source: trunk/kernel/libk/remote_spinlock.c@ 397

Last change on this file since 397 was 337, checked in by alain, 9 years ago

Introduce the delayed context switch if current thread has a lock.

File size: 6.8 KB
RevLine 
[1]1/*
2 * remote_spinlock.c - kernel remote spinlock implementation.
[93]3 *
[1]4 * Authors Mohamed Karaoui (2015)
5 * Alain Greiner (2016)
6 *
7 * Copyright (c) UPMC Sorbonne Universites
8 *
9 * This file is part of ALMOS-MKH.
10 *
11 * ALMOS-MKH is free software; you can redistribute it and/or modify it
12 * under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; version 2.0 of the License.
14 *
15 * ALMOS-MKH is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with ALMOS-MKH; if not, write to the Free Software Foundation,
22 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
23 */
24
25#include <hal_types.h>
26#include <hal_remote.h>
27#include <hal_irqmask.h>
28#include <thread.h>
29#include <cluster.h>
30#include <scheduler.h>
31#include <remote_spinlock.h>
32
[11]33///////////////////////////////////////////
34void remote_spinlock_init( xptr_t lock_xp )
[93]35{
36 remote_spinlock_t * ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
37 cxy_t cxy = GET_CXY( lock_xp );
[1]38
[93]39 hal_remote_sw ( XPTR( cxy , &ptr->taken ) , 0 );
40 hal_remote_swd( XPTR( cxy , &ptr->owner ) , XPTR_NULL );
41 xlist_entry_init( XPTR( cxy , &ptr->list ) );
[1]42}
43
[11]44/////////////////////////////////////////////////
45error_t remote_spinlock_trylock( xptr_t lock_xp )
[93]46{
[60]47 reg_t mode;
[1]48 bool_t isAtomic = false;
49
[93]50 // get cluster and local pointer on remote_spinlock
51 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
52 cxy_t lock_cxy = GET_CXY( lock_xp );
[1]53
[93]54 // get cluster and local pointer on local thread
55 cxy_t thread_cxy = local_cxy;
56 thread_t * thread_ptr = CURRENT_THREAD;
[1]57
[93]58 // disable interrupts
59 hal_disable_irq( &mode );
[1]60
61 if( hal_remote_lw( XPTR( lock_cxy , &lock_ptr->taken ) ) == 0 )
[93]62 {
[1]63 isAtomic = hal_remote_atomic_cas( XPTR( lock_cxy , &lock_ptr->taken ) , 0 , 1 );
[93]64 }
[1]65
[93]66 if( isAtomic == false ) // failure
[1]67 {
68 hal_restore_irq( mode );
69 return 1;
70 }
[93]71 else // success : register lock in thread
72 {
73 thread_ptr->remote_locks++;
[1]74
[93]75 hal_remote_swd( XPTR( lock_cxy , &lock_ptr->owner ) ,
76 (uint64_t)XPTR( thread_cxy , thread_ptr) );
[1]77
[93]78 xlist_add_first( XPTR( thread_cxy , &thread_ptr->xlocks_root ) ,
79 XPTR( lock_cxy , &lock_ptr->list ) );
[1]80
[93]81 hal_restore_irq(mode);
82 return 0;
83 }
[1]84}
85
[11]86///////////////////////////////////////////////////
87void remote_spinlock_lock_busy( xptr_t lock_xp,
88 uint32_t * irq_state )
[1]89{
[93]90 bool_t isAtomic = false;
[60]91 reg_t mode;
[93]92 volatile uint32_t taken;
[1]93
[93]94 // get cluster and local pointer on remote_spinlock
95 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
96 cxy_t lock_cxy = GET_CXY( lock_xp );
[1]97
[93]98 // get cluster and local pointer on local thread
99 cxy_t thread_cxy = local_cxy;
100 thread_t * thread_ptr = CURRENT_THREAD;
[1]101
[93]102 // disable interrupts
[1]103 hal_disable_irq( &mode );
[93]104
105 // loop until success
[1]106 while( isAtomic == false )
107 {
108 taken = hal_remote_lw( XPTR( lock_cxy , &lock_ptr->taken ) );
109
[93]110 // try to take the lock if not already taken
[11]111 if( taken == 0 )
112 {
[93]113 isAtomic = hal_remote_atomic_cas( XPTR( lock_cxy , &lock_ptr->taken ) , 0 , 1 );
114 }
[11]115 }
116
[93]117 // register lock in thread
[11]118 thread_ptr->remote_locks++;
119
[93]120 hal_remote_swd( XPTR( lock_cxy , &lock_ptr->owner ) ,
121 (uint64_t)XPTR( thread_cxy , thread_ptr) );
[11]122
[93]123 xlist_add_first( XPTR( thread_cxy , &thread_ptr->xlocks_root ) ,
124 XPTR( lock_cxy , &lock_ptr->list ) );
[11]125
[93]126 // irq_state must be restored when lock is released
127 *irq_state = mode;
[11]128
129} // end remote_spinlock_lock_busy()
130
131////////////////////////////////////////////////////
132void remote_spinlock_unlock_busy( xptr_t lock_xp,
133 uint32_t irq_state )
134{
[93]135 // get cluster and local pointer on remote_spinlock
136 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
137 cxy_t lock_cxy = GET_CXY( lock_xp );
[11]138
[93]139 // get pointer on local thread
140 thread_t * thread_ptr = CURRENT_THREAD;
[11]141
142 hal_remote_swd( XPTR( lock_cxy , &lock_ptr->owner ) , XPTR_NULL );
143 hal_remote_sw ( XPTR( lock_cxy , &lock_ptr->taken ) , 0 );
144 thread_ptr->remote_locks--;
[93]145 xlist_unlink( XPTR( lock_cxy , &lock_ptr->list ) );
[11]146
[337]147 // deschedule if pending request
148 thread_check_sched();
149
150 // restore IRQs
[93]151 hal_restore_irq( irq_state );
[11]152}
153
154///////////////////////////////////////////
155void remote_spinlock_lock( xptr_t lock_xp )
156{
[93]157 bool_t isAtomic = false;
[60]158 reg_t mode;
[93]159 volatile uint32_t taken;
[11]160
[93]161 // get cluster and local pointer on remote_spinlock
162 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
163 cxy_t lock_cxy = GET_CXY( lock_xp );
[11]164
[101]165 // get cluster and local pointer on calling thread
166 cxy_t thread_cxy = local_cxy;
167 thread_t * thread_ptr = CURRENT_THREAD;
[11]168
[93]169 // disable interrupts
[11]170 hal_disable_irq( &mode );
[93]171
172 // loop until success
[11]173 while( isAtomic == false )
174 {
175 taken = hal_remote_lw( XPTR( lock_cxy , &lock_ptr->taken ) );
176
[93]177 // deschedule if possible when lock already taken
[1]178 if( taken != 0 )
179 {
[93]180 hal_restore_irq( mode );
[296]181 if( thread_can_yield() ) sched_yield( NULL );
[93]182 hal_disable_irq( &mode );
[1]183 continue;
184 }
[93]185
186 // try to take the lock if not already taken
[1]187 isAtomic = hal_remote_atomic_cas( XPTR( lock_cxy , &lock_ptr->taken ) , 0 , 1 );
188 }
189
[93]190 // register lock in thread
[1]191 thread_ptr->remote_locks++;
192
[93]193 hal_remote_swd( XPTR( lock_cxy , &lock_ptr->owner ) ,
194 (uint64_t)XPTR( thread_cxy , thread_ptr) );
[1]195
[93]196 xlist_add_first( XPTR( thread_cxy , &thread_ptr->xlocks_root ) ,
197 XPTR( lock_cxy , &lock_ptr->list ) );
[1]198
[93]199 // enable interrupts
[1]200 hal_restore_irq( mode );
201}
202
[11]203/////////////////////////////////////////////
204void remote_spinlock_unlock( xptr_t lock_xp )
[1]205{
[93]206 // get cluster and local pointer on remote_spinlock
207 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
208 cxy_t lock_cxy = GET_CXY( lock_xp );
[1]209
[93]210 // get pointer on local thread
211 thread_t * thread_ptr = CURRENT_THREAD;
[1]212
213 hal_remote_swd( XPTR( lock_cxy , &lock_ptr->owner ) , XPTR_NULL );
214 hal_remote_sw ( XPTR( lock_cxy , &lock_ptr->taken ) , 0 );
215 thread_ptr->remote_locks--;
[337]216 xlist_unlink( XPTR( lock_cxy , &lock_ptr->list ) );
[1]217
[337]218 // deschedule if pending request
219 thread_check_sched();
[1]220}
221
[101]222//////////////////////////////////////////////
223xptr_t remote_spinlock_owner( xptr_t lock_xp )
224{
225 // get cluster and local pointer on remote_spinlock
226 remote_spinlock_t * lock_ptr = (remote_spinlock_t *)GET_PTR( lock_xp );
227 cxy_t lock_cxy = GET_CXY( lock_xp );
228
229 return hal_remote_lw( XPTR( lock_cxy , &lock_ptr->owner ) );
230}
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