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1137 lines
29 KiB
1137 lines
29 KiB
/* |
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* lib/route/addr.c Addresses |
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* |
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* This library is free software; you can redistribute it and/or |
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* modify it under the terms of the GNU Lesser General Public |
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* License as published by the Free Software Foundation version 2.1 |
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* of the License. |
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* |
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* Copyright (c) 2003-2012 Thomas Graf <tgraf@suug.ch> |
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* Copyright (c) 2003-2006 Baruch Even <baruch@ev-en.org>, |
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* Mediatrix Telecom, inc. <ericb@mediatrix.com> |
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*/ |
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|
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/** |
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* @ingroup rtnl |
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* @defgroup rtaddr Addresses |
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* @brief |
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* |
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* @note The maximum size of an address label is IFNAMSIZ. |
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* |
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* @note The address may not contain a prefix length if the peer address |
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* has been specified already. |
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* |
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* @par 1) Address Addition |
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* @code |
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* // Allocate an empty address object to be filled out with the attributes |
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* // of the new address. |
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* struct rtnl_addr *addr = rtnl_addr_alloc(); |
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* |
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* // Fill out the mandatory attributes of the new address. Setting the |
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* // local address will automatically set the address family and the |
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* // prefix length to the correct values. |
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* rtnl_addr_set_ifindex(addr, ifindex); |
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* rtnl_addr_set_local(addr, local_addr); |
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* |
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* // The label of the address can be specified, currently only supported |
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* // by IPv4 and DECnet. |
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* rtnl_addr_set_label(addr, "mylabel"); |
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* |
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* // The peer address can be specified if necessary, in either case a peer |
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* // address will be sent to the kernel in order to fullfil the interface |
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* // requirements. If none is set, it will equal the local address. |
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* // Note: Real peer addresses are only supported by IPv4 for now. |
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* rtnl_addr_set_peer(addr, peer_addr); |
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* |
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* // In case you want to have the address have a scope other than global |
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* // it may be overwritten using rtnl_addr_set_scope(). The scope currently |
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* // cannot be set for IPv6 addresses. |
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* rtnl_addr_set_scope(addr, rtnl_str2scope("site")); |
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* |
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* // Broadcast address may be specified using the relevant |
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* // functions, the address family will be verified if one of the other |
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* // addresses has been set already. Currently only works for IPv4. |
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* rtnl_addr_set_broadcast(addr, broadcast_addr); |
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* |
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* // Build the netlink message and send it to the kernel, the operation will |
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* // block until the operation has been completed. Alternatively the required |
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* // netlink message can be built using rtnl_addr_build_add_request() to be |
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* // sent out using nl_send_auto_complete(). |
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* rtnl_addr_add(sk, addr, 0); |
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* |
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* // Free the memory |
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* rtnl_addr_put(addr); |
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* @endcode |
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* |
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* @par 2) Address Deletion |
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* @code |
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* // Allocate an empty address object to be filled out with the attributes |
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* // matching the address to be deleted. Alternatively a fully equipped |
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* // address object out of a cache can be used instead. |
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* struct rtnl_addr *addr = rtnl_addr_alloc(); |
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* |
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* // The only mandatory parameter besides the address family is the interface |
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* // index the address is on, i.e. leaving out all other parameters will |
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* // result in all addresses of the specified address family interface tuple |
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* // to be deleted. |
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* rtnl_addr_set_ifindex(addr, ifindex); |
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* |
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* // Specyfing the address family manually is only required if neither the |
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* // local nor peer address have been specified. |
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* rtnl_addr_set_family(addr, AF_INET); |
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* |
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* // Specyfing the local address is optional but the best choice to delete |
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* // specific addresses. |
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* rtnl_addr_set_local(addr, local_addr); |
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* |
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* // The label of the address can be specified, currently only supported |
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* // by IPv4 and DECnet. |
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* rtnl_addr_set_label(addr, "mylabel"); |
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* |
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* // The peer address can be specified if necessary, in either case a peer |
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* // address will be sent to the kernel in order to fullfil the interface |
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* // requirements. If none is set, it will equal the local address. |
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* // Note: Real peer addresses are only supported by IPv4 for now. |
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* rtnl_addr_set_peer(addr, peer_addr); |
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* |
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* // Build the netlink message and send it to the kernel, the operation will |
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* // block until the operation has been completed. Alternatively the required |
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* // netlink message can be built using rtnl_addr_build_delete_request() |
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* // to be sent out using nl_send_auto_complete(). |
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* rtnl_addr_delete(sk, addr, 0); |
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* |
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* // Free the memory |
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* rtnl_addr_put(addr); |
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* @endcode |
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* @{ |
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*/ |
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|
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#include <netlink-private/netlink.h> |
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#include <netlink/netlink.h> |
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#include <netlink/route/rtnl.h> |
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#include <netlink/route/addr.h> |
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#include <netlink/route/route.h> |
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#include <netlink/route/link.h> |
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#include <netlink/utils.h> |
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|
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/** @cond SKIP */ |
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#define ADDR_ATTR_FAMILY 0x0001 |
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#define ADDR_ATTR_PREFIXLEN 0x0002 |
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#define ADDR_ATTR_FLAGS 0x0004 |
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#define ADDR_ATTR_SCOPE 0x0008 |
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#define ADDR_ATTR_IFINDEX 0x0010 |
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#define ADDR_ATTR_LABEL 0x0020 |
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#define ADDR_ATTR_CACHEINFO 0x0040 |
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#define ADDR_ATTR_PEER 0x0080 |
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#define ADDR_ATTR_LOCAL 0x0100 |
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#define ADDR_ATTR_BROADCAST 0x0200 |
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#define ADDR_ATTR_MULTICAST 0x0400 |
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#define ADDR_ATTR_ANYCAST 0x0800 |
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|
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static struct nl_cache_ops rtnl_addr_ops; |
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static struct nl_object_ops addr_obj_ops; |
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/** @endcond */ |
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|
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static void addr_constructor(struct nl_object *obj) |
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{ |
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struct rtnl_addr *addr = nl_object_priv(obj); |
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|
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addr->a_scope = RT_SCOPE_NOWHERE; |
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} |
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|
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static void addr_free_data(struct nl_object *obj) |
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{ |
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struct rtnl_addr *addr = nl_object_priv(obj); |
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|
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if (!addr) |
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return; |
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|
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nl_addr_put(addr->a_peer); |
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nl_addr_put(addr->a_local); |
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nl_addr_put(addr->a_bcast); |
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nl_addr_put(addr->a_multicast); |
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nl_addr_put(addr->a_anycast); |
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rtnl_link_put(addr->a_link); |
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} |
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|
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static int addr_clone(struct nl_object *_dst, struct nl_object *_src) |
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{ |
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struct rtnl_addr *dst = nl_object_priv(_dst); |
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struct rtnl_addr *src = nl_object_priv(_src); |
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|
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if (src->a_link) { |
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nl_object_get(OBJ_CAST(src->a_link)); |
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dst->a_link = src->a_link; |
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} |
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|
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if (src->a_peer) |
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if (!(dst->a_peer = nl_addr_clone(src->a_peer))) |
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return -NLE_NOMEM; |
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|
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if (src->a_local) |
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if (!(dst->a_local = nl_addr_clone(src->a_local))) |
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return -NLE_NOMEM; |
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|
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if (src->a_bcast) |
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if (!(dst->a_bcast = nl_addr_clone(src->a_bcast))) |
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return -NLE_NOMEM; |
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|
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if (src->a_multicast) |
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if (!(dst->a_multicast = nl_addr_clone(src->a_multicast))) |
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return -NLE_NOMEM; |
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|
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if (src->a_anycast) |
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if (!(dst->a_anycast = nl_addr_clone(src->a_anycast))) |
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return -NLE_NOMEM; |
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|
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return 0; |
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} |
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|
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static struct nla_policy addr_policy[IFA_MAX+1] = { |
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[IFA_LABEL] = { .type = NLA_STRING, |
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.maxlen = IFNAMSIZ }, |
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[IFA_CACHEINFO] = { .minlen = sizeof(struct ifa_cacheinfo) }, |
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}; |
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|
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static int addr_msg_parser(struct nl_cache_ops *ops, struct sockaddr_nl *who, |
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struct nlmsghdr *nlh, struct nl_parser_param *pp) |
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{ |
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struct rtnl_addr *addr; |
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struct ifaddrmsg *ifa; |
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struct nlattr *tb[IFA_MAX+1]; |
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int err, family; |
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struct nl_cache *link_cache; |
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struct nl_addr *plen_addr = NULL; |
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|
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addr = rtnl_addr_alloc(); |
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if (!addr) |
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return -NLE_NOMEM; |
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|
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addr->ce_msgtype = nlh->nlmsg_type; |
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|
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err = nlmsg_parse(nlh, sizeof(*ifa), tb, IFA_MAX, addr_policy); |
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if (err < 0) |
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goto errout; |
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|
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ifa = nlmsg_data(nlh); |
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addr->a_family = family = ifa->ifa_family; |
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addr->a_prefixlen = ifa->ifa_prefixlen; |
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addr->a_scope = ifa->ifa_scope; |
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addr->a_flags = tb[IFA_FLAGS] ? nla_get_u32(tb[IFA_FLAGS]) : |
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ifa->ifa_flags; |
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addr->a_ifindex = ifa->ifa_index; |
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|
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addr->ce_mask = (ADDR_ATTR_FAMILY | ADDR_ATTR_PREFIXLEN | |
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ADDR_ATTR_FLAGS | ADDR_ATTR_SCOPE | ADDR_ATTR_IFINDEX); |
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|
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if (tb[IFA_LABEL]) { |
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nla_strlcpy(addr->a_label, tb[IFA_LABEL], IFNAMSIZ); |
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addr->ce_mask |= ADDR_ATTR_LABEL; |
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} |
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|
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/* IPv6 only */ |
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if (tb[IFA_CACHEINFO]) { |
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struct ifa_cacheinfo *ca; |
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|
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ca = nla_data(tb[IFA_CACHEINFO]); |
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addr->a_cacheinfo.aci_prefered = ca->ifa_prefered; |
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addr->a_cacheinfo.aci_valid = ca->ifa_valid; |
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addr->a_cacheinfo.aci_cstamp = ca->cstamp; |
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addr->a_cacheinfo.aci_tstamp = ca->tstamp; |
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addr->ce_mask |= ADDR_ATTR_CACHEINFO; |
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} |
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|
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if (tb[IFA_LOCAL]) { |
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addr->a_local = nl_addr_alloc_attr(tb[IFA_LOCAL], family); |
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if (!addr->a_local) |
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goto errout_nomem; |
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addr->ce_mask |= ADDR_ATTR_LOCAL; |
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plen_addr = addr->a_local; |
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} |
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|
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if (tb[IFA_ADDRESS]) { |
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struct nl_addr *a; |
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|
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a = nl_addr_alloc_attr(tb[IFA_ADDRESS], family); |
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if (!a) |
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goto errout_nomem; |
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|
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/* IPv6 sends the local address as IFA_ADDRESS with |
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* no IFA_LOCAL, IPv4 sends both IFA_LOCAL and IFA_ADDRESS |
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* with IFA_ADDRESS being the peer address if they differ */ |
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if (!tb[IFA_LOCAL] || !nl_addr_cmp(a, addr->a_local)) { |
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nl_addr_put(addr->a_local); |
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addr->a_local = a; |
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addr->ce_mask |= ADDR_ATTR_LOCAL; |
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} else { |
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addr->a_peer = a; |
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addr->ce_mask |= ADDR_ATTR_PEER; |
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} |
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|
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plen_addr = a; |
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} |
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|
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if (plen_addr) |
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nl_addr_set_prefixlen(plen_addr, addr->a_prefixlen); |
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|
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/* IPv4 only */ |
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if (tb[IFA_BROADCAST]) { |
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addr->a_bcast = nl_addr_alloc_attr(tb[IFA_BROADCAST], family); |
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if (!addr->a_bcast) |
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goto errout_nomem; |
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|
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addr->ce_mask |= ADDR_ATTR_BROADCAST; |
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} |
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|
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/* IPv6 only */ |
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if (tb[IFA_MULTICAST]) { |
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addr->a_multicast = nl_addr_alloc_attr(tb[IFA_MULTICAST], |
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family); |
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if (!addr->a_multicast) |
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goto errout_nomem; |
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|
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addr->ce_mask |= ADDR_ATTR_MULTICAST; |
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} |
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|
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/* IPv6 only */ |
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if (tb[IFA_ANYCAST]) { |
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addr->a_anycast = nl_addr_alloc_attr(tb[IFA_ANYCAST], |
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family); |
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if (!addr->a_anycast) |
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goto errout_nomem; |
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|
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addr->ce_mask |= ADDR_ATTR_ANYCAST; |
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} |
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|
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if ((link_cache = __nl_cache_mngt_require("route/link"))) { |
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struct rtnl_link *link; |
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|
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if ((link = rtnl_link_get(link_cache, addr->a_ifindex))) { |
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rtnl_addr_set_link(addr, link); |
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|
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/* rtnl_addr_set_link incs refcnt */ |
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rtnl_link_put(link); |
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} |
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} |
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|
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err = pp->pp_cb((struct nl_object *) addr, pp); |
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errout: |
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rtnl_addr_put(addr); |
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|
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return err; |
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|
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errout_nomem: |
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err = -NLE_NOMEM; |
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goto errout; |
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} |
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|
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static int addr_request_update(struct nl_cache *cache, struct nl_sock *sk) |
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{ |
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return nl_rtgen_request(sk, RTM_GETADDR, AF_UNSPEC, NLM_F_DUMP); |
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} |
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|
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static void addr_dump_line(struct nl_object *obj, struct nl_dump_params *p) |
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{ |
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struct rtnl_addr *addr = (struct rtnl_addr *) obj; |
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struct nl_cache *link_cache; |
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char buf[128]; |
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|
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link_cache = nl_cache_mngt_require_safe("route/link"); |
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|
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if (addr->ce_mask & ADDR_ATTR_LOCAL) |
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nl_dump_line(p, "%s", |
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nl_addr2str(addr->a_local, buf, sizeof(buf))); |
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else |
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nl_dump_line(p, "none"); |
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|
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if (addr->ce_mask & ADDR_ATTR_PEER) |
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nl_dump(p, " peer %s", |
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nl_addr2str(addr->a_peer, buf, sizeof(buf))); |
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|
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nl_dump(p, " %s ", nl_af2str(addr->a_family, buf, sizeof(buf))); |
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|
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if (link_cache) |
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nl_dump(p, "dev %s ", |
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rtnl_link_i2name(link_cache, addr->a_ifindex, |
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buf, sizeof(buf))); |
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else |
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nl_dump(p, "dev %d ", addr->a_ifindex); |
|
|
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nl_dump(p, "scope %s", |
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rtnl_scope2str(addr->a_scope, buf, sizeof(buf))); |
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|
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rtnl_addr_flags2str(addr->a_flags, buf, sizeof(buf)); |
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if (buf[0]) |
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nl_dump(p, " <%s>", buf); |
|
|
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nl_dump(p, "\n"); |
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|
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if (link_cache) |
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nl_cache_put(link_cache); |
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} |
|
|
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static void addr_dump_details(struct nl_object *obj, struct nl_dump_params *p) |
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{ |
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struct rtnl_addr *addr = (struct rtnl_addr *) obj; |
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char buf[128]; |
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|
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addr_dump_line(obj, p); |
|
|
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if (addr->ce_mask & (ADDR_ATTR_LABEL | ADDR_ATTR_BROADCAST | |
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ADDR_ATTR_MULTICAST)) { |
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nl_dump_line(p, " "); |
|
|
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if (addr->ce_mask & ADDR_ATTR_LABEL) |
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nl_dump(p, " label %s", addr->a_label); |
|
|
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if (addr->ce_mask & ADDR_ATTR_BROADCAST) |
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nl_dump(p, " broadcast %s", |
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nl_addr2str(addr->a_bcast, buf, sizeof(buf))); |
|
|
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if (addr->ce_mask & ADDR_ATTR_MULTICAST) |
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nl_dump(p, " multicast %s", |
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nl_addr2str(addr->a_multicast, buf, |
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sizeof(buf))); |
|
|
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if (addr->ce_mask & ADDR_ATTR_ANYCAST) |
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nl_dump(p, " anycast %s", |
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nl_addr2str(addr->a_anycast, buf, |
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sizeof(buf))); |
|
|
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nl_dump(p, "\n"); |
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} |
|
|
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if (addr->ce_mask & ADDR_ATTR_CACHEINFO) { |
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struct rtnl_addr_cacheinfo *ci = &addr->a_cacheinfo; |
|
|
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nl_dump_line(p, " valid-lifetime %s", |
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ci->aci_valid == 0xFFFFFFFFU ? "forever" : |
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nl_msec2str(ci->aci_valid * 1000, |
|
buf, sizeof(buf))); |
|
|
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nl_dump(p, " preferred-lifetime %s\n", |
|
ci->aci_prefered == 0xFFFFFFFFU ? "forever" : |
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nl_msec2str(ci->aci_prefered * 1000, |
|
buf, sizeof(buf))); |
|
|
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nl_dump_line(p, " created boot-time+%s ", |
|
nl_msec2str(addr->a_cacheinfo.aci_cstamp * 10, |
|
buf, sizeof(buf))); |
|
|
|
nl_dump(p, "last-updated boot-time+%s\n", |
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nl_msec2str(addr->a_cacheinfo.aci_tstamp * 10, |
|
buf, sizeof(buf))); |
|
} |
|
} |
|
|
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static void addr_dump_stats(struct nl_object *obj, struct nl_dump_params *p) |
|
{ |
|
addr_dump_details(obj, p); |
|
} |
|
|
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static int addr_compare(struct nl_object *_a, struct nl_object *_b, |
|
uint32_t attrs, int flags) |
|
{ |
|
struct rtnl_addr *a = (struct rtnl_addr *) _a; |
|
struct rtnl_addr *b = (struct rtnl_addr *) _b; |
|
int diff = 0; |
|
|
|
#define ADDR_DIFF(ATTR, EXPR) ATTR_DIFF(attrs, ADDR_ATTR_##ATTR, a, b, EXPR) |
|
|
|
diff |= ADDR_DIFF(IFINDEX, a->a_ifindex != b->a_ifindex); |
|
diff |= ADDR_DIFF(FAMILY, a->a_family != b->a_family); |
|
diff |= ADDR_DIFF(SCOPE, a->a_scope != b->a_scope); |
|
diff |= ADDR_DIFF(LABEL, strcmp(a->a_label, b->a_label)); |
|
diff |= ADDR_DIFF(PEER, nl_addr_cmp(a->a_peer, b->a_peer)); |
|
diff |= ADDR_DIFF(LOCAL, nl_addr_cmp(a->a_local, b->a_local)); |
|
diff |= ADDR_DIFF(MULTICAST, nl_addr_cmp(a->a_multicast, |
|
b->a_multicast)); |
|
diff |= ADDR_DIFF(BROADCAST, nl_addr_cmp(a->a_bcast, b->a_bcast)); |
|
diff |= ADDR_DIFF(ANYCAST, nl_addr_cmp(a->a_anycast, b->a_anycast)); |
|
|
|
if (flags & LOOSE_COMPARISON) |
|
diff |= ADDR_DIFF(FLAGS, |
|
(a->a_flags ^ b->a_flags) & b->a_flag_mask); |
|
else |
|
diff |= ADDR_DIFF(FLAGS, a->a_flags != b->a_flags); |
|
|
|
#undef ADDR_DIFF |
|
|
|
return diff; |
|
} |
|
|
|
static const struct trans_tbl addr_attrs[] = { |
|
__ADD(ADDR_ATTR_FAMILY, family) |
|
__ADD(ADDR_ATTR_PREFIXLEN, prefixlen) |
|
__ADD(ADDR_ATTR_FLAGS, flags) |
|
__ADD(ADDR_ATTR_SCOPE, scope) |
|
__ADD(ADDR_ATTR_IFINDEX, ifindex) |
|
__ADD(ADDR_ATTR_LABEL, label) |
|
__ADD(ADDR_ATTR_CACHEINFO, cacheinfo) |
|
__ADD(ADDR_ATTR_PEER, peer) |
|
__ADD(ADDR_ATTR_LOCAL, local) |
|
__ADD(ADDR_ATTR_BROADCAST, broadcast) |
|
__ADD(ADDR_ATTR_MULTICAST, multicast) |
|
}; |
|
|
|
static char *addr_attrs2str(int attrs, char *buf, size_t len) |
|
{ |
|
return __flags2str(attrs, buf, len, addr_attrs, |
|
ARRAY_SIZE(addr_attrs)); |
|
} |
|
|
|
/** |
|
* @name Allocation/Freeing |
|
* @{ |
|
*/ |
|
|
|
struct rtnl_addr *rtnl_addr_alloc(void) |
|
{ |
|
return (struct rtnl_addr *) nl_object_alloc(&addr_obj_ops); |
|
} |
|
|
|
void rtnl_addr_put(struct rtnl_addr *addr) |
|
{ |
|
nl_object_put((struct nl_object *) addr); |
|
} |
|
|
|
/** @} */ |
|
|
|
/** |
|
* @name Cache Management |
|
* @{ |
|
*/ |
|
|
|
int rtnl_addr_alloc_cache(struct nl_sock *sk, struct nl_cache **result) |
|
{ |
|
return nl_cache_alloc_and_fill(&rtnl_addr_ops, sk, result); |
|
} |
|
|
|
/** |
|
* Search address in cache |
|
* @arg cache Address cache |
|
* @arg ifindex Interface index of address |
|
* @arg addr Local address part |
|
* |
|
* Searches address cache previously allocated with rtnl_addr_alloc_cache() |
|
* for an address with a matching local address. |
|
* |
|
* The reference counter is incremented before returning the address, therefore |
|
* the reference must be given back with rtnl_addr_put() after usage. |
|
* |
|
* @return Address object or NULL if no match was found. |
|
*/ |
|
struct rtnl_addr *rtnl_addr_get(struct nl_cache *cache, int ifindex, |
|
struct nl_addr *addr) |
|
{ |
|
struct rtnl_addr *a; |
|
|
|
if (cache->c_ops != &rtnl_addr_ops) |
|
return NULL; |
|
|
|
nl_list_for_each_entry(a, &cache->c_items, ce_list) { |
|
if (ifindex && a->a_ifindex != ifindex) |
|
continue; |
|
|
|
if (a->ce_mask & ADDR_ATTR_LOCAL && |
|
!nl_addr_cmp(a->a_local, addr)) { |
|
nl_object_get((struct nl_object *) a); |
|
return a; |
|
} |
|
} |
|
|
|
return NULL; |
|
} |
|
|
|
/** @} */ |
|
|
|
static int build_addr_msg(struct rtnl_addr *tmpl, int cmd, int flags, |
|
struct nl_msg **result) |
|
{ |
|
struct nl_msg *msg; |
|
struct ifaddrmsg am = { |
|
.ifa_family = tmpl->a_family, |
|
.ifa_index = tmpl->a_ifindex, |
|
.ifa_prefixlen = tmpl->a_prefixlen, |
|
.ifa_flags = tmpl->a_flags, |
|
}; |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_SCOPE) |
|
am.ifa_scope = tmpl->a_scope; |
|
else { |
|
/* compatibility hack */ |
|
if (tmpl->a_family == AF_INET && |
|
tmpl->ce_mask & ADDR_ATTR_LOCAL && |
|
*((char *) nl_addr_get_binary_addr(tmpl->a_local)) == 127) |
|
am.ifa_scope = RT_SCOPE_HOST; |
|
else |
|
am.ifa_scope = RT_SCOPE_UNIVERSE; |
|
} |
|
|
|
msg = nlmsg_alloc_simple(cmd, flags); |
|
if (!msg) |
|
return -NLE_NOMEM; |
|
|
|
if (nlmsg_append(msg, &am, sizeof(am), NLMSG_ALIGNTO) < 0) |
|
goto nla_put_failure; |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_LOCAL) |
|
NLA_PUT_ADDR(msg, IFA_LOCAL, tmpl->a_local); |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_PEER) |
|
NLA_PUT_ADDR(msg, IFA_ADDRESS, tmpl->a_peer); |
|
else if (tmpl->ce_mask & ADDR_ATTR_LOCAL) |
|
NLA_PUT_ADDR(msg, IFA_ADDRESS, tmpl->a_local); |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_LABEL) |
|
NLA_PUT_STRING(msg, IFA_LABEL, tmpl->a_label); |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_BROADCAST) |
|
NLA_PUT_ADDR(msg, IFA_BROADCAST, tmpl->a_bcast); |
|
|
|
if (tmpl->ce_mask & ADDR_ATTR_CACHEINFO) { |
|
struct ifa_cacheinfo ca = { |
|
.ifa_valid = tmpl->a_cacheinfo.aci_valid, |
|
.ifa_prefered = tmpl->a_cacheinfo.aci_prefered, |
|
}; |
|
|
|
NLA_PUT(msg, IFA_CACHEINFO, sizeof(ca), &ca); |
|
} |
|
|
|
if (tmpl->a_flags & ~0xFF) { |
|
/* only set the IFA_FLAGS attribute, if they actually contain additional |
|
* flags that are not already set to am.ifa_flags. |
|
* |
|
* Older kernels refuse RTM_NEWADDR and RTM_NEWROUTE messages with EINVAL |
|
* if they contain unknown netlink attributes. See net/core/rtnetlink.c, which |
|
* was fixed by kernel commit 661d2967b3f1b34eeaa7e212e7b9bbe8ee072b59. |
|
* |
|
* With this workaround, libnl will function correctly with older kernels, |
|
* unless there is a new libnl user that wants to set these flags. In this |
|
* case it's up to the user to workaround this issue. */ |
|
NLA_PUT_U32(msg, IFA_FLAGS, tmpl->a_flags); |
|
} |
|
|
|
*result = msg; |
|
return 0; |
|
|
|
nla_put_failure: |
|
nlmsg_free(msg); |
|
return -NLE_MSGSIZE; |
|
} |
|
|
|
/** |
|
* @name Addition |
|
* @{ |
|
*/ |
|
|
|
/** |
|
* Build netlink request message to request addition of new address |
|
* @arg addr Address object representing the new address. |
|
* @arg flags Additional netlink message flags. |
|
* @arg result Pointer to store resulting message. |
|
* |
|
* Builds a new netlink message requesting the addition of a new |
|
* address. The netlink message header isn't fully equipped with |
|
* all relevant fields and must thus be sent out via nl_send_auto_complete() |
|
* or supplemented as needed. |
|
* |
|
* Minimal required attributes: |
|
* - interface index (rtnl_addr_set_ifindex()) |
|
* - local address (rtnl_addr_set_local()) |
|
* |
|
* The scope will default to universe except for loopback addresses in |
|
* which case a host scope is used if not specified otherwise. |
|
* |
|
* @note Free the memory after usage using nlmsg_free(). |
|
* |
|
* @return 0 on success or a negative error code. |
|
*/ |
|
int rtnl_addr_build_add_request(struct rtnl_addr *addr, int flags, |
|
struct nl_msg **result) |
|
{ |
|
uint32_t required = ADDR_ATTR_IFINDEX | ADDR_ATTR_FAMILY | |
|
ADDR_ATTR_PREFIXLEN | ADDR_ATTR_LOCAL; |
|
|
|
if ((addr->ce_mask & required) != required) |
|
return -NLE_MISSING_ATTR; |
|
|
|
return build_addr_msg(addr, RTM_NEWADDR, NLM_F_CREATE | flags, result); |
|
} |
|
|
|
/** |
|
* Request addition of new address |
|
* @arg sk Netlink socket. |
|
* @arg addr Address object representing the new address. |
|
* @arg flags Additional netlink message flags. |
|
* |
|
* Builds a netlink message by calling rtnl_addr_build_add_request(), |
|
* sends the request to the kernel and waits for the next ACK to be |
|
* received and thus blocks until the request has been fullfilled. |
|
* |
|
* @see rtnl_addr_build_add_request() |
|
* |
|
* @return 0 on sucess or a negative error if an error occured. |
|
*/ |
|
int rtnl_addr_add(struct nl_sock *sk, struct rtnl_addr *addr, int flags) |
|
{ |
|
struct nl_msg *msg; |
|
int err; |
|
|
|
if ((err = rtnl_addr_build_add_request(addr, flags, &msg)) < 0) |
|
return err; |
|
|
|
err = nl_send_auto_complete(sk, msg); |
|
nlmsg_free(msg); |
|
if (err < 0) |
|
return err; |
|
|
|
return wait_for_ack(sk); |
|
} |
|
|
|
/** @} */ |
|
|
|
/** |
|
* @name Deletion |
|
* @{ |
|
*/ |
|
|
|
/** |
|
* Build a netlink request message to request deletion of an address |
|
* @arg addr Address object to be deleteted. |
|
* @arg flags Additional netlink message flags. |
|
* @arg result Pointer to store resulting message. |
|
* |
|
* Builds a new netlink message requesting a deletion of an address. |
|
* The netlink message header isn't fully equipped with all relevant |
|
* fields and must thus be sent out via nl_send_auto_complete() |
|
* or supplemented as needed. |
|
* |
|
* Minimal required attributes: |
|
* - interface index (rtnl_addr_set_ifindex()) |
|
* - address family (rtnl_addr_set_family()) |
|
* |
|
* Optional attributes: |
|
* - local address (rtnl_addr_set_local()) |
|
* - label (rtnl_addr_set_label(), IPv4/DECnet only) |
|
* - peer address (rtnl_addr_set_peer(), IPv4 only) |
|
* |
|
* @note Free the memory after usage using nlmsg_free(). |
|
* |
|
* @return 0 on success or a negative error code. |
|
*/ |
|
int rtnl_addr_build_delete_request(struct rtnl_addr *addr, int flags, |
|
struct nl_msg **result) |
|
{ |
|
uint32_t required = ADDR_ATTR_IFINDEX | ADDR_ATTR_FAMILY; |
|
|
|
if ((addr->ce_mask & required) != required) |
|
return -NLE_MISSING_ATTR; |
|
|
|
return build_addr_msg(addr, RTM_DELADDR, flags, result); |
|
} |
|
|
|
/** |
|
* Request deletion of an address |
|
* @arg sk Netlink socket. |
|
* @arg addr Address object to be deleted. |
|
* @arg flags Additional netlink message flags. |
|
* |
|
* Builds a netlink message by calling rtnl_addr_build_delete_request(), |
|
* sends the request to the kernel and waits for the next ACK to be |
|
* received and thus blocks until the request has been fullfilled. |
|
* |
|
* @see rtnl_addr_build_delete_request(); |
|
* |
|
* @return 0 on sucess or a negative error if an error occured. |
|
*/ |
|
int rtnl_addr_delete(struct nl_sock *sk, struct rtnl_addr *addr, int flags) |
|
{ |
|
struct nl_msg *msg; |
|
int err; |
|
|
|
if ((err = rtnl_addr_build_delete_request(addr, flags, &msg)) < 0) |
|
return err; |
|
|
|
err = nl_send_auto_complete(sk, msg); |
|
nlmsg_free(msg); |
|
if (err < 0) |
|
return err; |
|
|
|
return wait_for_ack(sk); |
|
} |
|
|
|
/** @} */ |
|
|
|
/** |
|
* @name Attributes |
|
* @{ |
|
*/ |
|
|
|
int rtnl_addr_set_label(struct rtnl_addr *addr, const char *label) |
|
{ |
|
if (strlen(label) > sizeof(addr->a_label) - 1) |
|
return -NLE_RANGE; |
|
|
|
strcpy(addr->a_label, label); |
|
addr->ce_mask |= ADDR_ATTR_LABEL; |
|
|
|
return 0; |
|
} |
|
|
|
char *rtnl_addr_get_label(struct rtnl_addr *addr) |
|
{ |
|
if (addr->ce_mask & ADDR_ATTR_LABEL) |
|
return addr->a_label; |
|
else |
|
return NULL; |
|
} |
|
|
|
void rtnl_addr_set_ifindex(struct rtnl_addr *addr, int ifindex) |
|
{ |
|
addr->a_ifindex = ifindex; |
|
addr->ce_mask |= ADDR_ATTR_IFINDEX; |
|
} |
|
|
|
int rtnl_addr_get_ifindex(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_ifindex; |
|
} |
|
|
|
void rtnl_addr_set_link(struct rtnl_addr *addr, struct rtnl_link *link) |
|
{ |
|
rtnl_link_put(addr->a_link); |
|
|
|
if (!link) |
|
return; |
|
|
|
nl_object_get(OBJ_CAST(link)); |
|
addr->a_link = link; |
|
addr->a_ifindex = link->l_index; |
|
addr->ce_mask |= ADDR_ATTR_IFINDEX; |
|
} |
|
|
|
struct rtnl_link *rtnl_addr_get_link(struct rtnl_addr *addr) |
|
{ |
|
if (addr->a_link) { |
|
nl_object_get(OBJ_CAST(addr->a_link)); |
|
return addr->a_link; |
|
} |
|
|
|
return NULL; |
|
} |
|
|
|
void rtnl_addr_set_family(struct rtnl_addr *addr, int family) |
|
{ |
|
addr->a_family = family; |
|
addr->ce_mask |= ADDR_ATTR_FAMILY; |
|
} |
|
|
|
int rtnl_addr_get_family(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_family; |
|
} |
|
|
|
/** |
|
* Set the prefix length / netmask |
|
* @arg addr Address |
|
* @arg prefixlen Length of prefix (netmask) |
|
* |
|
* Modifies the length of the prefix. If the address object contains a peer |
|
* address the prefix length will apply to it, otherwise the prefix length |
|
* will apply to the local address of the address. |
|
* |
|
* If the address object contains a peer or local address the corresponding |
|
* `struct nl_addr` will be updated with the new prefix length. |
|
* |
|
* @note Specifying a length of 0 will remove the prefix length alltogether. |
|
* |
|
* @see rtnl_addr_get_prefixlen() |
|
*/ |
|
void rtnl_addr_set_prefixlen(struct rtnl_addr *addr, int prefixlen) |
|
{ |
|
addr->a_prefixlen = prefixlen; |
|
|
|
if (prefixlen) |
|
addr->ce_mask |= ADDR_ATTR_PREFIXLEN; |
|
else |
|
addr->ce_mask &= ~ADDR_ATTR_PREFIXLEN; |
|
|
|
/* |
|
* The prefix length always applies to the peer address if |
|
* a peer address is present. |
|
*/ |
|
if (addr->a_peer) |
|
nl_addr_set_prefixlen(addr->a_peer, prefixlen); |
|
else if (addr->a_local) |
|
nl_addr_set_prefixlen(addr->a_local, prefixlen); |
|
} |
|
|
|
int rtnl_addr_get_prefixlen(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_prefixlen; |
|
} |
|
|
|
void rtnl_addr_set_scope(struct rtnl_addr *addr, int scope) |
|
{ |
|
addr->a_scope = scope; |
|
addr->ce_mask |= ADDR_ATTR_SCOPE; |
|
} |
|
|
|
int rtnl_addr_get_scope(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_scope; |
|
} |
|
|
|
void rtnl_addr_set_flags(struct rtnl_addr *addr, unsigned int flags) |
|
{ |
|
addr->a_flag_mask |= flags; |
|
addr->a_flags |= flags; |
|
addr->ce_mask |= ADDR_ATTR_FLAGS; |
|
} |
|
|
|
void rtnl_addr_unset_flags(struct rtnl_addr *addr, unsigned int flags) |
|
{ |
|
addr->a_flag_mask |= flags; |
|
addr->a_flags &= ~flags; |
|
addr->ce_mask |= ADDR_ATTR_FLAGS; |
|
} |
|
|
|
unsigned int rtnl_addr_get_flags(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_flags; |
|
} |
|
|
|
static inline int __assign_addr(struct rtnl_addr *addr, struct nl_addr **pos, |
|
struct nl_addr *new, int flag) |
|
{ |
|
if (new) { |
|
if (addr->ce_mask & ADDR_ATTR_FAMILY) { |
|
if (new->a_family != addr->a_family) |
|
return -NLE_AF_MISMATCH; |
|
} else |
|
addr->a_family = new->a_family; |
|
|
|
if (*pos) |
|
nl_addr_put(*pos); |
|
|
|
*pos = nl_addr_get(new); |
|
addr->ce_mask |= (flag | ADDR_ATTR_FAMILY); |
|
} else { |
|
if (*pos) |
|
nl_addr_put(*pos); |
|
|
|
*pos = NULL; |
|
addr->ce_mask &= ~flag; |
|
} |
|
|
|
return 0; |
|
} |
|
|
|
int rtnl_addr_set_local(struct rtnl_addr *addr, struct nl_addr *local) |
|
{ |
|
int err; |
|
|
|
/* Prohibit local address with prefix length if peer address is present */ |
|
if ((addr->ce_mask & ADDR_ATTR_PEER) && local && |
|
nl_addr_get_prefixlen(local)) |
|
return -NLE_INVAL; |
|
|
|
err = __assign_addr(addr, &addr->a_local, local, ADDR_ATTR_LOCAL); |
|
if (err < 0) |
|
return err; |
|
|
|
/* Never overwrite the prefix length if a peer address is present */ |
|
if (!(addr->ce_mask & ADDR_ATTR_PEER)) |
|
rtnl_addr_set_prefixlen(addr, local ? nl_addr_get_prefixlen(local) : 0); |
|
|
|
return 0; |
|
} |
|
|
|
struct nl_addr *rtnl_addr_get_local(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_local; |
|
} |
|
|
|
int rtnl_addr_set_peer(struct rtnl_addr *addr, struct nl_addr *peer) |
|
{ |
|
int err; |
|
|
|
if (peer && peer->a_family != AF_INET) |
|
return -NLE_AF_NOSUPPORT; |
|
|
|
err = __assign_addr(addr, &addr->a_peer, peer, ADDR_ATTR_PEER); |
|
if (err < 0) |
|
return err; |
|
|
|
rtnl_addr_set_prefixlen(addr, peer ? nl_addr_get_prefixlen(peer) : 0); |
|
|
|
return 0; |
|
} |
|
|
|
struct nl_addr *rtnl_addr_get_peer(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_peer; |
|
} |
|
|
|
int rtnl_addr_set_broadcast(struct rtnl_addr *addr, struct nl_addr *bcast) |
|
{ |
|
if (bcast && bcast->a_family != AF_INET) |
|
return -NLE_AF_NOSUPPORT; |
|
|
|
return __assign_addr(addr, &addr->a_bcast, bcast, ADDR_ATTR_BROADCAST); |
|
} |
|
|
|
struct nl_addr *rtnl_addr_get_broadcast(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_bcast; |
|
} |
|
|
|
int rtnl_addr_set_multicast(struct rtnl_addr *addr, struct nl_addr *multicast) |
|
{ |
|
if (multicast && multicast->a_family != AF_INET6) |
|
return -NLE_AF_NOSUPPORT; |
|
|
|
return __assign_addr(addr, &addr->a_multicast, multicast, |
|
ADDR_ATTR_MULTICAST); |
|
} |
|
|
|
struct nl_addr *rtnl_addr_get_multicast(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_multicast; |
|
} |
|
|
|
int rtnl_addr_set_anycast(struct rtnl_addr *addr, struct nl_addr *anycast) |
|
{ |
|
if (anycast && anycast->a_family != AF_INET6) |
|
return -NLE_AF_NOSUPPORT; |
|
|
|
return __assign_addr(addr, &addr->a_anycast, anycast, |
|
ADDR_ATTR_ANYCAST); |
|
} |
|
|
|
struct nl_addr *rtnl_addr_get_anycast(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_anycast; |
|
} |
|
|
|
uint32_t rtnl_addr_get_valid_lifetime(struct rtnl_addr *addr) |
|
{ |
|
if (addr->ce_mask & ADDR_ATTR_CACHEINFO) |
|
return addr->a_cacheinfo.aci_valid; |
|
else |
|
return 0xFFFFFFFFU; |
|
} |
|
|
|
void rtnl_addr_set_valid_lifetime(struct rtnl_addr *addr, uint32_t lifetime) |
|
{ |
|
addr->a_cacheinfo.aci_valid = lifetime; |
|
addr->ce_mask |= ADDR_ATTR_CACHEINFO; |
|
} |
|
|
|
uint32_t rtnl_addr_get_preferred_lifetime(struct rtnl_addr *addr) |
|
{ |
|
if (addr->ce_mask & ADDR_ATTR_CACHEINFO) |
|
return addr->a_cacheinfo.aci_prefered; |
|
else |
|
return 0xFFFFFFFFU; |
|
} |
|
|
|
void rtnl_addr_set_preferred_lifetime(struct rtnl_addr *addr, uint32_t lifetime) |
|
{ |
|
addr->a_cacheinfo.aci_prefered = lifetime; |
|
addr->ce_mask |= ADDR_ATTR_CACHEINFO; |
|
} |
|
|
|
uint32_t rtnl_addr_get_create_time(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_cacheinfo.aci_cstamp; |
|
} |
|
|
|
uint32_t rtnl_addr_get_last_update_time(struct rtnl_addr *addr) |
|
{ |
|
return addr->a_cacheinfo.aci_tstamp; |
|
} |
|
|
|
/** @} */ |
|
|
|
/** |
|
* @name Flags Translations |
|
* @{ |
|
*/ |
|
|
|
static const struct trans_tbl addr_flags[] = { |
|
__ADD(IFA_F_SECONDARY, secondary) |
|
__ADD(IFA_F_NODAD, nodad) |
|
__ADD(IFA_F_OPTIMISTIC, optimistic) |
|
__ADD(IFA_F_HOMEADDRESS, homeaddress) |
|
__ADD(IFA_F_DEPRECATED, deprecated) |
|
__ADD(IFA_F_TENTATIVE, tentative) |
|
__ADD(IFA_F_PERMANENT, permanent) |
|
__ADD(IFA_F_MANAGETEMPADDR, mngtmpaddr) |
|
__ADD(IFA_F_NOPREFIXROUTE, noprefixroute) |
|
}; |
|
|
|
char *rtnl_addr_flags2str(int flags, char *buf, size_t size) |
|
{ |
|
return __flags2str(flags, buf, size, addr_flags, |
|
ARRAY_SIZE(addr_flags)); |
|
} |
|
|
|
int rtnl_addr_str2flags(const char *name) |
|
{ |
|
return __str2flags(name, addr_flags, ARRAY_SIZE(addr_flags)); |
|
} |
|
|
|
/** @} */ |
|
|
|
static struct nl_object_ops addr_obj_ops = { |
|
.oo_name = "route/addr", |
|
.oo_size = sizeof(struct rtnl_addr), |
|
.oo_constructor = addr_constructor, |
|
.oo_free_data = addr_free_data, |
|
.oo_clone = addr_clone, |
|
.oo_dump = { |
|
[NL_DUMP_LINE] = addr_dump_line, |
|
[NL_DUMP_DETAILS] = addr_dump_details, |
|
[NL_DUMP_STATS] = addr_dump_stats, |
|
}, |
|
.oo_compare = addr_compare, |
|
.oo_attrs2str = addr_attrs2str, |
|
.oo_id_attrs = (ADDR_ATTR_FAMILY | ADDR_ATTR_IFINDEX | |
|
ADDR_ATTR_LOCAL | ADDR_ATTR_PREFIXLEN), |
|
}; |
|
|
|
static struct nl_af_group addr_groups[] = { |
|
{ AF_INET, RTNLGRP_IPV4_IFADDR }, |
|
{ AF_INET6, RTNLGRP_IPV6_IFADDR }, |
|
{ END_OF_GROUP_LIST }, |
|
}; |
|
|
|
static struct nl_cache_ops rtnl_addr_ops = { |
|
.co_name = "route/addr", |
|
.co_hdrsize = sizeof(struct ifaddrmsg), |
|
.co_msgtypes = { |
|
{ RTM_NEWADDR, NL_ACT_NEW, "new" }, |
|
{ RTM_DELADDR, NL_ACT_DEL, "del" }, |
|
{ RTM_GETADDR, NL_ACT_GET, "get" }, |
|
END_OF_MSGTYPES_LIST, |
|
}, |
|
.co_protocol = NETLINK_ROUTE, |
|
.co_groups = addr_groups, |
|
.co_request_update = addr_request_update, |
|
.co_msg_parser = addr_msg_parser, |
|
.co_obj_ops = &addr_obj_ops, |
|
}; |
|
|
|
static void __init addr_init(void) |
|
{ |
|
nl_cache_mngt_register(&rtnl_addr_ops); |
|
} |
|
|
|
static void __exit addr_exit(void) |
|
{ |
|
nl_cache_mngt_unregister(&rtnl_addr_ops); |
|
} |
|
|
|
/** @} */
|
|
|