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https://github.com/logos-messaging/nim-ffi.git
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118 lines
4.4 KiB
C++
118 lines
4.4 KiB
C++
#include "my_timer.hpp"
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#include <atomic>
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#include <chrono>
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#include <future>
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#include <iostream>
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#include <thread>
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// The generated bindings never throw: every call returns a Result<T>. We
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// branch on isErr() and read value()/error() instead of using try/catch.
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int main() {
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auto ctxRes = MyTimerCtx::create(TimerConfig{"cpp-demo"});
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if (ctxRes.isErr()) {
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std::cerr << "Error: " << ctxRes.error() << "\n";
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return 1;
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}
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auto ctx = std::move(ctxRes.value());
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std::cout << "[1] Context created\n";
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auto versionFuture = ctx->versionAsync();
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auto echo1Future = ctx->echoAsync(EchoRequest{"hello from C++", 200});
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auto echo2Future = ctx->echoAsync(EchoRequest{"second C++ request", 50});
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auto version = versionFuture.get();
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if (version.isErr()) {
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std::cerr << "Error: " << version.error() << "\n";
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return 1;
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}
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std::cout << "[2] Version: " << version.value() << "\n";
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auto echo = echo1Future.get();
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if (echo.isErr()) {
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std::cerr << "Error: " << echo.error() << "\n";
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return 1;
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}
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std::cout << "[3] Echo 1: echoed=" << echo->echoed
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<< ", timerName=" << echo->timerName << "\n";
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auto echo2 = echo2Future.get();
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if (echo2.isErr()) {
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std::cerr << "Error: " << echo2.error() << "\n";
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return 1;
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}
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std::cout << "[4] Echo 2: echoed=" << echo2->echoed
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<< ", timerName=" << echo2->timerName << "\n";
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auto complexReq = ComplexRequest{
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std::vector<EchoRequest>{EchoRequest{"one", 10}, EchoRequest{"two", 20}},
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std::vector<std::string>{"fast", "async"},
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std::optional<std::string>("extra note"),
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std::optional<int64_t>(3)
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};
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auto complex = ctx->complexAsync(complexReq).get();
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if (complex.isErr()) {
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std::cerr << "Error: " << complex.error() << "\n";
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return 1;
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}
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std::cout << "[5] Complex: summary=" << complex->summary
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<< ", itemCount=" << complex->itemCount
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<< ", hasNote=" << complex->hasNote << "\n";
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// ── 6. Call with three complex parameters ─────────────────────
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// Each parameter is its own generated C++ struct. The nim-ffi
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// macro packs all three into one CBOR envelope on the wire — at
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// the call site, this is just a typed method invocation.
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auto job = JobSpec{
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/*name*/ "nightly-rollup",
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/*payload*/ std::vector<std::string>{"rollup", "v2"},
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/*priority*/ 10,
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};
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auto retry = RetryPolicy{
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/*maxAttempts*/ 3,
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/*backoffMs*/ 500,
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/*retryOn*/ std::vector<std::string>{"timeout", "5xx"},
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};
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auto schedule = ScheduleConfig{
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/*startAtMs*/ 1000,
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/*intervalMs*/ 15000,
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/*jitter*/ std::optional<int64_t>(250),
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};
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auto scheduleRes = ctx->scheduleAsync(job, retry, schedule).get();
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if (scheduleRes.isErr()) {
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std::cerr << "Error: " << scheduleRes.error() << "\n";
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return 1;
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}
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std::cout << "[6] Schedule (3 complex params): jobId=" << scheduleRes->jobId
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<< ", willRunCount=" << scheduleRes->willRunCount
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<< ", firstRunAtMs=" << scheduleRes->firstRunAtMs
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<< ", effectiveBackoffMs=" << scheduleRes->effectiveBackoffMs
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<< "\n";
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// Each `{.ffiEvent.}` declared on the Nim side gets a typed
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// registration method — `addOnEchoFiredListener(handler)` here.
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// Subscribe to each event separately; handlers fire from the lib's
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// dispatch thread, so synchronise via std::promise / atomics.
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std::promise<EchoEvent> echoEvtPromise;
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auto echoEvtFuture = echoEvtPromise.get_future();
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const auto typedHandle = ctx->addOnEchoFiredListener(
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[&](const EchoEvent& evt) { echoEvtPromise.set_value(evt); });
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ctx->echo(EchoRequest{"event-demo", 1});
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const auto evt = echoEvtFuture.get();
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std::cout << "[7] typed event onEchoFired: message=" << evt.message
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<< ", echoCount=" << evt.echoCount << "\n";
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// Drop the typed listener — no handler fires for the follow-up echo.
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// Sleep briefly to give the lib thread time to settle before we tear
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// the ctx down.
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ctx->removeEventListener(typedHandle);
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ctx->echo(EchoRequest{"event-demo-after-remove", 1});
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std::this_thread::sleep_for(std::chrono::milliseconds(50));
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std::cout << "[7] after removeEventListener: typed listener removed\n";
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std::cout << "\nDone.\n";
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return 0;
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}
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