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be28368b2c
Shrink this percpu object by one array element so that the object size becomes exactly 512 bytes. This will lead to more efficient memory use, hopefully. Signed-off-by: Darrick J. Wong <djwong@kernel.org> Signed-off-by: Kent Overstreet <kent.overstreet@linux.dev>
160 lines
4.3 KiB
C
160 lines
4.3 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* bch2_time_stats - collect statistics on events that have a duration, with nicely
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* formatted textual output on demand
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*
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* - percpu buffering of event collection: cheap enough to shotgun
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* everywhere without worrying about overhead
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*
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* tracks:
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* - number of events
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* - maximum event duration ever seen
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* - sum of all event durations
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* - average event duration, standard and weighted
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* - standard deviation of event durations, standard and weighted
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* and analagous statistics for the frequency of events
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*
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* We provide both mean and weighted mean (exponentially weighted), and standard
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* deviation and weighted standard deviation, to give an efficient-to-compute
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* view of current behaviour versus. average behaviour - "did this event source
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* just become wonky, or is this typical?".
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*
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* Particularly useful for tracking down latency issues.
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*/
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#ifndef _BCACHEFS_TIME_STATS_H
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#define _BCACHEFS_TIME_STATS_H
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#include <linux/sched/clock.h>
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#include <linux/spinlock_types.h>
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#include <linux/string.h>
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#include "mean_and_variance.h"
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struct time_unit {
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const char *name;
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u64 nsecs;
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};
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/*
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* given a nanosecond value, pick the preferred time units for printing:
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*/
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const struct time_unit *bch2_pick_time_units(u64 ns);
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/*
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* quantiles - do not use:
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*
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* Only enabled if bch2_time_stats->quantiles_enabled has been manually set - don't
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* use in new code.
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*/
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#define NR_QUANTILES 15
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#define QUANTILE_IDX(i) inorder_to_eytzinger0(i, NR_QUANTILES)
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#define QUANTILE_FIRST eytzinger0_first(NR_QUANTILES)
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#define QUANTILE_LAST eytzinger0_last(NR_QUANTILES)
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struct quantiles {
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struct quantile_entry {
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u64 m;
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u64 step;
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} entries[NR_QUANTILES];
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};
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struct time_stat_buffer {
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unsigned nr;
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struct time_stat_buffer_entry {
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u64 start;
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u64 end;
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} entries[31];
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};
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struct bch2_time_stats {
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spinlock_t lock;
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bool have_quantiles;
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/* all fields are in nanoseconds */
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u64 min_duration;
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u64 max_duration;
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u64 total_duration;
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u64 max_freq;
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u64 min_freq;
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u64 last_event;
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u64 last_event_start;
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struct mean_and_variance duration_stats;
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struct mean_and_variance freq_stats;
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/* default weight for weighted mean and variance calculations */
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#define TIME_STATS_MV_WEIGHT 8
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struct mean_and_variance_weighted duration_stats_weighted;
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struct mean_and_variance_weighted freq_stats_weighted;
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struct time_stat_buffer __percpu *buffer;
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};
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struct bch2_time_stats_quantiles {
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struct bch2_time_stats stats;
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struct quantiles quantiles;
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};
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static inline struct quantiles *time_stats_to_quantiles(struct bch2_time_stats *stats)
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{
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return stats->have_quantiles
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? &container_of(stats, struct bch2_time_stats_quantiles, stats)->quantiles
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: NULL;
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}
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void __bch2_time_stats_clear_buffer(struct bch2_time_stats *, struct time_stat_buffer *);
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void __bch2_time_stats_update(struct bch2_time_stats *stats, u64, u64);
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/**
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* time_stats_update - collect a new event being tracked
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*
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* @stats - bch2_time_stats to update
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* @start - start time of event, recorded with local_clock()
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*
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* The end duration of the event will be the current time
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*/
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static inline void bch2_time_stats_update(struct bch2_time_stats *stats, u64 start)
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{
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__bch2_time_stats_update(stats, start, local_clock());
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}
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/**
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* track_event_change - track state change events
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*
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* @stats - bch2_time_stats to update
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* @v - new state, true or false
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*
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* Use this when tracking time stats for state changes, i.e. resource X becoming
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* blocked/unblocked.
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*/
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static inline bool track_event_change(struct bch2_time_stats *stats, bool v)
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{
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if (v != !!stats->last_event_start) {
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if (!v) {
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bch2_time_stats_update(stats, stats->last_event_start);
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stats->last_event_start = 0;
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} else {
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stats->last_event_start = local_clock() ?: 1;
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return true;
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}
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}
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return false;
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}
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void bch2_time_stats_exit(struct bch2_time_stats *);
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void bch2_time_stats_init(struct bch2_time_stats *);
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static inline void bch2_time_stats_quantiles_exit(struct bch2_time_stats_quantiles *statq)
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{
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bch2_time_stats_exit(&statq->stats);
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}
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static inline void bch2_time_stats_quantiles_init(struct bch2_time_stats_quantiles *statq)
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{
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bch2_time_stats_init(&statq->stats);
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statq->stats.have_quantiles = true;
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memset(&statq->quantiles, 0, sizeof(statq->quantiles));
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}
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#endif /* _BCACHEFS_TIME_STATS_H */
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