 arg1, u32 arg2)
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{
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u32 args[2] = {arg1, arg2};
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return tcp_call_bpf(sk, op, 2, args);
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}
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static inline int tcp_call_bpf_3arg(struct sock *sk, int op, u32 arg1, u32 arg2,
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u32 arg3)
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{
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u32 args[3] = {arg1, arg2, arg3};
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return tcp_call_bpf(sk, op, 3, args);
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}
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#else
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static inline int tcp_call_bpf(struct sock *sk, int op)
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static inline int tcp_call_bpf(struct sock *sk, int op, u32 nargs, u32 *args)
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{
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return -EPERM;
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}
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static inline int tcp_call_bpf_2arg(struct sock *sk, int op, u32 arg1, u32 arg2)
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{
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return -EPERM;
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}
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static inline int tcp_call_bpf_3arg(struct sock *sk, int op, u32 arg1, u32 arg2,
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u32 arg3)
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{
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return -EPERM;
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}
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#endif
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static inline u32 tcp_timeout_init(struct sock *sk)
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{
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int timeout;
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timeout = tcp_call_bpf(sk, BPF_SOCK_OPS_TIMEOUT_INIT);
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timeout = tcp_call_bpf(sk, BPF_SOCK_OPS_TIMEOUT_INIT, 0, NULL);
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if (timeout <= 0)
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timeout = TCP_TIMEOUT_INIT;
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@ -2049,7 +2079,7 @@ static inline u32 tcp_rwnd_init_bpf(struct sock *sk)
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{
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int rwnd;
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rwnd = tcp_call_bpf(sk, BPF_SOCK_OPS_RWND_INIT);
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rwnd = tcp_call_bpf(sk, BPF_SOCK_OPS_RWND_INIT, 0, NULL);
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if (rwnd < 0)
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rwnd = 0;
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@ -2058,7 +2088,7 @@ static inline u32 tcp_rwnd_init_bpf(struct sock *sk)
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static inline bool tcp_bpf_ca_needs_ecn(struct sock *sk)
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{
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return (tcp_call_bpf(sk, BPF_SOCK_OPS_NEEDS_ECN) == 1);
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return (tcp_call_bpf(sk, BPF_SOCK_OPS_NEEDS_ECN, 0, NULL) == 1);
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}
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#if IS_ENABLED(CONFIG_SMC)
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@ -952,8 +952,9 @@ struct bpf_map_info {
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struct bpf_sock_ops {
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__u32 op;
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union {
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__u32 reply;
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__u32 replylong[4];
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__u32 args[4]; /* Optionally passed to bpf program */
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__u32 reply; /* Returned by bpf program */
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__u32 replylong[4]; /* Optionally returned by bpf prog */
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};
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__u32 family;
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__u32 remote_ip4; /* Stored in network byte order */
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@ -463,7 +463,7 @@ void tcp_init_transfer(struct sock *sk, int bpf_op)
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tcp_mtup_init(sk);
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icsk->icsk_af_ops->rebuild_header(sk);
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tcp_init_metrics(sk);
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tcp_call_bpf(sk, bpf_op);
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tcp_call_bpf(sk, bpf_op, 0, NULL);
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tcp_init_congestion_control(sk);
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tcp_init_buffer_space(sk);
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}
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@ -146,7 +146,7 @@ static void tcpnv_init(struct sock *sk)
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* within a datacenter, where we have reasonable estimates of
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* RTTs
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*/
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base_rtt = tcp_call_bpf(sk, BPF_SOCK_OPS_BASE_RTT);
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base_rtt = tcp_call_bpf(sk, BPF_SOCK_OPS_BASE_RTT, 0, NULL);
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if (base_rtt > 0) {
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ca->nv_base_rtt = base_rtt;
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ca->nv_lower_bound_rtt = (base_rtt * 205) >> 8; /* 80% */
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@ -3469,7 +3469,7 @@ int tcp_connect(struct sock *sk)
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struct sk_buff *buff;
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int err;
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tcp_call_bpf(sk, BPF_SOCK_OPS_TCP_CONNECT_CB);
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tcp_call_bpf(sk, BPF_SOCK_OPS_TCP_CONNECT_CB, 0, NULL);
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if (inet_csk(sk)->icsk_af_ops->rebuild_header(sk))
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return -EHOSTUNREACH; /* Routing failure or similar. */
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