using simgrid::mc::remote;
-extern "C" {
-
XBT_LOG_NEW_DEFAULT_SUBCATEGORY(mc_request, mc,
"Logging specific to MC (request)");
}
}
+namespace simgrid {
+namespace mc {
+
// Does half the job
static inline
-int MC_request_depend_asymmetric(smx_simcall_t r1, smx_simcall_t r2)
+bool request_depend_asymmetric(smx_simcall_t r1, smx_simcall_t r2)
{
if (r1->call == SIMCALL_COMM_ISEND && r2->call == SIMCALL_COMM_IRECV)
- return FALSE;
+ return false;
if (r1->call == SIMCALL_COMM_IRECV && r2->call == SIMCALL_COMM_ISEND)
- return FALSE;
+ return false;
// Those are internal requests, we do not need indirection
// because those objects are copies:
if (rdv != synchro2->comm.rdv_cpy
&& simcall_comm_wait__get__timeout(r2) <= 0)
- return FALSE;
+ return false;
if ((r1->issuer != synchro2->comm.src_proc)
&& (r1->issuer != synchro2->comm.dst_proc)
&& simcall_comm_wait__get__timeout(r2) <= 0)
- return FALSE;
+ return false;
if ((r1->call == SIMCALL_COMM_ISEND)
&& (synchro2->comm.type == SIMIX_COMM_SEND)
&& (synchro2->comm.src_buff !=
simcall_comm_isend__get__src_buff(r1))
&& simcall_comm_wait__get__timeout(r2) <= 0)
- return FALSE;
+ return false;
if ((r1->call == SIMCALL_COMM_IRECV)
&& (synchro2->comm.type == SIMIX_COMM_RECEIVE)
&& (synchro2->comm.dst_buff != simcall_comm_irecv__get__dst_buff(r1))
&& simcall_comm_wait__get__timeout(r2) <= 0)
- return FALSE;
+ return false;
}
/* FIXME: the following rule assumes that the result of the
if (r1->call == SIMCALL_COMM_WAIT
&& (r2->call == SIMCALL_COMM_WAIT || r2->call == SIMCALL_COMM_TEST)
&& (synchro1->comm.src_proc == nullptr || synchro1->comm.dst_proc == NULL))
- return FALSE;
+ return false;
if (r1->call == SIMCALL_COMM_TEST &&
(simcall_comm_test__get__comm(r1) == nullptr
|| synchro1->comm.src_buff == nullptr
|| synchro1->comm.dst_buff == nullptr))
- return FALSE;
+ return false;
if (r1->call == SIMCALL_COMM_TEST && r2->call == SIMCALL_COMM_WAIT
&& synchro1->comm.src_buff == synchro2->comm.src_buff
&& synchro1->comm.dst_buff == synchro2->comm.dst_buff)
- return FALSE;
+ return false;
if (r1->call == SIMCALL_COMM_WAIT && r2->call == SIMCALL_COMM_TEST
&& synchro1->comm.src_buff != nullptr
&& synchro1->comm.dst_buff != synchro2->comm.src_buff
&& synchro1->comm.dst_buff != synchro2->comm.dst_buff
&& synchro2->comm.dst_buff != synchro1->comm.src_buff)
- return FALSE;
+ return false;
- return TRUE;
+ return true;
}
// Those are MC_state_get_internal_request(state)
-int MC_request_depend(smx_simcall_t r1, smx_simcall_t r2)
+bool request_depend(smx_simcall_t r1, smx_simcall_t r2)
{
- if (mc_reduce_kind == e_mc_reduce_none)
- return TRUE;
+ if (simgrid::mc::reduction_mode == simgrid::mc::ReductionMode::none)
+ return true;
if (r1->issuer == r2->issuer)
- return FALSE;
+ return false;
/* Wait with timeout transitions are not considered by the independance theorem, thus we consider them as dependant with all other transitions */
if ((r1->call == SIMCALL_COMM_WAIT && simcall_comm_wait__get__timeout(r1) > 0)
return TRUE;
if (r1->call != r2->call)
- return MC_request_depend_asymmetric(r1, r2)
- && MC_request_depend_asymmetric(r2, r1);
+ return request_depend_asymmetric(r1, r2)
+ && request_depend_asymmetric(r2, r1);
// Those are internal requests, we do not need indirection
// because those objects are copies:
case SIMCALL_COMM_WAIT:
if (synchro1->comm.src_buff == synchro2->comm.src_buff
&& synchro1->comm.dst_buff == synchro2->comm.dst_buff)
- return FALSE;
+ return false;
else if (synchro1->comm.src_buff != nullptr
&& synchro1->comm.dst_buff != nullptr
&& synchro2->comm.src_buff != nullptr
&& synchro1->comm.dst_buff != synchro2->comm.src_buff
&& synchro1->comm.dst_buff != synchro2->comm.dst_buff
&& synchro2->comm.dst_buff != synchro1->comm.src_buff)
- return FALSE;
+ return false;
else
- return TRUE;
+ return true;
default:
- return TRUE;
+ return true;
}
}
+}
+}
+
static char *pointer_to_string(void *pointer)
{
}
-char *MC_request_to_string(smx_simcall_t req, int value, e_mc_request_type_t request_type)
+char *simgrid::mc::request_to_string(smx_simcall_t req, int value, simgrid::mc::RequestType request_type)
{
bool use_remote_comm = true;
switch(request_type) {
- case MC_REQUEST_SIMIX:
+ case simgrid::mc::RequestType::simix:
use_remote_comm = true;
break;
- case MC_REQUEST_EXECUTED:
- case MC_REQUEST_INTERNAL:
+ case simgrid::mc::RequestType::executed:
+ case simgrid::mc::RequestType::internal:
use_remote_comm = false;
break;
}
break;
}
- case SIMCALL_MC_SNAPSHOT:
- type = "MC_SNAPSHOT";
- args = nullptr;
- break;
-
- case SIMCALL_MC_COMPARE_SNAPSHOTS:
- type = "MC_COMPARE_SNAPSHOTS";
- args = nullptr;
- break;
-
case SIMCALL_MC_RANDOM:
type = "MC_RANDOM";
args = bprintf("%d", value);
return str;
}
-unsigned int MC_request_testany_fail(smx_simcall_t req)
-{
- // Remote xbt_dynar_foreach on simcall_comm_testany__get__comms(req).
-
- // Read the dynar:
- s_xbt_dynar_t comms;
- mc_model_checker->process().read_bytes(
- &comms, sizeof(comms), remote(simcall_comm_testany__get__comms(req)));
-
- // Read ther dynar buffer:
- size_t buffer_size = comms.elmsize * comms.used;
- char buffer[buffer_size];
- mc_model_checker->process().read_bytes(
- buffer, buffer_size, remote(comms.data));
+namespace simgrid {
+namespace mc {
- // Iterate over the elements:
- assert(comms.elmsize == sizeof(smx_synchro_t));
- unsigned cursor;
- for (cursor=0; cursor != comms.used; ++cursor) {
-
- // Get the element:
- smx_synchro_t remote_action = nullptr;
- memcpy(&remote_action, buffer + comms.elmsize * cursor, sizeof(remote_action));
-
- // Dereference the pointer:
- s_smx_synchro_t action;
- mc_model_checker->process().read_bytes(
- &action, sizeof(action), remote(remote_action));
-
- // Finally so something useful about it:
- if (action.comm.src_proc && action.comm.dst_proc)
- return FALSE;
- }
-
- return TRUE;
-}
-
-int MC_request_is_enabled_by_idx(smx_simcall_t req, unsigned int idx)
+bool request_is_enabled_by_idx(smx_simcall_t req, unsigned int idx)
{
smx_synchro_t remote_act = nullptr;
switch (req->call) {
break;
default:
- return TRUE;
+ return true;
}
s_smx_synchro_t synchro;
return synchro.comm.src_proc && synchro.comm.dst_proc;
}
-int MC_process_is_enabled(smx_process_t process)
+bool process_is_enabled(smx_process_t process)
+{
+ return simgrid::mc::request_is_enabled(&process->simcall);
+}
+
+static const char* colors[] = {
+ "blue",
+ "red",
+ "green3",
+ "goldenrod",
+ "brown",
+ "purple",
+ "magenta",
+ "turquoise4",
+ "gray25",
+ "forestgreen",
+ "hotpink",
+ "lightblue",
+ "tan",
+};
+
+static inline const char* get_color(int id)
{
- return MC_request_is_enabled(&process->simcall);
+ return colors[id % (sizeof(colors) / sizeof(colors[0])) ];
}
-char *MC_request_get_dot_output(smx_simcall_t req, int value)
+char *request_get_dot_output(smx_simcall_t req, int value)
{
char *label = nullptr;
label = bprintf("[(%lu)] MC_RANDOM (%d)", issuer->pid, value);
break;
- case SIMCALL_MC_SNAPSHOT:
- if (issuer->host)
- label =
- bprintf("[(%lu)%s] MC_SNAPSHOT", issuer->pid,
- MC_smx_process_get_host_name(issuer));
- else
- label = bprintf("[(%lu)] MC_SNAPSHOT", issuer->pid);
- break;
-
- case SIMCALL_MC_COMPARE_SNAPSHOTS:
- if (issuer->host)
- label =
- bprintf("[(%lu)%s] MC_COMPARE_SNAPSHOTS", issuer->pid,
- MC_smx_process_get_host_name(issuer));
- else
- label = bprintf("[(%lu)] MC_COMPARE_SNAPSHOTS", issuer->pid);
- break;
-
default:
THROW_UNIMPLEMENTED;
}
+ const char* color = get_color(issuer->pid - 1);
char* str =
bprintf("label = \"%s\", color = %s, fontcolor = %s", label,
- colors[issuer->pid - 1], colors[issuer->pid - 1]);
+ color, color);
xbt_free(label);
return str;
}
}
+}