spice/server/inputs-channel-client.c
Jonathon Jongsma 8f9fd3a826 Use and introduce channel client cast macros
In anticipation of porting to GObject, use casting macros (e.g.
MAIN_CHANNEL_CLIENT()) to cast RedChannelClient types. This will help
reduce the changeset slightly porting to GObject and thus make it easier
to review those upcoming changes.

Acked-by: Frediano Ziglio <fziglio@redhat.com>
2016-09-20 09:14:17 +01:00

98 lines
3.7 KiB
C

/*
Copyright (C) 2009-2015 Red Hat, Inc.
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, see <http://www.gnu.org/licenses/>.
*/
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include "inputs-channel-client.h"
#include "inputs-channel.h"
#include "migration-protocol.h"
#include "red-channel-client.h"
typedef struct InputsChannelClientPrivate InputsChannelClientPrivate;
struct InputsChannelClientPrivate
{
uint16_t motion_count;
};
struct InputsChannelClient
{
RedChannelClient base;
InputsChannelClientPrivate priv[1];
};
RedChannelClient* inputs_channel_client_create(RedChannel *channel,
RedClient *client,
RedsStream *stream,
int monitor_latency,
int num_common_caps,
uint32_t *common_caps,
int num_caps,
uint32_t *caps)
{
InputsChannelClient* icc =
INPUTS_CHANNEL_CLIENT(red_channel_client_create(sizeof(InputsChannelClient),
channel, client,
stream,
monitor_latency,
num_common_caps,
common_caps, num_caps,
caps));
if (icc) {
icc->priv->motion_count = 0;
}
return RED_CHANNEL_CLIENT(icc);
}
void inputs_channel_client_send_migrate_data(RedChannelClient *rcc,
SpiceMarshaller *m,
RedPipeItem *item)
{
InputsChannelClient *icc = INPUTS_CHANNEL_CLIENT(rcc);
red_channel_client_init_send_data(rcc, SPICE_MSG_MIGRATE_DATA, item);
spice_marshaller_add_uint32(m, SPICE_MIGRATE_DATA_INPUTS_MAGIC);
spice_marshaller_add_uint32(m, SPICE_MIGRATE_DATA_INPUTS_VERSION);
spice_marshaller_add_uint16(m, icc->priv->motion_count);
}
void inputs_channel_client_handle_migrate_data(InputsChannelClient *icc,
uint16_t motion_count)
{
icc->priv->motion_count = motion_count;
for (; icc->priv->motion_count >= SPICE_INPUT_MOTION_ACK_BUNCH;
icc->priv->motion_count -= SPICE_INPUT_MOTION_ACK_BUNCH) {
red_channel_client_pipe_add_type(RED_CHANNEL_CLIENT(icc),
RED_PIPE_ITEM_MOUSE_MOTION_ACK);
}
}
void inputs_channel_client_on_mouse_motion(InputsChannelClient *icc)
{
InputsChannel *inputs_channel = (InputsChannel *)red_channel_client_get_channel(RED_CHANNEL_CLIENT(icc));
if (++icc->priv->motion_count % SPICE_INPUT_MOTION_ACK_BUNCH == 0 &&
!inputs_channel_is_src_during_migrate(inputs_channel)) {
red_channel_client_pipe_add_type(RED_CHANNEL_CLIENT(icc),
RED_PIPE_ITEM_MOUSE_MOTION_ACK);
icc->priv->motion_count = 0;
}
}