[bc1f1c2] | 1 | /*
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| 2 | * Copyright (c) 2006 Ondrej Palkovsky
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| 3 | * Copyright (c) 2007 Jakub Jermar
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| 4 | * All rights reserved.
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| 5 | *
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| 6 | * Redistribution and use in source and binary forms, with or without
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| 7 | * modification, are permitted provided that the following conditions
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| 8 | * are met:
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| 9 | *
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| 10 | * - Redistributions of source code must retain the above copyright
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| 11 | * notice, this list of conditions and the following disclaimer.
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| 12 | * - Redistributions in binary form must reproduce the above copyright
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| 13 | * notice, this list of conditions and the following disclaimer in the
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| 14 | * documentation and/or other materials provided with the distribution.
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| 15 | * - The name of the author may not be used to endorse or promote products
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| 16 | * derived from this software without specific prior written permission.
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| 17 | *
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| 18 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 19 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 20 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 21 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 22 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 23 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 24 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 25 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 26 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 27 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 28 | */
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| 29 |
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| 30 | /** @addtogroup libc
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| 31 | * @{
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| 32 | */
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| 33 | /** @file
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| 34 | */
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| 35 |
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[d9c8c81] | 36 | #include <adt/list.h>
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[bc1f1c2] | 37 | #include <fibril.h>
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[fa23560] | 38 | #include <thread.h>
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| 39 | #include <tls.h>
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[bc1f1c2] | 40 | #include <malloc.h>
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| 41 | #include <unistd.h>
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| 42 | #include <stdio.h>
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| 43 | #include <libarch/faddr.h>
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| 44 | #include <futex.h>
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| 45 | #include <assert.h>
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| 46 | #include <async.h>
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| 47 |
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| 48 | #ifndef FIBRIL_INITIAL_STACK_PAGES_NO
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| 49 | #define FIBRIL_INITIAL_STACK_PAGES_NO 1
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| 50 | #endif
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| 51 |
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[cc27c8c5] | 52 | /**
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| 53 | * This futex serializes access to ready_list, serialized_list and manager_list.
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[12f91130] | 54 | */
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| 55 | static atomic_t fibril_futex = FUTEX_INITIALIZER;
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| 56 |
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[bc1f1c2] | 57 | static LIST_INITIALIZE(ready_list);
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| 58 | static LIST_INITIALIZE(serialized_list);
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| 59 | static LIST_INITIALIZE(manager_list);
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| 60 |
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| 61 | static void fibril_main(void);
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| 62 |
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[cc27c8c5] | 63 | /** Number of threads that are executing a manager fibril. */
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| 64 | static int threads_in_manager;
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| 65 | /** Number of threads that are executing a manager fibril and are serialized. */
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| 66 | static int serialized_threads; /* Protected by async_futex */
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[26360f7] | 67 | /** Fibril-local count of serialization. If > 0, we must not preempt */
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| 68 | static fibril_local int serialization_count;
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[bc1f1c2] | 69 |
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| 70 | /** Setup fibril information into TCB structure */
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| 71 | fibril_t *fibril_setup(void)
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| 72 | {
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| 73 | fibril_t *f;
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| 74 | tcb_t *tcb;
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| 75 |
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| 76 | tcb = __make_tls();
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| 77 | if (!tcb)
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| 78 | return NULL;
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| 79 |
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[116d3f6f] | 80 | f = malloc(sizeof(fibril_t));
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[bc1f1c2] | 81 | if (!f) {
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| 82 | __free_tls(tcb);
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| 83 | return NULL;
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| 84 | }
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| 85 |
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| 86 | tcb->fibril_data = f;
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| 87 | f->tcb = tcb;
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| 88 |
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[116d3f6f] | 89 | f->func = NULL;
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| 90 | f->arg = NULL;
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| 91 | f->stack = NULL;
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| 92 | f->clean_after_me = NULL;
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| 93 | f->retval = 0;
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| 94 | f->flags = 0;
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| 95 |
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[bc1f1c2] | 96 | return f;
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| 97 | }
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| 98 |
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| 99 | void fibril_teardown(fibril_t *f)
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| 100 | {
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| 101 | __free_tls(f->tcb);
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| 102 | free(f);
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| 103 | }
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| 104 |
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| 105 | /** Function that spans the whole life-cycle of a fibril.
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| 106 | *
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[12f91130] | 107 | * Each fibril begins execution in this function. Then the function implementing
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| 108 | * the fibril logic is called. After its return, the return value is saved.
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| 109 | * The fibril then switches to another fibril, which cleans up after it.
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[bc1f1c2] | 110 | */
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| 111 | void fibril_main(void)
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| 112 | {
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| 113 | fibril_t *f = __tcb_get()->fibril_data;
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| 114 |
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[12f91130] | 115 | /* Call the implementing function. */
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[bc1f1c2] | 116 | f->retval = f->func(f->arg);
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| 117 |
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[116d3f6f] | 118 | fibril_switch(FIBRIL_FROM_DEAD);
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[bc1f1c2] | 119 | /* not reached */
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| 120 | }
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| 121 |
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[116d3f6f] | 122 | /** Switch from the current fibril.
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[bc1f1c2] | 123 | *
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| 124 | * If calling with FIBRIL_TO_MANAGER parameter, the async_futex should be
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| 125 | * held.
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| 126 | *
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[12f91130] | 127 | * @param stype Switch type. One of FIBRIL_PREEMPT, FIBRIL_TO_MANAGER,
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[bc1f1c2] | 128 | * FIBRIL_FROM_MANAGER, FIBRIL_FROM_DEAD. The parameter
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| 129 | * describes the circumstances of the switch.
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| 130 | * @return Return 0 if there is no ready fibril,
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| 131 | * return 1 otherwise.
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| 132 | */
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[116d3f6f] | 133 | int fibril_switch(fibril_switch_type_t stype)
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[bc1f1c2] | 134 | {
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| 135 | fibril_t *srcf, *dstf;
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| 136 | int retval = 0;
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| 137 |
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| 138 | futex_down(&fibril_futex);
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| 139 |
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| 140 | if (stype == FIBRIL_PREEMPT && list_empty(&ready_list))
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| 141 | goto ret_0;
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| 142 |
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| 143 | if (stype == FIBRIL_FROM_MANAGER) {
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| 144 | if (list_empty(&ready_list) && list_empty(&serialized_list))
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| 145 | goto ret_0;
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| 146 | /*
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[cc27c8c5] | 147 | * Do not preempt if there is not enough threads to run the
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[bd8bfcbd] | 148 | * ready fibrils which are not serialized.
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[bc1f1c2] | 149 | */
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[116d3f6f] | 150 | if (list_empty(&serialized_list) &&
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[cc27c8c5] | 151 | threads_in_manager <= serialized_threads) {
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[bc1f1c2] | 152 | goto ret_0;
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| 153 | }
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| 154 | }
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| 155 | /* If we are going to manager and none exists, create it */
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| 156 | if (stype == FIBRIL_TO_MANAGER || stype == FIBRIL_FROM_DEAD) {
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| 157 | while (list_empty(&manager_list)) {
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| 158 | futex_up(&fibril_futex);
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| 159 | async_create_manager();
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| 160 | futex_down(&fibril_futex);
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| 161 | }
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| 162 | }
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| 163 |
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| 164 | srcf = __tcb_get()->fibril_data;
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| 165 | if (stype != FIBRIL_FROM_DEAD) {
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| 166 | /* Save current state */
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| 167 | if (!context_save(&srcf->ctx)) {
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| 168 | if (serialization_count)
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| 169 | srcf->flags &= ~FIBRIL_SERIALIZED;
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| 170 | if (srcf->clean_after_me) {
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| 171 | /*
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| 172 | * Cleanup after the dead fibril from which we
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| 173 | * restored context here.
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| 174 | */
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[116d3f6f] | 175 | void *stack = srcf->clean_after_me->stack;
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| 176 | if (stack) {
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| 177 | /*
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| 178 | * This check is necessary because a
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| 179 | * thread could have exited like a
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| 180 | * normal fibril using the
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| 181 | * FIBRIL_FROM_DEAD switch type. In that
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| 182 | * case, its fibril will not have the
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| 183 | * stack member filled.
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| 184 | */
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| 185 | free(stack);
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| 186 | }
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[bc1f1c2] | 187 | fibril_teardown(srcf->clean_after_me);
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| 188 | srcf->clean_after_me = NULL;
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| 189 | }
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| 190 | return 1; /* futex_up already done here */
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| 191 | }
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| 192 |
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| 193 | /* Save myself to the correct run list */
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| 194 | if (stype == FIBRIL_PREEMPT)
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| 195 | list_append(&srcf->link, &ready_list);
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| 196 | else if (stype == FIBRIL_FROM_MANAGER) {
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| 197 | list_append(&srcf->link, &manager_list);
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[cc27c8c5] | 198 | threads_in_manager--;
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[bc1f1c2] | 199 | } else {
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| 200 | /*
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| 201 | * If stype == FIBRIL_TO_MANAGER, don't put ourselves to
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| 202 | * any list, we should already be somewhere, or we will
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| 203 | * be lost.
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| 204 | */
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| 205 | }
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| 206 | }
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[116d3f6f] | 207 |
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[bc1f1c2] | 208 | /* Choose a new fibril to run */
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| 209 | if (stype == FIBRIL_TO_MANAGER || stype == FIBRIL_FROM_DEAD) {
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| 210 | dstf = list_get_instance(manager_list.next, fibril_t, link);
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| 211 | if (serialization_count && stype == FIBRIL_TO_MANAGER) {
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[cc27c8c5] | 212 | serialized_threads++;
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[bc1f1c2] | 213 | srcf->flags |= FIBRIL_SERIALIZED;
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| 214 | }
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[cc27c8c5] | 215 | threads_in_manager++;
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[bc1f1c2] | 216 |
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[116d3f6f] | 217 | if (stype == FIBRIL_FROM_DEAD)
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[bc1f1c2] | 218 | dstf->clean_after_me = srcf;
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| 219 | } else {
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| 220 | if (!list_empty(&serialized_list)) {
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| 221 | dstf = list_get_instance(serialized_list.next, fibril_t,
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| 222 | link);
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[cc27c8c5] | 223 | serialized_threads--;
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[bc1f1c2] | 224 | } else {
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| 225 | dstf = list_get_instance(ready_list.next, fibril_t,
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| 226 | link);
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| 227 | }
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| 228 | }
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| 229 | list_remove(&dstf->link);
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| 230 |
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| 231 | futex_up(&fibril_futex);
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| 232 | context_restore(&dstf->ctx);
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| 233 | /* not reached */
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| 234 |
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| 235 | ret_0:
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| 236 | futex_up(&fibril_futex);
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| 237 | return retval;
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| 238 | }
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| 239 |
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| 240 | /** Create a new fibril.
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| 241 | *
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| 242 | * @param func Implementing function of the new fibril.
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| 243 | * @param arg Argument to pass to func.
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| 244 | *
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| 245 | * @return Return 0 on failure or TLS of the new fibril.
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| 246 | */
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| 247 | fid_t fibril_create(int (*func)(void *), void *arg)
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| 248 | {
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| 249 | fibril_t *f;
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| 250 |
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| 251 | f = fibril_setup();
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| 252 | if (!f)
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| 253 | return 0;
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| 254 | f->stack = (char *) malloc(FIBRIL_INITIAL_STACK_PAGES_NO *
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| 255 | getpagesize());
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| 256 | if (!f->stack) {
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| 257 | fibril_teardown(f);
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| 258 | return 0;
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| 259 | }
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[116d3f6f] | 260 |
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[bc1f1c2] | 261 | f->func = func;
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[116d3f6f] | 262 | f->arg = arg;
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[bc1f1c2] | 263 |
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| 264 | context_save(&f->ctx);
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| 265 | context_set(&f->ctx, FADDR(fibril_main), f->stack,
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| 266 | FIBRIL_INITIAL_STACK_PAGES_NO * getpagesize(), f->tcb);
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| 267 |
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| 268 | return (fid_t) f;
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| 269 | }
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| 270 |
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| 271 | /** Add a fibril to the ready list.
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| 272 | *
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[cc27c8c5] | 273 | * @param fid Pointer to the fibril structure of the fibril to be
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[c7509e5] | 274 | * added.
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[bc1f1c2] | 275 | */
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| 276 | void fibril_add_ready(fid_t fid)
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| 277 | {
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| 278 | fibril_t *f;
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| 279 |
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| 280 | f = (fibril_t *) fid;
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| 281 | futex_down(&fibril_futex);
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| 282 | if ((f->flags & FIBRIL_SERIALIZED))
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| 283 | list_append(&f->link, &serialized_list);
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| 284 | else
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| 285 | list_append(&f->link, &ready_list);
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| 286 | futex_up(&fibril_futex);
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| 287 | }
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| 288 |
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| 289 | /** Add a fibril to the manager list.
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| 290 | *
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[cc27c8c5] | 291 | * @param fid Pointer to the fibril structure of the fibril to be
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| 292 | * added.
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[bc1f1c2] | 293 | */
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| 294 | void fibril_add_manager(fid_t fid)
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| 295 | {
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| 296 | fibril_t *f;
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| 297 |
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| 298 | f = (fibril_t *) fid;
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| 299 |
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| 300 | futex_down(&fibril_futex);
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| 301 | list_append(&f->link, &manager_list);
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| 302 | futex_up(&fibril_futex);
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| 303 | }
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| 304 |
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| 305 | /** Remove one manager from the manager list. */
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| 306 | void fibril_remove_manager(void)
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| 307 | {
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| 308 | futex_down(&fibril_futex);
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| 309 | if (list_empty(&manager_list)) {
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| 310 | futex_up(&fibril_futex);
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| 311 | return;
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| 312 | }
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| 313 | list_remove(manager_list.next);
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| 314 | futex_up(&fibril_futex);
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| 315 | }
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| 316 |
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| 317 | /** Return fibril id of the currently running fibril.
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| 318 | *
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[3562ec82] | 319 | * @return fibril ID of the currently running fibril.
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| 320 | *
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[bc1f1c2] | 321 | */
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| 322 | fid_t fibril_get_id(void)
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| 323 | {
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| 324 | return (fid_t) __tcb_get()->fibril_data;
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| 325 | }
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| 326 |
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[3562ec82] | 327 | /** Disable preemption
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[bc1f1c2] | 328 | *
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| 329 | * If the fibril wants to send several message in a row and does not want to be
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| 330 | * preempted, it should start async_serialize_start() in the beginning of
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| 331 | * communication and async_serialize_end() in the end. If it is a true
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| 332 | * multithreaded application, it should protect the communication channel by a
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[3562ec82] | 333 | * futex as well.
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| 334 | *
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[bc1f1c2] | 335 | */
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| 336 | void fibril_inc_sercount(void)
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| 337 | {
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| 338 | serialization_count++;
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| 339 | }
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| 340 |
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| 341 | /** Restore the preemption counter to the previous state. */
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| 342 | void fibril_dec_sercount(void)
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| 343 | {
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| 344 | serialization_count--;
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| 345 | }
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| 346 |
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| 347 | /** @}
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| 348 | */
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