[1] | 1 | /* |
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[563] | 2 | * remote_barrier.c - POSIX barrier implementation. |
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[104] | 3 | * |
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[563] | 4 | * Author Alain Greiner (2016,2017,2018) |
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[1] | 5 | * |
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| 6 | * Copyright (c) UPMC Sorbonne Universites |
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| 7 | * |
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| 8 | * This file is part of ALMOS-MKH. |
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| 9 | * |
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| 10 | * ALMOS-MKH is free software; you can redistribute it and/or modify it |
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| 11 | * under the terms of the GNU General Public License as published by |
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| 12 | * the Free Software Foundation; version 2.0 of the License. |
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| 13 | * |
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| 14 | * ALMOS-MKH is distributed in the hope that it will be useful, but |
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| 15 | * WITHOUT ANY WARRANTY; without even the implied warranty of |
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| 16 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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| 17 | * General Public License for more details. |
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| 18 | * |
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| 19 | * You should have received a copy of the GNU General Public License |
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| 20 | * along with ALMOS-MKH; if not, write to the Free Software Foundation, |
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| 21 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA |
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| 22 | */ |
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| 23 | |
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[457] | 24 | #include <hal_kernel_types.h> |
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[1] | 25 | #include <hal_remote.h> |
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[23] | 26 | #include <hal_irqmask.h> |
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[563] | 27 | #include <remote_busylock.h> |
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[23] | 28 | #include <thread.h> |
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| 29 | #include <kmem.h> |
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| 30 | #include <printk.h> |
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| 31 | #include <process.h> |
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| 32 | #include <vmm.h> |
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[1] | 33 | #include <remote_barrier.h> |
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| 34 | |
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| 35 | |
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[23] | 36 | /////////////////////////////////////////////////// |
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| 37 | xptr_t remote_barrier_from_ident( intptr_t ident ) |
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| 38 | { |
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| 39 | // get pointer on local process_descriptor |
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| 40 | process_t * process = CURRENT_THREAD->process; |
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[1] | 41 | |
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[23] | 42 | // get extended pointer on reference process |
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| 43 | xptr_t ref_xp = process->ref_xp; |
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| 44 | |
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[104] | 45 | // get cluster and local pointer on reference process |
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[23] | 46 | cxy_t ref_cxy = GET_CXY( ref_xp ); |
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| 47 | process_t * ref_ptr = (process_t *)GET_PTR( ref_xp ); |
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| 48 | |
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[104] | 49 | // get extended pointer on root of barriers list |
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[23] | 50 | xptr_t root_xp = XPTR( ref_cxy , &ref_ptr->barrier_root ); |
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[104] | 51 | |
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[23] | 52 | // scan reference process barriers list |
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| 53 | xptr_t iter_xp; |
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| 54 | xptr_t barrier_xp; |
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| 55 | cxy_t barrier_cxy; |
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| 56 | remote_barrier_t * barrier_ptr; |
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| 57 | intptr_t current; |
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| 58 | bool_t found = false; |
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[104] | 59 | |
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[23] | 60 | XLIST_FOREACH( root_xp , iter_xp ) |
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| 61 | { |
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| 62 | barrier_xp = XLIST_ELEMENT( iter_xp , remote_barrier_t , list ); |
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| 63 | barrier_cxy = GET_CXY( barrier_xp ); |
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| 64 | barrier_ptr = (remote_barrier_t *)GET_PTR( barrier_xp ); |
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[104] | 65 | current = (intptr_t)hal_remote_lpt( XPTR( barrier_cxy , &barrier_ptr->ident ) ); |
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[23] | 66 | if( ident == current ) |
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| 67 | { |
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| 68 | found = true; |
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| 69 | break; |
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| 70 | } |
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| 71 | } |
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| 72 | |
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| 73 | if( found == false ) return XPTR_NULL; |
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| 74 | else return barrier_xp; |
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[104] | 75 | } |
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[23] | 76 | |
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| 77 | ////////////////////////////////////////////// |
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| 78 | error_t remote_barrier_create( intptr_t ident, |
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| 79 | uint32_t count ) |
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| 80 | { |
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| 81 | xptr_t barrier_xp; |
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| 82 | remote_barrier_t * barrier_ptr; |
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| 83 | |
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| 84 | // get pointer on local process descriptor |
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[581] | 85 | thread_t * this = CURRENT_THREAD; |
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| 86 | process_t * process = this->process; |
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[23] | 87 | |
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[581] | 88 | #if DEBUG_BARRIER |
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| 89 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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| 90 | if( cycle > DEBUG_BARRIER ) |
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| 91 | printk("\n[DBG] %s : thread %x in process %x enter / count %d / cycle %d\n", |
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| 92 | __FUNCTION__, this->trdid, process->pid, count, cycle ); |
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| 93 | #endif |
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| 94 | |
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[23] | 95 | // get extended pointer on reference process |
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| 96 | xptr_t ref_xp = process->ref_xp; |
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| 97 | |
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| 98 | // get reference process cluster and local pointer |
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| 99 | cxy_t ref_cxy = GET_CXY( ref_xp ); |
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[563] | 100 | process_t * ref_ptr = GET_PTR( ref_xp ); |
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[23] | 101 | |
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| 102 | // allocate memory for barrier descriptor |
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[104] | 103 | if( ref_cxy == local_cxy ) // local cluster is the reference |
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[23] | 104 | { |
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[104] | 105 | kmem_req_t req; |
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[23] | 106 | req.type = KMEM_BARRIER; |
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| 107 | req.flags = AF_ZERO; |
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| 108 | barrier_ptr = kmem_alloc( &req ); |
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| 109 | barrier_xp = XPTR( local_cxy , barrier_ptr ); |
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| 110 | } |
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| 111 | else // reference is remote |
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| 112 | { |
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| 113 | rpc_kcm_alloc_client( ref_cxy , KMEM_BARRIER , &barrier_xp ); |
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| 114 | barrier_ptr = (remote_barrier_t *)GET_PTR( barrier_xp ); |
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| 115 | } |
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| 116 | |
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| 117 | if( barrier_ptr == NULL ) return ENOMEM; |
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| 118 | |
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[104] | 119 | // initialise barrier |
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[581] | 120 | hal_remote_s32( XPTR( ref_cxy , &barrier_ptr->nb_threads ) , count ); |
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| 121 | hal_remote_s32( XPTR( ref_cxy , &barrier_ptr->current ) , 0 ); |
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| 122 | hal_remote_s32( XPTR( ref_cxy , &barrier_ptr->sense ) , 0 ); |
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[23] | 123 | hal_remote_spt( XPTR( ref_cxy , &barrier_ptr->ident ) , (void*)ident ); |
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| 124 | |
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[581] | 125 | xlist_root_init( XPTR( ref_cxy , &barrier_ptr->root ) ); |
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[23] | 126 | |
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| 127 | // register barrier in reference process xlist |
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| 128 | xptr_t root_xp = XPTR( ref_cxy , &ref_ptr->barrier_root ); |
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| 129 | xptr_t entry_xp = XPTR( ref_cxy , &barrier_ptr->list ); |
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| 130 | |
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[563] | 131 | remote_busylock_acquire( XPTR( ref_cxy , &ref_ptr->sync_lock ) ); |
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[23] | 132 | xlist_add_first( root_xp , entry_xp ); |
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[563] | 133 | remote_busylock_release( XPTR( ref_cxy , &ref_ptr->sync_lock ) ); |
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[23] | 134 | |
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[581] | 135 | #if DEBUG_BARRIER |
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| 136 | cycle = (uint32_t)hal_get_cycles(); |
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| 137 | if( cycle > DEBUG_BARRIER ) |
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| 138 | printk("\n[DBG] %s : thread %x in process %x exit / barrier %x in cluster %x / cycle %d\n", |
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| 139 | __FUNCTION__, this->trdid, process->pid, barrier_ptr, ref_cxy, cycle ); |
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| 140 | #endif |
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| 141 | |
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[23] | 142 | return 0; |
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| 143 | |
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[581] | 144 | } // end remote_barrier_create() |
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| 145 | |
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[23] | 146 | //////////////////////////////////////////////// |
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| 147 | void remote_barrier_destroy( xptr_t barrier_xp ) |
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| 148 | { |
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| 149 | // get pointer on local process descriptor |
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| 150 | process_t * process = CURRENT_THREAD->process; |
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| 151 | |
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| 152 | // get extended pointer on reference process |
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| 153 | xptr_t ref_xp = process->ref_xp; |
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| 154 | |
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| 155 | // get reference process cluster and local pointer |
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| 156 | cxy_t ref_cxy = GET_CXY( ref_xp ); |
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| 157 | process_t * ref_ptr = (process_t *)GET_PTR( ref_xp ); |
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| 158 | |
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| 159 | // get barrier cluster and local pointer |
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| 160 | cxy_t barrier_cxy = GET_CXY( barrier_xp ); |
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| 161 | remote_barrier_t * barrier_ptr = (remote_barrier_t *)GET_PTR( barrier_xp ); |
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| 162 | |
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| 163 | // remove barrier from reference process xlist |
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[563] | 164 | remote_busylock_acquire( XPTR( ref_cxy , &ref_ptr->sync_lock ) ); |
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[23] | 165 | xlist_unlink( XPTR( barrier_cxy , &barrier_ptr->list ) ); |
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[563] | 166 | remote_busylock_release( XPTR( ref_cxy , &ref_ptr->sync_lock ) ); |
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[23] | 167 | |
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| 168 | // release memory allocated for barrier descriptor |
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| 169 | if( barrier_cxy == local_cxy ) // reference is local |
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| 170 | { |
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| 171 | kmem_req_t req; |
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| 172 | req.type = KMEM_BARRIER; |
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| 173 | req.ptr = barrier_ptr; |
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| 174 | kmem_free( &req ); |
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| 175 | } |
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| 176 | else // reference is remote |
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| 177 | { |
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| 178 | rpc_kcm_free_client( barrier_cxy , barrier_ptr , KMEM_BARRIER ); |
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| 179 | } |
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[581] | 180 | } // end remote_barrier_destroy() |
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[23] | 181 | |
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| 182 | ///////////////////////////////////////////// |
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| 183 | void remote_barrier_wait( xptr_t barrier_xp ) |
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| 184 | { |
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| 185 | uint32_t expected; |
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[581] | 186 | uint32_t sense; |
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[23] | 187 | uint32_t current; |
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[581] | 188 | uint32_t nb_threads; |
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[23] | 189 | xptr_t root_xp; |
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[581] | 190 | xptr_t lock_xp; |
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| 191 | xptr_t current_xp; |
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| 192 | xptr_t sense_xp; |
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| 193 | xptr_t nb_threads_xp; |
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[23] | 194 | |
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[581] | 195 | // get pointer on calling thread |
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| 196 | thread_t * this = CURRENT_THREAD; |
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[23] | 197 | |
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[581] | 198 | // check calling thread can yield |
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| 199 | thread_assert_can_yield( this , __FUNCTION__ ); |
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[563] | 200 | |
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[23] | 201 | // get cluster and local pointer on remote barrier |
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[581] | 202 | remote_barrier_t * barrier_ptr = GET_PTR( barrier_xp ); |
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[23] | 203 | cxy_t barrier_cxy = GET_CXY( barrier_xp ); |
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| 204 | |
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[581] | 205 | #if DEBUG_BARRIER |
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| 206 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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| 207 | if( cycle > DEBUG_BARRIER ) |
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| 208 | printk("\n[DBG] %s : thread %x in process %x enter / barrier %x in cluster %x / cycle %d\n", |
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| 209 | __FUNCTION__, this->trdid, this->process->pid, barrier_ptr, barrier_cxy, cycle ); |
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| 210 | #endif |
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[23] | 211 | |
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[581] | 212 | // compute extended pointers on various barrier fields |
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| 213 | lock_xp = XPTR( barrier_cxy , &barrier_ptr->lock ); |
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| 214 | root_xp = XPTR( barrier_cxy , &barrier_ptr->root ); |
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| 215 | current_xp = XPTR( barrier_cxy , &barrier_ptr->current ); |
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| 216 | sense_xp = XPTR( barrier_cxy , &barrier_ptr->sense ); |
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| 217 | nb_threads_xp = XPTR( barrier_cxy , &barrier_ptr->nb_threads ); |
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[23] | 218 | |
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[581] | 219 | // take busylock protecting the remote_barrier |
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| 220 | remote_busylock_acquire( lock_xp ); |
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| 221 | |
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| 222 | #if (DEBUG_BARRIER & 1) |
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| 223 | cycle = (uint32_t)hal_get_cycles(); |
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| 224 | if( cycle > DEBUG_BARRIER ) |
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| 225 | printk("\n[DBG] %s : thread %x in process %x get lock / cycle %d\n", |
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| 226 | __FUNCTION__, this->trdid, this->process->pid, cycle ); |
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| 227 | #endif |
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| 228 | |
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| 229 | // get sense and nb_threads values from barrier descriptor |
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| 230 | sense = hal_remote_l32( sense_xp ); |
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| 231 | nb_threads = hal_remote_l32( nb_threads_xp ); |
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| 232 | |
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[104] | 233 | // compute expected value |
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[23] | 234 | if ( sense == 0 ) expected = 1; |
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| 235 | else expected = 0; |
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| 236 | |
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[581] | 237 | #if (DEBUG_BARRIER & 1) |
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| 238 | cycle = (uint32_t)hal_get_cycles(); |
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| 239 | if( cycle > DEBUG_BARRIER ) |
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| 240 | printk("\n[DBG] %s : thread %x in process %x / count %d / sense %d / cycle %d\n", |
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| 241 | __FUNCTION__, this->trdid, this->process->pid, nb_threads, sense, cycle ); |
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| 242 | #endif |
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[23] | 243 | |
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[581] | 244 | // atomically increment current, and get value before increment |
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| 245 | current = hal_remote_atomic_add( current_xp , 1 ); |
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| 246 | |
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[23] | 247 | // last thread reset current, toggle sense, and activate all waiting threads |
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[104] | 248 | // other threads block, register in queue, and deschedule |
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[23] | 249 | |
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[581] | 250 | if( current == (nb_threads-1) ) // last thread |
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[23] | 251 | { |
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[581] | 252 | hal_remote_s32( current_xp , 0 ); |
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| 253 | hal_remote_s32( sense_xp , expected ); |
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[23] | 254 | |
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[581] | 255 | // unblock all waiting threads |
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| 256 | while( xlist_is_empty( root_xp ) == false ) |
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[23] | 257 | { |
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[581] | 258 | // get pointers on first waiting thread |
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| 259 | xptr_t thread_xp = XLIST_FIRST( root_xp , thread_t , wait_list ); |
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| 260 | cxy_t thread_cxy = GET_CXY( thread_xp ); |
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| 261 | thread_t * thread_ptr = GET_PTR( thread_xp ); |
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[104] | 262 | |
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[581] | 263 | #if (DEBUG_BARRIER & 1) |
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| 264 | cycle = (uint32_t)hal_get_cycles(); |
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| 265 | if( cycle > DEBUG_BARRIER ) |
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| 266 | printk("\n[DBG] %s : thread %x in process %x / unblock thread %x / cycle %d\n", |
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| 267 | __FUNCTION__, this->trdid, this->process->pid, thread_ptr, cycle ); |
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| 268 | #endif |
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[104] | 269 | |
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[581] | 270 | // remove waiting thread from queue |
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| 271 | xlist_unlink( XPTR( thread_cxy , &thread_ptr->wait_list ) ); |
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[23] | 272 | |
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[581] | 273 | // unblock waiting thread |
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| 274 | thread_unblock( thread_xp , THREAD_BLOCKED_USERSYNC ); |
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| 275 | } |
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[23] | 276 | |
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[581] | 277 | // release busylock protecting the remote_barrier |
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| 278 | remote_busylock_release( lock_xp ); |
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[23] | 279 | } |
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[104] | 280 | else // not the last thread |
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[23] | 281 | { |
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[104] | 282 | |
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[581] | 283 | #if (DEBUG_BARRIER & 1) |
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| 284 | cycle = (uint32_t)hal_get_cycles(); |
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| 285 | if( cycle > DEBUG_BARRIER ) |
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| 286 | printk("\n[DBG] %s : thread %x in process %x / blocked / cycle %d\n", |
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| 287 | __FUNCTION__, this->trdid, this->process->pid, cycle ); |
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| 288 | #endif |
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| 289 | |
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[23] | 290 | // register calling thread in barrier waiting queue |
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[581] | 291 | xlist_add_last( root_xp , XPTR( local_cxy , &this->wait_list ) ); |
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[23] | 292 | |
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[581] | 293 | // block calling thread |
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| 294 | thread_block( XPTR( local_cxy , this ) , THREAD_BLOCKED_USERSYNC ); |
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[23] | 295 | |
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[581] | 296 | // release busylock protecting the remote_barrier |
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| 297 | remote_busylock_release( lock_xp ); |
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| 298 | |
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| 299 | // deschedule |
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[408] | 300 | sched_yield("blocked on barrier"); |
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[581] | 301 | } |
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[23] | 302 | |
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[581] | 303 | #if DEBUG_BARRIER |
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| 304 | cycle = (uint32_t)hal_get_cycles(); |
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| 305 | if( cycle > DEBUG_BARRIER ) |
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| 306 | printk("\n[DBG] %s : thread %x in process %x exit / barrier %x in cluster %x / cycle %d\n", |
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| 307 | __FUNCTION__, this->trdid, this->process->pid, barrier_ptr, barrier_cxy, cycle ); |
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| 308 | #endif |
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| 309 | |
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| 310 | } // end remote_barrier_wait() |
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