1 | //
|
---|
2 | // Cforall Version 1.0.0 Copyright (C) 2022 University of Waterloo
|
---|
3 | //
|
---|
4 | // The contents of this file are covered under the licence agreement in the
|
---|
5 | // file "LICENCE" distributed with Cforall.
|
---|
6 | //
|
---|
7 | // cluster.hfa -- file that includes helpers for subsystem that need cluster wide support
|
---|
8 | //
|
---|
9 | // Author : Thierry Delisle
|
---|
10 | // Created On : Tue Mar 15 16:40:12 2022
|
---|
11 | // Last Modified By :
|
---|
12 | // Last Modified On :
|
---|
13 | // Update Count :
|
---|
14 | //
|
---|
15 |
|
---|
16 | #pragma once
|
---|
17 |
|
---|
18 | #include "device/cpu.hfa"
|
---|
19 | #include "kernel/private.hfa"
|
---|
20 |
|
---|
21 | #include <limits.h>
|
---|
22 |
|
---|
23 | #include "clock.hfa"
|
---|
24 |
|
---|
25 | //-----------------------------------------------------------------------
|
---|
26 | // Calc moving average based on existing average, before and current time.
|
---|
27 | static inline unsigned long long moving_average(unsigned long long currtsc, unsigned long long instsc, unsigned long long old_avg, bool strict) {
|
---|
28 | (void)strict; // disable the warning around the fact this is unused in release.
|
---|
29 | /* paranoid */ warnf( !strict || old_avg < 33_000_000_000, "Suspiciously large previous average: %'llu (%llx), %'ldms \n", old_avg, old_avg, program()`ms );
|
---|
30 |
|
---|
31 | const unsigned long long new_val = currtsc > instsc ? currtsc - instsc : 0;
|
---|
32 | const unsigned long long total_weight = 16;
|
---|
33 | const unsigned long long new_weight = 4;
|
---|
34 | const unsigned long long old_weight = total_weight - new_weight;
|
---|
35 | const unsigned long long ret = ((new_weight * new_val) + (old_weight * old_avg)) / total_weight;
|
---|
36 |
|
---|
37 | /* paranoid */ warnf( !strict || ret < 33_000_000_000, "Suspiciously large new average after %'ldms cputime: %'llu (%llx) from %'llu-%'llu (%'llu, %'llu) and %'llu\n", program()`ms, ret, ret, currtsc, instsc, new_val, new_val / 1000000, old_avg );
|
---|
38 | return ret;
|
---|
39 | }
|
---|
40 |
|
---|
41 | static inline void touch_tsc(__timestamp_t * tscs, size_t idx, unsigned long long ts_prev, unsigned long long ts_next, bool strict) {
|
---|
42 | if (ts_next == ULLONG_MAX) return;
|
---|
43 | unsigned long long now = rdtscl();
|
---|
44 | unsigned long long pma = __atomic_load_n(&tscs[ idx ].t.ma, __ATOMIC_RELAXED);
|
---|
45 | __atomic_store_n(&tscs[ idx ].t.tv, ts_next, __ATOMIC_RELAXED);
|
---|
46 | __atomic_store_n(&tscs[ idx ].t.ma, moving_average(now, ts_prev, pma, strict), __ATOMIC_RELAXED);
|
---|
47 | }
|
---|
48 |
|
---|
49 | //-----------------------------------------------------------------------
|
---|
50 | // Calc age a timestamp should be before needing help.
|
---|
51 | forall(Data_t * | { unsigned long long ts(Data_t & this); })
|
---|
52 | static inline unsigned long long calc_cutoff(
|
---|
53 | const unsigned long long ctsc,
|
---|
54 | unsigned procid,
|
---|
55 | size_t count,
|
---|
56 | Data_t * data,
|
---|
57 | __timestamp_t * tscs,
|
---|
58 | const unsigned shard_factor,
|
---|
59 | bool strict
|
---|
60 | ) {
|
---|
61 | unsigned start = procid;
|
---|
62 | unsigned long long max = 0;
|
---|
63 | for(i; shard_factor) {
|
---|
64 | unsigned long long ptsc = ts(data[start + i]);
|
---|
65 | if(ptsc != ULLONG_MAX) {
|
---|
66 | /* paranoid */ verify( start + i < count );
|
---|
67 | unsigned long long tsc = moving_average(ctsc, ptsc, tscs[start + i].t.ma, strict);
|
---|
68 | if(tsc > max) max = tsc;
|
---|
69 | }
|
---|
70 | }
|
---|
71 | return 8 * max;
|
---|
72 | }
|
---|
73 |
|
---|
74 | static inline unsigned cache_id(struct cluster * cltr, unsigned idx) with (cltr->sched) {
|
---|
75 | // Figure out the current cpu and make sure it is valid
|
---|
76 | const int cpu = __kernel_getcpu();
|
---|
77 | /* paranoid */ verify(cpu >= 0);
|
---|
78 | /* paranoid */ verify(cpu < cpu_info.hthrd_count);
|
---|
79 | unsigned this_cache = cpu_info.llc_map[cpu].cache;
|
---|
80 |
|
---|
81 | // Super important: don't write the same value over and over again
|
---|
82 | // We want to maximise our chances that his particular values stays in cache
|
---|
83 | if(caches[idx].id != this_cache)
|
---|
84 | __atomic_store_n(&caches[idx].id, this_cache, __ATOMIC_RELAXED);
|
---|
85 |
|
---|
86 | return this_cache;
|
---|
87 | }
|
---|
88 |
|
---|
89 | static struct {
|
---|
90 | const unsigned readyq;
|
---|
91 | const unsigned io;
|
---|
92 | } __shard_factor = { 2, 1 };
|
---|
93 |
|
---|
94 | // Local Variables: //
|
---|
95 | // mode: c //
|
---|
96 | // tab-width: 4 //
|
---|
97 | // End: //
|
---|