[f761f1eb] | 1 | /*
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[481d4751] | 2 | * Copyright (c) 2010 Jakub Jermar
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[f761f1eb] | 3 | * All rights reserved.
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| 4 | *
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| 5 | * Redistribution and use in source and binary forms, with or without
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| 6 | * modification, are permitted provided that the following conditions
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| 7 | * are met:
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| 8 | *
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| 9 | * - Redistributions of source code must retain the above copyright
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| 10 | * notice, this list of conditions and the following disclaimer.
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| 11 | * - Redistributions in binary form must reproduce the above copyright
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| 12 | * notice, this list of conditions and the following disclaimer in the
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| 13 | * documentation and/or other materials provided with the distribution.
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| 14 | * - The name of the author may not be used to endorse or promote products
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| 15 | * derived from this software without specific prior written permission.
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| 16 | *
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 27 | */
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| 28 |
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[cc73a8a1] | 29 | /** @addtogroup genericproc
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[b45c443] | 30 | * @{
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| 31 | */
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| 32 |
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[9179d0a] | 33 | /**
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[b45c443] | 34 | * @file
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[da1bafb] | 35 | * @brief Scheduler and load balancing.
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[9179d0a] | 36 | *
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[cf26ba9] | 37 | * This file contains the scheduler and kcpulb kernel thread which
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[9179d0a] | 38 | * performs load-balancing of per-CPU run queues.
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| 39 | */
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| 40 |
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[f761f1eb] | 41 | #include <proc/scheduler.h>
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| 42 | #include <proc/thread.h>
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| 43 | #include <proc/task.h>
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[32ff43e6] | 44 | #include <mm/frame.h>
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| 45 | #include <mm/page.h>
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[20d50a1] | 46 | #include <mm/as.h>
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[b3f8fb7] | 47 | #include <time/timeout.h>
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[fe19611] | 48 | #include <time/delay.h>
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[32ff43e6] | 49 | #include <arch/asm.h>
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| 50 | #include <arch/faddr.h>
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[cce6acf] | 51 | #include <arch/cycle.h>
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[23684b7] | 52 | #include <atomic.h>
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[32ff43e6] | 53 | #include <synch/spinlock.h>
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[8a64e81e] | 54 | #include <synch/workqueue.h>
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[181a746] | 55 | #include <synch/rcu.h>
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[f761f1eb] | 56 | #include <config.h>
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| 57 | #include <context.h>
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[b3f8fb7] | 58 | #include <fpu_context.h>
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[f761f1eb] | 59 | #include <func.h>
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| 60 | #include <arch.h>
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[5c9a08b] | 61 | #include <adt/list.h>
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[02a99d2] | 62 | #include <panic.h>
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[32ff43e6] | 63 | #include <cpu.h>
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[9c0a9b3] | 64 | #include <print.h>
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[623ba26c] | 65 | #include <debug.h>
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[df58e44] | 66 | #include <stacktrace.h>
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[1066041] | 67 | #include <cpu.h>
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[9c0a9b3] | 68 |
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[7d6ec87] | 69 | static void scheduler_separated_stack(void);
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| 70 |
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[da1bafb] | 71 | atomic_t nrdy; /**< Number of ready threads in the system. */
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[f761f1eb] | 72 |
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[39cea6a] | 73 | /** Carry out actions before new task runs. */
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[4e7d3dd] | 74 | static void before_task_runs(void)
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[39cea6a] | 75 | {
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| 76 | before_task_runs_arch();
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| 77 | }
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| 78 |
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[97f1691] | 79 | /** Take actions before new thread runs.
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[70527f1] | 80 | *
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[b60a22c] | 81 | * Perform actions that need to be
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| 82 | * taken before the newly selected
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[df58e44] | 83 | * thread is passed control.
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[70527f1] | 84 | *
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[a3eeceb6] | 85 | * THREAD->lock is locked on entry
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| 86 | *
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[70527f1] | 87 | */
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[4e7d3dd] | 88 | static void before_thread_runs(void)
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[0ca6faa] | 89 | {
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[b49f4ae] | 90 | before_thread_runs_arch();
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[181a746] | 91 | rcu_before_thread_runs();
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[4e7d3dd] | 92 |
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[f76fed4] | 93 | #ifdef CONFIG_FPU_LAZY
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[df58e44] | 94 | if (THREAD == CPU->fpu_owner)
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[b49f4ae] | 95 | fpu_enable();
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| 96 | else
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[da1bafb] | 97 | fpu_disable();
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[f76fed4] | 98 | #else
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[b49f4ae] | 99 | fpu_enable();
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| 100 | if (THREAD->fpu_context_exists)
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[f76fed4] | 101 | fpu_context_restore(THREAD->saved_fpu_context);
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[b49f4ae] | 102 | else {
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[f76fed4] | 103 | fpu_init();
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[6eef3c4] | 104 | THREAD->fpu_context_exists = true;
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[b49f4ae] | 105 | }
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[f76fed4] | 106 | #endif
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[df58e44] | 107 |
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[5b7a107] | 108 | #ifdef CONFIG_UDEBUG
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[df58e44] | 109 | if (THREAD->btrace) {
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| 110 | istate_t *istate = THREAD->udebug.uspace_state;
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| 111 | if (istate != NULL) {
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| 112 | printf("Thread %" PRIu64 " stack trace:\n", THREAD->tid);
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| 113 | stack_trace_istate(istate);
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| 114 | }
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| 115 |
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| 116 | THREAD->btrace = false;
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| 117 | }
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[5b7a107] | 118 | #endif
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[0ca6faa] | 119 | }
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| 120 |
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[7d6ec87] | 121 | /** Take actions after THREAD had run.
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[97f1691] | 122 | *
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| 123 | * Perform actions that need to be
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| 124 | * taken after the running thread
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[7d6ec87] | 125 | * had been preempted by the scheduler.
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[97f1691] | 126 | *
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| 127 | * THREAD->lock is locked on entry
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| 128 | *
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| 129 | */
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[4e7d3dd] | 130 | static void after_thread_ran(void)
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[97f1691] | 131 | {
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[8a64e81e] | 132 | workq_after_thread_ran();
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[181a746] | 133 | rcu_after_thread_ran();
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[97f1691] | 134 | after_thread_ran_arch();
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| 135 | }
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| 136 |
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[5f85c91] | 137 | #ifdef CONFIG_FPU_LAZY
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[b49f4ae] | 138 | void scheduler_fpu_lazy_request(void)
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| 139 | {
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[09c18f78] | 140 | restart:
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[b49f4ae] | 141 | fpu_enable();
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[da1bafb] | 142 | irq_spinlock_lock(&CPU->lock, false);
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| 143 |
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[a3eeceb6] | 144 | /* Save old context */
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[da1bafb] | 145 | if (CPU->fpu_owner != NULL) {
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| 146 | irq_spinlock_lock(&CPU->fpu_owner->lock, false);
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[f76fed4] | 147 | fpu_context_save(CPU->fpu_owner->saved_fpu_context);
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[da1bafb] | 148 |
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| 149 | /* Don't prevent migration */
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[6eef3c4] | 150 | CPU->fpu_owner->fpu_context_engaged = false;
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[da1bafb] | 151 | irq_spinlock_unlock(&CPU->fpu_owner->lock, false);
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[09c18f78] | 152 | CPU->fpu_owner = NULL;
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[b49f4ae] | 153 | }
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[da1bafb] | 154 |
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| 155 | irq_spinlock_lock(&THREAD->lock, false);
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[7d6ec87] | 156 | if (THREAD->fpu_context_exists) {
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[f76fed4] | 157 | fpu_context_restore(THREAD->saved_fpu_context);
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[7d6ec87] | 158 | } else {
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[f76fed4] | 159 | /* Allocate FPU context */
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| 160 | if (!THREAD->saved_fpu_context) {
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| 161 | /* Might sleep */
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[da1bafb] | 162 | irq_spinlock_unlock(&THREAD->lock, false);
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| 163 | irq_spinlock_unlock(&CPU->lock, false);
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[4e33b6b] | 164 | THREAD->saved_fpu_context =
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[4184e76] | 165 | (fpu_context_t *) slab_alloc(fpu_context_slab, 0);
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[da1bafb] | 166 |
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[09c18f78] | 167 | /* We may have switched CPUs during slab_alloc */
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[da1bafb] | 168 | goto restart;
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[f76fed4] | 169 | }
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| 170 | fpu_init();
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[6eef3c4] | 171 | THREAD->fpu_context_exists = true;
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[b49f4ae] | 172 | }
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[da1bafb] | 173 |
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[6eabb6e6] | 174 | CPU->fpu_owner = THREAD;
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[6eef3c4] | 175 | THREAD->fpu_context_engaged = true;
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[da1bafb] | 176 | irq_spinlock_unlock(&THREAD->lock, false);
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| 177 |
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| 178 | irq_spinlock_unlock(&CPU->lock, false);
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[b49f4ae] | 179 | }
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[da1bafb] | 180 | #endif /* CONFIG_FPU_LAZY */
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[0ca6faa] | 181 |
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[70527f1] | 182 | /** Initialize scheduler
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| 183 | *
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| 184 | * Initialize kernel scheduler.
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| 185 | *
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| 186 | */
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[f761f1eb] | 187 | void scheduler_init(void)
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| 188 | {
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| 189 | }
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| 190 |
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[70527f1] | 191 | /** Get thread to be scheduled
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| 192 | *
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| 193 | * Get the optimal thread to be scheduled
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[d1a184f] | 194 | * according to thread accounting and scheduler
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[70527f1] | 195 | * policy.
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| 196 | *
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| 197 | * @return Thread to be scheduled.
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| 198 | *
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| 199 | */
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[e507afa] | 200 | static thread_t *find_best_thread(void)
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[f761f1eb] | 201 | {
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[623ba26c] | 202 | ASSERT(CPU != NULL);
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[da1bafb] | 203 |
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[f761f1eb] | 204 | loop:
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| 205 |
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[248fc1a] | 206 | if (atomic_get(&CPU->nrdy) == 0) {
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[f761f1eb] | 207 | /*
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| 208 | * For there was nothing to run, the CPU goes to sleep
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| 209 | * until a hardware interrupt or an IPI comes.
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| 210 | * This improves energy saving and hyperthreading.
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| 211 | */
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[da1bafb] | 212 | irq_spinlock_lock(&CPU->lock, false);
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| 213 | CPU->idle = true;
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| 214 | irq_spinlock_unlock(&CPU->lock, false);
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| 215 | interrupts_enable();
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[d0c82c5] | 216 |
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[da1bafb] | 217 | /*
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[328e0d3] | 218 | * An interrupt might occur right now and wake up a thread.
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| 219 | * In such case, the CPU will continue to go to sleep
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| 220 | * even though there is a runnable thread.
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| 221 | */
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[da1bafb] | 222 | cpu_sleep();
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| 223 | interrupts_disable();
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| 224 | goto loop;
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[f761f1eb] | 225 | }
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[181a746] | 226 |
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| 227 | ASSERT(!CPU->idle);
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[d896525] | 228 |
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[da1bafb] | 229 | unsigned int i;
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[ea63704] | 230 | for (i = 0; i < RQ_COUNT; i++) {
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[da1bafb] | 231 | irq_spinlock_lock(&(CPU->rq[i].lock), false);
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| 232 | if (CPU->rq[i].n == 0) {
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[f761f1eb] | 233 | /*
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| 234 | * If this queue is empty, try a lower-priority queue.
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| 235 | */
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[da1bafb] | 236 | irq_spinlock_unlock(&(CPU->rq[i].lock), false);
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[f761f1eb] | 237 | continue;
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| 238 | }
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[da1bafb] | 239 |
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[248fc1a] | 240 | atomic_dec(&CPU->nrdy);
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[59e07c91] | 241 | atomic_dec(&nrdy);
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[da1bafb] | 242 | CPU->rq[i].n--;
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| 243 |
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[f761f1eb] | 244 | /*
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| 245 | * Take the first thread from the queue.
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| 246 | */
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[55b77d9] | 247 | thread_t *thread = list_get_instance(
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| 248 | list_first(&CPU->rq[i].rq), thread_t, rq_link);
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[da1bafb] | 249 | list_remove(&thread->rq_link);
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| 250 |
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| 251 | irq_spinlock_pass(&(CPU->rq[i].lock), &thread->lock);
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| 252 |
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| 253 | thread->cpu = CPU;
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| 254 | thread->ticks = us2ticks((i + 1) * 10000);
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| 255 | thread->priority = i; /* Correct rq index */
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| 256 |
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[f761f1eb] | 257 | /*
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[6eef3c4] | 258 | * Clear the stolen flag so that it can be migrated
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[32fffef0] | 259 | * when load balancing needs emerge.
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[f761f1eb] | 260 | */
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[6eef3c4] | 261 | thread->stolen = false;
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[da1bafb] | 262 | irq_spinlock_unlock(&thread->lock, false);
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| 263 |
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| 264 | return thread;
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[f761f1eb] | 265 | }
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[da1bafb] | 266 |
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[f761f1eb] | 267 | goto loop;
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| 268 | }
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| 269 |
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[70527f1] | 270 | /** Prevent rq starvation
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| 271 | *
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| 272 | * Prevent low priority threads from starving in rq's.
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| 273 | *
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| 274 | * When the function decides to relink rq's, it reconnects
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| 275 | * respective pointers so that in result threads with 'pri'
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[abbc16e] | 276 | * greater or equal start are moved to a higher-priority queue.
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[70527f1] | 277 | *
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| 278 | * @param start Threshold priority.
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| 279 | *
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[f761f1eb] | 280 | */
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[e16e036a] | 281 | static void relink_rq(int start)
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[f761f1eb] | 282 | {
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[55b77d9] | 283 | list_t list;
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[da1bafb] | 284 |
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[55b77d9] | 285 | list_initialize(&list);
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[da1bafb] | 286 | irq_spinlock_lock(&CPU->lock, false);
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| 287 |
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[43114c5] | 288 | if (CPU->needs_relink > NEEDS_RELINK_MAX) {
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[da1bafb] | 289 | int i;
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[4e33b6b] | 290 | for (i = start; i < RQ_COUNT - 1; i++) {
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[da1bafb] | 291 | /* Remember and empty rq[i + 1] */
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| 292 |
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| 293 | irq_spinlock_lock(&CPU->rq[i + 1].lock, false);
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[55b77d9] | 294 | list_concat(&list, &CPU->rq[i + 1].rq);
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[da1bafb] | 295 | size_t n = CPU->rq[i + 1].n;
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| 296 | CPU->rq[i + 1].n = 0;
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| 297 | irq_spinlock_unlock(&CPU->rq[i + 1].lock, false);
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| 298 |
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| 299 | /* Append rq[i + 1] to rq[i] */
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| 300 |
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| 301 | irq_spinlock_lock(&CPU->rq[i].lock, false);
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[55b77d9] | 302 | list_concat(&CPU->rq[i].rq, &list);
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[da1bafb] | 303 | CPU->rq[i].n += n;
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| 304 | irq_spinlock_unlock(&CPU->rq[i].lock, false);
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[f761f1eb] | 305 | }
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[da1bafb] | 306 |
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[43114c5] | 307 | CPU->needs_relink = 0;
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[f761f1eb] | 308 | }
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[da1bafb] | 309 |
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| 310 | irq_spinlock_unlock(&CPU->lock, false);
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[f761f1eb] | 311 | }
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| 312 |
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[7d6ec87] | 313 | /** The scheduler
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| 314 | *
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| 315 | * The thread scheduling procedure.
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| 316 | * Passes control directly to
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| 317 | * scheduler_separated_stack().
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| 318 | *
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| 319 | */
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| 320 | void scheduler(void)
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| 321 | {
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| 322 | volatile ipl_t ipl;
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[da1bafb] | 323 |
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[7d6ec87] | 324 | ASSERT(CPU != NULL);
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[da1bafb] | 325 |
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[7d6ec87] | 326 | ipl = interrupts_disable();
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[da1bafb] | 327 |
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[7d6ec87] | 328 | if (atomic_get(&haltstate))
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| 329 | halt();
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[8965838e] | 330 |
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[7d6ec87] | 331 | if (THREAD) {
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[da1bafb] | 332 | irq_spinlock_lock(&THREAD->lock, false);
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[cce6acf] | 333 |
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[1ba37fa] | 334 | /* Update thread kernel accounting */
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[a2a00e8] | 335 | THREAD->kcycles += get_cycle() - THREAD->last_cycle;
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[cce6acf] | 336 |
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[f76fed4] | 337 | #ifndef CONFIG_FPU_LAZY
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| 338 | fpu_context_save(THREAD->saved_fpu_context);
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| 339 | #endif
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[7d6ec87] | 340 | if (!context_save(&THREAD->saved_context)) {
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| 341 | /*
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| 342 | * This is the place where threads leave scheduler();
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| 343 | */
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[cce6acf] | 344 |
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| 345 | /* Save current CPU cycle */
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| 346 | THREAD->last_cycle = get_cycle();
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| 347 |
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[da1bafb] | 348 | irq_spinlock_unlock(&THREAD->lock, false);
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[7d6ec87] | 349 | interrupts_restore(THREAD->saved_context.ipl);
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[8965838e] | 350 |
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[7d6ec87] | 351 | return;
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| 352 | }
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[da1bafb] | 353 |
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[7d6ec87] | 354 | /*
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[4e33b6b] | 355 | * Interrupt priority level of preempted thread is recorded
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| 356 | * here to facilitate scheduler() invocations from
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[da1bafb] | 357 | * interrupts_disable()'d code (e.g. waitq_sleep_timeout()).
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| 358 | *
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[7d6ec87] | 359 | */
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| 360 | THREAD->saved_context.ipl = ipl;
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| 361 | }
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[da1bafb] | 362 |
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[7d6ec87] | 363 | /*
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[b4dc35a] | 364 | * Through the 'THE' structure, we keep track of THREAD, TASK, CPU, AS
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[7d6ec87] | 365 | * and preemption counter. At this point THE could be coming either
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| 366 | * from THREAD's or CPU's stack.
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[da1bafb] | 367 | *
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[7d6ec87] | 368 | */
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| 369 | the_copy(THE, (the_t *) CPU->stack);
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[da1bafb] | 370 |
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[7d6ec87] | 371 | /*
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| 372 | * We may not keep the old stack.
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| 373 | * Reason: If we kept the old stack and got blocked, for instance, in
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| 374 | * find_best_thread(), the old thread could get rescheduled by another
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| 375 | * CPU and overwrite the part of its own stack that was also used by
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| 376 | * the scheduler on this CPU.
|
---|
| 377 | *
|
---|
| 378 | * Moreover, we have to bypass the compiler-generated POP sequence
|
---|
| 379 | * which is fooled by SP being set to the very top of the stack.
|
---|
| 380 | * Therefore the scheduler() function continues in
|
---|
| 381 | * scheduler_separated_stack().
|
---|
[da1bafb] | 382 | *
|
---|
[7d6ec87] | 383 | */
|
---|
| 384 | context_save(&CPU->saved_context);
|
---|
[32fffef0] | 385 | context_set(&CPU->saved_context, FADDR(scheduler_separated_stack),
|
---|
[26aafe8] | 386 | (uintptr_t) CPU->stack, STACK_SIZE);
|
---|
[7d6ec87] | 387 | context_restore(&CPU->saved_context);
|
---|
[da1bafb] | 388 |
|
---|
| 389 | /* Not reached */
|
---|
[7d6ec87] | 390 | }
|
---|
[70527f1] | 391 |
|
---|
| 392 | /** Scheduler stack switch wrapper
|
---|
| 393 | *
|
---|
| 394 | * Second part of the scheduler() function
|
---|
| 395 | * using new stack. Handling the actual context
|
---|
| 396 | * switch to a new thread.
|
---|
| 397 | *
|
---|
| 398 | */
|
---|
[7d6ec87] | 399 | void scheduler_separated_stack(void)
|
---|
[f761f1eb] | 400 | {
|
---|
[31d8e10] | 401 | DEADLOCK_PROBE_INIT(p_joinwq);
|
---|
[481d4751] | 402 | task_t *old_task = TASK;
|
---|
| 403 | as_t *old_as = AS;
|
---|
[da1bafb] | 404 |
|
---|
[d0c82c5] | 405 | ASSERT((!THREAD) || (irq_spinlock_locked(&THREAD->lock)));
|
---|
[623ba26c] | 406 | ASSERT(CPU != NULL);
|
---|
[b23c88e] | 407 | ASSERT(interrupts_disabled());
|
---|
[8965838e] | 408 |
|
---|
[481d4751] | 409 | /*
|
---|
| 410 | * Hold the current task and the address space to prevent their
|
---|
| 411 | * possible destruction should thread_destroy() be called on this or any
|
---|
| 412 | * other processor while the scheduler is still using them.
|
---|
| 413 | */
|
---|
| 414 | if (old_task)
|
---|
| 415 | task_hold(old_task);
|
---|
[da1bafb] | 416 |
|
---|
[481d4751] | 417 | if (old_as)
|
---|
| 418 | as_hold(old_as);
|
---|
[da1bafb] | 419 |
|
---|
[43114c5] | 420 | if (THREAD) {
|
---|
[da1bafb] | 421 | /* Must be run after the switch to scheduler stack */
|
---|
[97f1691] | 422 | after_thread_ran();
|
---|
[da1bafb] | 423 |
|
---|
[43114c5] | 424 | switch (THREAD->state) {
|
---|
[06e1e95] | 425 | case Running:
|
---|
[da1bafb] | 426 | irq_spinlock_unlock(&THREAD->lock, false);
|
---|
[76cec1e] | 427 | thread_ready(THREAD);
|
---|
| 428 | break;
|
---|
[da1bafb] | 429 |
|
---|
[06e1e95] | 430 | case Exiting:
|
---|
[181a746] | 431 | rcu_thread_exiting();
|
---|
[fe19611] | 432 | repeat:
|
---|
[def5207] | 433 | if (THREAD->detached) {
|
---|
[da1bafb] | 434 | thread_destroy(THREAD, false);
|
---|
[fe19611] | 435 | } else {
|
---|
| 436 | /*
|
---|
[4e33b6b] | 437 | * The thread structure is kept allocated until
|
---|
| 438 | * somebody calls thread_detach() on it.
|
---|
[fe19611] | 439 | */
|
---|
[da1bafb] | 440 | if (!irq_spinlock_trylock(&THREAD->join_wq.lock)) {
|
---|
[fe19611] | 441 | /*
|
---|
| 442 | * Avoid deadlock.
|
---|
| 443 | */
|
---|
[da1bafb] | 444 | irq_spinlock_unlock(&THREAD->lock, false);
|
---|
[ea7890e7] | 445 | delay(HZ);
|
---|
[da1bafb] | 446 | irq_spinlock_lock(&THREAD->lock, false);
|
---|
[31d8e10] | 447 | DEADLOCK_PROBE(p_joinwq,
|
---|
| 448 | DEADLOCK_THRESHOLD);
|
---|
[fe19611] | 449 | goto repeat;
|
---|
| 450 | }
|
---|
[5c8ba05] | 451 | _waitq_wakeup_unsafe(&THREAD->join_wq,
|
---|
| 452 | WAKEUP_FIRST);
|
---|
[da1bafb] | 453 | irq_spinlock_unlock(&THREAD->join_wq.lock, false);
|
---|
[fe19611] | 454 |
|
---|
[48d14222] | 455 | THREAD->state = Lingering;
|
---|
[da1bafb] | 456 | irq_spinlock_unlock(&THREAD->lock, false);
|
---|
[fe19611] | 457 | }
|
---|
[76cec1e] | 458 | break;
|
---|
[266294a9] | 459 |
|
---|
[06e1e95] | 460 | case Sleeping:
|
---|
[76cec1e] | 461 | /*
|
---|
| 462 | * Prefer the thread after it's woken up.
|
---|
| 463 | */
|
---|
[22f7769] | 464 | THREAD->priority = -1;
|
---|
[da1bafb] | 465 |
|
---|
[76cec1e] | 466 | /*
|
---|
[4e33b6b] | 467 | * We need to release wq->lock which we locked in
|
---|
| 468 | * waitq_sleep(). Address of wq->lock is kept in
|
---|
| 469 | * THREAD->sleep_queue.
|
---|
[76cec1e] | 470 | */
|
---|
[da1bafb] | 471 | irq_spinlock_unlock(&THREAD->sleep_queue->lock, false);
|
---|
| 472 |
|
---|
| 473 | irq_spinlock_unlock(&THREAD->lock, false);
|
---|
[76cec1e] | 474 | break;
|
---|
[da1bafb] | 475 |
|
---|
[06e1e95] | 476 | default:
|
---|
[76cec1e] | 477 | /*
|
---|
| 478 | * Entering state is unexpected.
|
---|
| 479 | */
|
---|
[f651e80] | 480 | panic("tid%" PRIu64 ": unexpected state %s.",
|
---|
[1e9d0e3] | 481 | THREAD->tid, thread_states[THREAD->state]);
|
---|
[76cec1e] | 482 | break;
|
---|
[f761f1eb] | 483 | }
|
---|
[da1bafb] | 484 |
|
---|
[43114c5] | 485 | THREAD = NULL;
|
---|
[f761f1eb] | 486 | }
|
---|
[da1bafb] | 487 |
|
---|
[43114c5] | 488 | THREAD = find_best_thread();
|
---|
[f761f1eb] | 489 |
|
---|
[da1bafb] | 490 | irq_spinlock_lock(&THREAD->lock, false);
|
---|
| 491 | int priority = THREAD->priority;
|
---|
| 492 | irq_spinlock_unlock(&THREAD->lock, false);
|
---|
| 493 |
|
---|
| 494 | relink_rq(priority);
|
---|
| 495 |
|
---|
[f761f1eb] | 496 | /*
|
---|
[4e7d3dd] | 497 | * If both the old and the new task are the same,
|
---|
| 498 | * lots of work is avoided.
|
---|
[f761f1eb] | 499 | */
|
---|
[43114c5] | 500 | if (TASK != THREAD->task) {
|
---|
[481d4751] | 501 | as_t *new_as = THREAD->task->as;
|
---|
[f761f1eb] | 502 |
|
---|
| 503 | /*
|
---|
[4e7d3dd] | 504 | * Note that it is possible for two tasks
|
---|
| 505 | * to share one address space.
|
---|
[f761f1eb] | 506 | */
|
---|
[481d4751] | 507 | if (old_as != new_as) {
|
---|
[f761f1eb] | 508 | /*
|
---|
[20d50a1] | 509 | * Both tasks and address spaces are different.
|
---|
[f761f1eb] | 510 | * Replace the old one with the new one.
|
---|
| 511 | */
|
---|
[481d4751] | 512 | as_switch(old_as, new_as);
|
---|
[f761f1eb] | 513 | }
|
---|
[da1bafb] | 514 |
|
---|
[f76fed4] | 515 | TASK = THREAD->task;
|
---|
[39cea6a] | 516 | before_task_runs();
|
---|
[f761f1eb] | 517 | }
|
---|
[da1bafb] | 518 |
|
---|
[481d4751] | 519 | if (old_task)
|
---|
| 520 | task_release(old_task);
|
---|
[da1bafb] | 521 |
|
---|
[481d4751] | 522 | if (old_as)
|
---|
| 523 | as_release(old_as);
|
---|
| 524 |
|
---|
[da1bafb] | 525 | irq_spinlock_lock(&THREAD->lock, false);
|
---|
[43114c5] | 526 | THREAD->state = Running;
|
---|
[da1bafb] | 527 |
|
---|
[f76fed4] | 528 | #ifdef SCHEDULER_VERBOSE
|
---|
[1e9d0e3] | 529 | printf("cpu%u: tid %" PRIu64 " (priority=%d, ticks=%" PRIu64
|
---|
| 530 | ", nrdy=%ld)\n", CPU->id, THREAD->tid, THREAD->priority,
|
---|
| 531 | THREAD->ticks, atomic_get(&CPU->nrdy));
|
---|
[da1bafb] | 532 | #endif
|
---|
| 533 |
|
---|
[97f1691] | 534 | /*
|
---|
| 535 | * Some architectures provide late kernel PA2KA(identity)
|
---|
| 536 | * mapping in a page fault handler. However, the page fault
|
---|
| 537 | * handler uses the kernel stack of the running thread and
|
---|
| 538 | * therefore cannot be used to map it. The kernel stack, if
|
---|
| 539 | * necessary, is to be mapped in before_thread_runs(). This
|
---|
| 540 | * function must be executed before the switch to the new stack.
|
---|
| 541 | */
|
---|
| 542 | before_thread_runs();
|
---|
[da1bafb] | 543 |
|
---|
[3e1607f] | 544 | /*
|
---|
[4e33b6b] | 545 | * Copy the knowledge of CPU, TASK, THREAD and preemption counter to
|
---|
| 546 | * thread's stack.
|
---|
[3e1607f] | 547 | */
|
---|
[bcdd9aa] | 548 | the_copy(THE, (the_t *) THREAD->kstack);
|
---|
| 549 |
|
---|
[43114c5] | 550 | context_restore(&THREAD->saved_context);
|
---|
[da1bafb] | 551 |
|
---|
| 552 | /* Not reached */
|
---|
[f761f1eb] | 553 | }
|
---|
| 554 |
|
---|
[5f85c91] | 555 | #ifdef CONFIG_SMP
|
---|
[70527f1] | 556 | /** Load balancing thread
|
---|
| 557 | *
|
---|
| 558 | * SMP load balancing thread, supervising thread supplies
|
---|
| 559 | * for the CPU it's wired to.
|
---|
| 560 | *
|
---|
| 561 | * @param arg Generic thread argument (unused).
|
---|
| 562 | *
|
---|
[f761f1eb] | 563 | */
|
---|
| 564 | void kcpulb(void *arg)
|
---|
| 565 | {
|
---|
[228666c] | 566 | atomic_count_t average;
|
---|
[da1bafb] | 567 | atomic_count_t rdy;
|
---|
| 568 |
|
---|
[2cb5e64] | 569 | /*
|
---|
| 570 | * Detach kcpulb as nobody will call thread_join_timeout() on it.
|
---|
| 571 | */
|
---|
| 572 | thread_detach(THREAD);
|
---|
| 573 |
|
---|
[f761f1eb] | 574 | loop:
|
---|
| 575 | /*
|
---|
[3260ada] | 576 | * Work in 1s intervals.
|
---|
[f761f1eb] | 577 | */
|
---|
[3260ada] | 578 | thread_sleep(1);
|
---|
[da1bafb] | 579 |
|
---|
[f761f1eb] | 580 | not_satisfied:
|
---|
| 581 | /*
|
---|
| 582 | * Calculate the number of threads that will be migrated/stolen from
|
---|
| 583 | * other CPU's. Note that situation can have changed between two
|
---|
| 584 | * passes. Each time get the most up to date counts.
|
---|
[da1bafb] | 585 | *
|
---|
[f761f1eb] | 586 | */
|
---|
[444ec64] | 587 | average = atomic_get(&nrdy) / config.cpu_active + 1;
|
---|
[da1bafb] | 588 | rdy = atomic_get(&CPU->nrdy);
|
---|
| 589 |
|
---|
| 590 | if (average <= rdy)
|
---|
[f761f1eb] | 591 | goto satisfied;
|
---|
[da1bafb] | 592 |
|
---|
| 593 | atomic_count_t count = average - rdy;
|
---|
| 594 |
|
---|
[f761f1eb] | 595 | /*
|
---|
[4e33b6b] | 596 | * Searching least priority queues on all CPU's first and most priority
|
---|
| 597 | * queues on all CPU's last.
|
---|
[f761f1eb] | 598 | */
|
---|
[da1bafb] | 599 | size_t acpu;
|
---|
| 600 | size_t acpu_bias = 0;
|
---|
| 601 | int rq;
|
---|
| 602 |
|
---|
| 603 | for (rq = RQ_COUNT - 1; rq >= 0; rq--) {
|
---|
| 604 | for (acpu = 0; acpu < config.cpu_active; acpu++) {
|
---|
| 605 | cpu_t *cpu = &cpus[(acpu + acpu_bias) % config.cpu_active];
|
---|
| 606 |
|
---|
[f761f1eb] | 607 | /*
|
---|
| 608 | * Not interested in ourselves.
|
---|
[4e33b6b] | 609 | * Doesn't require interrupt disabling for kcpulb has
|
---|
| 610 | * THREAD_FLAG_WIRED.
|
---|
[da1bafb] | 611 | *
|
---|
[f761f1eb] | 612 | */
|
---|
[43114c5] | 613 | if (CPU == cpu)
|
---|
[248fc1a] | 614 | continue;
|
---|
[da1bafb] | 615 |
|
---|
[248fc1a] | 616 | if (atomic_get(&cpu->nrdy) <= average)
|
---|
| 617 | continue;
|
---|
[da1bafb] | 618 |
|
---|
| 619 | irq_spinlock_lock(&(cpu->rq[rq].lock), true);
|
---|
| 620 | if (cpu->rq[rq].n == 0) {
|
---|
| 621 | irq_spinlock_unlock(&(cpu->rq[rq].lock), true);
|
---|
[f761f1eb] | 622 | continue;
|
---|
| 623 | }
|
---|
[da1bafb] | 624 |
|
---|
| 625 | thread_t *thread = NULL;
|
---|
| 626 |
|
---|
| 627 | /* Search rq from the back */
|
---|
[55b77d9] | 628 | link_t *link = cpu->rq[rq].rq.head.prev;
|
---|
[da1bafb] | 629 |
|
---|
[55b77d9] | 630 | while (link != &(cpu->rq[rq].rq.head)) {
|
---|
[43ac0cc] | 631 | thread = (thread_t *) list_get_instance(link,
|
---|
| 632 | thread_t, rq_link);
|
---|
[da1bafb] | 633 |
|
---|
[f761f1eb] | 634 | /*
|
---|
[43ac0cc] | 635 | * Do not steal CPU-wired threads, threads
|
---|
| 636 | * already stolen, threads for which migration
|
---|
| 637 | * was temporarily disabled or threads whose
|
---|
| 638 | * FPU context is still in the CPU.
|
---|
[6a27d63] | 639 | */
|
---|
[da1bafb] | 640 | irq_spinlock_lock(&thread->lock, false);
|
---|
| 641 |
|
---|
[6eef3c4] | 642 | if ((!thread->wired) && (!thread->stolen) &&
|
---|
| 643 | (!thread->nomigrate) &&
|
---|
| 644 | (!thread->fpu_context_engaged)) {
|
---|
[f761f1eb] | 645 | /*
|
---|
[da1bafb] | 646 | * Remove thread from ready queue.
|
---|
[f761f1eb] | 647 | */
|
---|
[43ac0cc] | 648 | irq_spinlock_unlock(&thread->lock,
|
---|
| 649 | false);
|
---|
[f761f1eb] | 650 |
|
---|
[248fc1a] | 651 | atomic_dec(&cpu->nrdy);
|
---|
[59e07c91] | 652 | atomic_dec(&nrdy);
|
---|
[da1bafb] | 653 |
|
---|
| 654 | cpu->rq[rq].n--;
|
---|
| 655 | list_remove(&thread->rq_link);
|
---|
| 656 |
|
---|
[f761f1eb] | 657 | break;
|
---|
| 658 | }
|
---|
[da1bafb] | 659 |
|
---|
| 660 | irq_spinlock_unlock(&thread->lock, false);
|
---|
| 661 |
|
---|
| 662 | link = link->prev;
|
---|
| 663 | thread = NULL;
|
---|
[f761f1eb] | 664 | }
|
---|
[da1bafb] | 665 |
|
---|
| 666 | if (thread) {
|
---|
[f761f1eb] | 667 | /*
|
---|
[da1bafb] | 668 | * Ready thread on local CPU
|
---|
[f761f1eb] | 669 | */
|
---|
[da1bafb] | 670 |
|
---|
[43ac0cc] | 671 | irq_spinlock_pass(&(cpu->rq[rq].lock),
|
---|
| 672 | &thread->lock);
|
---|
[da1bafb] | 673 |
|
---|
[f76fed4] | 674 | #ifdef KCPULB_VERBOSE
|
---|
[1e9d0e3] | 675 | printf("kcpulb%u: TID %" PRIu64 " -> cpu%u, "
|
---|
| 676 | "nrdy=%ld, avg=%ld\n", CPU->id, t->tid,
|
---|
| 677 | CPU->id, atomic_get(&CPU->nrdy),
|
---|
[6f4495f5] | 678 | atomic_get(&nrdy) / config.cpu_active);
|
---|
[f76fed4] | 679 | #endif
|
---|
[da1bafb] | 680 |
|
---|
[6eef3c4] | 681 | thread->stolen = true;
|
---|
[da1bafb] | 682 | thread->state = Entering;
|
---|
| 683 |
|
---|
| 684 | irq_spinlock_unlock(&thread->lock, true);
|
---|
| 685 | thread_ready(thread);
|
---|
| 686 |
|
---|
[f761f1eb] | 687 | if (--count == 0)
|
---|
| 688 | goto satisfied;
|
---|
[da1bafb] | 689 |
|
---|
[f761f1eb] | 690 | /*
|
---|
[4e33b6b] | 691 | * We are not satisfied yet, focus on another
|
---|
| 692 | * CPU next time.
|
---|
[da1bafb] | 693 | *
|
---|
[f761f1eb] | 694 | */
|
---|
[da1bafb] | 695 | acpu_bias++;
|
---|
[f761f1eb] | 696 |
|
---|
| 697 | continue;
|
---|
[da1bafb] | 698 | } else
|
---|
| 699 | irq_spinlock_unlock(&(cpu->rq[rq].lock), true);
|
---|
| 700 |
|
---|
[f761f1eb] | 701 | }
|
---|
| 702 | }
|
---|
[da1bafb] | 703 |
|
---|
[248fc1a] | 704 | if (atomic_get(&CPU->nrdy)) {
|
---|
[f761f1eb] | 705 | /*
|
---|
| 706 | * Be a little bit light-weight and let migrated threads run.
|
---|
[da1bafb] | 707 | *
|
---|
[f761f1eb] | 708 | */
|
---|
| 709 | scheduler();
|
---|
[3260ada] | 710 | } else {
|
---|
[f761f1eb] | 711 | /*
|
---|
| 712 | * We failed to migrate a single thread.
|
---|
[3260ada] | 713 | * Give up this turn.
|
---|
[da1bafb] | 714 | *
|
---|
[f761f1eb] | 715 | */
|
---|
[3260ada] | 716 | goto loop;
|
---|
[f761f1eb] | 717 | }
|
---|
[da1bafb] | 718 |
|
---|
[f761f1eb] | 719 | goto not_satisfied;
|
---|
[da1bafb] | 720 |
|
---|
[f761f1eb] | 721 | satisfied:
|
---|
| 722 | goto loop;
|
---|
| 723 | }
|
---|
[5f85c91] | 724 | #endif /* CONFIG_SMP */
|
---|
[10e16a7] | 725 |
|
---|
[da1bafb] | 726 | /** Print information about threads & scheduler queues
|
---|
| 727 | *
|
---|
| 728 | */
|
---|
[10e16a7] | 729 | void sched_print_list(void)
|
---|
| 730 | {
|
---|
[da1bafb] | 731 | size_t cpu;
|
---|
[4184e76] | 732 | for (cpu = 0; cpu < config.cpu_count; cpu++) {
|
---|
[10e16a7] | 733 | if (!cpus[cpu].active)
|
---|
| 734 | continue;
|
---|
[da1bafb] | 735 |
|
---|
| 736 | irq_spinlock_lock(&cpus[cpu].lock, true);
|
---|
| 737 |
|
---|
[7e752b2] | 738 | printf("cpu%u: address=%p, nrdy=%" PRIua ", needs_relink=%zu\n",
|
---|
[6f4495f5] | 739 | cpus[cpu].id, &cpus[cpu], atomic_get(&cpus[cpu].nrdy),
|
---|
| 740 | cpus[cpu].needs_relink);
|
---|
[10e16a7] | 741 |
|
---|
[da1bafb] | 742 | unsigned int i;
|
---|
[4e33b6b] | 743 | for (i = 0; i < RQ_COUNT; i++) {
|
---|
[da1bafb] | 744 | irq_spinlock_lock(&(cpus[cpu].rq[i].lock), false);
|
---|
| 745 | if (cpus[cpu].rq[i].n == 0) {
|
---|
| 746 | irq_spinlock_unlock(&(cpus[cpu].rq[i].lock), false);
|
---|
[10e16a7] | 747 | continue;
|
---|
| 748 | }
|
---|
[da1bafb] | 749 |
|
---|
[5b86d10] | 750 | printf("\trq[%u]: ", i);
|
---|
[55b77d9] | 751 | list_foreach(cpus[cpu].rq[i].rq, cur) {
|
---|
| 752 | thread_t *thread = list_get_instance(cur,
|
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| 753 | thread_t, rq_link);
|
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[da1bafb] | 754 | printf("%" PRIu64 "(%s) ", thread->tid,
|
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| 755 | thread_states[thread->state]);
|
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[10e16a7] | 756 | }
|
---|
| 757 | printf("\n");
|
---|
[da1bafb] | 758 |
|
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| 759 | irq_spinlock_unlock(&(cpus[cpu].rq[i].lock), false);
|
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[10e16a7] | 760 | }
|
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[da1bafb] | 761 |
|
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| 762 | irq_spinlock_unlock(&cpus[cpu].lock, true);
|
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[10e16a7] | 763 | }
|
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| 764 | }
|
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[b45c443] | 765 |
|
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[cc73a8a1] | 766 | /** @}
|
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[b45c443] | 767 | */
|
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