source: libcfa/src/concurrency/kernel.hfa@ 8631c84

ADT ast-experimental enum pthread-emulation qualifiedEnum
Last change on this file since 8631c84 was 78a580d, checked in by Thierry Delisle <tdelisle@…>, 4 years ago

I/O now updates the timestamps when draining.
Timestamps are not used yet.

  • Property mode set to 100644
File size: 9.3 KB
RevLine 
[8118303]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//
[454f478]7// kernel -- Header containing the core of the kernel API
[8118303]8//
9// Author : Thierry Delisle
[75f3522]10// Created On : Tue Jan 17 12:27:26 2017
[6b0b624]11// Last Modified By : Peter A. Buhr
[e3fea42]12// Last Modified On : Tue Feb 4 12:29:26 2020
13// Update Count : 22
[8118303]14//
15
[6b0b624]16#pragma once
[8118303]17
[bd98b58]18#include "invoke.h"
[73abe95]19#include "time_t.hfa"
[d76bd79]20#include "coroutine.hfa"
[bd98b58]21
[1eb239e4]22#include "containers/list.hfa"
[64a7146]23
[8def349]24extern "C" {
[c402739f]25 #include <bits/pthreadtypes.h>
[454f478]26 #include <pthread.h>
[c402739f]27 #include <linux/types.h>
[8def349]28}
29
[454f478]30#ifdef __CFA_WITH_VERIFY__
31 extern bool __cfaabi_dbg_in_kernel();
32#endif
33
[78da4ab]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
[bd98b58]46//-----------------------------------------------------------------------------
[de94a60]47// Processor
[de6319f]48extern struct cluster * mainCluster;
[bd98b58]49
[22226e4]50// Coroutine used py processors for the 2-step context switch
[094476d]51coroutine processorCtx_t {
52 struct processor * proc;
53};
54
[22226e4]55struct io_future_t;
[7cf3b1d]56
[22226e4]57// Information needed for idle sleep
[7cf3b1d]58struct __fd_waitctx {
[22226e4]59 // semaphore/future like object
60 // values can be 0, 1 or some file descriptor.
61 // 0 - is the default state
62 // 1 - means the proc should wake-up immediately
63 // FD - means the proc is going asleep and should be woken by writing to the FD.
64 volatile int sem;
65
66 // The event FD that corresponds to this processor
67 int evfd;
68
69 // buffer into which the proc will read from evfd
70 // unused if not using io_uring for idle sleep
71 void * rdbuf;
72
73 // future use to track the read of the eventfd
74 // unused if not using io_uring for idle sleep
75 io_future_t * ftr;
[7cf3b1d]76};
77
[e60e0dc]78// Wrapper around kernel threads
[37ba662]79struct __attribute__((aligned(128))) processor {
[025278e]80 // Cluster from which to get threads
[de94a60]81 struct cluster * cltr;
[025278e]82
[431cd4f]83 // Ready Queue state per processor
84 struct {
85 unsigned short its;
86 unsigned short itr;
87 unsigned id;
88 unsigned target;
[12daa43]89 unsigned last;
[a2a4566]90 signed cpu;
[431cd4f]91 } rdq;
[bd0bdd37]92
[37ba662]93 // Set to true to notify the processor should terminate
94 volatile bool do_terminate;
95
96 // Coroutine ctx who does keeps the state of the processor
97 struct processorCtx_t runner;
98
[de6319f]99 // Name of the processor
100 const char * name;
101
[025278e]102 // Handle to pthreads
103 pthread_t kernel_thread;
[2ac095d]104
[c993b15]105 // Unique id for the processor (not per cluster)
106 unsigned unique_id;
107
[78da4ab]108 struct {
[dddb3dd0]109 $io_context * ctx;
[adb3ea1]110 unsigned target;
[d529ad0]111 volatile bool pending;
112 volatile bool dirty;
[78da4ab]113 } io;
114
[e60e0dc]115 // Preemption data
[025278e]116 // Node which is added in the discrete event simulaiton
117 struct alarm_node_t * preemption_alarm;
118
119 // If true, a preemption was triggered in an unsafe region, the processor must preempt as soon as possible
120 bool pending_preemption;
[c81ebf9]121
[22226e4]122 // context for idle sleep
[7cf3b1d]123 struct __fd_waitctx idle_wctx;
124
[92e7631]125 // Termination synchronisation (user semaphore)
[454f478]126 oneshot terminated;
[de94a60]127
[27f5f71]128 // pthread Stack
129 void * stack;
130
[de94a60]131 // Link lists fields
[69914cbc]132 inline dlink(processor);
[14a61b5]133
[a1538cd]134 // special init fields
135 // This is needed for memcached integration
136 // once memcached experiments are done this should probably be removed
137 // it is not a particularly safe scheme as it can make processors less homogeneous
138 struct {
[e84ab3d]139 thread$ * thrd;
[a1538cd]140 } init;
141
[a67c5b6]142 struct KernelThreadData * local_data;
143
[c34ebf2]144 #if !defined(__CFA_NO_STATISTICS__)
[69fbc61]145 int print_stats;
[c34ebf2]146 bool print_halts;
147 #endif
148
[e60e0dc]149#ifdef __CFA_DEBUG__
[025278e]150 // Last function to enable preemption on this processor
[cdbfab0]151 const char * last_enable;
[e60e0dc]152#endif
[c84e80a]153};
[69914cbc]154P9_EMBEDDED( processor, dlink(processor) )
[c84e80a]155
[a5e7233]156void ?{}(processor & this, const char name[], struct cluster & cltr);
[242a902]157void ^?{}(processor & this);
[c84e80a]158
[a5e7233]159static inline void ?{}(processor & this) { this{ "Anonymous Processor", *mainCluster}; }
160static inline void ?{}(processor & this, struct cluster & cltr) { this{ "Anonymous Processor", cltr}; }
161static inline void ?{}(processor & this, const char name[]) { this{name, *mainCluster}; }
[de6319f]162
[7768b8d]163//-----------------------------------------------------------------------------
164// Cluster Tools
[dca5802]165
[9cc3a18]166// Intrusives lanes which are used by the ready queue
[61d7bec]167struct __attribute__((aligned(128))) __intrusive_lane_t;
[dca5802]168void ?{}(__intrusive_lane_t & this);
169void ^?{}(__intrusive_lane_t & this);
[7768b8d]170
[884f3f67]171// Aligned timestamps which are used by the ready queue and io subsystem
[8cd40bf]172struct __attribute__((aligned(128))) __timestamp_t {
173 volatile unsigned long long tv;
[089d30c]174 volatile unsigned long long ma;
[8cd40bf]175};
176
[089d30c]177static inline void ?{}(__timestamp_t & this) { this.tv = 0; this.ma = 0; }
[a892e61]178static inline void ^?{}(__timestamp_t &) {}
[9cc3a18]179
[dca5802]180
[884f3f67]181struct __attribute__((aligned(16))) __cache_id_t {
182 volatile unsigned id;
183};
[9cc3a18]184
[1eb239e4]185// Idle Sleep
[6a9b12b]186struct __cluster_proc_list {
[1eb239e4]187 // Spin lock protecting the queue
[34b8cb7]188 __spinlock_t lock;
189
190 // FD to use to wake a processor
[7cf3b1d]191 struct __fd_waitctx * volatile fdw;
[1eb239e4]192
193 // Total number of processors
194 unsigned total;
195
196 // Total number of idle processors
197 unsigned idle;
198
199 // List of idle processors
[69914cbc]200 dlist(processor) idles;
[fc59b580]201
202 // List of active processors
[69914cbc]203 dlist(processor) actives;
[1eb239e4]204};
205
[de94a60]206//-----------------------------------------------------------------------------
207// Cluster
[37ba662]208struct __attribute__((aligned(128))) cluster {
[884f3f67]209 struct {
210 struct {
211 // Arary of subqueues
[adb3ea1]212 __intrusive_lane_t * data;
[884f3f67]213
214 // Time since subqueues were processed
[adb3ea1]215 __timestamp_t * tscs;
[884f3f67]216
217 // Number of subqueue / timestamps
218 size_t count;
219 } readyQ;
220
221 struct {
[adb3ea1]222 // Array of $io_
223 $io_context ** data;
224
[708ae38]225 // Time since subqueues were processed
[adb3ea1]226 __timestamp_t * tscs;
[708ae38]227
228 // Number of I/O subqueues
229 size_t count;
[884f3f67]230 } io;
231
232 // Cache each kernel thread belongs to
[adb3ea1]233 __cache_id_t * caches;
[884f3f67]234 } sched;
235
236 // // Ready queue for threads
237 // __ready_queue_t ready_queue;
[de94a60]238
239 // Name of the cluster
240 const char * name;
241
242 // Preemption rate on this cluster
243 Duration preemption_rate;
244
[64a7146]245 // List of idle processors
[6a9b12b]246 __cluster_proc_list procs;
[de94a60]247
[d4e68a6]248 // List of threads
[a1a17a74]249 __spinlock_t thread_list_lock;
[e84ab3d]250 __dllist_t(struct thread$) threads;
[d4e68a6]251 unsigned int nthreads;
[a1a17a74]252
[de94a60]253 // Link lists fields
[ea8b2f7]254 struct __dbg_node_cltr {
[de94a60]255 cluster * next;
256 cluster * prev;
257 } node;
[92976d9]258
[f00b26d4]259 struct {
[78da4ab]260 $io_arbiter * arbiter;
261 io_context_params params;
[f00b26d4]262 } io;
[038be32]263
264 #if !defined(__CFA_NO_STATISTICS__)
[8834751]265 struct __stats_t * stats;
[69fbc61]266 int print_stats;
[038be32]267 #endif
[de94a60]268};
269extern Duration default_preemption();
270
[f00b26d4]271void ?{} (cluster & this, const char name[], Duration preemption_rate, unsigned num_io, const io_context_params & io_params);
[de94a60]272void ^?{}(cluster & this);
273
[f00b26d4]274static inline void ?{} (cluster & this) { io_context_params default_params; this{"Anonymous Cluster", default_preemption(), 1, default_params}; }
275static inline void ?{} (cluster & this, Duration preemption_rate) { io_context_params default_params; this{"Anonymous Cluster", preemption_rate, 1, default_params}; }
276static inline void ?{} (cluster & this, const char name[]) { io_context_params default_params; this{name, default_preemption(), 1, default_params}; }
277static inline void ?{} (cluster & this, unsigned num_io) { io_context_params default_params; this{"Anonymous Cluster", default_preemption(), num_io, default_params}; }
278static inline void ?{} (cluster & this, Duration preemption_rate, unsigned num_io) { io_context_params default_params; this{"Anonymous Cluster", preemption_rate, num_io, default_params}; }
279static inline void ?{} (cluster & this, const char name[], unsigned num_io) { io_context_params default_params; this{name, default_preemption(), num_io, default_params}; }
280static inline void ?{} (cluster & this, const io_context_params & io_params) { this{"Anonymous Cluster", default_preemption(), 1, io_params}; }
281static inline void ?{} (cluster & this, Duration preemption_rate, const io_context_params & io_params) { this{"Anonymous Cluster", preemption_rate, 1, io_params}; }
282static inline void ?{} (cluster & this, const char name[], const io_context_params & io_params) { this{name, default_preemption(), 1, io_params}; }
283static inline void ?{} (cluster & this, unsigned num_io, const io_context_params & io_params) { this{"Anonymous Cluster", default_preemption(), num_io, io_params}; }
284static 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}; }
285static inline void ?{} (cluster & this, const char name[], unsigned num_io, const io_context_params & io_params) { this{name, default_preemption(), num_io, io_params}; }
[de94a60]286
[c7a900a]287static inline [cluster *&, cluster *& ] __get( cluster & this ) __attribute__((const)) { return this.node.[next, prev]; }
[de94a60]288
[8fc652e0]289static inline struct processor * active_processor() { return publicTLS_get( this_processor ); } // UNSAFE
290static inline struct cluster * active_cluster () { return publicTLS_get( this_processor )->cltr; }
[d4e68a6]291
[038be32]292#if !defined(__CFA_NO_STATISTICS__)
[8fc652e0]293 void print_stats_now( cluster & this, int flags );
294
[69fbc61]295 static inline void print_stats_at_exit( cluster & this, int flags ) {
296 this.print_stats |= flags;
[038be32]297 }
[c34ebf2]298
[69fbc61]299 static inline void print_stats_at_exit( processor & this, int flags ) {
300 this.print_stats |= flags;
[c34ebf2]301 }
302
303 void print_halts( processor & this );
[038be32]304#endif
305
[8118303]306// Local Variables: //
[6b0b624]307// mode: c //
308// tab-width: 4 //
[8118303]309// End: //
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