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sctp.c
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sctp.c
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/*! \file sctp.c
* \author Lorenzo Miniero <[email protected]>
* \copyright GNU General Public License v3
* \brief SCTP processing for data channels
* \details Implementation (based on libusrsctp) of the SCTP Data Channels.
* The code takes care of the SCTP association between peers and the gateway,
* and allows for sending and receiving text messages (binary stuff yet to
* be implemented) after that.
*
* \note Right now, the code is heavily based on the rtcweb.c sample code
* provided in the \c usrsctp library code, and as such the copyright notice
* that appears at the beginning of that code is ideally present here as
* well: http://code.google.com/p/sctp-refimpl/source/browse/trunk/KERN/usrsctp/programs/rtcweb.c
*
* \note If you want/need to debug SCTP messages for any reason, you can
* do so by uncommenting the definition of \c DEBUG_SCTP in sctp.h. This
* will force this code to save all the SCTP messages being exchanged to
* a separate file for each session. You can choose what folder to save
* these files in by modifying the \c debug_folder variable. Once a file
* has been saved, you need to process it using the \c text2pcap tool
* that is usually shipped with Wireshark, e.g.:
*
\verbatim
cd /tmp/sctp
/usr/sbin/text2pcap -n -l 248 -D -t '%H:%M:%S.' sctp-debug-XYZ.txt sctp-debug-XYZ.pcapng
/usr/sbin/wireshark sctp-debug-XYZ.pcapng
\endverbatim
*
* \ingroup protocols
* \ref protocols
*/
#ifdef HAVE_SCTP
#include "sctp.h"
#include "dtls.h"
#include "psclient.h"
#include "ice.h"
#include "debug.h"
#ifdef DEBUG_SCTP
/* If we're debugging the SCTP messaging, save the files here */
const char *debug_folder = "/tmp/sctp";
#endif
#define SCTP_MAX_PACKET_SIZE (1<<16)
static uint16_t event_types[] = {
SCTP_ASSOC_CHANGE,
SCTP_PEER_ADDR_CHANGE,
SCTP_REMOTE_ERROR,
SCTP_SHUTDOWN_EVENT,
SCTP_ADAPTATION_INDICATION,
SCTP_SEND_FAILED_EVENT,
SCTP_STREAM_RESET_EVENT,
SCTP_STREAM_CHANGE_EVENT
};
int janus_sctp_data_to_dtls(void *instance, void *buffer, size_t length, uint8_t tos, uint8_t set_df);
static int janus_sctp_incoming_data(struct socket *sock, union sctp_sockstore addr, void *data, size_t datalen, struct sctp_rcvinfo rcv, int flags, void *ulp_info);
janus_sctp_channel *janus_sctp_find_channel_by_stream(janus_sctp_association *sctp, uint16_t stream);
janus_sctp_channel *janus_sctp_find_free_channel(janus_sctp_association *sctp);
uint16_t janus_sctp_find_free_stream(janus_sctp_association *sctp);
void janus_sctp_request_more_streams(janus_sctp_association *sctp);
int janus_sctp_send_open_request_message(struct socket *sock, uint16_t stream, uint8_t unordered, uint16_t pr_policy, uint32_t pr_value);
int janus_sctp_send_open_response_message(struct socket *sock, uint16_t stream);
int janus_sctp_send_open_ack_message(struct socket *sock, uint16_t stream);
void janus_sctp_send_deferred_messages(janus_sctp_association *sctp);
int janus_sctp_open_channel(janus_sctp_association *sctp, uint8_t unordered, uint16_t pr_policy, uint32_t pr_value);
int janus_sctp_send_text(janus_sctp_association *sctp, uint16_t id, char *text, size_t length);
void janus_sctp_reset_outgoing_stream(janus_sctp_association *sctp, uint16_t stream);
void janus_sctp_send_outgoing_stream_reset(janus_sctp_association *sctp);
int janus_sctp_close_channel(janus_sctp_association *sctp, uint16_t id);
void janus_sctp_handle_open_request_message(janus_sctp_association *sctp, janus_datachannel_open_request *req, size_t length, uint16_t stream);
void janus_sctp_handle_open_response_message(janus_sctp_association *sctp, janus_datachannel_open_response *rsp, size_t length, uint16_t stream);
void janus_sctp_handle_open_ack_message(janus_sctp_association *sctp, janus_datachannel_ack *ack, size_t length, uint16_t stream);
void janus_sctp_handle_unknown_message(char *msg, size_t length, uint16_t stream);
void janus_sctp_handle_data_message(janus_sctp_association *sctp, char *buffer, size_t length, uint16_t stream);
void janus_sctp_handle_message(janus_sctp_association *sctp, char *buffer, size_t length, uint32_t ppid, uint16_t stream);
void janus_sctp_handle_association_change_event(struct sctp_assoc_change *sac);
void janus_sctp_handle_peer_address_change_event(struct sctp_paddr_change *spc);
void janus_sctp_handle_adaptation_indication(struct sctp_adaptation_event *sai);
void janus_sctp_handle_shutdown_event(struct sctp_shutdown_event *sse);
void janus_sctp_handle_stream_reset_event(janus_sctp_association *sctp, struct sctp_stream_reset_event *strrst);
void janus_sctp_handle_remote_error_event(struct sctp_remote_error *sre);
void janus_sctp_handle_send_failed_event(struct sctp_send_failed_event *ssfe);
void janus_sctp_handle_notification(janus_sctp_association *sctp, union sctp_notification *notif, size_t n);
void *janus_sctp_thread(void *data);
janus_sctp_message *janus_sctp_message_create(gboolean incoming, char *buffer, size_t length);
void janus_sctp_message_destroy(janus_sctp_message *message);
static janus_sctp_message exit_message;
static gboolean sctp_running;
int janus_sctp_init(void) {
/* Initialize the SCTP stack */
usrsctp_init(0, janus_sctp_data_to_dtls, NULL);
sctp_running = TRUE;
#ifdef DEBUG_SCTP
PS_LOG(LOG_WARN, "SCTP debugging to files enabled: going to save them in %s\n", debug_folder);
if(janus_mkdir(debug_folder, 0755) < 0) {
PS_LOG(LOG_ERR, "Error creating folder %s, expect problems...\n", debug_folder);
}
#endif
return 0;
}
void janus_sctp_deinit(void) {
usrsctp_finish();
sctp_running = FALSE;
}
janus_sctp_association *janus_sctp_association_create(void *dtls, uint64_t handle_id, uint16_t udp_port) {
if(dtls == NULL || udp_port == 0)
return NULL;
/* usrsctp provides UDP encapsulation of SCTP, but we need these messages to
* be encapsulated in DTLS and actually sent/received by libnice, and not by
* usrsctp itself... as such, we make use of the AF_CONN approach */
janus_sctp_association *sctp = (janus_sctp_association *)g_malloc0(sizeof(janus_sctp_association));
if(sctp == NULL) {
PS_LOG(LOG_FATAL, "Memory error!\n");
return NULL;
}
sctp->dtls = dtls;
sctp->handle_id = handle_id;
sctp->local_port = 5000; /* FIXME We always use this one */
sctp->remote_port = udp_port;
sctp->sock = NULL;
struct socket *sock = NULL;
unsigned int i = 0;
struct sockaddr_conn sconn;
/* Now go on with SCTP */
janus_sctp_channel *channel = NULL;
for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
channel = &(sctp->channels[i]);
channel->id = i;
channel->state = DATA_CHANNEL_CLOSED;
channel->pr_policy = SCTP_PR_SCTP_NONE;
channel->pr_value = 0;
channel->stream = 0;
channel->unordered = 0;
channel->flags = 0;
}
for(i = 0; i < NUMBER_OF_STREAMS; i++) {
sctp->stream_channel[i] = NULL;
sctp->stream_buffer[i] = 0;
}
sctp->stream_buffer_counter = 0;
sctp->sock = NULL;
ps_mutex_init(&sctp->mutex);
usrsctp_register_address((void *)sctp);
usrsctp_sysctl_set_sctp_ecn_enable(0);
if((sock = usrsctp_socket(AF_CONN, SOCK_STREAM, IPPROTO_SCTP, janus_sctp_incoming_data, NULL, 0, (void *)sctp)) == NULL) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Error creating usrsctp socket...\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
/* Set SO_LINGER */
struct linger linger_opt;
linger_opt.l_onoff = 1;
linger_opt.l_linger = 0;
if(usrsctp_setsockopt(sock, SOL_SOCKET, SO_LINGER, &linger_opt, sizeof(linger_opt))) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SO_LINGER\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
/* Allow resetting streams */
struct sctp_assoc_value av;
av.assoc_id = SCTP_ALL_ASSOC;
av.assoc_value = 1;
if(usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_ENABLE_STREAM_RESET, &av, sizeof(struct sctp_assoc_value)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_ENABLE_STREAM_RESET\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
/* Disable Nagle */
uint32_t nodelay = 1;
if(usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_NODELAY, &nodelay, sizeof(nodelay))) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_NODELAY\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
/* Enable the events of interest */
struct sctp_event event;
memset(&event, 0, sizeof(event));
event.se_assoc_id = SCTP_ALL_ASSOC;
event.se_on = 1;
for(i = 0; i < sizeof(event_types)/sizeof(uint16_t); i++) {
event.se_type = event_types[i];
if(usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_EVENT, &event, sizeof(event)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_EVENT\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
}
/* Configure our INIT message */
struct sctp_initmsg initmsg;
memset(&initmsg, 0, sizeof(struct sctp_initmsg));
initmsg.sinit_num_ostreams = 16; /* What Firefox says in the INIT (Chrome says 1023) */
initmsg.sinit_max_instreams = 2048; /* What both Chrome and Firefox say in the INIT */
if(usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_INITMSG, &initmsg, sizeof(struct sctp_initmsg)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_INITMSG\n", handle_id);
g_free(sctp);
sctp = NULL;
return NULL;
}
/* Bind our side of the communication, using AF_CONN as we're doing the actual delivery ourselves */
memset(&sconn, 0, sizeof(struct sockaddr_conn));
sconn.sconn_family = AF_CONN;
sconn.sconn_port = htons(sctp->local_port);
sconn.sconn_addr = (void *)sctp;
if(usrsctp_bind(sock, (struct sockaddr *)&sconn, sizeof(struct sockaddr_conn)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Error binding client on port %"SCNu16"\n", handle_id, sctp->local_port);
g_free(sctp);
sctp = NULL;
return NULL;
}
#ifdef DEBUG_SCTP
char debug_file[1024];
g_snprintf(debug_file, 1024, "%s/sctp-debug-%"SCNu64".txt", debug_folder, handle_id);
sctp->debug_dump = fopen(debug_file, "wt");
#endif
/* We're done for now, the setup is done elsewhere */
ps_mutex_lock(&sctp->mutex);
sctp->sock = sock;
sctp->messages = g_async_queue_new_full((GDestroyNotify) janus_sctp_message_destroy);
GError *error = NULL;
sctp->thread = g_thread_try_new("JanusSCTP", &janus_sctp_thread, sctp, &error);
if(error != NULL) {
/* Something went wrong... */
PS_LOG(LOG_ERR, "[%"SCNu64"] Got error %d (%s) trying to launch the SCTP thread...\n", handle_id, error->code, error->message ? error->message : "??");
g_async_queue_unref(sctp->messages);
sctp->messages = NULL;
g_free(sctp);
sctp = NULL;
return NULL;
}
ps_mutex_unlock(&sctp->mutex);
return sctp;
}
int janus_sctp_association_setup(janus_sctp_association *sctp) {
if(sctp == NULL)
return -1;
struct socket *sock = sctp->sock;
struct sockaddr_conn sconn;
/* Operating as client */
PS_LOG(LOG_VERB, "[%"SCNu64"] Connecting the SCTP association\n", sctp->handle_id);
memset(&sconn, 0, sizeof(struct sockaddr_conn));
sconn.sconn_family = AF_CONN;
sconn.sconn_port = htons(sctp->remote_port);
sconn.sconn_addr = (void *)sctp;
#ifdef HAVE_SCONN_LEN
sconn.sconn_len = sizeof(struct sockaddr_conn);
#endif
if(usrsctp_connect(sock, (struct sockaddr *)&sconn, sizeof(struct sockaddr_conn)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Error connecting to SCTP server at port %"SCNu16"\n", sctp->handle_id, sctp->remote_port);
return -1;
}
PS_LOG(LOG_VERB, "[%"SCNu64"] Connected to the DataChannel peer\n", sctp->handle_id);
ps_mutex_lock(&sctp->mutex);
sctp->sock = sock;
ps_mutex_unlock(&sctp->mutex);
return 0;
}
void janus_sctp_association_destroy(janus_sctp_association *sctp) {
if(sctp == NULL)
return;
PS_LOG(LOG_VERB, "[%"SCNu64"] Destroying SCTP association\n", sctp->handle_id);
usrsctp_deregister_address(sctp);
usrsctp_shutdown(sctp->sock, SHUT_RDWR);
usrsctp_close(sctp->sock);
ps_mutex_lock(&sctp->mutex);
sctp->dtls = NULL; /* This will get rid of the thread */
g_async_queue_push(sctp->messages, &exit_message);
ps_mutex_unlock(&sctp->mutex);
}
void janus_sctp_data_from_dtls(janus_sctp_association *sctp, char *buf, int len) {
if(sctp == NULL || sctp->dtls == NULL || buf == NULL || len <= 0)
return;
PS_LOG(LOG_VERB, "[%"SCNu64"] Data from DTLS to SCTP stack: %d bytes\n", sctp->handle_id, len);
ps_mutex_lock(&sctp->mutex);
if(sctp->messages != NULL)
g_async_queue_push(sctp->messages, janus_sctp_message_create(TRUE, buf, len));
ps_mutex_unlock(&sctp->mutex);
}
int janus_sctp_data_to_dtls(void *instance, void *buffer, size_t length, uint8_t tos, uint8_t set_df) {
janus_sctp_association *sctp = (janus_sctp_association *)instance;
if(sctp == NULL || sctp->dtls == NULL)
return -1;
PS_LOG(LOG_VERB, "[%"SCNu64"] Data from SCTP to DTLS stack: %zu bytes\n", sctp->handle_id, length);
ps_mutex_lock(&sctp->mutex);
if(sctp->messages != NULL)
g_async_queue_push(sctp->messages, janus_sctp_message_create(FALSE, buffer, length));
ps_mutex_unlock(&sctp->mutex);
return 0;
}
static int janus_sctp_incoming_data(struct socket *sock, union sctp_sockstore addr, void *data, size_t datalen, struct sctp_rcvinfo rcv, int flags, void *ulp_info) {
janus_sctp_association *sctp = (janus_sctp_association *)ulp_info;
if(sctp == NULL || sctp->dtls == NULL)
return 0;
if(data) {
if(flags & MSG_NOTIFICATION) {
janus_sctp_handle_notification(sctp, (union sctp_notification *)data, datalen);
} else {
janus_sctp_handle_message(sctp, data, datalen, ntohl(rcv.rcv_ppid), rcv.rcv_sid);
}
}
return 1;
}
void janus_sctp_send_data(janus_sctp_association *sctp, char *buf, int len) {
if(sctp == NULL || buf == NULL || len <= 0)
return;
PS_LOG(LOG_VERB, "[%"SCNu64"] SCTP data to send (%d bytes) coming from a plugin: %s\n", sctp->handle_id, len, buf);
/* FIXME Is there any open channel we can use? */
int i = 0, found = 0;
for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
if(sctp->channels[i].state != DATA_CHANNEL_CLOSED) {
found = 1;
PS_LOG(LOG_VERB, "[%"SCNu64"] -- Using open channel %i\n", sctp->handle_id, i);
break;
}
}
if(!found) {
PS_LOG(LOG_WARN, "[%"SCNu64"] Couldn't send data, channel %i is not open yet\n", sctp->handle_id, i);
return;
//~ /* FIXME There's no open channel (shouldn't happen, we always create it in janus.js), try opening one now */
//~ if(janus_sctp_open_channel(sctp, 0, 0, 0) < 0) {
//~ PS_LOG(LOG_ERR, "[%"SCNu64"] Couldn't open channel...\n", sctp->handle_id);
//~ return;
//~ }
//~ for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
//~ if(sctp->channels[i].state != DATA_CHANNEL_CLOSED) {
//~ found = 1;
//~ PS_LOG(LOG_VERB, "[%"SCNu64"] -- Using open channel %i\n", sctp->handle_id, i);
//~ break;
//~ }
//~ }
//~ if(!found) {
//~ PS_LOG(LOG_ERR, "[%"SCNu64"] Channel opened but not found?? giving up...\n", sctp->handle_id);
//~ return;
//~ }
}
/* FIXME We're assuming this is a string (we don't support binary data yet) */
janus_sctp_send_text(sctp, i, buf, len);
}
/* From now on, it's SCTP stuff */
janus_sctp_channel *janus_sctp_find_channel_by_stream(janus_sctp_association *sctp, uint16_t stream) {
if(sctp == NULL)
return NULL;
if(stream < NUMBER_OF_STREAMS) {
return (sctp->stream_channel[stream]);
} else {
return NULL;
}
}
janus_sctp_channel *janus_sctp_find_free_channel(janus_sctp_association *sctp) {
uint32_t i;
for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
if(sctp->channels[i].state == DATA_CHANNEL_CLOSED) {
break;
}
}
if(i == NUMBER_OF_CHANNELS) {
return NULL;
} else {
return (&(sctp->channels[i]));
}
}
uint16_t janus_sctp_find_free_stream(janus_sctp_association *sctp) {
struct sctp_status status;
uint32_t i, limit;
socklen_t len;
len = (socklen_t)sizeof(struct sctp_status);
if(usrsctp_getsockopt(sctp->sock, IPPROTO_SCTP, SCTP_STATUS, &status, &len) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] getsockopt error: SCTP_STATUS\n", sctp->handle_id);
return 0;
}
if(status.sstat_outstrms < NUMBER_OF_STREAMS) {
limit = status.sstat_outstrms;
} else {
limit = NUMBER_OF_STREAMS;
}
/* stream id 0 is reserved */
for(i = 1; i < limit; i++) {
if(sctp->stream_channel[i] == NULL) {
break;
}
}
if(i == limit) {
return 0;
} else {
return ((uint16_t)i);
}
}
void janus_sctp_request_more_streams(janus_sctp_association *sctp) {
struct sctp_status status;
struct sctp_add_streams sas;
uint32_t i, streams_needed;
socklen_t len;
streams_needed = 0;
for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
if((sctp->channels[i].state == DATA_CHANNEL_CONNECTING) &&
(sctp->channels[i].stream == 0)) {
streams_needed++;
}
}
len = (socklen_t)sizeof(struct sctp_status);
if(usrsctp_getsockopt(sctp->sock, IPPROTO_SCTP, SCTP_STATUS, &status, &len) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] getsockopt error: SCTP_STATUS\n", sctp->handle_id);
return;
}
if(status.sstat_outstrms + streams_needed > NUMBER_OF_STREAMS) {
streams_needed = NUMBER_OF_STREAMS - status.sstat_outstrms;
}
if(streams_needed == 0) {
return;
}
memset(&sas, 0, sizeof(struct sctp_add_streams));
sas.sas_instrms = 0;
sas.sas_outstrms = (uint16_t)streams_needed; /* XXX eror handling */
if(usrsctp_setsockopt(sctp->sock, IPPROTO_SCTP, SCTP_ADD_STREAMS, &sas, (socklen_t)sizeof(struct sctp_add_streams)) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_ADD_STREAMS\n", sctp->handle_id);
}
return;
}
int janus_sctp_send_open_request_message(struct socket *sock, uint16_t stream, uint8_t unordered, uint16_t pr_policy, uint32_t pr_value) {
/* XXX: This should be encoded in a better way */
janus_datachannel_open_request *req = NULL;
struct sctp_sndinfo sndinfo;
/* FIXME For open requests we send, we always use this label */
const char *label = "JanusDataChannel";
guint label_size = (strlen(label)+3) & ~3;
PS_LOG(LOG_VERB, "Using label '%s' (%zu, %u with padding)\n", label, strlen(label), label_size);
req = g_malloc0(sizeof(janus_datachannel_open_request) + label_size);
memset(req, 0, sizeof(janus_datachannel_open_request) + label_size);
req->msg_type = DATA_CHANNEL_OPEN_REQUEST;
switch (pr_policy) {
case SCTP_PR_SCTP_NONE:
/* XXX: What about DATA_CHANNEL_RELIABLE_STREAM */
req->channel_type = DATA_CHANNEL_RELIABLE;
break;
case SCTP_PR_SCTP_TTL:
/* XXX: What about DATA_CHANNEL_UNRELIABLE */
req->channel_type = DATA_CHANNEL_PARTIAL_RELIABLE_TIMED;
break;
case SCTP_PR_SCTP_RTX:
req->channel_type = DATA_CHANNEL_PARTIAL_RELIABLE_REXMIT;
break;
default:
return 0;
}
req->priority = htons(0); /* XXX: add support */
req->reliability_params = htonl((uint32_t)pr_value);
req->label_length = htons(label_size);
memcpy(&req->label, label, strlen(label));
memset(&sndinfo, 0, sizeof(struct sctp_sndinfo));
sndinfo.snd_sid = stream;
sndinfo.snd_flags = SCTP_EOR;
sndinfo.snd_ppid = htonl(DATA_CHANNEL_PPID_CONTROL);
if(usrsctp_sendv(sock,
req, sizeof(janus_datachannel_open_request) + label_size,
NULL, 0,
&sndinfo, (socklen_t)sizeof(struct sctp_sndinfo),
SCTP_SENDV_SNDINFO, 0) < 0) {
PS_LOG(LOG_ERR, "usrsctp_sendv error\n");
g_free(req);
req = NULL;
return 0;
} else {
g_free(req);
req = NULL;
return 1;
}
}
int janus_sctp_send_open_response_message(struct socket *sock, uint16_t stream) {
/* XXX: This should be encoded in a better way */
janus_datachannel_open_response rsp;
struct sctp_sndinfo sndinfo;
memset(&rsp, 0, sizeof(janus_datachannel_open_response));
rsp.msg_type = DATA_CHANNEL_OPEN_RESPONSE;
rsp.error = 0;
rsp.flags = htons(0);
rsp.reverse_stream = htons(stream);
memset(&sndinfo, 0, sizeof(struct sctp_sndinfo));
sndinfo.snd_sid = stream;
sndinfo.snd_flags = SCTP_EOR;
sndinfo.snd_ppid = htonl(DATA_CHANNEL_PPID_CONTROL);
if(usrsctp_sendv(sock,
&rsp, sizeof(janus_datachannel_open_response),
NULL, 0,
&sndinfo, (socklen_t)sizeof(struct sctp_sndinfo),
SCTP_SENDV_SNDINFO, 0) < 0) {
PS_LOG(LOG_ERR, "usrsctp_sendv error\n");
return 0;
} else {
return 1;
}
}
int janus_sctp_send_open_ack_message(struct socket *sock, uint16_t stream) {
/* XXX: This should be encoded in a better way */
janus_datachannel_ack ack;
struct sctp_sndinfo sndinfo;
memset(&ack, 0, sizeof(janus_datachannel_ack));
ack.msg_type = DATA_CHANNEL_ACK;
memset(&sndinfo, 0, sizeof(struct sctp_sndinfo));
sndinfo.snd_sid = stream;
sndinfo.snd_flags = SCTP_EOR;
sndinfo.snd_ppid = htonl(DATA_CHANNEL_PPID_CONTROL);
if(usrsctp_sendv(sock,
&ack, sizeof(janus_datachannel_ack),
NULL, 0,
&sndinfo, (socklen_t)sizeof(struct sctp_sndinfo),
SCTP_SENDV_SNDINFO, 0) < 0) {
PS_LOG(LOG_ERR, "usrsctp_sendv error\n");
return 0;
} else {
return 1;
}
}
void janus_sctp_send_deferred_messages(janus_sctp_association *sctp) {
uint32_t i;
janus_sctp_channel *channel;
for(i = 0; i < NUMBER_OF_CHANNELS; i++) {
channel = &(sctp->channels[i]);
if(channel->flags & DATA_CHANNEL_FLAGS_SEND_REQ) {
if(janus_sctp_send_open_request_message(sctp->sock, channel->stream, channel->unordered, channel->pr_policy, channel->pr_value)) {
channel->flags &= ~DATA_CHANNEL_FLAGS_SEND_REQ;
} else {
if(errno != EAGAIN) {
/* XXX: error handling */
}
}
}
if(channel->flags & DATA_CHANNEL_FLAGS_SEND_RSP) {
if(janus_sctp_send_open_response_message(sctp->sock, channel->stream)) {
channel->flags &= ~DATA_CHANNEL_FLAGS_SEND_RSP;
} else {
if(errno != EAGAIN) {
/* XXX: error handling */
}
}
}
if(channel->flags & DATA_CHANNEL_FLAGS_SEND_ACK) {
if(janus_sctp_send_open_ack_message(sctp->sock, channel->stream)) {
channel->flags &= ~DATA_CHANNEL_FLAGS_SEND_ACK;
} else {
if(errno != EAGAIN) {
/* XXX: error handling */
}
}
}
}
return;
}
int janus_sctp_open_channel(janus_sctp_association *sctp, uint8_t unordered, uint16_t pr_policy, uint32_t pr_value) {
if(sctp == NULL)
return -1;
janus_sctp_channel *channel;
uint16_t stream;
if((pr_policy != SCTP_PR_SCTP_NONE) &&
(pr_policy != SCTP_PR_SCTP_TTL) &&
(pr_policy != SCTP_PR_SCTP_RTX)) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Invalid pr_policy %"SCNu32"\n", sctp->handle_id, pr_policy);
return -1;
}
if((pr_policy == SCTP_PR_SCTP_NONE) && (pr_value != 0)) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Invalid pr_value %"SCNu32" for SCTP_PR_SCTP_NONE\n", sctp->handle_id, pr_value);
return -1;
}
if((channel = janus_sctp_find_free_channel(sctp)) == NULL) {
PS_LOG(LOG_ERR, "[%"SCNu64"] No more free channels available\n", sctp->handle_id);
return -1;
}
stream = janus_sctp_find_free_stream(sctp);
channel->state = DATA_CHANNEL_CONNECTING;
channel->unordered = unordered ? 1 : 0;
channel->pr_policy = pr_policy;
channel->pr_value = pr_value;
channel->stream = stream;
channel->flags = 0;
if(stream == 0) {
janus_sctp_request_more_streams(sctp);
} else {
if(janus_sctp_send_open_request_message(sctp->sock, stream, unordered, pr_policy, pr_value)) {
sctp->stream_channel[stream] = channel;
} else {
if(errno == EAGAIN) {
sctp->stream_channel[stream] = channel;
channel->flags |= DATA_CHANNEL_FLAGS_SEND_REQ;
} else {
channel->state = DATA_CHANNEL_CLOSED;
channel->unordered = 0;
channel->pr_policy = 0;
channel->pr_value = 0;
channel->stream = 0;
channel->flags = 0;
channel = NULL;
}
}
}
return 0;
}
int janus_sctp_send_text(janus_sctp_association *sctp, uint16_t id, char *text, size_t length) {
if(id >= NUMBER_OF_CHANNELS || text == NULL)
return -1;
struct sctp_sendv_spa spa;
janus_sctp_channel *channel = &sctp->channels[id];
if(channel == NULL) {
/* No such channel */
PS_LOG(LOG_ERR, "[%"SCNu64"] No such channel %"SCNu16"...\n", sctp->handle_id, id);
return -1;
}
if((channel->state != DATA_CHANNEL_OPEN) && (channel->state != DATA_CHANNEL_CONNECTING)) {
PS_LOG(LOG_ERR, "[%"SCNu64"] Channel %"SCNu16" is neither open nor connecting (state=%d)...\n", sctp->handle_id, id, channel->state);
return -1;
}
memset(&spa, 0, sizeof(struct sctp_sendv_spa));
spa.sendv_sndinfo.snd_sid = channel->stream;
if((channel->state == DATA_CHANNEL_OPEN) && (channel->unordered)) {
spa.sendv_sndinfo.snd_flags = SCTP_EOR | SCTP_UNORDERED;
} else {
spa.sendv_sndinfo.snd_flags = SCTP_EOR;
}
spa.sendv_sndinfo.snd_ppid = htonl(DATA_CHANNEL_PPID_DOMSTRING);
spa.sendv_flags = SCTP_SEND_SNDINFO_VALID;
if((channel->pr_policy == SCTP_PR_SCTP_TTL) || (channel->pr_policy == SCTP_PR_SCTP_RTX)) {
spa.sendv_prinfo.pr_policy = channel->pr_policy;
spa.sendv_prinfo.pr_value = channel->pr_value;
spa.sendv_flags |= SCTP_SEND_PRINFO_VALID;
}
if(usrsctp_sendv(sctp->sock, text, length, NULL, 0,
&spa, (socklen_t)sizeof(struct sctp_sendv_spa),
SCTP_SENDV_SPA, 0) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] sctp_sendv error\n", sctp->handle_id);
return -1;
}
PS_LOG(LOG_VERB, "[%"SCNu64"] Message sent on channel %"SCNu16"\n", sctp->handle_id, id);
return 0;
}
void janus_sctp_reset_outgoing_stream(janus_sctp_association *sctp, uint16_t stream) {
uint32_t i;
for(i = 0; i < sctp->stream_buffer_counter; i++) {
if(sctp->stream_buffer[i] == stream) {
return;
}
}
sctp->stream_buffer[sctp->stream_buffer_counter++] = stream;
return;
}
void janus_sctp_send_outgoing_stream_reset(janus_sctp_association *sctp) {
struct sctp_reset_streams *srs;
uint32_t i;
size_t len;
if(sctp->stream_buffer_counter == 0) {
return;
}
len = sizeof(sctp_assoc_t) + (2 + sctp->stream_buffer_counter) * sizeof(uint16_t);
srs = (struct sctp_reset_streams *)g_malloc0(len);
if(srs == NULL) {
return;
}
memset(srs, 0, len);
srs->srs_flags = SCTP_STREAM_RESET_OUTGOING;
srs->srs_number_streams = sctp->stream_buffer_counter;
for(i = 0; i < sctp->stream_buffer_counter; i++) {
srs->srs_stream_list[i] = sctp->stream_buffer[i];
}
if(usrsctp_setsockopt(sctp->sock, IPPROTO_SCTP, SCTP_RESET_STREAMS, srs, (socklen_t)len) < 0) {
PS_LOG(LOG_ERR, "[%"SCNu64"] setsockopt error: SCTP_RESET_STREAMS\n", sctp->handle_id);
} else {
for(i = 0; i < sctp->stream_buffer_counter; i++) {
srs->srs_stream_list[i] = 0;
}
sctp->stream_buffer_counter = 0;
}
g_free(srs);
return;
}
int janus_sctp_close_channel(janus_sctp_association *sctp, uint16_t id) {
if(id >= NUMBER_OF_CHANNELS)
return -1;
janus_sctp_channel *channel = &sctp->channels[id];
if(channel == NULL) {
return -1;
}
if(channel->state != DATA_CHANNEL_OPEN) {
return -1;
}
janus_sctp_reset_outgoing_stream(sctp, channel->stream);
janus_sctp_send_outgoing_stream_reset(sctp);
channel->state = DATA_CHANNEL_CLOSING;
return 0;
}
void janus_sctp_handle_open_request_message(janus_sctp_association *sctp, janus_datachannel_open_request *req, size_t length, uint16_t stream) {
janus_sctp_channel *channel;
uint32_t pr_value;
uint16_t pr_policy;
uint8_t unordered;
if((channel = janus_sctp_find_channel_by_stream(sctp, stream))) {
PS_LOG(LOG_ERR, "[%"SCNu64"] channel %d is in state %d instead of CLOSED.\n", sctp->handle_id, channel->id, channel->state);
/* XXX: some error handling */
return;
}
if((channel = janus_sctp_find_free_channel(sctp)) == NULL) {
/* XXX: some error handling */
return;
}
switch (req->channel_type) {
case DATA_CHANNEL_RELIABLE:
pr_policy = SCTP_PR_SCTP_NONE;
unordered = 0;
break;
case DATA_CHANNEL_RELIABLE_UNORDERED:
pr_policy = SCTP_PR_SCTP_NONE;
unordered = 1;
break;
case DATA_CHANNEL_PARTIAL_RELIABLE_TIMED:
pr_policy = SCTP_PR_SCTP_TTL;
unordered = 0;
break;
case DATA_CHANNEL_PARTIAL_RELIABLE_TIMED_UNORDERED:
pr_policy = SCTP_PR_SCTP_TTL;
unordered = 1;
break;
case DATA_CHANNEL_PARTIAL_RELIABLE_REXMIT:
pr_policy = SCTP_PR_SCTP_RTX;
unordered = 1;
break;
case DATA_CHANNEL_PARTIAL_RELIABLE_REXMIT_UNORDERED:
pr_policy = SCTP_PR_SCTP_RTX;
unordered = 1;
break;
default:
pr_policy = SCTP_PR_SCTP_NONE;
unordered = 0;
/* FIXME Should we handle some error, here? */
break;
}
pr_value = ntohs(req->reliability_params);
channel->state = DATA_CHANNEL_CONNECTING;
channel->unordered = unordered;
channel->pr_policy = pr_policy;
channel->pr_value = pr_value;
channel->stream = stream;
channel->flags = 0;
sctp->stream_channel[stream] = channel;
if(stream == 0) {
janus_sctp_request_more_streams(sctp);
} else {
if(janus_sctp_send_open_ack_message(sctp->sock, stream)) {
sctp->stream_channel[stream] = channel;
} else {
if(errno == EAGAIN) {
channel->flags |= DATA_CHANNEL_FLAGS_SEND_ACK;
sctp->stream_channel[stream] = channel;
} else {
/* XXX: Signal error to the other end */
sctp->stream_channel[stream] = NULL;
channel->state = DATA_CHANNEL_CLOSED;
channel->unordered = 0;
channel->pr_policy = 0;
channel->pr_value = 0;
channel->stream = 0;
channel->flags = 0;
}
}
}
/* Read label, if available */
char *label = NULL;
guint len = ntohs(req->label_length);
if(len > 0 && len < length) {
label = g_malloc0(len+1);
memcpy(label, req->label, len);
label[len] = '\0';
}
PS_LOG(LOG_VERB, "[%"SCNu64"] Opened channel '%s' (id=%"SCNu16") (%d/%d/%d)\n", sctp->handle_id,
label ? label : "??",
channel->stream, channel->unordered, channel->pr_policy, channel->pr_value);
if(label)
g_free(label);
}
void janus_sctp_handle_open_response_message(janus_sctp_association *sctp, janus_datachannel_open_response *rsp, size_t length, uint16_t stream) {
janus_sctp_channel *channel;
channel = janus_sctp_find_channel_by_stream(sctp, stream);
if(channel == NULL) {
/* XXX: improve error handling */
PS_LOG(LOG_ERR, "[%"SCNu64"] Can't find channel for outgoing steam %d.\n", sctp->handle_id, stream);
return;
}
if(channel->state != DATA_CHANNEL_CONNECTING) {
/* XXX: improve error handling */
PS_LOG(LOG_ERR, "[%"SCNu64"] Channel with id %d for outgoing steam %d is in state %d.\n", sctp->handle_id, channel->id, stream, channel->state);
return;
}
if(janus_sctp_find_channel_by_stream(sctp, stream)) {
/* XXX: improve error handling */
PS_LOG(LOG_ERR, "[%"SCNu64"] Channel collision for channel with id %d and streams (in/out) = (%d/%d).\n", sctp->handle_id, channel->id, stream, stream);
return;
}
channel->stream = stream;
channel->state = DATA_CHANNEL_OPEN;
sctp->stream_channel[stream] = channel;
if(janus_sctp_send_open_ack_message(sctp->sock, stream)) {
channel->flags = 0;
} else {
channel->flags |= DATA_CHANNEL_FLAGS_SEND_ACK;
}
return;
}
void janus_sctp_handle_open_ack_message(janus_sctp_association *sctp, janus_datachannel_ack *ack, size_t length, uint16_t stream) {
janus_sctp_channel *channel;
channel = janus_sctp_find_channel_by_stream(sctp, stream);
if(channel == NULL) {
/* XXX: some error handling */
PS_LOG(LOG_ERR, "Ops, no channel with stream %"SCNu16"?\n", stream);
return;
}
if(channel->state == DATA_CHANNEL_OPEN) {
return;
}
if(channel->state != DATA_CHANNEL_CONNECTING) {
/* XXX: error handling */
return;
}
channel->state = DATA_CHANNEL_OPEN;
return;
}
void janus_sctp_handle_unknown_message(char *msg, size_t length, uint16_t stream) {
/* XXX: Send an error message */
return;
}
void janus_sctp_handle_data_message(janus_sctp_association *sctp, char *buffer, size_t length, uint16_t stream) {
janus_sctp_channel *channel;
channel = janus_sctp_find_channel_by_stream(sctp, stream);
if(channel == NULL) {
/* XXX: Some error handling */
PS_LOG(LOG_WARN, "[%"SCNu64"] Got data from this SCTP association but there is no channel with stream %"SCNu16"...\n", sctp->handle_id, stream);
return;
}
if(channel->state == DATA_CHANNEL_CONNECTING) {
/* Implicit ACK */
channel->state = DATA_CHANNEL_OPEN;
}
if(channel->state != DATA_CHANNEL_OPEN) {
/* XXX: What about other states? */
/* XXX: Some error handling */
PS_LOG(LOG_WARN, "[%"SCNu64"] Got data from this SCTP association but channel isn't open yet...\n", sctp->handle_id);
return;
} else {
/* Assuming DATA_CHANNEL_PPID_DOMSTRING */
/* XXX: Protect for non 0 terminated buffer */
PS_LOG(LOG_VERB, "[%"SCNu64"] Message received of length %zu on channel with id %d: %.*s\n",
sctp->handle_id, length, channel->id, (int)length, buffer);
/* FIXME: notify this to the core */
janus_dtls_notify_data((janus_dtls_srtp *)sctp->dtls, buffer, (int)length);
}
return;
}
void janus_sctp_handle_message(janus_sctp_association *sctp, char *buffer, size_t length, uint32_t ppid, uint16_t stream) {
janus_datachannel_open_request *req;
janus_datachannel_open_response *rsp;
janus_datachannel_ack *ack, *msg;
switch (ppid) {
case DATA_CHANNEL_PPID_CONTROL:
if(length < sizeof(janus_datachannel_ack)) {
return;
}
msg = (janus_datachannel_ack *)buffer;
switch (msg->msg_type) {
case DATA_CHANNEL_OPEN_REQUEST:
if(length < sizeof(janus_datachannel_open_request)) {
/* XXX: error handling? */
return;
}
req = (janus_datachannel_open_request *)buffer;
janus_sctp_handle_open_request_message(sctp, req, length, stream);
break;
case DATA_CHANNEL_OPEN_RESPONSE:
if(length < sizeof(janus_datachannel_open_response)) {
/* XXX: error handling? */
return;
}
rsp = (janus_datachannel_open_response *)buffer;
janus_sctp_handle_open_response_message(sctp, rsp, length, stream);
break;
case DATA_CHANNEL_ACK:
if(length < sizeof(janus_datachannel_ack)) {
/* XXX: error handling? */
return;
}
ack = (janus_datachannel_ack *)buffer;
janus_sctp_handle_open_ack_message(sctp, ack, length, stream);
break;
default:
janus_sctp_handle_unknown_message(buffer, length, stream);
break;
}
break;
case DATA_CHANNEL_PPID_DOMSTRING:
case DATA_CHANNEL_PPID_BINARY:
case DATA_CHANNEL_PPID_DOMSTRING_PARTIAL:
case DATA_CHANNEL_PPID_BINARY_PARTIAL:
janus_sctp_handle_data_message(sctp, buffer, length, stream);
break;
default:
PS_LOG(LOG_VERB, "[%"SCNu64"] Message of length %zu, PPID %u on stream %u received.\n",
sctp->handle_id, length, ppid, stream);
break;
}
}
void janus_sctp_handle_association_change_event(struct sctp_assoc_change *sac) {
unsigned int i, n;
PS_LOG(LOG_VERB, "Association change ");
switch (sac->sac_state) {
case SCTP_COMM_UP:
PS_LOG(LOG_VERB, "SCTP_COMM_UP");
break;
case SCTP_COMM_LOST:
PS_LOG(LOG_VERB, "SCTP_COMM_LOST");
break;
case SCTP_RESTART:
PS_LOG(LOG_VERB, "SCTP_RESTART");
break;
case SCTP_SHUTDOWN_COMP:
PS_LOG(LOG_VERB, "SCTP_SHUTDOWN_COMP");
break;
case SCTP_CANT_STR_ASSOC:
PS_LOG(LOG_VERB, "SCTP_CANT_STR_ASSOC");
break;
default:
PS_LOG(LOG_VERB, "UNKNOWN");
break;
}
PS_LOG(LOG_VERB, ", streams (in/out) = (%u/%u)",
sac->sac_inbound_streams, sac->sac_outbound_streams);