#include #include #include #include #include "controller.h" NTL_CLIENT void desired_resources(const ZZ &order, unsigned short &desired_dpnodes, unsigned int &max_workers, unsigned int &dpfreq) { // How many DPnodes should we use for a problem of this size? desired_dpnodes = 1; // How many workers would we like to use? ZZ sorder = SqrRoot(order >> 46); if (NumBits(sorder) > 30) { // Just use all the workers we can find max_workers = 4294967295U; // 2^32 - 1 } else { max_workers = trunc_long(sorder,31) + 1; } // By default, 1 in 1000 points are distinguihed points. The // number in the next line is 2^32/1000 dpfreq = 4294967; if (order < 1000) { // Just make every point a DP dpfreq = 4294967295U; } else if (NumBits(order) < 27) { // The frequency of DPs should be 10/sqrt(order) to avoid // a DP-free cycle, so dpfreq = (10*2^32)/sqrt(order) ZZ f = (to_ZZ(10) << 32) / SqrRoot(order); dpfreq = trunc_long(f, 31); } } static void boundcb(const char *boundaddr, unsigned short boundport) { cout << "Listening on " << boundaddr << ":" << boundport << "\n"; const char *fdenv = getenv("CONTROLLER_BOUNDCB_FD"); if (fdenv) { int fd = atoi(fdenv); if (fd > 2) { write(fd, &boundport, 2); write(fd, boundaddr, strlen(boundaddr)); close(fd); } } } int main(int argc, char **argv) { unsigned short bindport = 0; Worklist worklist; if (controller_parse_args(argc, argv, bindport, worklist)) { std::cerr << "Usage: " << argv[0] << " [-p listenport] N1 iter1 N2 iter2 ...\n"; return 1; } return controller_main(worklist, bindport, boundcb); }