+#include <ctime>
#include <iomanip>
#include <iostream>
#include <sstream>
#include "deployment.h"
#include "process.h"
-#include "loba_simple.h"
#include "loba_besteffort.h"
+#include "loba_bulk.h"
#include "loba_fairstrategy.h"
#include "loba_makhoul.h"
#include "loba_makhoul2.h"
+#include "loba_simple.h"
#include "misc.h"
#include "options.h"
std::string program_name;
int help_requested = 0;
bool version_requested = false;
+ int option_x = 0; // hidden option, for debugging purpose
// Simulation parameters
int log_rate = 1;
+ bool exit_request = false;
// Platform and deployment
std::string platform_file;
std::string topology("clique");
unsigned nhosts = 0;
double load = 0.0;
+ bool random_distribution = false;
+ unsigned long random_seed = 0;
}
// Load balancing algorithm
{
NOL_INSERT("besteffort", "balance with best effort strategy",
loba_besteffort);
+ NOL_INSERT("bulk", "describe your algorithm here...",
+ loba_bulk);
NOL_INSERT("fairstrategy", "balance with fair strategy",
loba_fairstrategy);
NOL_INSERT("makhoul", "balance with Makhoul's PhD algorithm",
opt::program_name.erase(0, 1 + opt::program_name.find_last_of('/'));
#define PARSE_ARG(x) result = opt_helper::parse_arg(c, optarg, (x)) && result
-
+
int c;
opterr = 0;
while ((c = getopt(*argc, argv,
- "a:bc:C:d:D:ehi:I:l:L:m:M:N:s:S:t:T:vV")) != -1) {
+ "a:bc:C:d:D:ehi:I:l:L:m:M:N:r:Rs:S:t:T:vVx:")) != -1) {
switch (c) {
case 'a':
opt::loba_algo = optarg;
case 'N':
PARSE_ARG(opt::auto_depl::nhosts);
break;
+ case 'r':
+ PARSE_ARG(opt::auto_depl::random_seed);
+ break;
+ case 'R':
+ opt::auto_depl::random_distribution =
+ !opt::auto_depl::random_distribution;
+ break;
case 's':
PARSE_ARG(opt::min_lb_iter_duration);
break;
case 'V':
opt::version_requested = true;
break;
+ case 'x':
+ PARSE_ARG(opt::option_x);
+ XBT_WARN("option_x set to %d", opt::option_x);
+ break;
case '?':
XBT_ERROR("invalid option -- '%c'", optopt);
result = false;
result = false;
}
+ if (!opt::auto_depl::random_seed)
+ opt::auto_depl::random_seed = time(NULL);
+
return result;
}
"auto"));
DESCR("- initial load", "%s", h.val_or_string(auto_depl::load,
"auto"));
+ DESCR("- random initial load distribution", "%s",
+ h.on_off(auto_depl::random_distribution));
+ DESCR("- random seed", "%s",
+ h.val_or_string(auto_depl::random_seed, "time based"));
} else {
DESCR("deployment file", "\"%s\"", deployment_file.c_str());
}
std::clog << o("-N value")
<< "number of hosts to use with auto deployment, 0 for max."
<< " [" << opt::auto_depl::nhosts << "]\n";
+ std::clog << o("-R")
+ << "toggle random initial load distribution"
+ << " [" << opt_helper::on_off(opt::auto_depl::random_distribution)
+ << "]\n";
+ std::clog << o("-r value")
+ << "random seed, 0 for using it on time()"
+ << " [" << opt::auto_depl::random_seed << "]\n";
std::clog << "\nLoad balancing algorithm\n";
std::clog << o("-a name") << "load balancing algorithm"