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https://gitlab.uni-freiburg.de/opensourcevdi/spice
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This vfunc only has a RedChannelClient * argument, and most of the time, it operates on RedChannelClient, not on RedChannel. Moreover, the only time it's used is from RedChannelClient. This commit moves the vfunc to RedChannelClient, which seems like a better fit for it. Signed-off-by: Christophe Fergeau <cfergeau@redhat.com> Acked-by: Frediano Ziglio <fziglio@redhat.com>
632 lines
22 KiB
C
632 lines
22 KiB
C
/* -*- Mode: C; c-basic-offset: 4; indent-tabs-mode: nil -*- */
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/*
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Copyright (C) 2010-2016 Red Hat, Inc.
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, see <http://www.gnu.org/licenses/>.
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <arpa/inet.h>
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#ifdef USE_SMARTCARD_012
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#include <vscard_common.h>
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#else
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#ifdef USE_SMARTCARD
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#include <libcacard.h>
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#endif
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#endif
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#include "reds.h"
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#include "char-device.h"
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#include "smartcard.h"
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#include "smartcard-channel-client.h"
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#include "migration-protocol.h"
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/*
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* TODO: the code doesn't really support multiple readers.
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* For example: smartcard_char_device_add_to_readers calls smartcard_init,
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* which can be called only once.
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* We should allow different readers, at least one reader per client.
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* In addition the implementation should be changed: instead of one channel for
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* all readers, we need to have different channles for different readers,
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* similarly to spicevmc.
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*
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*/
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#define SMARTCARD_MAX_READERS 10
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// Maximal length of APDU
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#define APDUBufSize 270
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#define RED_TYPE_SMARTCARD_CHANNEL red_smartcard_channel_get_type()
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#define RED_SMARTCARD_CHANNEL(obj) \
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(G_TYPE_CHECK_INSTANCE_CAST((obj), RED_TYPE_SMARTCARD_CHANNEL, RedSmartcardChannel))
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#define RED_SMARTCARD_CHANNEL_CLASS(klass) \
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(G_TYPE_CHECK_CLASS_CAST((klass), RED_TYPE_SMARTCARD_CHANNEL, RedSmartcardChannelClass))
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#define RED_IS_SMARTCARD_CHANNEL(obj) \
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(G_TYPE_CHECK_INSTANCE_TYPE((obj), RED_TYPE_SMARTCARD_CHANNEL))
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#define RED_IS_SMARTCARD_CHANNEL_CLASS(klass) \
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(G_TYPE_CHECK_CLASS_TYPE((klass), RED_TYPE_SMARTCARD_CHANNEL))
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#define RED_SMARTCARD_CHANNEL_GET_CLASS(obj) \
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(G_TYPE_INSTANCE_GET_CLASS((obj), RED_TYPE_SMARTCARD_CHANNEL, RedSmartcardChannelClass))
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typedef struct RedSmartcardChannel RedSmartcardChannel;
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typedef struct RedSmartcardChannelClass RedSmartcardChannelClass;
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struct RedSmartcardChannel
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{
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RedChannel parent;
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};
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struct RedSmartcardChannelClass
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{
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RedChannelClass parent_class;
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};
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GType red_smartcard_channel_get_type(void) G_GNUC_CONST;
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G_DEFINE_TYPE(RedSmartcardChannel, red_smartcard_channel, RED_TYPE_CHANNEL)
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static void
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red_smartcard_channel_init(RedSmartcardChannel *self)
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{
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}
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static RedSmartcardChannel *
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red_smartcard_channel_new(RedsState *reds)
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{
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return g_object_new(RED_TYPE_SMARTCARD_CHANNEL,
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"spice-server", reds,
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"core-interface", reds_get_core_interface(reds),
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"channel-type", SPICE_CHANNEL_SMARTCARD,
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"id", 0,
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"handle-acks", FALSE /* handle_acks */,
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"migration-flags",
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(SPICE_MIGRATE_NEED_FLUSH | SPICE_MIGRATE_NEED_DATA_TRANSFER),
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NULL);
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}
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G_DEFINE_TYPE(RedCharDeviceSmartcard, red_char_device_smartcard, RED_TYPE_CHAR_DEVICE)
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#define RED_CHAR_DEVICE_SMARTCARD_PRIVATE(o) \
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(G_TYPE_INSTANCE_GET_PRIVATE ((o), RED_TYPE_CHAR_DEVICE_SMARTCARD, \
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RedCharDeviceSmartcardPrivate))
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struct RedCharDeviceSmartcardPrivate {
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uint32_t reader_id;
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/* read_from_device buffer */
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uint8_t *buf;
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uint32_t buf_size;
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uint8_t *buf_pos;
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uint32_t buf_used;
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SmartCardChannelClient *scc; // client providing the remote card
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int reader_added; // has reader_add been sent to the device
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};
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typedef struct RedMsgItem {
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RedPipeItem base;
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VSCMsgHeader* vheader;
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} RedMsgItem;
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static RedMsgItem *smartcard_get_vsc_msg_item(RedChannelClient *rcc, VSCMsgHeader *vheader);
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static struct Readers {
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uint32_t num;
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SpiceCharDeviceInstance* sin[SMARTCARD_MAX_READERS];
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} g_smartcard_readers = {0, {NULL}};
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static int smartcard_char_device_add_to_readers(RedsState *reds, SpiceCharDeviceInstance *sin);
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static RedMsgItem *smartcard_char_device_on_message_from_device(
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RedCharDeviceSmartcard *dev, VSCMsgHeader *header);
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static RedCharDeviceSmartcard *smartcard_device_new(RedsState *reds, SpiceCharDeviceInstance *sin);
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static void smartcard_init(RedsState *reds);
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static void smartcard_read_buf_prepare(RedCharDeviceSmartcard *dev, VSCMsgHeader *vheader)
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{
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uint32_t msg_len;
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msg_len = ntohl(vheader->length);
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if (msg_len > dev->priv->buf_size) {
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dev->priv->buf_size = MAX(dev->priv->buf_size * 2, msg_len + sizeof(VSCMsgHeader));
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dev->priv->buf = spice_realloc(dev->priv->buf, dev->priv->buf_size);
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}
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}
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static RedPipeItem *smartcard_read_msg_from_device(RedCharDevice *self,
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SpiceCharDeviceInstance *sin)
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{
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RedCharDeviceSmartcard *dev = RED_CHAR_DEVICE_SMARTCARD(self);
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SpiceCharDeviceInterface *sif = spice_char_device_get_interface(sin);
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VSCMsgHeader *vheader = (VSCMsgHeader*)dev->priv->buf;
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int n;
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int remaining;
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int actual_length;
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while ((n = sif->read(sin, dev->priv->buf_pos, dev->priv->buf_size - dev->priv->buf_used)) > 0) {
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RedMsgItem *msg_to_client;
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dev->priv->buf_pos += n;
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dev->priv->buf_used += n;
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if (dev->priv->buf_used < sizeof(VSCMsgHeader)) {
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continue;
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}
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smartcard_read_buf_prepare(dev, vheader);
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actual_length = ntohl(vheader->length);
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if (dev->priv->buf_used - sizeof(VSCMsgHeader) < actual_length) {
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continue;
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}
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msg_to_client = smartcard_char_device_on_message_from_device(dev, vheader);
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remaining = dev->priv->buf_used - sizeof(VSCMsgHeader) - actual_length;
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if (remaining > 0) {
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memcpy(dev->priv->buf, dev->priv->buf_pos, remaining);
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}
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dev->priv->buf_pos = dev->priv->buf;
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dev->priv->buf_used = remaining;
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if (msg_to_client) {
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return &msg_to_client->base;
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}
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}
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return NULL;
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}
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/* this is called from both device input and client input. since the device is
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* a usb device, the context is still the main thread (kvm_main_loop, timers)
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* so no mutex is required. */
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static void smartcard_send_msg_to_client(RedCharDevice *self,
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RedPipeItem *msg,
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RedClient *client)
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{
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RedCharDeviceSmartcard *dev = RED_CHAR_DEVICE_SMARTCARD(self);
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RedChannelClient *rcc = RED_CHANNEL_CLIENT(dev->priv->scc);
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spice_assert(dev->priv->scc &&
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red_channel_client_get_client(rcc) == client);
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red_pipe_item_ref(msg);
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red_channel_client_pipe_add_push(rcc, msg);
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}
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static void smartcard_send_tokens_to_client(RedCharDevice *self,
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RedClient *client,
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uint32_t tokens)
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{
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spice_error("not implemented");
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}
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static void smartcard_remove_client(RedCharDevice *self, RedClient *client)
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{
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RedCharDeviceSmartcard *dev = RED_CHAR_DEVICE_SMARTCARD(self);
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RedChannelClient *rcc = RED_CHANNEL_CLIENT(dev->priv->scc);
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spice_printerr("smartcard dev %p, client %p", dev, client);
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spice_assert(dev->priv->scc &&
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red_channel_client_get_client(rcc) == client);
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red_channel_client_shutdown(rcc);
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}
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RedMsgItem *smartcard_char_device_on_message_from_device(RedCharDeviceSmartcard *dev,
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VSCMsgHeader *vheader)
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{
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VSCMsgHeader *sent_header;
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vheader->type = ntohl(vheader->type);
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vheader->length = ntohl(vheader->length);
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vheader->reader_id = ntohl(vheader->reader_id);
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switch (vheader->type) {
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case VSC_Init:
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return NULL;
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default:
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break;
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}
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/* We pass any VSC_Error right now - might need to ignore some? */
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if (dev->priv->reader_id == VSCARD_UNDEFINED_READER_ID && vheader->type != VSC_Init) {
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spice_printerr("error: reader_id not assigned for message of type %d", vheader->type);
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}
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if (dev->priv->scc) {
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sent_header = spice_memdup(vheader, sizeof(*vheader) + vheader->length);
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/* We patch the reader_id, since the device only knows about itself, and
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* we know about the sum of readers. */
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sent_header->reader_id = dev->priv->reader_id;
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return smartcard_get_vsc_msg_item(RED_CHANNEL_CLIENT(dev->priv->scc),
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sent_header);
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}
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return NULL;
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}
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static int smartcard_char_device_add_to_readers(RedsState *reds, SpiceCharDeviceInstance *char_device)
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{
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RedCharDeviceSmartcard *dev = RED_CHAR_DEVICE_SMARTCARD(char_device->st);
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if (g_smartcard_readers.num >= SMARTCARD_MAX_READERS) {
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return -1;
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}
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dev->priv->reader_id = g_smartcard_readers.num;
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g_smartcard_readers.sin[g_smartcard_readers.num++] = char_device;
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smartcard_init(reds);
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return 0;
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}
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SpiceCharDeviceInstance *smartcard_readers_get(uint32_t reader_id)
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{
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spice_assert(reader_id < g_smartcard_readers.num);
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return g_smartcard_readers.sin[reader_id];
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}
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/* TODO: fix implementation for multiple readers. Each reader should have a separated
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* channel */
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SpiceCharDeviceInstance *smartcard_readers_get_unattached(void)
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{
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int i;
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RedCharDeviceSmartcard* dev;
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for (i = 0; i < g_smartcard_readers.num; ++i) {
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dev = RED_CHAR_DEVICE_SMARTCARD(g_smartcard_readers.sin[i]->st);
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if (!dev->priv->scc) {
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return g_smartcard_readers.sin[i];
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}
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}
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return NULL;
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}
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static RedCharDeviceSmartcard *smartcard_device_new(RedsState *reds, SpiceCharDeviceInstance *sin)
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{
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RedCharDevice *char_dev;
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char_dev = g_object_new(RED_TYPE_CHAR_DEVICE_SMARTCARD,
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"sin", sin,
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"spice-server", reds,
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"client-tokens-interval", 0ULL,
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"self-tokens", ~0ULL,
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NULL);
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return RED_CHAR_DEVICE_SMARTCARD(char_dev);
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}
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void smartcard_device_disconnect(SpiceCharDeviceInstance *char_device)
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{
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g_return_if_fail(RED_IS_CHAR_DEVICE_SMARTCARD(char_device->st));
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g_object_unref(char_device->st);
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}
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RedCharDevice *smartcard_device_connect(RedsState *reds, SpiceCharDeviceInstance *char_device)
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{
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RedCharDeviceSmartcard *dev;
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dev = smartcard_device_new(reds, char_device);
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if (smartcard_char_device_add_to_readers(reds, char_device) == -1) {
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g_object_unref(dev);
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return NULL;
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}
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return RED_CHAR_DEVICE(dev);
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}
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void smartcard_char_device_notify_reader_add(RedCharDeviceSmartcard *dev)
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{
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RedCharDeviceWriteBuffer *write_buf;
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VSCMsgHeader *vheader;
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write_buf = red_char_device_write_buffer_get(RED_CHAR_DEVICE(dev), NULL, sizeof(*vheader));
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if (!write_buf) {
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spice_error("failed to allocate write buffer");
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return;
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}
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dev->priv->reader_added = TRUE;
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vheader = (VSCMsgHeader *)write_buf->buf;
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vheader->type = VSC_ReaderAdd;
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vheader->reader_id = dev->priv->reader_id;
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vheader->length = 0;
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smartcard_channel_write_to_reader(write_buf);
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}
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void smartcard_char_device_attach_client(SpiceCharDeviceInstance *char_device,
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SmartCardChannelClient *scc)
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{
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RedCharDeviceSmartcard *dev = RED_CHAR_DEVICE_SMARTCARD(char_device->st);
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int client_added;
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spice_assert(!smartcard_channel_client_get_char_device(scc) && !dev->priv->scc);
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dev->priv->scc = scc;
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smartcard_channel_client_set_char_device(scc, dev);
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client_added = red_char_device_client_add(RED_CHAR_DEVICE(dev),
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red_channel_client_get_client(RED_CHANNEL_CLIENT(scc)),
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FALSE, /* no flow control yet */
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0, /* send queue size */
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~0,
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~0,
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red_channel_client_is_waiting_for_migrate_data(
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RED_CHANNEL_CLIENT(scc)));
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if (!client_added) {
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spice_warning("failed");
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dev->priv->scc = NULL;
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smartcard_channel_client_set_char_device(scc, NULL);
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red_channel_client_disconnect(RED_CHANNEL_CLIENT(scc));
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}
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}
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gboolean smartcard_char_device_notify_reader_remove(RedCharDeviceSmartcard *dev)
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{
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RedCharDeviceWriteBuffer *write_buf;
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VSCMsgHeader *vheader;
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if (!dev->priv->reader_added) {
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spice_debug("reader add was never sent to the device");
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return FALSE;
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}
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write_buf = red_char_device_write_buffer_get(RED_CHAR_DEVICE(dev), NULL, sizeof(*vheader));
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if (!write_buf) {
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spice_error("failed to allocate write buffer");
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return FALSE;
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}
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dev->priv->reader_added = FALSE;
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vheader = (VSCMsgHeader *)write_buf->buf;
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vheader->type = VSC_ReaderRemove;
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vheader->reader_id = dev->priv->reader_id;
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vheader->length = 0;
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smartcard_channel_write_to_reader(write_buf);
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return TRUE;
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}
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void smartcard_char_device_detach_client(RedCharDeviceSmartcard *smartcard,
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SmartCardChannelClient *scc)
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{
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spice_assert(smartcard->priv->scc == scc);
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red_char_device_client_remove(RED_CHAR_DEVICE(smartcard),
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red_channel_client_get_client(RED_CHANNEL_CLIENT(scc)));
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smartcard_channel_client_set_char_device(scc, NULL);
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smartcard->priv->scc = NULL;
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}
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SmartCardChannelClient* smartcard_char_device_get_client(RedCharDeviceSmartcard *smartcard)
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{
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return smartcard->priv->scc;
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}
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static void smartcard_channel_send_msg(RedChannelClient *rcc,
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SpiceMarshaller *m, RedPipeItem *item)
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{
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RedMsgItem* msg_item = SPICE_UPCAST(RedMsgItem, item);
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smartcard_channel_client_send_data(rcc, m, item, msg_item->vheader);
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}
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static void smartcard_channel_send_migrate_data(RedChannelClient *rcc,
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SpiceMarshaller *m, RedPipeItem *item)
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{
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SmartCardChannelClient *scc;
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RedCharDeviceSmartcard *dev;
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SpiceMarshaller *m2;
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scc = SMARTCARD_CHANNEL_CLIENT(rcc);
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dev = smartcard_channel_client_get_char_device(scc);
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red_channel_client_init_send_data(rcc, SPICE_MSG_MIGRATE_DATA);
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spice_marshaller_add_uint32(m, SPICE_MIGRATE_DATA_SMARTCARD_MAGIC);
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spice_marshaller_add_uint32(m, SPICE_MIGRATE_DATA_SMARTCARD_VERSION);
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if (!dev) {
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red_char_device_migrate_data_marshall_empty(m);
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spice_marshaller_add_uint8(m, 0);
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spice_marshaller_add_uint32(m, 0);
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spice_marshaller_add_uint32(m, 0);
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spice_debug("null char dev");
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} else {
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red_char_device_migrate_data_marshall(RED_CHAR_DEVICE(dev), m);
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spice_marshaller_add_uint8(m, dev->priv->reader_added);
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spice_marshaller_add_uint32(m, dev->priv->buf_used);
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m2 = spice_marshaller_get_ptr_submarshaller(m, 0);
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spice_marshaller_add(m2, dev->priv->buf, dev->priv->buf_used);
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spice_debug("reader added %d partial read size %u", dev->priv->reader_added, dev->priv->buf_used);
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}
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}
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static void smartcard_channel_send_item(RedChannelClient *rcc, RedPipeItem *item)
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{
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SpiceMarshaller *m = red_channel_client_get_marshaller(rcc);
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switch (item->type) {
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case RED_PIPE_ITEM_TYPE_ERROR:
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smartcard_channel_client_send_error(rcc, m, item);
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break;
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case RED_PIPE_ITEM_TYPE_SMARTCARD_DATA:
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smartcard_channel_send_msg(rcc, m, item);
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break;
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case RED_PIPE_ITEM_TYPE_SMARTCARD_MIGRATE_DATA:
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smartcard_channel_send_migrate_data(rcc, m, item);
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break;
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default:
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spice_error("bad pipe item %d", item->type);
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return;
|
|
}
|
|
red_channel_client_begin_send_message(rcc);
|
|
}
|
|
|
|
static void smartcard_free_vsc_msg_item(RedPipeItem *base)
|
|
{
|
|
RedMsgItem *item = SPICE_UPCAST(RedMsgItem, base);
|
|
free(item->vheader);
|
|
free(item);
|
|
}
|
|
|
|
static RedMsgItem *smartcard_get_vsc_msg_item(RedChannelClient *rcc,
|
|
VSCMsgHeader *vheader)
|
|
{
|
|
RedMsgItem *msg_item = spice_new0(RedMsgItem, 1);
|
|
|
|
red_pipe_item_init_full(&msg_item->base, RED_PIPE_ITEM_TYPE_SMARTCARD_DATA,
|
|
smartcard_free_vsc_msg_item);
|
|
msg_item->vheader = vheader;
|
|
return msg_item;
|
|
}
|
|
|
|
void smartcard_channel_write_to_reader(RedCharDeviceWriteBuffer *write_buf)
|
|
{
|
|
SpiceCharDeviceInstance *sin;
|
|
RedCharDeviceSmartcard *dev;
|
|
VSCMsgHeader *vheader;
|
|
uint32_t actual_length;
|
|
|
|
vheader = (VSCMsgHeader *)write_buf->buf;
|
|
actual_length = vheader->length;
|
|
|
|
spice_assert(vheader->reader_id <= g_smartcard_readers.num);
|
|
sin = g_smartcard_readers.sin[vheader->reader_id];
|
|
dev = RED_CHAR_DEVICE_SMARTCARD(sin->st);
|
|
spice_assert(!dev->priv->scc ||
|
|
dev == smartcard_channel_client_get_char_device(dev->priv->scc));
|
|
/* protocol requires messages to be in network endianess */
|
|
vheader->type = htonl(vheader->type);
|
|
vheader->length = htonl(vheader->length);
|
|
vheader->reader_id = htonl(vheader->reader_id);
|
|
write_buf->buf_used = actual_length + sizeof(VSCMsgHeader);
|
|
/* pushing the buffer to the write queue; It will be released
|
|
* when it will be fully consumed by the device */
|
|
red_char_device_write_buffer_add(sin->st, write_buf);
|
|
}
|
|
|
|
static void smartcard_device_restore_partial_read(RedCharDeviceSmartcard *dev,
|
|
SpiceMigrateDataSmartcard *mig_data)
|
|
{
|
|
uint8_t *read_data;
|
|
|
|
spice_debug("read_size %u", mig_data->read_size);
|
|
read_data = (uint8_t *)mig_data + mig_data->read_data_ptr - sizeof(SpiceMigrateDataHeader);
|
|
if (mig_data->read_size < sizeof(VSCMsgHeader)) {
|
|
spice_assert(dev->priv->buf_size >= mig_data->read_size);
|
|
} else {
|
|
smartcard_read_buf_prepare(dev, (VSCMsgHeader *)read_data);
|
|
}
|
|
memcpy(dev->priv->buf, read_data, mig_data->read_size);
|
|
dev->priv->buf_used = mig_data->read_size;
|
|
dev->priv->buf_pos = dev->priv->buf + mig_data->read_size;
|
|
}
|
|
|
|
int smartcard_char_device_handle_migrate_data(RedCharDeviceSmartcard *smartcard,
|
|
SpiceMigrateDataSmartcard *mig_data)
|
|
{
|
|
smartcard->priv->reader_added = mig_data->reader_added;
|
|
|
|
smartcard_device_restore_partial_read(smartcard, mig_data);
|
|
return red_char_device_restore(RED_CHAR_DEVICE(smartcard), &mig_data->base);
|
|
}
|
|
|
|
static void smartcard_connect_client(RedChannel *channel, RedClient *client,
|
|
RedsStream *stream, int migration,
|
|
RedChannelCapabilities *caps)
|
|
{
|
|
SpiceCharDeviceInstance *char_device =
|
|
smartcard_readers_get_unattached();
|
|
|
|
SmartCardChannelClient *scc;
|
|
|
|
scc = smartcard_channel_client_create(channel, client, stream, caps);
|
|
|
|
if (!scc) {
|
|
return;
|
|
}
|
|
red_channel_client_ack_zero_messages_window(RED_CHANNEL_CLIENT(scc));
|
|
|
|
if (char_device) {
|
|
smartcard_char_device_attach_client(char_device, scc);
|
|
} else {
|
|
spice_printerr("char dev unavailable");
|
|
}
|
|
}
|
|
|
|
static void
|
|
red_smartcard_channel_constructed(GObject *object)
|
|
{
|
|
RedSmartcardChannel *self = RED_SMARTCARD_CHANNEL(object);
|
|
RedsState *reds = red_channel_get_server(RED_CHANNEL(self));
|
|
ClientCbs client_cbs = { NULL, };
|
|
|
|
G_OBJECT_CLASS(red_smartcard_channel_parent_class)->constructed(object);
|
|
|
|
client_cbs.connect = smartcard_connect_client;
|
|
red_channel_register_client_cbs(RED_CHANNEL(self), &client_cbs, NULL);
|
|
|
|
reds_register_channel(reds, RED_CHANNEL(self));
|
|
}
|
|
|
|
static void
|
|
red_smartcard_channel_class_init(RedSmartcardChannelClass *klass)
|
|
{
|
|
GObjectClass *object_class = G_OBJECT_CLASS(klass);
|
|
RedChannelClass *channel_class = RED_CHANNEL_CLASS(klass);
|
|
|
|
object_class->constructed = red_smartcard_channel_constructed;
|
|
|
|
channel_class->handle_message = smartcard_channel_client_handle_message,
|
|
|
|
channel_class->send_item = smartcard_channel_send_item;
|
|
channel_class->handle_migrate_flush_mark = smartcard_channel_client_handle_migrate_flush_mark;
|
|
channel_class->handle_migrate_data = smartcard_channel_client_handle_migrate_data;
|
|
|
|
}
|
|
|
|
static void smartcard_init(RedsState *reds)
|
|
{
|
|
spice_assert(!reds_find_channel(reds, SPICE_CHANNEL_SMARTCARD, 0));
|
|
|
|
red_smartcard_channel_new(reds);
|
|
}
|
|
|
|
|
|
static void
|
|
red_char_device_smartcard_finalize(GObject *object)
|
|
{
|
|
RedCharDeviceSmartcard *self = RED_CHAR_DEVICE_SMARTCARD(object);
|
|
|
|
free(self->priv->buf);
|
|
|
|
G_OBJECT_CLASS(red_char_device_smartcard_parent_class)->finalize(object);
|
|
}
|
|
|
|
static void
|
|
red_char_device_smartcard_class_init(RedCharDeviceSmartcardClass *klass)
|
|
{
|
|
GObjectClass *object_class = G_OBJECT_CLASS(klass);
|
|
RedCharDeviceClass *char_dev_class = RED_CHAR_DEVICE_CLASS(klass);
|
|
|
|
g_type_class_add_private(klass, sizeof (RedCharDeviceSmartcardPrivate));
|
|
|
|
object_class->finalize = red_char_device_smartcard_finalize;
|
|
|
|
char_dev_class->read_one_msg_from_device = smartcard_read_msg_from_device;
|
|
char_dev_class->send_msg_to_client = smartcard_send_msg_to_client;
|
|
char_dev_class->send_tokens_to_client = smartcard_send_tokens_to_client;
|
|
char_dev_class->remove_client = smartcard_remove_client;
|
|
}
|
|
|
|
static void
|
|
red_char_device_smartcard_init(RedCharDeviceSmartcard *self)
|
|
{
|
|
self->priv = RED_CHAR_DEVICE_SMARTCARD_PRIVATE(self);
|
|
|
|
self->priv->reader_id = VSCARD_UNDEFINED_READER_ID;
|
|
self->priv->buf_size = APDUBufSize + sizeof(VSCMsgHeader);
|
|
self->priv->buf = spice_malloc(self->priv->buf_size);
|
|
self->priv->buf_pos = self->priv->buf;
|
|
}
|
|
|
|
uint32_t smartcard_get_n_readers(void)
|
|
{
|
|
return g_smartcard_readers.num;
|
|
}
|