-/* Copyright (c) 2008-2020. The SimGrid Team. All rights reserved. */
+/* Copyright (c) 2008-2021. The 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 "src/mc/checker/CommunicationDeterminismChecker.hpp"
#include "src/kernel/activity/MailboxImpl.hpp"
-#include "src/mc/Session.hpp"
-#include "src/mc/mc_api.hpp"
#include "src/mc/mc_config.hpp"
#include "src/mc/mc_exit.hpp"
#include "src/mc/mc_private.hpp"
#include <cstdint>
-using mcapi = simgrid::mc::mc_api;
+using api = simgrid::mc::Api;
XBT_LOG_NEW_DEFAULT_SUBCATEGORY(mc_comm_determinism, mc, "Logging specific to MC communication determinism detection");
for (size_t i = 0; i < initial_communications_pattern.size(); i++)
initial_communications_pattern[i].index_comm = state->communication_indices_[i];
- for (unsigned long i = 0; i < mcapi::get().get_maxpid(); i++)
+ for (unsigned long i = 0; i < api::get().get_maxpid(); i++)
patterns_copy(incomplete_communications_pattern[i], state->incomplete_comm_pattern_[i]);
}
-static char* print_determinism_result(simgrid::mc::CommPatternDifference diff, int process,
+static char* print_determinism_result(simgrid::mc::CommPatternDifference diff, aid_t process,
const simgrid::mc::PatternCommunication* comm, unsigned int cursor)
{
char* type;
char* res;
if (comm->type == simgrid::mc::PatternCommunicationType::send)
- type = bprintf("The send communications pattern of the process %d is different!", process - 1);
+ type = bprintf("The send communications pattern of the process %ld is different!", process - 1);
else
- type = bprintf("The recv communications pattern of the process %d is different!", process - 1);
+ type = bprintf("The recv communications pattern of the process %ld is different!", process - 1);
using simgrid::mc::CommPatternDifference;
switch (diff) {
}
static void update_comm_pattern(simgrid::mc::PatternCommunication* comm_pattern,
- const simgrid::kernel::activity::CommImpl* comm_addr)
+ simgrid::mc::RemotePtr<simgrid::kernel::activity::CommImpl> const& comm_addr)
{
- auto src_proc = mcapi::get().get_src_actor(comm_addr);
- auto dst_proc = mcapi::get().get_dst_actor(comm_addr);
+ auto src_proc = api::get().get_src_actor(comm_addr);
+ auto dst_proc = api::get().get_dst_actor(comm_addr);
comm_pattern->src_proc = src_proc->get_pid();
comm_pattern->dst_proc = dst_proc->get_pid();
- comm_pattern->src_host = mcapi::get().get_actor_host_name(src_proc);
- comm_pattern->dst_host = mcapi::get().get_actor_host_name(dst_proc);
+ comm_pattern->src_host = api::get().get_actor_host_name(src_proc);
+ comm_pattern->dst_host = api::get().get_actor_host_name(dst_proc);
- if (comm_pattern->data.empty())
- comm_pattern->data = mcapi::get().get_pattern_comm_data(comm_addr);
+ if (comm_pattern->data.empty()) {
+ comm_pattern->data = api::get().get_pattern_comm_data(comm_addr);
+ }
}
namespace simgrid {
namespace mc {
-void CommunicationDeterminismChecker::deterministic_comm_pattern(int process, const PatternCommunication* comm,
+void CommunicationDeterminismChecker::deterministic_comm_pattern(aid_t process, const PatternCommunication* comm,
int backtracking)
{
if (not backtracking) {
XBT_INFO("%s", this->send_diff);
xbt_free(this->send_diff);
this->send_diff = nullptr;
- mcapi::get().log_state();
- mcapi::get().mc_exit(SIMGRID_MC_EXIT_NON_DETERMINISM);
+ api::get().log_state();
+ api::get().mc_exit(SIMGRID_MC_EXIT_NON_DETERMINISM);
} else if (_sg_mc_comms_determinism && (not this->send_deterministic && not this->recv_deterministic)) {
XBT_INFO("****************************************************");
XBT_INFO("***** Non-deterministic communications pattern *****");
xbt_free(this->recv_diff);
this->recv_diff = nullptr;
}
- mcapi::get().log_state();
- mcapi::get().mc_exit(SIMGRID_MC_EXIT_NON_DETERMINISM);
+ api::get().log_state();
+ api::get().mc_exit(SIMGRID_MC_EXIT_NON_DETERMINISM);
}
}
}
void CommunicationDeterminismChecker::get_comm_pattern(smx_simcall_t request, CallType call_type, int backtracking)
{
- const smx_actor_t issuer = mcapi::get().simcall_get_issuer(request);
+ const smx_actor_t issuer = api::get().simcall_get_issuer(request);
const mc::PatternCommunicationList& initial_pattern = initial_communications_pattern[issuer->get_pid()];
const std::vector<PatternCommunication*>& incomplete_pattern = incomplete_communications_pattern[issuer->get_pid()];
if (call_type == CallType::SEND) {
/* Create comm pattern */
pattern->type = PatternCommunicationType::send;
- pattern->comm_addr = mcapi::get().get_comm_isend_raw_addr(request);
- pattern->rdv = mcapi::get().get_pattern_comm_rdv(pattern->comm_addr);
- pattern->src_proc = mcapi::get().get_pattern_comm_src_proc(pattern->comm_addr);
- pattern->src_host = mc_api::get().get_actor_host_name(issuer);
+ pattern->comm_addr = api::get().get_comm_isend_raw_addr(request);
+ pattern->rdv = api::get().get_pattern_comm_rdv(pattern->comm_addr);
+ pattern->src_proc = api::get().get_pattern_comm_src_proc(pattern->comm_addr);
+ pattern->src_host = Api::get().get_actor_host_name(issuer);
#if HAVE_SMPI
- pattern->tag = mcapi::get().get_smpi_request_tag(request, simgrid::simix::Simcall::COMM_ISEND);
+ pattern->tag = api::get().get_smpi_request_tag(request, simgrid::simix::Simcall::COMM_ISEND);
#endif
- pattern->data = mcapi::get().get_pattern_comm_data(pattern->comm_addr);
+ pattern->data = api::get().get_pattern_comm_data(pattern->comm_addr);
#if HAVE_SMPI
- auto send_detached = mcapi::get().check_send_request_detached(request);
+ auto send_detached = api::get().check_send_request_detached(request);
if (send_detached) {
if (this->initial_communications_pattern_done) {
/* Evaluate comm determinism */
#endif
} else if (call_type == CallType::RECV) {
pattern->type = PatternCommunicationType::receive;
- pattern->comm_addr = mcapi::get().get_comm_isend_raw_addr(request);
+ pattern->comm_addr = api::get().get_comm_isend_raw_addr(request);
#if HAVE_SMPI
- pattern->tag = mcapi::get().get_smpi_request_tag(request, simgrid::simix::Simcall::COMM_IRECV);
+ pattern->tag = api::get().get_smpi_request_tag(request, simgrid::simix::Simcall::COMM_IRECV);
#endif
- auto comm_addr = pattern->comm_addr;
- pattern->rdv = mcapi::get().get_pattern_comm_rdv(comm_addr);
- pattern->dst_proc = mcapi::get().get_pattern_comm_dst_proc(comm_addr);
- pattern->dst_host = mcapi::get().get_actor_host_name(issuer);
+ pattern->rdv = api::get().get_pattern_comm_rdv(pattern->comm_addr);
+ pattern->dst_proc = api::get().get_pattern_comm_dst_proc(pattern->comm_addr);
+ pattern->dst_host = api::get().get_actor_host_name(issuer);
} else
xbt_die("Unexpected call_type %i", (int)call_type);
incomplete_communications_pattern[issuer->get_pid()].push_back(pattern.release());
}
-void CommunicationDeterminismChecker::complete_comm_pattern(const kernel::activity::CommImpl* comm_addr,
- unsigned int issuer, int backtracking)
+void CommunicationDeterminismChecker::complete_comm_pattern(RemotePtr<kernel::activity::CommImpl> const& comm_addr, aid_t issuer,
+ int backtracking)
{
/* Complete comm pattern */
std::vector<PatternCommunication*>& incomplete_pattern = incomplete_communications_pattern[issuer];
auto current_comm_pattern =
std::find_if(begin(incomplete_pattern), end(incomplete_pattern),
- [&comm_addr](const PatternCommunication* comm) { return mcapi::get().comm_addr_equal(comm->comm_addr, comm_addr); });
+ [&comm_addr](const PatternCommunication* comm) { return (comm->comm_addr == comm_addr); });
if (current_comm_pattern == std::end(incomplete_pattern))
xbt_die("Corresponding communication not found!");
update_comm_pattern(*current_comm_pattern, comm_addr);
std::unique_ptr<PatternCommunication> comm_pattern(*current_comm_pattern);
- XBT_DEBUG("Remove incomplete comm pattern for process %u at cursor %zd", issuer,
+ XBT_DEBUG("Remove incomplete comm pattern for process %ld at cursor %zd", issuer,
std::distance(begin(incomplete_pattern), current_comm_pattern));
incomplete_pattern.erase(current_comm_pattern);
}
}
-CommunicationDeterminismChecker::CommunicationDeterminismChecker(Session& s) : Checker(s) {}
+CommunicationDeterminismChecker::CommunicationDeterminismChecker() : Checker() {}
CommunicationDeterminismChecker::~CommunicationDeterminismChecker() = default;
std::vector<std::string> trace;
for (auto const& state : stack_) {
smx_simcall_t req = &state->executed_req_;
- trace.push_back(mcapi::get().request_to_string(req, state->transition_.argument_, RequestType::executed));
+ trace.push_back(api::get().request_to_string(req, state->transition_.times_considered_, RequestType::executed));
}
return trace;
}
}
}
XBT_INFO("Expanded states = %lu", expanded_states_count_);
- XBT_INFO("Visited states = %lu", mcapi::get().mc_get_visited_states());
- XBT_INFO("Executed transitions = %lu", mcapi::get().mc_get_executed_trans());
+ XBT_INFO("Visited states = %lu", api::get().mc_get_visited_states());
+ XBT_INFO("Executed transitions = %lu", api::get().mc_get_executed_trans());
XBT_INFO("Send-deterministic : %s", this->send_deterministic ? "Yes" : "No");
if (_sg_mc_comms_determinism)
XBT_INFO("Recv-deterministic : %s", this->recv_deterministic ? "Yes" : "No");
void CommunicationDeterminismChecker::prepare()
{
- const auto maxpid = mcapi::get().get_maxpid();
+ const auto maxpid = api::get().get_maxpid();
initial_communications_pattern.resize(maxpid);
incomplete_communications_pattern.resize(maxpid);
XBT_DEBUG("********* Start communication determinism verification *********");
/* Get an enabled actor and insert it in the interleave set of the initial state */
- auto actors = mcapi::get().get_actors();
+ auto actors = api::get().get_actors();
for (auto& actor : actors)
- if (mcapi::get().actor_is_enabled(actor.copy.get_buffer()->get_pid()))
+ if (api::get().actor_is_enabled(actor.copy.get_buffer()->get_pid()))
initial_state->add_interleaving_set(actor.copy.get_buffer());
stack_.push_back(std::move(initial_state));
static inline bool all_communications_are_finished()
{
- auto maxpid = mcapi::get().get_maxpid();
+ auto maxpid = api::get().get_maxpid();
for (size_t current_actor = 1; current_actor < maxpid; current_actor++) {
if (not incomplete_communications_pattern[current_actor].empty()) {
XBT_DEBUG("Some communications are not finished, cannot stop the exploration! State not visited.");
/* Intermediate backtracking */
State* last_state = stack_.back().get();
if (last_state->system_state_) {
- mc_api::get().restore_state(last_state->system_state_);
+ Api::get().restore_state(last_state->system_state_);
restore_communications_pattern(last_state);
return;
}
/* Restore the initial state */
- mcapi::get().restore_initial_state();
+ api::get().restore_initial_state();
- unsigned long n = mcapi::get().get_maxpid();
+ unsigned long n = api::get().get_maxpid();
assert(n == incomplete_communications_pattern.size());
assert(n == initial_communications_pattern.size());
for (unsigned long j = 0; j < n; j++) {
if (state == stack_.back())
break;
- int req_num = state->transition_.argument_;
+ int req_num = state->transition_.times_considered_;
const s_smx_simcall* saved_req = &state->executed_req_;
xbt_assert(saved_req);
/* because we got a copy of the executed request, we have to fetch the
real one, pointed by the request field of the issuer process */
- const smx_actor_t issuer = mcapi::get().simcall_get_issuer(saved_req);
+ const smx_actor_t issuer = api::get().simcall_get_issuer(saved_req);
smx_simcall_t req = &issuer->simcall_;
/* TODO : handle test and testany simcalls */
CallType call = MC_get_call_type(req);
- mcapi::get().handle_simcall(state->transition_);
+ api::get().handle_simcall(state->transition_);
handle_comm_pattern(call, req, req_num, 1);
- mcapi::get().mc_wait_for_requests();
+ api::get().mc_wait_for_requests();
/* Update statistics */
- mcapi::get().mc_inc_visited_states();
- mcapi::get().mc_inc_executed_trans();
+ api::get().mc_inc_visited_states();
+ api::get().mc_inc_executed_trans();
}
}
break;
case CallType::WAIT:
case CallType::WAITANY: {
- const simgrid::kernel::activity::CommImpl* comm_addr = nullptr;
+ RemotePtr<simgrid::kernel::activity::CommImpl> comm_addr;
if (call_type == CallType::WAIT)
- comm_addr = mcapi::get().get_comm_wait_raw_addr(req);
+ comm_addr = api::get().get_comm_wait_raw_addr(req);
else
- comm_addr = mcapi::get().get_comm_waitany_raw_addr(req, value);
- auto simcall_issuer = mcapi::get().simcall_get_issuer(req);
+ comm_addr = api::get().get_comm_waitany_raw_addr(req, value);
+ auto simcall_issuer = api::get().simcall_get_issuer(req);
complete_comm_pattern(comm_addr, simcall_issuer->get_pid(), backtracking);
} break;
default:
cur_state->interleave_size());
/* Update statistics */
- mcapi::get().mc_inc_visited_states();
+ api::get().mc_inc_visited_states();
if (stack_.size() <= (std::size_t)_sg_mc_max_depth)
- req = mcapi::get().mc_state_choose_request(cur_state);
+ req = api::get().mc_state_choose_request(cur_state);
else
req = nullptr;
if (req != nullptr && visited_state == nullptr) {
- int req_num = cur_state->transition_.argument_;
+ int req_num = cur_state->transition_.times_considered_;
- XBT_DEBUG("Execute: %s", mcapi::get().request_to_string(req, req_num, RequestType::simix).c_str());
+ XBT_DEBUG("Execute: %s", api::get().request_to_string(req, req_num, RequestType::simix).c_str());
std::string req_str;
if (dot_output != nullptr)
- req_str = mcapi::get().request_get_dot_output(req, req_num);
+ req_str = api::get().request_get_dot_output(req, req_num);
- mcapi::get().mc_inc_executed_trans();
+ api::get().mc_inc_executed_trans();
/* TODO : handle test and testany simcalls */
CallType call = CallType::NONE;
call = MC_get_call_type(req);
/* Answer the request */
- mcapi::get().handle_simcall(cur_state->transition_);
+ api::get().handle_simcall(cur_state->transition_);
/* After this call req is no longer useful */
handle_comm_pattern(call, req, req_num, 0);
/* Wait for requests (schedules processes) */
- mcapi::get().mc_wait_for_requests();
+ api::get().mc_wait_for_requests();
/* Create the new expanded state */
++expanded_states_count_;
if (visited_state == nullptr) {
/* Get enabled actors and insert them in the interleave set of the next state */
- auto actors = mcapi::get().get_actors();
+ auto actors = api::get().get_actors();
for (auto& actor : actors)
- if (mcapi::get().actor_is_enabled(actor.copy.get_buffer()->get_pid()))
+ if (api::get().actor_is_enabled(actor.copy.get_buffer()->get_pid()))
next_state->add_interleaving_set(actor.copy.get_buffer());
if (dot_output != nullptr)
visited_state = nullptr;
/* Check for deadlocks */
- if (mcapi::get().mc_check_deadlock()) {
- mcapi::get().mc_show_deadlock();
+ if (api::get().mc_check_deadlock()) {
+ api::get().mc_show_deadlock();
throw simgrid::mc::DeadlockError();
}
}
}
- mcapi::get().log_state();
+ api::get().log_state();
}
void CommunicationDeterminismChecker::run()
{
XBT_INFO("Check communication determinism");
- mcapi::get().s_initialize();
+ api::get().session_initialize();
this->prepare();
this->real_run();
}
-Checker* createCommunicationDeterminismChecker(Session& s)
+Checker* createCommunicationDeterminismChecker()
{
- return new CommunicationDeterminismChecker(s);
+ return new CommunicationDeterminismChecker();
}
} // namespace mc