source: src/libcfa/concurrency/monitor.c@ 72ae87c

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since 72ae87c was b8116cd, checked in by Thierry Delisle <tdelisle@…>, 8 years ago

Tested and fixed out-of-order waitfor of dtors

  • Property mode set to 100644
File size: 27.6 KB
RevLine 
[f07e037]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//
[84c52a8]7// monitor_desc.c --
[f07e037]8//
9// Author : Thierry Delisle
10// Created On : Thd Feb 23 12:27:26 2017
[6b0b624]11// Last Modified By : Peter A. Buhr
[38ef0de]12// Last Modified On : Mon Jul 31 14:59:05 2017
13// Update Count : 3
[f07e037]14//
15
16#include "monitor"
17
[a933dcf4]18#include <stdlib>
19
[5ea06d6]20#include "libhdr.h"
[2ac095d]21#include "kernel_private.h"
[f07e037]22
[0c78741]23//-----------------------------------------------------------------------------
24// Forward declarations
[daacf82]25static inline void set_owner ( monitor_desc * this, thread_desc * owner );
26static inline void set_owner ( monitor_desc ** storage, short count, thread_desc * owner );
27static inline void set_mask ( monitor_desc ** storage, short count, const __waitfor_mask_t & mask );
28static inline void reset_mask( monitor_desc * this );
[6ff4507]29
[0c78741]30static inline thread_desc * next_thread( monitor_desc * this );
[6ae8c92]31static inline bool is_accepted( monitor_desc * this, const __monitor_group_t & monitors );
[0c78741]32
33static inline void lock_all( spinlock ** locks, unsigned short count );
34static inline void lock_all( monitor_desc ** source, spinlock ** /*out*/ locks, unsigned short count );
35static inline void unlock_all( spinlock ** locks, unsigned short count );
36static inline void unlock_all( monitor_desc ** locks, unsigned short count );
37
[6ff4507]38static inline void save ( monitor_desc ** ctx, short count, spinlock ** locks, unsigned int * /*out*/ recursions, __waitfor_mask_t * /*out*/ masks );
39static inline void restore( monitor_desc ** ctx, short count, spinlock ** locks, unsigned int * /*in */ recursions, __waitfor_mask_t * /*in */ masks );
[0c78741]40
[97e3296]41static inline void init ( int count, monitor_desc ** monitors, __condition_node_t * waiter, __condition_criterion_t * criteria );
42static inline void init_push( int count, monitor_desc ** monitors, __condition_node_t * waiter, __condition_criterion_t * criteria );
43
[6ff4507]44static inline thread_desc * check_condition ( __condition_criterion_t * );
45static inline void brand_condition ( condition * );
[6ae8c92]46static inline [thread_desc *, int] search_entry_queue( const __waitfor_mask_t &, monitor_desc ** monitors, int count );
[b18830e]47
[6ff4507]48forall(dtype T | sized( T ))
49static inline short insert_unique( T ** array, short & size, T * val );
50static inline short count_max ( const __waitfor_mask_t & mask );
51static inline short aggregate ( monitor_desc ** storage, const __waitfor_mask_t & mask );
[97e3296]52
53//-----------------------------------------------------------------------------
54// Useful defines
[6ff4507]55#define wait_ctx(thrd, user_info) /* Create the necessary information to use the signaller stack */ \
56 __condition_node_t waiter = { thrd, count, user_info }; /* Create the node specific to this wait operation */ \
57 __condition_criterion_t criteria[count]; /* Create the creteria this wait operation needs to wake up */ \
58 init( count, monitors, &waiter, criteria ); /* Link everything together */ \
59
60#define wait_ctx_primed(thrd, user_info) /* Create the necessary information to use the signaller stack */ \
61 __condition_node_t waiter = { thrd, count, user_info }; /* Create the node specific to this wait operation */ \
62 __condition_criterion_t criteria[count]; /* Create the creteria this wait operation needs to wake up */ \
63 init_push( count, monitors, &waiter, criteria ); /* Link everything together and push it to the AS-Stack */ \
64
65#define monitor_ctx( mons, cnt ) /* Define that create the necessary struct for internal/external scheduling operations */ \
66 monitor_desc ** monitors = mons; /* Save the targeted monitors */ \
67 unsigned short count = cnt; /* Save the count to a local variable */ \
68 unsigned int recursions[ count ]; /* Save the current recursion levels to restore them later */ \
69 __waitfor_mask_t masks[ count ]; /* Save the current waitfor masks to restore them later */ \
70 spinlock * locks [ count ]; /* We need to pass-in an array of locks to BlockInternal */ \
71
72#define monitor_save save ( monitors, count, locks, recursions, masks )
73#define monitor_restore restore( monitors, count, locks, recursions, masks )
74
[97e3296]75
[0c78741]76//-----------------------------------------------------------------------------
77// Enter/Leave routines
[690f13c]78
79
[cb0e6de]80extern "C" {
[97e3296]81 // Enter single monitor
[a843067]82 static void __enter_monitor_desc( monitor_desc * this, const __monitor_group_t & group ) {
[97e3296]83 // Lock the monitor spinlock, lock_yield to reduce contention
[b227f68]84 lock_yield( &this->lock DEBUG_CTX2 );
[1c273d0]85 thread_desc * thrd = this_thread;
[f07e037]86
[90c4df0]87 LIB_DEBUG_PRINT_SAFE("Kernel : %10p Entering mon %p (%p)\n", thrd, this, this->owner);
88
[cb0e6de]89 if( !this->owner ) {
[97e3296]90 // No one has the monitor, just take it
[cd348e7]91 set_owner( this, thrd );
[90c4df0]92
93 LIB_DEBUG_PRINT_SAFE("Kernel : mon is free \n");
[cb0e6de]94 }
95 else if( this->owner == thrd) {
[549c006]96 // We already have the monitor, just note how many times we took it
[4aa2fb2]97 verify( this->recursion > 0 );
[cb0e6de]98 this->recursion += 1;
[90c4df0]99
100 LIB_DEBUG_PRINT_SAFE("Kernel : mon already owned \n");
[cb0e6de]101 }
[6ae8c92]102 else if( is_accepted( this, group) ) {
[97e3296]103 // Some one was waiting for us, enter
104 set_owner( this, thrd );
[90c4df0]105
[daacf82]106 // Reset mask
107 reset_mask( this );
108
[90c4df0]109 LIB_DEBUG_PRINT_SAFE("Kernel : mon accepts \n");
[97e3296]110 }
[cb0e6de]111 else {
[90c4df0]112 LIB_DEBUG_PRINT_SAFE("Kernel : blocking \n");
113
[97e3296]114 // Some one else has the monitor, wait in line for it
[cb0e6de]115 append( &this->entry_queue, thrd );
[82ff5845]116 BlockInternal( &this->lock );
[cc7f4b1]117
[90c4df0]118 LIB_DEBUG_PRINT_SAFE("Kernel : %10p Entered mon %p\n", thrd, this);
119
[97e3296]120 // BlockInternal will unlock spinlock, no need to unlock ourselves
[2ac095d]121 return;
[cb0e6de]122 }
[f07e037]123
[90c4df0]124 LIB_DEBUG_PRINT_SAFE("Kernel : %10p Entered mon %p\n", thrd, this);
125
[97e3296]126 // Release the lock and leave
[cb0e6de]127 unlock( &this->lock );
[5ea06d6]128 return;
[cb0e6de]129 }
[f07e037]130
[549c006]131 static void __enter_monitor_dtor( monitor_desc * this, fptr_t func ) {
132 // Lock the monitor spinlock, lock_yield to reduce contention
133 lock_yield( &this->lock DEBUG_CTX2 );
134 thread_desc * thrd = this_thread;
135
136 LIB_DEBUG_PRINT_SAFE("Kernel : %10p Entering dtor for mon %p (%p)\n", thrd, this, this->owner);
137
138
139 if( !this->owner ) {
140 LIB_DEBUG_PRINT_SAFE("Kernel : Destroying free mon %p\n", this);
141
142 // No one has the monitor, just take it
143 set_owner( this, thrd );
144
145 unlock( &this->lock );
146 return;
147 }
148 else if( this->owner == thrd) {
149 // We already have the monitor... but where about to destroy it so the nesting will fail
150 // Abort!
151 abortf("Attempt to destroy monitor %p by thread \"%.256s\" (%p) in nested mutex.");
152 }
153
154 int count = 1;
155 monitor_desc ** monitors = &this;
156 __monitor_group_t group = { &this, 1, func };
157 if( is_accepted( this, group) ) {
158 LIB_DEBUG_PRINT_SAFE("Kernel : mon accepts dtor, block and signal it \n");
159
[b8116cd]160 // Wake the thread that is waiting for this
161 __condition_criterion_t * urgent = pop( &this->signal_stack );
162 verify( urgent );
163
[549c006]164 // Reset mask
165 reset_mask( this );
166
167 // Create the node specific to this wait operation
168 wait_ctx_primed( this_thread, 0 )
169
170 // Some one else has the monitor, wait for him to finish and then run
[b8116cd]171 BlockInternal( &this->lock, urgent->owner->waiting_thread );
[549c006]172
173 // Some one was waiting for us, enter
174 set_owner( this, thrd );
175 }
176 else {
177 LIB_DEBUG_PRINT_SAFE("Kernel : blocking \n");
178
179 wait_ctx( this_thread, 0 )
180 this->dtor_node = &waiter;
181
182 // Some one else has the monitor, wait in line for it
183 append( &this->entry_queue, thrd );
184 BlockInternal( &this->lock );
185
186 // BlockInternal will unlock spinlock, no need to unlock ourselves
187 return;
188 }
189
190 LIB_DEBUG_PRINT_SAFE("Kernel : Destroying %p\n", this);
191
192 }
193
[97e3296]194 // Leave single monitor
[1c273d0]195 void __leave_monitor_desc( monitor_desc * this ) {
[97e3296]196 // Lock the monitor spinlock, lock_yield to reduce contention
[b227f68]197 lock_yield( &this->lock DEBUG_CTX2 );
[f07e037]198
[a843067]199 LIB_DEBUG_PRINT_SAFE("Kernel : %10p Leaving mon %p (%p)\n", this_thread, this, this->owner);
200
201 verifyf( this_thread == this->owner, "Expected owner to be %p, got %p (r: %i, m: %p)", this_thread, this->owner, this->recursion, this );
[cc7f4b1]202
[97e3296]203 // Leaving a recursion level, decrement the counter
[cb0e6de]204 this->recursion -= 1;
[f07e037]205
[97e3296]206 // If we haven't left the last level of recursion
207 // it means we don't need to do anything
[690f13c]208 if( this->recursion != 0) {
209 unlock( &this->lock );
210 return;
211 }
[f07e037]212
[97e3296]213 // Get the next thread, will be null on low contention monitor
[0c78741]214 thread_desc * new_owner = next_thread( this );
[5ea06d6]215
[97e3296]216 // We can now let other threads in safely
[cb0e6de]217 unlock( &this->lock );
[51f3798]218
[690f13c]219 //We need to wake-up the thread
[1c273d0]220 WakeThread( new_owner );
221 }
222
[549c006]223 // Leave single monitor for the last time
224 void __leave_dtor_monitor_desc( monitor_desc * this ) {
225 LIB_DEBUG_DO(
226 if( this_thread != this->owner ) {
227 abortf("Destroyed monitor %p has inconsistent owner, expected %p got %p.\n", this, this_thread, this->owner);
228 }
229 if( this->recursion != 1 ) {
230 abortf("Destroyed monitor %p has %d outstanding nested calls.\n", this, this->recursion - 1);
231 }
232 )
233 }
234
[97e3296]235 // Leave the thread monitor
236 // last routine called by a thread.
237 // Should never return
[1c273d0]238 void __leave_thread_monitor( thread_desc * thrd ) {
[b18830e]239 monitor_desc * this = &thrd->self_mon;
[97e3296]240
241 // Lock the monitor now
[b227f68]242 lock_yield( &this->lock DEBUG_CTX2 );
[1c273d0]243
244 disable_interrupts();
245
[b18830e]246 thrd->self_cor.state = Halted;
[1c273d0]247
[a843067]248 verifyf( thrd == this->owner, "Expected owner to be %p, got %p (r: %i, m: %p)", thrd, this->owner, this->recursion, this );
[1c273d0]249
[97e3296]250 // Leaving a recursion level, decrement the counter
[1c273d0]251 this->recursion -= 1;
252
[97e3296]253 // If we haven't left the last level of recursion
254 // it must mean there is an error
255 if( this->recursion != 0) { abortf("Thread internal monitor has unbalanced recursion"); }
[1c273d0]256
[97e3296]257 // Fetch the next thread, can be null
[1c273d0]258 thread_desc * new_owner = next_thread( this );
259
[97e3296]260 // Leave the thread, this will unlock the spinlock
261 // Use leave thread instead of BlockInternal which is
262 // specialized for this case and supports null new_owner
[f2b12406]263 LeaveThread( &this->lock, new_owner );
[97e3296]264
265 // Control flow should never reach here!
[cc7f4b1]266 }
[2781e65]267}
268
[97e3296]269// Enter multiple monitor
270// relies on the monitor array being sorted
[6ae8c92]271static inline void enter( __monitor_group_t monitors ) {
[b18830e]272 for(int i = 0; i < monitors.size; i++) {
[a843067]273 __enter_monitor_desc( monitors.list[i], monitors );
[97e3296]274 }
[2781e65]275}
276
[97e3296]277// Leave multiple monitor
278// relies on the monitor array being sorted
[5ea06d6]279static inline void leave(monitor_desc ** monitors, int count) {
[0c78741]280 for(int i = count - 1; i >= 0; i--) {
281 __leave_monitor_desc( monitors[i] );
[2781e65]282 }
[5ea06d6]283}
284
[97e3296]285// Ctor for monitor guard
286// Sorts monitors before entering
[549c006]287void ?{}( monitor_guard_t & this, monitor_desc ** m, int count, fptr_t func ) {
[97e3296]288 // Store current array
[242a902]289 this.m = m;
290 this.count = count;
[97e3296]291
292 // Sort monitors based on address -> TODO use a sort specialized for small numbers
[242a902]293 qsort(this.m, count);
[5ea06d6]294
[97e3296]295 // Save previous thread context
[b18830e]296 this.prev_mntrs = this_thread->monitors.list;
297 this.prev_count = this_thread->monitors.size;
298 this.prev_func = this_thread->monitors.func;
[5ea06d6]299
[97e3296]300 // Update thread context (needed for conditions)
[b18830e]301 this_thread->monitors.list = m;
302 this_thread->monitors.size = count;
303 this_thread->monitors.func = func;
[90c4df0]304
[19c43b7]305 // LIB_DEBUG_PRINT_SAFE("MGUARD : enter %d\n", count);
[a843067]306
[90c4df0]307 // Enter the monitors in order
[6ae8c92]308 __monitor_group_t group = {this.m, this.count, func};
[b18830e]309 enter( group );
[a843067]310
[19c43b7]311 // LIB_DEBUG_PRINT_SAFE("MGUARD : entered\n");
[5ea06d6]312}
313
[6b224a52]314
[97e3296]315// Dtor for monitor guard
[242a902]316void ^?{}( monitor_guard_t & this ) {
[19c43b7]317 // LIB_DEBUG_PRINT_SAFE("MGUARD : leaving %d\n", this.count);
[a843067]318
[97e3296]319 // Leave the monitors in order
[242a902]320 leave( this.m, this.count );
[5ea06d6]321
[19c43b7]322 // LIB_DEBUG_PRINT_SAFE("MGUARD : left\n");
[a843067]323
[97e3296]324 // Restore thread context
[b18830e]325 this_thread->monitors.list = this.prev_mntrs;
326 this_thread->monitors.size = this.prev_count;
327 this_thread->monitors.func = this.prev_func;
[5ea06d6]328}
329
[549c006]330
331// Ctor for monitor guard
332// Sorts monitors before entering
333void ?{}( monitor_dtor_guard_t & this, monitor_desc ** m, fptr_t func ) {
334 // Store current array
335 this.m = *m;
336
337 // Save previous thread context
338 this.prev_mntrs = this_thread->monitors.list;
339 this.prev_count = this_thread->monitors.size;
340 this.prev_func = this_thread->monitors.func;
341
342 // Update thread context (needed for conditions)
343 this_thread->monitors.list = m;
344 this_thread->monitors.size = 1;
345 this_thread->monitors.func = func;
346
347 __enter_monitor_dtor( this.m, func );
348}
349
350
351// Dtor for monitor guard
352void ^?{}( monitor_dtor_guard_t & this ) {
353 // Leave the monitors in order
354 __leave_dtor_monitor_desc( this.m );
355
356 // Restore thread context
357 this_thread->monitors.list = this.prev_mntrs;
358 this_thread->monitors.size = this.prev_count;
359 this_thread->monitors.func = this.prev_func;
360}
361
[97e3296]362//-----------------------------------------------------------------------------
363// Internal scheduling types
[242a902]364void ?{}(__condition_node_t & this, thread_desc * waiting_thread, unsigned short count, uintptr_t user_info ) {
365 this.waiting_thread = waiting_thread;
366 this.count = count;
367 this.next = NULL;
368 this.user_info = user_info;
[be3d020]369}
370
[242a902]371void ?{}(__condition_criterion_t & this ) {
372 this.ready = false;
373 this.target = NULL;
374 this.owner = NULL;
375 this.next = NULL;
[be3d020]376}
377
[242a902]378void ?{}(__condition_criterion_t & this, monitor_desc * target, __condition_node_t * owner ) {
379 this.ready = false;
380 this.target = target;
381 this.owner = owner;
382 this.next = NULL;
[ad1a8dd]383}
384
[5ea06d6]385//-----------------------------------------------------------------------------
386// Internal scheduling
[be3d020]387void wait( condition * this, uintptr_t user_info = 0 ) {
[0c78741]388 brand_condition( this );
[5ea06d6]389
[97e3296]390 // Check that everything is as expected
[0c78741]391 assertf( this->monitors != NULL, "Waiting with no monitors (%p)", this->monitors );
[4aa2fb2]392 verifyf( this->monitor_count != 0, "Waiting with 0 monitors (%i)", this->monitor_count );
393 verifyf( this->monitor_count < 32u, "Excessive monitor count (%i)", this->monitor_count );
[5ea06d6]394
[97e3296]395 // Create storage for monitor context
396 monitor_ctx( this->monitors, this->monitor_count );
[0c78741]397
[97e3296]398 // Create the node specific to this wait operation
399 wait_ctx( this_thread, user_info );
[0c78741]400
[97e3296]401 // Append the current wait operation to the ones already queued on the condition
402 // We don't need locks for that since conditions must always be waited on inside monitor mutual exclusion
403 append( &this->blocked, &waiter );
[0c78741]404
[6ff4507]405 // Lock all monitors (aggregates the locks as well)
[97e3296]406 lock_all( monitors, locks, count );
[5ea06d6]407
[97e3296]408 // Find the next thread(s) to run
[6ff4507]409 short thread_count = 0;
[0c78741]410 thread_desc * threads[ count ];
[ad1a8dd]411 for(int i = 0; i < count; i++) {
412 threads[i] = 0;
413 }
414
[a843067]415 // Save monitor states
416 monitor_save;
417
[97e3296]418 // Remove any duplicate threads
[0c78741]419 for( int i = 0; i < count; i++) {
[97e3296]420 thread_desc * new_owner = next_thread( monitors[i] );
[6ff4507]421 insert_unique( threads, thread_count, new_owner );
[5ea06d6]422 }
423
[a843067]424 // Everything is ready to go to sleep
425 BlockInternal( locks, count, threads, thread_count );
426
427 // We are back, restore the owners and recursions
428 monitor_restore;
[5ea06d6]429}
430
[be3d020]431bool signal( condition * this ) {
[97e3296]432 if( is_empty( this ) ) { return false; }
[5ea06d6]433
434 //Check that everything is as expected
[4aa2fb2]435 verify( this->monitors );
436 verify( this->monitor_count != 0 );
[0c78741]437
[44264c5]438 //Some more checking in debug
[5ea06d6]439 LIB_DEBUG_DO(
[1c273d0]440 thread_desc * this_thrd = this_thread;
[b18830e]441 if ( this->monitor_count != this_thrd->monitors.size ) {
442 abortf( "Signal on condition %p made with different number of monitor(s), expected %i got %i", this, this->monitor_count, this_thrd->monitors.size );
[97e3296]443 }
[0c78741]444
445 for(int i = 0; i < this->monitor_count; i++) {
[b18830e]446 if ( this->monitors[i] != this_thrd->monitors.list[i] ) {
447 abortf( "Signal on condition %p made with different monitor, expected %p got %i", this, this->monitors[i], this_thrd->monitors.list[i] );
[97e3296]448 }
[0c78741]449 }
[5ea06d6]450 );
451
[97e3296]452 unsigned short count = this->monitor_count;
453
454 // Lock all monitors
[0c78741]455 lock_all( this->monitors, NULL, count );
456
[44264c5]457 //Pop the head of the waiting queue
[0c78741]458 __condition_node_t * node = pop_head( &this->blocked );
[44264c5]459
460 //Add the thread to the proper AS stack
[0c78741]461 for(int i = 0; i < count; i++) {
462 __condition_criterion_t * crit = &node->criteria[i];
463 assert( !crit->ready );
464 push( &crit->target->signal_stack, crit );
[5ea06d6]465 }
[0c78741]466
[44264c5]467 //Release
[0c78741]468 unlock_all( this->monitors, count );
[be3d020]469
470 return true;
[5ea06d6]471}
472
[be3d020]473bool signal_block( condition * this ) {
[97e3296]474 if( !this->blocked.head ) { return false; }
[44264c5]475
476 //Check that everything is as expected
[4aa2fb2]477 verifyf( this->monitors != NULL, "Waiting with no monitors (%p)", this->monitors );
478 verifyf( this->monitor_count != 0, "Waiting with 0 monitors (%i)", this->monitor_count );
[44264c5]479
[97e3296]480 // Create storage for monitor context
481 monitor_ctx( this->monitors, this->monitor_count );
[44264c5]482
[97e3296]483 // Lock all monitors (aggregates the locks them as well)
484 lock_all( monitors, locks, count );
[44264c5]485
[97e3296]486 // Create the node specific to this wait operation
487 wait_ctx_primed( this_thread, 0 )
[44264c5]488
489 //save contexts
[6ff4507]490 monitor_save;
[44264c5]491
492 //Find the thread to run
493 thread_desc * signallee = pop_head( &this->blocked )->waiting_thread;
[6ff4507]494 set_owner( monitors, count, signallee );
[44264c5]495
496 //Everything is ready to go to sleep
[82ff5845]497 BlockInternal( locks, count, &signallee, 1 );
[44264c5]498
[c81ebf9]499
[97e3296]500 // WE WOKE UP
[c81ebf9]501
502
[6ff4507]503 //We are back, restore the masks and recursions
504 monitor_restore;
[be3d020]505
506 return true;
507}
508
[97e3296]509// Access the user_info of the thread waiting at the front of the queue
[be3d020]510uintptr_t front( condition * this ) {
[2ac095d]511 verifyf( !is_empty(this),
[4aa2fb2]512 "Attempt to access user data on an empty condition.\n"
513 "Possible cause is not checking if the condition is empty before reading stored data."
[be3d020]514 );
515 return this->blocked.head->user_info;
[44264c5]516}
517
[c81ebf9]518//-----------------------------------------------------------------------------
[b18830e]519// External scheduling
520// cases to handle :
521// - target already there :
522// block and wake
523// - dtor already there
524// put thread on signaller stack
525// - non-blocking
526// return else
527// - timeout
528// return timeout
529// - block
530// setup mask
531// block
[6ae8c92]532void __waitfor_internal( const __waitfor_mask_t & mask, int duration ) {
[b18830e]533 // This statment doesn't have a contiguous list of monitors...
534 // Create one!
[6ae8c92]535 short max = count_max( mask );
[b18830e]536 monitor_desc * mon_storage[max];
[6ae8c92]537 short actual_count = aggregate( mon_storage, mask );
[97e3296]538
[daacf82]539 if(actual_count == 0) return;
[19c43b7]540
541 LIB_DEBUG_PRINT_SAFE("Kernel : waitfor internal proceeding\n");
[4cc9b13]542
[97e3296]543 // Create storage for monitor context
[b18830e]544 monitor_ctx( mon_storage, actual_count );
[c81ebf9]545
[6ff4507]546 // Lock all monitors (aggregates the locks as well)
[97e3296]547 lock_all( monitors, locks, count );
[c81ebf9]548
[b18830e]549 {
550 // Check if the entry queue
[6ae8c92]551 thread_desc * next; int index;
552 [next, index] = search_entry_queue( mask, monitors, count );
[b18830e]553
554 if( next ) {
[19c43b7]555 *mask.accepted = index;
[6ae8c92]556 if( mask.clauses[index].is_dtor ) {
[b8116cd]557 LIB_DEBUG_PRINT_SAFE("Kernel : dtor already there\n");
[549c006]558 verifyf( mask.clauses[index].size == 1 , "ERROR: Accepted dtor has more than 1 mutex parameter." );
559
560 monitor_desc * mon2dtor = mask.clauses[index].list[0];
561 verifyf( mon2dtor->dtor_node, "ERROR: Accepted monitor has no dtor_node." );
562
563 __condition_criterion_t * dtor_crit = mon2dtor->dtor_node->criteria;
564 push( &mon2dtor->signal_stack, dtor_crit );
565
566 unlock_all( locks, count );
[b18830e]567 }
568 else {
[19c43b7]569 LIB_DEBUG_PRINT_SAFE("Kernel : thread present, baton-passing\n");
570
571 // Create the node specific to this wait operation
572 wait_ctx_primed( this_thread, 0 );
573
574 // Save monitor states
575 monitor_save;
576
577 // Set the owners to be the next thread
578 set_owner( monitors, count, next );
579
580 // Everything is ready to go to sleep
581 BlockInternal( locks, count, &next, 1 );
582
583 // We are back, restore the owners and recursions
584 monitor_restore;
585
586 LIB_DEBUG_PRINT_SAFE("Kernel : thread present, returned\n");
[b18830e]587 }
588
[19c43b7]589 LIB_DEBUG_PRINT_SAFE("Kernel : accepted %d\n", *mask.accepted);
590
591 return;
[90c4df0]592 }
593 }
594
[c81ebf9]595
[4cc9b13]596 if( duration == 0 ) {
[19c43b7]597 LIB_DEBUG_PRINT_SAFE("Kernel : non-blocking, exiting\n");
598
[4cc9b13]599 unlock_all( locks, count );
[19c43b7]600
601 LIB_DEBUG_PRINT_SAFE("Kernel : accepted %d\n", *mask.accepted);
[4cc9b13]602 return;
603 }
[b18830e]604
605
606 verifyf( duration < 0, "Timeout on waitfor statments not supported yet.");
607
[19c43b7]608 LIB_DEBUG_PRINT_SAFE("Kernel : blocking waitfor\n");
609
610 // Create the node specific to this wait operation
611 wait_ctx_primed( this_thread, 0 );
[b18830e]612
[6ff4507]613 monitor_save;
[6ae8c92]614 set_mask( monitors, count, mask );
[c81ebf9]615
[daacf82]616 for(int i = 0; i < count; i++) {
617 verify( monitors[i]->owner == this_thread );
618 }
619
[19c43b7]620 //Everything is ready to go to sleep
621 BlockInternal( locks, count );
622
623
624 // WE WOKE UP
625
626
627 //We are back, restore the masks and recursions
628 monitor_restore;
629
630 LIB_DEBUG_PRINT_SAFE("Kernel : exiting\n");
631
632 LIB_DEBUG_PRINT_SAFE("Kernel : accepted %d\n", *mask.accepted);
[c81ebf9]633}
634
[0c78741]635//-----------------------------------------------------------------------------
636// Utilities
637
638static inline void set_owner( monitor_desc * this, thread_desc * owner ) {
[19c43b7]639 // LIB_DEBUG_PRINT_SAFE("Kernal : Setting owner of %p to %p ( was %p)\n", this, owner, this->owner );
[a843067]640
[0c78741]641 //Pass the monitor appropriately
642 this->owner = owner;
643
644 //We are passing the monitor to someone else, which means recursion level is not 0
645 this->recursion = owner ? 1 : 0;
646}
647
[6ff4507]648static inline void set_owner( monitor_desc ** monitors, short count, thread_desc * owner ) {
649 for( int i = 0; i < count; i++ ) {
650 set_owner( monitors[i], owner );
651 }
652}
653
654static inline void set_mask( monitor_desc ** storage, short count, const __waitfor_mask_t & mask ) {
655 for(int i = 0; i < count; i++) {
656 storage[i]->mask = mask;
657 }
658}
659
[daacf82]660static inline void reset_mask( monitor_desc * this ) {
661 this->mask.accepted = NULL;
662 this->mask.clauses = NULL;
663 this->mask.size = 0;
664}
665
[0c78741]666static inline thread_desc * next_thread( monitor_desc * this ) {
667 //Check the signaller stack
668 __condition_criterion_t * urgent = pop( &this->signal_stack );
669 if( urgent ) {
670 //The signaller stack is not empty,
671 //regardless of if we are ready to baton pass,
672 //we need to set the monitor as in use
673 set_owner( this, urgent->owner->waiting_thread );
674
675 return check_condition( urgent );
676 }
677
678 // No signaller thread
679 // Get the next thread in the entry_queue
680 thread_desc * new_owner = pop_head( &this->entry_queue );
681 set_owner( this, new_owner );
682
683 return new_owner;
684}
685
[6ff4507]686static inline bool is_accepted( monitor_desc * this, const __monitor_group_t & group ) {
687 __acceptable_t * it = this->mask.clauses; // Optim
688 int count = this->mask.size;
689
690 // Check if there are any acceptable functions
[a843067]691 if( !it ) return false;
[6ff4507]692
693 // If this isn't the first monitor to test this, there is no reason to repeat the test.
694 if( this != group[0] ) return group[0]->mask.accepted >= 0;
695
696 // For all acceptable functions check if this is the current function.
697 for( short i = 0; i < count; i++, it++ ) {
698 if( *it == group ) {
699 *this->mask.accepted = i;
700 return true;
701 }
702 }
703
704 // No function matched
705 return false;
706}
707
[97e3296]708static inline void init( int count, monitor_desc ** monitors, __condition_node_t * waiter, __condition_criterion_t * criteria ) {
709 for(int i = 0; i < count; i++) {
[6b224a52]710 (criteria[i]){ monitors[i], waiter };
[97e3296]711 }
712
713 waiter->criteria = criteria;
714}
715
716static inline void init_push( int count, monitor_desc ** monitors, __condition_node_t * waiter, __condition_criterion_t * criteria ) {
717 for(int i = 0; i < count; i++) {
[6b224a52]718 (criteria[i]){ monitors[i], waiter };
[97e3296]719 push( &criteria[i].target->signal_stack, &criteria[i] );
720 }
721
722 waiter->criteria = criteria;
723}
724
[0c78741]725static inline void lock_all( spinlock ** locks, unsigned short count ) {
726 for( int i = 0; i < count; i++ ) {
[b227f68]727 lock_yield( locks[i] DEBUG_CTX2 );
[0c78741]728 }
729}
730
731static inline void lock_all( monitor_desc ** source, spinlock ** /*out*/ locks, unsigned short count ) {
732 for( int i = 0; i < count; i++ ) {
733 spinlock * l = &source[i]->lock;
[b227f68]734 lock_yield( l DEBUG_CTX2 );
[0c78741]735 if(locks) locks[i] = l;
736 }
737}
738
739static inline void unlock_all( spinlock ** locks, unsigned short count ) {
740 for( int i = 0; i < count; i++ ) {
741 unlock( locks[i] );
742 }
743}
744
745static inline void unlock_all( monitor_desc ** locks, unsigned short count ) {
746 for( int i = 0; i < count; i++ ) {
747 unlock( &locks[i]->lock );
748 }
749}
750
[daacf82]751static inline void save( monitor_desc ** ctx, short count, __attribute((unused)) spinlock ** locks, unsigned int * /*out*/ recursions, __waitfor_mask_t * /*out*/ masks ) {
[0c78741]752 for( int i = 0; i < count; i++ ) {
753 recursions[i] = ctx[i]->recursion;
[6ff4507]754 masks[i] = ctx[i]->mask;
[0c78741]755 }
756}
757
[6ff4507]758static inline void restore( monitor_desc ** ctx, short count, spinlock ** locks, unsigned int * /*out*/ recursions, __waitfor_mask_t * /*out*/ masks ) {
759 lock_all( locks, count );
[0c78741]760 for( int i = 0; i < count; i++ ) {
761 ctx[i]->recursion = recursions[i];
[6ff4507]762 ctx[i]->mask = masks[i];
[0c78741]763 }
[6ff4507]764 unlock_all( locks, count );
[0c78741]765}
766
767// Function has 2 different behavior
768// 1 - Marks a monitors as being ready to run
769// 2 - Checks if all the monitors are ready to run
770// if so return the thread to run
771static inline thread_desc * check_condition( __condition_criterion_t * target ) {
772 __condition_node_t * node = target->owner;
773 unsigned short count = node->count;
774 __condition_criterion_t * criteria = node->criteria;
775
776 bool ready2run = true;
777
778 for( int i = 0; i < count; i++ ) {
[44264c5]779
[b227f68]780 // LIB_DEBUG_PRINT_SAFE( "Checking %p for %p\n", &criteria[i], target );
[0c78741]781 if( &criteria[i] == target ) {
782 criteria[i].ready = true;
[b227f68]783 // LIB_DEBUG_PRINT_SAFE( "True\n" );
[0c78741]784 }
785
786 ready2run = criteria[i].ready && ready2run;
787 }
788
[b227f68]789 // LIB_DEBUG_PRINT_SAFE( "Runing %i\n", ready2run );
[0c78741]790 return ready2run ? node->waiting_thread : NULL;
791}
792
793static inline void brand_condition( condition * this ) {
[1c273d0]794 thread_desc * thrd = this_thread;
[0c78741]795 if( !this->monitors ) {
[b227f68]796 // LIB_DEBUG_PRINT_SAFE("Branding\n");
[b18830e]797 assertf( thrd->monitors.list != NULL, "No current monitor to brand condition %p", thrd->monitors.list );
798 this->monitor_count = thrd->monitors.size;
[a933dcf4]799
800 this->monitors = malloc( this->monitor_count * sizeof( *this->monitors ) );
801 for( int i = 0; i < this->monitor_count; i++ ) {
[b18830e]802 this->monitors[i] = thrd->monitors.list[i];
[a933dcf4]803 }
[0c78741]804 }
805}
806
[6ae8c92]807static inline [thread_desc *, int] search_entry_queue( const __waitfor_mask_t & mask, monitor_desc ** monitors, int count ) {
[90c4df0]808
809 __thread_queue_t * entry_queue = &monitors[0]->entry_queue;
810
811 // For each thread in the entry-queue
812 for( thread_desc ** thrd_it = &entry_queue->head;
813 *thrd_it;
[4cc9b13]814 thrd_it = &(*thrd_it)->next
815 ) {
[90c4df0]816 // For each acceptable check if it matches
[4cc9b13]817 int i = 0;
[6ae8c92]818 __acceptable_t * end = mask.clauses + mask.size;
819 for( __acceptable_t * it = mask.clauses; it != end; it++, i++ ) {
[90c4df0]820 // Check if we have a match
[aaa4f93]821 if( *it == (*thrd_it)->monitors ) {
[90c4df0]822
823 // If we have a match return it
824 // after removeing it from the entry queue
[b18830e]825 return [remove( entry_queue, thrd_it ), i];
[90c4df0]826 }
827 }
828 }
829
[b18830e]830 return [0, -1];
831}
832
[6ff4507]833forall(dtype T | sized( T ))
834static inline short insert_unique( T ** array, short & size, T * val ) {
835 if( !val ) return size;
836
837 for(int i = 0; i <= size; i++) {
838 if( array[i] == val ) return size;
839 }
840
841 array[size] = val;
842 size = size + 1;
843 return size;
844}
845
[6ae8c92]846static inline short count_max( const __waitfor_mask_t & mask ) {
[b18830e]847 short max = 0;
[6ae8c92]848 for( int i = 0; i < mask.size; i++ ) {
[aaa4f93]849 max += mask.clauses[i].size;
[b18830e]850 }
851 return max;
[97e3296]852}
[b18830e]853
[6ae8c92]854static inline short aggregate( monitor_desc ** storage, const __waitfor_mask_t & mask ) {
[6ff4507]855 short size = 0;
856 for( int i = 0; i < mask.size; i++ ) {
857 for( int j = 0; j < mask.clauses[i].size; j++) {
858 insert_unique( storage, size, mask.clauses[i].list[j] );
859 }
[b18830e]860 }
[6ff4507]861 qsort( storage, size );
862 return size;
[b18830e]863}
864
[242a902]865void ?{}( __condition_blocked_queue_t & this ) {
866 this.head = NULL;
867 this.tail = &this.head;
[0c78741]868}
869
870void append( __condition_blocked_queue_t * this, __condition_node_t * c ) {
[4aa2fb2]871 verify(this->tail != NULL);
[0c78741]872 *this->tail = c;
873 this->tail = &c->next;
874}
875
876__condition_node_t * pop_head( __condition_blocked_queue_t * this ) {
877 __condition_node_t * head = this->head;
878 if( head ) {
879 this->head = head->next;
880 if( !head->next ) {
881 this->tail = &this->head;
882 }
883 head->next = NULL;
884 }
885 return head;
[4aa2fb2]886}
[6b0b624]887
888// Local Variables: //
889// mode: c //
890// tab-width: 4 //
891// End: //
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