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175 lines (147 loc) · 4.3 KB
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// proxy_v3_racy.cpp
// Note: Deliberately introduces a read-modify-write data race in the
// round-robin routing logic for ThreadSanitizer (TSan) testing and
// demonstration purposes.
//
// Usage: ./proxy_v3_racy <listen_port> <backend_host> <backend_port_1>
// [backend_port_2 ...]
#include <arpa/inet.h>
#include <cstring>
#include <iostream>
#include <netdb.h>
#include <netinet/in.h>
#include <string>
#include <sys/socket.h>
#include <unistd.h>
#include <vector>
#include "thread_pool.h"
namespace {
constexpr int kListenBacklog = 128;
constexpr size_t kBufferSize = 4096;
constexpr size_t kNumThreads = 4;
int connect_to_backend(const std::string &host, int port) {
addrinfo hints{};
hints.ai_family = AF_INET;
hints.ai_socktype = SOCK_STREAM;
addrinfo *result = nullptr;
std::string port_str = std::to_string(port);
int rc = getaddrinfo(host.c_str(), port_str.c_str(), &hints, &result);
if (rc != 0) {
std::cerr << "getaddrinfo failed for " << host << ":" << port << " - "
<< gai_strerror(rc) << "\n";
return -1;
}
int fd = -1;
for (addrinfo *p = result; p != nullptr; p = p->ai_next) {
fd = socket(p->ai_family, p->ai_socktype, p->ai_protocol);
if (fd < 0)
continue;
if (connect(fd, p->ai_addr, p->ai_addrlen) == 0) {
break;
}
close(fd);
fd = -1;
}
freeaddrinfo(result);
return fd;
}
ssize_t forward_once(int src_fd, int dst_fd) {
char buffer[kBufferSize];
ssize_t n_read = recv(src_fd, buffer, sizeof(buffer), 0);
if (n_read <= 0) {
return n_read;
}
ssize_t total_sent = 0;
while (total_sent < n_read) {
ssize_t n_sent = send(dst_fd, buffer + total_sent, n_read - total_sent, 0);
if (n_sent < 0) {
perror("send");
return -1;
}
total_sent += n_sent;
}
return total_sent;
}
void handle_client(int client_fd, const std::string &backend_host,
int backend_port) {
int backend_fd = connect_to_backend(backend_host, backend_port);
if (backend_fd < 0) {
std::cerr << "[proxy] failed to connect to backend " << backend_host << ":"
<< backend_port << "\n";
close(client_fd);
return;
}
ssize_t forwarded = forward_once(client_fd, backend_fd);
if (forwarded <= 0) {
close(client_fd);
close(backend_fd);
return;
}
forward_once(backend_fd, client_fd);
close(backend_fd);
close(client_fd);
}
std::vector<int> g_backend_ports;
int g_next_backend = 0; // INTENTIONAL BUG: Unsynchronized shared state
int pick_backend_port_RACY() {
int chosen_index = g_next_backend;
g_next_backend =
(g_next_backend + 1) % static_cast<int>(g_backend_ports.size());
return g_backend_ports[chosen_index];
}
} // namespace
int main(int argc, char *argv[]) {
if (argc < 4) {
std::cerr << "Usage: " << argv[0]
<< " <listen_port> <backend_host> <backend_port_1> "
"[backend_port_2 ...]\n";
return 1;
}
int listen_port = std::stoi(argv[1]);
std::string backend_host = argv[2];
for (int i = 3; i < argc; ++i) {
g_backend_ports.push_back(std::stoi(argv[i]));
}
int listen_fd = socket(AF_INET, SOCK_STREAM, 0);
if (listen_fd < 0) {
perror("socket");
return 1;
}
int opt = 1;
if (setsockopt(listen_fd, SOL_SOCKET, SO_REUSEADDR, &opt, sizeof(opt)) < 0) {
perror("setsockopt");
}
sockaddr_in addr{};
addr.sin_family = AF_INET;
addr.sin_addr.s_addr = INADDR_ANY;
addr.sin_port = htons(listen_port);
if (bind(listen_fd, reinterpret_cast<sockaddr *>(&addr), sizeof(addr)) < 0) {
perror("bind");
close(listen_fd);
return 1;
}
if (listen(listen_fd, kListenBacklog) < 0) {
perror("listen");
close(listen_fd);
return 1;
}
std::cout << "[proxy v3 - RACY round-robin, " << g_backend_ports.size()
<< " backends] listening on port " << listen_port << std::endl;
ThreadPool pool(kNumThreads);
while (true) {
sockaddr_in client_addr{};
socklen_t client_len = sizeof(client_addr);
int client_fd = accept(
listen_fd, reinterpret_cast<sockaddr *>(&client_addr), &client_len);
if (client_fd < 0) {
perror("accept");
continue;
}
pool.submit([client_fd, &backend_host] {
int backend_port = pick_backend_port_RACY();
handle_client(client_fd, backend_host, backend_port);
});
}
close(listen_fd);
return 0;
}