Expose new LocalCluster interface and use in example

This commit is contained in:
Alex Hultman
2024-01-22 11:28:25 +01:00
parent 0118731694
commit b834275162
4 changed files with 81 additions and 136 deletions
+1 -1
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@@ -9,7 +9,7 @@ int main(int argc, char **argv) {
char *CXX = strcpy(calloc(1024, 1), or_else(getenv("CXX"), "g++"));
char *EXEC_SUFFIX = strcpy(calloc(1024, 1), maybe(getenv("EXEC_SUFFIX")));
char *EXAMPLE_FILES[] = {"LoadBalancer", "Http3Server", "Broadcast", "HelloWorld", "Crc32", "ServerName",
char *EXAMPLE_FILES[] = {"HelloWorldThreaded", "Http3Server", "Broadcast", "HelloWorld", "Crc32", "ServerName",
"EchoServer", "BroadcastingEchoServer", "UpgradeSync", "UpgradeAsync", "ParameterRoutes"};
strcat(CXXFLAGS, " -march=native -O3 -Wpedantic -Wall -Wextra -Wsign-conversion -Wconversion -std=c++20 -Isrc -IuSockets/src");
+8 -24
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@@ -1,40 +1,24 @@
#include "App.h"
#include <thread>
#include <algorithm>
#include <mutex>
/* Note that SSL is disabled unless you build with WITH_OPENSSL=1 */
const int SSL = 1;
std::mutex stdoutMutex;
#include "LocalCluster.h"
int main() {
/* Overly simple hello world app, using multiple threads */
std::vector<std::thread *> threads(std::thread::hardware_concurrency());
std::transform(threads.begin(), threads.end(), threads.begin(), [](std::thread */*t*/) {
return new std::thread([]() {
uWS::SSLApp({
/* Note that SSL is disabled unless you build with WITH_OPENSSL=1 */
uWS::LocalCluster({
.key_file_name = "misc/key.pem",
.cert_file_name = "misc/cert.pem",
.passphrase = "1234"
}).get("/*", [](auto *res, auto * /*req*/) {
},
[](uWS::SSLApp &app) {
/* Here this App instance is defined */
app.get("/*", [](auto *res, auto * /*req*/) {
res->end("Hello world!");
}).listen(3000, [](auto *listen_socket) {
stdoutMutex.lock();
if (listen_socket) {
/* Note that us_listen_socket_t is castable to us_socket_t */
std::cout << "Thread " << std::this_thread::get_id() << " listening on port " << us_socket_local_port(SSL, (struct us_socket_t *) listen_socket) << std::endl;
std::cout << "Thread " << std::this_thread::get_id() << " listening on port " << us_socket_local_port(true, (struct us_socket_t *) listen_socket) << std::endl;
} else {
std::cout << "Thread " << std::this_thread::get_id() << " failed to listen on port 3000" << std::endl;
}
stdoutMutex.unlock();
}).run();
});
});
std::for_each(threads.begin(), threads.end(), [](std::thread *t) {
t->join();
});
}
-101
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@@ -1,101 +0,0 @@
#include "App.h"
#include <thread>
#include <algorithm>
#include <mutex>
/* Note that SSL is disabled unless you build with WITH_OPENSSL=1 */
const int SSL = 1;
unsigned int roundRobin = 0;
unsigned int hardwareConcurrency = std::thread::hardware_concurrency();
std::vector<std::thread *> threads(hardwareConcurrency);
std::vector<uWS::SSLApp *> apps;
std::mutex m;
namespace uWS {
struct LocalCluster {
//std::vector<std::thread *> threads = std::thread::hardware_concurrency();
std::vector<uWS::SSLApp *> apps;
std::mutex m;
static void loadBalancer() {
static std::atomic<unsigned int> roundRobin = 0; // atomic fetch_add
}
LocalCluster(SocketContextOptions options = {}, std::function<void(uWS::SSLApp &)> cb = nullptr) {
}
};
}
int main() {
// can be strictly round robin or not
// uWS::LocalCluster({
// .key_file_name = "misc/key.pem",
// .cert_file_name = "misc/cert.pem",
// .passphrase = "1234"
// },
// [](uWS::SSLApp &app) {
// /* Here this App instance is defined */
// app.get("/*", [](auto *res, auto * /*req*/) {
// res->end("Hello world!");
// }).listen(3000, [](auto *listen_socket) {
// if (listen_socket) {
// /* Note that us_listen_socket_t is castable to us_socket_t */
// std::cout << "Thread " << std::this_thread::get_id() << " listening on port " << us_socket_local_port(SSL, (struct us_socket_t *) listen_socket) << std::endl;
// } else {
// std::cout << "Thread " << std::this_thread::get_id() << " failed to listen on port 3000" << std::endl;
// }
// });
// });
std::transform(threads.begin(), threads.end(), threads.begin(), [](std::thread *) {
return new std::thread([]() {
// lock this
m.lock();
apps.emplace_back(new uWS::SSLApp({
.key_file_name = "misc/key.pem",
.cert_file_name = "misc/cert.pem",
.passphrase = "1234"
}));
uWS::SSLApp *app = apps.back();
app->get("/*", [](auto *res, auto * /*req*/) {
res->end("Hello world!");
}).listen(3000, [](auto *listen_socket) {
if (listen_socket) {
/* Note that us_listen_socket_t is castable to us_socket_t */
std::cout << "Thread " << std::this_thread::get_id() << " listening on port " << us_socket_local_port(SSL, (struct us_socket_t *) listen_socket) << std::endl;
} else {
std::cout << "Thread " << std::this_thread::get_id() << " failed to listen on port 3000" << std::endl;
}
}).preOpen([](LIBUS_SOCKET_DESCRIPTOR fd) {
/* Distribute this socket in round robin fashion */
std::cout << "About to load balance " << fd << " to " << roundRobin << std::endl;
auto receivingApp = apps[roundRobin];
apps[roundRobin]->getLoop()->defer([fd, receivingApp]() {
receivingApp->adoptSocket(fd);
});
roundRobin = (roundRobin + 1) % hardwareConcurrency;
return -1;
});
m.unlock();
app->run();
std::cout << "Fallthrough!" << std::endl;
delete app;
});
});
std::for_each(threads.begin(), threads.end(), [](std::thread *t) {
t->join();
});
}
+62
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@@ -0,0 +1,62 @@
/* This header is highly experimental and needs refactorings but will do for now */
#include <thread>
#include <algorithm>
#include <mutex>
unsigned int roundRobin = 0;
unsigned int hardwareConcurrency = std::thread::hardware_concurrency();
std::vector<std::thread *> threads(hardwareConcurrency);
std::vector<uWS::SSLApp *> apps;
std::mutex m;
namespace uWS {
struct LocalCluster {
//std::vector<std::thread *> threads = std::thread::hardware_concurrency();
//std::vector<uWS::SSLApp *> apps;
//std::mutex m;
static void loadBalancer() {
static std::atomic<unsigned int> roundRobin = 0; // atomic fetch_add
}
LocalCluster(SocketContextOptions options = {}, std::function<void(uWS::SSLApp &)> cb = nullptr) {
std::transform(threads.begin(), threads.end(), threads.begin(), [options, &cb](std::thread *) {
return new std::thread([options, &cb]() {
// lock this
m.lock();
apps.emplace_back(new uWS::SSLApp(options));
uWS::SSLApp *app = apps.back();
cb(*app);
app->preOpen([](LIBUS_SOCKET_DESCRIPTOR fd) {
/* Distribute this socket in round robin fashion */
//std::cout << "About to load balance " << fd << " to " << roundRobin << std::endl;
auto receivingApp = apps[roundRobin];
apps[roundRobin]->getLoop()->defer([fd, receivingApp]() {
receivingApp->adoptSocket(fd);
});
roundRobin = (roundRobin + 1) % hardwareConcurrency;
return -1;
});
m.unlock();
app->run();
std::cout << "Fallthrough!" << std::endl;
delete app;
});
});
std::for_each(threads.begin(), threads.end(), [](std::thread *t) {
t->join();
});
}
};
}