mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-27 17:25:03 +07:00
8cb081746c
We currently have two levels of strict validation: 1) liberal (default) - undefined (type >= max) & NLA_UNSPEC attributes accepted - attribute length >= expected accepted - garbage at end of message accepted 2) strict (opt-in) - NLA_UNSPEC attributes accepted - attribute length >= expected accepted Split out parsing strictness into four different options: * TRAILING - check that there's no trailing data after parsing attributes (in message or nested) * MAXTYPE - reject attrs > max known type * UNSPEC - reject attributes with NLA_UNSPEC policy entries * STRICT_ATTRS - strictly validate attribute size The default for future things should be *everything*. The current *_strict() is a combination of TRAILING and MAXTYPE, and is renamed to _deprecated_strict(). The current regular parsing has none of this, and is renamed to *_parse_deprecated(). Additionally it allows us to selectively set one of the new flags even on old policies. Notably, the UNSPEC flag could be useful in this case, since it can be arranged (by filling in the policy) to not be an incompatible userspace ABI change, but would then going forward prevent forgetting attribute entries. Similar can apply to the POLICY flag. We end up with the following renames: * nla_parse -> nla_parse_deprecated * nla_parse_strict -> nla_parse_deprecated_strict * nlmsg_parse -> nlmsg_parse_deprecated * nlmsg_parse_strict -> nlmsg_parse_deprecated_strict * nla_parse_nested -> nla_parse_nested_deprecated * nla_validate_nested -> nla_validate_nested_deprecated Using spatch, of course: @@ expression TB, MAX, HEAD, LEN, POL, EXT; @@ -nla_parse(TB, MAX, HEAD, LEN, POL, EXT) +nla_parse_deprecated(TB, MAX, HEAD, LEN, POL, EXT) @@ expression NLH, HDRLEN, TB, MAX, POL, EXT; @@ -nlmsg_parse(NLH, HDRLEN, TB, MAX, POL, EXT) +nlmsg_parse_deprecated(NLH, HDRLEN, TB, MAX, POL, EXT) @@ expression NLH, HDRLEN, TB, MAX, POL, EXT; @@ -nlmsg_parse_strict(NLH, HDRLEN, TB, MAX, POL, EXT) +nlmsg_parse_deprecated_strict(NLH, HDRLEN, TB, MAX, POL, EXT) @@ expression TB, MAX, NLA, POL, EXT; @@ -nla_parse_nested(TB, MAX, NLA, POL, EXT) +nla_parse_nested_deprecated(TB, MAX, NLA, POL, EXT) @@ expression START, MAX, POL, EXT; @@ -nla_validate_nested(START, MAX, POL, EXT) +nla_validate_nested_deprecated(START, MAX, POL, EXT) @@ expression NLH, HDRLEN, MAX, POL, EXT; @@ -nlmsg_validate(NLH, HDRLEN, MAX, POL, EXT) +nlmsg_validate_deprecated(NLH, HDRLEN, MAX, POL, EXT) For this patch, don't actually add the strict, non-renamed versions yet so that it breaks compile if I get it wrong. Also, while at it, make nla_validate and nla_parse go down to a common __nla_validate_parse() function to avoid code duplication. Ultimately, this allows us to have very strict validation for every new caller of nla_parse()/nlmsg_parse() etc as re-introduced in the next patch, while existing things will continue to work as is. In effect then, this adds fully strict validation for any new command. Signed-off-by: Johannes Berg <johannes.berg@intel.com> Signed-off-by: David S. Miller <davem@davemloft.net>
511 lines
11 KiB
C
511 lines
11 KiB
C
/*
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* net/sched/sch_drr.c Deficit Round Robin scheduler
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*
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* Copyright (c) 2008 Patrick McHardy <kaber@trash.net>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* version 2 as published by the Free Software Foundation.
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*/
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#include <linux/module.h>
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#include <linux/slab.h>
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#include <linux/init.h>
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#include <linux/errno.h>
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#include <linux/netdevice.h>
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#include <linux/pkt_sched.h>
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#include <net/sch_generic.h>
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#include <net/pkt_sched.h>
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#include <net/pkt_cls.h>
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struct drr_class {
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struct Qdisc_class_common common;
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unsigned int filter_cnt;
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struct gnet_stats_basic_packed bstats;
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struct gnet_stats_queue qstats;
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struct net_rate_estimator __rcu *rate_est;
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struct list_head alist;
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struct Qdisc *qdisc;
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u32 quantum;
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u32 deficit;
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};
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struct drr_sched {
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struct list_head active;
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struct tcf_proto __rcu *filter_list;
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struct tcf_block *block;
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struct Qdisc_class_hash clhash;
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};
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static struct drr_class *drr_find_class(struct Qdisc *sch, u32 classid)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct Qdisc_class_common *clc;
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clc = qdisc_class_find(&q->clhash, classid);
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if (clc == NULL)
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return NULL;
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return container_of(clc, struct drr_class, common);
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}
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static const struct nla_policy drr_policy[TCA_DRR_MAX + 1] = {
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[TCA_DRR_QUANTUM] = { .type = NLA_U32 },
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};
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static int drr_change_class(struct Qdisc *sch, u32 classid, u32 parentid,
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struct nlattr **tca, unsigned long *arg,
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struct netlink_ext_ack *extack)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl = (struct drr_class *)*arg;
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struct nlattr *opt = tca[TCA_OPTIONS];
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struct nlattr *tb[TCA_DRR_MAX + 1];
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u32 quantum;
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int err;
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if (!opt) {
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NL_SET_ERR_MSG(extack, "DRR options are required for this operation");
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return -EINVAL;
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}
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err = nla_parse_nested_deprecated(tb, TCA_DRR_MAX, opt, drr_policy,
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extack);
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if (err < 0)
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return err;
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if (tb[TCA_DRR_QUANTUM]) {
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quantum = nla_get_u32(tb[TCA_DRR_QUANTUM]);
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if (quantum == 0) {
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NL_SET_ERR_MSG(extack, "Specified DRR quantum cannot be zero");
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return -EINVAL;
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}
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} else
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quantum = psched_mtu(qdisc_dev(sch));
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if (cl != NULL) {
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if (tca[TCA_RATE]) {
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err = gen_replace_estimator(&cl->bstats, NULL,
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&cl->rate_est,
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NULL,
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qdisc_root_sleeping_running(sch),
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tca[TCA_RATE]);
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if (err) {
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NL_SET_ERR_MSG(extack, "Failed to replace estimator");
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return err;
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}
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}
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sch_tree_lock(sch);
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if (tb[TCA_DRR_QUANTUM])
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cl->quantum = quantum;
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sch_tree_unlock(sch);
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return 0;
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}
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cl = kzalloc(sizeof(struct drr_class), GFP_KERNEL);
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if (cl == NULL)
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return -ENOBUFS;
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cl->common.classid = classid;
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cl->quantum = quantum;
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cl->qdisc = qdisc_create_dflt(sch->dev_queue,
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&pfifo_qdisc_ops, classid,
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NULL);
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if (cl->qdisc == NULL)
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cl->qdisc = &noop_qdisc;
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else
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qdisc_hash_add(cl->qdisc, true);
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if (tca[TCA_RATE]) {
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err = gen_replace_estimator(&cl->bstats, NULL, &cl->rate_est,
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NULL,
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qdisc_root_sleeping_running(sch),
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tca[TCA_RATE]);
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if (err) {
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NL_SET_ERR_MSG(extack, "Failed to replace estimator");
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qdisc_put(cl->qdisc);
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kfree(cl);
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return err;
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}
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}
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sch_tree_lock(sch);
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qdisc_class_hash_insert(&q->clhash, &cl->common);
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sch_tree_unlock(sch);
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qdisc_class_hash_grow(sch, &q->clhash);
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*arg = (unsigned long)cl;
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return 0;
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}
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static void drr_destroy_class(struct Qdisc *sch, struct drr_class *cl)
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{
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gen_kill_estimator(&cl->rate_est);
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qdisc_put(cl->qdisc);
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kfree(cl);
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}
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static int drr_delete_class(struct Qdisc *sch, unsigned long arg)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl = (struct drr_class *)arg;
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if (cl->filter_cnt > 0)
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return -EBUSY;
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sch_tree_lock(sch);
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qdisc_purge_queue(cl->qdisc);
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qdisc_class_hash_remove(&q->clhash, &cl->common);
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sch_tree_unlock(sch);
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drr_destroy_class(sch, cl);
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return 0;
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}
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static unsigned long drr_search_class(struct Qdisc *sch, u32 classid)
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{
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return (unsigned long)drr_find_class(sch, classid);
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}
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static struct tcf_block *drr_tcf_block(struct Qdisc *sch, unsigned long cl,
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struct netlink_ext_ack *extack)
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{
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struct drr_sched *q = qdisc_priv(sch);
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if (cl) {
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NL_SET_ERR_MSG(extack, "DRR classid must be zero");
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return NULL;
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}
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return q->block;
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}
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static unsigned long drr_bind_tcf(struct Qdisc *sch, unsigned long parent,
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u32 classid)
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{
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struct drr_class *cl = drr_find_class(sch, classid);
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if (cl != NULL)
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cl->filter_cnt++;
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return (unsigned long)cl;
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}
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static void drr_unbind_tcf(struct Qdisc *sch, unsigned long arg)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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cl->filter_cnt--;
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}
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static int drr_graft_class(struct Qdisc *sch, unsigned long arg,
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struct Qdisc *new, struct Qdisc **old,
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struct netlink_ext_ack *extack)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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if (new == NULL) {
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new = qdisc_create_dflt(sch->dev_queue, &pfifo_qdisc_ops,
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cl->common.classid, NULL);
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if (new == NULL)
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new = &noop_qdisc;
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}
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*old = qdisc_replace(sch, new, &cl->qdisc);
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return 0;
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}
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static struct Qdisc *drr_class_leaf(struct Qdisc *sch, unsigned long arg)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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return cl->qdisc;
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}
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static void drr_qlen_notify(struct Qdisc *csh, unsigned long arg)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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list_del(&cl->alist);
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}
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static int drr_dump_class(struct Qdisc *sch, unsigned long arg,
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struct sk_buff *skb, struct tcmsg *tcm)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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struct nlattr *nest;
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tcm->tcm_parent = TC_H_ROOT;
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tcm->tcm_handle = cl->common.classid;
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tcm->tcm_info = cl->qdisc->handle;
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nest = nla_nest_start_noflag(skb, TCA_OPTIONS);
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if (nest == NULL)
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goto nla_put_failure;
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if (nla_put_u32(skb, TCA_DRR_QUANTUM, cl->quantum))
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goto nla_put_failure;
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return nla_nest_end(skb, nest);
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nla_put_failure:
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nla_nest_cancel(skb, nest);
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return -EMSGSIZE;
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}
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static int drr_dump_class_stats(struct Qdisc *sch, unsigned long arg,
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struct gnet_dump *d)
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{
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struct drr_class *cl = (struct drr_class *)arg;
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__u32 qlen = qdisc_qlen_sum(cl->qdisc);
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struct Qdisc *cl_q = cl->qdisc;
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struct tc_drr_stats xstats;
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memset(&xstats, 0, sizeof(xstats));
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if (qlen)
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xstats.deficit = cl->deficit;
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if (gnet_stats_copy_basic(qdisc_root_sleeping_running(sch),
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d, NULL, &cl->bstats) < 0 ||
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gnet_stats_copy_rate_est(d, &cl->rate_est) < 0 ||
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gnet_stats_copy_queue(d, cl_q->cpu_qstats, &cl_q->qstats, qlen) < 0)
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return -1;
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return gnet_stats_copy_app(d, &xstats, sizeof(xstats));
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}
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static void drr_walk(struct Qdisc *sch, struct qdisc_walker *arg)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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unsigned int i;
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if (arg->stop)
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return;
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for (i = 0; i < q->clhash.hashsize; i++) {
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hlist_for_each_entry(cl, &q->clhash.hash[i], common.hnode) {
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if (arg->count < arg->skip) {
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arg->count++;
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continue;
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}
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if (arg->fn(sch, (unsigned long)cl, arg) < 0) {
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arg->stop = 1;
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return;
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}
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arg->count++;
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}
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}
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}
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static struct drr_class *drr_classify(struct sk_buff *skb, struct Qdisc *sch,
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int *qerr)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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struct tcf_result res;
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struct tcf_proto *fl;
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int result;
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if (TC_H_MAJ(skb->priority ^ sch->handle) == 0) {
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cl = drr_find_class(sch, skb->priority);
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if (cl != NULL)
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return cl;
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}
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*qerr = NET_XMIT_SUCCESS | __NET_XMIT_BYPASS;
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fl = rcu_dereference_bh(q->filter_list);
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result = tcf_classify(skb, fl, &res, false);
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if (result >= 0) {
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#ifdef CONFIG_NET_CLS_ACT
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switch (result) {
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case TC_ACT_QUEUED:
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case TC_ACT_STOLEN:
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case TC_ACT_TRAP:
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*qerr = NET_XMIT_SUCCESS | __NET_XMIT_STOLEN;
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/* fall through */
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case TC_ACT_SHOT:
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return NULL;
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}
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#endif
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cl = (struct drr_class *)res.class;
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if (cl == NULL)
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cl = drr_find_class(sch, res.classid);
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return cl;
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}
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return NULL;
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}
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static int drr_enqueue(struct sk_buff *skb, struct Qdisc *sch,
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struct sk_buff **to_free)
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{
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unsigned int len = qdisc_pkt_len(skb);
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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int err = 0;
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bool first;
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cl = drr_classify(skb, sch, &err);
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if (cl == NULL) {
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if (err & __NET_XMIT_BYPASS)
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qdisc_qstats_drop(sch);
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__qdisc_drop(skb, to_free);
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return err;
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}
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first = !cl->qdisc->q.qlen;
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err = qdisc_enqueue(skb, cl->qdisc, to_free);
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if (unlikely(err != NET_XMIT_SUCCESS)) {
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if (net_xmit_drop_count(err)) {
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cl->qstats.drops++;
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qdisc_qstats_drop(sch);
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}
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return err;
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}
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if (first) {
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list_add_tail(&cl->alist, &q->active);
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cl->deficit = cl->quantum;
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}
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sch->qstats.backlog += len;
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sch->q.qlen++;
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return err;
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}
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static struct sk_buff *drr_dequeue(struct Qdisc *sch)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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struct sk_buff *skb;
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unsigned int len;
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if (list_empty(&q->active))
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goto out;
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while (1) {
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cl = list_first_entry(&q->active, struct drr_class, alist);
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skb = cl->qdisc->ops->peek(cl->qdisc);
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if (skb == NULL) {
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qdisc_warn_nonwc(__func__, cl->qdisc);
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goto out;
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}
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len = qdisc_pkt_len(skb);
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if (len <= cl->deficit) {
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cl->deficit -= len;
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skb = qdisc_dequeue_peeked(cl->qdisc);
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if (unlikely(skb == NULL))
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goto out;
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if (cl->qdisc->q.qlen == 0)
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list_del(&cl->alist);
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bstats_update(&cl->bstats, skb);
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qdisc_bstats_update(sch, skb);
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qdisc_qstats_backlog_dec(sch, skb);
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sch->q.qlen--;
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return skb;
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}
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cl->deficit += cl->quantum;
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list_move_tail(&cl->alist, &q->active);
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}
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out:
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return NULL;
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}
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static int drr_init_qdisc(struct Qdisc *sch, struct nlattr *opt,
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struct netlink_ext_ack *extack)
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{
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struct drr_sched *q = qdisc_priv(sch);
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int err;
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err = tcf_block_get(&q->block, &q->filter_list, sch, extack);
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if (err)
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return err;
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err = qdisc_class_hash_init(&q->clhash);
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if (err < 0)
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return err;
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INIT_LIST_HEAD(&q->active);
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return 0;
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}
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static void drr_reset_qdisc(struct Qdisc *sch)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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unsigned int i;
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for (i = 0; i < q->clhash.hashsize; i++) {
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hlist_for_each_entry(cl, &q->clhash.hash[i], common.hnode) {
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if (cl->qdisc->q.qlen)
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list_del(&cl->alist);
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qdisc_reset(cl->qdisc);
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}
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}
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sch->qstats.backlog = 0;
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sch->q.qlen = 0;
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}
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static void drr_destroy_qdisc(struct Qdisc *sch)
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{
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struct drr_sched *q = qdisc_priv(sch);
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struct drr_class *cl;
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struct hlist_node *next;
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unsigned int i;
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tcf_block_put(q->block);
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for (i = 0; i < q->clhash.hashsize; i++) {
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hlist_for_each_entry_safe(cl, next, &q->clhash.hash[i],
|
|
common.hnode)
|
|
drr_destroy_class(sch, cl);
|
|
}
|
|
qdisc_class_hash_destroy(&q->clhash);
|
|
}
|
|
|
|
static const struct Qdisc_class_ops drr_class_ops = {
|
|
.change = drr_change_class,
|
|
.delete = drr_delete_class,
|
|
.find = drr_search_class,
|
|
.tcf_block = drr_tcf_block,
|
|
.bind_tcf = drr_bind_tcf,
|
|
.unbind_tcf = drr_unbind_tcf,
|
|
.graft = drr_graft_class,
|
|
.leaf = drr_class_leaf,
|
|
.qlen_notify = drr_qlen_notify,
|
|
.dump = drr_dump_class,
|
|
.dump_stats = drr_dump_class_stats,
|
|
.walk = drr_walk,
|
|
};
|
|
|
|
static struct Qdisc_ops drr_qdisc_ops __read_mostly = {
|
|
.cl_ops = &drr_class_ops,
|
|
.id = "drr",
|
|
.priv_size = sizeof(struct drr_sched),
|
|
.enqueue = drr_enqueue,
|
|
.dequeue = drr_dequeue,
|
|
.peek = qdisc_peek_dequeued,
|
|
.init = drr_init_qdisc,
|
|
.reset = drr_reset_qdisc,
|
|
.destroy = drr_destroy_qdisc,
|
|
.owner = THIS_MODULE,
|
|
};
|
|
|
|
static int __init drr_init(void)
|
|
{
|
|
return register_qdisc(&drr_qdisc_ops);
|
|
}
|
|
|
|
static void __exit drr_exit(void)
|
|
{
|
|
unregister_qdisc(&drr_qdisc_ops);
|
|
}
|
|
|
|
module_init(drr_init);
|
|
module_exit(drr_exit);
|
|
MODULE_LICENSE("GPL");
|