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# Asynco
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A C++ library for event-driven asynchronous multi-threaded programming.
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## Features
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- Object oriented
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- Small and easy to integrate
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- Header only
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- Asynchronous programming
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- Multithread
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- Asynchronous timer functions: interval, timeout
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- Typed events (on, emit, off)
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- Event loops
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- Multiple parallel execution loops
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- Asynchronous file IO
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## Installation
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Just download the latest release and unzip it into your project.
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```c++
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#define NUM_OF_RUNNERS 8 // To change the number of threads used by atask, without this it runs according to the number of cores
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#include "asynco/lib/asynco.hpp" // atask(), wait()
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#include "asynco/lib/event.hpp" // event
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#include "asynco/lib/rotor.hpp" // interval, timeout
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#include "asynco/lib/runner.hpp" // for own loop
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#include "asynco/lib/filesystem.hpp" // for async read and write files
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using namespace marcelb;
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using namespace asynco;
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using namespace events;
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```
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## Usage
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Time asynchronous functions
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```c++
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// start interval
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interval inter1 ([]() {
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cout << "Interval 1" << endl;
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}, 1000);
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// stop interval
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inter1.clear();
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// start timeout
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timeout time1 ( [] () {
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cout << "Timeout 1 " << endl;
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}, 10000);
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// stop timeout
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time1.clear();
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```
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Make functions asynchronous
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```c++
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/**
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* Run an lambda function asynchronously
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*/
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atask( []() {
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sleep_for(2s); // only for simulating long duration function
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cout << "atask" << endl;
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return 5;
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});
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/**
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* Run not lambda function
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*/
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void notLambdaFunction() {
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cout << "Call to not lambda function" << endl;
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}
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atask (notLambdaFunction);
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/**
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* Run class method
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*/
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class clm {
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public:
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void classMethode() {
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cout << "Call class method" << endl;
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}
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};
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clm classes;
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atask( [&classes] () {
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classes.classMethode();
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});
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/**
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* Wait after runned as async
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*/
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auto a = atask( []() {
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sleep_for(2s); // only for simulating long duration function
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cout << "atask" << endl;
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return 5;
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});
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cout << wait(a) << endl;
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/**
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* Wait async function call and use i cout
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*/
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cout << wait(atask( [] () {
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sleep_for(chrono::seconds(1)); // only for simulating long duration function
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cout << "wait end" << endl;
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return 4;
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})) << endl;
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/**
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* Sleep with timeout sleep implement
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*/
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void sleep_to (int _time) {
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promise<void> _promise;
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timeout t( [&]() {
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_promise.set_value();
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}, _time);
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return _promise.get_future().get();
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}
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sleep_to(3000);
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/**
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* Catch promise reject
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*/
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void promise_reject (int _time) {
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promise<void> _promise;
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timeout t( [&]() {
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try {
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// simulate except
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throw runtime_error("Error simulation");
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_promise.set_value();
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} catch (...) {
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_promise.set_exception(current_exception());
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}
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}, _time);
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return _promise.get_future().get();
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}
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try {
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promise_reject(3000);
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} catch (runtime_error err) {
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cout<< err.what() << endl;
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}
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```
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Events
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```c++
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/**
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* initialization of typed events
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*/
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event<int, int> ev2int;
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event<int, string> evintString;
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event<> evoid;
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ev2int.on("sum", [](int a, int b) {
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cout << "Sum " << a+b << endl;
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});
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evintString.on("substract", [](int a, string b) {
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cout << "Substract " << a-stoi(b) << endl;
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});
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evoid.on("void", []() {
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cout << "Void emited" << endl;
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});
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// multiple listeners
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string emited2 = "2";
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evoid.on("void", [&]() {
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cout << "Void emited " << emited2 << endl;
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});
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sleep(1);
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/**
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* Emit
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*/
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ev2int.emit("sum", 5, 8);
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sleep(1);
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evintString.emit("substract", 3, to_string(2));
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sleep(1);
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evoid.emit("void");
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// Turn off the event listener
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evoid.off("void");
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evoid.emit("void"); // nothing is happening
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```
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Extend own class whit events
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```c++
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class myOwnClass : public event<int> {
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public:
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myOwnClass() : event() {};
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};
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myOwnClass myclass;
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timeout t( [&] {
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myclass.emit("constructed", 1);
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}, 200);
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myclass.on("constructed", [] (int i) {
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cout << "Constructed " << i << endl;
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});
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```
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Asynchronous file IO
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```c++
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string data_;
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fs::read("test.txt", [&data_] (string data, exception* error) {
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if (error) {
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cout << "Error " << error->what() << endl;
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} else {
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cout << "Data " << endl << data << endl;
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data_ = data;
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cout << "Data_" << data_ << endl;
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}
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});
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fs::write("test1.txt", "Hello world", [] (exception* error) {
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if (error) {
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cout << "Error " << error->what() << endl;
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} else {
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cout << "Write successfuly" << endl;
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}
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});
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auto future_data = fs::read("test.txt");
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try {
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string data = wait(future_data);
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} catch (exception& err) {
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cout << err.what() << endl;
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}
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auto future_status = fs::write("test.txt", "Hello world");
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try {
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wait(future_status);
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} catch (exception& err) {
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cout << err.what() << endl;
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}
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```
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## License
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[APACHE 2.0](http://www.apache.org/licenses/LICENSE-2.0/)
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## Support & Feedback
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For support and any feedback, contact the address: marcelb96@yahoo.com.
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## Contributing
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Contributions are always welcome!
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Feel free to fork and start working with or without a later pull request. Or contact for suggest and request an option.
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