Logo AND Algorithmique Numérique Distribuée

Public GIT Repository
Merge branch 'v3_9_x'
[simgrid.git] / src / mc / mc_dpor.c
index 48de38f..c3a3383 100644 (file)
-/* Copyright (c) 2008 Martin Quinson, Cristian Rosa.
-   All rights reserved.                                          */
+/* Copyright (c) 2008-2012. Da SimGrid Team. All rights reserved.           */
 
 /* This program is free software; you can redistribute it and/or modify it
  * under the terms of the license (GNU LGPL) which comes with this package. */
 
-#include "private.h"
+#include "mc_private.h"
 
 XBT_LOG_NEW_DEFAULT_SUBCATEGORY(mc_dpor, mc,
                                 "Logging specific to MC DPOR exploration");
 
+xbt_dynar_t visited_states;
+
+static int is_visited_state(void);
+static void visited_state_free(mc_safety_visited_state_t state);
+static void visited_state_free_voidp(void *s);
+
+static void visited_state_free(mc_safety_visited_state_t state){
+  if(state){
+    MC_free_snapshot(state->system_state);
+    xbt_free(state);
+  }
+}
+
+static void visited_state_free_voidp(void *s){
+  visited_state_free((mc_safety_visited_state_t) * (void **) s);
+}
+
+static int is_visited_state(){
+
+  if(_sg_mc_visited == 0)
+    return 0;
+
+  int raw_mem_set = (mmalloc_get_current_heap() == raw_heap);
+
+  MC_SET_RAW_MEM;
+
+  mc_safety_visited_state_t new_state = NULL;
+  new_state = xbt_new0(s_mc_safety_visited_state_t, 1);
+  new_state->system_state = MC_take_snapshot();
+  new_state->num = mc_stats->expanded_states;
+
+  MC_UNSET_RAW_MEM;
+  
+  if(xbt_dynar_is_empty(visited_states)){
+
+    MC_SET_RAW_MEM;
+    xbt_dynar_push(visited_states, &new_state); 
+    MC_UNSET_RAW_MEM;
+
+    if(raw_mem_set)
+      MC_SET_RAW_MEM;
+    return 0;
+
+  }else{
+
+    MC_SET_RAW_MEM;
+    
+    size_t current_chunks_used = new_state->system_state->heap_chunks_used;
+
+    unsigned int cursor = 0;
+    int previous_cursor = 0, next_cursor = 0;
+    int start = 0;
+    int end = xbt_dynar_length(visited_states) - 1;
+
+    mc_safety_visited_state_t state_test = NULL;
+    size_t chunks_used_test;
+    int same_chunks_not_found = 1;
+
+    while(start <= end && same_chunks_not_found){
+      cursor = (start + end) / 2;
+      state_test = (mc_safety_visited_state_t)xbt_dynar_get_as(visited_states, cursor, mc_safety_visited_state_t);
+      chunks_used_test = state_test->system_state->heap_chunks_used;
+      if(chunks_used_test < current_chunks_used)
+        start = cursor + 1;
+      if(chunks_used_test > current_chunks_used)
+        end = cursor - 1; 
+      if(chunks_used_test == current_chunks_used){
+        same_chunks_not_found = 0;
+        if(snapshot_compare(new_state->system_state, state_test->system_state) == 0){
+          xbt_dynar_remove_at(visited_states, cursor, NULL);
+          xbt_dynar_insert_at(visited_states, cursor, &new_state);
+          if(raw_mem_set)
+            MC_SET_RAW_MEM;
+          else
+            MC_UNSET_RAW_MEM;
+          return 1;
+        }else{
+          /* Search another state with same number of chunks used */
+          previous_cursor = cursor - 1;
+          while(previous_cursor >= 0){
+            state_test = (mc_safety_visited_state_t)xbt_dynar_get_as(visited_states, previous_cursor, mc_safety_visited_state_t);
+            chunks_used_test = state_test->system_state->heap_chunks_used;
+            if(chunks_used_test != current_chunks_used)
+              break;
+            if(snapshot_compare(new_state->system_state, state_test->system_state) == 0){
+              xbt_dynar_remove_at(visited_states, previous_cursor, NULL);
+              xbt_dynar_insert_at(visited_states, previous_cursor, &new_state);
+              if(raw_mem_set)
+                MC_SET_RAW_MEM;
+              else
+                MC_UNSET_RAW_MEM;
+              return 1;
+            }
+            previous_cursor--;
+          }
+          next_cursor = cursor + 1;
+          while(next_cursor < xbt_dynar_length(visited_states)){
+            state_test = (mc_safety_visited_state_t)xbt_dynar_get_as(visited_states, next_cursor, mc_safety_visited_state_t);
+            chunks_used_test = state_test->system_state->heap_chunks_used;
+            if(chunks_used_test != current_chunks_used)
+              break;
+            if(snapshot_compare(new_state->system_state, state_test->system_state) == 0){
+              xbt_dynar_remove_at(visited_states, next_cursor, NULL);
+              xbt_dynar_insert_at(visited_states, next_cursor, &new_state);
+              if(raw_mem_set)
+                MC_SET_RAW_MEM;
+              else
+                MC_UNSET_RAW_MEM;
+              return 1;
+            }
+            next_cursor++;
+          }
+        }   
+      }
+    }
+
+    state_test = (mc_safety_visited_state_t)xbt_dynar_get_as(visited_states, cursor, mc_safety_visited_state_t);
+    chunks_used_test = state_test->system_state->heap_chunks_used;
+
+    if(chunks_used_test < current_chunks_used)
+      xbt_dynar_insert_at(visited_states, cursor + 1, &new_state);
+    else
+      xbt_dynar_insert_at(visited_states, cursor, &new_state);
+
+    if(xbt_dynar_length(visited_states) > _sg_mc_visited){
+      int min = mc_stats->expanded_states;
+      unsigned int cursor2 = 0;
+      unsigned int index = 0;
+      xbt_dynar_foreach(visited_states, cursor2, state_test){
+        if(state_test->num < min){
+          index = cursor2;
+          min = state_test->num;
+        }
+      }
+      xbt_dynar_remove_at(visited_states, index, NULL);
+    }
+    
+    MC_UNSET_RAW_MEM;
+
+    if(raw_mem_set)
+      MC_SET_RAW_MEM;
+    
+    return 0;
+    
+  }
+}
+
 /**
  *  \brief Initialize the DPOR exploration algorithm
  */
 void MC_dpor_init()
 {
+  
+  int raw_mem_set = (mmalloc_get_current_heap() == raw_heap);
+
   mc_state_t initial_state = NULL;
   smx_process_t process;
   
   /* Create the initial state and push it into the exploration stack */
   MC_SET_RAW_MEM;
+
   initial_state = MC_state_new();
-  xbt_fifo_unshift(mc_stack, initial_state);
+  visited_states = xbt_dynar_new(sizeof(mc_safety_visited_state_t), visited_state_free_voidp);
+
   MC_UNSET_RAW_MEM;
 
   XBT_DEBUG("**************************************************");
@@ -30,51 +182,61 @@ void MC_dpor_init()
   MC_wait_for_requests();
 
   MC_SET_RAW_MEM;
   /* Get an enabled process and insert it in the interleave set of the initial state */
   xbt_swag_foreach(process, simix_global->process_list){
     if(MC_process_is_enabled(process)){
       MC_state_interleave_process(initial_state, process);
-      break;
+      XBT_DEBUG("Process %lu enabled with simcall %d", process->pid, process->simcall.call);
     }
   }
+
+  xbt_fifo_unshift(mc_stack_safety, initial_state);
+
   MC_UNSET_RAW_MEM;
-    
-  /* FIXME: Update Statistics 
-  mc_stats->state_size +=
-      xbt_setset_set_size(initial_state->enabled_transitions); */
+
+  if(raw_mem_set)
+    MC_SET_RAW_MEM;
+  else
+    MC_UNSET_RAW_MEM;
+  
 }
 
 
 /**
- *     \brief Perform the model-checking operation using a depth-first search exploration
+ *   \brief Perform the model-checking operation using a depth-first search exploration
  *         with Dynamic Partial Order Reductions
  */
 void MC_dpor(void)
 {
+
   char *req_str;
-  int value;
-  smx_req_t req = NULL, prev_req = NULL;
-  mc_state_t state = NULL, prev_state = NULL, next_state = NULL;
+  int value, value2;
+  smx_simcall_t req = NULL, prev_req = NULL, req2 = NULL;
+  s_smx_simcall_t req3;
+  mc_state_t state = NULL, prev_state = NULL, next_state = NULL, restore_state=NULL;
   smx_process_t process = NULL;
   xbt_fifo_item_t item = NULL;
+  int pos, i, interleave_size;
+  int interleave_proc[simix_process_maxpid];
 
-  while (xbt_fifo_size(mc_stack) > 0) {
+  while (xbt_fifo_size(mc_stack_safety) > 0) {
 
     /* Get current state */
     state = (mc_state_t) 
-      xbt_fifo_get_item_content(xbt_fifo_get_first_item(mc_stack));
+      xbt_fifo_get_item_content(xbt_fifo_get_first_item(mc_stack_safety));
 
     XBT_DEBUG("**************************************************");
     XBT_DEBUG("Exploration depth=%d (state=%p)(%u interleave)",
-           xbt_fifo_size(mc_stack), state,
-           MC_state_interleave_size(state));
+              xbt_fifo_size(mc_stack_safety), state,
+              MC_state_interleave_size(state));
 
     /* Update statistics */
     mc_stats->visited_states++;
 
     /* If there are processes to interleave and the maximum depth has not been reached
        then perform one step of the exploration algorithm */
-    if (xbt_fifo_size(mc_stack) < MAX_DEPTH &&
+    if (xbt_fifo_size(mc_stack_safety) < _sg_mc_max_depth &&
         (req = MC_state_get_request(state, &value))) {
 
       /* Debug information */
@@ -87,39 +249,85 @@ void MC_dpor(void)
       MC_state_set_executed_request(state, req, value);
       mc_stats->executed_transitions++;
 
+      if(MC_state_interleave_size(state)){
+        MC_SET_RAW_MEM;
+        req2 = MC_state_get_internal_request(state);
+        req3 = *req2;
+        for(i=0; i<simix_process_maxpid; i++)
+          interleave_proc[i] = 0;
+        i=0;
+        interleave_size = MC_state_interleave_size(state);
+        while(i < interleave_size){
+          i++;
+          prev_req = MC_state_get_request(state, &value2);
+          if(prev_req != NULL){
+            MC_state_set_executed_request(state, prev_req, value2);
+            prev_req = MC_state_get_internal_request(state);
+            if(MC_request_depend(&req3, prev_req)){
+              XBT_DEBUG("Simcall %d in process %lu dependant with simcall %d in process %lu", req3.call, req3.issuer->pid, prev_req->call, prev_req->issuer->pid);  
+              interleave_proc[prev_req->issuer->pid] = 1;
+            }else{
+              XBT_DEBUG("Simcall %d in process %lu independant with simcall %d in process %lu", req3.call, req3.issuer->pid, prev_req->call, prev_req->issuer->pid); 
+              MC_state_remove_interleave_process(state, prev_req->issuer);
+            }
+          }
+        }
+        xbt_swag_foreach(process, simix_global->process_list){
+          if(interleave_proc[process->pid] == 1)
+            MC_state_interleave_process(state, process);
+        }
+        MC_UNSET_RAW_MEM;
+      }
+
+      MC_state_set_executed_request(state, req, value);
+
       /* Answer the request */
-      SIMIX_request_pre(req, value); /* After this call req is no longer usefull */
+      SIMIX_simcall_pre(req, value); /* After this call req is no longer usefull */
 
       /* Wait for requests (schedules processes) */
       MC_wait_for_requests();
 
       /* Create the new expanded state */
       MC_SET_RAW_MEM;
+
       next_state = MC_state_new();
-      xbt_fifo_unshift(mc_stack, next_state);
 
-      /* Get an enabled process and insert it in the interleave set of the next state */
-      xbt_swag_foreach(process, simix_global->process_list){
-        if(MC_process_is_enabled(process)){
-          MC_state_interleave_process(next_state, process);
-          break;
+      if(!is_visited_state()){
+     
+        /* Get an enabled process and insert it in the interleave set of the next state */
+        xbt_swag_foreach(process, simix_global->process_list){
+          if(MC_process_is_enabled(process)){
+            MC_state_interleave_process(next_state, process);
+            XBT_DEBUG("Process %lu enabled with simcall %d", process->pid, process->simcall.call);
+          }
+        }
+
+        if(_sg_mc_checkpoint && ((xbt_fifo_size(mc_stack_safety) + 1) % _sg_mc_checkpoint == 0)){
+          next_state->system_state = MC_take_snapshot();
         }
+
+      }else{
+
+        XBT_DEBUG("State already visited !");
+        
       }
-      MC_UNSET_RAW_MEM;
 
-      /* FIXME: Update Statistics
-      mc_stats->state_size +=
-          xbt_setset_set_size(next_state->enabled_transitions);*/
+      xbt_fifo_unshift(mc_stack_safety, next_state);
+      MC_UNSET_RAW_MEM;
 
       /* Let's loop again */
 
       /* The interleave set is empty or the maximum depth is reached, let's back-track */
     } else {
-      XBT_DEBUG("There are no more processes to interleave.");
+
+      if(xbt_fifo_size(mc_stack_safety) == _sg_mc_max_depth)  
+        XBT_WARN("/!\\ Max depth reached ! /!\\ ");
+      else
+        XBT_DEBUG("There are no more processes to interleave.");
 
       /* Trash the current state, no longer needed */
       MC_SET_RAW_MEM;
-      xbt_fifo_shift(mc_stack);
+      xbt_fifo_shift(mc_stack_safety);
       MC_state_delete(state);
       MC_UNSET_RAW_MEM;
 
@@ -136,9 +344,10 @@ void MC_dpor(void)
          (from it's predecesor state), depends on any other previous request 
          executed before it. If it does then add it to the interleave set of the
          state that executed that previous request. */
-      while ((state = xbt_fifo_shift(mc_stack)) != NULL) {
+      
+      while ((state = xbt_fifo_shift(mc_stack_safety)) != NULL) {
         req = MC_state_get_internal_request(state);
-        xbt_fifo_foreach(mc_stack, item, prev_state, mc_state_t) {
+        xbt_fifo_foreach(mc_stack_safety, item, prev_state, mc_state_t) {
           if(MC_request_depend(req, MC_state_get_internal_request(prev_state))){
             if(XBT_LOG_ISENABLED(mc_dpor, xbt_log_priority_debug)){
               XBT_DEBUG("Dependent Transitions:");
@@ -152,20 +361,51 @@ void MC_dpor(void)
               xbt_free(req_str);              
             }
 
-            if(!MC_state_process_is_done(prev_state, req->issuer))
-              MC_state_interleave_process(prev_state, req->issuer);
-            else
-              XBT_DEBUG("Process %p is in done set", req->issuer);
+            break;
 
+          }else if(req->issuer == MC_state_get_internal_request(prev_state)->issuer){
+
+            XBT_DEBUG("Simcall %d and %d with same issuer", req->call, MC_state_get_internal_request(prev_state)->call);
             break;
+
+          }else{
+
+            MC_state_remove_interleave_process(prev_state, req->issuer);
+            XBT_DEBUG("Simcall %d in process %lu independant with simcall %d process %lu", req->call, req->issuer->pid, MC_state_get_internal_request(prev_state)->call, MC_state_get_internal_request(prev_state)->issuer->pid);  
+
           }
         }
+       
         if (MC_state_interleave_size(state)) {
           /* We found a back-tracking point, let's loop */
-          xbt_fifo_unshift(mc_stack, state);
-          XBT_DEBUG("Back-tracking to depth %d", xbt_fifo_size(mc_stack));
-          MC_UNSET_RAW_MEM;
-          MC_replay(mc_stack);
+          if(_sg_mc_checkpoint){
+            if(state->system_state != NULL){
+              MC_restore_snapshot(state->system_state);
+              xbt_fifo_unshift(mc_stack_safety, state);
+              MC_UNSET_RAW_MEM;
+            }else{
+              pos = xbt_fifo_size(mc_stack_safety);
+              item = xbt_fifo_get_first_item(mc_stack_safety);
+              while(pos>0){
+                restore_state = (mc_state_t) xbt_fifo_get_item_content(item);
+                if(restore_state->system_state != NULL){
+                  break;
+                }else{
+                  item = xbt_fifo_get_next_item(item);
+                  pos--;
+                }
+              }
+              MC_restore_snapshot(restore_state->system_state);
+              xbt_fifo_unshift(mc_stack_safety, state);
+              MC_UNSET_RAW_MEM;
+              MC_replay(mc_stack_safety, pos);
+            }
+          }else{
+            xbt_fifo_unshift(mc_stack_safety, state);
+            MC_UNSET_RAW_MEM;
+            MC_replay(mc_stack_safety, -1);
+          }
+          XBT_DEBUG("Back-tracking to depth %d", xbt_fifo_size(mc_stack_safety));
           break;
         } else {
           MC_state_delete(state);
@@ -174,6 +414,12 @@ void MC_dpor(void)
       MC_UNSET_RAW_MEM;
     }
   }
-  MC_UNSET_RAW_MEM;
+  MC_print_statistics(mc_stats);
+  MC_UNSET_RAW_MEM;  
+
   return;
 }
+
+
+
+