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2894 | svoboda | 1 | /* |
2 | * Copyright (c) 2008 Jiri Svoboda |
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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 | |||
2801 | svoboda | 29 | /** @addtogroup generic |
30 | * @{ |
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31 | */ |
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32 | |||
33 | /** |
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34 | * @file |
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3471 | svoboda | 35 | * @brief Udebug hooks and data structure management. |
3031 | svoboda | 36 | * |
3471 | svoboda | 37 | * Udebug is an interface that makes userspace debuggers possible. |
38 | * |
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3031 | svoboda | 39 | * Functions in this file are executed directly in each thread, which |
40 | * may or may not be the subject of debugging. The udebug_stoppable_begin/end() |
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41 | * functions are also executed in the clock interrupt handler. To avoid |
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42 | * deadlock, functions in this file are protected from the interrupt |
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43 | * by locking the recursive lock THREAD->udebug.int_lock (just an atomic |
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44 | * variable). This prevents udebug_stoppable_begin/end() from being |
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45 | * executed in the interrupt handler (they are skipped). |
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46 | * |
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47 | * Functions in udebug_ops.c and udebug_ipc.c execute in different threads, |
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48 | * so they needn't be protected from the (preemptible) interrupt-initiated |
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49 | * code. |
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2801 | svoboda | 50 | */ |
51 | |||
52 | #include <synch/waitq.h> |
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3471 | svoboda | 53 | #include <debug.h> |
2813 | svoboda | 54 | #include <udebug/udebug.h> |
2870 | svoboda | 55 | #include <errno.h> |
2801 | svoboda | 56 | #include <arch.h> |
57 | |||
3026 | svoboda | 58 | static inline void udebug_int_lock(void) |
59 | { |
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60 | atomic_inc(&THREAD->udebug.int_lock); |
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61 | } |
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62 | |||
63 | static inline void udebug_int_unlock(void) |
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64 | { |
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65 | atomic_dec(&THREAD->udebug.int_lock); |
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66 | } |
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67 | |||
3471 | svoboda | 68 | /** Initialize udebug part of task structure. |
69 | * |
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70 | * Called as part of task structure initialization. |
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71 | * @param ut Pointer to the structure to initialize. |
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72 | */ |
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3014 | svoboda | 73 | void udebug_task_init(udebug_task_t *ut) |
74 | { |
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3426 | svoboda | 75 | mutex_initialize(&ut->lock, MUTEX_PASSIVE); |
3014 | svoboda | 76 | ut->dt_state = UDEBUG_TS_INACTIVE; |
77 | ut->begin_call = NULL; |
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78 | ut->not_stoppable_count = 0; |
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79 | ut->evmask = 0; |
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80 | } |
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81 | |||
3471 | svoboda | 82 | /** Initialize udebug part of thread structure. |
83 | * |
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84 | * Called as part of thread structure initialization. |
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85 | * @param ut Pointer to the structure to initialize. |
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86 | */ |
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3018 | svoboda | 87 | void udebug_thread_initialize(udebug_thread_t *ut) |
88 | { |
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3426 | svoboda | 89 | mutex_initialize(&ut->lock, MUTEX_PASSIVE); |
3018 | svoboda | 90 | waitq_initialize(&ut->go_wq); |
3026 | svoboda | 91 | |
92 | /* |
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93 | * At the beginning the thread is stoppable, so int_lock be set, too. |
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94 | */ |
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95 | atomic_set(&ut->int_lock, 1); |
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96 | |||
3018 | svoboda | 97 | ut->go_call = NULL; |
98 | ut->uspace_state = NULL; |
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99 | ut->stop = true; |
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100 | ut->stoppable = true; |
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101 | ut->debug_active = false; |
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102 | ut->cur_event = 0; /* none */ |
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103 | } |
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104 | |||
3471 | svoboda | 105 | /** Wait for a GO message. |
106 | * |
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107 | * When a debugging event occurs in a thread or the thread is stopped, |
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108 | * this function is called to block the thread until a GO message |
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109 | * is received. |
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110 | * |
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111 | * @param wq The wait queue used by the thread to wait for GO messages. |
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112 | */ |
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2917 | svoboda | 113 | static void udebug_wait_for_go(waitq_t *wq) |
114 | { |
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115 | int rc; |
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116 | ipl_t ipl; |
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117 | |||
118 | ipl = waitq_sleep_prepare(wq); |
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119 | |||
120 | wq->missed_wakeups = 0; /* Enforce blocking. */ |
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121 | rc = waitq_sleep_timeout_unsafe(wq, SYNCH_NO_TIMEOUT, SYNCH_FLAGS_NONE); |
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122 | |||
123 | waitq_sleep_finish(wq, rc, ipl); |
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124 | } |
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125 | |||
3030 | svoboda | 126 | /** Do a preliminary check that a debugging session is in progress. |
127 | * |
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3471 | svoboda | 128 | * This only requires the THREAD->udebug.lock mutex (and not TASK->udebug.lock |
129 | * mutex). For an undebugged task, this will never block (while there could be |
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130 | * collisions by different threads on the TASK mutex), thus improving SMP |
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131 | * perormance for undebugged tasks. |
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132 | * |
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133 | * @return True if the thread was in a debugging session when the function |
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134 | * checked, false otherwise. |
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3030 | svoboda | 135 | */ |
136 | static bool udebug_thread_precheck(void) |
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137 | { |
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138 | bool res; |
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139 | |||
140 | mutex_lock(&THREAD->udebug.lock); |
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141 | res = THREAD->udebug.debug_active; |
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142 | mutex_unlock(&THREAD->udebug.lock); |
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143 | |||
144 | return res; |
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145 | } |
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146 | |||
3471 | svoboda | 147 | /** Start of stoppable section. |
148 | * |
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149 | * A stoppable section is a section of code where if the thread can be stoped. In other words, |
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150 | * if a STOP operation is issued, the thread is guaranteed not to execute |
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151 | * any userspace instructions until the thread is resumed. |
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152 | * |
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153 | * Having stoppable sections is better than having stopping points, since |
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154 | * a thread can be stopped even when it is blocked indefinitely in a system |
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155 | * call (whereas it would not reach any stopping point). |
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156 | */ |
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2804 | svoboda | 157 | void udebug_stoppable_begin(void) |
2801 | svoboda | 158 | { |
2804 | svoboda | 159 | int nsc; |
2898 | svoboda | 160 | call_t *db_call, *go_call; |
2804 | svoboda | 161 | |
2902 | svoboda | 162 | ASSERT(THREAD); |
163 | ASSERT(TASK); |
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164 | |||
3026 | svoboda | 165 | udebug_int_lock(); |
166 | |||
3030 | svoboda | 167 | /* Early check for undebugged tasks */ |
168 | if (!udebug_thread_precheck()) { |
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169 | udebug_int_unlock(); |
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170 | return; |
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171 | } |
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172 | |||
3016 | svoboda | 173 | mutex_lock(&TASK->udebug.lock); |
2804 | svoboda | 174 | |
3014 | svoboda | 175 | nsc = --TASK->udebug.not_stoppable_count; |
2804 | svoboda | 176 | |
3032 | svoboda | 177 | /* Lock order OK, THREAD->udebug.lock is after TASK->udebug.lock */ |
178 | mutex_lock(&THREAD->udebug.lock); |
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179 | ASSERT(THREAD->udebug.stoppable == false); |
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180 | THREAD->udebug.stoppable = true; |
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2804 | svoboda | 181 | |
3014 | svoboda | 182 | if (TASK->udebug.dt_state == UDEBUG_TS_BEGINNING && nsc == 0) { |
2898 | svoboda | 183 | /* |
184 | * This was the last non-stoppable thread. Reply to |
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185 | * DEBUG_BEGIN call. |
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186 | */ |
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187 | |||
3014 | svoboda | 188 | db_call = TASK->udebug.begin_call; |
2902 | svoboda | 189 | ASSERT(db_call); |
190 | |||
3014 | svoboda | 191 | TASK->udebug.dt_state = UDEBUG_TS_ACTIVE; |
192 | TASK->udebug.begin_call = NULL; |
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2804 | svoboda | 193 | |
194 | IPC_SET_RETVAL(db_call->data, 0); |
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195 | ipc_answer(&TASK->answerbox, db_call); |
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2898 | svoboda | 196 | |
3014 | svoboda | 197 | } else if (TASK->udebug.dt_state == UDEBUG_TS_ACTIVE) { |
2898 | svoboda | 198 | /* |
199 | * Active debugging session |
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200 | */ |
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201 | |||
3018 | svoboda | 202 | if (THREAD->udebug.debug_active && THREAD->udebug.stop) { |
2898 | svoboda | 203 | /* |
204 | * Thread was requested to stop - answer go call |
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205 | */ |
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206 | |||
207 | /* Make sure nobody takes this call away from us */ |
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3018 | svoboda | 208 | go_call = THREAD->udebug.go_call; |
209 | THREAD->udebug.go_call = NULL; |
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2902 | svoboda | 210 | ASSERT(go_call); |
2898 | svoboda | 211 | |
212 | IPC_SET_RETVAL(go_call->data, 0); |
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213 | IPC_SET_ARG1(go_call->data, UDEBUG_EVENT_STOP); |
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214 | |||
3018 | svoboda | 215 | THREAD->udebug.cur_event = UDEBUG_EVENT_STOP; |
2898 | svoboda | 216 | |
217 | ipc_answer(&TASK->answerbox, go_call); |
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218 | } |
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3032 | svoboda | 219 | } |
2898 | svoboda | 220 | |
3032 | svoboda | 221 | mutex_unlock(&THREAD->udebug.lock); |
222 | mutex_unlock(&TASK->udebug.lock); |
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2804 | svoboda | 223 | } |
224 | |||
3471 | svoboda | 225 | /** End of a stoppable section. |
226 | * |
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227 | * This is the point where the thread will block if it is stopped. |
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228 | * (As, by definition, a stopped thread must not leave its stoppable section). |
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229 | */ |
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2804 | svoboda | 230 | void udebug_stoppable_end(void) |
231 | { |
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3030 | svoboda | 232 | /* Early check for undebugged tasks */ |
233 | if (!udebug_thread_precheck()) { |
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234 | udebug_int_unlock(); |
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235 | return; |
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236 | } |
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237 | |||
2804 | svoboda | 238 | restart: |
3016 | svoboda | 239 | mutex_lock(&TASK->udebug.lock); |
3026 | svoboda | 240 | mutex_lock(&THREAD->udebug.lock); |
2898 | svoboda | 241 | |
3018 | svoboda | 242 | if (THREAD->udebug.debug_active && |
243 | THREAD->udebug.stop == true) { |
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3014 | svoboda | 244 | TASK->udebug.begin_call = NULL; |
3026 | svoboda | 245 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 246 | mutex_unlock(&TASK->udebug.lock); |
2823 | svoboda | 247 | |
3018 | svoboda | 248 | udebug_wait_for_go(&THREAD->udebug.go_wq); |
2917 | svoboda | 249 | |
2804 | svoboda | 250 | goto restart; |
251 | /* must try again - have to lose stoppability atomically */ |
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252 | } else { |
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3014 | svoboda | 253 | ++TASK->udebug.not_stoppable_count; |
3026 | svoboda | 254 | ASSERT(THREAD->udebug.stoppable == true); |
3018 | svoboda | 255 | THREAD->udebug.stoppable = false; |
2898 | svoboda | 256 | |
3026 | svoboda | 257 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 258 | mutex_unlock(&TASK->udebug.lock); |
2801 | svoboda | 259 | } |
3026 | svoboda | 260 | |
261 | udebug_int_unlock(); |
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2801 | svoboda | 262 | } |
263 | |||
3015 | svoboda | 264 | /** Upon being scheduled to run, check if the current thread should stop. |
265 | * |
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266 | * This function is called from clock(). Preemption is enabled. |
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267 | * interrupts are disabled, but since this is called after |
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268 | * being scheduled-in, we can enable them, if we're careful enough |
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3026 | svoboda | 269 | * not to allow arbitrary recursion or deadlock with the thread context. |
3015 | svoboda | 270 | */ |
271 | void udebug_before_thread_runs(void) |
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272 | { |
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273 | ipl_t ipl; |
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274 | |||
3108 | svoboda | 275 | return; |
3026 | svoboda | 276 | ASSERT(!PREEMPTION_DISABLED); |
277 | |||
278 | /* |
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279 | * Prevent agains re-entering, such as when preempted inside this |
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280 | * function. |
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281 | */ |
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282 | if (atomic_get(&THREAD->udebug.int_lock) != 0) |
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3015 | svoboda | 283 | return; |
284 | |||
3026 | svoboda | 285 | udebug_int_lock(); |
286 | |||
3015 | svoboda | 287 | ipl = interrupts_enable(); |
288 | |||
3016 | svoboda | 289 | /* Now we're free to do whatever we need (lock mutexes, sleep, etc.) */ |
3015 | svoboda | 290 | |
291 | /* Check if we're supposed to stop */ |
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292 | udebug_stoppable_begin(); |
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293 | udebug_stoppable_end(); |
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294 | |||
295 | interrupts_restore(ipl); |
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3026 | svoboda | 296 | |
297 | udebug_int_unlock(); |
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3015 | svoboda | 298 | } |
299 | |||
3471 | svoboda | 300 | /** Syscall event hook. |
301 | * |
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302 | * Must be called before and after servicing a system call. This generates |
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303 | * a SYSCALL_B or SYSCALL_E event, depending on the value of @a end_variant. |
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304 | */ |
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2805 | svoboda | 305 | void udebug_syscall_event(unative_t a1, unative_t a2, unative_t a3, |
2901 | svoboda | 306 | unative_t a4, unative_t a5, unative_t a6, unative_t id, unative_t rc, |
307 | bool end_variant) |
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2801 | svoboda | 308 | { |
2805 | svoboda | 309 | call_t *call; |
2901 | svoboda | 310 | udebug_event_t etype; |
2805 | svoboda | 311 | |
2901 | svoboda | 312 | etype = end_variant ? UDEBUG_EVENT_SYSCALL_E : UDEBUG_EVENT_SYSCALL_B; |
313 | |||
3026 | svoboda | 314 | udebug_int_lock(); |
315 | |||
3030 | svoboda | 316 | /* Early check for undebugged tasks */ |
317 | if (!udebug_thread_precheck()) { |
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318 | udebug_int_unlock(); |
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319 | return; |
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320 | } |
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321 | |||
3016 | svoboda | 322 | mutex_lock(&TASK->udebug.lock); |
3026 | svoboda | 323 | mutex_lock(&THREAD->udebug.lock); |
3016 | svoboda | 324 | |
2854 | svoboda | 325 | /* Must only generate events when in debugging session and have go */ |
3018 | svoboda | 326 | if (THREAD->udebug.debug_active != true || |
327 | THREAD->udebug.stop == true || |
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3014 | svoboda | 328 | (TASK->udebug.evmask & UDEBUG_EVMASK(etype)) == 0) { |
3026 | svoboda | 329 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 330 | mutex_unlock(&TASK->udebug.lock); |
2867 | svoboda | 331 | return; |
332 | } |
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2804 | svoboda | 333 | |
3424 | svoboda | 334 | //printf("udebug_syscall_event\n"); |
3018 | svoboda | 335 | call = THREAD->udebug.go_call; |
336 | THREAD->udebug.go_call = NULL; |
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3016 | svoboda | 337 | |
2867 | svoboda | 338 | IPC_SET_RETVAL(call->data, 0); |
2901 | svoboda | 339 | IPC_SET_ARG1(call->data, etype); |
2867 | svoboda | 340 | IPC_SET_ARG2(call->data, id); |
341 | IPC_SET_ARG3(call->data, rc); |
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3424 | svoboda | 342 | //printf("udebug_syscall_event/ipc_answer\n"); |
2805 | svoboda | 343 | |
3018 | svoboda | 344 | THREAD->udebug.syscall_args[0] = a1; |
345 | THREAD->udebug.syscall_args[1] = a2; |
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346 | THREAD->udebug.syscall_args[2] = a3; |
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347 | THREAD->udebug.syscall_args[3] = a4; |
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348 | THREAD->udebug.syscall_args[4] = a5; |
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349 | THREAD->udebug.syscall_args[5] = a6; |
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2866 | svoboda | 350 | |
2867 | svoboda | 351 | /* |
3018 | svoboda | 352 | * Make sure udebug.stop is true when going to sleep |
2867 | svoboda | 353 | * in case we get woken up by DEBUG_END. (At which |
354 | * point it must be back to the initial true value). |
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355 | */ |
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3018 | svoboda | 356 | THREAD->udebug.stop = true; |
357 | THREAD->udebug.cur_event = etype; |
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2867 | svoboda | 358 | |
3016 | svoboda | 359 | ipc_answer(&TASK->answerbox, call); |
360 | |||
3032 | svoboda | 361 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 362 | mutex_unlock(&TASK->udebug.lock); |
363 | |||
3018 | svoboda | 364 | udebug_wait_for_go(&THREAD->udebug.go_wq); |
3026 | svoboda | 365 | |
366 | udebug_int_unlock(); |
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2867 | svoboda | 367 | } |
368 | |||
3471 | svoboda | 369 | /** Thread-creation event hook. |
370 | * |
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371 | * Must be called when a new userspace thread is created in the debugged |
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372 | * task. Generates a THREAD_B event. |
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373 | * |
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374 | * @param t Structure of the thread being created. Not locked, as the |
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375 | * thread is not executing yet. |
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376 | */ |
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2903 | svoboda | 377 | void udebug_thread_b_event(struct thread *t) |
2867 | svoboda | 378 | { |
379 | call_t *call; |
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380 | |||
3026 | svoboda | 381 | udebug_int_lock(); |
382 | |||
3016 | svoboda | 383 | mutex_lock(&TASK->udebug.lock); |
3026 | svoboda | 384 | mutex_lock(&THREAD->udebug.lock); |
3016 | svoboda | 385 | |
3471 | svoboda | 386 | LOG("udebug_thread_b_event\n"); |
387 | LOG("- check state\n"); |
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2867 | svoboda | 388 | |
389 | /* Must only generate events when in debugging session */ |
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3018 | svoboda | 390 | if (THREAD->udebug.debug_active != true) { |
3471 | svoboda | 391 | LOG("- debug_active: %s, udebug.stop: %s\n", |
3018 | svoboda | 392 | THREAD->udebug.debug_active ? "yes(+)" : "no(-)", |
393 | THREAD->udebug.stop ? "yes(-)" : "no(+)"); |
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3026 | svoboda | 394 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 395 | mutex_unlock(&TASK->udebug.lock); |
2867 | svoboda | 396 | return; |
2801 | svoboda | 397 | } |
2867 | svoboda | 398 | |
3471 | svoboda | 399 | LOG("- trigger event\n"); |
2867 | svoboda | 400 | |
3018 | svoboda | 401 | call = THREAD->udebug.go_call; |
402 | THREAD->udebug.go_call = NULL; |
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2867 | svoboda | 403 | IPC_SET_RETVAL(call->data, 0); |
2903 | svoboda | 404 | IPC_SET_ARG1(call->data, UDEBUG_EVENT_THREAD_B); |
2867 | svoboda | 405 | IPC_SET_ARG2(call->data, (unative_t)t); |
406 | |||
407 | /* |
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3018 | svoboda | 408 | * Make sure udebug.stop is true when going to sleep |
2867 | svoboda | 409 | * in case we get woken up by DEBUG_END. (At which |
410 | * point it must be back to the initial true value). |
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411 | */ |
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3018 | svoboda | 412 | THREAD->udebug.stop = true; |
413 | THREAD->udebug.cur_event = UDEBUG_EVENT_THREAD_B; |
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2867 | svoboda | 414 | |
3016 | svoboda | 415 | ipc_answer(&TASK->answerbox, call); |
2867 | svoboda | 416 | |
3032 | svoboda | 417 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 418 | mutex_unlock(&TASK->udebug.lock); |
419 | |||
3471 | svoboda | 420 | LOG("- sleep\n"); |
3018 | svoboda | 421 | udebug_wait_for_go(&THREAD->udebug.go_wq); |
3026 | svoboda | 422 | |
423 | udebug_int_unlock(); |
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2801 | svoboda | 424 | } |
425 | |||
3471 | svoboda | 426 | /** Thread-termination event hook. |
427 | * |
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428 | * Must be called when the current thread is terminating. |
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429 | * Generates a THREAD_E event. |
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430 | */ |
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2903 | svoboda | 431 | void udebug_thread_e_event(void) |
432 | { |
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433 | call_t *call; |
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434 | |||
3026 | svoboda | 435 | udebug_int_lock(); |
436 | |||
3016 | svoboda | 437 | mutex_lock(&TASK->udebug.lock); |
3026 | svoboda | 438 | mutex_lock(&THREAD->udebug.lock); |
3016 | svoboda | 439 | |
3471 | svoboda | 440 | LOG("udebug_thread_e_event\n"); |
441 | LOG("- check state\n"); |
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2903 | svoboda | 442 | |
443 | /* Must only generate events when in debugging session */ |
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3018 | svoboda | 444 | if (THREAD->udebug.debug_active != true) { |
3428 | svoboda | 445 | /* printf("- debug_active: %s, udebug.stop: %s\n", |
3018 | svoboda | 446 | THREAD->udebug.debug_active ? "yes(+)" : "no(-)", |
3428 | svoboda | 447 | THREAD->udebug.stop ? "yes(-)" : "no(+)");*/ |
3026 | svoboda | 448 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 449 | mutex_unlock(&TASK->udebug.lock); |
2903 | svoboda | 450 | return; |
451 | } |
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452 | |||
3471 | svoboda | 453 | LOG("- trigger event\n"); |
2903 | svoboda | 454 | |
3018 | svoboda | 455 | call = THREAD->udebug.go_call; |
456 | THREAD->udebug.go_call = NULL; |
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2903 | svoboda | 457 | IPC_SET_RETVAL(call->data, 0); |
458 | IPC_SET_ARG1(call->data, UDEBUG_EVENT_THREAD_E); |
||
459 | |||
2908 | svoboda | 460 | /* Prevent any further debug activity in thread */ |
3018 | svoboda | 461 | THREAD->udebug.debug_active = false; |
462 | THREAD->udebug.cur_event = 0; /* none */ |
||
463 | THREAD->udebug.stop = true; /* set to initial value */ |
||
3016 | svoboda | 464 | |
465 | ipc_answer(&TASK->answerbox, call); |
||
2903 | svoboda | 466 | |
3032 | svoboda | 467 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 468 | mutex_unlock(&TASK->udebug.lock); |
2903 | svoboda | 469 | |
3026 | svoboda | 470 | /* Leave int_lock enabled */ |
2908 | svoboda | 471 | /* This event does not sleep - debugging has finished in this thread */ |
2903 | svoboda | 472 | } |
473 | |||
2921 | svoboda | 474 | static void breakpoint_trap_event(uintptr_t addr, udebug_event_t etype) |
2918 | svoboda | 475 | { |
476 | call_t *call; |
||
2903 | svoboda | 477 | |
3026 | svoboda | 478 | udebug_int_lock(); |
479 | |||
3016 | svoboda | 480 | mutex_lock(&TASK->udebug.lock); |
3026 | svoboda | 481 | mutex_lock(&THREAD->udebug.lock); |
3016 | svoboda | 482 | |
2918 | svoboda | 483 | /* Must only generate events when in debugging session and have go */ |
3018 | svoboda | 484 | if (THREAD->udebug.debug_active != true || |
3030 | svoboda | 485 | THREAD->udebug.stop == true) { |
3026 | svoboda | 486 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 487 | mutex_unlock(&TASK->udebug.lock); |
3030 | svoboda | 488 | udebug_int_unlock(); |
2918 | svoboda | 489 | return; |
490 | } |
||
491 | |||
3030 | svoboda | 492 | /* Verify that the event is enabled */ |
493 | if ((TASK->udebug.evmask & UDEBUG_EVMASK(etype)) == 0) { |
||
494 | mutex_unlock(&THREAD->udebug.lock); |
||
495 | mutex_unlock(&TASK->udebug.lock); |
||
496 | udebug_int_unlock(); |
||
497 | return; |
||
498 | } |
||
499 | |||
3424 | svoboda | 500 | printf("udebug_breakpoint/trap_event\n"); |
3018 | svoboda | 501 | call = THREAD->udebug.go_call; |
502 | THREAD->udebug.go_call = NULL; |
||
3016 | svoboda | 503 | |
2918 | svoboda | 504 | IPC_SET_RETVAL(call->data, 0); |
505 | IPC_SET_ARG1(call->data, etype); |
||
506 | IPC_SET_ARG2(call->data, addr); |
||
507 | |||
508 | /* |
||
3018 | svoboda | 509 | * Make sure udebug.stop is true when going to sleep |
2918 | svoboda | 510 | * in case we get woken up by DEBUG_END. (At which |
511 | * point it must be back to the initial true value). |
||
512 | */ |
||
3018 | svoboda | 513 | THREAD->udebug.stop = true; |
514 | THREAD->udebug.cur_event = etype; |
||
3026 | svoboda | 515 | |
3424 | svoboda | 516 | printf("- send answer\n"); |
3032 | svoboda | 517 | ipc_answer(&TASK->answerbox, call); |
2918 | svoboda | 518 | |
3032 | svoboda | 519 | mutex_unlock(&THREAD->udebug.lock); |
3016 | svoboda | 520 | mutex_unlock(&TASK->udebug.lock); |
2918 | svoboda | 521 | |
3018 | svoboda | 522 | udebug_wait_for_go(&THREAD->udebug.go_wq); |
3026 | svoboda | 523 | |
524 | udebug_int_unlock(); |
||
2918 | svoboda | 525 | } |
526 | |||
2921 | svoboda | 527 | void udebug_breakpoint_event(uintptr_t addr) |
528 | { |
||
529 | breakpoint_trap_event(addr, UDEBUG_EVENT_BREAKPOINT); |
||
530 | } |
||
2918 | svoboda | 531 | |
2921 | svoboda | 532 | void udebug_trap_event(uintptr_t addr) |
533 | { |
||
534 | breakpoint_trap_event(addr, UDEBUG_EVENT_TRAP); |
||
535 | } |
||
536 | |||
2870 | svoboda | 537 | /** |
538 | * Terminate task debugging session. |
||
539 | * |
||
3471 | svoboda | 540 | * Gracefully terminates the debugging session for a task. If the debugger |
541 | * is still waiting for events on some threads, it will receive a |
||
542 | * FINISHED event for each of them. |
||
543 | * |
||
544 | * @param ta Task structure. ta->udebug.lock must be already locked. |
||
545 | * @return Zero on success or negative error code. |
||
2870 | svoboda | 546 | */ |
547 | int udebug_task_cleanup(struct task *ta) |
||
548 | { |
||
549 | thread_t *t; |
||
550 | link_t *cur; |
||
551 | int flags; |
||
3016 | svoboda | 552 | ipl_t ipl; |
2867 | svoboda | 553 | |
3471 | svoboda | 554 | LOG("udebug_task_cleanup()\n"); |
555 | LOG("task %" PRIu64 "\n", ta->taskid); |
||
2870 | svoboda | 556 | |
3026 | svoboda | 557 | udebug_int_lock(); |
558 | |||
3032 | svoboda | 559 | if (ta->udebug.dt_state != UDEBUG_TS_BEGINNING && |
3014 | svoboda | 560 | ta->udebug.dt_state != UDEBUG_TS_ACTIVE) { |
3471 | svoboda | 561 | LOG("udebug_task_cleanup(): task not being debugged\n"); |
2870 | svoboda | 562 | return EINVAL; |
563 | } |
||
564 | |||
565 | /* Finish debugging of all userspace threads */ |
||
566 | for (cur = ta->th_head.next; cur != &ta->th_head; cur = cur->next) { |
||
567 | t = list_get_instance(cur, thread_t, th_link); |
||
568 | |||
3026 | svoboda | 569 | mutex_lock(&t->udebug.lock); |
570 | |||
3016 | svoboda | 571 | ipl = interrupts_disable(); |
2870 | svoboda | 572 | spinlock_lock(&t->lock); |
573 | |||
574 | flags = t->flags; |
||
575 | |||
576 | spinlock_unlock(&t->lock); |
||
3026 | svoboda | 577 | interrupts_restore(ipl); |
2870 | svoboda | 578 | |
579 | /* Only process userspace threads */ |
||
580 | if ((flags & THREAD_FLAG_USPACE) != 0) { |
||
581 | /* Prevent any further debug activity in thread */ |
||
3018 | svoboda | 582 | t->udebug.debug_active = false; |
583 | t->udebug.cur_event = 0; /* none */ |
||
2870 | svoboda | 584 | |
585 | /* Still has go? */ |
||
3018 | svoboda | 586 | if (t->udebug.stop == false) { |
2870 | svoboda | 587 | /* |
588 | * Yes, so clear go. As debug_active == false, |
||
589 | * this doesn't affect anything. |
||
590 | */ |
||
3018 | svoboda | 591 | t->udebug.stop = true; |
2870 | svoboda | 592 | |
593 | /* Answer GO call */ |
||
3471 | svoboda | 594 | LOG("answer GO call with EVENT_FINISHED\n"); |
3018 | svoboda | 595 | IPC_SET_RETVAL(t->udebug.go_call->data, 0); |
3471 | svoboda | 596 | IPC_SET_ARG1(t->udebug.go_call->data, |
597 | UDEBUG_EVENT_FINISHED); |
||
3026 | svoboda | 598 | |
3018 | svoboda | 599 | ipc_answer(&ta->answerbox, t->udebug.go_call); |
600 | t->udebug.go_call = NULL; |
||
2870 | svoboda | 601 | } else { |
602 | /* |
||
603 | * Debug_stop is already at initial value. |
||
604 | * Yet this means the thread needs waking up. |
||
605 | */ |
||
606 | |||
607 | /* |
||
608 | * t's lock must not be held when calling |
||
609 | * waitq_wakeup. |
||
610 | */ |
||
3018 | svoboda | 611 | waitq_wakeup(&t->udebug.go_wq, WAKEUP_FIRST); |
2870 | svoboda | 612 | } |
613 | } |
||
3026 | svoboda | 614 | mutex_unlock(&t->udebug.lock); |
2870 | svoboda | 615 | } |
616 | |||
3014 | svoboda | 617 | ta->udebug.dt_state = UDEBUG_TS_INACTIVE; |
618 | ta->udebug.debugger = NULL; |
||
2870 | svoboda | 619 | |
3026 | svoboda | 620 | udebug_int_unlock(); |
621 | |||
2870 | svoboda | 622 | return 0; |
623 | } |
||
624 | |||
625 | |||
2801 | svoboda | 626 | /** @} |
627 | */ |