/**
* @brief Register the ModelHistory and ModelExecution engine
*/
-void NewFuzzer::register_engine(ModelHistory * history, ModelExecution *execution)
+void NewFuzzer::register_engine(ModelChecker *_model, ModelExecution *execution)
{
- this->history = history;
+ this->history = _model->get_history();
this->execution = execution;
}
if (curr_pred != NULL) {
Predicate * selected_branch = NULL;
- if (check_store_visibility(curr_pred, read_inst, inst_act_map, rf_set))
+ if (check_branch_inst(curr_pred, read_inst, inst_act_map, rf_set))
selected_branch = selectBranch(tid, curr_pred, read_inst);
else {
// no child of curr_pred matches read_inst, check back edges
while (it->hasNext()) {
curr_pred = it->next();
- if (check_store_visibility(curr_pred, read_inst, inst_act_map, rf_set)) {
+ if (check_branch_inst(curr_pred, read_inst, inst_act_map, rf_set)) {
selected_branch = selectBranch(tid, curr_pred, read_inst);
break;
}
}
+
+ delete it;
}
prune_writes(tid, selected_branch, rf_set, inst_act_map);
thrd_last_func_inst[thread_id] = read_inst;
}
- ASSERT(rf_set->size() != 0);
+ // The chosen branch fails, reselect new branches
+ while ( rf_set->size() == 0 ) {
+ Predicate * selected_branch = get_selected_child_branch(tid);
+ FuncNode * func_node = history->get_curr_func_node(tid);
+
+ // Add failed predicate to NewFuzzer and FuncNode
+ failed_predicates.put(selected_branch, true);
+ func_node->add_failed_predicate(selected_branch);
+ selected_branch->incr_fail_count();
+
+ //model_print("the %d read action of thread %d at %p is unsuccessful\n", read->get_seq_number(), read_thread->get_id(), read->get_location());
+
+ SnapVector<ModelAction *> * pruned_writes = thrd_pruned_writes[thread_id];
+ for (uint i = 0;i < pruned_writes->size();i++) {
+ rf_set->push_back( (*pruned_writes)[i] );
+ }
+
+ // Reselect a predicate and prune writes
+ Predicate * curr_pred = selected_branch->get_parent();
+ FuncInst * read_inst = thrd_last_func_inst[thread_id];
+ selected_branch = selectBranch(tid, curr_pred, read_inst);
+
+ inst_act_map_t * inst_act_map = func_node->get_inst_act_map(tid);
+ prune_writes(tid, selected_branch, rf_set, inst_act_map);
+
+ ASSERT(selected_branch);
+ }
+
int random_index = random() % rf_set->size();
return random_index;
}
-/* For children of curr_pred that matches read_inst.
- * If any store in rf_set satisfies the a child's predicate,
- * increment the store visibility count for it.
- *
+/* Check if children of curr_pred match read_inst.
* @return False if no child matches read_inst
*/
-bool NewFuzzer::check_store_visibility(Predicate * curr_pred, FuncInst * read_inst,
- inst_act_map_t * inst_act_map, SnapVector<ModelAction *> * rf_set)
+bool NewFuzzer::check_branch_inst(Predicate * curr_pred, FuncInst * read_inst,
+ inst_act_map_t * inst_act_map, SnapVector<ModelAction *> * rf_set)
{
available_branches_tmp_storage.clear();
/* The children predicates may have different FuncInsts */
if (branch->get_func_inst() == read_inst) {
- PredExprSet * pred_expressions = branch->get_pred_expressions();
any_child_match = true;
-
- /* Do not check unset predicates */
- if (pred_expressions->isEmpty()) {
- available_branches_tmp_storage.push_back(branch);
- continue;
- }
-
branch->incr_total_checking_count();
-
- /* Iterate over all write actions */
- for (uint j = 0;j < rf_set->size();j++) {
- ModelAction * write_act = (*rf_set)[j];
- uint64_t write_val = write_act->get_write_value();
- bool dummy = true;
- bool satisfy_predicate = check_predicate_expressions(pred_expressions, inst_act_map, write_val, &dummy);
-
- /* If one write value satisfies the predicate, go to check the next predicate */
- if (satisfy_predicate) {
- branch->incr_store_visible_count();
- available_branches_tmp_storage.push_back(branch);
- break;
- }
- }
+ available_branches_tmp_storage.push_back(branch);
}
}
return NULL;
}
- int index = choose_index(&available_branches_tmp_storage);
+ int index = choose_branch_index(&available_branches_tmp_storage);
Predicate * random_branch = available_branches_tmp_storage[ index ];
thrd_selected_child_branch[thread_id] = random_branch;
+ /* Remove the chosen branch from vec in case that this
+ * branch fails and need to choose another one */
+ available_branches_tmp_storage[index] = available_branches_tmp_storage.back();
+ available_branches_tmp_storage.pop_back();
+
return random_branch;
}
/**
* @brief Select a branch from the given predicate branch
*/
-int NewFuzzer::choose_index(SnapVector<Predicate *> * branches)
+int NewFuzzer::choose_branch_index(SnapVector<Predicate *> * branches)
{
- return random() % branches->size();
+ if (branches->size() == 1)
+ return 0;
+
+ double total_weight = 0;
+ SnapVector<double> weights;
+ for (uint i = 0;i < branches->size();i++) {
+ Predicate * branch = (*branches)[i];
+ double weight = branch->get_weight();
+ total_weight += weight;
+ weights.push_back(weight);
+ }
+
+ double prob = (double) random() / RAND_MAX;
+ double prob_sum = 0;
+ int index = 0;
+
+ for (uint i = 0;i < weights.size();i++) {
+ index = i;
+ prob_sum += (double) (weights[i] / total_weight);
+ if (prob_sum > prob) {
+ break;
+ }
+ }
+
+ return index;
+// return random() % branches->size();
}
Predicate * NewFuzzer::get_selected_child_branch(thread_id_t tid)
break;
}
+ delete pred_expr_it;
return satisfy_predicate;
}