chardev-socket: do not blindly reset handlers when switching GMainContext
If the socket is connecting or connected, tcp_chr_update_read_handler will be called but it should not set the NetListener's callbacks again. Otherwise, tcp_chr_accept is invoked while the socket is in connected state and you get an assertion failure. Reviewed-by: Daniel P. Berrangé <berrange@redhat.com> Reviewed-by: Marc-André Lureau <marcandre.lureau@redhat.com> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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@ -632,7 +632,7 @@ static void tcp_chr_update_read_handler(Chardev *chr)
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{
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{
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SocketChardev *s = SOCKET_CHARDEV(chr);
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SocketChardev *s = SOCKET_CHARDEV(chr);
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if (s->listener) {
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if (s->listener && s->state == TCP_CHARDEV_STATE_DISCONNECTED) {
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/*
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/*
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* It's possible that chardev context is changed in
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* It's possible that chardev context is changed in
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* qemu_chr_be_update_read_handlers(). Reset it for QIO net
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* qemu_chr_be_update_read_handlers(). Reset it for QIO net
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@ -1003,6 +1003,103 @@ static void char_socket_client_test(gconstpointer opaque)
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g_free(optstr);
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g_free(optstr);
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}
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}
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static void
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count_closed_event(void *opaque, int event)
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{
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int *count = opaque;
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if (event == CHR_EVENT_CLOSED) {
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(*count)++;
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}
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}
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static void
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char_socket_discard_read(void *opaque, const uint8_t *buf, int size)
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{
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}
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static void char_socket_server_two_clients_test(gconstpointer opaque)
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{
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SocketAddress *incoming_addr = (gpointer) opaque;
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Chardev *chr;
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CharBackend be = {0};
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QObject *qaddr;
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SocketAddress *addr;
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Visitor *v;
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char *optstr;
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QemuOpts *opts;
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QIOChannelSocket *ioc1, *ioc2;
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int closed = 0;
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g_setenv("QTEST_SILENT_ERRORS", "1", 1);
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/*
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* We rely on addr containing "nowait", otherwise
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* qemu_chr_new() will block until a client connects. We
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* can't spawn our client thread though, because until
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* qemu_chr_new() returns we don't know what TCP port was
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* allocated by the OS
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*/
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optstr = char_socket_addr_to_opt_str(incoming_addr,
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false,
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NULL,
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true);
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opts = qemu_opts_parse_noisily(qemu_find_opts("chardev"),
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optstr, true);
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g_assert_nonnull(opts);
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chr = qemu_chr_new_from_opts(opts, NULL, &error_abort);
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qemu_opts_del(opts);
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g_assert_nonnull(chr);
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g_assert(!object_property_get_bool(OBJECT(chr), "connected", &error_abort));
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qaddr = object_property_get_qobject(OBJECT(chr), "addr", &error_abort);
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g_assert_nonnull(qaddr);
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v = qobject_input_visitor_new(qaddr);
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visit_type_SocketAddress(v, "addr", &addr, &error_abort);
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visit_free(v);
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qobject_unref(qaddr);
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qemu_chr_fe_init(&be, chr, &error_abort);
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qemu_chr_fe_set_handlers(&be, char_socket_can_read, char_socket_discard_read,
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count_closed_event, NULL,
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&closed, NULL, true);
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ioc1 = qio_channel_socket_new();
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qio_channel_socket_connect_sync(ioc1, addr, &error_abort);
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qemu_chr_wait_connected(chr, &error_abort);
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/* switch the chardev to another context */
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GMainContext *ctx = g_main_context_new();
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qemu_chr_fe_set_handlers(&be, char_socket_can_read, char_socket_discard_read,
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count_closed_event, NULL,
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&closed, ctx, true);
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/* Start a second connection while the first is still connected.
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* It will be placed in the listen() backlog, and connect() will
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* succeed immediately.
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*/
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ioc2 = qio_channel_socket_new();
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qio_channel_socket_connect_sync(ioc2, addr, &error_abort);
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object_unref(OBJECT(ioc1));
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/* The two connections should now be processed serially. */
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while (g_main_context_iteration(ctx, TRUE)) {
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if (closed == 1 && ioc2) {
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object_unref(OBJECT(ioc2));
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ioc2 = NULL;
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}
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if (closed == 2) {
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break;
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}
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}
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qapi_free_SocketAddress(addr);
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object_unparent(OBJECT(chr));
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g_main_context_unref(ctx);
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g_free(optstr);
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g_unsetenv("QTEST_SILENT_ERRORS");
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}
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#ifdef HAVE_CHARDEV_SERIAL
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#ifdef HAVE_CHARDEV_SERIAL
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static void char_serial_test(void)
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static void char_serial_test(void)
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@ -1342,12 +1439,15 @@ int main(int argc, char **argv)
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SOCKET_SERVER_TEST(tcp, &tcpaddr);
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SOCKET_SERVER_TEST(tcp, &tcpaddr);
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SOCKET_CLIENT_TEST(tcp, &tcpaddr);
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SOCKET_CLIENT_TEST(tcp, &tcpaddr);
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g_test_add_data_func("/char/socket/server/two-clients/tcp", &tcpaddr,
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char_socket_server_two_clients_test);
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#ifndef WIN32
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#ifndef WIN32
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SOCKET_SERVER_TEST(unix, &unixaddr);
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SOCKET_SERVER_TEST(unix, &unixaddr);
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SOCKET_CLIENT_TEST(unix, &unixaddr);
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SOCKET_CLIENT_TEST(unix, &unixaddr);
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g_test_add_data_func("/char/socket/server/two-clients/unix", &unixaddr,
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char_socket_server_two_clients_test);
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#endif
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#endif
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g_test_add_func("/char/udp", char_udp_test);
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g_test_add_func("/char/udp", char_udp_test);
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#ifdef HAVE_CHARDEV_SERIAL
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#ifdef HAVE_CHARDEV_SERIAL
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g_test_add_func("/char/serial", char_serial_test);
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g_test_add_func("/char/serial", char_serial_test);
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