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570 lines
15 KiB
C
570 lines
15 KiB
C
/*
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* camtransport.c - GStreamer CAM (EN50221) transport layer
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* Copyright (C) 2007 Alessandro Decina
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*
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* Authors:
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* Alessandro Decina <alessandro@nnva.org>
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*
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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 Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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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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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include "camtransport.h"
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#include <sys/select.h>
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#include <sys/time.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include <errno.h>
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#define GST_CAT_DEFAULT cam_debug_cat
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#define READ_TIMEOUT_SEC 2
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#define READ_TIMEOUT_USEC 0
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#define POLL_INTERVAL 0.300
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/* Layer tags */
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#define TAG_SB 0x80
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#define TAG_RCV 0x81
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#define TAG_CREATE_T_C 0x82
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#define TAG_C_T_C_REPLY 0x83
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#define TAG_DELETE_T_C 0x84
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#define TAG_D_T_C_REPLY 0x85
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#define TAG_REQUEST_T_C 0x86
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#define TAG_NEW_T_C 0x87
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#define TAG_T_C_ERROR 0x88
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#define TAG_DATA_MORE 0xA1
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#define TAG_DATA_LAST 0xA0
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/* Session tags */
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#define TAG_SESSION_NUMBER 0x90
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#define TAG_OPEN_SESSION_REQUEST 0x91
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#define TAG_OPEN_SESSION_RESPONSE 0x92
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#define TAG_CREATE_SESSION 0x93
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#define TAG_CREATE_SESSION_RESPONSE 0x94
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#define TAG_CLOSE_SESSION_REQUEST 0x95
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#define TAG_CLOSE_SESSION_RESPONSE 0x96
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typedef struct
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{
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guint tagid;
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const gchar *description;
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} CamTagMessage;
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static CamTagMessage debugmessage[] = {
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{TAG_SB, "SB"},
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{TAG_RCV, "RCV"},
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{TAG_CREATE_T_C, "CREATE_T_C"},
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{TAG_C_T_C_REPLY, "CREATE_T_C_REPLY"},
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{TAG_DELETE_T_C, "DELETE_T_C"},
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{TAG_D_T_C_REPLY, "DELETE_T_C_REPLY"},
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{TAG_REQUEST_T_C, "REQUEST_T_C"},
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{TAG_NEW_T_C, "NEW_T_C"},
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{TAG_T_C_ERROR, "T_C_ERROR"},
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{TAG_SESSION_NUMBER, "SESSION_NUMBER"},
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{TAG_OPEN_SESSION_REQUEST, "OPEN_SESSION_REQUEST"},
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{TAG_OPEN_SESSION_RESPONSE, "OPEN_SESSION_RESPONSE"},
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{TAG_CREATE_SESSION, "CREATE_SESSION"},
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{TAG_CREATE_SESSION_RESPONSE, "CREATE_SESSION_RESPONSE"},
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{TAG_CLOSE_SESSION_REQUEST, "CLOSE_SESSION_REQUEST"},
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{TAG_CLOSE_SESSION_RESPONSE, "CLOSE_SESSION_RESPONSE"},
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{TAG_DATA_MORE, "DATA_MORE"},
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{TAG_DATA_LAST, "DATA_LAST"}
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};
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static inline const gchar *
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tag_get_name (guint tagid)
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{
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guint i;
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for (i = 0; i < G_N_ELEMENTS (debugmessage); i++)
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if (debugmessage[i].tagid == tagid)
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return debugmessage[i].description;
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return "UNKNOWN";
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}
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/* utility struct used to store the state of the connections in cam_tl_read_next
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*/
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typedef struct
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{
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GList *active;
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GList *idle;
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} CamTLConnectionsStatus;
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void cam_gst_util_dump_mem (const guchar * mem, guint size);
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static CamTLConnection *
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cam_tl_connection_new (CamTL * tl, guint8 id)
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{
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CamTLConnection *connection;
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connection = g_new0 (CamTLConnection, 1);
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connection->tl = tl;
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connection->id = id;
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connection->state = CAM_TL_CONNECTION_STATE_CLOSED;
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connection->has_data = FALSE;
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return connection;
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}
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static void
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cam_tl_connection_destroy (CamTLConnection * connection)
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{
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if (connection->last_poll)
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g_timer_destroy (connection->last_poll);
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g_free (connection);
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}
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CamTL *
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cam_tl_new (int fd)
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{
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CamTL *tl;
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tl = g_new0 (CamTL, 1);
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tl->fd = fd;
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tl->connections = g_hash_table_new_full (g_direct_hash, g_direct_equal,
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NULL, (GDestroyNotify) cam_tl_connection_destroy);
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return tl;
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}
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void
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cam_tl_destroy (CamTL * tl)
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{
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g_hash_table_destroy (tl->connections);
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g_free (tl);
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}
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/* read data from the module without blocking indefinitely */
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static CamReturn
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cam_tl_read_timeout (CamTL * tl, struct timeval *timeout)
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{
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fd_set read_fd;
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int sret;
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FD_ZERO (&read_fd);
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FD_SET (tl->fd, &read_fd);
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sret = select (tl->fd + 1, &read_fd, NULL, NULL, timeout);
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if (sret == 0) {
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GST_DEBUG ("read timeout");
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return CAM_RETURN_TRANSPORT_TIMEOUT;
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}
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tl->buffer_size = read (tl->fd, &tl->buffer, HOST_BUFFER_SIZE);
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if (tl->buffer_size == -1) {
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GST_ERROR ("error reading tpdu: %s", g_strerror (errno));
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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return CAM_RETURN_OK;
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}
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/* read data from the module using the default timeout */
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static CamReturn
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cam_tl_read (CamTL * tl)
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{
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struct timeval timeout;
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timeout.tv_sec = READ_TIMEOUT_SEC;
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timeout.tv_usec = READ_TIMEOUT_USEC;
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return cam_tl_read_timeout (tl, &timeout);
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}
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/* get the number of bytes to allocate for a TPDU with a body of body_length
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* bytes. Also get the offset from the beginning of the buffer that marks the
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* position of the first byte of the TPDU body */
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void
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cam_tl_calc_buffer_size (CamTL * tl, guint body_length,
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guint * buffer_size, guint * offset)
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{
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guint length_field_len;
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/* the size of a TPDU is:
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* 1 byte slot number
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* 1 byte connection id
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* length_field_len bytes length field
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* 1 byte connection id
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* body_length bytes body
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*/
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/* get the length of the lenght_field block */
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length_field_len = cam_calc_length_field_size (body_length);
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*offset = 3 + length_field_len + 1;
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*buffer_size = *offset + body_length;
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}
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/* write the header of a TPDU
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* NOTE: this function assumes that the buffer is large enough to contain the
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* complete TPDU (see cam_tl_calc_buffer_size ()) and that enough space has been
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* left from the beginning of the buffer to write the TPDU header.
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*/
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static CamReturn
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cam_tl_connection_write_tpdu (CamTLConnection * connection,
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guint8 tag, guint8 * buffer, guint buffer_size, guint body_length)
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{
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int sret;
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CamTL *tl = connection->tl;
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guint8 length_field_len;
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/* slot number */
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buffer[0] = connection->slot;
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/* connection number */
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buffer[1] = connection->id;
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/* tag */
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buffer[2] = tag;
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/* length can take 1 to 4 bytes */
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length_field_len = cam_write_length_field (&buffer[3], body_length);
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buffer[3 + length_field_len] = connection->id;
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GST_DEBUG ("writing TPDU %x (%s) connection %d (size:%d)",
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buffer[2], tag_get_name (buffer[2]), connection->id, buffer_size);
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//cam_gst_util_dump_mem (buffer, buffer_size);
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sret = write (tl->fd, buffer, buffer_size);
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if (sret == -1) {
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GST_ERROR ("error witing TPDU (%d): %s", errno, g_strerror (errno));
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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tl->expected_tpdus += 1;
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GST_DEBUG ("Sucess writing tpdu 0x%x (%s)", buffer[2],
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tag_get_name (buffer[2]));
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return CAM_RETURN_OK;
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}
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/* convenience function to write control TPDUs (TPDUs having a single-byte body)
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*/
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static CamReturn
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cam_tl_connection_write_control_tpdu (CamTLConnection * connection, guint8 tag)
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{
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guint8 tpdu[5];
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/* TPDU layout (5 bytes):
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*
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* slot number (1 byte)
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* connection id (1 byte)
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* tag (1 byte)
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* length (1 byte)
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* connection id (1 byte)
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*/
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return cam_tl_connection_write_tpdu (connection, tag, tpdu, 5, 1);
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}
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/* read the next TPDU from the CAM */
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static CamReturn
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cam_tl_read_tpdu_next (CamTL * tl, CamTLConnection ** out_connection)
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{
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CamReturn ret;
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CamTLConnection *connection;
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guint8 connection_id;
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guint8 *tpdu;
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guint8 length_field_len;
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guint8 status;
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ret = cam_tl_read (tl);
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if (CAM_FAILED (ret))
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return ret;
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tpdu = tl->buffer;
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/* must hold at least slot, connection_id, 1byte length_field, connection_id
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*/
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if (tl->buffer_size < 4) {
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GST_ERROR ("invalid TPDU length %d", tl->buffer_size);
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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/* LPDU slot */
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/* slot = tpdu[0]; */
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/* LPDU connection id */
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connection_id = tpdu[1];
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connection = g_hash_table_lookup (tl->connections,
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GINT_TO_POINTER ((guint) connection_id));
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if (connection == NULL) {
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/* WHAT? */
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GST_ERROR ("CAM sent a TPDU on an unknown connection: %d", connection_id);
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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/* read the length_field () */
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length_field_len = cam_read_length_field (&tpdu[3], &tl->body_length);
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if (tl->body_length + 3 > tl->buffer_size) {
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GST_ERROR ("invalid TPDU length_field (%d) exceeds "
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"the size of the buffer (%d)", tl->body_length, tl->buffer_size);
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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/* skip slot + connection id + tag + lenght_field () + connection id */
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tl->body = tpdu + 4 + length_field_len;
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/* do not count the connection id byte as part of the body */
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tl->body_length -= 1;
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if (tl->buffer[tl->buffer_size - 4] != TAG_SB) {
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GST_ERROR ("no TAG_SB appended to TPDU");
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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status = tl->buffer[tl->buffer_size - 1];
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if (status & 0x80) {
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connection->has_data = TRUE;
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} else {
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connection->has_data = FALSE;
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}
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GST_DEBUG ("received TPDU %x (%s) more data %d", tpdu[2],
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tag_get_name (tpdu[2]), connection->has_data);
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tl->expected_tpdus -= 1;
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*out_connection = connection;
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return CAM_RETURN_OK;
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}
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/* create a connection with the module */
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CamReturn
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cam_tl_create_connection (CamTL * tl, guint8 slot,
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CamTLConnection ** connection)
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{
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CamReturn ret;
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CamTLConnection *conn = NULL;
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guint count = 10;
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if (tl->connection_ids == 255)
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return CAM_RETURN_TRANSPORT_TOO_MANY_CONNECTIONS;
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conn = cam_tl_connection_new (tl, ++tl->connection_ids);
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/* Some CA devices take a long time to set themselves up,
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* therefore retry every 250ms (for a maximum of 2.5s)
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*/
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while (TRUE) {
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/* send a TAG_CREATE_T_C TPDU */
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ret = cam_tl_connection_write_control_tpdu (conn, TAG_CREATE_T_C);
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if (!CAM_FAILED (ret))
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break;
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if (!count)
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goto error;
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GST_DEBUG ("Failed sending initial connection message .. but retrying");
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count--;
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/* Wait 250ms */
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g_usleep (G_USEC_PER_SEC / 4);
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}
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g_hash_table_insert (tl->connections, GINT_TO_POINTER (conn->id), conn);
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*connection = conn;
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return CAM_RETURN_OK;
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error:
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if (conn)
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cam_tl_connection_destroy (conn);
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return ret;
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}
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CamReturn
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cam_tl_connection_delete (CamTLConnection * connection)
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{
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CamReturn ret;
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ret = cam_tl_connection_write_control_tpdu (connection, TAG_DELETE_T_C);
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if (CAM_FAILED (ret))
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return ret;
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connection->state = CAM_TL_CONNECTION_STATE_IN_DELETION;
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return CAM_RETURN_OK;
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}
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static CamReturn
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handle_control_tpdu (CamTL * tl, CamTLConnection * connection)
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{
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if (tl->body_length != 0) {
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GST_ERROR ("got control tpdu of invalid length: %d", tl->body_length);
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return CAM_RETURN_TRANSPORT_ERROR;
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}
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switch (tl->buffer[2]) {
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/* create transport connection reply */
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case TAG_C_T_C_REPLY:
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/* a connection might be closed before it's acknowledged */
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if (connection->state != CAM_TL_CONNECTION_STATE_IN_DELETION) {
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GST_DEBUG ("connection created %d", connection->id);
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connection->state = CAM_TL_CONNECTION_STATE_OPEN;
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if (tl->connection_created)
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tl->connection_created (tl, connection);
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}
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break;
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/* delete transport connection reply */
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case TAG_D_T_C_REPLY:
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connection->state = CAM_TL_CONNECTION_STATE_CLOSED;
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GST_DEBUG ("connection closed %d", connection->id);
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if (tl->connection_deleted)
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tl->connection_deleted (tl, connection);
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g_hash_table_remove (tl->connections,
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GINT_TO_POINTER ((guint) connection->id));
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break;
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}
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return CAM_RETURN_OK;
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}
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static CamReturn
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handle_data_tpdu (CamTL * tl, CamTLConnection * connection)
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{
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if (tl->body_length == 0) {
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/* FIXME: figure out why this seems to happen from time to time with the
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* predator cam */
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GST_WARNING ("Empty data TPDU received");
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return CAM_RETURN_OK;
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}
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if (tl->connection_data)
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return tl->connection_data (tl, connection, tl->body, tl->body_length);
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return CAM_RETURN_OK;
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}
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static void
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foreach_connection_get (gpointer key, gpointer value, gpointer user_data)
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{
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GList **lst = (GList **) user_data;
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*lst = g_list_append (*lst, value);
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}
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CamReturn
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cam_tl_connection_poll (CamTLConnection * connection, gboolean force)
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{
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CamReturn ret;
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if (connection->last_poll == NULL) {
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connection->last_poll = g_timer_new ();
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} else if (!force &&
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g_timer_elapsed (connection->last_poll, NULL) < POLL_INTERVAL) {
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return CAM_RETURN_TRANSPORT_POLL;
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}
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GST_DEBUG ("polling connection %d", connection->id);
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ret = cam_tl_connection_write_control_tpdu (connection, TAG_DATA_LAST);
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if (CAM_FAILED (ret))
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return ret;
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g_timer_start (connection->last_poll);
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return CAM_RETURN_OK;
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}
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/* read all the queued TPDUs */
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CamReturn
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cam_tl_read_all (CamTL * tl, gboolean poll)
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{
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CamReturn ret = CAM_RETURN_OK;
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CamTLConnection *connection;
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GList *connections = NULL;
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GList *walk;
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gboolean done = FALSE;
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while (!done) {
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while (tl->expected_tpdus) {
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/* read the next TPDU from the connection */
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ret = cam_tl_read_tpdu_next (tl, &connection);
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if (CAM_FAILED (ret)) {
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GST_ERROR ("error reading TPDU from module: %d", ret);
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goto out;
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}
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switch (tl->buffer[2]) {
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case TAG_C_T_C_REPLY:
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case TAG_D_T_C_REPLY:
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connection->empty_data = 0;
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ret = handle_control_tpdu (tl, connection);
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break;
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case TAG_DATA_MORE:
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case TAG_DATA_LAST:
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connection->empty_data = 0;
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ret = handle_data_tpdu (tl, connection);
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break;
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case TAG_SB:
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/* this is handled by tpdu_next */
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break;
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}
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if (CAM_FAILED (ret))
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goto out;
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}
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done = TRUE;
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connections = NULL;
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g_hash_table_foreach (tl->connections,
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|
foreach_connection_get, &connections);
|
|
|
|
for (walk = connections; walk; walk = walk->next) {
|
|
CamTLConnection *connection = CAM_TL_CONNECTION (walk->data);
|
|
|
|
if (connection->has_data == TRUE && connection->empty_data < 10) {
|
|
ret = cam_tl_connection_write_control_tpdu (connection, TAG_RCV);
|
|
if (CAM_FAILED (ret)) {
|
|
g_list_free (connections);
|
|
goto out;
|
|
}
|
|
/* increment the empty_data counter. If we get data, this will be reset
|
|
* to 0 */
|
|
connection->empty_data++;
|
|
done = FALSE;
|
|
} else if (poll) {
|
|
ret = cam_tl_connection_poll (connection, FALSE);
|
|
if (ret == CAM_RETURN_TRANSPORT_POLL)
|
|
continue;
|
|
|
|
if (CAM_FAILED (ret)) {
|
|
g_list_free (connections);
|
|
goto out;
|
|
}
|
|
|
|
done = FALSE;
|
|
}
|
|
}
|
|
|
|
g_list_free (connections);
|
|
}
|
|
|
|
out:
|
|
return ret;
|
|
}
|
|
|
|
CamReturn
|
|
cam_tl_connection_write (CamTLConnection * connection,
|
|
guint8 * buffer, guint buffer_size, guint body_length)
|
|
{
|
|
return cam_tl_connection_write_tpdu (connection,
|
|
TAG_DATA_LAST, buffer, buffer_size, 1 + body_length);
|
|
}
|