source: libcfa/src/concurrency/kernel.hfa @ 4fcbf26

ADTast-experimentalenumforall-pointer-decaypthread-emulationqualifiedEnum
Last change on this file since 4fcbf26 was 7cf3b1d, checked in by Thierry Delisle <tdelisle@…>, 3 years ago

Added level of indirection to idle sleeps which helps statistics.

  • 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
[9b1dcc2]50// Processor id, required for scheduling threads
[8834751]51
[9b1dcc2]52
[094476d]53coroutine processorCtx_t {
54        struct processor * proc;
55};
56
[7cf3b1d]57
58struct __fd_waitctx {
59        volatile int fd;
60};
61
[e60e0dc]62// Wrapper around kernel threads
[37ba662]63struct __attribute__((aligned(128))) processor {
[025278e]64        // Cluster from which to get threads
[de94a60]65        struct cluster * cltr;
[025278e]66
[431cd4f]67        // Ready Queue state per processor
68        struct {
69                unsigned short its;
70                unsigned short itr;
71                unsigned id;
72                unsigned target;
[12daa43]73                unsigned last;
[a2a4566]74                signed   cpu;
[431cd4f]75        } rdq;
[bd0bdd37]76
[37ba662]77        // Set to true to notify the processor should terminate
78        volatile bool do_terminate;
79
80        // Coroutine ctx who does keeps the state of the processor
81        struct processorCtx_t runner;
82
[de6319f]83        // Name of the processor
84        const char * name;
85
[025278e]86        // Handle to pthreads
87        pthread_t kernel_thread;
[2ac095d]88
[c993b15]89        // Unique id for the processor (not per cluster)
90        unsigned unique_id;
91
[78da4ab]92        struct {
[dddb3dd0]93                $io_context * ctx;
94                bool pending;
95                bool dirty;
[78da4ab]96        } io;
97
[e60e0dc]98        // Preemption data
[025278e]99        // Node which is added in the discrete event simulaiton
100        struct alarm_node_t * preemption_alarm;
101
102        // If true, a preemption was triggered in an unsafe region, the processor must preempt as soon as possible
103        bool pending_preemption;
[c81ebf9]104
[92e7631]105        // Idle lock (kernel semaphore)
[1757f98]106        int idle_fd;
[85b1deb]107
[7cf3b1d]108        // Idle waitctx
109        struct __fd_waitctx idle_wctx;
110
[92e7631]111        // Termination synchronisation (user semaphore)
[454f478]112        oneshot terminated;
[de94a60]113
[27f5f71]114        // pthread Stack
115        void * stack;
116
[de94a60]117        // Link lists fields
[69914cbc]118        inline dlink(processor);
[14a61b5]119
[a1538cd]120        // special init fields
121        // This is needed for memcached integration
122        // once memcached experiments are done this should probably be removed
123        // it is not a particularly safe scheme as it can make processors less homogeneous
124        struct {
[e84ab3d]125                thread$ * thrd;
[a1538cd]126        } init;
127
[a67c5b6]128        struct KernelThreadData * local_data;
129
[c34ebf2]130        #if !defined(__CFA_NO_STATISTICS__)
[69fbc61]131                int print_stats;
[c34ebf2]132                bool print_halts;
133        #endif
134
[e60e0dc]135#ifdef __CFA_DEBUG__
[025278e]136        // Last function to enable preemption on this processor
[cdbfab0]137        const char * last_enable;
[e60e0dc]138#endif
[c84e80a]139};
[69914cbc]140P9_EMBEDDED( processor, dlink(processor) )
[c84e80a]141
[a5e7233]142void  ?{}(processor & this, const char name[], struct cluster & cltr);
[242a902]143void ^?{}(processor & this);
[c84e80a]144
[a5e7233]145static inline void  ?{}(processor & this)                        { this{ "Anonymous Processor", *mainCluster}; }
146static inline void  ?{}(processor & this, struct cluster & cltr) { this{ "Anonymous Processor", cltr}; }
147static inline void  ?{}(processor & this, const char name[])     { this{name, *mainCluster}; }
[de6319f]148
[7768b8d]149//-----------------------------------------------------------------------------
150// Cluster Tools
[dca5802]151
[9cc3a18]152// Intrusives lanes which are used by the ready queue
[61d7bec]153struct __attribute__((aligned(128))) __intrusive_lane_t;
[dca5802]154void  ?{}(__intrusive_lane_t & this);
155void ^?{}(__intrusive_lane_t & this);
[7768b8d]156
[9cc3a18]157// Aligned timestamps which are used by the relaxed ready queue
[8cd40bf]158struct __attribute__((aligned(128))) __timestamp_t {
159        volatile unsigned long long tv;
[089d30c]160        volatile unsigned long long ma;
[8cd40bf]161};
162
[0fb3ee5]163struct __attribute__((aligned(16))) __cache_id_t {
[a2a4566]164        volatile unsigned id;
165};
166
[089d30c]167// Aligned timestamps which are used by the relaxed ready queue
168struct __attribute__((aligned(128))) __help_cnts_t {
169        volatile unsigned long long src;
170        volatile unsigned long long dst;
171        volatile unsigned long long tri;
172};
173
174static inline void  ?{}(__timestamp_t & this) { this.tv = 0; this.ma = 0; }
[8cd40bf]175static inline void ^?{}(__timestamp_t & this) {}
[9cc3a18]176
[a2a4566]177struct __attribute__((aligned(128))) __ready_queue_caches_t;
178void  ?{}(__ready_queue_caches_t & this);
179void ^?{}(__ready_queue_caches_t & this);
180
[b798713]181//TODO adjust cache size to ARCHITECTURE
[a2a4566]182// Structure holding the ready queue
[37ba662]183struct __ready_queue_t {
[dca5802]184        // Data tracking the actual lanes
185        // On a seperate cacheline from the used struct since
186        // used can change on each push/pop but this data
187        // only changes on shrink/grow
[37ba662]188        struct {
[dca5802]189                // Arary of lanes
190                __intrusive_lane_t * volatile data;
191
[9cc3a18]192                // Array of times
193                __timestamp_t * volatile tscs;
194
[a2a4566]195                __cache_id_t * volatile caches;
196
[089d30c]197                // Array of stats
198                __help_cnts_t * volatile help;
199
[dca5802]200                // Number of lanes (empty or not)
[b798713]201                volatile size_t count;
[dca5802]202        } lanes;
[b798713]203};
204
205void  ?{}(__ready_queue_t & this);
206void ^?{}(__ready_queue_t & this);
[8cd5434]207#if !defined(__CFA_NO_STATISTICS__)
208        unsigned cnt(const __ready_queue_t & this, unsigned idx);
209#endif
[b798713]210
[1eb239e4]211// Idle Sleep
[6a9b12b]212struct __cluster_proc_list {
[1eb239e4]213        // Spin lock protecting the queue
[34b8cb7]214        __spinlock_t lock;
215
216        // FD to use to wake a processor
[7cf3b1d]217        struct __fd_waitctx * volatile fdw;
[1eb239e4]218
219        // Total number of processors
220        unsigned total;
221
222        // Total number of idle processors
223        unsigned idle;
224
225        // List of idle processors
[69914cbc]226        dlist(processor) idles;
[fc59b580]227
228        // List of active processors
[69914cbc]229        dlist(processor) actives;
[1eb239e4]230};
231
[de94a60]232//-----------------------------------------------------------------------------
233// Cluster
[37ba662]234struct __attribute__((aligned(128))) cluster {
[de94a60]235        // Ready queue for threads
[b798713]236        __ready_queue_t ready_queue;
[de94a60]237
238        // Name of the cluster
239        const char * name;
240
241        // Preemption rate on this cluster
242        Duration preemption_rate;
243
[64a7146]244        // List of idle processors
[6a9b12b]245        __cluster_proc_list procs;
[de94a60]246
[d4e68a6]247        // List of threads
[a1a17a74]248        __spinlock_t thread_list_lock;
[e84ab3d]249        __dllist_t(struct thread$) threads;
[d4e68a6]250        unsigned int nthreads;
[a1a17a74]251
[de94a60]252        // Link lists fields
[ea8b2f7]253        struct __dbg_node_cltr {
[de94a60]254                cluster * next;
255                cluster * prev;
256        } node;
[92976d9]257
[f00b26d4]258        struct {
[78da4ab]259                $io_arbiter * arbiter;
260                io_context_params params;
[f00b26d4]261        } io;
[038be32]262
263        #if !defined(__CFA_NO_STATISTICS__)
[8834751]264                struct __stats_t * stats;
[69fbc61]265                int print_stats;
[038be32]266        #endif
[de94a60]267};
268extern Duration default_preemption();
269
[f00b26d4]270void ?{} (cluster & this, const char name[], Duration preemption_rate, unsigned num_io, const io_context_params & io_params);
[de94a60]271void ^?{}(cluster & this);
272
[f00b26d4]273static inline void ?{} (cluster & this)                                            { io_context_params default_params;    this{"Anonymous Cluster", default_preemption(), 1, default_params}; }
274static inline void ?{} (cluster & this, Duration preemption_rate)                  { io_context_params default_params;    this{"Anonymous Cluster", preemption_rate, 1, default_params}; }
275static inline void ?{} (cluster & this, const char name[])                         { io_context_params default_params;    this{name, default_preemption(), 1, default_params}; }
276static inline void ?{} (cluster & this, unsigned num_io)                           { io_context_params default_params;    this{"Anonymous Cluster", default_preemption(), num_io, default_params}; }
277static inline void ?{} (cluster & this, Duration preemption_rate, unsigned num_io) { io_context_params default_params;    this{"Anonymous Cluster", preemption_rate, num_io, default_params}; }
278static inline void ?{} (cluster & this, const char name[], unsigned num_io)        { io_context_params default_params;    this{name, default_preemption(), num_io, default_params}; }
279static inline void ?{} (cluster & this, const io_context_params & io_params)                                            { this{"Anonymous Cluster", default_preemption(), 1, io_params}; }
280static inline void ?{} (cluster & this, Duration preemption_rate, const io_context_params & io_params)                  { this{"Anonymous Cluster", preemption_rate, 1, io_params}; }
281static inline void ?{} (cluster & this, const char name[], const io_context_params & io_params)                         { this{name, default_preemption(), 1, io_params}; }
282static inline void ?{} (cluster & this, unsigned num_io, const io_context_params & io_params)                           { this{"Anonymous Cluster", default_preemption(), num_io, io_params}; }
283static 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}; }
284static 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]285
[c7a900a]286static inline [cluster *&, cluster *& ] __get( cluster & this ) __attribute__((const)) { return this.node.[next, prev]; }
[de94a60]287
[8fc652e0]288static inline struct processor * active_processor() { return publicTLS_get( this_processor ); } // UNSAFE
289static inline struct cluster   * active_cluster  () { return publicTLS_get( this_processor )->cltr; }
[d4e68a6]290
[038be32]291#if !defined(__CFA_NO_STATISTICS__)
[8fc652e0]292        void print_stats_now( cluster & this, int flags );
293
[69fbc61]294        static inline void print_stats_at_exit( cluster & this, int flags ) {
295                this.print_stats |= flags;
[038be32]296        }
[c34ebf2]297
[69fbc61]298        static inline void print_stats_at_exit( processor & this, int flags ) {
299                this.print_stats |= flags;
[c34ebf2]300        }
301
302        void print_halts( processor & this );
[038be32]303#endif
304
[8118303]305// Local Variables: //
[6b0b624]306// mode: c //
307// tab-width: 4 //
[8118303]308// End: //
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