source: libcfa/src/concurrency/thread.cfa@ d41735a

ADT ast-experimental
Last change on this file since d41735a was d2ad151, checked in by Peter A. Buhr <pabuhr@…>, 3 years ago

major update of PRNG

  • Property mode set to 100644
File size: 7.2 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// thread.c --
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 : Sun Nov 20 17:17:50 2022
13// Update Count : 80
14//
15
16#define __cforall_thread__
17#define _GNU_SOURCE
18
19#include "thread.hfa"
20
21#include "exception.hfa"
22#include "kernel/private.hfa"
23#include "limits.hfa"
24
25#define __CFA_INVOKE_PRIVATE__
26#include "invoke.h"
27
28extern PRNG_ARG_T __global_random_seed, __global_random_prime;
29extern bool __global_random_mask;
30
31#pragma GCC visibility push(default)
32
33//-----------------------------------------------------------------------------
34// Thread ctors and dtors
35void ?{}( thread$ & this, const char * const name, cluster & cl, void * storage, size_t storageSize ) with( this ) {
36 context{ 0p, 0p };
37 self_cor{ name, storage, storageSize };
38 ticket = TICKET_RUNNING;
39 state = Start;
40 preempted = __NO_PREEMPTION;
41 corctx_flag = false;
42 curr_cor = &self_cor;
43 self_mon.owner = &this;
44 self_mon.recursion = 1;
45 self_mon_p = &self_mon;
46 curr_cluster = &cl;
47 rdy_link.next = 0p;
48 rdy_link.ts = MAX;
49 preferred = ready_queue_new_preferred();
50 last_proc = 0p;
51 random_state = __global_random_mask ? __global_random_prime : __global_random_prime ^ rdtscl();
52 #if defined( __CFA_WITH_VERIFY__ )
53 executing = 0p;
54 canary = 0x0D15EA5E0D15EA5Ep;
55 #endif
56
57 clh_node = malloc( );
58 *clh_node = false;
59
60 doregister(curr_cluster, this);
61 monitors{ &self_mon_p, 1, (fptr_t)0 };
62}
63
64void ^?{}(thread$& this) with( this ) {
65 #if defined( __CFA_WITH_VERIFY__ )
66 canary = 0xDEADDEADDEADDEADp;
67 #endif
68 free(clh_node);
69 unregister(curr_cluster, this);
70 ^self_cor{};
71}
72
73forall(T &)
74void copy(ThreadCancelled(T) * dst, ThreadCancelled(T) * src) {
75 dst->virtual_table = src->virtual_table;
76 dst->the_thread = src->the_thread;
77 dst->the_exception = src->the_exception;
78}
79
80forall(T &)
81const char * msg(ThreadCancelled(T) *) {
82 return "ThreadCancelled(...)";
83}
84
85forall(T &)
86static void default_thread_cancel_handler(ThreadCancelled(T) & ) {
87 // Improve this error message, can I do formatting?
88 abort( "Unhandled thread cancellation.\n" );
89}
90
91forall(T & | is_thread(T) | IS_EXCEPTION(ThreadCancelled(T))
92 | { EHM_DEFAULT_VTABLE(ThreadCancelled(T)); })
93void ?{}( thread_dtor_guard_t & this,
94 T & thrd, void(*cancelHandler)(ThreadCancelled(T) &)) {
95 monitor$ * m = get_monitor(thrd);
96 thread$ * desc = get_thread(thrd);
97
98 // Setup the monitor guard
99 void (*dtor)(T& mutex this) = ^?{};
100 bool join = cancelHandler != (void(*)(ThreadCancelled(T)&))0;
101 (this.mg){&m, (void(*)())dtor, join};
102
103
104 /* paranoid */ verifyf( Halted == desc->state || Cancelled == desc->state, "Expected thread to be Halted or Cancelled, was %d\n", (int)desc->state );
105
106 // After the guard set-up and any wait, check for cancellation.
107 struct _Unwind_Exception * cancellation = desc->self_cor.cancellation;
108 if ( likely( 0p == cancellation ) ) {
109 return;
110 } else if ( Cancelled == desc->state ) {
111 return;
112 }
113 desc->state = Cancelled;
114 void(*defaultResumptionHandler)(ThreadCancelled(T) &) =
115 join ? cancelHandler : default_thread_cancel_handler;
116
117 // TODO: Remove explitate vtable set once trac#186 is fixed.
118 ThreadCancelled(T) except;
119 except.virtual_table = &_default_vtable;
120 except.the_thread = &thrd;
121 except.the_exception = __cfaehm_cancellation_exception( cancellation );
122 // Why is this cast required?
123 throwResume (ThreadCancelled(T) &)except;
124
125 except.the_exception->virtual_table->free( except.the_exception );
126 free( cancellation );
127 desc->self_cor.cancellation = 0p;
128}
129
130void ^?{}( thread_dtor_guard_t & this ) {
131 ^(this.mg){};
132}
133
134//-----------------------------------------------------------------------------
135// Starting and stopping threads
136forall( T & | is_thread(T) )
137void __thrd_start( T & this, void (*main_p)(T &) ) {
138 thread$ * this_thrd = get_thread(this);
139
140 disable_interrupts();
141 __cfactx_start(main_p, get_coroutine(this), this, __cfactx_invoke_thread);
142
143 this_thrd->context.[SP, FP] = this_thrd->self_cor.context.[SP, FP];
144 /* paranoid */ verify( this_thrd->context.SP );
145
146 schedule_thread$( this_thrd, UNPARK_LOCAL );
147 enable_interrupts();
148}
149
150//-----------------------------------------------------------------------------
151// Support for threads that don't ues the thread keyword
152forall( T & | sized(T) | is_thread(T) | { void ?{}(T&); } )
153void ?{}( scoped(T)& this ) with( this ) {
154 handle{};
155 __thrd_start(handle, main);
156}
157
158forall( T &, P... | sized(T) | is_thread(T) | { void ?{}(T&, P); } )
159void ?{}( scoped(T)& this, P params ) with( this ) {
160 handle{ params };
161 __thrd_start(handle, main);
162}
163
164forall( T & | sized(T) | is_thread(T) )
165void ^?{}( scoped(T)& this ) with( this ) {
166 ^handle{};
167}
168
169//-----------------------------------------------------------------------------
170forall(T & | is_thread(T) | IS_RESUMPTION_EXCEPTION(ThreadCancelled(T))
171 | { EHM_DEFAULT_VTABLE(ThreadCancelled(T)); })
172T & join( T & this ) {
173 thread_dtor_guard_t guard = { this, defaultResumptionHandler };
174 return this;
175}
176
177//-----------------------------------------------------------------------------
178bool migrate( thread$ * thrd, struct cluster & cl ) {
179
180 monitor$ * tmon = get_monitor(thrd);
181 monitor$ * __monitors[] = { tmon };
182 monitor_guard_t __guard = { __monitors, 1 };
183
184
185 {
186 // if nothing needs to be done, return false
187 if( thrd->curr_cluster == &cl ) return false;
188
189 // are we migrating ourself?
190 const bool local = thrd == active_thread();
191
192 /* paranoid */ verify( !local || &cl != active_cluster() );
193 /* paranoid */ verify( !local || thrd->curr_cluster == active_cluster() );
194 /* paranoid */ verify( !local || thrd->curr_cluster == active_processor()->cltr );
195 /* paranoid */ verify( local || tmon->signal_stack.top->owner->waiting_thread == thrd );
196 /* paranoid */ verify( local || tmon->signal_stack.top );
197
198 // make sure we aren't interrupted while doing this
199 // not as important if we aren't local
200 disable_interrupts();
201
202 // actually move the thread
203 unregister( thrd->curr_cluster, *thrd );
204 thrd->curr_cluster = &cl;
205 doregister( thrd->curr_cluster, *thrd );
206
207 // restore interrupts
208 enable_interrupts();
209
210 // if this is the local thread, we are still running on the old cluster
211 if(local) yield();
212
213 /* paranoid */ verify( !local || &cl == active_cluster() );
214 /* paranoid */ verify( !local || thrd->curr_cluster == active_cluster() );
215 /* paranoid */ verify( !local || thrd->curr_cluster == active_processor()->cltr );
216 /* paranoid */ verify( local || tmon->signal_stack.top );
217 /* paranoid */ verify( local || tmon->signal_stack.top->owner->waiting_thread == thrd );
218
219 return true;
220 }
221}
222
223//-----------------------------------------------------------------------------
224
225void set_seed( uint64_t seed ) {
226 PRNG_ARG_T & state = active_thread()->random_state;
227 state = __global_random_seed = seed;
228 (void)PRNG_NAME( state ); // prime PRNG
229 __global_random_prime = state;
230 __global_random_mask = true;
231} // set_seed
232
233uint64_t prng( void ) { // [0,UINT_MAX]
234 PRNG_ARG_T & state = active_thread()->random_state;
235 return PRNG_NAME( state );
236} // prng
237
238// Local Variables: //
239// mode: c //
240// tab-width: 4 //
241// End: //
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