X-Git-Url: https://git.sesse.net/?a=blobdiff_plain;ds=sidebyside;f=src%2Fuci.cpp;h=a10920a9714ab381a4a2d4b94fbdf51140b627b8;hb=37fa8adc2b4aeba95c10531b9bb834b0fcb47c42;hp=94caada2bde67c97b1d2159d64298146a9a17065;hpb=d84865eac3d7b694b6ad9b6eb95c7a3097b38b3d;p=stockfish diff --git a/src/uci.cpp b/src/uci.cpp index 94caada2..a10920a9 100644 --- a/src/uci.cpp +++ b/src/uci.cpp @@ -30,6 +30,8 @@ using namespace std; +extern void benchmark(istringstream& is); + namespace { // FEN string of the initial position, normal chess @@ -52,14 +54,17 @@ namespace { /// that we exit gracefully if the GUI dies unexpectedly. In addition to the UCI /// commands, the function also supports a few debug commands. -void uci_loop() { +void uci_loop(const string& args) { Position pos(StartFEN, false, 0); // The root position string cmd, token; while (token != "quit") { - if (!getline(cin, cmd)) // Block here waiting for input + if (!args.empty()) + cmd = args; + + else if (!getline(cin, cmd)) // Block here waiting for input cmd = "quit"; istringstream is(cmd); @@ -113,6 +118,9 @@ void uci_loop() { else if (token == "eval") cout << Eval::trace(pos) << endl; + else if (token == "bench") + benchmark(is); + else if (token == "key") cout << "key: " << hex << pos.key() << "\nmaterial key: " << pos.material_key() @@ -124,6 +132,12 @@ void uci_loop() { << "\nuciok" << endl; else cout << "Unknown command: " << cmd << endl; + + if (!args.empty()) // Command line arguments have one-shot behaviour + { + Threads.wait_for_search_finished(); + break; + } } } @@ -198,7 +212,7 @@ namespace { void go(Position& pos, istringstream& is) { Search::LimitsType limits; - std::set searchMoves; + vector searchMoves; string token; while (is >> token) @@ -225,7 +239,7 @@ namespace { limits.ponder = true; else if (token == "searchmoves") while (is >> token) - searchMoves.insert(move_from_uci(pos, token)); + searchMoves.push_back(move_from_uci(pos, token)); } Threads.start_searching(pos, limits, searchMoves); @@ -249,8 +263,8 @@ namespace { int e = time.elapsed(); - std::cout << "\nNodes " << n - << "\nTime (ms) " << e - << "\nNodes/second " << int(n / (e / 1000.0)) << std::endl; + cout << "\nNodes " << n + << "\nTime (ms) " << e + << "\nNodes/second " << int(n / (e / 1000.0)) << endl; } }