@@ -710,6 +710,11 @@ static int cmp_nla_srh(struct seg6_local_lwt *a, struct seg6_local_lwt *b)
return memcmp(a->srh, b->srh, len);
}
+static void destroy_attr_srh(struct seg6_local_lwt *slwt)
+{
+ kfree(slwt->srh);
+}
+
static int parse_nla_table(struct nlattr **attrs, struct seg6_local_lwt *slwt)
{
slwt->table = nla_get_u32(attrs[SEG6_LOCAL_TABLE]);
@@ -901,16 +906,30 @@ static int cmp_nla_bpf(struct seg6_local_lwt *a, struct seg6_local_lwt *b)
return strcmp(a->bpf.name, b->bpf.name);
}
+static void destroy_attr_bpf(struct seg6_local_lwt *slwt)
+{
+ kfree(slwt->bpf.name);
+ if (slwt->bpf.prog)
+ bpf_prog_put(slwt->bpf.prog);
+}
+
struct seg6_action_param {
int (*parse)(struct nlattr **attrs, struct seg6_local_lwt *slwt);
int (*put)(struct sk_buff *skb, struct seg6_local_lwt *slwt);
int (*cmp)(struct seg6_local_lwt *a, struct seg6_local_lwt *b);
+
+ /* optional destroy() callback useful for releasing resources which
+ * have been previously acquired in the corresponding parse()
+ * function.
+ */
+ void (*destroy)(struct seg6_local_lwt *slwt);
};
static struct seg6_action_param seg6_action_params[SEG6_LOCAL_MAX + 1] = {
[SEG6_LOCAL_SRH] = { .parse = parse_nla_srh,
.put = put_nla_srh,
- .cmp = cmp_nla_srh },
+ .cmp = cmp_nla_srh,
+ .destroy = destroy_attr_srh },
[SEG6_LOCAL_TABLE] = { .parse = parse_nla_table,
.put = put_nla_table,
@@ -934,10 +953,49 @@ static struct seg6_action_param seg6_action_params[SEG6_LOCAL_MAX + 1] = {
[SEG6_LOCAL_BPF] = { .parse = parse_nla_bpf,
.put = put_nla_bpf,
- .cmp = cmp_nla_bpf },
+ .cmp = cmp_nla_bpf,
+ .destroy = destroy_attr_bpf },
};
+/* call the destroy() callback (if available) for each set attribute in
+ * @slwt, starting from the first attribute up to the @max_parsed (excluded)
+ * attribute.
+ */
+static void __destroy_attrs(int max_parsed, struct seg6_local_lwt *slwt)
+{
+ unsigned long attrs = slwt->desc->attrs;
+ struct seg6_action_param *param;
+ int i;
+
+ /* Every required seg6local attribute is identified by an ID which is
+ * encoded as a flag (i.e: 1 << ID) in the 'attrs' bitmask;
+ *
+ * We scan the 'attrs' bitmask, starting from the first attribute
+ * up to the @max_parsed (excluded) attribute.
+ * For each set attribute, we retrieve the corresponding destroy()
+ * callback. If the callback is not available, then we skip to the next
+ * attribute; otherwise, we call the destroy() callback.
+ */
+ for (i = 0; i < max_parsed; ++i) {
+ if (!(attrs & (1 << i)))
+ continue;
+
+ param = &seg6_action_params[i];
+
+ if (param->destroy)
+ param->destroy(slwt);
+ }
+}
+
+/* release all the resources that may have been acquired during parsing
+ * operations.
+ */
+static void destroy_attrs(struct seg6_local_lwt *slwt)
+{
+ __destroy_attrs(SEG6_LOCAL_MAX + 1, slwt);
+}
+
static int parse_nla_action(struct nlattr **attrs, struct seg6_local_lwt *slwt)
{
struct seg6_action_param *param;
@@ -963,11 +1021,19 @@ static int parse_nla_action(struct nlattr **attrs, struct seg6_local_lwt *slwt)
err = param->parse(attrs, slwt);
if (err < 0)
- return err;
+ goto parse_err;
}
}
return 0;
+
+parse_err:
+ /* release any resource that may have been acquired during the i-1
+ * parse() operations.
+ */
+ __destroy_attrs(i, slwt);
+
+ return err;
}
static int seg6_local_build_state(struct net *net, struct nlattr *nla,
@@ -1012,7 +1078,6 @@ static int seg6_local_build_state(struct net *net, struct nlattr *nla,
return 0;
out_free:
- kfree(slwt->srh);
kfree(newts);
return err;
}
@@ -1021,12 +1086,7 @@ static void seg6_local_destroy_state(struct lwtunnel_state *lwt)
{
struct seg6_local_lwt *slwt = seg6_local_lwtunnel(lwt);
- kfree(slwt->srh);
-
- if (slwt->desc->attrs & (1 << SEG6_LOCAL_BPF)) {
- kfree(slwt->bpf.name);
- bpf_prog_put(slwt->bpf.prog);
- }
+ destroy_attrs(slwt);
return;
}
Depending on the attribute (i.e.: SEG6_LOCAL_SRH, SEG6_LOCAL_TABLE, etc), the parse() callback performs some validity checks on the provided input and updates the tunnel state (slwt) with the result of the parsing operation. However, an attribute may also need to reserve some additional resources (i.e.: memory or setting up an eBPF program) in the parse() callback to complete the parsing operation. The parse() callbacks are invoked by the parse_nla_action() for each attribute belonging to a specific behavior. Given a behavior with N attributes, if the parsing of the i-th attribute fails, the parse_nla_action() returns immediately with an error. Nonetheless, the resources acquired during the parsing of the i-1 attributes are not freed by the parse_nla_action(). Attributes which acquire resources must release them *in an explicit way* in both the seg6_local_{build/destroy}_state(). However, adding a new attribute of this type requires changes to seg6_local_{build/destroy}_state() to release the resources correctly. The seg6local infrastructure still lacks a simple and structured way to release the resources acquired in the parse() operations. We introduced a new callback in the struct seg6_action_param named destroy(). This callback releases any resource which may have been acquired in the parse() counterpart. Each attribute may or may not implement the destroy() callback depending on whether it needs to free some acquired resources. The destroy() callback comes with several of advantages: 1) we can have many attributes as we want for a given behavior with no need to explicitly free the taken resources; 2) As in case of the seg6_local_build_state(), the seg6_local_destroy_state() does not need to handle the release of resources directly. Indeed, it calls the destroy_attrs() function which is in charge of calling the destroy() callback for every set attribute. We do not need to patch seg6_local_{build/destroy}_state() anymore as we add new attributes; 3) the code is more readable and better structured. Indeed, all the information needed to handle a given attribute are contained in only one place; 4) it facilitates the integration with new features introduced in further patches. Signed-off-by: Andrea Mayer <andrea.mayer@uniroma2.it> --- net/ipv6/seg6_local.c | 80 +++++++++++++++++++++++++++++++++++++------ 1 file changed, 70 insertions(+), 10 deletions(-)