[70f8bcd2] | 1 | //
|
---|
| 2 | // Cforall Version 1.0.0 Copyright (C) 2020 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 | //
|
---|
[339e30a] | 7 | // concurrency/future.hfa --
|
---|
[70f8bcd2] | 8 | //
|
---|
[339e30a] | 9 | // Author : Thierry Delisle & Peiran Hong & Colby Parsons
|
---|
[70f8bcd2] | 10 | // Created On : Wed Jan 06 17:33:18 2021
|
---|
[1c0a3a4] | 11 | // Last Modified By : Peter A. Buhr
|
---|
| 12 | // Last Modified On : Fri Nov 29 16:07:34 2024
|
---|
| 13 | // Update Count : 30
|
---|
[70f8bcd2] | 14 | //
|
---|
| 15 |
|
---|
[5e4a830] | 16 | #pragma once
|
---|
[70f8bcd2] | 17 |
|
---|
| 18 | #include "bits/locks.hfa"
|
---|
| 19 | #include "monitor.hfa"
|
---|
[339e30a] | 20 | #include "select.hfa"
|
---|
[beeff61e] | 21 | #include "locks.hfa"
|
---|
[70f8bcd2] | 22 |
|
---|
[339e30a] | 23 | //----------------------------------------------------------------------------
|
---|
| 24 | // future
|
---|
[1c0a3a4] | 25 | // I don't use future_t here as I need to use a lock for this future since it supports multiple consumers.
|
---|
| 26 | // future_t is lockfree and uses atomics which aren't needed given we use locks here
|
---|
[fd54fef] | 27 | forall( T ) {
|
---|
[1c0a3a4] | 28 | enum { FUTURE_EMPTY = 0, FUTURE_FULFILLED = 1 };
|
---|
[339e30a] | 29 |
|
---|
[70f8bcd2] | 30 | struct future {
|
---|
[339e30a] | 31 | int state;
|
---|
| 32 | T result;
|
---|
| 33 | dlist( select_node ) waiters;
|
---|
| 34 | futex_mutex lock;
|
---|
| 35 | };
|
---|
[bf55f32] | 36 | __CFA_SELECT_GET_TYPE( future(T) );
|
---|
[339e30a] | 37 |
|
---|
| 38 | struct future_node {
|
---|
| 39 | inline select_node;
|
---|
| 40 | T * my_result;
|
---|
| 41 | };
|
---|
| 42 |
|
---|
| 43 | static inline {
|
---|
| 44 |
|
---|
| 45 | void ?{}( future_node(T) & this, thread$ * blocked_thread, T * my_result ) {
|
---|
| 46 | ((select_node &)this){ blocked_thread };
|
---|
| 47 | this.my_result = my_result;
|
---|
| 48 | }
|
---|
| 49 |
|
---|
[c0ec8b6] | 50 | void ?{}( future(T) & this ) {
|
---|
[339e30a] | 51 | this.waiters{};
|
---|
| 52 | this.state = FUTURE_EMPTY;
|
---|
[5e180c2] | 53 | this.lock{};
|
---|
[339e30a] | 54 | }
|
---|
| 55 |
|
---|
| 56 | // Reset future back to original state
|
---|
[c0ec8b6] | 57 | void reset( future(T) & this ) with(this)
|
---|
[339e30a] | 58 | {
|
---|
| 59 | lock( lock );
|
---|
| 60 | if( ! waiters`isEmpty )
|
---|
| 61 | abort("Attempting to reset a future with blocked waiters");
|
---|
| 62 | state = FUTURE_EMPTY;
|
---|
| 63 | unlock( lock );
|
---|
| 64 | }
|
---|
| 65 |
|
---|
| 66 | // check if the future is available
|
---|
| 67 | // currently no mutual exclusion because I can't see when you need this call to be synchronous or protected
|
---|
[70a4ed5] | 68 | bool available( future(T) & this ) { return __atomic_load_n( &this.state, __ATOMIC_RELAXED ); }
|
---|
[339e30a] | 69 |
|
---|
| 70 |
|
---|
| 71 | // memcpy wrapper to help copy values
|
---|
| 72 | void copy_T( T & from, T & to ) {
|
---|
| 73 | memcpy((void *)&to, (void *)&from, sizeof(T));
|
---|
| 74 | }
|
---|
| 75 |
|
---|
| 76 | // internal helper to signal waiters off of the future
|
---|
| 77 | void _internal_flush( future(T) & this ) with(this) {
|
---|
| 78 | while( ! waiters`isEmpty ) {
|
---|
[beeff61e] | 79 | if ( !__handle_waituntil_OR( waiters ) ) // handle special waituntil OR case
|
---|
| 80 | break; // if handle_OR returns false then waiters is empty so break
|
---|
[339e30a] | 81 | select_node &s = try_pop_front( waiters );
|
---|
| 82 |
|
---|
[c0ec8b6] | 83 | if ( s.clause_status == 0p ) // poke in result so that woken threads do not need to reacquire any locks
|
---|
[339e30a] | 84 | copy_T( result, *(((future_node(T) &)s).my_result) );
|
---|
[db19e1d] | 85 |
|
---|
[c0ec8b6] | 86 | wake_one( waiters, s );
|
---|
[339e30a] | 87 | }
|
---|
| 88 | }
|
---|
| 89 |
|
---|
| 90 | // Fulfil the future, returns whether or not someone was unblocked
|
---|
[beeff61e] | 91 | bool fulfil( future(T) & this, T val ) with(this) {
|
---|
[339e30a] | 92 | lock( lock );
|
---|
| 93 | if( state != FUTURE_EMPTY )
|
---|
| 94 | abort("Attempting to fulfil a future that has already been fulfilled");
|
---|
| 95 |
|
---|
| 96 | copy_T( val, result );
|
---|
| 97 |
|
---|
| 98 | bool ret_val = ! waiters`isEmpty;
|
---|
| 99 | state = FUTURE_FULFILLED;
|
---|
| 100 | _internal_flush( this );
|
---|
| 101 | unlock( lock );
|
---|
| 102 | return ret_val;
|
---|
| 103 | }
|
---|
| 104 |
|
---|
| 105 | // Wait for the future to be fulfilled
|
---|
| 106 | // Also return whether the thread had to block or not
|
---|
| 107 | [T, bool] get( future(T) & this ) with( this ) {
|
---|
| 108 | lock( lock );
|
---|
| 109 | T ret_val;
|
---|
| 110 | if( state == FUTURE_FULFILLED ) {
|
---|
| 111 | copy_T( result, ret_val );
|
---|
| 112 | unlock( lock );
|
---|
| 113 | return [ret_val, false];
|
---|
| 114 | }
|
---|
| 115 |
|
---|
| 116 | future_node(T) node = { active_thread(), &ret_val };
|
---|
| 117 | insert_last( waiters, ((select_node &)node) );
|
---|
| 118 | unlock( lock );
|
---|
| 119 | park( );
|
---|
| 120 |
|
---|
| 121 | return [ret_val, true];
|
---|
| 122 | }
|
---|
| 123 |
|
---|
| 124 | // Wait for the future to be fulfilled
|
---|
| 125 | T get( future(T) & this ) {
|
---|
| 126 | [T, bool] tt;
|
---|
| 127 | tt = get(this);
|
---|
| 128 | return tt.0;
|
---|
| 129 | }
|
---|
| 130 |
|
---|
| 131 | // Gets value if it is available and returns [ val, true ]
|
---|
| 132 | // otherwise returns [ default_val, false]
|
---|
| 133 | // will not block
|
---|
| 134 | [T, bool] try_get( future(T) & this ) with(this) {
|
---|
| 135 | lock( lock );
|
---|
| 136 | T ret_val;
|
---|
| 137 | if( state == FUTURE_FULFILLED ) {
|
---|
| 138 | copy_T( result, ret_val );
|
---|
| 139 | unlock( lock );
|
---|
| 140 | return [ret_val, true];
|
---|
| 141 | }
|
---|
| 142 | unlock( lock );
|
---|
[db19e1d] | 143 |
|
---|
[339e30a] | 144 | return [ret_val, false];
|
---|
| 145 | }
|
---|
| 146 |
|
---|
[beeff61e] | 147 | bool register_select( future(T) & this, select_node & s ) with(this) {
|
---|
[339e30a] | 148 | lock( lock );
|
---|
| 149 |
|
---|
[beeff61e] | 150 | // check if we can complete operation. If so race to establish winner in special OR case
|
---|
[db19e1d] | 151 | if ( !s.park_counter && state != FUTURE_EMPTY ) {
|
---|
[beeff61e] | 152 | if ( !__make_select_node_available( s ) ) { // we didn't win the race so give up on registering
|
---|
| 153 | unlock( lock );
|
---|
| 154 | return false;
|
---|
| 155 | }
|
---|
[339e30a] | 156 | }
|
---|
| 157 |
|
---|
[beeff61e] | 158 | // future not ready -> insert select node and return
|
---|
| 159 | if( state == FUTURE_EMPTY ) {
|
---|
| 160 | insert_last( waiters, s );
|
---|
[339e30a] | 161 | unlock( lock );
|
---|
[beeff61e] | 162 | return false;
|
---|
[339e30a] | 163 | }
|
---|
| 164 |
|
---|
[beeff61e] | 165 | __make_select_node_available( s );
|
---|
[339e30a] | 166 | unlock( lock );
|
---|
[beeff61e] | 167 | return true;
|
---|
[339e30a] | 168 | }
|
---|
| 169 |
|
---|
[beeff61e] | 170 | bool unregister_select( future(T) & this, select_node & s ) with(this) {
|
---|
| 171 | if ( ! s`isListed ) return false;
|
---|
[339e30a] | 172 | lock( lock );
|
---|
| 173 | if ( s`isListed ) remove( s );
|
---|
| 174 | unlock( lock );
|
---|
[beeff61e] | 175 | return false;
|
---|
[339e30a] | 176 | }
|
---|
[db19e1d] | 177 |
|
---|
[b93bf85] | 178 | bool on_selected( future(T) & this, select_node & node ) { return true; }
|
---|
[339e30a] | 179 | }
|
---|
| 180 | }
|
---|
| 181 |
|
---|
| 182 | //--------------------------------------------------------------------------------------------------------
|
---|
[70a4ed5] | 183 | // These futures below do not support select statements so they may not have as many features as 'future'
|
---|
[339e30a] | 184 | // however the 'single_future' is cheap and cheerful and is most likely more performant than 'future'
|
---|
[beeff61e] | 185 | // since it uses raw atomics and no locks
|
---|
[339e30a] | 186 | //
|
---|
| 187 | // As far as 'multi_future' goes I can't see many use cases as it will be less performant than 'future'
|
---|
| 188 | // since it is monitor based and also is not compatible with select statements
|
---|
| 189 | //--------------------------------------------------------------------------------------------------------
|
---|
| 190 |
|
---|
| 191 | forall( T ) {
|
---|
| 192 | struct single_future {
|
---|
[70f8bcd2] | 193 | inline future_t;
|
---|
| 194 | T result;
|
---|
| 195 | };
|
---|
| 196 |
|
---|
| 197 | static inline {
|
---|
| 198 | // Reset future back to original state
|
---|
[339e30a] | 199 | void reset(single_future(T) & this) { reset( (future_t&)this ); }
|
---|
[70f8bcd2] | 200 |
|
---|
| 201 | // check if the future is available
|
---|
[339e30a] | 202 | bool available( single_future(T) & this ) { return available( (future_t&)this ); }
|
---|
[70f8bcd2] | 203 |
|
---|
| 204 | // Mark the future as abandoned, meaning it will be deleted by the server
|
---|
| 205 | // This doesn't work beause of the potential need for a destructor
|
---|
[339e30a] | 206 | void abandon( single_future(T) & this );
|
---|
[70f8bcd2] | 207 |
|
---|
| 208 | // Fulfil the future, returns whether or not someone was unblocked
|
---|
[339e30a] | 209 | thread$ * fulfil( single_future(T) & this, T result ) {
|
---|
[70f8bcd2] | 210 | this.result = result;
|
---|
| 211 | return fulfil( (future_t&)this );
|
---|
| 212 | }
|
---|
| 213 |
|
---|
| 214 | // Wait for the future to be fulfilled
|
---|
| 215 | // Also return whether the thread had to block or not
|
---|
[339e30a] | 216 | [T, bool] wait( single_future(T) & this ) {
|
---|
[70f8bcd2] | 217 | bool r = wait( (future_t&)this );
|
---|
| 218 | return [this.result, r];
|
---|
| 219 | }
|
---|
| 220 |
|
---|
| 221 | // Wait for the future to be fulfilled
|
---|
[339e30a] | 222 | T wait( single_future(T) & this ) {
|
---|
[70f8bcd2] | 223 | [T, bool] tt;
|
---|
| 224 | tt = wait(this);
|
---|
| 225 | return tt.0;
|
---|
| 226 | }
|
---|
| 227 | }
|
---|
| 228 | }
|
---|
| 229 |
|
---|
[fd54fef] | 230 | forall( T ) {
|
---|
[70f8bcd2] | 231 | monitor multi_future {
|
---|
| 232 | inline future_t;
|
---|
| 233 | condition blocked;
|
---|
| 234 | bool has_first;
|
---|
| 235 | T result;
|
---|
| 236 | };
|
---|
| 237 |
|
---|
| 238 | static inline {
|
---|
| 239 | void ?{}(multi_future(T) & this) {
|
---|
| 240 | this.has_first = false;
|
---|
| 241 | }
|
---|
| 242 |
|
---|
| 243 | bool $first( multi_future(T) & mutex this ) {
|
---|
| 244 | if (this.has_first) {
|
---|
| 245 | wait( this.blocked );
|
---|
| 246 | return false;
|
---|
| 247 | }
|
---|
| 248 |
|
---|
| 249 | this.has_first = true;
|
---|
| 250 | return true;
|
---|
| 251 | }
|
---|
| 252 |
|
---|
| 253 | void $first_done( multi_future(T) & mutex this ) {
|
---|
| 254 | this.has_first = false;
|
---|
| 255 | signal_all( this.blocked );
|
---|
| 256 | }
|
---|
| 257 |
|
---|
| 258 | // Reset future back to original state
|
---|
| 259 | void reset(multi_future(T) & mutex this) {
|
---|
| 260 | if( this.has_first != false) abort("Attempting to reset a multi_future with at least one blocked threads");
|
---|
| 261 | if( !is_empty(this.blocked) ) abort("Attempting to reset a multi_future with multiple blocked threads");
|
---|
| 262 | reset( (future_t&)this );
|
---|
| 263 | }
|
---|
| 264 |
|
---|
| 265 | // Fulfil the future, returns whether or not someone was unblocked
|
---|
| 266 | bool fulfil( multi_future(T) & this, T result ) {
|
---|
| 267 | this.result = result;
|
---|
[c323837] | 268 | return fulfil( (future_t&)this ) != 0p;
|
---|
[70f8bcd2] | 269 | }
|
---|
| 270 |
|
---|
| 271 | // Wait for the future to be fulfilled
|
---|
| 272 | // Also return whether the thread had to block or not
|
---|
| 273 | [T, bool] wait( multi_future(T) & this ) {
|
---|
| 274 | bool sw = $first( this );
|
---|
| 275 | bool w = !sw;
|
---|
| 276 | if ( sw ) {
|
---|
| 277 | w = wait( (future_t&)this );
|
---|
| 278 | $first_done( this );
|
---|
| 279 | }
|
---|
| 280 |
|
---|
| 281 | return [this.result, w];
|
---|
| 282 | }
|
---|
| 283 |
|
---|
| 284 | // Wait for the future to be fulfilled
|
---|
| 285 | T wait( multi_future(T) & this ) {
|
---|
| 286 | return wait(this).0;
|
---|
| 287 | }
|
---|
| 288 | }
|
---|
[db19e1d] | 289 | }
|
---|