source: libcfa/src/concurrency/kernel.hfa@ 4f102fa

ADT ast-experimental
Last change on this file since 4f102fa was 31c967b, checked in by Thierry Delisle <tdelisle@…>, 3 years ago

Changed ready-queue so I can easily change the averaging algorithm.
Changed averaging to use logscale.

  • Property mode set to 100644
File size: 9.5 KB
Line 
1//
2// Cforall Version 1.0.0 Copyright (C) 2016 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// kernel -- Header containing the core of the kernel API
8//
9// Author : Thierry Delisle
10// Created On : Tue Jan 17 12:27:26 2017
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Tue Feb 4 12:29:26 2020
13// Update Count : 22
14//
15
16#pragma once
17
18#include "invoke.h"
19#include "time_t.hfa"
20#include "coroutine.hfa"
21
22#include "containers/list.hfa"
23
24extern "C" {
25 #include <bits/pthreadtypes.h>
26 #include <pthread.h>
27 #include <linux/types.h>
28}
29
30#ifdef __CFA_WITH_VERIFY__
31 extern bool __cfaabi_dbg_in_kernel();
32#endif
33
34//-----------------------------------------------------------------------------
35// I/O
36struct cluster;
37struct io_context$;
38struct io_arbiter$;
39
40struct io_context_params {
41 int num_entries;
42};
43
44void ?{}(io_context_params & this);
45
46//-----------------------------------------------------------------------------
47// Processor
48extern struct cluster * mainCluster;
49
50// Coroutine used py processors for the 2-step context switch
51
52struct processorCtx_t {
53 struct coroutine$ self;
54 struct processor * proc;
55};
56
57struct io_future_t;
58
59// Information needed for idle sleep
60struct __fd_waitctx {
61 // semaphore/future like object
62 // values can be 0, 1 or some file descriptor.
63 // 0 - is the default state
64 // 1 - means the proc should wake-up immediately
65 // FD - means the proc is going asleep and should be woken by writing to the FD.
66 volatile int sem;
67
68 // The event FD that corresponds to this processor
69 int evfd;
70
71 // buffer into which the proc will read from evfd
72 // unused if not using io_uring for idle sleep
73 void * rdbuf;
74
75 // future use to track the read of the eventfd
76 // unused if not using io_uring for idle sleep
77 io_future_t * ftr;
78
79 volatile unsigned long long wake__time;
80 volatile unsigned long long sleep_time;
81 volatile unsigned long long drain_time;
82};
83
84// Wrapper around kernel threads
85struct __attribute__((aligned(64))) processor {
86 // Cluster from which to get threads
87 struct cluster * cltr;
88
89 // Ready Queue state per processor
90 struct {
91 unsigned short its;
92 unsigned short itr;
93 unsigned id;
94 unsigned target;
95 unsigned last;
96 signed cpu;
97 } rdq;
98
99 // Set to true to notify the processor should terminate
100 volatile bool do_terminate;
101
102 // Coroutine ctx who does keeps the state of the processor
103 struct processorCtx_t runner;
104
105 // Name of the processor
106 const char * name;
107
108 // Handle to pthreads
109 pthread_t kernel_thread;
110
111 // Unique id for the processor (not per cluster)
112 unsigned unique_id;
113
114 struct {
115 io_context$ * ctx;
116 unsigned target;
117 volatile bool pending;
118 volatile bool dirty;
119 } io;
120
121 // Preemption data
122 // Node which is added in the discrete event simulaiton
123 struct alarm_node_t * preemption_alarm;
124
125 // If true, a preemption was triggered in an unsafe region, the processor must preempt as soon as possible
126 bool pending_preemption;
127
128 // context for idle sleep
129 struct __fd_waitctx idle_wctx;
130
131 // Termination synchronisation (user semaphore)
132 oneshot terminated;
133
134 // pthread Stack
135 void * stack;
136
137 // Link lists fields
138 dlink(processor) link;
139
140 // special init fields
141 // This is needed for memcached integration
142 // once memcached experiments are done this should probably be removed
143 // it is not a particularly safe scheme as it can make processors less homogeneous
144 struct {
145 thread$ * thrd;
146 } init;
147
148 struct KernelThreadData * local_data;
149
150 #if !defined(__CFA_NO_STATISTICS__)
151 int print_stats;
152 bool print_halts;
153 #endif
154
155#ifdef __CFA_DEBUG__
156 // Last function to enable preemption on this processor
157 const char * last_enable;
158#endif
159};
160// P9_EMBEDDED( processor, dlink(processor) )
161static inline tytagref( dlink(processor), dlink(processor) ) ?`inner( processor & this ) {
162 dlink(processor) & b = this.link;
163 tytagref( dlink(processor), dlink(processor) ) result = { b };
164 return result;
165}
166
167void ?{}(processor & this, const char name[], struct cluster & cltr);
168void ^?{}(processor & this);
169
170static inline void ?{}(processor & this) { this{ "Anonymous Processor", *mainCluster}; }
171static inline void ?{}(processor & this, struct cluster & cltr) { this{ "Anonymous Processor", cltr}; }
172static inline void ?{}(processor & this, const char name[]) { this{name, *mainCluster}; }
173
174//-----------------------------------------------------------------------------
175// Cluster Tools
176
177// Intrusives lanes which are used by the ready queue
178union __attribute__((aligned(64))) __intrusive_lane_t;
179void ?{}(__intrusive_lane_t & this);
180void ^?{}(__intrusive_lane_t & this);
181
182// Aligned timestamps which are used by the ready queue and io subsystem
183union __attribute__((aligned(64))) __timestamp_t;
184
185void ?{}(__timestamp_t & this);
186void ^?{}(__timestamp_t &);
187
188
189struct __attribute__((aligned(16))) __cache_id_t {
190 volatile unsigned id;
191};
192
193// Idle Sleep
194struct __cluster_proc_list {
195 // Spin lock protecting the queue
196 __spinlock_t lock;
197
198 // FD to use to wake a processor
199 struct __fd_waitctx * volatile fdw;
200
201 // Total number of processors
202 unsigned total;
203
204 // Total number of idle processors
205 unsigned idle;
206
207 // List of idle processors
208 dlist(processor) idles;
209
210 // List of active processors
211 dlist(processor) actives;
212};
213
214//-----------------------------------------------------------------------------
215// Cluster
216struct __attribute__((aligned(64))) cluster {
217 struct {
218 struct {
219 // Arary of subqueues
220 __intrusive_lane_t * data;
221
222 // Time since subqueues were processed
223 __timestamp_t * tscs;
224
225 // Number of subqueue / timestamps
226 size_t count;
227 } readyQ;
228
229 struct {
230 // Array of $io_
231 io_context$ ** data;
232
233 // Time since subqueues were processed
234 __timestamp_t * tscs;
235
236 // Number of I/O subqueues
237 size_t count;
238 } io;
239
240 // Cache each kernel thread belongs to
241 __cache_id_t * caches;
242 } sched;
243
244 // // Ready queue for threads
245 // __ready_queue_t ready_queue;
246
247 // Name of the cluster
248 const char * name;
249
250 // Preemption rate on this cluster
251 Duration preemption_rate;
252
253 // List of idle processors
254 __cluster_proc_list procs;
255
256 // List of threads
257 __spinlock_t thread_list_lock;
258 __dllist_t(struct thread$) threads;
259 unsigned int nthreads;
260
261 // Link lists fields
262 struct __dbg_node_cltr {
263 cluster * next;
264 cluster * prev;
265 } node;
266
267 struct {
268 io_arbiter$ * arbiter;
269 io_context_params params;
270 } io;
271
272 #if !defined(__CFA_NO_STATISTICS__)
273 struct __stats_t * stats;
274 int print_stats;
275 #endif
276};
277extern Duration default_preemption();
278
279void ?{} (cluster & this, const char name[], Duration preemption_rate, unsigned num_io, const io_context_params & io_params);
280void ^?{}(cluster & this);
281
282static inline void ?{} (cluster & this) { io_context_params default_params; this{"Anonymous Cluster", default_preemption(), 1, default_params}; }
283static inline void ?{} (cluster & this, Duration preemption_rate) { io_context_params default_params; this{"Anonymous Cluster", preemption_rate, 1, default_params}; }
284static inline void ?{} (cluster & this, const char name[]) { io_context_params default_params; this{name, default_preemption(), 1, default_params}; }
285static inline void ?{} (cluster & this, unsigned num_io) { io_context_params default_params; this{"Anonymous Cluster", default_preemption(), num_io, default_params}; }
286static inline void ?{} (cluster & this, Duration preemption_rate, unsigned num_io) { io_context_params default_params; this{"Anonymous Cluster", preemption_rate, num_io, default_params}; }
287static inline void ?{} (cluster & this, const char name[], unsigned num_io) { io_context_params default_params; this{name, default_preemption(), num_io, default_params}; }
288static inline void ?{} (cluster & this, const io_context_params & io_params) { this{"Anonymous Cluster", default_preemption(), 1, io_params}; }
289static inline void ?{} (cluster & this, Duration preemption_rate, const io_context_params & io_params) { this{"Anonymous Cluster", preemption_rate, 1, io_params}; }
290static inline void ?{} (cluster & this, const char name[], const io_context_params & io_params) { this{name, default_preemption(), 1, io_params}; }
291static inline void ?{} (cluster & this, unsigned num_io, const io_context_params & io_params) { this{"Anonymous Cluster", default_preemption(), num_io, io_params}; }
292static inline void ?{} (cluster & this, Duration preemption_rate, unsigned num_io, const io_context_params & io_params) { this{"Anonymous Cluster", preemption_rate, num_io, io_params}; }
293static inline void ?{} (cluster & this, const char name[], unsigned num_io, const io_context_params & io_params) { this{name, default_preemption(), num_io, io_params}; }
294
295static inline [cluster *&, cluster *& ] __get( cluster & this ) __attribute__((const)) { return this.node.[next, prev]; }
296
297static inline struct processor * active_processor() { return publicTLS_get( this_processor ); } // UNSAFE
298static inline struct cluster * active_cluster () { return publicTLS_get( this_processor )->cltr; }
299
300#if !defined(__CFA_NO_STATISTICS__)
301 void print_stats_now( cluster & this, int flags );
302
303 static inline void print_stats_at_exit( cluster & this, int flags ) {
304 this.print_stats |= flags;
305 }
306
307 static inline void print_stats_at_exit( processor & this, int flags ) {
308 this.print_stats |= flags;
309 }
310
311 void print_halts( processor & this );
312#endif
313
314// Local Variables: //
315// mode: c //
316// tab-width: 4 //
317// End: //
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