forked from luck/tmp_suning_uos_patched
sch: make htb_rate_cfg and functions around that generic
As it is going to be used in tbf as well, push these to generic code. Signed-off-by: Jiri Pirko <jiri@resnulli.us> Acked-by: Eric Dumazet <edumazet@google.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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292f1c7ff6
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@ -679,4 +679,23 @@ static inline struct sk_buff *skb_act_clone(struct sk_buff *skb, gfp_t gfp_mask,
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}
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#endif
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struct psched_ratecfg {
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u64 rate_bps;
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u32 mult;
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u32 shift;
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};
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static inline u64 psched_l2t_ns(const struct psched_ratecfg *r,
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unsigned int len)
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{
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return ((u64)len * r->mult) >> r->shift;
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}
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extern void psched_ratecfg_precompute(struct psched_ratecfg *r, u32 rate);
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static inline u32 psched_ratecfg_getrate(const struct psched_ratecfg *r)
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{
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return r->rate_bps >> 3;
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}
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#endif
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@ -25,6 +25,7 @@
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#include <linux/rcupdate.h>
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#include <linux/list.h>
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#include <linux/slab.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/dst.h>
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@ -896,3 +897,39 @@ void dev_shutdown(struct net_device *dev)
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WARN_ON(timer_pending(&dev->watchdog_timer));
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}
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void psched_ratecfg_precompute(struct psched_ratecfg *r, u32 rate)
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{
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u64 factor;
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u64 mult;
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int shift;
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r->rate_bps = rate << 3;
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r->shift = 0;
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r->mult = 1;
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/*
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* Calibrate mult, shift so that token counting is accurate
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* for smallest packet size (64 bytes). Token (time in ns) is
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* computed as (bytes * 8) * NSEC_PER_SEC / rate_bps. It will
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* work as long as the smallest packet transfer time can be
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* accurately represented in nanosec.
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*/
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if (r->rate_bps > 0) {
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/*
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* Higher shift gives better accuracy. Find the largest
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* shift such that mult fits in 32 bits.
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*/
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for (shift = 0; shift < 16; shift++) {
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r->shift = shift;
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factor = 8LLU * NSEC_PER_SEC * (1 << r->shift);
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mult = div64_u64(factor, r->rate_bps);
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if (mult > UINT_MAX)
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break;
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}
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r->shift = shift - 1;
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factor = 8LLU * NSEC_PER_SEC * (1 << r->shift);
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r->mult = div64_u64(factor, r->rate_bps);
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}
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}
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EXPORT_SYMBOL(psched_ratecfg_precompute);
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@ -38,6 +38,7 @@
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#include <linux/workqueue.h>
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#include <linux/slab.h>
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#include <net/netlink.h>
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#include <net/sch_generic.h>
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#include <net/pkt_sched.h>
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/* HTB algorithm.
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@ -71,12 +72,6 @@ enum htb_cmode {
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HTB_CAN_SEND /* class can send */
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};
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struct htb_rate_cfg {
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u64 rate_bps;
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u32 mult;
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u32 shift;
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};
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/* interior & leaf nodes; props specific to leaves are marked L: */
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struct htb_class {
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struct Qdisc_class_common common;
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@ -124,8 +119,8 @@ struct htb_class {
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int filter_cnt;
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/* token bucket parameters */
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struct htb_rate_cfg rate;
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struct htb_rate_cfg ceil;
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struct psched_ratecfg rate;
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struct psched_ratecfg ceil;
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s64 buffer, cbuffer; /* token bucket depth/rate */
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psched_tdiff_t mbuffer; /* max wait time */
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s64 tokens, ctokens; /* current number of tokens */
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@ -168,45 +163,6 @@ struct htb_sched {
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struct work_struct work;
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};
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static u64 l2t_ns(struct htb_rate_cfg *r, unsigned int len)
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{
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return ((u64)len * r->mult) >> r->shift;
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}
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static void htb_precompute_ratedata(struct htb_rate_cfg *r)
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{
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u64 factor;
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u64 mult;
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int shift;
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r->shift = 0;
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r->mult = 1;
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/*
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* Calibrate mult, shift so that token counting is accurate
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* for smallest packet size (64 bytes). Token (time in ns) is
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* computed as (bytes * 8) * NSEC_PER_SEC / rate_bps. It will
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* work as long as the smallest packet transfer time can be
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* accurately represented in nanosec.
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*/
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if (r->rate_bps > 0) {
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/*
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* Higher shift gives better accuracy. Find the largest
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* shift such that mult fits in 32 bits.
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*/
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for (shift = 0; shift < 16; shift++) {
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r->shift = shift;
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factor = 8LLU * NSEC_PER_SEC * (1 << r->shift);
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mult = div64_u64(factor, r->rate_bps);
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if (mult > UINT_MAX)
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break;
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}
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r->shift = shift - 1;
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factor = 8LLU * NSEC_PER_SEC * (1 << r->shift);
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r->mult = div64_u64(factor, r->rate_bps);
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}
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}
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/* find class in global hash table using given handle */
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static inline struct htb_class *htb_find(u32 handle, struct Qdisc *sch)
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{
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@ -632,7 +588,7 @@ static inline void htb_accnt_tokens(struct htb_class *cl, int bytes, s64 diff)
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if (toks > cl->buffer)
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toks = cl->buffer;
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toks -= (s64) l2t_ns(&cl->rate, bytes);
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toks -= (s64) psched_l2t_ns(&cl->rate, bytes);
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if (toks <= -cl->mbuffer)
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toks = 1 - cl->mbuffer;
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@ -645,7 +601,7 @@ static inline void htb_accnt_ctokens(struct htb_class *cl, int bytes, s64 diff)
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if (toks > cl->cbuffer)
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toks = cl->cbuffer;
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toks -= (s64) l2t_ns(&cl->ceil, bytes);
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toks -= (s64) psched_l2t_ns(&cl->ceil, bytes);
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if (toks <= -cl->mbuffer)
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toks = 1 - cl->mbuffer;
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@ -1134,9 +1090,9 @@ static int htb_dump_class(struct Qdisc *sch, unsigned long arg,
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memset(&opt, 0, sizeof(opt));
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opt.rate.rate = cl->rate.rate_bps >> 3;
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opt.rate.rate = psched_ratecfg_getrate(&cl->rate);
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opt.buffer = PSCHED_NS2TICKS(cl->buffer);
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opt.ceil.rate = cl->ceil.rate_bps >> 3;
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opt.ceil.rate = psched_ratecfg_getrate(&cl->ceil);
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opt.cbuffer = PSCHED_NS2TICKS(cl->cbuffer);
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opt.quantum = cl->quantum;
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opt.prio = cl->prio;
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@ -1503,11 +1459,8 @@ static int htb_change_class(struct Qdisc *sch, u32 classid,
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cl->prio = TC_HTB_NUMPRIO - 1;
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}
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cl->rate.rate_bps = (u64)hopt->rate.rate << 3;
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cl->ceil.rate_bps = (u64)hopt->ceil.rate << 3;
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htb_precompute_ratedata(&cl->rate);
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htb_precompute_ratedata(&cl->ceil);
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psched_ratecfg_precompute(&cl->rate, hopt->rate.rate);
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psched_ratecfg_precompute(&cl->ceil, hopt->ceil.rate);
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cl->buffer = PSCHED_TICKS2NS(hopt->buffer);
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cl->cbuffer = PSCHED_TICKS2NS(hopt->buffer);
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