
It is complicated to cache tc actions, they are different from tc qdisc's and filters by design. So, it is simple if we just don't cache them. This patch only removes the tc action cache allocation API. We still need to bypass the libnl cache layer from scratch, but that would not break ABI any more, therefore we can do it later. Cc: Thomas Graf <tgraf@suug.ch> Cc: Thomas Haller <thaller@redhat.com> Signed-off-by: Cong Wang <xiyou.wangcong@gmail.com> Signed-off-by: Thomas Haller <thaller@redhat.com>
574 lines
13 KiB
C
574 lines
13 KiB
C
/*
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* lib/route/act.c Action
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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) 2013 Cong Wang <xiyou.wangcong@gmail.com>
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*/
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/**
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* @ingroup tc
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* @defgroup act Action
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* @{
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*/
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#include <netlink-private/netlink.h>
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#include <netlink-private/tc.h>
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#include <netlink/netlink.h>
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#include <netlink/utils.h>
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#include <netlink-private/route/tc-api.h>
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#include <netlink/route/link.h>
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static struct nl_object_ops act_obj_ops;
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static struct nl_cache_ops rtnl_act_ops;
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int rtnl_act_append(struct rtnl_act **head, struct rtnl_act *new)
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{
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struct rtnl_act *p_act;
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int count = 1;
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if (*head == NULL) {
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*head = new;
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return 0;
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}
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p_act = *head;
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while (p_act->a_next) {
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++count;
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p_act = p_act->a_next;
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}
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if (count > TCA_ACT_MAX_PRIO)
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return -NLE_RANGE;
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p_act->a_next = new;
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return 0;
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}
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int rtnl_act_remove(struct rtnl_act **head, struct rtnl_act *act)
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{
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struct rtnl_act *a, **ap;
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for (ap = head; (a = *ap) != NULL; ap = &a->a_next)
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if (a == act)
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break;
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if (a) {
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*ap = a->a_next;
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a->a_next = NULL;
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return 0;
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}
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return -NLE_OBJ_NOTFOUND;
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}
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static int rtnl_act_fill_one(struct nl_msg *msg, struct rtnl_act *act, int order)
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{
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struct rtnl_tc *tc = TC_CAST(act);
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struct rtnl_tc_ops *ops;
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struct nlattr *nest;
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int err = -NLE_NOMEM;
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nest = nla_nest_start(msg, order);
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if (!nest)
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goto nla_put_failure;
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if (tc->ce_mask & TCA_ATTR_KIND)
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NLA_PUT_STRING(msg, TCA_ACT_KIND, tc->tc_kind);
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ops = rtnl_tc_get_ops(tc);
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if (ops && (ops->to_msg_fill || ops->to_msg_fill_raw)) {
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struct nlattr *opts;
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void *data = rtnl_tc_data(tc);
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if (ops->to_msg_fill) {
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if (!(opts = nla_nest_start(msg, TCA_ACT_OPTIONS)))
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goto nla_put_failure;
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if ((err = ops->to_msg_fill(tc, data, msg)) < 0)
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goto nla_put_failure;
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nla_nest_end(msg, opts);
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} else if ((err = ops->to_msg_fill_raw(tc, data, msg)) < 0)
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goto nla_put_failure;
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}
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nla_nest_end(msg, nest);
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return 0;
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nla_put_failure:
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return err;
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}
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int rtnl_act_fill(struct nl_msg *msg, int attrtype, struct rtnl_act *act)
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{
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struct rtnl_act *p_act = act;
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struct nlattr *nest;
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int err, order = 0;
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nest = nla_nest_start(msg, attrtype);
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if (!nest)
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return -NLE_MSGSIZE;
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while (p_act) {
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err = rtnl_act_fill_one(msg, p_act, ++order);
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if (err)
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return err;
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p_act = p_act->a_next;
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}
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nla_nest_end(msg, nest);
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return 0;
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}
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static int rtnl_act_msg_build(struct rtnl_act *act, int type, int flags,
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struct nl_msg **result)
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{
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struct nl_msg *msg;
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struct tcamsg tcahdr = {
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.tca_family = AF_UNSPEC,
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};
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int err = -NLE_MSGSIZE;
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msg = nlmsg_alloc_simple(type, flags);
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if (!msg)
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return -NLE_NOMEM;
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if (nlmsg_append(msg, &tcahdr, sizeof(tcahdr), NLMSG_ALIGNTO) < 0)
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goto nla_put_failure;
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err = rtnl_act_fill(msg, TCA_ACT_TAB, act);
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if (err < 0)
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goto nla_put_failure;
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*result = msg;
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return 0;
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nla_put_failure:
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nlmsg_free(msg);
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return err;
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}
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static int act_build(struct rtnl_act *act, int type, int flags,
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struct nl_msg **result)
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{
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int err;
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err = rtnl_act_msg_build(act, type, flags, result);
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if (err < 0)
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return err;
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return 0;
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}
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/**
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* @name Allocation/Freeing
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* @{
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*/
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struct rtnl_act *rtnl_act_alloc(void)
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{
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struct rtnl_tc *tc;
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tc = TC_CAST(nl_object_alloc(&act_obj_ops));
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if (tc)
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tc->tc_type = RTNL_TC_TYPE_ACT;
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return (struct rtnl_act *) tc;
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}
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void rtnl_act_put(struct rtnl_act *act)
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{
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nl_object_put((struct nl_object *) act);
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}
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/** @} */
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/**
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* @name Addition/Modification/Deletion
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* @{
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*/
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/**
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* Build a netlink message requesting the addition of an action
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* @arg act Action to add
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* @arg flags Additional netlink message flags
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* @arg result Pointer to store resulting netlink message
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*
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* The behaviour of this function is identical to rtnl_act_add() with
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* the exception that it will not send the message but return it int the
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* provided return pointer instead.
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*
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* @see rtnl_act_add()
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*
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* @return 0 on success or a negative error code.
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*/
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int rtnl_act_build_add_request(struct rtnl_act *act, int flags,
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struct nl_msg **result)
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{
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return act_build(act, RTM_NEWACTION, flags, result);
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}
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/**
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* Add/Update action
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* @arg sk Netlink socket
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* @arg act Action to add/update
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* @arg flags Additional netlink message flags
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*
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* Builds a \c RTM_NEWACTION netlink message requesting the addition
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* of a new action and sends the message to the kernel. The
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* configuration of the action is derived from the attributes of
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* the specified traffic class.
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*
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* The following flags may be specified:
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* - \c NLM_F_CREATE: Create action if it does not exist,
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* otherwise -NLE_OBJ_NOTFOUND is returned.
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* - \c NLM_F_EXCL: Return -NLE_EXISTS if an action with
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* matching handle exists already.
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*
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* Existing actions with matching handles will be updated, unless
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* the flag \c NLM_F_EXCL is specified. If no matching action
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* exists, it will be created if the flag \c NLM_F_CREATE is set,
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* otherwise the error -NLE_OBJ_NOTFOUND is returned.
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*
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* If the parent qdisc does not support classes, the error
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* \c NLE_OPNOTSUPP is returned.
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*
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* After sending, the function will wait for the ACK or an eventual
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* error message to be received and will therefore block until the
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* operation has been completed.
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*
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* @note Disabling auto-ack (nl_socket_disable_auto_ack()) will cause
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* this function to return immediately after sending. In this case,
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* it is the responsibility of the caller to handle any error
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* messages returned.
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*
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* @return 0 on success or a negative error code.
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*/
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int rtnl_act_add(struct nl_sock *sk, struct rtnl_act *act, int flags)
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{
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struct nl_msg *msg;
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int err;
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if ((err = rtnl_act_build_add_request(act, flags, &msg)) < 0)
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return err;
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return nl_send_sync(sk, msg);
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}
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/**
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* Build a netlink message to change action attributes
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* @arg act Action to change
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* @arg flags additional netlink message flags
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* @arg result Pointer to store resulting message.
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*
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* Builds a new netlink message requesting a change of a neigh
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* attributes. The netlink message header isn't fully equipped with
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* all relevant fields and must thus be sent out via nl_send_auto_complete()
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* or supplemented as needed.
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*
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* @return 0 on success or a negative error code.
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*/
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int rtnl_act_build_change_request(struct rtnl_act *act, int flags,
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struct nl_msg **result)
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{
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return act_build(act, RTM_NEWACTION, NLM_F_REPLACE | flags, result);
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}
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/**
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* Change an action
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* @arg sk Netlink socket.
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* @arg act action to change
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* @arg flags additional netlink message flags
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*
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* Builds a netlink message by calling rtnl_act_build_change_request(),
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* sends the request to the kernel and waits for the next ACK to be
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* received and thus blocks until the request has been processed.
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*
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* @return 0 on sucess or a negative error if an error occured.
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*/
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int rtnl_act_change(struct nl_sock *sk, struct rtnl_act *act, int flags)
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{
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struct nl_msg *msg;
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int err;
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if ((err = rtnl_act_build_change_request(act, flags, &msg)) < 0)
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return err;
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return nl_send_sync(sk, msg);
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}
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/**
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* Build netlink message requesting the deletion of an action
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* @arg act Action to delete
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* @arg flags Additional netlink message flags
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* @arg result Pointer to store resulting netlink message
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*
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* The behaviour of this function is identical to rtnl_act_delete() with
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* the exception that it will not send the message but return it in the
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* provided return pointer instead.
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*
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* @see rtnl_act_delete()
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*
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* @return 0 on success or a negative error code.
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*/
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int rtnl_act_build_delete_request(struct rtnl_act *act, int flags,
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struct nl_msg **result)
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{
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return act_build(act, RTM_DELACTION, flags, result);
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}
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/**
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* Delete action
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* @arg sk Netlink socket
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* @arg act Action to delete
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* @arg flags Additional netlink message flags
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*
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* Builds a \c RTM_DELACTION netlink message requesting the deletion
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* of an action and sends the message to the kernel.
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*
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* The message is constructed out of the following attributes:
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* - \c ifindex (required)
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* - \c prio (required)
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* - \c protocol (required)
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* - \c handle (required)
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* - \c parent (optional, if not specified parent equals root-qdisc)
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* - \c kind (optional, must match if provided)
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*
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* All other action attributes including all class type specific
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* attributes are ignored.
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*
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* After sending, the function will wait for the ACK or an eventual
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* error message to be received and will therefore block until the
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* operation has been completed.
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*
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* @note Disabling auto-ack (nl_socket_disable_auto_ack()) will cause
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* this function to return immediately after sending. In this case,
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* it is the responsibility of the caller to handle any error
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* messages returned.
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*
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* @return 0 on success or a negative error code.
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*/
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int rtnl_act_delete(struct nl_sock *sk, struct rtnl_act *act, int flags)
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{
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struct nl_msg *msg;
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int err;
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if ((err = rtnl_act_build_delete_request(act, flags, &msg)) < 0)
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return err;
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return nl_send_sync(sk, msg);
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}
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/** @} */
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static void act_dump_line(struct rtnl_tc *tc, struct nl_dump_params *p)
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{
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}
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void rtnl_act_put_all(struct rtnl_act **head)
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{
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struct rtnl_act *curr, *next;
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curr = *head;
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while (curr) {
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next = curr->a_next;
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rtnl_act_put(curr);
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curr = next;
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}
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*head = NULL;
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}
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int rtnl_act_parse(struct rtnl_act **head, struct nlattr *tb)
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{
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struct rtnl_tc_ops *ops;
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struct nlattr *tb2[TCA_ACT_MAX + 1];
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struct nlattr *nla[TCA_ACT_MAX_PRIO + 1];
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char kind[TCKINDSIZ];
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int err, i;
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err = nla_parse(nla, TCA_ACT_MAX_PRIO, nla_data(tb),
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NLMSG_ALIGN(nla_len(tb)), NULL);
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if (err < 0)
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return err;
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for (i = 1; i <= TCA_ACT_MAX_PRIO && nla[i]; i++) {
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struct rtnl_act *act;
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struct rtnl_tc *tc;
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act = rtnl_act_alloc();
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if (!act) {
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err = -NLE_NOMEM;
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goto err_free;
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}
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tc = TC_CAST(act);
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err = nla_parse(tb2, TCA_ACT_MAX, nla_data(nla[i]),
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nla_len(nla[i]), NULL);
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if (err < 0)
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goto err_free;
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if (tb2[TCA_ACT_KIND] == NULL) {
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err = -NLE_MISSING_ATTR;
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goto err_free;
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}
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nla_strlcpy(kind, tb2[TCA_ACT_KIND], sizeof(kind));
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rtnl_tc_set_kind(tc, kind);
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if (tb2[TCA_ACT_OPTIONS]) {
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tc->tc_opts = nl_data_alloc_attr(tb2[TCA_ACT_OPTIONS]);
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if (!tc->tc_opts) {
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err = -NLE_NOMEM;
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goto err_free;
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}
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tc->ce_mask |= TCA_ATTR_OPTS;
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}
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ops = rtnl_tc_get_ops(tc);
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if (ops && ops->to_msg_parser) {
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void *data = rtnl_tc_data(tc);
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if (!data) {
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err = -NLE_NOMEM;
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goto err_free;
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}
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err = ops->to_msg_parser(tc, data);
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if (err < 0)
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goto err_free;
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}
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err = rtnl_act_append(head, act);
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if (err < 0)
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goto err_free;
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}
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return 0;
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err_free:
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rtnl_act_put_all(head);
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return err;
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}
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static int rtnl_act_msg_parse(struct nlmsghdr *n, struct rtnl_act **act)
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{
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struct rtnl_tc *tc = TC_CAST(act);
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struct nl_cache *link_cache;
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struct nlattr *tb[TCAA_MAX + 1];
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struct tcamsg *tm;
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int err;
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tc->ce_msgtype = n->nlmsg_type;
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err = nlmsg_parse(n, sizeof(*tm), tb, TCAA_MAX, NULL);
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if (err < 0)
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return err;
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tm = nlmsg_data(n);
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tc->tc_family = tm->tca_family;
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if (tb[TCA_ACT_TAB] == NULL)
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return -NLE_MISSING_ATTR;
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err = rtnl_act_parse(act, tb[TCA_ACT_TAB]);
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if (err < 0)
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return err;
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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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if ((link = rtnl_link_get(link_cache, tc->tc_ifindex))) {
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rtnl_tc_set_link(tc, link);
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/* rtnl_tc_set_link incs refcnt */
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rtnl_link_put(link);
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}
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}
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return 0;
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}
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static int act_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_act *act, *p_act;
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int err;
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if (!(act = rtnl_act_alloc()))
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return -NLE_NOMEM;
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if ((err = rtnl_act_msg_parse(nlh, &act)) < 0)
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goto errout;
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p_act = act;
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while(p_act) {
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err = pp->pp_cb(OBJ_CAST(act), pp);
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if (err)
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break;
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p_act = p_act->a_next;
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}
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errout:
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rtnl_act_put(act);
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return err;
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}
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static int act_request_update(struct nl_cache *cache, struct nl_sock *sk)
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{
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struct tcamsg tcahdr = {
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.tca_family = AF_UNSPEC,
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};
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return nl_send_simple(sk, RTM_GETACTION, NLM_F_DUMP, &tcahdr,
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sizeof(tcahdr));
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}
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static struct rtnl_tc_type_ops act_ops = {
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.tt_type = RTNL_TC_TYPE_ACT,
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.tt_dump_prefix = "act",
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.tt_dump = {
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[NL_DUMP_LINE] = act_dump_line,
|
|
},
|
|
};
|
|
|
|
static struct nl_cache_ops rtnl_act_ops = {
|
|
.co_name = "route/act",
|
|
.co_hdrsize = sizeof(struct tcmsg),
|
|
.co_msgtypes = {
|
|
{ RTM_NEWACTION, NL_ACT_NEW, "new" },
|
|
{ RTM_DELACTION, NL_ACT_DEL, "del" },
|
|
{ RTM_GETACTION, NL_ACT_GET, "get" },
|
|
END_OF_MSGTYPES_LIST,
|
|
},
|
|
.co_protocol = NETLINK_ROUTE,
|
|
.co_request_update = act_request_update,
|
|
.co_msg_parser = act_msg_parser,
|
|
.co_obj_ops = &act_obj_ops,
|
|
};
|
|
|
|
static struct nl_object_ops act_obj_ops = {
|
|
.oo_name = "route/act",
|
|
.oo_size = sizeof(struct rtnl_act),
|
|
.oo_free_data = rtnl_tc_free_data,
|
|
.oo_clone = rtnl_tc_clone,
|
|
.oo_dump = {
|
|
[NL_DUMP_LINE] = rtnl_tc_dump_line,
|
|
[NL_DUMP_DETAILS] = rtnl_tc_dump_details,
|
|
[NL_DUMP_STATS] = rtnl_tc_dump_stats,
|
|
},
|
|
.oo_compare = rtnl_tc_compare,
|
|
.oo_id_attrs = (TCA_ATTR_IFINDEX | TCA_ATTR_HANDLE),
|
|
};
|
|
|
|
static void __init act_init(void)
|
|
{
|
|
rtnl_tc_type_register(&act_ops);
|
|
nl_cache_mngt_register(&rtnl_act_ops);
|
|
}
|
|
|
|
static void __exit act_exit(void)
|
|
{
|
|
nl_cache_mngt_unregister(&rtnl_act_ops);
|
|
rtnl_tc_type_unregister(&act_ops);
|
|
}
|
|
|
|
/** @} */
|