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https://gitee.com/acl-dev/acl.git
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439 lines
11 KiB
C++
439 lines
11 KiB
C++
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#include <stdio.h>
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#include <stdlib.h>
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#include <vector>
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#include <set>
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#include <getopt.h>
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#include "acl_cpp/lib_acl.hpp"
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//////////////////////////////////////////////////////////////////////////////
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class mqtt_client;
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class mqtt_clients {
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public:
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mqtt_clients(const char* topic) : topic_(topic) {}
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~mqtt_clients(void) {}
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const char* get_topic(void) const {
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return topic_.c_str();
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}
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std::set<mqtt_client*>& get_clients(void) {
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return clients_;
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}
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bool add(mqtt_client* client);
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bool del(mqtt_client* client);
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bool empty(void) const {
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return clients_.empty();
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}
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void clear_all(void);
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private:
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acl::string topic_;
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std::set<mqtt_client*> clients_;
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};
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class mqtt_manager {
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public:
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mqtt_manager(void) {}
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~mqtt_manager(void);
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bool add(const char* topic, mqtt_client* client);
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bool del(mqtt_client* client);
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std::set<mqtt_client*>* get_clients(const char* topic) {
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std::map<acl::string, mqtt_clients*>::iterator it =
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manager_.find(topic);
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if (it == manager_.end()) {
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return NULL;
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}
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return &it->second->get_clients();
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}
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private:
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std::map<acl::string, mqtt_clients*> manager_;
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void del(const char* topic, mqtt_client* client);
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};
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class mqtt_client : public acl::mqtt_aclient {
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public:
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mqtt_client(acl::aio_handle& handle, mqtt_manager& manager);
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const std::set<acl::string>& get_topics(void) const {
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return topics_;
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}
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protected:
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~mqtt_client(void);
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// @override
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void destroy(void) { delete this; }
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// @override
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bool on_open(void);
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// @override
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void on_disconnect(void) {
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printf("client disconnect\r\n");
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manager_.del(this);
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}
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// @override
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bool on_header(const acl::mqtt_header& header);
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// @override
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bool on_body(const acl::mqtt_message& body);
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private:
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mqtt_manager& manager_;
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std::set<acl::string> topics_;
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bool handle_connect(const acl::mqtt_message& body);
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bool handle_subscribe(const acl::mqtt_message& body);
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bool handle_pingreq(const acl::mqtt_message& body);
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bool handle_pingresp(const acl::mqtt_message& body);
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bool handle_disconnect(const acl::mqtt_message& body);
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bool handle_publish(const acl::mqtt_message& body);
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bool handle_puback(const acl::mqtt_message& body);
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void forward_publish(const acl::mqtt_publish& publish);
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void forward_publish(mqtt_client& client, const acl::mqtt_publish& in);
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};
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//////////////////////////////////////////////////////////////////////////////
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bool mqtt_clients::add(mqtt_client* client) {
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std::set<mqtt_client*>::const_iterator cit
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= clients_.find(client);
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if (cit == clients_.end()) {
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clients_.insert(client);
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printf("topic=%s, client=%p add ok\r\n",
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topic_.c_str(), client);
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return true;
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} else {
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printf("topic=%s, client=%p, add error, exist\r\n",
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topic_.c_str(), client);
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return false;
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}
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}
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bool mqtt_clients::del(mqtt_client* client) {
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std::set<mqtt_client*>::iterator it = clients_.find(client);
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if (it != clients_.end()) {
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clients_.erase(it);
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printf("topic=%s, client=%p, del ok\r\n",
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topic_.c_str(), client);
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return true;
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}
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printf("topic=%s, client=%p, del error, not exit\r\n",
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topic_.c_str(), client);
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return false;
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}
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void mqtt_clients::clear_all(void) {
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for (std::set<mqtt_client*>::iterator it = clients_.begin();
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it != clients_.end(); ++it) {
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(*it)->close();
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}
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clients_.clear();
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}
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//////////////////////////////////////////////////////////////////////////////
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mqtt_manager::~mqtt_manager(void) {
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for (std::map<acl::string, mqtt_clients*>::iterator it
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= manager_.begin(); it != manager_.end(); ++it) {
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it->second->clear_all();
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delete it->second;
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}
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}
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bool mqtt_manager::add(const char* topic, mqtt_client* client) {
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std::map<acl::string, mqtt_clients*>::iterator it = manager_.find(topic);
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if (it == manager_.end()) {
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mqtt_clients* clients = new mqtt_clients(topic);
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manager_[topic] = clients;
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return clients->add(client);
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} else {
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return it->second->add(client);
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}
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}
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bool mqtt_manager::del(mqtt_client* client) {
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const std::set<acl::string>& topics = client->get_topics();
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if (topics.empty()) {
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printf("no topics in client=%p\r\n", client);
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return false;
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}
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for (std::set<acl::string>::const_iterator cit
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= topics.begin(); cit != topics.end(); ++cit) {
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del(*cit, client);
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}
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return true;
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}
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void mqtt_manager::del(const char* topic, mqtt_client* client) {
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std::map<acl::string, mqtt_clients*>::iterator it = manager_.find(topic);
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if (it != manager_.end()) {
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it->second->del(client);
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if (it->second->empty()) {
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printf("topic=%s, delete mqtt_clients\r\n",
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it->second->get_topic());
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delete it->second;
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manager_.erase(it);
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}
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}
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}
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//////////////////////////////////////////////////////////////////////////////
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mqtt_client::mqtt_client(acl::aio_handle& handle, mqtt_manager& manager)
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: acl::mqtt_aclient(handle), manager_(manager) {}
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mqtt_client::~mqtt_client(void) {}
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bool mqtt_client::on_open(void) {
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printf("one client connected\r\n");
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return true;
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}
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bool mqtt_client::on_header(const acl::mqtt_header& header) {
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printf("got new mqtt header, type=%s\r\n",
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acl::mqtt_type_desc(header.get_type()));
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return true;
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}
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bool mqtt_client::on_body(const acl::mqtt_message& body) {
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acl::mqtt_type_t type = body.get_header().get_type();
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switch (type) {
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case acl::MQTT_CONNECT:
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return handle_connect(body);
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case acl::MQTT_SUBSCRIBE:
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return handle_subscribe(body);
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case acl::MQTT_PINGREQ:
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return handle_pingreq(body);
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case acl::MQTT_PINGRESP:
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return handle_pingresp(body);
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case acl::MQTT_DISCONNECT:
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return handle_disconnect(body);
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case acl::MQTT_PUBLISH:
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return handle_publish(body);
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case acl::MQTT_PUBACK:
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return handle_puback(body);
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default:
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printf("unknown type=%d, %s\r\n",
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(int) type, acl::mqtt_type_desc(type));
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return true;
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}
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}
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bool mqtt_client::handle_connect(const acl::mqtt_message&) {
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acl::mqtt_connack connack;
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connack.set_connack_code(acl::MQTT_CONNACK_OK);
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printf("%s => send connack\r\n", __FUNCTION__);
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return this->send(connack);
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}
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bool mqtt_client::handle_subscribe(const acl::mqtt_message& body) {
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const acl::mqtt_subscribe& subscribe = (const acl::mqtt_subscribe&) body;
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const std::vector<acl::string>& topics = subscribe.get_topics();
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const std::vector<acl::mqtt_qos_t>& qoses = subscribe.get_qoses();
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if (topics.empty()) {
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printf("not topic got\r\n");
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return false;
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}
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if (qoses.size() != topics.size()) {
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printf("qos count(%zd) != topic count(%zd)\r\n",
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qoses.size(), topics.size());
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return true;
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}
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printf("%s => pkt_id=%d\r\n", __FUNCTION__, subscribe.get_pkt_id());
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size_t n = topics.size();
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for (size_t i = 0; i < n; i++) {
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printf("%s => topic=%s, qos=%s\r\n", __FUNCTION__,
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topics[i].c_str(), acl::mqtt_qos_desc(qoses[i]));
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topics_.insert(topics[i]);
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if (!manager_.add(topics[i], this)) {
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printf("add to manager error, this=%p\r\n", this);
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return false;
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}
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}
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acl::mqtt_suback suback;
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suback.set_pkt_id(subscribe.get_pkt_id());
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suback.add_topic_qos(qoses);
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printf("%s => send suback\r\n", __FUNCTION__);
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return this->send(suback);
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}
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bool mqtt_client::handle_pingreq(const acl::mqtt_message&) {
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acl::mqtt_pingresp pingresp;
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if (this->send(pingresp)) {
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return true;
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}
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printf("%s => send pingresp error\r\n", __FUNCTION__);
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return false;
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}
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bool mqtt_client::handle_pingresp(const acl::mqtt_message&) {
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printf("%s => got pingresp\r\n", __FUNCTION__);
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return true;
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}
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bool mqtt_client::handle_disconnect(const acl::mqtt_message&) {
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printf("%s => disconnect\r\n", __FUNCTION__);
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return false;
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}
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void mqtt_client::forward_publish(const acl::mqtt_publish& publish) {
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std::set<mqtt_client*>* clients =
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manager_.get_clients(publish.get_topic());
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if (clients == NULL || clients->empty()) {
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return;
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}
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for (std::set<mqtt_client*>::iterator it = clients->begin();
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it != clients->end(); ++it) {
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forward_publish(**it, publish);
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}
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}
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void mqtt_client::forward_publish(mqtt_client& client,
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const acl::mqtt_publish& in) {
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acl::mqtt_publish publish;
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publish.get_header().set_qos(in.get_header().get_qos());
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publish.set_pkt_id(in.get_pkt_id());
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publish.set_topic(in.get_topic());
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const acl::string& payload = in.get_payload();
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publish.set_payload((unsigned) payload.size(), payload);
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if (client.send(publish)) {
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printf("%s => send publish ok\r\n", __FUNCTION__);
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} else {
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printf("%s => send publish error\r\n", __FUNCTION__);
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}
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}
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bool mqtt_client::handle_publish(const acl::mqtt_message& body) {
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const acl::mqtt_publish& publish = (const acl::mqtt_publish&) body;
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const acl::string& payload = publish.get_payload();
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const char* topic = publish.get_topic();
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printf("topic: %s, qos: %d, pkt_id: %d, payload: %s\r\n",
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topic, (int) publish.get_header().get_qos(),
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publish.get_pkt_id(), payload.c_str());
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forward_publish(publish);
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if (publish.get_header().get_qos() == acl::MQTT_QOS0) {
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return true;
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}
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acl::mqtt_qos_t qos = body.get_header().get_qos();
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if (qos != acl::MQTT_QOS1) {
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printf("topic=%s, qos=%s, needn't ack\r\n",
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publish.get_topic(), acl::mqtt_qos_desc(qos));
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return true;
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}
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acl::mqtt_puback puback;
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puback.set_pkt_id(publish.get_pkt_id());
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if (!this->send(puback)) {
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printf("%s => puback error, pkt_id=%d\r\n",
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__FUNCTION__, puback.get_pkt_id());
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return false;
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}
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printf("%s => puback ok, pkt_id=%d\r\n",
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__FUNCTION__, puback.get_pkt_id());
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return true;
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}
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bool mqtt_client::handle_puback(const acl::mqtt_message&) {
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return true;
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}
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//////////////////////////////////////////////////////////////////////////////
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class server_callback : public acl::aio_accept_callback {
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public:
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server_callback(acl::aio_handle& handle) : handle_(handle) {}
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~server_callback(void) {}
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protected:
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// @override
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bool accept_callback(acl::aio_socket_stream* conn) {
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printf("connect from %s, fd=%d\r\n", conn->get_peer(true),
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conn->sock_handle());
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acl::mqtt_aclient* client = new mqtt_client(handle_, manager_);
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if (client->open(conn)) {
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return true;
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}
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printf("open one mqtt client failed\r\n");
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client->destroy();
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conn->close();
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return true;
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}
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private:
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acl::aio_handle& handle_;
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mqtt_manager manager_;
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};
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//////////////////////////////////////////////////////////////////////////////
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static void usage(const char* procname) {
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printf("usage: %s -h [help] -s addr\r\n", procname);
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}
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int main(int argc, char* argv[]) {
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char ch;
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acl::string addr("0.0.0.0|1883");
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while ((ch = getopt(argc, argv, "hs:")) > 0) {
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switch (ch) {
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case 'h':
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usage(argv[0]);
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return 0;
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case 's':
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addr = optarg;
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break;
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default:
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break;
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}
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}
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acl::log::stdout_open(true);
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acl::aio_handle handle(acl::ENGINE_KERNEL);
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acl::aio_listen_stream* listener = new acl::aio_listen_stream(&handle);
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if (!listener->open(addr)) {
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printf("listen %s error %s\r\n", addr.c_str(), acl::last_serror());
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return 1;
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}
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printf("listen %s ok\r\n", addr.c_str());
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server_callback callback(handle);
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listener->add_accept_callback(&callback);
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while (handle.check()) {}
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handle.check();
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listener->destroy();
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return 0;
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}
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