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1 | jermar | 1 | /* |
2 | * Copyright (C) 2001-2004 Jakub Jermar |
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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 | |||
29 | #include <proc/scheduler.h> |
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30 | #include <proc/thread.h> |
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31 | #include <proc/task.h> |
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32 | #include <mm/frame.h> |
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33 | #include <mm/page.h> |
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34 | #include <arch/asm.h> |
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35 | #include <arch.h> |
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36 | #include <synch/synch.h> |
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37 | #include <synch/spinlock.h> |
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38 | #include <synch/waitq.h> |
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39 | #include <synch/rwlock.h> |
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40 | #include <cpu.h> |
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41 | #include <func.h> |
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42 | #include <context.h> |
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788 | jermar | 43 | #include <adt/list.h> |
1 | jermar | 44 | #include <typedefs.h> |
45 | #include <time/clock.h> |
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788 | jermar | 46 | #include <adt/list.h> |
7 | jermar | 47 | #include <config.h> |
48 | #include <arch/interrupt.h> |
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10 | jermar | 49 | #include <smp/ipi.h> |
76 | jermar | 50 | #include <arch/faddr.h> |
111 | palkovsky | 51 | #include <arch/atomic.h> |
195 | vana | 52 | #include <memstr.h> |
777 | palkovsky | 53 | #include <print.h> |
787 | palkovsky | 54 | #include <mm/slab.h> |
55 | #include <debug.h> |
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1066 | jermar | 56 | #include <main/uinit.h> |
7 | jermar | 57 | |
107 | decky | 58 | char *thread_states[] = {"Invalid", "Running", "Sleeping", "Ready", "Entering", "Exiting"}; /**< Thread states */ |
1 | jermar | 59 | |
623 | jermar | 60 | SPINLOCK_INITIALIZE(threads_lock); /**< Lock protecting threads_head list. For locking rules, see declaration thereof. */ |
624 | jermar | 61 | LIST_INITIALIZE(threads_head); /**< List of all threads. */ |
1 | jermar | 62 | |
623 | jermar | 63 | SPINLOCK_INITIALIZE(tidlock); |
1 | jermar | 64 | __u32 last_tid = 0; |
65 | |||
787 | palkovsky | 66 | static slab_cache_t *thread_slab; |
906 | palkovsky | 67 | #ifdef ARCH_HAS_FPU |
68 | slab_cache_t *fpu_context_slab; |
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69 | #endif |
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107 | decky | 70 | |
787 | palkovsky | 71 | |
107 | decky | 72 | /** Thread wrapper |
73 | * |
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74 | * This wrapper is provided to ensure that every thread |
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1 | jermar | 75 | * makes a call to thread_exit() when its implementing |
76 | * function returns. |
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77 | * |
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413 | jermar | 78 | * interrupts_disable() is assumed. |
107 | decky | 79 | * |
1 | jermar | 80 | */ |
452 | decky | 81 | static void cushion(void) |
1 | jermar | 82 | { |
15 | jermar | 83 | void (*f)(void *) = THREAD->thread_code; |
84 | void *arg = THREAD->thread_arg; |
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1 | jermar | 85 | |
213 | jermar | 86 | /* this is where each thread wakes up after its creation */ |
22 | jermar | 87 | before_thread_runs(); |
88 | |||
15 | jermar | 89 | spinlock_unlock(&THREAD->lock); |
413 | jermar | 90 | interrupts_enable(); |
1 | jermar | 91 | |
92 | f(arg); |
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93 | thread_exit(); |
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94 | /* not reached */ |
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95 | } |
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96 | |||
787 | palkovsky | 97 | /** Initialization and allocation for thread_t structure */ |
98 | static int thr_constructor(void *obj, int kmflags) |
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99 | { |
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100 | thread_t *t = (thread_t *)obj; |
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814 | palkovsky | 101 | pfn_t pfn; |
842 | palkovsky | 102 | int status; |
107 | decky | 103 | |
787 | palkovsky | 104 | spinlock_initialize(&t->lock, "thread_t_lock"); |
105 | link_initialize(&t->rq_link); |
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106 | link_initialize(&t->wq_link); |
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107 | link_initialize(&t->th_link); |
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108 | link_initialize(&t->threads_link); |
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109 | |||
906 | palkovsky | 110 | #ifdef ARCH_HAS_FPU |
111 | # ifdef CONFIG_FPU_LAZY |
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112 | t->saved_fpu_context = NULL; |
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113 | # else |
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114 | t->saved_fpu_context = slab_alloc(fpu_context_slab,kmflags); |
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115 | if (!t->saved_fpu_context) |
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116 | return -1; |
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117 | # endif |
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118 | #endif |
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119 | |||
935 | vana | 120 | pfn = frame_alloc_rc(STACK_FRAMES, FRAME_KA | kmflags,&status); |
906 | palkovsky | 121 | if (status) { |
122 | #ifdef ARCH_HAS_FPU |
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123 | if (t->saved_fpu_context) |
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124 | slab_free(fpu_context_slab,t->saved_fpu_context); |
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125 | #endif |
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842 | palkovsky | 126 | return -1; |
906 | palkovsky | 127 | } |
814 | palkovsky | 128 | t->kstack = (__u8 *)PA2KA(PFN2ADDR(pfn)); |
787 | palkovsky | 129 | |
130 | return 0; |
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131 | } |
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132 | |||
133 | /** Destruction of thread_t object */ |
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134 | static int thr_destructor(void *obj) |
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135 | { |
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136 | thread_t *t = (thread_t *)obj; |
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137 | |||
814 | palkovsky | 138 | frame_free(ADDR2PFN(KA2PA(t->kstack))); |
906 | palkovsky | 139 | #ifdef ARCH_HAS_FPU |
140 | if (t->saved_fpu_context) |
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141 | slab_free(fpu_context_slab,t->saved_fpu_context); |
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142 | #endif |
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787 | palkovsky | 143 | return 1; /* One page freed */ |
144 | } |
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145 | |||
107 | decky | 146 | /** Initialize threads |
147 | * |
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148 | * Initialize kernel threads support. |
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149 | * |
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150 | */ |
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1 | jermar | 151 | void thread_init(void) |
152 | { |
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15 | jermar | 153 | THREAD = NULL; |
625 | palkovsky | 154 | atomic_set(&nrdy,0); |
787 | palkovsky | 155 | thread_slab = slab_cache_create("thread_slab", |
156 | sizeof(thread_t),0, |
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157 | thr_constructor, thr_destructor, 0); |
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906 | palkovsky | 158 | #ifdef ARCH_HAS_FPU |
159 | fpu_context_slab = slab_cache_create("fpu_slab", |
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160 | sizeof(fpu_context_t), |
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161 | FPU_CONTEXT_ALIGN, |
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162 | NULL, NULL, 0); |
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163 | #endif |
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1 | jermar | 164 | } |
165 | |||
107 | decky | 166 | |
167 | /** Make thread ready |
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168 | * |
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169 | * Switch thread t to the ready state. |
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170 | * |
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171 | * @param t Thread to make ready. |
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172 | * |
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173 | */ |
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1 | jermar | 174 | void thread_ready(thread_t *t) |
175 | { |
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176 | cpu_t *cpu; |
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177 | runq_t *r; |
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413 | jermar | 178 | ipl_t ipl; |
625 | palkovsky | 179 | int i, avg; |
1 | jermar | 180 | |
413 | jermar | 181 | ipl = interrupts_disable(); |
1 | jermar | 182 | |
183 | spinlock_lock(&t->lock); |
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184 | |||
413 | jermar | 185 | i = (t->priority < RQ_COUNT -1) ? ++t->priority : t->priority; |
1 | jermar | 186 | |
16 | jermar | 187 | cpu = CPU; |
1 | jermar | 188 | if (t->flags & X_WIRED) { |
189 | cpu = t->cpu; |
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190 | } |
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191 | spinlock_unlock(&t->lock); |
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192 | |||
107 | decky | 193 | /* |
1 | jermar | 194 | * Append t to respective ready queue on respective processor. |
195 | */ |
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196 | r = &cpu->rq[i]; |
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197 | spinlock_lock(&r->lock); |
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198 | list_append(&t->rq_link, &r->rq_head); |
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199 | r->n++; |
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200 | spinlock_unlock(&r->lock); |
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201 | |||
475 | jermar | 202 | atomic_inc(&nrdy); |
625 | palkovsky | 203 | avg = atomic_get(&nrdy) / config.cpu_active; |
783 | palkovsky | 204 | atomic_inc(&cpu->nrdy); |
1 | jermar | 205 | |
413 | jermar | 206 | interrupts_restore(ipl); |
1 | jermar | 207 | } |
208 | |||
107 | decky | 209 | |
787 | palkovsky | 210 | /** Destroy thread memory structure |
211 | * |
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212 | * Detach thread from all queues, cpus etc. and destroy it. |
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213 | * |
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214 | * Assume thread->lock is held!! |
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215 | */ |
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216 | void thread_destroy(thread_t *t) |
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217 | { |
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218 | ASSERT(t->state == Exiting); |
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219 | ASSERT(t->task); |
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220 | ASSERT(t->cpu); |
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221 | |||
222 | spinlock_lock(&t->cpu->lock); |
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223 | if(t->cpu->fpu_owner==t) |
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224 | t->cpu->fpu_owner=NULL; |
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225 | spinlock_unlock(&t->cpu->lock); |
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226 | |||
227 | /* |
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228 | * Detach from the containing task. |
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229 | */ |
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230 | spinlock_lock(&t->task->lock); |
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231 | list_remove(&t->th_link); |
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232 | spinlock_unlock(&t->task->lock); |
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233 | |||
234 | spinlock_unlock(&t->lock); |
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235 | |||
236 | spinlock_lock(&threads_lock); |
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237 | list_remove(&t->threads_link); |
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238 | spinlock_unlock(&threads_lock); |
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239 | |||
240 | slab_free(thread_slab, t); |
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241 | } |
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242 | |||
243 | |||
107 | decky | 244 | /** Create new thread |
245 | * |
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246 | * Create a new thread. |
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247 | * |
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248 | * @param func Thread's implementing function. |
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249 | * @param arg Thread's implementing function argument. |
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250 | * @param task Task to which the thread belongs. |
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251 | * @param flags Thread flags. |
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1062 | jermar | 252 | * @param name Symbolic name. |
107 | decky | 253 | * |
254 | * @return New thread's structure on success, NULL on failure. |
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255 | * |
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256 | */ |
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1062 | jermar | 257 | thread_t *thread_create(void (* func)(void *), void *arg, task_t *task, int flags, char *name) |
1 | jermar | 258 | { |
259 | thread_t *t; |
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822 | palkovsky | 260 | ipl_t ipl; |
261 | |||
787 | palkovsky | 262 | t = (thread_t *) slab_alloc(thread_slab, 0); |
842 | palkovsky | 263 | if (!t) |
264 | return NULL; |
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1 | jermar | 265 | |
822 | palkovsky | 266 | /* Not needed, but good for debugging */ |
267 | memsetb((__address)t->kstack, THREAD_STACK_SIZE, 0); |
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268 | |||
269 | ipl = interrupts_disable(); |
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270 | spinlock_lock(&tidlock); |
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271 | t->tid = ++last_tid; |
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272 | spinlock_unlock(&tidlock); |
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273 | interrupts_restore(ipl); |
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274 | |||
275 | context_save(&t->saved_context); |
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276 | context_set(&t->saved_context, FADDR(cushion), (__address) t->kstack, THREAD_STACK_SIZE); |
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277 | |||
278 | the_initialize((the_t *) t->kstack); |
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279 | |||
280 | ipl = interrupts_disable(); |
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281 | t->saved_context.ipl = interrupts_read(); |
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282 | interrupts_restore(ipl); |
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283 | |||
1066 | jermar | 284 | memcpy(t->name, name, THREAD_NAME_BUFLEN); |
285 | |||
822 | palkovsky | 286 | t->thread_code = func; |
287 | t->thread_arg = arg; |
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288 | t->ticks = -1; |
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289 | t->priority = -1; /* start in rq[0] */ |
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290 | t->cpu = NULL; |
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291 | t->flags = 0; |
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292 | t->state = Entering; |
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293 | t->call_me = NULL; |
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294 | t->call_me_with = NULL; |
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295 | |||
296 | timeout_initialize(&t->sleep_timeout); |
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297 | t->sleep_queue = NULL; |
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298 | t->timeout_pending = 0; |
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299 | |||
300 | t->rwlock_holder_type = RWLOCK_NONE; |
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210 | decky | 301 | |
822 | palkovsky | 302 | t->task = task; |
303 | |||
860 | decky | 304 | t->fpu_context_exists = 0; |
305 | t->fpu_context_engaged = 0; |
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822 | palkovsky | 306 | |
307 | /* |
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308 | * Register this thread in the system-wide list. |
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309 | */ |
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310 | ipl = interrupts_disable(); |
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311 | spinlock_lock(&threads_lock); |
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312 | list_append(&t->threads_link, &threads_head); |
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313 | spinlock_unlock(&threads_lock); |
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314 | |||
315 | /* |
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316 | * Attach to the containing task. |
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317 | */ |
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318 | spinlock_lock(&task->lock); |
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319 | list_append(&t->th_link, &task->th_head); |
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320 | spinlock_unlock(&task->lock); |
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321 | |||
322 | interrupts_restore(ipl); |
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860 | decky | 323 | |
1 | jermar | 324 | return t; |
325 | } |
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326 | |||
107 | decky | 327 | |
328 | /** Make thread exiting |
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329 | * |
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330 | * End current thread execution and switch it to the exiting |
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331 | * state. All pending timeouts are executed. |
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332 | * |
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333 | */ |
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1 | jermar | 334 | void thread_exit(void) |
335 | { |
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413 | jermar | 336 | ipl_t ipl; |
1 | jermar | 337 | |
338 | restart: |
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413 | jermar | 339 | ipl = interrupts_disable(); |
15 | jermar | 340 | spinlock_lock(&THREAD->lock); |
341 | if (THREAD->timeout_pending) { /* busy waiting for timeouts in progress */ |
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342 | spinlock_unlock(&THREAD->lock); |
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413 | jermar | 343 | interrupts_restore(ipl); |
1 | jermar | 344 | goto restart; |
345 | } |
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15 | jermar | 346 | THREAD->state = Exiting; |
347 | spinlock_unlock(&THREAD->lock); |
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1 | jermar | 348 | scheduler(); |
349 | } |
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350 | |||
107 | decky | 351 | |
352 | /** Thread sleep |
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353 | * |
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354 | * Suspend execution of the current thread. |
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355 | * |
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356 | * @param sec Number of seconds to sleep. |
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357 | * |
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358 | */ |
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1 | jermar | 359 | void thread_sleep(__u32 sec) |
360 | { |
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125 | jermar | 361 | thread_usleep(sec*1000000); |
1 | jermar | 362 | } |
107 | decky | 363 | |
364 | |||
365 | /** Thread usleep |
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366 | * |
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367 | * Suspend execution of the current thread. |
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368 | * |
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369 | * @param usec Number of microseconds to sleep. |
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370 | * |
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371 | */ |
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1 | jermar | 372 | void thread_usleep(__u32 usec) |
373 | { |
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374 | waitq_t wq; |
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375 | |||
376 | waitq_initialize(&wq); |
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377 | |||
378 | (void) waitq_sleep_timeout(&wq, usec, SYNCH_NON_BLOCKING); |
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379 | } |
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380 | |||
107 | decky | 381 | |
382 | /** Register thread out-of-context invocation |
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383 | * |
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384 | * Register a function and its argument to be executed |
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385 | * on next context switch to the current thread. |
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386 | * |
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387 | * @param call_me Out-of-context function. |
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388 | * @param call_me_with Out-of-context function argument. |
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389 | * |
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390 | */ |
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1 | jermar | 391 | void thread_register_call_me(void (* call_me)(void *), void *call_me_with) |
392 | { |
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413 | jermar | 393 | ipl_t ipl; |
1 | jermar | 394 | |
413 | jermar | 395 | ipl = interrupts_disable(); |
15 | jermar | 396 | spinlock_lock(&THREAD->lock); |
397 | THREAD->call_me = call_me; |
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398 | THREAD->call_me_with = call_me_with; |
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399 | spinlock_unlock(&THREAD->lock); |
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413 | jermar | 400 | interrupts_restore(ipl); |
1 | jermar | 401 | } |
777 | palkovsky | 402 | |
403 | /** Print list of threads debug info */ |
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404 | void thread_print_list(void) |
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405 | { |
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406 | link_t *cur; |
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407 | thread_t *t; |
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408 | ipl_t ipl; |
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409 | |||
410 | /* Messing with thread structures, avoid deadlock */ |
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411 | ipl = interrupts_disable(); |
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412 | spinlock_lock(&threads_lock); |
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413 | |||
414 | for (cur=threads_head.next; cur!=&threads_head; cur=cur->next) { |
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415 | t = list_get_instance(cur, thread_t, threads_link); |
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1062 | jermar | 416 | printf("%s: address=%P, tid=%d, state=%s, task=%P, code=%P, stack=%P, cpu=", |
417 | t->name, t, t->tid, thread_states[t->state], t->task, t->thread_code, t->kstack); |
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777 | palkovsky | 418 | if (t->cpu) |
419 | printf("cpu%d ", t->cpu->id); |
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1062 | jermar | 420 | else |
421 | printf("none"); |
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777 | palkovsky | 422 | printf("\n"); |
423 | } |
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424 | |||
425 | spinlock_unlock(&threads_lock); |
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1060 | palkovsky | 426 | interrupts_restore(ipl); |
777 | palkovsky | 427 | } |
1066 | jermar | 428 | |
429 | /** Process syscall to create new thread. |
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430 | * |
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431 | */ |
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432 | __native sys_thread_create(__address function, void *arg, void *stack, char *name) |
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433 | { |
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434 | thread_t *t; |
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435 | char namebuf[THREAD_NAME_BUFLEN]; |
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436 | uspace_arg_t *uarg; |
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437 | __u32 tid; |
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438 | |||
439 | copy_from_uspace(namebuf, name, THREAD_NAME_BUFLEN); |
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440 | uarg = (uspace_arg_t *) malloc(sizeof(uarg), 0); |
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441 | |||
442 | uarg->uspace_entry = function; |
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443 | uarg->uspace_stack = (__address) stack; |
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444 | |||
445 | if ((t = thread_create(uinit, uarg, TASK, 0, namebuf))) { |
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446 | tid = t->tid; |
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447 | thread_ready(t); |
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448 | return (__native) tid; |
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449 | } else { |
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450 | free(namebuf); |
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451 | } |
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452 | |||
453 | return (__native) -1; |
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454 | } |
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455 | |||
456 | /** Process syscall to terminate thread. |
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457 | * |
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458 | */ |
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459 | __native sys_thread_exit(int status) |
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460 | { |
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461 | thread_exit(); |
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462 | /* Unreachable */ |
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463 | return 0; |
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464 | } |