1 | /*
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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 |
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29 | /**
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30 | * @file task.c
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31 | * @brief Task management.
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32 | */
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33 |
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34 | #include <main/uinit.h>
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35 | #include <proc/thread.h>
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36 | #include <proc/task.h>
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37 | #include <proc/uarg.h>
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38 | #include <mm/as.h>
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39 | #include <mm/slab.h>
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40 | #include <synch/spinlock.h>
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41 | #include <arch.h>
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42 | #include <panic.h>
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43 | #include <adt/btree.h>
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44 | #include <adt/list.h>
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45 | #include <ipc/ipc.h>
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46 | #include <security/cap.h>
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47 | #include <memstr.h>
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48 | #include <print.h>
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49 | #include <elf.h>
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50 | #include <errno.h>
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51 | #include <syscall/copy.h>
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52 |
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53 | #ifndef LOADED_PROG_STACK_PAGES_NO
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54 | #define LOADED_PROG_STACK_PAGES_NO 1
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55 | #endif
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56 |
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57 | SPINLOCK_INITIALIZE(tasks_lock);
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58 | btree_t tasks_btree;
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59 | static task_id_t task_counter = 0;
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60 |
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61 | static void ktaskclnp(void *arg);
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62 | static void ktaskkill(void *arg);
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63 |
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64 | /** Initialize tasks
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65 | *
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66 | * Initialize kernel tasks support.
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67 | *
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68 | */
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69 | void task_init(void)
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70 | {
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71 | TASK = NULL;
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72 | btree_create(&tasks_btree);
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73 | }
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74 |
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75 |
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76 | /** Create new task
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77 | *
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78 | * Create new task with no threads.
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79 | *
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80 | * @param as Task's address space.
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81 | * @param name Symbolic name.
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82 | *
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83 | * @return New task's structure
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84 | *
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85 | */
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86 | task_t *task_create(as_t *as, char *name)
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87 | {
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88 | ipl_t ipl;
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89 | task_t *ta;
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90 | int i;
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91 |
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92 | ta = (task_t *) malloc(sizeof(task_t), 0);
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93 |
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94 | task_create_arch(ta);
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95 |
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96 | spinlock_initialize(&ta->lock, "task_ta_lock");
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97 | list_initialize(&ta->th_head);
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98 | ta->as = as;
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99 | ta->name = name;
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100 | ta->main_thread = NULL;
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101 | ta->refcount = 0;
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102 |
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103 | ta->capabilities = 0;
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104 | ta->accept_new_threads = true;
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105 |
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106 | ipc_answerbox_init(&ta->answerbox);
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107 | for (i=0; i < IPC_MAX_PHONES;i++)
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108 | ipc_phone_init(&ta->phones[i]);
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109 | if (ipc_phone_0)
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110 | ipc_phone_connect(&ta->phones[0], ipc_phone_0);
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111 | atomic_set(&ta->active_calls, 0);
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112 |
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113 | mutex_initialize(&ta->futexes_lock);
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114 | btree_create(&ta->futexes);
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115 |
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116 | ipl = interrupts_disable();
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117 |
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118 | /*
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119 | * Increment address space reference count.
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120 | * TODO: Reconsider the locking scheme.
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121 | */
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122 | mutex_lock(&as->lock);
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123 | as->refcount++;
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124 | mutex_unlock(&as->lock);
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125 |
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126 | spinlock_lock(&tasks_lock);
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127 |
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128 | ta->taskid = ++task_counter;
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129 | btree_insert(&tasks_btree, (btree_key_t) ta->taskid, (void *) ta, NULL);
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130 |
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131 | spinlock_unlock(&tasks_lock);
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132 | interrupts_restore(ipl);
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133 |
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134 | return ta;
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135 | }
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136 |
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137 | /** Destroy task.
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138 | *
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139 | * @param t Task to be destroyed.
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140 | */
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141 | void task_destroy(task_t *t)
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142 | {
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143 | task_destroy_arch(t);
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144 | btree_destroy(&t->futexes);
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145 |
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146 | mutex_lock_active(&t->as->lock);
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147 | if (--t->as->refcount == 0) {
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148 | mutex_unlock(&t->as->lock);
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149 | as_destroy(t->as);
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150 | /*
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151 | * t->as is destroyed.
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152 | */
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153 | } else {
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154 | mutex_unlock(&t->as->lock);
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155 | }
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156 |
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157 | free(t);
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158 | TASK = NULL;
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159 | }
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160 |
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161 | /** Create new task with 1 thread and run it
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162 | *
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163 | * @param program_addr Address of program executable image.
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164 | * @param name Program name.
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165 | *
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166 | * @return Task of the running program or NULL on error.
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167 | */
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168 | task_t * task_run_program(void *program_addr, char *name)
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169 | {
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170 | as_t *as;
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171 | as_area_t *a;
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172 | int rc;
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173 | thread_t *t1, *t2;
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174 | task_t *task;
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175 | uspace_arg_t *kernel_uarg;
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176 |
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177 | as = as_create(0);
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178 | ASSERT(as);
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179 |
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180 | rc = elf_load((elf_header_t *) program_addr, as);
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181 | if (rc != EE_OK) {
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182 | as_destroy(as);
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183 | return NULL;
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184 | }
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185 |
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186 | kernel_uarg = (uspace_arg_t *) malloc(sizeof(uspace_arg_t), 0);
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187 | kernel_uarg->uspace_entry = (void *) ((elf_header_t *) program_addr)->e_entry;
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188 | kernel_uarg->uspace_stack = (void *) USTACK_ADDRESS;
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189 | kernel_uarg->uspace_thread_function = NULL;
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190 | kernel_uarg->uspace_thread_arg = NULL;
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191 | kernel_uarg->uspace_uarg = NULL;
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192 |
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193 | task = task_create(as, name);
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194 | ASSERT(task);
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195 |
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196 | /*
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197 | * Create the data as_area.
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198 | */
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199 | a = as_area_create(as, AS_AREA_READ | AS_AREA_WRITE | AS_AREA_CACHEABLE,
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200 | LOADED_PROG_STACK_PAGES_NO*PAGE_SIZE,
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201 | USTACK_ADDRESS, AS_AREA_ATTR_NONE, &anon_backend, NULL);
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202 |
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203 | /*
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204 | * Create the main thread.
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205 | */
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206 | t1 = thread_create(uinit, kernel_uarg, task, 0, "uinit");
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207 | ASSERT(t1);
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208 |
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209 | /*
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210 | * Create killer thread for the new task.
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211 | */
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212 | t2 = thread_create(ktaskkill, t1, task, 0, "ktaskkill");
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213 | ASSERT(t2);
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214 | thread_ready(t2);
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215 |
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216 | thread_ready(t1);
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217 |
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218 | return task;
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219 | }
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220 |
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221 | /** Syscall for reading task ID from userspace.
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222 | *
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223 | * @param uspace_task_id Userspace address of 8-byte buffer where to store current task ID.
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224 | *
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225 | * @return 0 on success or an error code from @ref errno.h.
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226 | */
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227 | __native sys_task_get_id(task_id_t *uspace_task_id)
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228 | {
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229 | /*
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230 | * No need to acquire lock on TASK because taskid
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231 | * remains constant for the lifespan of the task.
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232 | */
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233 | return (__native) copy_to_uspace(uspace_task_id, &TASK->taskid, sizeof(TASK->taskid));
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234 | }
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235 |
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236 | /** Find task structure corresponding to task ID.
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237 | *
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238 | * The tasks_lock must be already held by the caller of this function
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239 | * and interrupts must be disabled.
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240 | *
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241 | * The task is guaranteed to exist after it was found in the tasks_btree as long as:
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242 | * @li the tasks_lock is held,
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243 | * @li the task's lock is held when task's lock is acquired before releasing tasks_lock or
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244 | * @li the task's refcount is grater than 0
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245 | *
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246 | * @param id Task ID.
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247 | *
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248 | * @return Task structure address or NULL if there is no such task ID.
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249 | */
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250 | task_t *task_find_by_id(task_id_t id)
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251 | {
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252 | btree_node_t *leaf;
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253 |
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254 | return (task_t *) btree_search(&tasks_btree, (btree_key_t) id, &leaf);
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255 | }
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256 |
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257 | /** Kill task.
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258 | *
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259 | * @param id ID of the task to be killed.
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260 | *
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261 | * @return 0 on success or an error code from errno.h
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262 | */
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263 | int task_kill(task_id_t id)
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264 | {
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265 | ipl_t ipl;
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266 | task_t *ta;
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267 | thread_t *t;
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268 | link_t *cur;
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269 |
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270 | ipl = interrupts_disable();
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271 | spinlock_lock(&tasks_lock);
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272 |
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273 | if (!(ta = task_find_by_id(id))) {
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274 | spinlock_unlock(&tasks_lock);
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275 | interrupts_restore(ipl);
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276 | return ENOENT;
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277 | }
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278 |
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279 | spinlock_lock(&ta->lock);
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280 | ta->refcount++;
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281 | spinlock_unlock(&ta->lock);
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282 |
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283 | btree_remove(&tasks_btree, ta->taskid, NULL);
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284 | spinlock_unlock(&tasks_lock);
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285 |
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286 | t = thread_create(ktaskclnp, NULL, ta, 0, "ktaskclnp");
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287 |
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288 | spinlock_lock(&ta->lock);
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289 | ta->accept_new_threads = false;
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290 | ta->refcount--;
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291 |
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292 | /*
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293 | * Interrupt all threads except this one.
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294 | */
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295 | for (cur = ta->th_head.next; cur != &ta->th_head; cur = cur->next) {
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296 | thread_t *thr;
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297 | bool sleeping = false;
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298 |
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299 | thr = list_get_instance(cur, thread_t, th_link);
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300 | if (thr == t)
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301 | continue;
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302 |
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303 | spinlock_lock(&thr->lock);
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304 | thr->interrupted = true;
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305 | if (thr->state == Sleeping)
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306 | sleeping = true;
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307 | spinlock_unlock(&thr->lock);
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308 |
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309 | if (sleeping)
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310 | waitq_interrupt_sleep(thr);
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311 | }
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312 |
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313 | spinlock_unlock(&ta->lock);
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314 | interrupts_restore(ipl);
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315 |
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316 | if (t)
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317 | thread_ready(t);
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318 |
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319 | return 0;
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320 | }
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321 |
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322 | /** Print task list */
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323 | void task_print_list(void)
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324 | {
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325 | link_t *cur;
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326 | ipl_t ipl;
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327 |
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328 | /* Messing with thread structures, avoid deadlock */
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329 | ipl = interrupts_disable();
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330 | spinlock_lock(&tasks_lock);
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331 |
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332 | for (cur = tasks_btree.leaf_head.next; cur != &tasks_btree.leaf_head; cur = cur->next) {
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333 | btree_node_t *node;
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334 | int i;
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335 |
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336 | node = list_get_instance(cur, btree_node_t, leaf_link);
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337 | for (i = 0; i < node->keys; i++) {
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338 | task_t *t;
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339 | int j;
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340 |
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341 | t = (task_t *) node->value[i];
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342 |
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343 | spinlock_lock(&t->lock);
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344 | printf("%s(%lld): address=%#zX, as=%#zX, ActiveCalls: %zd",
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345 | t->name, t->taskid, t, t->as, atomic_get(&t->active_calls));
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346 | for (j=0; j < IPC_MAX_PHONES; j++) {
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347 | if (t->phones[j].callee)
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348 | printf(" Ph(%zd): %#zX ", j, t->phones[j].callee);
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349 | }
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350 | printf("\n");
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351 | spinlock_unlock(&t->lock);
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352 | }
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353 | }
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354 |
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355 | spinlock_unlock(&tasks_lock);
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356 | interrupts_restore(ipl);
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357 | }
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358 |
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359 | /** Kernel thread used to cleanup the task after it is killed. */
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360 | void ktaskclnp(void *arg)
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361 | {
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362 | ipl_t ipl;
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363 | thread_t *t = NULL, *main_thread;
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364 | link_t *cur;
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365 |
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366 | thread_detach(THREAD);
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367 |
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368 | loop:
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369 | ipl = interrupts_disable();
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370 | spinlock_lock(&TASK->lock);
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371 |
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372 | main_thread = TASK->main_thread;
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373 |
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374 | /*
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375 | * Find a thread to join.
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376 | */
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377 | for (cur = TASK->th_head.next; cur != &TASK->th_head; cur = cur->next) {
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378 | t = list_get_instance(cur, thread_t, th_link);
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379 | if (t == THREAD)
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380 | continue;
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381 | else if (t == main_thread)
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382 | continue;
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383 | else
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384 | break;
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385 | }
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386 |
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387 | spinlock_unlock(&TASK->lock);
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388 | interrupts_restore(ipl);
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389 |
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390 | if (t != THREAD) {
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391 | ASSERT(t != main_thread); /* uninit is joined and detached in ktaskkill */
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392 | thread_join(t);
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393 | thread_detach(t);
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394 | goto loop; /* go for another thread */
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395 | }
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396 |
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397 | /*
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398 | * Now there are no other threads in this task
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399 | * and no new threads can be created.
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400 | */
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401 |
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402 | ipc_cleanup();
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403 | futex_cleanup();
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404 | }
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405 |
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406 | /** Kernel task used to kill a userspace task when its main thread exits.
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407 | *
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408 | * This thread waits until the main userspace thread (i.e. uninit) exits.
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409 | * When this happens, the task is killed.
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410 | *
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411 | * @param arg Pointer to the thread structure of the task's main thread.
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412 | */
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413 | void ktaskkill(void *arg)
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414 | {
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415 | thread_t *t = (thread_t *) arg;
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416 |
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417 | /*
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418 | * Userspace threads cannot detach themselves,
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419 | * therefore the thread pointer is guaranteed to be valid.
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420 | */
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421 | thread_join(t); /* sleep uninterruptibly here! */
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422 | thread_detach(t);
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423 | task_kill(TASK->taskid);
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424 | }
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