167 lines
4.7 KiB
C++
167 lines
4.7 KiB
C++
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#include "../test.h"
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#include <rxcpp/operators/rx-delay.hpp>
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using namespace std::chrono;
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SCENARIO("delay - never", "[delay][operators]"){
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GIVEN("a source"){
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auto sc = rxsc::make_test();
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auto so = rx::synchronize_in_one_worker(sc);
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auto w = sc.create_worker();
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const rxsc::test::messages<int> on;
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auto xs = sc.make_hot_observable({
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on.next(150, 1)
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});
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WHEN("values are delayed"){
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auto res = w.start(
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[so, xs]() {
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return xs | rxo::delay(milliseconds(10), so);
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}
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);
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THEN("the output is empty"){
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auto required = std::vector<rxsc::test::messages<int>::recorded_type>();
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auto actual = res.get_observer().messages();
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REQUIRE(required == actual);
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}
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THEN("there was 1 subscription/unsubscription to the source"){
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auto required = rxu::to_vector({
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on.subscribe(200, 1001)
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});
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auto actual = xs.subscriptions();
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REQUIRE(required == actual);
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}
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}
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}
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}
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SCENARIO("delay - empty", "[delay][operators]"){
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GIVEN("a source"){
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auto sc = rxsc::make_test();
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auto so = rx::synchronize_in_one_worker(sc);
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auto w = sc.create_worker();
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const rxsc::test::messages<int> on;
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auto xs = sc.make_hot_observable({
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on.next(150, 1),
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on.completed(250)
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});
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WHEN("values are delayed"){
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auto res = w.start(
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[so, xs]() {
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return xs.delay(so, milliseconds(10));
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}
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);
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THEN("the output only contains complete message"){
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auto required = rxu::to_vector({
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on.completed(260)
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});
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auto actual = res.get_observer().messages();
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REQUIRE(required == actual);
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}
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THEN("there was 1 subscription/unsubscription to the source"){
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auto required = rxu::to_vector({
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on.subscribe(200, 250)
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});
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auto actual = xs.subscriptions();
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REQUIRE(required == actual);
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}
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}
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}
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}
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SCENARIO("delay - return", "[delay][operators]"){
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GIVEN("a source"){
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auto sc = rxsc::make_test();
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auto so = rx::synchronize_in_one_worker(sc);
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auto w = sc.create_worker();
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const rxsc::test::messages<int> on;
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auto xs = sc.make_hot_observable({
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on.next(150, 1),
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on.next(210, 2),
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on.next(240, 3),
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on.completed(300)
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});
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WHEN("values are delayed"){
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auto res = w.start(
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[so, xs]() {
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return xs.delay(milliseconds(10), so);
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}
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);
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THEN("the output only contains delayed items sent while subscribed"){
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auto required = rxu::to_vector({
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on.next(220, 2),
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on.next(250, 3),
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on.completed(310)
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});
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auto actual = res.get_observer().messages();
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REQUIRE(required == actual);
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}
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THEN("there was 1 subscription/unsubscription to the source"){
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auto required = rxu::to_vector({
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on.subscribe(200, 300)
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});
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auto actual = xs.subscriptions();
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REQUIRE(required == actual);
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}
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}
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}
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}
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SCENARIO("delay - throw", "[delay][operators]"){
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GIVEN("a source"){
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auto sc = rxsc::make_test();
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auto so = rx::synchronize_in_one_worker(sc);
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auto w = sc.create_worker();
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const rxsc::test::messages<int> on;
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std::runtime_error ex("delay on_error from source");
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auto xs = sc.make_hot_observable({
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on.next(150, 1),
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on.error(250, ex)
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});
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WHEN("values are delayed"){
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auto res = w.start(
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[so, xs]() {
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return xs.delay(milliseconds(10), so);
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}
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);
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THEN("the output only contains only error"){
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auto required = rxu::to_vector({
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on.error(251, ex)
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});
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auto actual = res.get_observer().messages();
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REQUIRE(required == actual);
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}
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THEN("there was 1 subscription/unsubscription to the source"){
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auto required = rxu::to_vector({
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on.subscribe(200, 250)
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});
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auto actual = xs.subscriptions();
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REQUIRE(required == actual);
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}
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}
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}
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}
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