This source file includes following definitions.
- alloc_cb
- close_cb
- cl_recv_cb
- cl_send_cb
- sv_send_cb
- sv_recv_cb
- TEST_IMPL
#include "uv.h"
#include "task.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#define CHECK_HANDLE(handle) \
ASSERT((uv_udp_t*)(handle) == &server || (uv_udp_t*)(handle) == &client)
static uv_udp_t server;
static uv_udp_t client;
static int cl_send_cb_called;
static int cl_recv_cb_called;
static int sv_send_cb_called;
static int sv_recv_cb_called;
static int close_cb_called;
static uv_buf_t alloc_cb(uv_handle_t* handle, size_t suggested_size) {
static char slab[65536];
CHECK_HANDLE(handle);
ASSERT(suggested_size <= sizeof slab);
return uv_buf_init(slab, sizeof slab);
}
static void close_cb(uv_handle_t* handle) {
CHECK_HANDLE(handle);
ASSERT(uv_is_closing(handle));
close_cb_called++;
}
static void cl_recv_cb(uv_udp_t* handle,
ssize_t nread,
uv_buf_t buf,
struct sockaddr* addr,
unsigned flags) {
CHECK_HANDLE(handle);
ASSERT(flags == 0);
if (nread < 0) {
ASSERT(0 && "unexpected error");
}
if (nread == 0) {
ASSERT(addr == NULL);
return;
}
ASSERT(addr != NULL);
ASSERT(nread == 4);
ASSERT(!memcmp("PONG", buf.base, nread));
cl_recv_cb_called++;
uv_close((uv_handle_t*) handle, close_cb);
}
static void cl_send_cb(uv_udp_send_t* req, int status) {
int r;
ASSERT(req != NULL);
ASSERT(status == 0);
CHECK_HANDLE(req->handle);
r = uv_udp_recv_start(req->handle, alloc_cb, cl_recv_cb);
ASSERT(r == 0);
cl_send_cb_called++;
}
static void sv_send_cb(uv_udp_send_t* req, int status) {
ASSERT(req != NULL);
ASSERT(status == 0);
CHECK_HANDLE(req->handle);
uv_close((uv_handle_t*) req->handle, close_cb);
free(req);
sv_send_cb_called++;
}
static void sv_recv_cb(uv_udp_t* handle,
ssize_t nread,
uv_buf_t buf,
struct sockaddr* addr,
unsigned flags) {
uv_udp_send_t* req;
int r;
if (nread < 0) {
ASSERT(0 && "unexpected error");
}
if (nread == 0) {
ASSERT(addr == NULL);
return;
}
CHECK_HANDLE(handle);
ASSERT(flags == 0);
ASSERT(addr != NULL);
ASSERT(nread == 4);
ASSERT(!memcmp("PING", buf.base, nread));
r = uv_udp_recv_stop(handle);
ASSERT(r == 0);
req = malloc(sizeof *req);
ASSERT(req != NULL);
buf = uv_buf_init("PONG", 4);
r = uv_udp_send(req,
handle,
&buf,
1,
*(struct sockaddr_in*)addr,
sv_send_cb);
ASSERT(r == 0);
sv_recv_cb_called++;
}
TEST_IMPL(udp_send_and_recv) {
struct sockaddr_in addr;
uv_udp_send_t req;
uv_buf_t buf;
int r;
addr = uv_ip4_addr("0.0.0.0", TEST_PORT);
r = uv_udp_init(uv_default_loop(), &server);
ASSERT(r == 0);
r = uv_udp_bind(&server, addr, 0);
ASSERT(r == 0);
r = uv_udp_recv_start(&server, alloc_cb, sv_recv_cb);
ASSERT(r == 0);
addr = uv_ip4_addr("127.0.0.1", TEST_PORT);
r = uv_udp_init(uv_default_loop(), &client);
ASSERT(r == 0);
buf = uv_buf_init("PING", 4);
r = uv_udp_send(&req, &client, &buf, 1, addr, cl_send_cb);
ASSERT(r == 0);
ASSERT(close_cb_called == 0);
ASSERT(cl_send_cb_called == 0);
ASSERT(cl_recv_cb_called == 0);
ASSERT(sv_send_cb_called == 0);
ASSERT(sv_recv_cb_called == 0);
uv_run(uv_default_loop(), UV_RUN_DEFAULT);
ASSERT(cl_send_cb_called == 1);
ASSERT(cl_recv_cb_called == 1);
ASSERT(sv_send_cb_called == 1);
ASSERT(sv_recv_cb_called == 1);
ASSERT(close_cb_called == 2);
MAKE_VALGRIND_HAPPY();
return 0;
}