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https://github.com/slsdetectorgroup/slsDetectorPackage.git
synced 2025-06-04 00:50:42 +02:00
more tests
This commit is contained in:
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1bbd77536c
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@ -106,10 +106,10 @@ endif()
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if(SLS_USE_SANITIZER)
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# target_compile_options(slsProjectOptions INTERFACE -fsanitize=address,undefined -fno-omit-frame-pointer)
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# target_link_libraries(slsProjectOptions INTERFACE -fsanitize=address,undefined)
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target_compile_options(slsProjectOptions INTERFACE -fsanitize=thread)
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target_link_libraries(slsProjectOptions INTERFACE -fsanitize=thread)
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target_compile_options(slsProjectOptions INTERFACE -fsanitize=address,undefined -fno-omit-frame-pointer)
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target_link_libraries(slsProjectOptions INTERFACE -fsanitize=address,undefined)
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# target_compile_options(slsProjectOptions INTERFACE -fsanitize=thread)
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# target_link_libraries(slsProjectOptions INTERFACE -fsanitize=thread)
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endif()
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#rapidjson
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@ -60,13 +60,8 @@ int main(int argc, char *argv[]) {
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//How big should this try block be?
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sls::Detector det(parser.multi_id());
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sls::CmdProxy proxy(&det);
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auto cmd = proxy.Call(parser.command(), parser.arguments(),
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proxy.Call(parser.command(), parser.arguments(),
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parser.detector_id(), action);
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// TODO! move this check into CmdProxy
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if (!cmd.empty()) {
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std::cout << cmd
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<< " Unknown command, use list to list all commands\n";
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}
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} catch (const sls::RuntimeError &e) {
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// OK to catch and do nothing since this will print the error message
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// and command line app will anyway exit
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@ -25,7 +25,7 @@ std::ostream &operator<<(std::ostream &os,
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return os;
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}
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std::string CmdProxy::Call(const std::string &command,
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void CmdProxy::Call(const std::string &command,
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const std::vector<std::string> &arguments,
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int detector_id, int action, std::ostream &os) {
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cmd = command;
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@ -37,9 +37,8 @@ std::string CmdProxy::Call(const std::string &command,
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auto it = functions.find(cmd);
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if (it != functions.end()) {
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os << ((*this).*(it->second))(action);
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return {};
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} else {
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return cmd;
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throw sls::RuntimeError(cmd + " Unknown command, use list to list all commands");
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}
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}
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@ -416,7 +416,7 @@ class CmdProxy {
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public:
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explicit CmdProxy(Detector *ptr) : det(ptr) {}
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std::string Call(const std::string &command,
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void Call(const std::string &command,
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const std::vector<std::string> &arguments, int detector_id = -1,
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int action = -1, std::ostream &os = std::cout);
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@ -2,6 +2,7 @@
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#include "Detector.h"
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#include "catch.hpp"
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#include "sls_detector_defs.h"
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#include <array>
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#include <sstream>
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#include "tests/globals.h"
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@ -12,26 +13,84 @@ using sls::Detector;
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using test::GET;
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using test::PUT;
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// TEST_CASE("tengiga", "[.cmd][.eiger][.ctb]") {
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// if (test::type == slsDetectorDefs::EIGER || test::type ==
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// slsDetectorDefs::CHIPTESTBOARD) {
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// {
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// REQUIRE_NOTHROW(multiSlsDetectorClient("tengiga 1", PUT));
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("0:tengiga", GET, nullptr,
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// oss)); REQUIRE(oss.str() == "tengiga 1\n");
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// }
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// {
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// REQUIRE_NOTHROW(multiSlsDetectorClient("tengiga 0", PUT));
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("0:tengiga", GET, nullptr,
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// oss)); REQUIRE(oss.str() == "tengiga 0\n");
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// }
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TEST_CASE("dr", "[.cmd][.eiger]") {
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Detector det;
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CmdProxy proxy(&det);
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auto det_type = det.getDetectorType().squash();
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if (det_type == defs::EIGER) {
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// The only detector currently supporting setting dr
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// is EIGER?
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auto dr = det.getDynamicRange().squash();
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std::array<int, 4> vals{4, 8, 16, 32};
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for (const auto val : vals) {
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std::ostringstream oss1, oss2;
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proxy.Call("dr", {std::to_string(val)}, -1, PUT, oss1);
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REQUIRE(oss1.str() == "dr " + std::to_string(val) + '\n');
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proxy.Call("dr", {}, -1, GET, oss2);
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REQUIRE(oss2.str() == "dr " + std::to_string(val) + '\n');
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}
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det.setDynamicRange(dr);
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} else {
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// For the other detectors we should get an error message
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// except for dr 16
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REQUIRE_THROWS(proxy.Call("dr", {"4"}, -1, PUT));
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REQUIRE_THROWS(proxy.Call("dr", {"8"}, -1, PUT));
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REQUIRE_THROWS(proxy.Call("dr", {"32"}, -1, PUT));
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std::ostringstream oss1, oss2;
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proxy.Call("dr", {"16"}, -1, PUT, oss1);
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REQUIRE(oss1.str() == "dr 16\n");
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proxy.Call("dr", {"16"}, -1, PUT, oss2);
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REQUIRE(oss2.str() == "dr 16\n");
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}
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}
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// TEST_CASE("subexptime", "[.cmd][.eiger]") {
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// if (test::type == slsDetectorDefs::EIGER) {
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// std::string s;
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("subexptime", GET, nullptr,
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// oss)); s = oss.str(); REQUIRE_NOTHROW(multiSlsDetectorClient(s,
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// PUT));
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// } else {
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// REQUIRE_THROWS(multiSlsDetectorClient("tengiga", GET));
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// REQUIRE_THROWS(multiSlsDetectorClient("subexptime", GET));
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// }
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// }
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// TEST_CASE("subdeadtime", "[.cmd][.eiger]") {
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// if (test::type == slsDetectorDefs::EIGER) {
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// std::string s;
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("subdeadtime", GET, nullptr,
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// oss)); s = oss.str(); REQUIRE_NOTHROW(multiSlsDetectorClient(s,
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// PUT));
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// } else {
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// REQUIRE_THROWS(multiSlsDetectorClient("subdeadtime", GET));
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// }
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// }
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TEST_CASE("tengiga", "[.cmd][.eiger][.ctb]") {
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Detector det;
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CmdProxy proxy(&det);
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auto det_type = det.getDetectorType().squash();
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if (det_type == defs::EIGER || det_type == defs::CHIPTESTBOARD){
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auto tengiga = det.getTenGiga();
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det.setTenGiga(false);
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std::ostringstream oss1, oss2;
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proxy.Call("tengiga", {"1"}, -1, PUT, oss1);
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REQUIRE(oss1.str() == "tengiga 1\n");
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proxy.Call("tengiga", {}, -1, GET, oss2);
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REQUIRE(oss2.str() == "tengiga 1\n");
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for (int i = 0; i!=det.size(); ++i){
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det.setTenGiga(tengiga[i], {i});
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}
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}
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}
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TEST_CASE("quad", "[.cmd]") {
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// TODO! set and get once available in virtual detector
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Detector det;
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@ -142,7 +201,6 @@ TEST_CASE("Setting and reading back EIGER dacs", "[.cmd]") {
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// REQUIRE(oss.str() == "trigger successful\n");
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// }
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// auto currentfnum = det.getStartingFrameNumber().tsquash(
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// "inconsistent frame nr in test");
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@ -154,49 +212,49 @@ TEST_CASE("Setting and reading back EIGER dacs", "[.cmd]") {
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// REQUIRE(oss.str() == "timing auto\n");
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// }
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// }
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// if(test::type != slsDetectorDefs::EIGER) {
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// REQUIRE_THROWS(multiSlsDetectorClient("trigger", PUT));
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// } else {
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// // trigger
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("timing trigger", PUT,
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// nullptr, oss)); REQUIRE(oss.str() == "timing trigger\n");
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// }
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// int startingfnum = 0;
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("startingfnum", GET,
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// nullptr, oss)); std::string s = (oss.str()).erase (0,
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// strlen("startingfnum ")); startingfnum = std::stoi(s);
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("start", PUT, nullptr,
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// oss)); REQUIRE(oss.str() == "start successful\n");
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("status", GET,
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// nullptr, oss)); REQUIRE(oss.str() != "status idle\n");
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// REQUIRE(oss.str()
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// != "status stopped\n");
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("trigger", PUT,
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// nullptr, oss)); REQUIRE(oss.str() == "trigger successful\n");
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// }
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// REQUIRE_NOTHROW(multiSlsDetectorClient("stop", PUT));
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// int currentfnum = 0;
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("startingfnum", GET,
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// nullptr, oss)); std::string s = (oss.str()).erase (0,
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// strlen("startingfnum ")); currentfnum = std::stoi(s);
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// }
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// REQUIRE((startingfnum + 1) == currentfnum);
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// if(test::type != slsDetectorDefs::EIGER) {
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// REQUIRE_THROWS(multiSlsDetectorClient("trigger", PUT));
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// } else {
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// // trigger
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("timing trigger", PUT,
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// nullptr, oss)); REQUIRE(oss.str() == "timing trigger\n");
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// }
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// int startingfnum = 0;
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("startingfnum", GET,
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// nullptr, oss)); std::string s = (oss.str()).erase (0,
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// strlen("startingfnum ")); startingfnum = std::stoi(s);
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("start", PUT, nullptr,
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// oss)); REQUIRE(oss.str() == "start successful\n");
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("status", GET,
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// nullptr, oss)); REQUIRE(oss.str() != "status idle\n");
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// REQUIRE(oss.str()
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// != "status stopped\n");
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// }
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("trigger", PUT,
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// nullptr, oss)); REQUIRE(oss.str() == "trigger successful\n");
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// }
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// REQUIRE_NOTHROW(multiSlsDetectorClient("stop", PUT));
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// int currentfnum = 0;
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("startingfnum", GET,
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// nullptr, oss)); std::string s = (oss.str()).erase (0,
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// strlen("startingfnum ")); currentfnum = std::stoi(s);
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// }
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// REQUIRE((startingfnum + 1) == currentfnum);
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// REQUIRE_NOTHROW(multiSlsDetectorClient("timing auto", PUT));
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// }
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// REQUIRE_NOTHROW(multiSlsDetectorClient("timing auto", PUT));
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// }
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// }
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@ -61,14 +61,15 @@ TEST_CASE("rx_framescaught", "[.cmd]") {
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REQUIRE(oss.str() == "rx_framescaught 0\n");
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}
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// Currently disabled may activate if we have a stable env
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// Now take one frame and see that we caught it
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det.setNumberOfFrames(1);
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det.acquire();
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{
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std::ostringstream oss;
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proxy.Call("rx_framescaught", {}, -1, GET, oss);
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REQUIRE(oss.str() == "rx_framescaught 1\n");
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}
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// det.setNumberOfFrames(1);
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// det.acquire();
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// {
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// std::ostringstream oss;
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// proxy.Call("rx_framescaught", {}, -1, GET, oss);
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// REQUIRE(oss.str() == "rx_framescaught 1\n");
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// }
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}
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TEST_CASE("rx_status", "[.cmd]") {
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@ -14,6 +14,12 @@ using sls::Detector;
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using test::GET;
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using test::PUT;
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TEST_CASE("Unknown command", "[.cmd]"){
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Detector det;
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CmdProxy proxy(&det);
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REQUIRE_THROWS(proxy.Call("vsaevrreavv", {}, -1, PUT));
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}
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// TEST_CASE("vchip", "[.cmd]") {
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// int prev_val = 0;
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@ -3100,66 +3106,27 @@ TEST_CASE("stopport", "[.cmd]") {
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// oss)); s = oss.str(); REQUIRE_NOTHROW(multiSlsDetectorClient(s, PUT));
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// }
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// TEST_CASE("subdeadtime", "[.cmd][.eiger]") {
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// if (test::type == slsDetectorDefs::EIGER) {
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// std::string s;
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("subdeadtime", GET, nullptr,
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// oss)); s = oss.str(); REQUIRE_NOTHROW(multiSlsDetectorClient(s,
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// PUT));
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// } else {
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// REQUIRE_THROWS(multiSlsDetectorClient("subdeadtime", GET));
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// }
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// }
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// TEST_CASE("subexptime", "[.cmd][.eiger]") {
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// if (test::type == slsDetectorDefs::EIGER) {
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// std::string s;
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("subexptime", GET, nullptr,
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// oss)); s = oss.str(); REQUIRE_NOTHROW(multiSlsDetectorClient(s,
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// PUT));
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// } else {
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// REQUIRE_THROWS(multiSlsDetectorClient("subexptime", GET));
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// }
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// }
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// TEST_CASE("dr", "[.cmd][.eiger]") {
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// if (test::type == slsDetectorDefs::EIGER) {
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// int vals[4] = {4, 8, 16, 32};
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// for (int i = 0; i < 4; ++i) {
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// REQUIRE_NOTHROW(multiSlsDetectorClient("dr " +
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// std::to_string(vals[i]), PUT)); std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("dr", GET, nullptr, oss));
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// REQUIRE(oss.str() == "dr " + std::to_string(vals[i]) + '\n');
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// }
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// } else {
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// REQUIRE_THROWS(multiSlsDetectorClient("dr 4", PUT));
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// REQUIRE_THROWS(multiSlsDetectorClient("dr 8", PUT));
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// REQUIRE_THROWS(multiSlsDetectorClient("dr 32", PUT));
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// REQUIRE_NOTHROW(multiSlsDetectorClient("dr 16", PUT));
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("dr", GET, nullptr, oss));
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// REQUIRE(oss.str() == "dr " + std::to_string(16) + '\n');
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// }
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// }
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// }
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// TEST_CASE("zmqip", "[.cmd]") {
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// std::string s;
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// {
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("0:zmqip", GET, nullptr,
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// oss)); s = oss.str();
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// }
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// {
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// REQUIRE_NOTHROW(multiSlsDetectorClient(s, PUT));
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// std::ostringstream oss;
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// REQUIRE_NOTHROW(multiSlsDetectorClient("0:zmqip", GET, nullptr,
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// oss)); REQUIRE(oss.str() == s);
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// }
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// }
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TEST_CASE("zmqip", "[.cmd]") {
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Detector det;
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CmdProxy proxy(&det);
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std::ostringstream oss1, oss2;
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auto zmqip = det.getClientZmqIp();
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proxy.Call("zmqip", {}, 0, GET, oss1);
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REQUIRE(oss1.str() == "zmqip " + zmqip[0].str() + '\n');
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proxy.Call("zmqip", {zmqip[0].str()}, 0, PUT, oss2);
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REQUIRE(oss2.str() == "zmqip " + zmqip[0].str() + '\n');
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for (int i = 0; i!=det.size(); ++i){
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det.setRxZmqIP(zmqip[i], {i});
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}
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}
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// TEST_CASE("zmqport", "[.cmd]") {
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// multiSlsDetector d;
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