Eliminate system context
[c11tester.git] / model.cc
1 #include <stdio.h>
2 #include <algorithm>
3 #include <new>
4 #include <stdarg.h>
5 #include <string.h>
6 #include <cstdlib>
7
8 #include "model.h"
9 #include "action.h"
10 #include "schedule.h"
11 #include "snapshot-interface.h"
12 #include "common.h"
13 #include "datarace.h"
14 #include "threads-model.h"
15 #include "output.h"
16 #include "traceanalysis.h"
17 #include "execution.h"
18 #include "history.h"
19 #include "bugmessage.h"
20 #include "params.h"
21 #include "plugins.h"
22
23 ModelChecker *model = NULL;
24
25 void placeholder(void *) {
26         ASSERT(0);
27 }
28
29 #include <signal.h>
30
31 #define SIGSTACKSIZE 65536
32 static void mprot_handle_pf(int sig, siginfo_t *si, void *unused)
33 {
34         model_print("Segmentation fault at %p\n", si->si_addr);
35         model_print("For debugging, place breakpoint at: %s:%d\n",
36                                                         __FILE__, __LINE__);
37         print_trace();  // Trace printing may cause dynamic memory allocation
38         while(1)
39                 ;
40 }
41
42 void install_handler() {
43         stack_t ss;
44         ss.ss_sp = model_malloc(SIGSTACKSIZE);
45         ss.ss_size = SIGSTACKSIZE;
46         ss.ss_flags = 0;
47         sigaltstack(&ss, NULL);
48         struct sigaction sa;
49         sa.sa_flags = SA_SIGINFO | SA_NODEFER | SA_RESTART | SA_ONSTACK;
50         sigemptyset(&sa.sa_mask);
51         sa.sa_sigaction = mprot_handle_pf;
52
53         if (sigaction(SIGSEGV, &sa, NULL) == -1) {
54                 perror("sigaction(SIGSEGV)");
55                 exit(EXIT_FAILURE);
56         }
57
58 }
59
60 /** @brief Constructor */
61 ModelChecker::ModelChecker() :
62         /* Initialize default scheduler */
63         params(),
64         scheduler(new Scheduler()),
65         history(new ModelHistory()),
66         execution(new ModelExecution(this, scheduler)),
67         execution_number(1),
68         trace_analyses(),
69         inspect_plugin(NULL)
70 {
71         model_print("C11Tester\n"
72                                                         "Copyright (c) 2013 and 2019 Regents of the University of California. All rights reserved.\n"
73                                                         "Distributed under the GPLv2\n"
74                                                         "Written by Weiyu Luo, Brian Norris, and Brian Demsky\n\n");
75         memset(&stats,0,sizeof(struct execution_stats));
76         init_thread = new Thread(execution->get_next_id(), (thrd_t *) model_malloc(sizeof(thrd_t)), &placeholder, NULL, NULL);
77 #ifdef TLS
78         init_thread->setTLS((char *)get_tls_addr());
79 #endif
80         execution->add_thread(init_thread);
81         scheduler->set_current_thread(init_thread);
82         register_plugins();
83         execution->setParams(&params);
84         param_defaults(&params);
85         parse_options(&params);
86         initRaceDetector();
87         /* Configure output redirection for the model-checker */
88         install_handler();
89 }
90
91 /** @brief Destructor */
92 ModelChecker::~ModelChecker()
93 {
94         delete scheduler;
95 }
96
97 /** Method to set parameters */
98 model_params * ModelChecker::getParams() {
99         return &params;
100 }
101
102 /**
103  * Restores user program to initial state and resets all model-checker data
104  * structures.
105  */
106 void ModelChecker::reset_to_initial_state()
107 {
108
109         /**
110          * FIXME: if we utilize partial rollback, we will need to free only
111          * those pending actions which were NOT pending before the rollback
112          * point
113          */
114         for (unsigned int i = 0;i < get_num_threads();i++)
115                 delete get_thread(int_to_id(i))->get_pending();
116
117         snapshot_roll_back(snapshot);
118 }
119
120 /** @return the number of user threads created during this execution */
121 unsigned int ModelChecker::get_num_threads() const
122 {
123         return execution->get_num_threads();
124 }
125
126 /**
127  * Must be called from user-thread context (e.g., through the global
128  * thread_current() interface)
129  *
130  * @return The currently executing Thread.
131  */
132 Thread * ModelChecker::get_current_thread() const
133 {
134         return scheduler->get_current_thread();
135 }
136
137 /**
138  * @brief Choose the next thread to execute.
139  *
140  * This function chooses the next thread that should execute. It can enforce
141  * execution replay/backtracking or, if the model-checker has no preference
142  * regarding the next thread (i.e., when exploring a new execution ordering),
143  * we defer to the scheduler.
144  *
145  * @return The next chosen thread to run, if any exist. Or else if the current
146  * execution should terminate, return NULL.
147  */
148 Thread * ModelChecker::get_next_thread()
149 {
150
151         /*
152          * Have we completed exploring the preselected path? Then let the
153          * scheduler decide
154          */
155         return scheduler->select_next_thread();
156 }
157
158 /**
159  * @brief Assert a bug in the executing program.
160  *
161  * Use this function to assert any sort of bug in the user program. If the
162  * current trace is feasible (actually, a prefix of some feasible execution),
163  * then this execution will be aborted, printing the appropriate message. If
164  * the current trace is not yet feasible, the error message will be stashed and
165  * printed if the execution ever becomes feasible.
166  *
167  * @param msg Descriptive message for the bug (do not include newline char)
168  * @return True if bug is immediately-feasible
169  */
170 void ModelChecker::assert_bug(const char *msg, ...)
171 {
172         char str[800];
173
174         va_list ap;
175         va_start(ap, msg);
176         vsnprintf(str, sizeof(str), msg, ap);
177         va_end(ap);
178
179         execution->assert_bug(str);
180 }
181
182 /**
183  * @brief Assert a bug in the executing program, asserted by a user thread
184  * @see ModelChecker::assert_bug
185  * @param msg Descriptive message for the bug (do not include newline char)
186  */
187 void ModelChecker::assert_user_bug(const char *msg)
188 {
189         /* If feasible bug, bail out now */
190         assert_bug(msg);
191         switch_thread(NULL);
192 }
193
194 /** @brief Print bug report listing for this execution (if any bugs exist) */
195 void ModelChecker::print_bugs() const
196 {
197         SnapVector<bug_message *> *bugs = execution->get_bugs();
198
199         model_print("Bug report: %zu bug%s detected\n",
200                                                         bugs->size(),
201                                                         bugs->size() > 1 ? "s" : "");
202         for (unsigned int i = 0;i < bugs->size();i++)
203                 (*bugs)[i] -> print();
204 }
205
206 /**
207  * @brief Record end-of-execution stats
208  *
209  * Must be run when exiting an execution. Records various stats.
210  * @see struct execution_stats
211  */
212 void ModelChecker::record_stats()
213 {
214         stats.num_total ++;
215         if (execution->have_bug_reports())
216                 stats.num_buggy_executions ++;
217         else if (execution->is_complete_execution())
218                 stats.num_complete ++;
219         else {
220                 //All threads are sleeping
221                 /**
222                  * @todo We can violate this ASSERT() when fairness/sleep sets
223                  * conflict to cause an execution to terminate, e.g. with:
224                  * Scheduler: [0: disabled][1: disabled][2: sleep][3: current, enabled]
225                  */
226                 //ASSERT(scheduler->all_threads_sleeping());
227         }
228 }
229
230 /** @brief Print execution stats */
231 void ModelChecker::print_stats() const
232 {
233         model_print("Number of complete, bug-free executions: %d\n", stats.num_complete);
234         model_print("Number of buggy executions: %d\n", stats.num_buggy_executions);
235         model_print("Total executions: %d\n", stats.num_total);
236 }
237
238 /**
239  * @brief End-of-exeuction print
240  * @param printbugs Should any existing bugs be printed?
241  */
242 void ModelChecker::print_execution(bool printbugs) const
243 {
244         model_print("Program output from execution %d:\n",
245                                                         get_execution_number());
246         print_program_output();
247
248         if (params.verbose >= 3) {
249                 print_stats();
250         }
251
252         /* Don't print invalid bugs */
253         if (printbugs && execution->have_bug_reports()) {
254                 model_print("\n");
255                 print_bugs();
256         }
257
258         model_print("\n");
259         execution->print_summary();
260 }
261
262 /**
263  * Queries the model-checker for more executions to explore and, if one
264  * exists, resets the model-checker state to execute a new execution.
265  *
266  * @return If there are more executions to explore, return true. Otherwise,
267  * return false.
268  */
269 void ModelChecker::finish_execution(bool more_executions)
270 {
271         DBG();
272         /* Is this execution a feasible execution that's worth bug-checking? */
273         bool complete = (execution->is_complete_execution() ||
274                                                                          execution->have_bug_reports());
275
276         /* End-of-execution bug checks */
277         if (complete) {
278                 if (execution->is_deadlocked())
279                         assert_bug("Deadlock detected");
280
281                 run_trace_analyses();
282         }
283
284         record_stats();
285         /* Output */
286         if ( (complete && params.verbose) || params.verbose>1 || (complete && execution->have_bug_reports()))
287                 print_execution(complete);
288         else
289                 clear_program_output();
290
291         execution_number ++;
292         history->set_new_exec_flag();
293
294         if (more_executions)
295                 reset_to_initial_state();
296 }
297
298 /** @brief Run trace analyses on complete trace */
299 void ModelChecker::run_trace_analyses() {
300         for (unsigned int i = 0;i < trace_analyses.size();i ++)
301                 trace_analyses[i] -> analyze(execution->get_action_trace());
302 }
303
304 /**
305  * @brief Get a Thread reference by its ID
306  * @param tid The Thread's ID
307  * @return A Thread reference
308  */
309 Thread * ModelChecker::get_thread(thread_id_t tid) const
310 {
311         return execution->get_thread(tid);
312 }
313
314 /**
315  * @brief Get a reference to the Thread in which a ModelAction was executed
316  * @param act The ModelAction
317  * @return A Thread reference
318  */
319 Thread * ModelChecker::get_thread(const ModelAction *act) const
320 {
321         return execution->get_thread(act);
322 }
323
324 void ModelChecker::startRunExecution(Thread *old) {
325         while (true) {
326                 if (params.traceminsize != 0 &&
327                                 execution->get_curr_seq_num() > checkfree) {
328                         checkfree += params.checkthreshold;
329                         execution->collectActions();
330                 }
331
332                 thread_chosen = false;
333                 curr_thread_num = 1;
334
335                 Thread *thr = getNextThread();
336                 if (thr != nullptr) {
337                         scheduler->set_current_thread(thr);
338
339                         if (Thread::swap(old, thr) < 0) {
340                                 perror("swap threads");
341                                 exit(EXIT_FAILURE);
342                         }
343                         return;
344                 }
345
346                 if (execution->has_asserted()) {
347                         finishRunExecution(old);
348                         return;
349                 }
350                 if (!chosen_thread)
351                         chosen_thread = get_next_thread();
352                 if (!chosen_thread || chosen_thread->is_model_thread()) {
353                         finishRunExecution(old);
354                         return;
355                 }
356                 if (chosen_thread->just_woken_up()) {
357                         chosen_thread->set_wakeup_state(false);
358                         chosen_thread->set_pending(NULL);
359                         chosen_thread = NULL;
360                         // Allow this thread to stash the next pending action
361                         continue;
362                 }
363
364                 /* Consume the next action for a Thread */
365                 consumeAction();
366
367                 if (should_terminate_execution()) {
368                         finishRunExecution(old);
369                         return;
370                 }
371         }
372 }
373
374 Thread* ModelChecker::getNextThread()
375 {
376         Thread *nextThread = nullptr;
377         for (unsigned int i = curr_thread_num;i < get_num_threads();i++) {
378                 thread_id_t tid = int_to_id(i);
379                 Thread *thr = get_thread(tid);
380
381                 if (!thr->is_complete() && !thr->get_pending()) {
382                         curr_thread_num = i;
383                         nextThread = thr;
384                         break;
385                 }
386
387                 /* Don't schedule threads which should be disabled */
388                 ModelAction *act = thr->get_pending();
389                 if (act && execution->is_enabled(thr) && !execution->check_action_enabled(act)) {
390                         scheduler->sleep(thr);
391                 }
392                 chooseThread(act, thr);
393         }
394         return nextThread;
395 }
396
397 /* Swap back to system_context and terminate this execution */
398 void ModelChecker::finishRunExecution(Thread *old)
399 {
400         scheduler->set_current_thread(NULL);
401
402         /** If we have more executions, we won't make it past this call. */
403         finish_execution(execution_number < params.maxexecutions);
404
405
406         /** We finished the final execution.  Print stuff and exit. */
407         model_print("******* Model-checking complete: *******\n");
408         print_stats();
409
410         /* Have the trace analyses dump their output. */
411         for (unsigned int i = 0;i < trace_analyses.size();i++)
412                 trace_analyses[i]->finish();
413
414         /* unlink tmp file created by last child process */
415         char filename[256];
416         snprintf_(filename, sizeof(filename), "C11FuzzerTmp%d", getpid());
417         unlink(filename);
418
419         /* Exit. */
420         _Exit(0);
421 }
422
423 void ModelChecker::consumeAction()
424 {
425         ModelAction *curr = chosen_thread->get_pending();
426         Thread * th = thread_current();
427         chosen_thread->set_pending(NULL);
428         chosen_thread = execution->take_step(curr);
429 }
430
431 /* Allow pending relaxed/release stores or thread actions to perform first */
432 void ModelChecker::chooseThread(ModelAction *act, Thread *thr)
433 {
434         if (!thread_chosen && act && execution->is_enabled(thr) && (thr->get_state() != THREAD_BLOCKED) ) {
435                 if (act->is_write()) {
436                         std::memory_order order = act->get_mo();
437                         if (order == std::memory_order_relaxed || \
438                                         order == std::memory_order_release) {
439                                 chosen_thread = thr;
440                                 thread_chosen = true;
441                         }
442                 } else if (act->get_type() == THREAD_CREATE || \
443                                                          act->get_type() == PTHREAD_CREATE || \
444                                                          act->get_type() == THREAD_START || \
445                                                          act->get_type() == THREAD_FINISH) {
446                         chosen_thread = thr;
447                         thread_chosen = true;
448                 }
449         }
450 }
451
452 uint64_t ModelChecker::switch_thread(ModelAction *act)
453 {
454         if (modellock) {
455                 static bool fork_message_printed = false;
456
457                 if (!fork_message_printed) {
458                         model_print("Fork handler or dead thread trying to call into model checker...\n");
459                         fork_message_printed = true;
460                 }
461                 delete act;
462                 return 0;
463         }
464         DBG();
465         Thread *old = thread_current();
466         ASSERT(!old->get_pending());
467
468         if (inspect_plugin != NULL) {
469                 inspect_plugin->inspectModelAction(act);
470         }
471
472         old->set_pending(act);
473
474         if (old->is_waiting_on(old))
475                 assert_bug("Deadlock detected (thread %u)", curr_thread_num);
476
477         if (act && execution->is_enabled(old) && !execution->check_action_enabled(act)) {
478                 scheduler->sleep(old);
479         }
480         chooseThread(act, old);
481
482         curr_thread_num++;
483         Thread* next = getNextThread();
484         if (next != nullptr) {
485                 scheduler->set_current_thread(next);
486                 if (Thread::swap(old, next) < 0) {
487                         perror("swap threads");
488                         exit(EXIT_FAILURE);
489                 }
490         } else
491                 handleChosenThread(old);
492
493         return old->get_return_value();
494 }
495
496 void ModelChecker::handleChosenThread(Thread *old)
497 {
498         if (execution->has_asserted()) {
499                 finishRunExecution(old);
500                 return;
501         }
502         if (!chosen_thread)
503                 chosen_thread = get_next_thread();
504         if (!chosen_thread || chosen_thread->is_model_thread()) {
505                 finishRunExecution(old);
506                 return;
507         }
508         if (chosen_thread->just_woken_up()) {
509                 chosen_thread->set_wakeup_state(false);
510                 chosen_thread->set_pending(NULL);
511                 chosen_thread = NULL;
512                 // Allow this thread to stash the next pending action
513                 startRunExecution(old);
514                 return;
515         }
516
517         // Consume the next action for a Thread
518         consumeAction();
519
520         if (should_terminate_execution()) {
521                 finishRunExecution(old);
522                 return;
523         } else
524                 startRunExecution(old);
525 }
526
527 void ModelChecker::startChecker() {
528         startExecution();
529         //Need to initial random number generator state to avoid resets on rollback
530         initstate(423121, random_state, sizeof(random_state));
531
532         snapshot = take_snapshot();
533
534         //reset random number generator state
535         setstate(random_state);
536
537         install_trace_analyses(get_execution());
538         redirect_output();
539         initMainThread();
540 }
541
542 bool ModelChecker::should_terminate_execution()
543 {
544         if (execution->have_bug_reports()) {
545                 execution->set_assert();
546                 return true;
547         } else if (execution->isFinished()) {
548                 return true;
549         }
550         return false;
551 }