#include <loc/compat.h>
#include <loc/country.h>
#include <loc/network.h>
+#include <loc/network-list.h>
#include <loc/private.h>
struct loc_network {
struct loc_ctx* ctx;
int refcount;
+ int family;
struct in6_addr first_address;
struct in6_addr last_address;
unsigned int prefix;
return a;
}
+static struct in6_addr address_increment(const struct in6_addr* address) {
+ struct in6_addr a = *address;
+
+ for (int octet = 15; octet >= 0; octet--) {
+ if (a.s6_addr[octet] < 255) {
+ a.s6_addr[octet]++;
+ break;
+ } else {
+ a.s6_addr[octet] = 0;
+ }
+ }
+
+ return a;
+}
+
LOC_EXPORT int loc_network_new(struct loc_ctx* ctx, struct loc_network** network,
struct in6_addr* address, unsigned int prefix) {
// Address cannot be unspecified
n->first_address = make_first_address(address, &bitmask);
n->last_address = make_last_address(&n->first_address, &bitmask);
+ // Set family
+ if (IN6_IS_ADDR_V4MAPPED(&n->first_address))
+ n->family = AF_INET;
+ else
+ n->family = AF_INET6;
+
DEBUG(n->ctx, "Network allocated at %p\n", n);
*network = n;
return 0;
LOC_EXPORT int loc_network_new_from_string(struct loc_ctx* ctx, struct loc_network** network,
const char* address_string) {
struct in6_addr first_address;
- unsigned int prefix = 0;
char* prefix_string;
- int r = 1;
+ unsigned int prefix = 128;
+ int r = -EINVAL;
+
+ DEBUG(ctx, "Attempting to parse network %s\n", address_string);
// Make a copy of the string to work on it
char* buffer = strdup(address_string);
// Split address and prefix
address_string = strsep(&prefix_string, "/");
- // Did we find a prefix?
+ DEBUG(ctx, " Split into address = %s, prefix = %s\n", address_string, prefix_string);
+
+ // Parse the address
+ r = loc_parse_address(ctx, address_string, &first_address);
+ if (r) {
+ DEBUG(ctx, "The address could not be parsed\n");
+ goto FAIL;
+ }
+
+ // If a prefix was given, we will try to parse it
if (prefix_string) {
// Convert prefix to integer
prefix = strtol(prefix_string, NULL, 10);
- if (prefix) {
- // Parse the address
- r = loc_parse_address(ctx, address_string, &first_address);
-
- // Map the prefix to IPv6 if needed
- if (IN6_IS_ADDR_V4MAPPED(&first_address))
- prefix += 96;
+ if (!prefix) {
+ DEBUG(ctx, "The prefix was not parsable: %s\n", prefix_string);
+ goto FAIL;
}
+
+ // Map the prefix to IPv6 if needed
+ if (IN6_IS_ADDR_V4MAPPED(&first_address))
+ prefix += 96;
}
+FAIL:
// Free temporary buffer
free(buffer);
- if (r == 0) {
- r = loc_network_new(ctx, network, &first_address, prefix);
- }
+ // Exit if the parsing was unsuccessful
+ if (r)
+ return r;
- return r;
+ // Create a new network
+ return loc_network_new(ctx, network, &first_address, prefix);
}
LOC_EXPORT struct loc_network* loc_network_ref(struct loc_network* network) {
unsigned int prefix = network->prefix;
- int family = loc_network_address_family(network);
- switch (family) {
+ switch (network->family) {
case AF_INET6:
r = format_ipv6_address(&network->first_address, string, length);
break;
}
LOC_EXPORT int loc_network_address_family(struct loc_network* network) {
- if (IN6_IS_ADDR_V4MAPPED(&network->first_address))
- return AF_INET;
+ return network->family;
+}
+
+LOC_EXPORT unsigned int loc_network_prefix(struct loc_network* network) {
+ switch (network->family) {
+ case AF_INET6:
+ return network->prefix;
+
+ case AF_INET:
+ return network->prefix - 96;
+ }
+
+ return 0;
+}
+
+static char* loc_network_format_address(struct loc_network* network, const struct in6_addr* address) {
+ const size_t length = INET6_ADDRSTRLEN;
+
+ char* string = malloc(length);
+ if (!string)
+ return NULL;
+
+ int r = 0;
+
+ switch (network->family) {
+ case AF_INET6:
+ r = format_ipv6_address(address, string, length);
+ break;
+
+ case AF_INET:
+ r = format_ipv4_address(address, string, length);
+ break;
+
+ default:
+ r = -1;
+ break;
+ }
+
+ if (r) {
+ ERROR(network->ctx, "Could not format IP address to string: %s\n", strerror(errno));
+ free(string);
+
+ return NULL;
+ }
+
+ return string;
+}
+
+LOC_EXPORT const struct in6_addr* loc_network_get_first_address(struct loc_network* network) {
+ return &network->first_address;
+}
+
+LOC_EXPORT char* loc_network_format_first_address(struct loc_network* network) {
+ return loc_network_format_address(network, &network->first_address);
+}
+
+LOC_EXPORT const struct in6_addr* loc_network_get_last_address(struct loc_network* network) {
+ return &network->last_address;
+}
- return AF_INET6;
+LOC_EXPORT char* loc_network_format_last_address(struct loc_network* network) {
+ return loc_network_format_address(network, &network->last_address);
}
LOC_EXPORT int loc_network_match_address(struct loc_network* network, const struct in6_addr* address) {
// Address must be larger than the start address
if (in6_addr_cmp(&network->first_address, address) > 0)
- return 1;
+ return 0;
// Address must be smaller than the last address
if (in6_addr_cmp(&network->last_address, address) < 0)
- return 1;
+ return 0;
// The address is inside this network
- return 0;
+ return 1;
}
LOC_EXPORT const char* loc_network_get_country_code(struct loc_network* network) {
return loc_network_has_flag(network, flag);
}
-LOC_EXPORT int loc_network_is_subnet_of(struct loc_network* self, struct loc_network* other) {
+LOC_EXPORT int loc_network_cmp(struct loc_network* self, struct loc_network* other) {
+ // Compare address
+ int r = in6_addr_cmp(&self->first_address, &other->first_address);
+ if (r)
+ return r;
+
+ // Compare prefix
+ if (self->prefix > other->prefix)
+ return 1;
+ else if (self->prefix < other->prefix)
+ return -1;
+
+ // Both networks are equal
+ return 0;
+}
+
+LOC_EXPORT int loc_network_overlaps(struct loc_network* self, struct loc_network* other) {
+ // Either of the start addresses must be in the other subnet
+ if (loc_network_match_address(self, &other->first_address))
+ return 1;
+
+ if (loc_network_match_address(other, &self->first_address))
+ return 1;
+
+ // Or either of the end addresses is in the other subnet
+ if (loc_network_match_address(self, &other->last_address))
+ return 1;
+
+ if (loc_network_match_address(other, &self->last_address))
+ return 1;
+
+ return 0;
+}
+
+LOC_EXPORT int loc_network_is_subnet(struct loc_network* self, struct loc_network* other) {
+ // The prefix must be smaller (this avoids the more complex comparisons later)
+ if (self->prefix > other->prefix)
+ return 0;
+
// If the start address of the other network is smaller than this network,
// it cannot be a subnet.
- if (in6_addr_cmp(&self->first_address, &other->first_address) < 0)
+ if (in6_addr_cmp(&self->first_address, &other->first_address) > 0)
return 0;
// If the end address of the other network is greater than this network,
// it cannot be a subnet.
- if (in6_addr_cmp(&self->last_address, &other->last_address) > 0)
+ if (in6_addr_cmp(&self->last_address, &other->last_address) < 0)
return 0;
return 1;
}
+LOC_EXPORT int loc_network_subnets(struct loc_network* network,
+ struct loc_network** subnet1, struct loc_network** subnet2) {
+ int r;
+ *subnet1 = NULL;
+ *subnet2 = NULL;
+
+ // New prefix length
+ unsigned int prefix = network->prefix + 1;
+
+ // Check if the new prefix is valid
+ if (valid_prefix(&network->first_address, prefix))
+ return -1;
+
+ // Create the first half of the network
+ r = loc_network_new(network->ctx, subnet1, &network->first_address, prefix);
+ if (r)
+ return r;
+
+ // The next subnet starts after the first one
+ struct in6_addr first_address = address_increment(&(*subnet1)->last_address);
+
+ // Create the second half of the network
+ r = loc_network_new(network->ctx, subnet2, &first_address, prefix);
+ if (r)
+ return r;
+
+ // Copy country code
+ const char* country_code = loc_network_get_country_code(network);
+ if (country_code) {
+ loc_network_set_country_code(*subnet1, country_code);
+ loc_network_set_country_code(*subnet2, country_code);
+ }
+
+ // Copy ASN
+ uint32_t asn = loc_network_get_asn(network);
+ if (asn) {
+ loc_network_set_asn(*subnet1, asn);
+ loc_network_set_asn(*subnet2, asn);
+ }
+
+ // Copy flags
+ loc_network_set_flag(*subnet1, network->flags);
+ loc_network_set_flag(*subnet2, network->flags);
+
+ return 0;
+}
+
+static int __loc_network_exclude(struct loc_network* network,
+ struct loc_network* other, struct loc_network_list* list) {
+ struct loc_network* subnet1 = NULL;
+ struct loc_network* subnet2 = NULL;
+
+ int r = loc_network_subnets(network, &subnet1, &subnet2);
+ if (r)
+ goto ERROR;
+
+ if (loc_network_cmp(other, subnet1) == 0) {
+ r = loc_network_list_push(list, subnet2);
+ if (r)
+ goto ERROR;
+
+ } else if (loc_network_cmp(other, subnet2) == 0) {
+ r = loc_network_list_push(list, subnet1);
+ if (r)
+ goto ERROR;
+
+ } else if (loc_network_is_subnet(subnet1, other)) {
+ r = loc_network_list_push(list, subnet2);
+ if (r)
+ goto ERROR;
+
+ r = __loc_network_exclude(subnet1, other, list);
+ if (r)
+ goto ERROR;
+
+ } else if (loc_network_is_subnet(subnet2, other)) {
+ r = loc_network_list_push(list, subnet1);
+ if (r)
+ goto ERROR;
+
+ r = __loc_network_exclude(subnet2, other, list);
+ if (r)
+ goto ERROR;
+
+ } else {
+ ERROR(network->ctx, "We should never get here\n");
+ r = 1;
+ goto ERROR;
+ }
+
+ERROR:
+ if (subnet1)
+ loc_network_unref(subnet1);
+
+ if (subnet2)
+ loc_network_unref(subnet2);
+
+ return r;
+}
+
+static int __loc_network_exclude_to_list(struct loc_network* self,
+ struct loc_network* other, struct loc_network_list* list) {
+ // Other must be a subnet of self
+ if (!loc_network_is_subnet(self, other)) {
+ DEBUG(self->ctx, "Network %p is not contained in network %p\n", other, self);
+
+ // Exit silently
+ return 0;
+ }
+
+ // We cannot perform this operation if both networks equal
+ if (loc_network_cmp(self, other) == 0) {
+ DEBUG(self->ctx, "Networks %p and %p are equal\n", self, other);
+
+ // Exit silently
+ return 0;
+ }
+
+ return __loc_network_exclude(self, other, list);
+}
+
+LOC_EXPORT struct loc_network_list* loc_network_exclude(
+ struct loc_network* self, struct loc_network* other) {
+ struct loc_network_list* list;
+
+#ifdef ENABLE_DEBUG
+ char* n1 = loc_network_str(self);
+ char* n2 = loc_network_str(other);
+
+ DEBUG(self->ctx, "Returning %s excluding %s...\n", n1, n2);
+
+ free(n1);
+ free(n2);
+#endif
+
+ // Create a new list with the result
+ int r = loc_network_list_new(self->ctx, &list);
+ if (r) {
+ ERROR(self->ctx, "Could not create network list: %d\n", r);
+
+ return NULL;
+ }
+
+ r = __loc_network_exclude_to_list(self, other, list);
+ if (r) {
+ loc_network_list_unref(list);
+
+ return NULL;
+ }
+
+ // Return the result
+ return list;
+}
+
+LOC_EXPORT struct loc_network_list* loc_network_exclude_list(
+ struct loc_network* network, struct loc_network_list* list) {
+ struct loc_network_list* to_check;
+
+ // Create a new list with all networks to look at
+ int r = loc_network_list_new(network->ctx, &to_check);
+ if (r)
+ return NULL;
+
+ struct loc_network* subnet = NULL;
+ struct loc_network_list* subnets = NULL;
+
+ for (unsigned int i = 0; i < loc_network_list_size(list); i++) {
+ subnet = loc_network_list_get(list, i);
+
+ // Find all excluded networks
+ if (!loc_network_list_contains(to_check, subnet)) {
+ r = __loc_network_exclude_to_list(network, subnet, to_check);
+ if (r) {
+ loc_network_list_unref(to_check);
+ loc_network_unref(subnet);
+
+ return NULL;
+ }
+ }
+
+ // Cleanup
+ loc_network_unref(subnet);
+ }
+
+ r = loc_network_list_new(network->ctx, &subnets);
+ if (r) {
+ loc_network_list_unref(to_check);
+ return NULL;
+ }
+
+ off_t smallest_subnet = 0;
+
+ while (!loc_network_list_empty(to_check)) {
+ struct loc_network* subnet_to_check = loc_network_list_pop_first(to_check);
+
+ // Check whether the subnet to check is part of the input list
+ if (loc_network_list_contains(list, subnet_to_check)) {
+ loc_network_unref(subnet_to_check);
+ continue;
+ }
+
+ // Marks whether this subnet passed all checks
+ int passed = 1;
+
+ for (unsigned int i = smallest_subnet; i < loc_network_list_size(list); i++) {
+ subnet = loc_network_list_get(list, i);
+
+ // Drop this subnet if is a subnet of another subnet
+ if (loc_network_is_subnet(subnet, subnet_to_check)) {
+ passed = 0;
+ loc_network_unref(subnet);
+ break;
+ }
+
+ // Break it down if it overlaps
+ if (loc_network_overlaps(subnet, subnet_to_check)) {
+ passed = 0;
+
+ __loc_network_exclude_to_list(subnet_to_check, subnet, to_check);
+
+ loc_network_unref(subnet);
+ break;
+ }
+
+ // If the subnet is strictly greater, we do not need to continue the search
+ r = loc_network_cmp(subnet, subnet_to_check);
+ if (r > 0) {
+ loc_network_unref(subnet);
+ break;
+
+ // If it is strictly smaller, we can continue the search from here next
+ // time because all networks that are to be checked can only be larger
+ // than this one.
+ } else if (r < 0) {
+ smallest_subnet = i;
+ }
+
+ loc_network_unref(subnet);
+ }
+
+ if (passed) {
+ r = loc_network_list_push(subnets, subnet_to_check);
+ }
+
+ loc_network_unref(subnet_to_check);
+ }
+
+ loc_network_list_unref(to_check);
+
+ return subnets;
+}
+
LOC_EXPORT int loc_network_to_database_v1(struct loc_network* network, struct loc_database_network_v1* dbobj) {
// Add country code
loc_country_code_copy(dbobj->country_code, network->country_code);
struct loc_network* network;
};
-LOC_EXPORT int loc_network_tree_new(struct loc_ctx* ctx, struct loc_network_tree** tree) {
+int loc_network_tree_new(struct loc_ctx* ctx, struct loc_network_tree** tree) {
struct loc_network_tree* t = calloc(1, sizeof(*t));
if (!t)
return -ENOMEM;
return 0;
}
-LOC_EXPORT struct loc_network_tree_node* loc_network_tree_get_root(struct loc_network_tree* tree) {
+struct loc_network_tree_node* loc_network_tree_get_root(struct loc_network_tree* tree) {
return loc_network_tree_node_ref(tree->root);
}
return 0;
}
-LOC_EXPORT int loc_network_tree_walk(struct loc_network_tree* tree,
+int loc_network_tree_walk(struct loc_network_tree* tree,
int(*filter_callback)(struct loc_network* network, void* data),
int(*callback)(struct loc_network* network, void* data), void* data) {
return __loc_network_tree_walk(tree->ctx, tree->root, filter_callback, callback, data);
free(tree);
}
-LOC_EXPORT struct loc_network_tree* loc_network_tree_unref(struct loc_network_tree* tree) {
+struct loc_network_tree* loc_network_tree_unref(struct loc_network_tree* tree) {
if (--tree->refcount > 0)
return tree;
return 0;
}
-LOC_EXPORT int loc_network_tree_dump(struct loc_network_tree* tree) {
+int loc_network_tree_dump(struct loc_network_tree* tree) {
DEBUG(tree->ctx, "Dumping network tree at %p\n", tree);
return loc_network_tree_walk(tree, NULL, __loc_network_tree_dump, NULL);
}
-LOC_EXPORT int loc_network_tree_add_network(struct loc_network_tree* tree, struct loc_network* network) {
+int loc_network_tree_add_network(struct loc_network_tree* tree, struct loc_network* network) {
DEBUG(tree->ctx, "Adding network %p to tree %p\n", network, tree);
struct loc_network_tree_node* node = loc_network_tree_get_path(tree,
return 0;
}
-LOC_EXPORT size_t loc_network_tree_count_networks(struct loc_network_tree* tree) {
+size_t loc_network_tree_count_networks(struct loc_network_tree* tree) {
size_t counter = 0;
int r = loc_network_tree_walk(tree, NULL, __loc_network_tree_count, &counter);
return counter;
}
-LOC_EXPORT size_t loc_network_tree_count_nodes(struct loc_network_tree* tree) {
+size_t loc_network_tree_count_nodes(struct loc_network_tree* tree) {
return __loc_network_tree_count_nodes(tree->root);
}
-LOC_EXPORT int loc_network_tree_node_new(struct loc_ctx* ctx, struct loc_network_tree_node** node) {
+int loc_network_tree_node_new(struct loc_ctx* ctx, struct loc_network_tree_node** node) {
struct loc_network_tree_node* n = calloc(1, sizeof(*n));
if (!n)
return -ENOMEM;
return 0;
}
-LOC_EXPORT struct loc_network_tree_node* loc_network_tree_node_ref(struct loc_network_tree_node* node) {
+struct loc_network_tree_node* loc_network_tree_node_ref(struct loc_network_tree_node* node) {
if (node)
node->refcount++;
free(node);
}
-LOC_EXPORT struct loc_network_tree_node* loc_network_tree_node_unref(struct loc_network_tree_node* node) {
+struct loc_network_tree_node* loc_network_tree_node_unref(struct loc_network_tree_node* node) {
if (!node)
return NULL;
return NULL;
}
-LOC_EXPORT struct loc_network_tree_node* loc_network_tree_node_get(struct loc_network_tree_node* node, unsigned int index) {
+struct loc_network_tree_node* loc_network_tree_node_get(struct loc_network_tree_node* node, unsigned int index) {
if (index == 0)
node = node->zero;
else
return loc_network_tree_node_ref(node);
}
-LOC_EXPORT int loc_network_tree_node_is_leaf(struct loc_network_tree_node* node) {
+int loc_network_tree_node_is_leaf(struct loc_network_tree_node* node) {
return (!!node->network);
}
-LOC_EXPORT struct loc_network* loc_network_tree_node_get_network(struct loc_network_tree_node* node) {
+struct loc_network* loc_network_tree_node_get_network(struct loc_network_tree_node* node) {
return loc_network_ref(node->network);
}