.max_entries = 1,
};
+struct bpf_map_def SEC("maps") sock_apply_bytes = {
+ .type = BPF_MAP_TYPE_ARRAY,
+ .key_size = sizeof(int),
+ .value_size = sizeof(int),
+ .max_entries = 1
+};
+
SEC("sk_skb1")
int bpf_prog1(struct __sk_buff *skb)
{
SEC("sk_msg1")
int bpf_prog4(struct sk_msg_md *msg)
{
+ int *bytes, zero = 0;
+
+ bytes = bpf_map_lookup_elem(&sock_apply_bytes, &zero);
+ if (bytes)
+ bpf_msg_apply_bytes(msg, *bytes);
return SK_PASS;
}
{
void *data_end = (void *)(long) msg->data_end;
void *data = (void *)(long) msg->data;
+ int *bytes, err = 0, zero = 0;
- bpf_printk("sk_msg2: data length %i\n", (__u32)data_end - (__u32)data);
+ bytes = bpf_map_lookup_elem(&sock_apply_bytes, &zero);
+ if (bytes)
+ err = bpf_msg_apply_bytes(msg, *bytes);
+ bpf_printk("sk_msg2: data length %i err %i\n",
+ (__u64)data_end - (__u64)data, err);
return SK_PASS;
}
{
void *data_end = (void *)(long) msg->data_end;
void *data = (void *)(long) msg->data;
- int ret = 0;
+ int *bytes, zero = 0;
- return bpf_msg_redirect_map(msg, &sock_map_redir, ret, 0);
+ bytes = bpf_map_lookup_elem(&sock_apply_bytes, &zero);
+ if (bytes)
+ bpf_msg_apply_bytes(msg, *bytes);
+ return bpf_msg_redirect_map(msg, &sock_map_redir, zero, 0);
}
SEC("sk_msg4")
{
void *data_end = (void *)(long) msg->data_end;
void *data = (void *)(long) msg->data;
- int ret = 0;
+ int *bytes, err = 0, zero = 0;
+
+ bytes = bpf_map_lookup_elem(&sock_apply_bytes, &zero);
+ if (bytes)
+ err = bpf_msg_apply_bytes(msg, *bytes);
+ bpf_printk("sk_msg3: redirect(%iB) err=%i\n",
+ (__u64)data_end - (__u64)data, err);
+ return bpf_msg_redirect_map(msg, &sock_map_redir, zero, 0);
+}
- bpf_printk("sk_msg3: redirect(%iB)\n", (__u32)data_end - (__u32)data);
- return bpf_msg_redirect_map(msg, &sock_map_redir, ret, 0);
+SEC("sk_msg5")
+int bpf_prog8(struct sk_msg_md *msg)
+{
+ void *data_end = (void *)(long) msg->data_end;
+ void *data = (void *)(long) msg->data;
+ int ret = 0, *bytes, zero = 0;
+
+ bytes = bpf_map_lookup_elem(&sock_apply_bytes, &zero);
+ if (bytes) {
+ ret = bpf_msg_apply_bytes(msg, *bytes);
+ if (ret)
+ return SK_DROP;
+ } else {
+ return SK_DROP;
+ }
+ return SK_PASS;
}
char _license[] SEC("license") = "GPL";
int txmsg_noisy;
int txmsg_redir;
int txmsg_redir_noisy;
+int txmsg_apply;
static const struct option long_options[] = {
{"help", no_argument, NULL, 'h' },
{"txmsg_noisy", no_argument, &txmsg_noisy, 1 },
{"txmsg_redir", no_argument, &txmsg_redir, 1 },
{"txmsg_redir_noisy", no_argument, &txmsg_redir_noisy, 1},
+ {"txmsg_apply", required_argument, NULL, 'a'},
{0, 0, NULL, 0 }
};
while ((opt = getopt_long(argc, argv, ":dhvc:r:i:l:t:",
long_options, &longindex)) != -1) {
switch (opt) {
- /* Cgroup configuration */
+ case 'a':
+ txmsg_apply = atoi(optarg);
+ break;
case 'c':
cg_fd = open(optarg, O_DIRECTORY, O_RDONLY);
if (cg_fd < 0) {
tx_prog_fd = prog_fd[5];
else if (txmsg_redir_noisy)
tx_prog_fd = prog_fd[6];
+ else if (txmsg_apply)
+ tx_prog_fd = prog_fd[7];
else
tx_prog_fd = 0;
err, strerror(errno));
return err;
}
+
+ if (txmsg_apply) {
+ err = bpf_map_update_elem(map_fd[3],
+ &i, &txmsg_apply, BPF_ANY);
+ if (err) {
+ fprintf(stderr,
+ "ERROR: bpf_map_update_elem (apply_bytes): %d (%s\n",
+ err, strerror(errno));
+ return err;
+ }
+ }
}
if (test == PING_PONG)
err = forever_ping_pong(rate, &options);