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| Rev | Author | Line No. | Line |
|---|---|---|---|
| 3438 | 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 | |||
| 29 | /** @addtogroup generic |
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| 30 | * @{ |
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| 31 | */ |
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| 32 | |||
| 33 | /** |
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| 34 | * @file |
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| 35 | * @brief Udebug operations. |
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| 3457 | svoboda | 36 | * |
| 37 | * Udebug operations on tasks and threads are implemented here. The |
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| 38 | * functions defined here are called from the udebug_ipc module |
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| 39 | * when servicing udebug IPC messages. |
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| 3438 | svoboda | 40 | */ |
| 41 | |||
| 3441 | svoboda | 42 | #include <debug.h> |
| 3438 | svoboda | 43 | #include <proc/task.h> |
| 44 | #include <proc/thread.h> |
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| 45 | #include <arch.h> |
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| 4073 | rimsky | 46 | #include <arch/asm.h> |
| 3438 | svoboda | 47 | #include <errno.h> |
| 48 | #include <syscall/copy.h> |
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| 49 | #include <ipc/ipc.h> |
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| 50 | #include <udebug/udebug.h> |
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| 51 | #include <udebug/udebug_ops.h> |
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| 4073 | rimsky | 52 | #include <print.h> |
| 3438 | svoboda | 53 | |
| 54 | /** |
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| 55 | * Prepare a thread for a debugging operation. |
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| 56 | * |
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| 57 | * Simply put, return thread t with t->udebug.lock held, |
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| 58 | * but only if it verifies all conditions. |
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| 59 | * |
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| 60 | * Specifically, verifies that thread t exists, is a userspace thread, |
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| 61 | * and belongs to the current task (TASK). Verifies, that the thread |
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| 3602 | rimsky | 62 | * is (or is not) go according to being_go (typically false). |
| 3742 | rimsky | 63 | * It also locks t->udebug.lock, making sure that t->udebug.active |
| 3438 | svoboda | 64 | * is true - that the thread is in a valid debugging session. |
| 65 | * |
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| 66 | * With this verified and the t->udebug.lock mutex held, it is ensured |
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| 67 | * that the thread cannot leave the debugging session, let alone cease |
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| 68 | * to exist. |
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| 69 | * |
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| 70 | * In this function, holding the TASK->udebug.lock mutex prevents the |
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| 71 | * thread from leaving the debugging session, while relaxing from |
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| 72 | * the t->lock spinlock to the t->udebug.lock mutex. |
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| 73 | * |
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| 3457 | svoboda | 74 | * @param t Pointer, need not at all be valid. |
| 3602 | rimsky | 75 | * @param being_go Required thread state. |
| 3457 | svoboda | 76 | * |
| 3438 | svoboda | 77 | * Returns EOK if all went well, or an error code otherwise. |
| 78 | */ |
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| 3602 | rimsky | 79 | static int _thread_op_begin(thread_t *t, bool being_go) |
| 3438 | svoboda | 80 | { |
| 81 | task_id_t taskid; |
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| 82 | ipl_t ipl; |
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| 83 | |||
| 84 | taskid = TASK->taskid; |
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| 85 | |||
| 86 | mutex_lock(&TASK->udebug.lock); |
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| 87 | |||
| 88 | /* thread_exists() must be called with threads_lock held */ |
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| 89 | ipl = interrupts_disable(); |
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| 90 | spinlock_lock(&threads_lock); |
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| 91 | |||
| 92 | if (!thread_exists(t)) { |
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| 93 | spinlock_unlock(&threads_lock); |
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| 94 | interrupts_restore(ipl); |
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| 95 | mutex_unlock(&TASK->udebug.lock); |
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| 96 | return ENOENT; |
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| 97 | } |
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| 98 | |||
| 99 | /* t->lock is enough to ensure the thread's existence */ |
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| 100 | spinlock_lock(&t->lock); |
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| 101 | spinlock_unlock(&threads_lock); |
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| 102 | |||
| 3602 | rimsky | 103 | /* Verify that 't' is a userspace thread. */ |
| 3438 | svoboda | 104 | if ((t->flags & THREAD_FLAG_USPACE) == 0) { |
| 105 | /* It's not, deny its existence */ |
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| 106 | spinlock_unlock(&t->lock); |
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| 107 | interrupts_restore(ipl); |
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| 108 | mutex_unlock(&TASK->udebug.lock); |
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| 109 | return ENOENT; |
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| 110 | } |
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| 111 | |||
| 3602 | rimsky | 112 | /* Verify debugging state. */ |
| 3742 | rimsky | 113 | if (t->udebug.active != true) { |
| 3438 | svoboda | 114 | /* Not in debugging session or undesired GO state */ |
| 115 | spinlock_unlock(&t->lock); |
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| 116 | interrupts_restore(ipl); |
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| 117 | mutex_unlock(&TASK->udebug.lock); |
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| 118 | return ENOENT; |
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| 119 | } |
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| 120 | |||
| 121 | /* |
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| 3742 | rimsky | 122 | * Since the thread has active == true, TASK->udebug.lock |
| 123 | * is enough to ensure its existence and that active remains |
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| 3438 | svoboda | 124 | * true. |
| 125 | */ |
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| 126 | spinlock_unlock(&t->lock); |
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| 127 | interrupts_restore(ipl); |
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| 128 | |||
| 3602 | rimsky | 129 | /* Only mutex TASK->udebug.lock left. */ |
| 3438 | svoboda | 130 | |
| 3602 | rimsky | 131 | /* Now verify that the thread belongs to the current task. */ |
| 3438 | svoboda | 132 | if (t->task != TASK) { |
| 133 | /* No such thread belonging this task*/ |
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| 134 | mutex_unlock(&TASK->udebug.lock); |
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| 135 | return ENOENT; |
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| 136 | } |
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| 137 | |||
| 138 | /* |
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| 139 | * Now we need to grab the thread's debug lock for synchronization |
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| 140 | * of the threads stoppability/stop state. |
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| 141 | */ |
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| 142 | mutex_lock(&t->udebug.lock); |
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| 143 | |||
| 3602 | rimsky | 144 | /* The big task mutex is no longer needed. */ |
| 3438 | svoboda | 145 | mutex_unlock(&TASK->udebug.lock); |
| 146 | |||
| 3602 | rimsky | 147 | if (t->udebug.go != being_go) { |
| 148 | /* Not in debugging session or undesired GO state. */ |
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| 3438 | svoboda | 149 | mutex_unlock(&t->udebug.lock); |
| 150 | return EINVAL; |
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| 151 | } |
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| 152 | |||
| 3602 | rimsky | 153 | /* Only t->udebug.lock left. */ |
| 3438 | svoboda | 154 | |
| 3602 | rimsky | 155 | return EOK; /* All went well. */ |
| 3438 | svoboda | 156 | } |
| 157 | |||
| 3457 | svoboda | 158 | /** End debugging operation on a thread. */ |
| 3438 | svoboda | 159 | static void _thread_op_end(thread_t *t) |
| 160 | { |
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| 161 | mutex_unlock(&t->udebug.lock); |
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| 162 | } |
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| 163 | |||
| 3457 | svoboda | 164 | /** Begin debugging the current task. |
| 165 | * |
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| 166 | * Initiates a debugging session for the current task (and its threads). |
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| 167 | * When the debugging session has started a reply will be sent to the |
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| 168 | * UDEBUG_BEGIN call. This may happen immediately in this function if |
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| 169 | * all the threads in this task are stoppable at the moment and in this |
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| 170 | * case the function returns 1. |
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| 171 | * |
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| 172 | * Otherwise the function returns 0 and the reply will be sent as soon as |
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| 173 | * all the threads become stoppable (i.e. they can be considered stopped). |
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| 174 | * |
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| 175 | * @param call The BEGIN call we are servicing. |
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| 176 | * @return 0 (OK, but not done yet), 1 (done) or negative error code. |
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| 3438 | svoboda | 177 | */ |
| 178 | int udebug_begin(call_t *call) |
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| 179 | { |
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| 180 | int reply; |
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| 181 | |||
| 182 | thread_t *t; |
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| 183 | link_t *cur; |
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| 184 | |||
| 3441 | svoboda | 185 | LOG("udebug_begin()\n"); |
| 3438 | svoboda | 186 | |
| 187 | mutex_lock(&TASK->udebug.lock); |
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| 3441 | svoboda | 188 | LOG("debugging task %llu\n", TASK->taskid); |
| 3438 | svoboda | 189 | |
| 190 | if (TASK->udebug.dt_state != UDEBUG_TS_INACTIVE) { |
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| 191 | mutex_unlock(&TASK->udebug.lock); |
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| 3441 | svoboda | 192 | LOG("udebug_begin(): busy error\n"); |
| 3438 | svoboda | 193 | |
| 194 | return EBUSY; |
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| 195 | } |
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| 196 | |||
| 197 | TASK->udebug.dt_state = UDEBUG_TS_BEGINNING; |
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| 198 | TASK->udebug.begin_call = call; |
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| 199 | TASK->udebug.debugger = call->sender; |
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| 200 | |||
| 201 | if (TASK->udebug.not_stoppable_count == 0) { |
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| 202 | TASK->udebug.dt_state = UDEBUG_TS_ACTIVE; |
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| 203 | TASK->udebug.begin_call = NULL; |
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| 204 | reply = 1; /* immediate reply */ |
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| 205 | } else { |
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| 206 | reply = 0; /* no reply */ |
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| 207 | } |
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| 208 | |||
| 3742 | rimsky | 209 | /* Set udebug.active on all of the task's userspace threads. */ |
| 3438 | svoboda | 210 | |
| 211 | for (cur = TASK->th_head.next; cur != &TASK->th_head; cur = cur->next) { |
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| 212 | t = list_get_instance(cur, thread_t, th_link); |
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| 213 | |||
| 214 | mutex_lock(&t->udebug.lock); |
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| 215 | if ((t->flags & THREAD_FLAG_USPACE) != 0) |
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| 3742 | rimsky | 216 | t->udebug.active = true; |
| 3438 | svoboda | 217 | mutex_unlock(&t->udebug.lock); |
| 218 | } |
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| 219 | |||
| 220 | mutex_unlock(&TASK->udebug.lock); |
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| 221 | |||
| 3441 | svoboda | 222 | LOG("udebug_begin() done (%s)\n", |
| 3438 | svoboda | 223 | reply ? "reply" : "stoppability wait"); |
| 224 | |||
| 225 | return reply; |
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| 226 | } |
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| 227 | |||
| 3457 | svoboda | 228 | /** Finish debugging the current task. |
| 229 | * |
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| 230 | * Closes the debugging session for the current task. |
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| 231 | * @return Zero on success or negative error code. |
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| 232 | */ |
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| 3438 | svoboda | 233 | int udebug_end(void) |
| 234 | { |
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| 235 | int rc; |
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| 236 | |||
| 3441 | svoboda | 237 | LOG("udebug_end()\n"); |
| 3438 | svoboda | 238 | |
| 239 | mutex_lock(&TASK->udebug.lock); |
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| 3441 | svoboda | 240 | LOG("task %" PRIu64 "\n", TASK->taskid); |
| 3438 | svoboda | 241 | |
| 242 | rc = udebug_task_cleanup(TASK); |
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| 243 | |||
| 244 | mutex_unlock(&TASK->udebug.lock); |
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| 245 | |||
| 246 | return rc; |
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| 247 | } |
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| 248 | |||
| 3457 | svoboda | 249 | /** Set the event mask. |
| 250 | * |
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| 251 | * Sets the event mask that determines which events are enabled. |
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| 252 | * |
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| 253 | * @param mask Or combination of events that should be enabled. |
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| 254 | * @return Zero on success or negative error code. |
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| 255 | */ |
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| 3438 | svoboda | 256 | int udebug_set_evmask(udebug_evmask_t mask) |
| 257 | { |
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| 3441 | svoboda | 258 | LOG("udebug_set_mask()\n"); |
| 3438 | svoboda | 259 | |
| 260 | mutex_lock(&TASK->udebug.lock); |
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| 261 | |||
| 262 | if (TASK->udebug.dt_state != UDEBUG_TS_ACTIVE) { |
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| 263 | mutex_unlock(&TASK->udebug.lock); |
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| 3441 | svoboda | 264 | LOG("udebug_set_mask(): not active debuging session\n"); |
| 3438 | svoboda | 265 | |
| 266 | return EINVAL; |
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| 267 | } |
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| 268 | |||
| 269 | TASK->udebug.evmask = mask; |
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| 270 | |||
| 271 | mutex_unlock(&TASK->udebug.lock); |
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| 272 | |||
| 273 | return 0; |
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| 274 | } |
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| 275 | |||
| 3457 | svoboda | 276 | /** Give thread GO. |
| 277 | * |
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| 3602 | rimsky | 278 | * Upon recieving a go message, the thread is given GO. Being GO |
| 3457 | svoboda | 279 | * means the thread is allowed to execute userspace code (until |
| 280 | * a debugging event or STOP occurs, at which point the thread loses GO. |
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| 281 | * |
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| 282 | * @param t The thread to operate on (unlocked and need not be valid). |
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| 283 | * @param call The GO call that we are servicing. |
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| 284 | */ |
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| 3438 | svoboda | 285 | int udebug_go(thread_t *t, call_t *call) |
| 286 | { |
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| 287 | int rc; |
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| 288 | |||
| 3602 | rimsky | 289 | /* On success, this will lock t->udebug.lock. */ |
| 3438 | svoboda | 290 | rc = _thread_op_begin(t, false); |
| 291 | if (rc != EOK) { |
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| 292 | return rc; |
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| 293 | } |
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| 294 | |||
| 295 | t->udebug.go_call = call; |
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| 3602 | rimsky | 296 | t->udebug.go = true; |
| 3438 | svoboda | 297 | t->udebug.cur_event = 0; /* none */ |
| 298 | |||
| 299 | /* |
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| 3602 | rimsky | 300 | * Neither t's lock nor threads_lock may be held during wakeup. |
| 3438 | svoboda | 301 | */ |
| 302 | waitq_wakeup(&t->udebug.go_wq, WAKEUP_FIRST); |
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| 303 | |||
| 304 | _thread_op_end(t); |
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| 305 | |||
| 306 | return 0; |
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| 307 | } |
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| 308 | |||
| 3457 | svoboda | 309 | /** Stop a thread (i.e. take its GO away) |
| 310 | * |
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| 311 | * Generates a STOP event as soon as the thread becomes stoppable (i.e. |
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| 312 | * can be considered stopped). |
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| 313 | * |
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| 314 | * @param t The thread to operate on (unlocked and need not be valid). |
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| 315 | * @param call The GO call that we are servicing. |
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| 316 | */ |
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| 3438 | svoboda | 317 | int udebug_stop(thread_t *t, call_t *call) |
| 318 | { |
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| 319 | int rc; |
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| 320 | |||
| 3441 | svoboda | 321 | LOG("udebug_stop()\n"); |
| 3438 | svoboda | 322 | |
| 323 | /* |
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| 324 | * On success, this will lock t->udebug.lock. Note that this makes sure |
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| 325 | * the thread is not stopped. |
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| 326 | */ |
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| 327 | rc = _thread_op_begin(t, true); |
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| 328 | if (rc != EOK) { |
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| 329 | return rc; |
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| 330 | } |
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| 331 | |||
| 3602 | rimsky | 332 | /* Take GO away from the thread. */ |
| 333 | t->udebug.go = false; |
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| 3438 | svoboda | 334 | |
| 3602 | rimsky | 335 | if (t->udebug.stoppable != true) { |
| 336 | /* Answer will be sent when the thread becomes stoppable. */ |
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| 3438 | svoboda | 337 | _thread_op_end(t); |
| 338 | return 0; |
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| 339 | } |
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| 340 | |||
| 341 | /* |
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| 3602 | rimsky | 342 | * Answer GO call. |
| 3438 | svoboda | 343 | */ |
| 3441 | svoboda | 344 | LOG("udebug_stop - answering go call\n"); |
| 3438 | svoboda | 345 | |
| 3602 | rimsky | 346 | /* Make sure nobody takes this call away from us. */ |
| 3438 | svoboda | 347 | call = t->udebug.go_call; |
| 348 | t->udebug.go_call = NULL; |
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| 349 | |||
| 350 | IPC_SET_RETVAL(call->data, 0); |
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| 351 | IPC_SET_ARG1(call->data, UDEBUG_EVENT_STOP); |
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| 3441 | svoboda | 352 | LOG("udebug_stop/ipc_answer\n"); |
| 3438 | svoboda | 353 | |
| 354 | THREAD->udebug.cur_event = UDEBUG_EVENT_STOP; |
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| 355 | |||
| 356 | _thread_op_end(t); |
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| 357 | |||
| 3665 | rimsky | 358 | mutex_lock(&TASK->udebug.lock); |
| 3438 | svoboda | 359 | ipc_answer(&TASK->answerbox, call); |
| 360 | mutex_unlock(&TASK->udebug.lock); |
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| 361 | |||
| 3441 | svoboda | 362 | LOG("udebog_stop/done\n"); |
| 3438 | svoboda | 363 | return 0; |
| 364 | } |
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| 365 | |||
| 3457 | svoboda | 366 | /** Read the list of userspace threads in the current task. |
| 367 | * |
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| 368 | * The list takes the form of a sequence of thread hashes (i.e. the pointers |
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| 369 | * to thread structures). A buffer of size @a buf_size is allocated and |
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| 370 | * a pointer to it written to @a buffer. The sequence of hashes is written |
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| 371 | * into this buffer. |
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| 372 | * |
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| 373 | * If the sequence is longer than @a buf_size bytes, only as much hashes |
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| 374 | * as can fit are copied. The number of thread hashes copied is stored |
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| 375 | * in @a n. |
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| 376 | * |
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| 377 | * The rationale for having @a buf_size is that this function is only |
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| 378 | * used for servicing the THREAD_READ message, which always specifies |
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| 379 | * a maximum size for the userspace buffer. |
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| 380 | * |
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| 381 | * @param buffer The buffer for storing thread hashes. |
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| 382 | * @param buf_size Buffer size in bytes. |
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| 383 | * @param n The actual number of hashes copied will be stored here. |
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| 384 | */ |
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| 3438 | svoboda | 385 | int udebug_thread_read(void **buffer, size_t buf_size, size_t *n) |
| 386 | { |
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| 387 | thread_t *t; |
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| 388 | link_t *cur; |
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| 389 | unative_t tid; |
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| 390 | unsigned copied_ids; |
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| 391 | ipl_t ipl; |
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| 392 | unative_t *id_buffer; |
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| 393 | int flags; |
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| 394 | size_t max_ids; |
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| 395 | |||
| 3441 | svoboda | 396 | LOG("udebug_thread_read()\n"); |
| 3438 | svoboda | 397 | |
| 398 | /* Allocate a buffer to hold thread IDs */ |
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| 399 | id_buffer = malloc(buf_size, 0); |
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| 400 | |||
| 401 | mutex_lock(&TASK->udebug.lock); |
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| 402 | |||
| 403 | /* Verify task state */ |
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| 404 | if (TASK->udebug.dt_state != UDEBUG_TS_ACTIVE) { |
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| 405 | mutex_unlock(&TASK->udebug.lock); |
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| 406 | return EINVAL; |
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| 407 | } |
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| 408 | |||
| 409 | ipl = interrupts_disable(); |
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| 410 | spinlock_lock(&TASK->lock); |
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| 411 | /* Copy down the thread IDs */ |
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| 412 | |||
| 413 | max_ids = buf_size / sizeof(unative_t); |
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| 414 | copied_ids = 0; |
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| 415 | |||
| 416 | /* FIXME: make sure the thread isn't past debug shutdown... */ |
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| 417 | for (cur = TASK->th_head.next; cur != &TASK->th_head; cur = cur->next) { |
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| 418 | /* Do not write past end of buffer */ |
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| 419 | if (copied_ids >= max_ids) break; |
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| 420 | |||
| 421 | t = list_get_instance(cur, thread_t, th_link); |
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| 422 | |||
| 423 | spinlock_lock(&t->lock); |
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| 424 | flags = t->flags; |
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| 425 | spinlock_unlock(&t->lock); |
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| 426 | |||
| 3602 | rimsky | 427 | /* Not interested in kernel threads. */ |
| 3438 | svoboda | 428 | if ((flags & THREAD_FLAG_USPACE) != 0) { |
| 429 | /* Using thread struct pointer as identification hash */ |
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| 430 | tid = (unative_t) t; |
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| 431 | id_buffer[copied_ids++] = tid; |
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| 432 | } |
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| 433 | } |
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| 434 | |||
| 435 | spinlock_unlock(&TASK->lock); |
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| 436 | interrupts_restore(ipl); |
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| 437 | |||
| 438 | mutex_unlock(&TASK->udebug.lock); |
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| 439 | |||
| 440 | *buffer = id_buffer; |
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| 441 | *n = copied_ids * sizeof(unative_t); |
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| 442 | |||
| 443 | return 0; |
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| 444 | } |
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| 445 | |||
| 3457 | svoboda | 446 | /** Read the arguments of a system call. |
| 447 | * |
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| 448 | * The arguments of the system call being being executed are copied |
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| 449 | * to an allocated buffer and a pointer to it is written to @a buffer. |
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| 450 | * The size of the buffer is exactly such that it can hold the maximum number |
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| 451 | * of system-call arguments. |
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| 452 | * |
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| 453 | * Unless the thread is currently blocked in a SYSCALL_B or SYSCALL_E event, |
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| 454 | * this function will fail with an EINVAL error code. |
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| 455 | * |
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| 456 | * @param buffer The buffer for storing thread hashes. |
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| 457 | */ |
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| 3438 | svoboda | 458 | int udebug_args_read(thread_t *t, void **buffer) |
| 459 | { |
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| 460 | int rc; |
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| 461 | unative_t *arg_buffer; |
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| 462 | |||
| 3602 | rimsky | 463 | /* Prepare a buffer to hold the arguments. */ |
| 3438 | svoboda | 464 | arg_buffer = malloc(6 * sizeof(unative_t), 0); |
| 465 | |||
| 3602 | rimsky | 466 | /* On success, this will lock t->udebug.lock. */ |
| 3438 | svoboda | 467 | rc = _thread_op_begin(t, false); |
| 468 | if (rc != EOK) { |
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| 469 | return rc; |
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| 470 | } |
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| 471 | |||
| 3602 | rimsky | 472 | /* Additionally we need to verify that we are inside a syscall. */ |
| 3438 | svoboda | 473 | if (t->udebug.cur_event != UDEBUG_EVENT_SYSCALL_B && |
| 474 | t->udebug.cur_event != UDEBUG_EVENT_SYSCALL_E) { |
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| 475 | _thread_op_end(t); |
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| 476 | return EINVAL; |
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| 477 | } |
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| 478 | |||
| 3602 | rimsky | 479 | /* Copy to a local buffer before releasing the lock. */ |
| 3438 | svoboda | 480 | memcpy(arg_buffer, t->udebug.syscall_args, 6 * sizeof(unative_t)); |
| 481 | |||
| 482 | _thread_op_end(t); |
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| 483 | |||
| 484 | *buffer = arg_buffer; |
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| 485 | return 0; |
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| 486 | } |
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| 487 | |||
| 3457 | svoboda | 488 | /** Read the memory of the debugged task. |
| 489 | * |
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| 490 | * Reads @a n bytes from the address space of the debugged task, starting |
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| 491 | * from @a uspace_addr. The bytes are copied into an allocated buffer |
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| 492 | * and a pointer to it is written into @a buffer. |
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| 493 | * |
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| 494 | * @param uspace_addr Address from where to start reading. |
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| 495 | * @param n Number of bytes to read. |
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| 496 | * @param buffer For storing a pointer to the allocated buffer. |
||
| 497 | */ |
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| 3438 | svoboda | 498 | int udebug_mem_read(unative_t uspace_addr, size_t n, void **buffer) |
| 499 | { |
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| 500 | void *data_buffer; |
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| 501 | int rc; |
||
| 502 | |||
| 503 | /* Verify task state */ |
||
| 504 | mutex_lock(&TASK->udebug.lock); |
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| 505 | |||
| 506 | if (TASK->udebug.dt_state != UDEBUG_TS_ACTIVE) { |
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| 507 | mutex_unlock(&TASK->udebug.lock); |
||
| 508 | return EBUSY; |
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| 509 | } |
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| 510 | |||
| 511 | data_buffer = malloc(n, 0); |
||
| 512 | |||
| 513 | /* NOTE: this is not strictly from a syscall... but that shouldn't |
||
| 514 | * be a problem */ |
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| 515 | rc = copy_from_uspace(data_buffer, (void *)uspace_addr, n); |
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| 516 | mutex_unlock(&TASK->udebug.lock); |
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| 517 | |||
| 518 | if (rc != 0) return rc; |
||
| 519 | |||
| 520 | *buffer = data_buffer; |
||
| 521 | return 0; |
||
| 522 | } |
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| 523 | |||
| 524 | /** @} |
||
| 525 | */ |