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https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
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bpf: Add helper to retrieve socket in BPF
This patch adds new BPF helper functions, bpf_sk_lookup_tcp() and bpf_sk_lookup_udp() which allows BPF programs to find out if there is a socket listening on this host, and returns a socket pointer which the BPF program can then access to determine, for instance, whether to forward or drop traffic. bpf_sk_lookup_xxx() may take a reference on the socket, so when a BPF program makes use of this function, it must subsequently pass the returned pointer into the newly added sk_release() to return the reference. By way of example, the following pseudocode would filter inbound connections at XDP if there is no corresponding service listening for the traffic: struct bpf_sock_tuple tuple; struct bpf_sock_ops *sk; populate_tuple(ctx, &tuple); // Extract the 5tuple from the packet sk = bpf_sk_lookup_tcp(ctx, &tuple, sizeof tuple, netns, 0); if (!sk) { // Couldn't find a socket listening for this traffic. Drop. return TC_ACT_SHOT; } bpf_sk_release(sk, 0); return TC_ACT_OK; Signed-off-by: Joe Stringer <joe@wand.net.nz> Acked-by: Alexei Starovoitov <ast@kernel.org> Signed-off-by: Daniel Borkmann <daniel@iogearbox.net>
This commit is contained in:
parent
fd978bf7fd
commit
6acc9b432e
@ -2144,6 +2144,77 @@ union bpf_attr {
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* request in the skb.
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* Return
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* 0 on success, or a negative error in case of failure.
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*
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* struct bpf_sock *bpf_sk_lookup_tcp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u32 netns, u64 flags)
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* Description
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* Look for TCP socket matching *tuple*, optionally in a child
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* network namespace *netns*. The return value must be checked,
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* and if non-NULL, released via **bpf_sk_release**\ ().
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*
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* The *ctx* should point to the context of the program, such as
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* the skb or socket (depending on the hook in use). This is used
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* to determine the base network namespace for the lookup.
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*
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* *tuple_size* must be one of:
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*
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* **sizeof**\ (*tuple*\ **->ipv4**)
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* Look for an IPv4 socket.
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* **sizeof**\ (*tuple*\ **->ipv6**)
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* Look for an IPv6 socket.
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*
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* If the *netns* is zero, then the socket lookup table in the
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* netns associated with the *ctx* will be used. For the TC hooks,
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* this in the netns of the device in the skb. For socket hooks,
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* this in the netns of the socket. If *netns* is non-zero, then
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* it specifies the ID of the netns relative to the netns
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* associated with the *ctx*.
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*
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* All values for *flags* are reserved for future usage, and must
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* be left at zero.
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*
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* This helper is available only if the kernel was compiled with
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* **CONFIG_NET** configuration option.
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* Return
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* Pointer to *struct bpf_sock*, or NULL in case of failure.
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*
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* struct bpf_sock *bpf_sk_lookup_udp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u32 netns, u64 flags)
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* Description
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* Look for UDP socket matching *tuple*, optionally in a child
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* network namespace *netns*. The return value must be checked,
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* and if non-NULL, released via **bpf_sk_release**\ ().
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*
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* The *ctx* should point to the context of the program, such as
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* the skb or socket (depending on the hook in use). This is used
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* to determine the base network namespace for the lookup.
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*
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* *tuple_size* must be one of:
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*
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* **sizeof**\ (*tuple*\ **->ipv4**)
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* Look for an IPv4 socket.
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* **sizeof**\ (*tuple*\ **->ipv6**)
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* Look for an IPv6 socket.
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*
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* If the *netns* is zero, then the socket lookup table in the
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* netns associated with the *ctx* will be used. For the TC hooks,
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* this in the netns of the device in the skb. For socket hooks,
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* this in the netns of the socket. If *netns* is non-zero, then
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* it specifies the ID of the netns relative to the netns
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* associated with the *ctx*.
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*
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* All values for *flags* are reserved for future usage, and must
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* be left at zero.
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*
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* This helper is available only if the kernel was compiled with
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* **CONFIG_NET** configuration option.
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* Return
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* Pointer to *struct bpf_sock*, or NULL in case of failure.
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*
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* int bpf_sk_release(struct bpf_sock *sk)
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* Description
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* Release the reference held by *sock*. *sock* must be a non-NULL
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* pointer that was returned from bpf_sk_lookup_xxx\ ().
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* Return
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* 0 on success, or a negative error in case of failure.
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*/
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#define __BPF_FUNC_MAPPER(FN) \
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FN(unspec), \
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@ -2229,7 +2300,10 @@ union bpf_attr {
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FN(get_current_cgroup_id), \
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FN(get_local_storage), \
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FN(sk_select_reuseport), \
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FN(skb_ancestor_cgroup_id),
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FN(skb_ancestor_cgroup_id), \
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FN(sk_lookup_tcp), \
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FN(sk_lookup_udp), \
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FN(sk_release),
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/* integer value in 'imm' field of BPF_CALL instruction selects which helper
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* function eBPF program intends to call
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@ -2399,6 +2473,23 @@ struct bpf_sock {
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*/
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};
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struct bpf_sock_tuple {
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union {
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struct {
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__be32 saddr;
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__be32 daddr;
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__be16 sport;
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__be16 dport;
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} ipv4;
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struct {
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__be32 saddr[4];
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__be32 daddr[4];
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__be16 sport;
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__be16 dport;
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} ipv6;
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};
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};
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#define XDP_PACKET_HEADROOM 256
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/* User return codes for XDP prog type.
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@ -153,6 +153,12 @@ static const struct bpf_verifier_ops * const bpf_verifier_ops[] = {
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* PTR_TO_MAP_VALUE, PTR_TO_SOCKET_OR_NULL becomes PTR_TO_SOCKET when the type
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* passes through a NULL-check conditional. For the branch wherein the state is
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* changed to CONST_IMM, the verifier releases the reference.
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*
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* For each helper function that allocates a reference, such as
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* bpf_sk_lookup_tcp(), there is a corresponding release function, such as
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* bpf_sk_release(). When a reference type passes into the release function,
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* the verifier also releases the reference. If any unchecked or unreleased
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* reference remains at the end of the program, the verifier rejects it.
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*/
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/* verifier_state + insn_idx are pushed to stack when branch is encountered */
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@ -300,7 +306,7 @@ static bool arg_type_is_refcounted(enum bpf_arg_type type)
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*/
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static bool is_release_function(enum bpf_func_id func_id)
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{
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return false;
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return func_id == BPF_FUNC_sk_release;
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}
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/* string representation of 'enum bpf_reg_type' */
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@ -58,13 +58,17 @@
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#include <net/busy_poll.h>
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#include <net/tcp.h>
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#include <net/xfrm.h>
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#include <net/udp.h>
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#include <linux/bpf_trace.h>
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#include <net/xdp_sock.h>
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#include <linux/inetdevice.h>
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#include <net/inet_hashtables.h>
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#include <net/inet6_hashtables.h>
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#include <net/ip_fib.h>
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#include <net/flow.h>
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#include <net/arp.h>
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#include <net/ipv6.h>
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#include <net/net_namespace.h>
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#include <linux/seg6_local.h>
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#include <net/seg6.h>
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#include <net/seg6_local.h>
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@ -4813,6 +4817,141 @@ static const struct bpf_func_proto bpf_lwt_seg6_adjust_srh_proto = {
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};
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#endif /* CONFIG_IPV6_SEG6_BPF */
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struct sock *sk_lookup(struct net *net, struct bpf_sock_tuple *tuple,
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struct sk_buff *skb, u8 family, u8 proto)
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{
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int dif = skb->dev->ifindex;
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bool refcounted = false;
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struct sock *sk = NULL;
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if (family == AF_INET) {
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__be32 src4 = tuple->ipv4.saddr;
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__be32 dst4 = tuple->ipv4.daddr;
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int sdif = inet_sdif(skb);
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if (proto == IPPROTO_TCP)
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sk = __inet_lookup(net, &tcp_hashinfo, skb, 0,
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src4, tuple->ipv4.sport,
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dst4, tuple->ipv4.dport,
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dif, sdif, &refcounted);
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else
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sk = __udp4_lib_lookup(net, src4, tuple->ipv4.sport,
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dst4, tuple->ipv4.dport,
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dif, sdif, &udp_table, skb);
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#if IS_ENABLED(CONFIG_IPV6)
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} else {
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struct in6_addr *src6 = (struct in6_addr *)&tuple->ipv6.saddr;
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struct in6_addr *dst6 = (struct in6_addr *)&tuple->ipv6.daddr;
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int sdif = inet6_sdif(skb);
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if (proto == IPPROTO_TCP)
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sk = __inet6_lookup(net, &tcp_hashinfo, skb, 0,
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src6, tuple->ipv6.sport,
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dst6, tuple->ipv6.dport,
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dif, sdif, &refcounted);
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else
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sk = __udp6_lib_lookup(net, src6, tuple->ipv6.sport,
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dst6, tuple->ipv6.dport,
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dif, sdif, &udp_table, skb);
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#endif
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}
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if (unlikely(sk && !refcounted && !sock_flag(sk, SOCK_RCU_FREE))) {
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WARN_ONCE(1, "Found non-RCU, unreferenced socket!");
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sk = NULL;
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}
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return sk;
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}
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/* bpf_sk_lookup performs the core lookup for different types of sockets,
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* taking a reference on the socket if it doesn't have the flag SOCK_RCU_FREE.
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* Returns the socket as an 'unsigned long' to simplify the casting in the
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* callers to satisfy BPF_CALL declarations.
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*/
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static unsigned long
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bpf_sk_lookup(struct sk_buff *skb, struct bpf_sock_tuple *tuple, u32 len,
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u8 proto, u64 netns_id, u64 flags)
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{
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struct net *caller_net;
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struct sock *sk = NULL;
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u8 family = AF_UNSPEC;
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struct net *net;
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family = len == sizeof(tuple->ipv4) ? AF_INET : AF_INET6;
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if (unlikely(family == AF_UNSPEC || netns_id > U32_MAX || flags))
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goto out;
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if (skb->dev)
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caller_net = dev_net(skb->dev);
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else
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caller_net = sock_net(skb->sk);
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if (netns_id) {
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net = get_net_ns_by_id(caller_net, netns_id);
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if (unlikely(!net))
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goto out;
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sk = sk_lookup(net, tuple, skb, family, proto);
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put_net(net);
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} else {
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net = caller_net;
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sk = sk_lookup(net, tuple, skb, family, proto);
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}
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if (sk)
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sk = sk_to_full_sk(sk);
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out:
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return (unsigned long) sk;
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}
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BPF_CALL_5(bpf_sk_lookup_tcp, struct sk_buff *, skb,
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struct bpf_sock_tuple *, tuple, u32, len, u64, netns_id, u64, flags)
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{
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return bpf_sk_lookup(skb, tuple, len, IPPROTO_TCP, netns_id, flags);
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}
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static const struct bpf_func_proto bpf_sk_lookup_tcp_proto = {
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.func = bpf_sk_lookup_tcp,
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.gpl_only = false,
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.pkt_access = true,
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.ret_type = RET_PTR_TO_SOCKET_OR_NULL,
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.arg1_type = ARG_PTR_TO_CTX,
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.arg2_type = ARG_PTR_TO_MEM,
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.arg3_type = ARG_CONST_SIZE,
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.arg4_type = ARG_ANYTHING,
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.arg5_type = ARG_ANYTHING,
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};
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BPF_CALL_5(bpf_sk_lookup_udp, struct sk_buff *, skb,
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struct bpf_sock_tuple *, tuple, u32, len, u64, netns_id, u64, flags)
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{
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return bpf_sk_lookup(skb, tuple, len, IPPROTO_UDP, netns_id, flags);
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}
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static const struct bpf_func_proto bpf_sk_lookup_udp_proto = {
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.func = bpf_sk_lookup_udp,
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.gpl_only = false,
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.pkt_access = true,
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.ret_type = RET_PTR_TO_SOCKET_OR_NULL,
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.arg1_type = ARG_PTR_TO_CTX,
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.arg2_type = ARG_PTR_TO_MEM,
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.arg3_type = ARG_CONST_SIZE,
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.arg4_type = ARG_ANYTHING,
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.arg5_type = ARG_ANYTHING,
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};
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BPF_CALL_1(bpf_sk_release, struct sock *, sk)
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{
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if (!sock_flag(sk, SOCK_RCU_FREE))
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sock_gen_put(sk);
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return 0;
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}
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static const struct bpf_func_proto bpf_sk_release_proto = {
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.func = bpf_sk_release,
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.gpl_only = false,
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.ret_type = RET_INTEGER,
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.arg1_type = ARG_PTR_TO_SOCKET,
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};
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bool bpf_helper_changes_pkt_data(void *func)
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{
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if (func == bpf_skb_vlan_push ||
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@ -5019,6 +5158,12 @@ tc_cls_act_func_proto(enum bpf_func_id func_id, const struct bpf_prog *prog)
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case BPF_FUNC_skb_ancestor_cgroup_id:
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return &bpf_skb_ancestor_cgroup_id_proto;
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#endif
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case BPF_FUNC_sk_lookup_tcp:
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return &bpf_sk_lookup_tcp_proto;
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case BPF_FUNC_sk_lookup_udp:
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return &bpf_sk_lookup_udp_proto;
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case BPF_FUNC_sk_release:
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return &bpf_sk_release_proto;
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default:
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return bpf_base_func_proto(func_id);
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}
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@ -5119,6 +5264,12 @@ sk_skb_func_proto(enum bpf_func_id func_id, const struct bpf_prog *prog)
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return &bpf_sk_redirect_hash_proto;
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case BPF_FUNC_get_local_storage:
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return &bpf_get_local_storage_proto;
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case BPF_FUNC_sk_lookup_tcp:
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return &bpf_sk_lookup_tcp_proto;
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case BPF_FUNC_sk_lookup_udp:
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return &bpf_sk_lookup_udp_proto;
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case BPF_FUNC_sk_release:
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return &bpf_sk_release_proto;
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default:
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return bpf_base_func_proto(func_id);
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}
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@ -2144,6 +2144,77 @@ union bpf_attr {
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* request in the skb.
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* Return
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* 0 on success, or a negative error in case of failure.
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*
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* struct bpf_sock *bpf_sk_lookup_tcp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u32 netns, u64 flags)
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* Description
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* Look for TCP socket matching *tuple*, optionally in a child
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* network namespace *netns*. The return value must be checked,
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* and if non-NULL, released via **bpf_sk_release**\ ().
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*
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* The *ctx* should point to the context of the program, such as
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* the skb or socket (depending on the hook in use). This is used
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* to determine the base network namespace for the lookup.
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*
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* *tuple_size* must be one of:
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*
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* **sizeof**\ (*tuple*\ **->ipv4**)
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* Look for an IPv4 socket.
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* **sizeof**\ (*tuple*\ **->ipv6**)
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* Look for an IPv6 socket.
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*
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* If the *netns* is zero, then the socket lookup table in the
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* netns associated with the *ctx* will be used. For the TC hooks,
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* this in the netns of the device in the skb. For socket hooks,
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* this in the netns of the socket. If *netns* is non-zero, then
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* it specifies the ID of the netns relative to the netns
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* associated with the *ctx*.
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*
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* All values for *flags* are reserved for future usage, and must
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* be left at zero.
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*
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* This helper is available only if the kernel was compiled with
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* **CONFIG_NET** configuration option.
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* Return
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* Pointer to *struct bpf_sock*, or NULL in case of failure.
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*
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* struct bpf_sock *bpf_sk_lookup_udp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u32 netns, u64 flags)
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* Description
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* Look for UDP socket matching *tuple*, optionally in a child
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* network namespace *netns*. The return value must be checked,
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* and if non-NULL, released via **bpf_sk_release**\ ().
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*
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* The *ctx* should point to the context of the program, such as
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* the skb or socket (depending on the hook in use). This is used
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* to determine the base network namespace for the lookup.
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*
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* *tuple_size* must be one of:
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*
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* **sizeof**\ (*tuple*\ **->ipv4**)
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* Look for an IPv4 socket.
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* **sizeof**\ (*tuple*\ **->ipv6**)
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* Look for an IPv6 socket.
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*
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* If the *netns* is zero, then the socket lookup table in the
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* netns associated with the *ctx* will be used. For the TC hooks,
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* this in the netns of the device in the skb. For socket hooks,
|
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* this in the netns of the socket. If *netns* is non-zero, then
|
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* it specifies the ID of the netns relative to the netns
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* associated with the *ctx*.
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*
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* All values for *flags* are reserved for future usage, and must
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* be left at zero.
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*
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* This helper is available only if the kernel was compiled with
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* **CONFIG_NET** configuration option.
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* Return
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* Pointer to *struct bpf_sock*, or NULL in case of failure.
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*
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* int bpf_sk_release(struct bpf_sock *sk)
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* Description
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* Release the reference held by *sock*. *sock* must be a non-NULL
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* pointer that was returned from bpf_sk_lookup_xxx\ ().
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* Return
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* 0 on success, or a negative error in case of failure.
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*/
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#define __BPF_FUNC_MAPPER(FN) \
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FN(unspec), \
|
||||
@ -2229,7 +2300,10 @@ union bpf_attr {
|
||||
FN(get_current_cgroup_id), \
|
||||
FN(get_local_storage), \
|
||||
FN(sk_select_reuseport), \
|
||||
FN(skb_ancestor_cgroup_id),
|
||||
FN(skb_ancestor_cgroup_id), \
|
||||
FN(sk_lookup_tcp), \
|
||||
FN(sk_lookup_udp), \
|
||||
FN(sk_release),
|
||||
|
||||
/* integer value in 'imm' field of BPF_CALL instruction selects which helper
|
||||
* function eBPF program intends to call
|
||||
@ -2399,6 +2473,23 @@ struct bpf_sock {
|
||||
*/
|
||||
};
|
||||
|
||||
struct bpf_sock_tuple {
|
||||
union {
|
||||
struct {
|
||||
__be32 saddr;
|
||||
__be32 daddr;
|
||||
__be16 sport;
|
||||
__be16 dport;
|
||||
} ipv4;
|
||||
struct {
|
||||
__be32 saddr[4];
|
||||
__be32 daddr[4];
|
||||
__be16 sport;
|
||||
__be16 dport;
|
||||
} ipv6;
|
||||
};
|
||||
};
|
||||
|
||||
#define XDP_PACKET_HEADROOM 256
|
||||
|
||||
/* User return codes for XDP prog type.
|
||||
|
@ -143,6 +143,18 @@ static unsigned long long (*bpf_skb_cgroup_id)(void *ctx) =
|
||||
(void *) BPF_FUNC_skb_cgroup_id;
|
||||
static unsigned long long (*bpf_skb_ancestor_cgroup_id)(void *ctx, int level) =
|
||||
(void *) BPF_FUNC_skb_ancestor_cgroup_id;
|
||||
static struct bpf_sock *(*bpf_sk_lookup_tcp)(void *ctx,
|
||||
struct bpf_sock_tuple *tuple,
|
||||
int size, unsigned int netns_id,
|
||||
unsigned long long flags) =
|
||||
(void *) BPF_FUNC_sk_lookup_tcp;
|
||||
static struct bpf_sock *(*bpf_sk_lookup_udp)(void *ctx,
|
||||
struct bpf_sock_tuple *tuple,
|
||||
int size, unsigned int netns_id,
|
||||
unsigned long long flags) =
|
||||
(void *) BPF_FUNC_sk_lookup_udp;
|
||||
static int (*bpf_sk_release)(struct bpf_sock *sk) =
|
||||
(void *) BPF_FUNC_sk_release;
|
||||
|
||||
/* llvm builtin functions that eBPF C program may use to
|
||||
* emit BPF_LD_ABS and BPF_LD_IND instructions
|
||||
|
Loading…
Reference in New Issue
Block a user