#include "doctest.h" #include #include #include #include TEST_CASE("app_event_subscribe/_await deliver events in FIFO order") { AppEventSubscription sub {}; sub.app_instance_id = 1; CHECK_EQ(app_event_subscribe(&sub), ERROR_NONE); for (uint32_t i = 0; i < 3; i++) { AppEvent event { .type = APP_EVENT_RESULT, .timestamp = 0, .result = { .launch_id = i, .result = 0 } }; CHECK_EQ(app_event_emit(1, &event), ERROR_NONE); } for (uint32_t i = 0; i < 3; i++) { AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, 0), ERROR_NONE); CHECK_EQ(out.type, APP_EVENT_RESULT); CHECK_EQ(out.result.launch_id, i); } app_event_unsubscribe(&sub); } TEST_CASE("app_event_emit only delivers to subscriptions for that app_instance_id") { AppEventSubscription sub {}; sub.app_instance_id = 10; app_event_subscribe(&sub); AppEvent event { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} }; CHECK_EQ(app_event_emit(11, &event), ERROR_NOT_FOUND); AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, 0), ERROR_TIMEOUT); app_event_unsubscribe(&sub); } TEST_CASE("app_event_emit returns ERROR_RESOURCE and drops the newest event once a subscription's queue is full") { AppEventSubscription sub {}; sub.app_instance_id = 20; app_event_subscribe(&sub); for (uint32_t i = 0; i < APP_EVENT_QUEUE_CAPACITY; i++) { AppEvent event { .type = APP_EVENT_RESULT, .timestamp = 0, .result = { .launch_id = i, .result = 0 } }; CHECK_EQ(app_event_emit(20, &event), ERROR_NONE); } // Queue is now full; this one should be dropped. AppEvent overflow_event { .type = APP_EVENT_RESULT, .timestamp = 0, .result = { .launch_id = 999, .result = 0 } }; CHECK_EQ(app_event_emit(20, &overflow_event), ERROR_RESOURCE); // The already-queued events survive, in order, and the dropped one never arrives. for (uint32_t i = 0; i < APP_EVENT_QUEUE_CAPACITY; i++) { AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, 0), ERROR_NONE); CHECK_EQ(out.result.launch_id, i); } AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, 0), ERROR_TIMEOUT); app_event_unsubscribe(&sub); } TEST_CASE("app_event_unsubscribe stops further delivery") { AppEventSubscription sub {}; sub.app_instance_id = 30; app_event_subscribe(&sub); CHECK_EQ(app_event_unsubscribe(&sub), ERROR_NONE); CHECK_EQ(app_event_unsubscribe(&sub), ERROR_NOT_FOUND); AppEvent event { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} }; CHECK_EQ(app_event_emit(30, &event), ERROR_NOT_FOUND); } TEST_CASE("app_event_await times out when no event has arrived") { AppEventSubscription sub {}; sub.app_instance_id = 40; app_event_subscribe(&sub); AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, 0), ERROR_TIMEOUT); app_event_unsubscribe(&sub); } TEST_CASE("app_event_emit stamps the event with the current boot-relative time") { AppEventSubscription sub {}; sub.app_instance_id = 50; app_event_subscribe(&sub); auto before = static_cast(get_micros_since_boot()); AppEvent event { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} }; app_event_emit(50, &event); auto after = static_cast(get_micros_since_boot()); AppEvent out {}; REQUIRE_EQ(app_event_await(&sub, &out, 0), ERROR_NONE); CHECK_GE(out.timestamp, before); CHECK_LE(out.timestamp, after); app_event_unsubscribe(&sub); } TEST_CASE("app_event_await wakes when the event is emitted from another task") { AppEventSubscription sub {}; sub.app_instance_id = 60; CHECK_EQ(app_event_subscribe(&sub), ERROR_NONE); auto* thread = thread_alloc_full( "app-event-emitter", 4096, [](void*) -> int32_t { delay_millis(20); AppEvent event { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} }; app_event_emit(60, &event); return 0; }, nullptr, -1 ); CHECK_EQ(thread_start(thread), ERROR_NONE); AppEvent out {}; CHECK_EQ(app_event_await(&sub, &out, pdMS_TO_TICKS(2000)), ERROR_NONE); CHECK_EQ(out.type, APP_EVENT_CLOSE); CHECK_EQ(thread_join(thread, pdMS_TO_TICKS(2000), 1), ERROR_NONE); thread_free(thread); app_event_unsubscribe(&sub); }