| 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2021 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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| 7 | // locks.hfa -- LIBCFATHREAD
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| 8 | // Runtime locks that used with the runtime thread system.
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| 9 | //
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| 10 | // Author           : Colby Alexander Parsons
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| 11 | // Created On       : Thu Jan 21 19:46:50 2021
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| 12 | // Last Modified By :
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| 13 | // Last Modified On :
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| 14 | // Update Count     :
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| 15 | //
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| 16 | 
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| 17 | #define __cforall_thread__
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| 18 | #define _GNU_SOURCE
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| 19 | 
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| 20 | #include "locks.hfa"
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| 21 | #include "kernel/private.hfa"
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| 22 | 
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| 23 | #include <kernel.hfa>
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| 24 | #include <stdlib.hfa>
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| 25 | 
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| 26 | #pragma GCC visibility push(default)
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| 27 | 
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| 28 | //-----------------------------------------------------------------------------
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| 29 | // info_thread
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| 30 | forall(L & | is_blocking_lock(L)) {
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| 31 |         struct info_thread {
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| 32 |                 // used to put info_thread on a dl queue
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| 33 |                 inline dlink(info_thread(L));
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| 34 | 
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| 35 |                 // waiting thread
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| 36 |                 struct thread$ * t;
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| 37 | 
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| 38 |                 // shadow field
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| 39 |                 uintptr_t info;
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| 40 | 
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| 41 |                 // lock that is passed to wait() (if one is passed)
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| 42 |                 L * lock;
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| 43 | 
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| 44 |                 // true when signalled and false when timeout wakes thread
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| 45 |                 bool signalled;
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| 46 |         };
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| 47 |         P9_EMBEDDED( info_thread(L), dlink(info_thread(L)) )
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| 48 | 
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| 49 |         void ?{}( info_thread(L) & this, thread$ * t, uintptr_t info, L * l ) {
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| 50 |                 this.t = t;
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| 51 |                 this.info = info;
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| 52 |                 this.lock = l;
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| 53 |         }
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| 54 | 
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| 55 |         void ^?{}( info_thread(L) & this ) {}
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| 56 | }
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| 57 | 
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| 58 | //-----------------------------------------------------------------------------
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| 59 | // Blocking Locks
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| 60 | void ?{}( blocking_lock & this, bool multi_acquisition, bool strict_owner ) {
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| 61 |         this.lock{};
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| 62 |         this.blocked_threads{};
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| 63 |         this.wait_count = 0;
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| 64 |         this.multi_acquisition = multi_acquisition;
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| 65 |         this.strict_owner = strict_owner;
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| 66 |         this.owner = 0p;
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| 67 |         this.recursion_count = 0;
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| 68 | }
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| 69 | 
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| 70 | void ^?{}( blocking_lock & this ) {}
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| 71 | 
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| 72 | 
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| 73 | void lock( blocking_lock & this ) with( this ) {
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| 74 |         lock( lock __cfaabi_dbg_ctx2 );
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| 75 |         thread$ * thrd = active_thread();
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| 76 | 
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| 77 |         // single acquisition lock is held by current thread
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| 78 |         /* paranoid */ verifyf( owner != thrd || multi_acquisition, "Single acquisition lock holder (%p) attempted to reacquire the lock %p resulting in a deadlock.", owner, &this );
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| 79 | 
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| 80 |         // lock is held by some other thread
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| 81 |         if ( owner != 0p && owner != thrd ) {
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| 82 |                 insert_last( blocked_threads, *thrd );
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| 83 |                 wait_count++;
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| 84 |                 unlock( lock );
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| 85 |                 park( );
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| 86 |         }
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| 87 |         // multi acquisition lock is held by current thread
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| 88 |         else if ( owner == thrd && multi_acquisition ) {
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| 89 |                 recursion_count++;
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| 90 |                 unlock( lock );
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| 91 |         }
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| 92 |         // lock isn't held
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| 93 |         else {
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| 94 |                 owner = thrd;
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| 95 |                 recursion_count = 1;
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| 96 |                 unlock( lock );
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| 97 |         }
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| 98 | }
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| 99 | 
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| 100 | bool try_lock( blocking_lock & this ) with( this ) {
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| 101 |         bool ret = false;
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| 102 |         lock( lock __cfaabi_dbg_ctx2 );
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| 103 | 
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| 104 |         // lock isn't held
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| 105 |         if ( owner == 0p ) {
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| 106 |                 owner = active_thread();
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| 107 |                 recursion_count = 1;
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| 108 |                 ret = true;
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| 109 |         }
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| 110 |         // multi acquisition lock is held by current thread
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| 111 |         else if ( owner == active_thread() && multi_acquisition ) {
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| 112 |                 recursion_count++;
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| 113 |                 ret = true;
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| 114 |         }
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| 115 | 
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| 116 |         unlock( lock );
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| 117 |         return ret;
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| 118 | }
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| 119 | 
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| 120 | static void pop_and_set_new_owner( blocking_lock & this ) with( this ) {
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| 121 |         thread$ * t = &try_pop_front( blocked_threads );
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| 122 |         owner = t;
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| 123 |         recursion_count = ( t ? 1 : 0 );
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| 124 |         if ( t ) wait_count--;
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| 125 |         unpark( t );
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| 126 | }
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| 127 | 
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| 128 | void unlock( blocking_lock & this ) with( this ) {
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| 129 |         lock( lock __cfaabi_dbg_ctx2 );
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| 130 |         /* paranoid */ verifyf( owner != 0p, "Attempt to release lock %p that isn't held", &this );
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| 131 |         /* paranoid */ verifyf( owner == active_thread() || !strict_owner , "Thread %p other than the owner %p attempted to release owner lock %p", owner, active_thread(), &this );
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| 132 |         /* paranoid */ verifyf( recursion_count == 1 || multi_acquisition, "Thread %p attempted to release owner lock %p which is not recursive but has a recursive count of %zu", active_thread(), &this, recursion_count );
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| 133 | 
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| 134 |         // if recursion count is zero release lock and set new owner if one is waiting
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| 135 |         recursion_count--;
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| 136 |         if ( recursion_count == 0 ) {
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| 137 |                 pop_and_set_new_owner( this );
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| 138 |         }
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| 139 |         unlock( lock );
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| 140 | }
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| 141 | 
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| 142 | size_t wait_count( blocking_lock & this ) with( this ) {
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| 143 |         return wait_count;
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| 144 | }
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| 145 | 
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| 146 | void on_notify( blocking_lock & this, thread$ * t ) with( this ) {
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| 147 |         lock( lock __cfaabi_dbg_ctx2 );
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| 148 |         // lock held
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| 149 |         if ( owner != 0p ) {
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| 150 |                 insert_last( blocked_threads, *t );
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| 151 |                 wait_count++;
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| 152 |                 unlock( lock );
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| 153 |         }
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| 154 |         // lock not held
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| 155 |         else {
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| 156 |                 owner = t;
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| 157 |                 recursion_count = 1;
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| 158 |                 unpark( t );
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| 159 |                 unlock( lock );
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| 160 |         }
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| 161 | }
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| 162 | 
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| 163 | size_t on_wait( blocking_lock & this ) with( this ) {
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| 164 |         lock( lock __cfaabi_dbg_ctx2 );
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| 165 |         /* paranoid */ verifyf( owner != 0p, "Attempt to release lock %p that isn't held", &this );
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| 166 |         /* paranoid */ verifyf( owner == active_thread() || !strict_owner, "Thread %p other than the owner %p attempted to release owner lock %p", owner, active_thread(), &this );
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| 167 | 
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| 168 |         size_t ret = recursion_count;
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| 169 | 
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| 170 |         pop_and_set_new_owner( this );
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| 171 |         unlock( lock );
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| 172 |         return ret;
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| 173 | }
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| 174 | 
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| 175 | void on_wakeup( blocking_lock & this, size_t recursion ) with( this ) {
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| 176 |         recursion_count = recursion;
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| 177 | }
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| 178 | 
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| 179 | //-----------------------------------------------------------------------------
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| 180 | // alarm node wrapper
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| 181 | forall(L & | is_blocking_lock(L)) {
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| 182 |         struct alarm_node_wrap {
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| 183 |                 alarm_node_t alarm_node;
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| 184 |                 condition_variable(L) * cond;
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| 185 |                 info_thread(L) * info_thd;
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| 186 |         };
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| 187 | 
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| 188 |         void ?{}( alarm_node_wrap(L) & this, Duration alarm, Duration period, Alarm_Callback callback, condition_variable(L) * c, info_thread(L) * i ) {
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| 189 |                 this.alarm_node{ callback, alarm, period };
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| 190 |                 this.cond = c;
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| 191 |                 this.info_thd = i;
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| 192 |         }
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| 193 | 
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| 194 |         void ^?{}( alarm_node_wrap(L) & this ) { }
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| 195 | 
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| 196 |         static void timeout_handler ( alarm_node_wrap(L) & this ) with( this ) {
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| 197 |                 // This condition_variable member is called from the kernel, and therefore, cannot block, but it can spin.
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| 198 |                 lock( cond->lock __cfaabi_dbg_ctx2 );
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| 199 | 
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| 200 |                 // this check is necessary to avoid a race condition since this timeout handler
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| 201 |                 //      may still be called after a thread has been removed from the queue but
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| 202 |                 //      before the alarm is unregistered
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| 203 |                 if ( (*info_thd)`isListed ) {   // is thread on queue
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| 204 |                         info_thd->signalled = false;
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| 205 |                         // remove this thread O(1)
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| 206 |                         remove( *info_thd );
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| 207 |                         cond->count--;
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| 208 |                         if( info_thd->lock ) {
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| 209 |                                 // call lock's on_notify if a lock was passed
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| 210 |                                 on_notify(*info_thd->lock, info_thd->t);
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| 211 |                         } else {
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| 212 |                                 // otherwise wake thread
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| 213 |                                 unpark( info_thd->t );
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| 214 |                         }
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| 215 |                 }
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| 216 |                 unlock( cond->lock );
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| 217 |         }
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| 218 | 
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| 219 |         // this casts the alarm node to our wrapped type since we used type erasure
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| 220 |         static void alarm_node_wrap_cast( alarm_node_t & a ) { timeout_handler( (alarm_node_wrap(L) &)a ); }
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| 221 | 
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| 222 |         struct pthread_alarm_node_wrap {
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| 223 |                 alarm_node_t alarm_node;
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| 224 |                 pthread_cond_var(L) * cond;
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| 225 |                 info_thread(L) * info_thd;
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| 226 |         };
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| 227 | 
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| 228 |         void ?{}( pthread_alarm_node_wrap(L) & this, Duration alarm, Duration period, Alarm_Callback callback, pthread_cond_var(L) * c, info_thread(L) * i ) {
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| 229 |                 this.alarm_node{ callback, alarm, period };
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| 230 |                 this.cond = c;
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| 231 |                 this.info_thd = i;
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| 232 |         }
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| 233 | 
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| 234 |         void ^?{}( pthread_alarm_node_wrap(L) & this ) { }
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| 235 | 
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| 236 |         static void timeout_handler ( pthread_alarm_node_wrap(L) & this ) with( this ) {
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| 237 |                 // This pthread_cond_var member is called from the kernel, and therefore, cannot block, but it can spin.
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| 238 |                 lock( cond->lock __cfaabi_dbg_ctx2 );
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| 239 |                 // this check is necessary to avoid a race condition since this timeout handler
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| 240 |                 //      may still be called after a thread has been removed from the queue but
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| 241 |                 //      before the alarm is unregistered
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| 242 |                 if ( (*info_thd)`isListed ) {   // is thread on queue
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| 243 |                         info_thd->signalled = false;
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| 244 |                         // remove this thread O(1)
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| 245 |                         remove( *info_thd );
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| 246 |                         on_notify(*info_thd->lock, info_thd->t);
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| 247 |                 }
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| 248 |                 unlock( cond->lock );
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| 249 |         }
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| 250 | 
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| 251 |         // this casts the alarm node to our wrapped type since we used type erasure
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| 252 |         static void pthread_alarm_node_wrap_cast( alarm_node_t & a ) { timeout_handler( (pthread_alarm_node_wrap(L) &)a ); }
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| 253 | }
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| 254 | 
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| 255 | //-----------------------------------------------------------------------------
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| 256 | // Synchronization Locks
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| 257 | forall(L & | is_blocking_lock(L)) {
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| 258 | 
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| 259 |         //-----------------------------------------------------------------------------
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| 260 |         // condition variable
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| 261 |         void ?{}( condition_variable(L) & this ){
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| 262 |                 this.lock{};
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| 263 |                 this.blocked_threads{};
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| 264 |                 this.count = 0;
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| 265 |         }
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| 266 | 
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| 267 |         void ^?{}( condition_variable(L) & this ){ }
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| 268 | 
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| 269 |         static void process_popped( condition_variable(L) & this, info_thread(L) & popped ) with( this ) {
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| 270 |                 if(&popped != 0p) {
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| 271 |                         popped.signalled = true;
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| 272 |                         count--;
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| 273 |                         if (popped.lock) {
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| 274 |                                 // if lock passed call on_notify
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| 275 |                                 on_notify(*popped.lock, popped.t);
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| 276 |                         } else {
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| 277 |                                 // otherwise wake thread
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| 278 |                                 unpark(popped.t);
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| 279 |                         }
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| 280 |                 }
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| 281 |         }
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| 282 | 
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| 283 |         bool notify_one( condition_variable(L) & this ) with( this ) {
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| 284 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 285 |                 bool ret = ! blocked_threads`isEmpty;
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| 286 |                 process_popped(this, try_pop_front( blocked_threads ));
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| 287 |                 unlock( lock );
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| 288 |                 return ret;
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| 289 |         }
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| 290 | 
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| 291 |         bool notify_all( condition_variable(L) & this ) with(this) {
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| 292 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 293 |                 bool ret = ! blocked_threads`isEmpty;
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| 294 |                 while( ! blocked_threads`isEmpty ) {
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| 295 |                         process_popped(this, try_pop_front( blocked_threads ));
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| 296 |                 }
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| 297 |                 unlock( lock );
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| 298 |                 return ret;
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| 299 |         }
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| 300 | 
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| 301 |         uintptr_t front( condition_variable(L) & this ) with(this) {
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| 302 |                 return blocked_threads`isEmpty ? NULL : blocked_threads`first.info;
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| 303 |         }
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| 304 | 
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| 305 |         bool empty( condition_variable(L) & this ) with(this) {
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| 306 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 307 |                 bool ret = blocked_threads`isEmpty;
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| 308 |                 unlock( lock );
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| 309 |                 return ret;
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| 310 |         }
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| 311 | 
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| 312 |         int counter( condition_variable(L) & this ) with(this) { return count; }
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| 313 | 
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| 314 |         static size_t queue_and_get_recursion( condition_variable(L) & this, info_thread(L) * i ) with(this) {
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| 315 |                 // add info_thread to waiting queue
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| 316 |                 insert_last( blocked_threads, *i );
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| 317 |                 count++;
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| 318 |                 size_t recursion_count = 0;
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| 319 |                 if (i->lock) {
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| 320 |                         // if lock was passed get recursion count to reset to after waking thread
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| 321 |                         recursion_count = on_wait( *i->lock );
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| 322 |                 }
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| 323 |                 return recursion_count;
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| 324 |         }
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| 325 | 
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| 326 |         // helper for wait()'s' with no timeout
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| 327 |         static void queue_info_thread( condition_variable(L) & this, info_thread(L) & i ) with(this) {
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| 328 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 329 |                 size_t recursion_count = queue_and_get_recursion(this, &i);
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| 330 |                 unlock( lock );
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| 331 | 
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| 332 |                 // blocks here
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| 333 |                 park( );
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| 334 | 
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| 335 |                 // resets recursion count here after waking
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| 336 |                 if (i.lock) on_wakeup(*i.lock, recursion_count);
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| 337 |         }
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| 338 | 
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| 339 |         #define WAIT( u, l ) \
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| 340 |                 info_thread( L ) i = { active_thread(), u, l }; \
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| 341 |                 queue_info_thread( this, i );
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| 342 | 
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| 343 |         // helper for wait()'s' with a timeout
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| 344 |         static void queue_info_thread_timeout( condition_variable(L) & this, info_thread(L) & info, Duration t, Alarm_Callback callback ) with(this) {
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| 345 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 346 |                 size_t recursion_count = queue_and_get_recursion(this, &info);
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| 347 |                 alarm_node_wrap(L) node_wrap = { t, 0`s, callback, &this, &info };
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| 348 |                 unlock( lock );
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| 349 | 
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| 350 |                 // registers alarm outside cond lock to avoid deadlock
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| 351 |                 register_self( &node_wrap.alarm_node );
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| 352 | 
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| 353 |                 // blocks here
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| 354 |                 park();
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| 355 | 
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| 356 |                 // unregisters alarm so it doesn't go off if this happens first
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| 357 |                 unregister_self( &node_wrap.alarm_node );
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| 358 | 
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| 359 |                 // resets recursion count here after waking
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| 360 |                 if (info.lock) on_wakeup(*info.lock, recursion_count);
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| 361 |         }
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| 362 | 
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| 363 |         #define WAIT_TIME( u, l, t ) \
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| 364 |                 info_thread( L ) i = { active_thread(), u, l }; \
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| 365 |                 queue_info_thread_timeout(this, i, t, alarm_node_wrap_cast ); \
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| 366 |                 return i.signalled;
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| 367 | 
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| 368 |         void wait( condition_variable(L) & this                        ) with(this) { WAIT( 0, 0p    ) }
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| 369 |         void wait( condition_variable(L) & this, uintptr_t info        ) with(this) { WAIT( info, 0p ) }
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| 370 |         void wait( condition_variable(L) & this, L & l                 ) with(this) { WAIT( 0, &l    ) }
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| 371 |         void wait( condition_variable(L) & this, L & l, uintptr_t info ) with(this) { WAIT( info, &l ) }
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| 372 | 
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| 373 |         bool wait( condition_variable(L) & this, Duration duration                        ) with(this) { WAIT_TIME( 0   , 0p , duration ) }
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| 374 |         bool wait( condition_variable(L) & this, uintptr_t info, Duration duration        ) with(this) { WAIT_TIME( info, 0p , duration ) }
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| 375 |         bool wait( condition_variable(L) & this, L & l, Duration duration                 ) with(this) { WAIT_TIME( 0   , &l , duration ) }
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| 376 |         bool wait( condition_variable(L) & this, L & l, uintptr_t info, Duration duration ) with(this) { WAIT_TIME( info, &l , duration ) }
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| 377 | 
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| 378 |         //-----------------------------------------------------------------------------
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| 379 |         // fast_cond_var
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| 380 |         void  ?{}( fast_cond_var(L) & this ){
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| 381 |                 this.blocked_threads{};
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| 382 |                 #ifdef __CFA_DEBUG__
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| 383 |                 this.lock_used = 0p;
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| 384 |                 #endif
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| 385 |         }
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| 386 |         void ^?{}( fast_cond_var(L) & this ){ }
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| 387 | 
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| 388 |         bool notify_one( fast_cond_var(L) & this ) with(this) {
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| 389 |                 bool ret = ! blocked_threads`isEmpty;
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| 390 |                 if ( ret ) {
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| 391 |                         info_thread(L) & popped = try_pop_front( blocked_threads );
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| 392 |                         on_notify(*popped.lock, popped.t);
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| 393 |                 }
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| 394 |                 return ret;
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| 395 |         }
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| 396 |         bool notify_all( fast_cond_var(L) & this ) with(this) {
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| 397 |                 bool ret = ! blocked_threads`isEmpty;
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| 398 |                 while( ! blocked_threads`isEmpty ) {
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| 399 |                         info_thread(L) & popped = try_pop_front( blocked_threads );
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| 400 |                         on_notify(*popped.lock, popped.t);
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| 401 |                 }
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| 402 |                 return ret;
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| 403 |         }
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| 404 | 
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| 405 |         uintptr_t front( fast_cond_var(L) & this ) with(this) { return blocked_threads`isEmpty ? NULL : blocked_threads`first.info; }
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| 406 |         bool empty ( fast_cond_var(L) & this ) with(this) { return blocked_threads`isEmpty; }
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| 407 | 
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| 408 |         void wait( fast_cond_var(L) & this, L & l ) {
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| 409 |                 wait( this, l, 0 );
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| 410 |         }
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| 411 | 
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| 412 |         void wait( fast_cond_var(L) & this, L & l, uintptr_t info ) with(this) {
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| 413 |                 // brand cond lock with lock
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| 414 |                 #ifdef __CFA_DEBUG__
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| 415 |                         if ( lock_used == 0p ) lock_used = &l;
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| 416 |                         else { assert(lock_used == &l); }
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| 417 |                 #endif
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| 418 |                 info_thread( L ) i = { active_thread(), info, &l };
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| 419 |                 insert_last( blocked_threads, i );
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| 420 |                 size_t recursion_count = on_wait( *i.lock );
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| 421 |                 park( );
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| 422 |                 on_wakeup(*i.lock, recursion_count);
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| 423 |         }
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| 424 | 
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| 425 |         //-----------------------------------------------------------------------------
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| 426 |         // pthread_cond_var
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| 427 | 
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| 428 |         void  ?{}( pthread_cond_var(L) & this ) with(this) {
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| 429 |                 blocked_threads{};
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| 430 |                 lock{};
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| 431 |         }
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| 432 | 
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| 433 |         void ^?{}( pthread_cond_var(L) & this ) { }
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| 434 | 
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| 435 |         bool notify_one( pthread_cond_var(L) & this ) with(this) { 
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| 436 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 437 |                 bool ret = ! blocked_threads`isEmpty;
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| 438 |                 if ( ret ) {
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| 439 |                         info_thread(L) & popped = try_pop_front( blocked_threads );
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| 440 |                         popped.signalled = true;
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| 441 |                         on_notify(*popped.lock, popped.t);
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| 442 |                 }
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| 443 |                 unlock( lock );
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| 444 |                 return ret;
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| 445 |         }
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| 446 | 
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| 447 |         bool notify_all( pthread_cond_var(L) & this ) with(this) { 
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| 448 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 449 |                 bool ret = ! blocked_threads`isEmpty;
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| 450 |                 while( ! blocked_threads`isEmpty ) {
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| 451 |                         info_thread(L) & popped = try_pop_front( blocked_threads );
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| 452 |                         popped.signalled = true;
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| 453 |                         on_notify(*popped.lock, popped.t);
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| 454 |                 }
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| 455 |                 unlock( lock );
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| 456 |                 return ret;
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| 457 |         }
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| 458 | 
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| 459 |         uintptr_t front( pthread_cond_var(L) & this ) with(this) { return blocked_threads`isEmpty ? NULL : blocked_threads`first.info; }
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| 460 |         bool empty ( pthread_cond_var(L) & this ) with(this) { return blocked_threads`isEmpty; }
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| 461 | 
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| 462 |         static size_t queue_and_get_recursion( pthread_cond_var(L) & this, info_thread(L) * i ) with(this) {
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| 463 |                 // add info_thread to waiting queue
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| 464 |                 insert_last( blocked_threads, *i );
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| 465 |                 size_t recursion_count = 0;
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| 466 |                 recursion_count = on_wait( *i->lock );
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| 467 |                 return recursion_count;
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| 468 |         }
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| 469 |         
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| 470 |         static void queue_info_thread_timeout( pthread_cond_var(L) & this, info_thread(L) & info, Duration t, Alarm_Callback callback ) with(this) {
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| 471 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 472 |                 size_t recursion_count = queue_and_get_recursion(this, &info);
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| 473 |                 pthread_alarm_node_wrap(L) node_wrap = { t, 0`s, callback, &this, &info };
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| 474 |                 unlock( lock );
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| 475 | 
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| 476 |                 // registers alarm outside cond lock to avoid deadlock
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| 477 |                 register_self( &node_wrap.alarm_node );
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| 478 | 
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| 479 |                 // blocks here
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| 480 |                 park();
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| 481 | 
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| 482 |                 // unregisters alarm so it doesn't go off if this happens first
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| 483 |                 unregister_self( &node_wrap.alarm_node );
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| 484 | 
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| 485 |                 // resets recursion count here after waking
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| 486 |                 if (info.lock) on_wakeup(*info.lock, recursion_count);
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| 487 |         }
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| 488 | 
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| 489 |         void wait( pthread_cond_var(L) & this, L & l ) with(this) {
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| 490 |                 wait( this, l, 0 );
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| 491 |         }
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| 492 | 
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| 493 |         void wait( pthread_cond_var(L) & this, L & l, uintptr_t info ) with(this) {
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| 494 |                 lock( lock __cfaabi_dbg_ctx2 );
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| 495 |                 info_thread( L ) i = { active_thread(), info, &l };
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| 496 |                 size_t recursion_count = queue_and_get_recursion(this, &i);
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| 497 |                 unlock( lock );
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| 498 |                 park( );
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| 499 |                 on_wakeup(*i.lock, recursion_count);
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| 500 |         }
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| 501 | 
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| 502 |         #define PTHREAD_WAIT_TIME( u, l, t ) \
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| 503 |                 info_thread( L ) i = { active_thread(), u, l }; \
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| 504 |                 queue_info_thread_timeout(this, i, t, pthread_alarm_node_wrap_cast ); \
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| 505 |                 return i.signalled;
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| 506 | 
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| 507 |         Duration getDuration(timespec t) {
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| 508 |                 timespec currTime;
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| 509 |                 clock_gettime(CLOCK_REALTIME, &currTime);
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| 510 |                 Duration waitUntil = { t };
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| 511 |                 Duration currDur = { currTime };
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| 512 |                 if ( currDur >= waitUntil ) return currDur - waitUntil;
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| 513 |                 Duration zero = { 0 };
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| 514 |                 return zero;
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| 515 |         }
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| 516 | 
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| 517 |         bool wait( pthread_cond_var(L) & this, L & l, timespec t ) {
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| 518 |                 PTHREAD_WAIT_TIME( 0, &l , getDuration( t ) )
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| 519 |         }
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| 520 |         
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| 521 |         bool wait( pthread_cond_var(L) & this, L & l, uintptr_t info, timespec t  ) {
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| 522 |                 PTHREAD_WAIT_TIME( info, &l , getDuration( t ) )
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| 523 |         }
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| 524 | }
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| 525 | //-----------------------------------------------------------------------------
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| 526 | // Semaphore
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| 527 | void  ?{}( semaphore & this, int count = 1 ) {
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| 528 |         (this.lock){};
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| 529 |         this.count = count;
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| 530 |         (this.waiting){};
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| 531 | }
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| 532 | void ^?{}(semaphore & this) {}
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| 533 | 
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| 534 | bool P(semaphore & this) with( this ){
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| 535 |         lock( lock __cfaabi_dbg_ctx2 );
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| 536 |         count -= 1;
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| 537 |         if ( count < 0 ) {
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| 538 |                 // queue current task
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| 539 |                 append( waiting, active_thread() );
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| 540 | 
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| 541 |                 // atomically release spin lock and block
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| 542 |                 unlock( lock );
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| 543 |                 park();
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| 544 |                 return true;
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| 545 |         }
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| 546 |         else {
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| 547 |             unlock( lock );
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| 548 |             return false;
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| 549 |         }
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| 550 | }
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|---|
| 551 | 
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| 552 | thread$ * V (semaphore & this, const bool doUnpark ) with( this ) {
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| 553 |         thread$ * thrd = 0p;
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| 554 |         lock( lock __cfaabi_dbg_ctx2 );
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| 555 |         count += 1;
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| 556 |         if ( count <= 0 ) {
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| 557 |                 // remove task at head of waiting list
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| 558 |                 thrd = pop_head( waiting );
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| 559 |         }
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| 560 | 
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|---|
| 561 |         unlock( lock );
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| 562 | 
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|---|
| 563 |         // make new owner
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| 564 |         if( doUnpark ) unpark( thrd );
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| 565 | 
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|---|
| 566 |         return thrd;
 | 
|---|
| 567 | }
 | 
|---|
| 568 | 
 | 
|---|
| 569 | bool V(semaphore & this) with( this ) {
 | 
|---|
| 570 |         thread$ * thrd = V(this, true);
 | 
|---|
| 571 |         return thrd != 0p;
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| 572 | }
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|---|
| 573 | 
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| 574 | bool V(semaphore & this, unsigned diff) with( this ) {
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|---|
| 575 |         thread$ * thrd = 0p;
 | 
|---|
| 576 |         lock( lock __cfaabi_dbg_ctx2 );
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|---|
| 577 |         int release = max(-count, (int)diff);
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|---|
| 578 |         count += diff;
 | 
|---|
| 579 |         for(release) {
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|---|
| 580 |                 unpark( pop_head( waiting ) );
 | 
|---|
| 581 |         }
 | 
|---|
| 582 | 
 | 
|---|
| 583 |         unlock( lock );
 | 
|---|
| 584 | 
 | 
|---|
| 585 |         return thrd != 0p;
 | 
|---|
| 586 | }
 | 
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