source: mainline/kernel/generic/src/udebug/udebug.c@ 705ca2b

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 705ca2b was bab75df6, checked in by Jiri Svoboda <jiri@…>, 7 years ago

Let kernel code get printf via the standard stdio header. Clean up unused includes.

  • Property mode set to 100644
File size: 13.4 KB
Line 
1/*
2 * Copyright (c) 2008 Jiri Svoboda
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup kernel_generic
30 * @{
31 */
32
33/**
34 * @file
35 * @brief Udebug hooks and data structure management.
36 *
37 * Udebug is an interface that makes userspace debuggers possible.
38 */
39
40#include <assert.h>
41#include <debug.h>
42#include <synch/waitq.h>
43#include <udebug/udebug.h>
44#include <errno.h>
45#include <arch.h>
46#include <proc/task.h>
47#include <proc/thread.h>
48
49/** Initialize udebug part of task structure.
50 *
51 * Called as part of task structure initialization.
52 * @param ut Pointer to the structure to initialize.
53 *
54 */
55void udebug_task_init(udebug_task_t *ut)
56{
57 mutex_initialize(&ut->lock, MUTEX_PASSIVE);
58 ut->dt_state = UDEBUG_TS_INACTIVE;
59 ut->begin_call = NULL;
60 ut->not_stoppable_count = 0;
61 ut->evmask = 0;
62}
63
64/** Initialize udebug part of thread structure.
65 *
66 * Called as part of thread structure initialization.
67 *
68 * @param ut Pointer to the structure to initialize.
69 *
70 */
71void udebug_thread_initialize(udebug_thread_t *ut)
72{
73 mutex_initialize(&ut->lock, MUTEX_PASSIVE);
74 waitq_initialize(&ut->go_wq);
75 condvar_initialize(&ut->active_cv);
76
77 ut->go_call = NULL;
78 ut->uspace_state = NULL;
79 ut->go = false;
80 ut->stoppable = true;
81 ut->active = false;
82 ut->cur_event = 0; /* None */
83}
84
85/** Wait for a GO message.
86 *
87 * When a debugging event occurs in a thread or the thread is stopped,
88 * this function is called to block the thread until a GO message
89 * is received.
90 *
91 * @param wq The wait queue used by the thread to wait for GO messages.
92 *
93 */
94static void udebug_wait_for_go(waitq_t *wq)
95{
96 ipl_t ipl = waitq_sleep_prepare(wq);
97
98 wq->missed_wakeups = 0; /* Enforce blocking. */
99 bool blocked;
100 (void) waitq_sleep_timeout_unsafe(wq, SYNCH_NO_TIMEOUT, SYNCH_FLAGS_NONE, &blocked);
101 waitq_sleep_finish(wq, blocked, ipl);
102}
103
104/** Start of stoppable section.
105 *
106 * A stoppable section is a section of code where if the thread can
107 * be stoped. In other words, if a STOP operation is issued, the thread
108 * is guaranteed not to execute any userspace instructions until the
109 * thread is resumed.
110 *
111 * Having stoppable sections is better than having stopping points, since
112 * a thread can be stopped even when it is blocked indefinitely in a system
113 * call (whereas it would not reach any stopping point).
114 *
115 */
116void udebug_stoppable_begin(void)
117{
118 assert(THREAD);
119 assert(TASK);
120
121 mutex_lock(&TASK->udebug.lock);
122
123 int nsc = --TASK->udebug.not_stoppable_count;
124
125 /* Lock order OK, THREAD->udebug.lock is after TASK->udebug.lock */
126 mutex_lock(&THREAD->udebug.lock);
127 assert(THREAD->udebug.stoppable == false);
128 THREAD->udebug.stoppable = true;
129
130 if ((TASK->udebug.dt_state == UDEBUG_TS_BEGINNING) && (nsc == 0)) {
131 /*
132 * This was the last non-stoppable thread. Reply to
133 * DEBUG_BEGIN call.
134 *
135 */
136
137 call_t *db_call = TASK->udebug.begin_call;
138 assert(db_call);
139
140 TASK->udebug.dt_state = UDEBUG_TS_ACTIVE;
141 TASK->udebug.begin_call = NULL;
142
143 IPC_SET_RETVAL(db_call->data, 0);
144 ipc_answer(&TASK->answerbox, db_call);
145 } else if (TASK->udebug.dt_state == UDEBUG_TS_ACTIVE) {
146 /*
147 * Active debugging session
148 */
149
150 if (THREAD->udebug.active == true &&
151 THREAD->udebug.go == false) {
152 /*
153 * Thread was requested to stop - answer go call
154 *
155 */
156
157 /* Make sure nobody takes this call away from us */
158 call_t *go_call = THREAD->udebug.go_call;
159 THREAD->udebug.go_call = NULL;
160 assert(go_call);
161
162 IPC_SET_RETVAL(go_call->data, 0);
163 IPC_SET_ARG1(go_call->data, UDEBUG_EVENT_STOP);
164
165 THREAD->udebug.cur_event = UDEBUG_EVENT_STOP;
166 ipc_answer(&TASK->answerbox, go_call);
167 }
168 }
169
170 mutex_unlock(&THREAD->udebug.lock);
171 mutex_unlock(&TASK->udebug.lock);
172}
173
174/** End of a stoppable section.
175 *
176 * This is the point where the thread will block if it is stopped.
177 * (As, by definition, a stopped thread must not leave its stoppable
178 * section).
179 *
180 */
181void udebug_stoppable_end(void)
182{
183restart:
184 mutex_lock(&TASK->udebug.lock);
185 mutex_lock(&THREAD->udebug.lock);
186
187 if ((THREAD->udebug.active) && (THREAD->udebug.go == false)) {
188 mutex_unlock(&THREAD->udebug.lock);
189 mutex_unlock(&TASK->udebug.lock);
190
191 udebug_wait_for_go(&THREAD->udebug.go_wq);
192
193 goto restart;
194 /* Must try again - have to lose stoppability atomically. */
195 } else {
196 ++TASK->udebug.not_stoppable_count;
197 assert(THREAD->udebug.stoppable == true);
198 THREAD->udebug.stoppable = false;
199
200 mutex_unlock(&THREAD->udebug.lock);
201 mutex_unlock(&TASK->udebug.lock);
202 }
203}
204
205/** Upon being scheduled to run, check if the current thread should stop.
206 *
207 * This function is called from clock().
208 *
209 */
210void udebug_before_thread_runs(void)
211{
212 /* Check if we're supposed to stop */
213 udebug_stoppable_begin();
214 udebug_stoppable_end();
215}
216
217/** Syscall event hook.
218 *
219 * Must be called before and after servicing a system call. This generates
220 * a SYSCALL_B or SYSCALL_E event, depending on the value of @a end_variant.
221 *
222 */
223void udebug_syscall_event(sysarg_t a1, sysarg_t a2, sysarg_t a3,
224 sysarg_t a4, sysarg_t a5, sysarg_t a6, sysarg_t id, sysarg_t rc,
225 bool end_variant)
226{
227 udebug_event_t etype =
228 end_variant ? UDEBUG_EVENT_SYSCALL_E : UDEBUG_EVENT_SYSCALL_B;
229
230 mutex_lock(&TASK->udebug.lock);
231 mutex_lock(&THREAD->udebug.lock);
232
233 /* Must only generate events when in debugging session and is go. */
234 if (THREAD->udebug.active != true || THREAD->udebug.go == false ||
235 (TASK->udebug.evmask & UDEBUG_EVMASK(etype)) == 0) {
236 mutex_unlock(&THREAD->udebug.lock);
237 mutex_unlock(&TASK->udebug.lock);
238 return;
239 }
240
241 /* Fill in the GO response. */
242 call_t *call = THREAD->udebug.go_call;
243 THREAD->udebug.go_call = NULL;
244
245 IPC_SET_RETVAL(call->data, 0);
246 IPC_SET_ARG1(call->data, etype);
247 IPC_SET_ARG2(call->data, id);
248 IPC_SET_ARG3(call->data, rc);
249
250 THREAD->udebug.syscall_args[0] = a1;
251 THREAD->udebug.syscall_args[1] = a2;
252 THREAD->udebug.syscall_args[2] = a3;
253 THREAD->udebug.syscall_args[3] = a4;
254 THREAD->udebug.syscall_args[4] = a5;
255 THREAD->udebug.syscall_args[5] = a6;
256
257 /*
258 * Make sure udebug.go is false when going to sleep
259 * in case we get woken up by DEBUG_END. (At which
260 * point it must be back to the initial true value).
261 *
262 */
263 THREAD->udebug.go = false;
264 THREAD->udebug.cur_event = etype;
265
266 ipc_answer(&TASK->answerbox, call);
267
268 mutex_unlock(&THREAD->udebug.lock);
269 mutex_unlock(&TASK->udebug.lock);
270
271 udebug_wait_for_go(&THREAD->udebug.go_wq);
272}
273
274/** Thread-creation event hook combined with attaching the thread.
275 *
276 * Must be called when a new userspace thread is created in the debugged
277 * task. Generates a THREAD_B event. Also attaches the thread @a t
278 * to the task @a ta.
279 *
280 * This is necessary to avoid a race condition where the BEGIN and THREAD_READ
281 * requests would be handled inbetween attaching the thread and checking it
282 * for being in a debugging session to send the THREAD_B event. We could then
283 * either miss threads or get some threads both in the thread list
284 * and get a THREAD_B event for them.
285 *
286 * @param thread Structure of the thread being created. Not locked, as the
287 * thread is not executing yet.
288 * @param task Task to which the thread should be attached.
289 *
290 */
291void udebug_thread_b_event_attach(struct thread *thread, struct task *task)
292{
293 mutex_lock(&TASK->udebug.lock);
294 mutex_lock(&THREAD->udebug.lock);
295
296 thread_attach(thread, task);
297
298 LOG("Check state");
299
300 /* Must only generate events when in debugging session */
301 if (THREAD->udebug.active != true) {
302 LOG("udebug.active: %s, udebug.go: %s",
303 THREAD->udebug.active ? "Yes(+)" : "No",
304 THREAD->udebug.go ? "Yes(-)" : "No");
305
306 mutex_unlock(&THREAD->udebug.lock);
307 mutex_unlock(&TASK->udebug.lock);
308 return;
309 }
310
311 LOG("Trigger event");
312
313 call_t *call = THREAD->udebug.go_call;
314
315 THREAD->udebug.go_call = NULL;
316 IPC_SET_RETVAL(call->data, 0);
317 IPC_SET_ARG1(call->data, UDEBUG_EVENT_THREAD_B);
318 IPC_SET_ARG2(call->data, (sysarg_t) thread);
319
320 /*
321 * Make sure udebug.go is false when going to sleep
322 * in case we get woken up by DEBUG_END. (At which
323 * point it must be back to the initial true value).
324 *
325 */
326 THREAD->udebug.go = false;
327 THREAD->udebug.cur_event = UDEBUG_EVENT_THREAD_B;
328
329 ipc_answer(&TASK->answerbox, call);
330
331 mutex_unlock(&THREAD->udebug.lock);
332 mutex_unlock(&TASK->udebug.lock);
333
334 LOG("Wait for Go");
335 udebug_wait_for_go(&THREAD->udebug.go_wq);
336}
337
338/** Thread-termination event hook.
339 *
340 * Must be called when the current thread is terminating.
341 * Generates a THREAD_E event.
342 *
343 */
344void udebug_thread_e_event(void)
345{
346 mutex_lock(&TASK->udebug.lock);
347 mutex_lock(&THREAD->udebug.lock);
348
349 LOG("Check state");
350
351 /* Must only generate events when in debugging session. */
352 if (THREAD->udebug.active != true) {
353 LOG("udebug.active: %s, udebug.go: %s",
354 THREAD->udebug.active ? "Yes" : "No",
355 THREAD->udebug.go ? "Yes" : "No");
356
357 mutex_unlock(&THREAD->udebug.lock);
358 mutex_unlock(&TASK->udebug.lock);
359 return;
360 }
361
362 LOG("Trigger event");
363
364 call_t *call = THREAD->udebug.go_call;
365
366 THREAD->udebug.go_call = NULL;
367 IPC_SET_RETVAL(call->data, 0);
368 IPC_SET_ARG1(call->data, UDEBUG_EVENT_THREAD_E);
369
370 /* Prevent any further debug activity in thread. */
371 THREAD->udebug.active = false;
372 THREAD->udebug.cur_event = 0; /* None */
373 THREAD->udebug.go = false; /* Set to initial value */
374
375 ipc_answer(&TASK->answerbox, call);
376
377 mutex_unlock(&THREAD->udebug.lock);
378 mutex_unlock(&TASK->udebug.lock);
379
380 /*
381 * This event does not sleep - debugging has finished
382 * in this thread.
383 *
384 */
385}
386
387/** Terminate task debugging session.
388 *
389 * Gracefully terminate the debugging session for a task. If the debugger
390 * is still waiting for events on some threads, it will receive a
391 * FINISHED event for each of them.
392 *
393 * @param task Task structure. task->udebug.lock must be already locked.
394 *
395 * @return Zero on success or an error code.
396 *
397 */
398errno_t udebug_task_cleanup(struct task *task)
399{
400 assert(mutex_locked(&task->udebug.lock));
401
402 if ((task->udebug.dt_state != UDEBUG_TS_BEGINNING) &&
403 (task->udebug.dt_state != UDEBUG_TS_ACTIVE)) {
404 return EINVAL;
405 }
406
407 LOG("Task %" PRIu64, task->taskid);
408
409 /* Finish debugging of all userspace threads */
410 list_foreach(task->threads, th_link, thread_t, thread) {
411 mutex_lock(&thread->udebug.lock);
412
413 /* Only process userspace threads. */
414 if (thread->uspace) {
415 /* Prevent any further debug activity in thread. */
416 thread->udebug.active = false;
417 thread->udebug.cur_event = 0; /* None */
418
419 /* Is the thread still go? */
420 if (thread->udebug.go == true) {
421 /*
422 * Yes, so clear go. As active == false,
423 * this doesn't affect anything.
424 */
425 thread->udebug.go = false;
426
427 /* Answer GO call */
428 LOG("Answer GO call with EVENT_FINISHED.");
429
430 IPC_SET_RETVAL(thread->udebug.go_call->data, 0);
431 IPC_SET_ARG1(thread->udebug.go_call->data,
432 UDEBUG_EVENT_FINISHED);
433
434 ipc_answer(&task->answerbox, thread->udebug.go_call);
435 thread->udebug.go_call = NULL;
436 } else {
437 /*
438 * Debug_stop is already at initial value.
439 * Yet this means the thread needs waking up.
440 *
441 */
442
443 /*
444 * thread's lock must not be held when calling
445 * waitq_wakeup.
446 *
447 */
448 waitq_wakeup(&thread->udebug.go_wq, WAKEUP_FIRST);
449 }
450
451 mutex_unlock(&thread->udebug.lock);
452 condvar_broadcast(&thread->udebug.active_cv);
453 } else
454 mutex_unlock(&thread->udebug.lock);
455 }
456
457 task->udebug.dt_state = UDEBUG_TS_INACTIVE;
458 task->udebug.debugger = NULL;
459
460 return 0;
461}
462
463/** Wait for debugger to handle a fault in this thread.
464 *
465 * When a thread faults and someone is subscribed to the FAULT kernel event,
466 * this function is called to wait for a debugging session to give userspace
467 * a chance to examine the faulting thead/task. When the debugging session
468 * is over, this function returns (so that thread/task cleanup can continue).
469 *
470 */
471void udebug_thread_fault(void)
472{
473 udebug_stoppable_begin();
474
475 /* Wait until a debugger attends to us. */
476 mutex_lock(&THREAD->udebug.lock);
477 while (!THREAD->udebug.active)
478 condvar_wait(&THREAD->udebug.active_cv, &THREAD->udebug.lock);
479 mutex_unlock(&THREAD->udebug.lock);
480
481 /* Make sure the debugging session is over before proceeding. */
482 mutex_lock(&THREAD->udebug.lock);
483 while (THREAD->udebug.active)
484 condvar_wait(&THREAD->udebug.active_cv, &THREAD->udebug.lock);
485 mutex_unlock(&THREAD->udebug.lock);
486
487 udebug_stoppable_end();
488}
489
490/** @}
491 */
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