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Summary: related to T12015 Reviewers: ivica Reviewed By: ivica Subscribers: miljen, iljazovic Differential Revision: https://repo.mireo.local/D26693
174 lines
5.9 KiB
C++
174 lines
5.9 KiB
C++
#include <boost/asio/as_tuple.hpp>
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#include <boost/asio/co_spawn.hpp>
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#include <boost/asio/detached.hpp>
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#include <boost/asio/io_context.hpp>
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#include <boost/asio/use_awaitable.hpp>
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#include <boost/asio/ip/tcp.hpp>
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#include <async_mqtt5.hpp>
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namespace asio = boost::asio;
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using stream_type = asio::ip::tcp::socket;
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using client_type = async_mqtt5::mqtt_client<stream_type>;
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asio::awaitable<void> coroutine(client_type& client) {
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//[publish_coro
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// Publish an Application Message with QoS 0.
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// The handler signature for this function is void (error_code).
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// However, when using asio::use_awaitable as a completion token,
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// the error_code is not returned but thrown as an exception if an error occurrs.
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co_await client.async_publish<async_mqtt5::qos_e::at_most_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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asio::use_awaitable
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);
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// Publish an Application Message with QoS 1.
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// The handler signature for this function is void (error_code, reason_code, puback_props).
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// With asio::use_awaitable as a completion token, the co_await will return reason_code and puback_props.
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auto [puback_rc, puback_props] = co_await client.async_publish<async_mqtt5::qos_e::at_least_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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asio::use_awaitable
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);
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// Publish an Application Message with QoS 2.
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// The handler signature for this function is void (error_code, reason_code, pubcomp_props).
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// With asio::use_awaitable as a completion token, the co_await will return reason_code and pubcomp_props.
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auto [pubcomp_rc, pubcomp_props] = co_await client.async_publish<async_mqtt5::qos_e::exactly_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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asio::use_awaitable
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);
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//]
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//[subscribe_coro
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// Subscribe to a single Topic.
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// The handler signature for this function is void (error_code, std::vector<reason_code>, suback_props).
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// With asio::use_awaitable as a completion token, the co_await
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// will return std::vector<reason_code> and suback_props.
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auto [sub_codes, sub_props] = co_await client.async_subscribe(
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{ "test/mqtt-test", { async_mqtt5::qos_e::exactly_once } },
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async_mqtt5::subscribe_props {}, asio::use_awaitable
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);
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//]
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//[receive_coro
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// Receive an Application Message.
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// The co_await call will return std::string (topic), std::string (payload) and publish_props.
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// Note: the coroutine will be suspended until an Application Message is ready to be received
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// or an error has occurred. In theory, the coroutine could be suspended indefinitely.
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// Avoid calling this if you have not successfully subscribed to a Topic.
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auto [topic, payload, publish_props] = co_await client.async_receive(asio::use_awaitable);
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//]
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//[unsubscribe_coro
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// Unsubscribe from the Topic.
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// The handler signature for this function is void (error_code, std::vector<reason_code>, unsuback_props).
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// With asio::use_awaitable as a completion token, the co_await
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// will return std::vector<reason_code> and unsuback_props.
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auto [unsub_codes, unsub_props] = co_await client.async_unsubscribe(
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"test/mqtt-test", async_mqtt5::unsubscribe_props {},
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asio::use_awaitable
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);
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//]
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//[disconnect_coro
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// Disconnect the Client.
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// With asio::use_awaitable as a completion token and void (error_code) as the completion signature,
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// the co_await has nothing to return.
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co_await client.async_disconnect(
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async_mqtt5::disconnect_rc_e::disconnect_with_will_message,
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async_mqtt5::disconnect_props {},
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asio::use_awaitable
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);
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//]
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co_return;
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}
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//[no_throw_awaitable
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constexpr auto use_nothrow_awaitable = asio::as_tuple(asio::use_awaitable);
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//]
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asio::awaitable<void> nothrow_coroutine(client_type& client) {
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//[publish_coro_nothrow
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async_mqtt5::error_code ec;
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async_mqtt5::reason_code rc;
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std::tie(ec) = co_await client.async_publish<async_mqtt5::qos_e::at_most_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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use_nothrow_awaitable
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);
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async_mqtt5::puback_props puback_props;
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std::tie(ec, rc, puback_props) = co_await client.async_publish<async_mqtt5::qos_e::at_least_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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use_nothrow_awaitable
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);
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async_mqtt5::pubcomp_props pubcomp_props;
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std::tie(ec, rc, pubcomp_props) = co_await client.async_publish<async_mqtt5::qos_e::exactly_once>(
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"test/mqtt-test", "Hello world!",
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async_mqtt5::retain_e::yes, async_mqtt5::publish_props {},
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use_nothrow_awaitable
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);
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//]
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//[subscribe_coro_nothrow
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std::vector<async_mqtt5::reason_code> rcs;
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async_mqtt5::suback_props suback_props;
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std::tie(ec, rcs, suback_props) = co_await client.async_subscribe(
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{ "test/mqtt-test", { async_mqtt5::qos_e::exactly_once } },
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async_mqtt5::subscribe_props {}, use_nothrow_awaitable
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);
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//]
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//[receive_coro_nothrow
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std::string topic, payload;
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async_mqtt5::publish_props publish_props;
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std::tie(ec, topic, payload, publish_props) = co_await client.async_receive(use_nothrow_awaitable);
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//]
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//[unsubscribe_coro_nothrow
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async_mqtt5::unsuback_props unsuback_props;
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std::tie(ec, rcs, unsuback_props) = co_await client.async_unsubscribe(
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std::vector<std::string>{ "test/mqtt-test" }, async_mqtt5::unsubscribe_props {},
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use_nothrow_awaitable
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);
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//]
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//[disconnect_coro_nothrow
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std::tie(ec) = co_await client.async_disconnect(
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async_mqtt5::disconnect_rc_e::disconnect_with_will_message,
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async_mqtt5::disconnect_props {},
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use_nothrow_awaitable
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);
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//]
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co_return;
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}
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int main(int argc, char** argv) {
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asio::io_context ioc;
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// Make an instance of mqtt_client. Establish a TCP connection with the Broker.
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client_type c(ioc.get_executor(), "");
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c.credentials("test-client", "username", "password")
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.brokers("mqtt.broker", 1883)
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.run();
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co_spawn(ioc.get_executor(), coroutine(c), asio::detached);
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// or...
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co_spawn(ioc.get_executor(), nothrow_coroutine(c), asio::detached);
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ioc.run();
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}
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