qemu/net/stream_data.c
Laurent Vivier adf684ce69 net: Refactor stream logic for reuse in '-net passt'
To prepare for the implementation of '-net passt', this patch moves
the generic stream handling functions from net/stream.c into new
net/stream_data.c and net/stream_data.h files.

This refactoring introduces a NetStreamData struct that encapsulates
the generic fields and logic previously in NetStreamState. The
NetStreamState now embeds NetStreamData and delegates the core
stream operations to the new generic functions.

To maintain flexibility for different users of this generic code,
callbacks for send and listen operations are now passed via
function pointers within the NetStreamData struct. This allows
callers to provide their own specific implementations while reusing
the common connection and data transfer logic.

Signed-off-by: Laurent Vivier <lvivier@redhat.com>
Signed-off-by: Jason Wang <jasowang@redhat.com>
2025-07-14 13:27:09 +08:00

194 lines
5.1 KiB
C

/*
* net stream generic functions
*
* Copyright Red Hat
*
* SPDX-License-Identifier: GPL-2.0-or-later
*/
#include "qemu/osdep.h"
#include "qemu/iov.h"
#include "qapi/error.h"
#include "net/net.h"
#include "io/channel.h"
#include "io/net-listener.h"
#include "stream_data.h"
static gboolean net_stream_data_writable(QIOChannel *ioc,
GIOCondition condition, gpointer data)
{
NetStreamData *d = data;
d->ioc_write_tag = 0;
qemu_flush_queued_packets(&d->nc);
return G_SOURCE_REMOVE;
}
ssize_t net_stream_data_receive(NetStreamData *d, const uint8_t *buf,
size_t size)
{
uint32_t len = htonl(size);
struct iovec iov[] = {
{
.iov_base = &len,
.iov_len = sizeof(len),
}, {
.iov_base = (void *)buf,
.iov_len = size,
},
};
struct iovec local_iov[2];
unsigned int nlocal_iov;
size_t remaining;
ssize_t ret;
remaining = iov_size(iov, 2) - d->send_index;
nlocal_iov = iov_copy(local_iov, 2, iov, 2, d->send_index, remaining);
ret = qio_channel_writev(d->ioc, local_iov, nlocal_iov, NULL);
if (ret == QIO_CHANNEL_ERR_BLOCK) {
ret = 0; /* handled further down */
}
if (ret == -1) {
d->send_index = 0;
return -errno;
}
if (ret < (ssize_t)remaining) {
d->send_index += ret;
d->ioc_write_tag = qio_channel_add_watch(d->ioc, G_IO_OUT,
net_stream_data_writable, d,
NULL);
return 0;
}
d->send_index = 0;
return size;
}
static void net_stream_data_send_completed(NetClientState *nc, ssize_t len)
{
NetStreamData *d = DO_UPCAST(NetStreamData, nc, nc);
if (!d->ioc_read_tag) {
d->ioc_read_tag = qio_channel_add_watch(d->ioc, G_IO_IN, d->send, d,
NULL);
}
}
void net_stream_data_rs_finalize(SocketReadState *rs)
{
NetStreamData *d = container_of(rs, NetStreamData, rs);
if (qemu_send_packet_async(&d->nc, rs->buf,
rs->packet_len,
net_stream_data_send_completed) == 0) {
if (d->ioc_read_tag) {
g_source_remove(d->ioc_read_tag);
d->ioc_read_tag = 0;
}
}
}
gboolean net_stream_data_send(QIOChannel *ioc, GIOCondition condition,
NetStreamData *d)
{
int size;
int ret;
QEMU_UNINITIALIZED char buf1[NET_BUFSIZE];
const char *buf;
size = qio_channel_read(d->ioc, buf1, sizeof(buf1), NULL);
if (size < 0) {
if (errno != EWOULDBLOCK) {
goto eoc;
}
} else if (size == 0) {
/* end of connection */
eoc:
d->ioc_read_tag = 0;
if (d->ioc_write_tag) {
g_source_remove(d->ioc_write_tag);
d->ioc_write_tag = 0;
}
if (d->listener) {
qemu_set_info_str(&d->nc, "listening");
qio_net_listener_set_client_func(d->listener,
d->listen, d, NULL);
}
object_unref(OBJECT(d->ioc));
d->ioc = NULL;
net_socket_rs_init(&d->rs, net_stream_data_rs_finalize, false);
d->nc.link_down = true;
return G_SOURCE_REMOVE;
}
buf = buf1;
ret = net_fill_rstate(&d->rs, (const uint8_t *)buf, size);
if (ret == -1) {
goto eoc;
}
return G_SOURCE_CONTINUE;
}
void net_stream_data_listen(QIONetListener *listener,
QIOChannelSocket *cioc,
NetStreamData *d)
{
object_ref(OBJECT(cioc));
qio_net_listener_set_client_func(d->listener, NULL, d, NULL);
d->ioc = QIO_CHANNEL(cioc);
qio_channel_set_name(d->ioc, "stream-server");
d->nc.link_down = false;
d->ioc_read_tag = qio_channel_add_watch(d->ioc, G_IO_IN, d->send, d, NULL);
}
int net_stream_data_client_connected(QIOTask *task, NetStreamData *d)
{
QIOChannelSocket *sioc = QIO_CHANNEL_SOCKET(d->ioc);
SocketAddress *addr;
int ret;
Error *err = NULL;
if (qio_task_propagate_error(task, &err)) {
qemu_set_info_str(&d->nc, "error: %s", error_get_pretty(err));
error_free(err);
goto error;
}
addr = qio_channel_socket_get_remote_address(sioc, NULL);
g_assert(addr != NULL);
ret = qemu_socket_try_set_nonblock(sioc->fd);
if (addr->type == SOCKET_ADDRESS_TYPE_FD && ret < 0) {
qemu_set_info_str(&d->nc, "can't use file descriptor %s (errno %d)",
addr->u.fd.str, -ret);
qapi_free_SocketAddress(addr);
goto error;
}
g_assert(ret == 0);
qapi_free_SocketAddress(addr);
net_socket_rs_init(&d->rs, net_stream_data_rs_finalize, false);
/* Disable Nagle algorithm on TCP sockets to reduce latency */
qio_channel_set_delay(d->ioc, false);
d->ioc_read_tag = qio_channel_add_watch(d->ioc, G_IO_IN, d->send, d, NULL);
d->nc.link_down = false;
return 0;
error:
object_unref(OBJECT(d->ioc));
d->ioc = NULL;
return -1;
}