2 #include <tr1/functional>
9 XBT_LOG_EXTERNAL_DEFAULT_CATEGORY(proc);
17 double process::total_load_init = 0.0;
18 double process::total_load_running = 0.0;
19 double process::total_load_exit = 0.0;
23 void sleep_until_date(double& date, double duration = 0.0)
25 double sleep_duration = date - MSG_get_clock();
26 if (sleep_duration > 0.0)
27 MSG_process_sleep(sleep_duration);
28 date = MSG_get_clock() + duration;
33 process::process(int argc, char* argv[])
35 if (argc < 2 || !(std::istringstream(argv[1]) >> real_load))
36 throw std::invalid_argument("bad or missing initial load parameter");
38 neigh.assign(argv + 2, argv + argc);
40 pneigh.reserve(neigh.size());
41 for (unsigned i = 0 ; i < neigh.size() ; i++) {
42 neighbor* ptr = &neigh[i];
43 m_host_t host = MSG_get_host_by_name(ptr->get_name());
44 pneigh.push_back(ptr);
45 rev_neigh.insert(std::make_pair(host, ptr));
50 prev_load_broadcast = -1; // force sending of load on first send_all()
51 expected_load = real_load;
52 total_load_running += real_load;
53 total_load_init += real_load;
55 ctrl_close_pending = data_close_pending = neigh.size();
56 close_received = false;
59 comp_iter = lb_iter = 0;
61 lb_thread = new_msg_thread("loba",
62 std::tr1::bind(&process::load_balance_loop,
65 e_xbt_log_priority_t logp = xbt_log_priority_verbose;
66 if (!LOG_ISENABLED(logp))
68 std::ostringstream oss;
69 oss << neigh.size() << " neighbor";
71 oss << ESSE(neigh.size()) << ": ";
72 std::transform(neigh.begin(), neigh.end() - 1,
73 std::ostream_iterator<const char*>(oss, ", "),
74 std::tr1::mem_fn(&neighbor::get_name));
75 oss << neigh.back().get_name();
77 XBT_LOG(logp, "Got %s.", oss.str().c_str());
78 print_loads(false, logp);
84 total_load_exit += real_load;
85 if (opt::log_rate < 0)
87 XBT_INFO("Final load after %d:%d iterations: %g",
88 lb_iter, comp_iter, real_load);
89 XBT_VERB("Expected load was: %g", expected_load);
90 XBT_VERB("Total computation for this process: %g", comp);
95 if (opt::log_rate >= 0) {
96 XBT_INFO("Initial load: %g", real_load);
97 XBT_VERB("Initial expected load: %g", expected_load);
99 XBT_VERB("Starting...");
102 while (lb_iter <= opt::comp_iter_delay)
105 double sleep_duration = opt::comp_time_delay - MSG_get_clock();
106 if (sleep_duration > 0.0)
107 MSG_process_sleep(sleep_duration);
114 void process::load_balance_loop()
116 using std::tr1::bind;
117 using std::tr1::placeholders::_1;
119 double next_iter_after_date = MSG_get_clock() + opt::min_lb_iter_duration;
120 while (still_running()) {
121 if (lb_iter == opt::comp_iter_delay) {
130 if (opt::log_rate && lb_iter % opt::log_rate == 0) {
131 XBT_INFO("(%u:%u) current load: %g", lb_iter, comp_iter, real_load);
132 XBT_VERB("... expected load: %g", expected_load);
135 if (get_load() > 0.0)
138 print_loads(true, xbt_log_priority_debug);
141 std::for_each(neigh.begin(), neigh.end(),
142 bind(&process::ctrl_send, this, _1));
143 prev_load_broadcast = get_load();
145 sleep_until_date(next_iter_after_date, opt::min_lb_iter_duration);
148 comm.ctrl_flush(false);
151 XBT_VERB("Going to finalize for %s...", __func__);
152 XBT_DEBUG("send CTRL_CLOSE to %zu neighbor%s",
153 neigh.size(), ESSE(neigh.size()));
154 std::for_each(neigh.begin(), neigh.end(),
155 bind(&process::ctrl_close, this, _1));
156 while (ctrl_close_pending) {
157 comm.ctrl_flush(false);
158 XBT_DEBUG("waiting for %d CTRL CLOSE", ctrl_close_pending);
161 comm.ctrl_flush(true);
164 void process::compute_loop()
166 using std::tr1::bind;
167 using std::tr1::placeholders::_1;
169 double next_iter_after_date = MSG_get_clock() + opt::min_comp_iter_duration;
170 while (still_running()) {
175 data_receive(opt::min_comp_iter_duration);
177 comm.data_flush(false);
179 if (real_load == 0.0)
183 std::for_each(neigh.begin(), neigh.end(),
184 bind(&process::data_send, this, _1));
188 double flops = opt::comp_cost(real_load);
189 m_task_t task = MSG_task_create("computation", flops, 0.0, NULL);
190 TRACE_msg_set_task_category(task, TRACE_CAT_COMP);
191 XBT_DEBUG("compute %g flop%s", flops, ESSE(flops));
192 MSG_task_execute(task);
194 MSG_task_destroy(task);
196 sleep_until_date(next_iter_after_date, opt::min_comp_iter_duration);
199 XBT_VERB("Going to finalize for %s...", __func__);
200 // last send, for not losing load scheduled to be sent
201 std::for_each(neigh.begin(), neigh.end(),
202 bind(&process::data_send, this, _1));
204 total_load_running -= real_load;
205 XBT_DEBUG("send DATA_CLOSE to %zu neighbor%s",
206 neigh.size(), ESSE(neigh.size()));
207 std::for_each(neigh.begin(), neigh.end(),
208 bind(&process::data_close, this, _1));
209 while (data_close_pending) {
210 comm.data_flush(false);
211 XBT_DEBUG("waiting for %d DATA CLOSE", data_close_pending);
214 comm.data_flush(true);
217 bool process::still_running()
219 static bool last_status = true;
224 } else if (opt::time_limit && MSG_get_clock() >= opt::time_limit) {
225 XBT_VERB("Reached time limit: %g/%g", MSG_get_clock(), opt::time_limit);
228 } else if (opt::lb_maxiter && lb_iter >= opt::lb_maxiter) {
229 XBT_VERB("Reached lb_maxiter: %d/%d", lb_iter, opt::lb_maxiter);
232 } else if (opt::comp_maxiter && comp_iter >= opt::comp_maxiter) {
233 XBT_VERB("Reached comp_maxiter: %d/%d", comp_iter, opt::comp_maxiter);
236 } else if (opt::exit_on_close && close_received) {
237 XBT_VERB("Close received");
240 } else if (real_load == 0.0 && !data_close_pending) {
241 XBT_VERB("I'm a poor lonesome process, and I have no load...");
244 } else if (100.0 * total_load_running / total_load_init <=
245 opt::load_ratio_threshold) {
246 // fixme: this check should be implemented with a distributed
247 // algorithm, and not a shared global variable!
248 XBT_VERB("No more load to balance in system.");
255 void process::load_balance()
257 if (lb_iter == 1) // warn only once
258 XBT_WARN("process::load_balance() is a no-op!");
261 void process::send(neighbor& nb, double amount)
263 set_load(get_load() - amount);
264 nb.set_to_send(nb.get_to_send() + amount);
265 nb.set_load(nb.get_load() + amount);
268 #define print_loads_generic(vec, verbose, logp, cat) \
269 if (_XBT_LOG_ISENABLEDV((*cat), logp)) { \
270 using std::tr1::bind; \
271 using std::tr1::placeholders::_1; \
272 XBT_XCLOG(cat, logp, "Neighbor loads:"); \
273 std::for_each(vec.begin(), vec.end(), \
274 bind(&neighbor::print, _1, verbose, logp, cat)); \
277 void process::print_loads(bool verbose,
278 e_xbt_log_priority_t logp,
279 xbt_log_category_t cat) const
281 print_loads_generic(neigh, verbose, logp, cat);
284 void process::print_loads_p(bool verbose,
285 e_xbt_log_priority_t logp,
286 xbt_log_category_t cat) const
288 print_loads_generic(pneigh, verbose, logp, cat);
291 #undef print_loads_generic
293 void process::ctrl_send(neighbor& nb)
295 double info_to_send = get_load();
296 if (info_to_send != prev_load_broadcast)
297 comm.ctrl_send(nb.get_ctrl_mbox(),
298 new message(message::INFO, info_to_send));
299 if (opt::bookkeeping) {
300 double debt_to_send = nb.get_to_send();
301 if (debt_to_send > 0.0) {
303 nb.set_debt(nb.get_debt() + debt_to_send);
304 comm.ctrl_send(nb.get_ctrl_mbox(),
305 new message(message::CREDIT, debt_to_send));
310 void process::data_send(neighbor& nb)
313 if (opt::bookkeeping) {
314 if (real_load <= nb.get_debt()) {
315 load_to_send = real_load;
316 nb.set_debt(nb.get_debt() - load_to_send);
319 load_to_send = nb.get_debt();
321 real_load -= load_to_send;
324 load_to_send = nb.get_to_send();
326 // do not update real_load here
328 if (load_to_send > 0.0)
329 comm.data_send(nb.get_data_mbox(),
330 new message(message::LOAD, load_to_send));
333 void process::ctrl_close(neighbor& nb)
335 comm.ctrl_send(nb.get_ctrl_mbox(), new message(message::CTRL_CLOSE, 0.0));
338 void process::data_close(neighbor& nb)
340 comm.data_send(nb.get_data_mbox(), new message(message::DATA_CLOSE, 0.0));
343 void process::ctrl_receive(double timeout)
348 XBT_DEBUG("%sblocking receive on ctrl (%g)", "\0non-" + !timeout, timeout);
349 while (ctrl_close_pending && comm.ctrl_recv(msg, from, timeout)) {
350 handle_message(msg, from);
355 void process::data_receive(double timeout)
360 XBT_DEBUG("%sblocking receive on data (%g)", "\0non-" + !timeout, timeout);
361 while (data_close_pending && comm.data_recv(msg, from, timeout)) {
362 handle_message(msg, from);
367 void process::handle_message(message* msg, m_host_t from)
369 switch (msg->get_type()) {
370 case message::INFO: {
371 neighbor* n = rev_neigh[from];
372 n->set_load(msg->get_amount());
375 case message::CREDIT:
376 expected_load += msg->get_amount();
378 case message::LOAD: {
379 double ld = msg->get_amount();
382 total_load_running -= ld;
385 case message::CTRL_CLOSE:
386 ctrl_close_pending--;
387 close_received = true;
389 case message::DATA_CLOSE:
390 data_close_pending--;
391 close_received = true;