Changes from chan_dahdi that did not make it into sig_pri.

*  Moved SUPPORT_USERUSER to sig_pri.c
*  Fix PRI_DEADLOCK_AVOIDANCE parameter.
*  Whitespace changes.
*  Added missing unlock in pri_dchannel():PRI_EVENT_RING case.
*  Balanced curly braces.
*  ast_debug/ast_log changes from chan_dahdi.
*  sig_pri_indicate() should default to return -1 if the indication is not
handled.


git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@210154 65c4cc65-6c06-0410-ace0-fbb531ad65f3
certified/1.8.6
Richard Mudgett 16 years ago
parent 95d037edad
commit 070de85e56

@ -272,9 +272,6 @@ static struct ast_jb_conf default_jbconf =
};
static struct ast_jb_conf global_jbconf;
/* define this to send PRI user-user information elements */
#undef SUPPORT_USERUSER
/*!
* \note Define ZHONE_HACK to cause us to go off hook and then back on hook when
* the user hangs up to reset the state machine so ring works properly.
@ -1996,7 +1993,7 @@ static void my_get_and_handle_alarms(void *pvt)
{
int res;
struct dahdi_pvt *p = pvt;
res = get_alarms(p);
handle_alarms(p, res);
}
@ -2069,7 +2066,7 @@ static void my_all_subchannels_hungup(void *pvt)
law = DAHDI_LAW_DEFAULT;
res = ioctl(p->subs[SUB_REAL].dfd, DAHDI_SETLAW, &law);
if (res < 0)
if (res < 0)
ast_log(LOG_WARNING, "Unable to set law on channel %d to default: %s\n", p->channel, strerror(errno));
dahdi_setlinear(p->subs[SUB_REAL].dfd, 0);
@ -2219,7 +2216,7 @@ static int dahdi_setlaw(int dfd, int law)
}
#endif
#ifdef HAVE_PRI
#if defined(HAVE_PRI)
static struct ast_channel *my_new_pri_ast_channel(void *pvt, int state, int startpbx, enum sig_pri_law law, int transfercapability, char *exten, const struct ast_channel *requestor)
{
struct dahdi_pvt *p = pvt;
@ -2250,7 +2247,7 @@ static struct ast_channel *my_new_pri_ast_channel(void *pvt, int state, int star
}
return dahdi_new(p, state, startpbx, SUB_REAL, newlaw, transfercapability, requestor ? requestor->linkedid : "");
}
#endif
#endif /* defined(HAVE_PRI) */
static int unalloc_sub(struct dahdi_pvt *p, int x);
@ -2499,7 +2496,7 @@ static int my_on_hook(void *pvt)
return dahdi_set_hook(p->subs[ANALOG_SUB_REAL].dfd, DAHDI_ONHOOK);
}
#ifdef HAVE_PRI
#if defined(HAVE_PRI)
static void my_pri_fixup_chans(void *old_chan, void *new_chan)
{
struct dahdi_pvt *old = old_chan;
@ -2556,7 +2553,7 @@ static void my_handle_dchan_exception(struct sig_pri_pri *pri, int index)
if (x) {
ast_log(LOG_NOTICE, "PRI got event: %s (%d) on D-channel of span %d\n", event2str(x), x, pri->span);
}
/* Keep track of alarm state */
/* Keep track of alarm state */
if (x == DAHDI_EVENT_ALARM) {
pri_event_alarm(pri, index, 0);
} else if (x == DAHDI_EVENT_NOALARM) {
@ -2582,7 +2579,7 @@ static struct sig_pri_callback dahdi_pri_callbacks =
.fixup_chans = my_pri_fixup_chans,
.set_dialing = my_set_dialing,
};
#endif /* HAVE_PRI */
#endif /* defined(HAVE_PRI) */
/*!
* \brief Send MWI state change
@ -4301,7 +4298,7 @@ static int dahdi_call(struct ast_channel *ast, char *rdest, int timeout)
p->outgoing = 1;
set_actual_gain(p->subs[SUB_REAL].dfd, 0, p->rxgain, p->txgain, p->law);
#ifdef HAVE_PRI
if (p->sig == SIG_PRI || p->sig == SIG_BRI || p->sig == SIG_BRI_PTMP) {
struct dahdi_params ps;
@ -4340,7 +4337,8 @@ static int dahdi_call(struct ast_channel *ast, char *rdest, int timeout)
ast_mutex_unlock(&p->lock);
return -1;
}
#ifdef HAVE_SS7
#if defined(HAVE_SS7)
if (p->ss7) {
char ss7_called_nai;
int called_nai_strip;
@ -4477,7 +4475,8 @@ static int dahdi_call(struct ast_channel *ast, char *rdest, int timeout)
ast_setstate(ast, AST_STATE_DIALING);
ss7_rel(p->ss7);
}
#endif /* HAVE_SS7 */
#endif /* defined(HAVE_SS7) */
#ifdef HAVE_OPENR2
if (p->mfcr2) {
openr2_calling_party_category_t chancat;
@ -5203,7 +5202,7 @@ hangup_out:
if (p->cidspill)
ast_free(p->cidspill);
p->cidspill = NULL;
ast_mutex_unlock(&p->lock);
ast_module_unref(ast_module_info->self);
ast_verb(3, "Hungup '%s'\n", ast->name);
@ -5614,7 +5613,7 @@ static int parse_buffers_policy(const char *parse, int *num_buffers, int *policy
{
int res;
char policy_str[21] = "";
if ((res = sscanf(parse, "%d,%20s", num_buffers, policy_str)) != 2) {
ast_log(LOG_WARNING, "Parsing buffer string '%s' failed.\n", parse);
return 1;
@ -5643,7 +5642,7 @@ static int dahdi_func_write(struct ast_channel *chan, const char *function, char
{
struct dahdi_pvt *p = chan->tech_pvt;
int res = 0;
if (!strcasecmp(data, "buffers")) {
int num_bufs, policy;
@ -5668,11 +5667,11 @@ static int dahdi_func_write(struct ast_channel *chan, const char *function, char
if (!strcasecmp(value, "on")) {
ast_mutex_lock(&p->lock);
dahdi_enable_ec(p);
ast_mutex_unlock(&p->lock);
ast_mutex_unlock(&p->lock);
} else if (!strcasecmp(value, "off")) {
ast_mutex_lock(&p->lock);
dahdi_disable_ec(p);
ast_mutex_unlock(&p->lock);
ast_mutex_unlock(&p->lock);
#ifdef HAVE_DAHDI_ECHOCANCEL_FAX_MODE
} else if (!strcasecmp(value, "fax")) {
int blah = 1;
@ -5684,7 +5683,7 @@ static int dahdi_func_write(struct ast_channel *chan, const char *function, char
if (ioctl(p->subs[SUB_REAL].dfd, DAHDI_ECHOCANCEL_FAX_MODE, &blah)) {
ast_log(LOG_WARNING, "Unable to place echocan into fax mode on channel %d: %s\n", p->channel, strerror(errno));
}
ast_mutex_unlock(&p->lock);
ast_mutex_unlock(&p->lock);
} else if (!strcasecmp(value, "voice")) {
int blah = 0;
@ -5695,7 +5694,7 @@ static int dahdi_func_write(struct ast_channel *chan, const char *function, char
if (ioctl(p->subs[SUB_REAL].dfd, DAHDI_ECHOCANCEL_FAX_MODE, &blah)) {
ast_log(LOG_WARNING, "Unable to place echocan into voice mode on channel %d: %s\n", p->channel, strerror(errno));
}
ast_mutex_unlock(&p->lock);
ast_mutex_unlock(&p->lock);
#endif
} else {
ast_log(LOG_WARNING, "Unsupported value '%s' provided for '%s' item.\n", value, data);
@ -7287,7 +7286,7 @@ static struct ast_frame *__dahdi_exception(struct ast_channel *ast)
return f;
}
f = dahdi_handle_event(ast);
/* tell the cdr this zap device hung up */
if (f == NULL) {
ast_set_hangupsource(ast, ast->name, 0);
@ -7660,7 +7659,7 @@ static struct ast_frame *dahdi_read(struct ast_channel *ast)
if (f && (f->frametype == AST_FRAME_DTMF)) {
if (analog_lib_handles(p->sig, p->radio, p->oprmode)) {
analog_handle_dtmfup(p->sig_pvt, ast, idx, &f);
} else
} else
dahdi_handle_dtmfup(ast, idx, &f);
}
@ -7780,6 +7779,7 @@ static int dahdi_indicate(struct ast_channel *chan, int condition, const void *d
int res=-1;
int idx;
int func = DAHDI_FLASH;
ast_mutex_lock(&p->lock);
idx = dahdi_get_index(chan, p, 0);
ast_debug(1, "Requested indication %d on channel %s\n", condition, chan->name);
@ -10924,7 +10924,7 @@ static struct dahdi_pvt *mkintf(int channel, const struct dahdi_chan_conf *conf,
tmp->mwisend_fsk = conf->chan.mwisend_fsk;
tmp->mwisend_rpas = conf->chan.mwisend_rpas;
#endif
tmp->group = conf->chan.group;
tmp->callgroup = conf->chan.callgroup;
tmp->pickupgroup= conf->chan.pickupgroup;
@ -11044,7 +11044,7 @@ static struct dahdi_pvt *mkintf(int channel, const struct dahdi_chan_conf *conf,
analog_config_complete(analog_p);
}
}
}
#ifdef HAVE_PRI
else if (pchan != NULL) {
pchan->channel = tmp->channel;
@ -11334,7 +11334,7 @@ static struct ast_channel *dahdi_request(const char *type, int format, const str
else if (p->sig == SIG_PRI || p->sig == SIG_BRI || p->sig == SIG_BRI_PTMP) {
tmp = sig_pri_request(p->sig_pvt, SIG_PRI_DEFLAW, requestor);
}
#endif
#endif
else {
tmp = dahdi_new(p, AST_STATE_RESERVED, 0, p->owner ? SUB_CALLWAIT : SUB_REAL, 0, 0, requestor ? requestor->linkedid : "");
}
@ -12610,7 +12610,7 @@ static char *handle_pri_service_generic(struct ast_cli_entry *e, int cmd, struct
struct dahdi_pvt *start, *tmp = NULL;
struct dahdi_pri *pri = NULL;
ast_mutex_t *lock;
lock = &iflock;
start = iflist;
@ -12635,7 +12635,7 @@ static char *handle_pri_service_generic(struct ast_cli_entry *e, int cmd, struct
}
} else
channel = atoi(a->argv[4]);
if (a->argc == 6)
interfaceid = atoi(a->argv[5]);
@ -12706,15 +12706,15 @@ static char *handle_pri_service_generic(struct ast_cli_entry *e, int cmd, struct
static char *handle_pri_service_enable_channel(struct ast_cli_entry *e, int cmd, struct ast_cli_args *a)
{
switch (cmd) {
case CLI_INIT:
case CLI_INIT:
e->command = "pri service enable channel";
e->usage =
e->usage =
"Usage: pri service enable channel <channel> [<interface id>]\n"
" Send an AT&T / NFAS / CCS ANSI T1.607 maintenance message\n"
" to restore a channel to service, with optional interface id\n"
" as agreed upon with remote switch operator\n";
return NULL;
case CLI_GENERATE:
case CLI_GENERATE:
return NULL;
}
return handle_pri_service_generic(e, cmd, a, 0);
@ -12723,15 +12723,15 @@ static char *handle_pri_service_enable_channel(struct ast_cli_entry *e, int cmd,
static char *handle_pri_service_disable_channel(struct ast_cli_entry *e, int cmd, struct ast_cli_args *a)
{
switch (cmd) {
case CLI_INIT:
case CLI_INIT:
e->command = "pri service disable channel";
e->usage =
e->usage =
"Usage: pri service disable channel <chan num> [<interface id>]\n"
" Send an AT&T / NFAS / CCS ANSI T1.607 maintenance message\n"
" to remove a channel from service, with optional interface id\n"
" as agreed upon with remote switch operator\n";
return NULL;
case CLI_GENERATE:
case CLI_GENERATE:
return NULL;
}
return handle_pri_service_generic(e, cmd, a, 2);

@ -48,6 +48,9 @@
#include "sig_pri.h"
/* define this to send PRI user-user information elements */
#undef SUPPORT_USERUSER
static int pri_matchdigittimeout = 3000;
static int pri_gendigittimeout = 8000;
@ -62,7 +65,7 @@ static int pri_gendigittimeout = 8000;
#define DCHAN_AVAILABLE (DCHAN_NOTINALARM | DCHAN_UP)
#define PRI_DEADLOCK_AVOIDANCE(lock) \
#define PRI_DEADLOCK_AVOIDANCE(p) \
do { \
sig_pri_unlock_private(p); \
usleep(1); \
@ -338,7 +341,7 @@ static int pri_fixup_principle(struct sig_pri_pri *pri, int principle, q931_call
struct sig_pri_chan *new = pri->pvts[principle], *old = pri->pvts[x];
ast_verb(3, "Moving call from channel %d to channel %d\n",
old->channel, new->channel);
old->channel, new->channel);
if (new->owner) {
ast_log(LOG_WARNING, "Can't fix up channel from %d to %d because %d is already in use\n",
old->channel, new->channel, new->channel);
@ -533,9 +536,10 @@ static void *pri_ss_thread(void *data)
int len;
int timeout;
/* in the bizarre case where the channel has become a zombie before we
even get started here, abort safely
*/
/*
* In the bizarre case where the channel has become a zombie before we
* even get started here, abort safely.
*/
if (!p) {
ast_log(LOG_WARNING, "Channel became a zombie before simple switch could be started (%s)\n", chan->name);
ast_hangup(chan);
@ -694,7 +698,7 @@ static void *pri_dchannel(void *vpri)
activeidles = 0;
for (x = pri->numchans; x >= 0; x--) {
if (pri->pvts[x] && !pri->pvts[x]->owner &&
!pri->pvts[x]->call) {
!pri->pvts[x]->call) {
if (haveidles < pri->minunused) {
haveidles++;
} else if (!pri->pvts[x]->resetting) {
@ -720,7 +724,7 @@ static void *pri_dchannel(void *vpri)
gettimeofday(&lastidle, NULL);
}
} else if ((haveidles < pri->minunused) &&
(activeidles > pri->minidle)) {
(activeidles > pri->minidle)) {
/* Mark something for hangup if there is something
that can be hungup */
for (x = pri->numchans; x >= 0; x--) {
@ -731,7 +735,7 @@ static void *pri_dchannel(void *vpri)
/* Stop if we have enough idle channels or
can't spare any more active idle ones */
if ((haveidles >= pri->minunused) ||
(activeidles <= pri->minidle))
(activeidles <= pri->minidle))
break;
}
}
@ -810,12 +814,12 @@ static void *pri_dchannel(void *vpri)
if (e->e != PRI_EVENT_DCHAN_DOWN) {
if (!(pri->dchanavail[which] & DCHAN_UP)) {
ast_verb(2, "%s D-Channel on span %d up\n", pri_order(which), pri->span);
ast_verb(2, "%s D-Channel on span %d up\n", pri_order(which), pri->span);
}
pri->dchanavail[which] |= DCHAN_UP;
} else {
if (pri->dchanavail[which] & DCHAN_UP) {
ast_verb(2, "%s D-Channel on span %d down\n", pri_order(which), pri->span);
ast_verb(2, "%s D-Channel on span %d down\n", pri_order(which), pri->span);
}
pri->dchanavail[which] &= ~DCHAN_UP;
}
@ -901,7 +905,7 @@ static void *pri_dchannel(void *vpri)
if (!skipit) {
#endif
ast_verb(3, "B-channel %d/%d restarted on span %d\n",
PRI_SPAN(e->restart.channel), PRI_CHANNEL(e->restart.channel), pri->span);
PRI_SPAN(e->restart.channel), PRI_CHANNEL(e->restart.channel), pri->span);
sig_pri_lock_private(pri->pvts[chanpos]);
if (pri->pvts[chanpos]->call) {
pri_destroycall(pri->pri, pri->pvts[chanpos]->call);
@ -1056,6 +1060,7 @@ static void *pri_dchannel(void *vpri)
if (pri->pvts[chanpos]->call == e->ring.call) {
ast_log(LOG_WARNING, "Duplicate setup requested on channel %d/%d already in use on span %d\n",
PRI_SPAN(e->ring.channel), PRI_CHANNEL(e->ring.channel), pri->span);
sig_pri_unlock_private(pri->pvts[chanpos]);
break;
} else {
/* This is where we handle initial glare */
@ -1095,7 +1100,7 @@ static void *pri_dchannel(void *vpri)
pri->pvts[chanpos]->cid_ton = 0;
}
apply_plan_to_number(pri->pvts[chanpos]->rdnis, sizeof(pri->pvts[chanpos]->rdnis), pri,
e->ring.redirectingnum, e->ring.callingplanrdnis);
e->ring.redirectingnum, e->ring.callingplanrdnis);
/* If immediate=yes go to s|1 */
if (pri->pvts[chanpos]->immediate) {
ast_verb(3, "Going to extension s|1 because of immediate=yes\n");
@ -1191,7 +1196,7 @@ static void *pri_dchannel(void *vpri)
}
}
pthread_attr_destroy(&attr);
} else {
} else {
ast_mutex_unlock(&pri->lock);
/* Release PRI lock while we create the channel */
c = sig_pri_new_ast_channel(pri->pvts[chanpos], AST_STATE_RING, 1, (e->ring.layer1 == PRI_LAYER_1_ALAW) ? SIG_PRI_ALAW : SIG_PRI_ULAW, e->ring.ctype, pri->pvts[chanpos]->exten, NULL);
@ -1226,8 +1231,8 @@ static void *pri_dchannel(void *vpri)
ast_mutex_lock(&pri->lock);
ast_verb(3, "Accepting call from '%s' to '%s' on channel %d/%d, span %d\n",
plancallingnum, pri->pvts[chanpos]->exten,
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span);
plancallingnum, pri->pvts[chanpos]->exten,
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span);
sig_pri_set_echocanceller(pri->pvts[chanpos], 1);
} else {
@ -1241,8 +1246,8 @@ static void *pri_dchannel(void *vpri)
}
} else {
ast_verb(3, "Extension '%s' in context '%s' from '%s' does not exist. Rejecting call on channel %d/%d, span %d\n",
pri->pvts[chanpos]->exten, pri->pvts[chanpos]->context, pri->pvts[chanpos]->cid_num, pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
pri->pvts[chanpos]->exten, pri->pvts[chanpos]->context, pri->pvts[chanpos]->cid_num, pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
pri_hangup(pri->pri, e->ring.call, PRI_CAUSE_UNALLOCATED);
pri->pvts[chanpos]->call = NULL;
pri->pvts[chanpos]->exten[0] = '\0';
@ -1270,12 +1275,6 @@ static void *pri_dchannel(void *vpri)
sig_pri_set_echocanceller(pri->pvts[chanpos], 1);
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_RINGING, pri);
pri->pvts[chanpos]->alerting = 1;
#ifdef PRI_PROGRESS_MASK
if (e->ringing.progressmask & PRI_PROG_INBAND_AVAILABLE) {
#else
if (e->ringing.progress == 8) {
#endif
}
#ifdef SUPPORT_USERUSER
if (!ast_strlen_zero(e->ringing.useruserinfo)) {
@ -1294,11 +1293,13 @@ static void *pri_dchannel(void *vpri)
/* Get chan value if e->e is not PRI_EVNT_RINGING */
chanpos = pri_find_principle(pri, e->proceeding.channel);
if (chanpos > -1) {
if ((!pri->pvts[chanpos]->progress)
#ifdef PRI_PROGRESS_MASK
if ((!pri->pvts[chanpos]->progress) || (e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE)) {
|| (e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE)
#else
if ((!pri->pvts[chanpos]->progress) || (e->proceeding.progress == 8)) {
|| (e->proceeding.progress == 8)
#endif
) {
struct ast_frame f = { AST_FRAME_CONTROL, AST_CONTROL_PROGRESS, };
if (e->proceeding.cause > -1) {
@ -1316,14 +1317,16 @@ static void *pri_dchannel(void *vpri)
}
sig_pri_lock_private(pri->pvts[chanpos]);
ast_log(LOG_DEBUG, "Queuing frame from PRI_EVENT_PROGRESS on channel %d/%d span %d\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset,pri->span);
ast_debug(1, "Queuing frame from PRI_EVENT_PROGRESS on channel %d/%d span %d\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset,pri->span);
pri_queue_frame(pri->pvts[chanpos], &f, pri);
if (
#ifdef PRI_PROGRESS_MASK
if (e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE) {
e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE
#else
if (e->proceeding.progress == 8) {
e->proceeding.progress == 8
#endif
) {
/* Bring voice path up */
f.subclass = AST_CONTROL_PROGRESS;
pri_queue_frame(pri->pvts[chanpos], &f, pri);
@ -1341,14 +1344,16 @@ static void *pri_dchannel(void *vpri)
struct ast_frame f = { AST_FRAME_CONTROL, AST_CONTROL_PROCEEDING, };
sig_pri_lock_private(pri->pvts[chanpos]);
ast_log(LOG_DEBUG, "Queuing frame from PRI_EVENT_PROCEEDING on channel %d/%d span %d\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset,pri->span);
ast_debug(1, "Queuing frame from PRI_EVENT_PROCEEDING on channel %d/%d span %d\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset,pri->span);
pri_queue_frame(pri->pvts[chanpos], &f, pri);
if (
#ifdef PRI_PROGRESS_MASK
if (e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE) {
e->proceeding.progressmask & PRI_PROG_INBAND_AVAILABLE
#else
if (e->proceeding.progress == 8) {
e->proceeding.progress == 8
#endif
) {
/* Bring voice path up */
f.subclass = AST_CONTROL_PROGRESS;
pri_queue_frame(pri->pvts[chanpos], &f, pri);
@ -1429,37 +1434,38 @@ static void *pri_dchannel(void *vpri)
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
else {
switch (e->hangup.cause) {
case PRI_CAUSE_USER_BUSY:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_BUSY, pri);
break;
case PRI_CAUSE_CALL_REJECTED:
case PRI_CAUSE_NETWORK_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_CIRCUIT_CONGESTION:
case PRI_CAUSE_SWITCH_CONGESTION:
case PRI_CAUSE_DESTINATION_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_TEMPORARY_FAILURE:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_CONGESTION, pri);
break;
default:
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
case PRI_CAUSE_USER_BUSY:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_BUSY, pri);
break;
case PRI_CAUSE_CALL_REJECTED:
case PRI_CAUSE_NETWORK_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_CIRCUIT_CONGESTION:
case PRI_CAUSE_SWITCH_CONGESTION:
case PRI_CAUSE_DESTINATION_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_TEMPORARY_FAILURE:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_CONGESTION, pri);
break;
default:
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
break;
}
}
}
ast_verb(3, "Channel %d/%d, span %d got hangup, cause %d\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, e->hangup.cause);
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, e->hangup.cause);
} else {
pri_hangup(pri->pri, pri->pvts[chanpos]->call, e->hangup.cause);
pri->pvts[chanpos]->call = NULL;
}
if (e->hangup.cause == PRI_CAUSE_REQUESTED_CHAN_UNAVAIL) {
ast_verb(3, "Forcing restart of channel %d/%d on span %d since channel reported in use\n",
PRI_SPAN(e->hangup.channel), PRI_CHANNEL(e->hangup.channel), pri->span);
PRI_SPAN(e->hangup.channel), PRI_CHANNEL(e->hangup.channel), pri->span);
pri_reset(pri->pri, PVT_TO_CHANNEL(pri->pvts[chanpos]));
pri->pvts[chanpos]->resetting = 1;
}
if (e->hangup.aoc_units > -1)
ast_verb(3, "Channel %d/%d, span %d received AOC-E charging %d unit%s\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, (int)e->hangup.aoc_units, (e->hangup.aoc_units == 1) ? "" : "s");
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, (int)e->hangup.aoc_units, (e->hangup.aoc_units == 1) ? "" : "s");
#ifdef SUPPORT_USERUSER
if (pri->pvts[chanpos]->owner && !ast_strlen_zero(e->hangup.useruserinfo)) {
@ -1495,32 +1501,33 @@ static void *pri_dchannel(void *vpri)
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
else {
switch (e->hangup.cause) {
case PRI_CAUSE_USER_BUSY:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_BUSY, pri);
break;
case PRI_CAUSE_CALL_REJECTED:
case PRI_CAUSE_NETWORK_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_CIRCUIT_CONGESTION:
case PRI_CAUSE_SWITCH_CONGESTION:
case PRI_CAUSE_DESTINATION_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_TEMPORARY_FAILURE:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_CONGESTION, pri);
break;
default:
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
case PRI_CAUSE_USER_BUSY:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_BUSY, pri);
break;
case PRI_CAUSE_CALL_REJECTED:
case PRI_CAUSE_NETWORK_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_CIRCUIT_CONGESTION:
case PRI_CAUSE_SWITCH_CONGESTION:
case PRI_CAUSE_DESTINATION_OUT_OF_ORDER:
case PRI_CAUSE_NORMAL_TEMPORARY_FAILURE:
pri_queue_control(pri->pvts[chanpos], AST_CONTROL_CONGESTION, pri);
break;
default:
ast_softhangup_nolock(pri->pvts[chanpos]->owner, AST_SOFTHANGUP_DEV);
break;
}
}
ast_verb(3, "Channel %d/%d, span %d got hangup request, cause %d\n", PRI_SPAN(e->hangup.channel), PRI_CHANNEL(e->hangup.channel), pri->span, e->hangup.cause);
if (e->hangup.aoc_units > -1)
ast_verb(3, "Channel %d/%d, span %d received AOC-E charging %d unit%s\n",
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, (int)e->hangup.aoc_units, (e->hangup.aoc_units == 1) ? "" : "s");
pri->pvts[chanpos]->logicalspan, pri->pvts[chanpos]->prioffset, pri->span, (int)e->hangup.aoc_units, (e->hangup.aoc_units == 1) ? "" : "s");
} else {
pri_hangup(pri->pri, pri->pvts[chanpos]->call, e->hangup.cause);
pri->pvts[chanpos]->call = NULL;
}
if (e->hangup.cause == PRI_CAUSE_REQUESTED_CHAN_UNAVAIL) {
ast_verb(3, "Forcing restart of channel %d/%d span %d since channel reported in use\n",
PRI_SPAN(e->hangup.channel), PRI_CHANNEL(e->hangup.channel), pri->span);
PRI_SPAN(e->hangup.channel), PRI_CHANNEL(e->hangup.channel), pri->span);
pri_reset(pri->pri, PVT_TO_CHANNEL(pri->pvts[chanpos]));
pri->pvts[chanpos]->resetting = 1;
}
@ -1581,8 +1588,8 @@ static void *pri_dchannel(void *vpri)
if (pri->pvts[x] && pri->pvts[x]->resetting) {
chanpos = x;
sig_pri_lock_private(pri->pvts[chanpos]);
ast_log(LOG_DEBUG, "Assuming restart ack is really for channel %d/%d span %d\n", pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
ast_debug(1, "Assuming restart ack is really for channel %d/%d span %d\n", pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
if (pri->pvts[chanpos]->owner) {
ast_log(LOG_WARNING, "Got restart ack on channel %d/%d with owner on span %d\n", pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
@ -1590,7 +1597,7 @@ static void *pri_dchannel(void *vpri)
}
pri->pvts[chanpos]->resetting = 0;
ast_verb(3, "B-channel %d/%d successfully restarted on span %d\n", pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
pri->pvts[chanpos]->prioffset, pri->span);
sig_pri_unlock_private(pri->pvts[chanpos]);
if (pri->resetting)
pri_check_restart(pri);
@ -1611,7 +1618,7 @@ static void *pri_dchannel(void *vpri)
}
pri->pvts[chanpos]->resetting = 0;
ast_verb(3, "B-channel %d/%d successfully restarted on span %d\n", pri->pvts[chanpos]->logicalspan,
pri->pvts[chanpos]->prioffset, pri->span);
pri->pvts[chanpos]->prioffset, pri->span);
sig_pri_unlock_private(pri->pvts[chanpos]);
if (pri->resetting)
pri_check_restart(pri);
@ -1630,7 +1637,7 @@ static void *pri_dchannel(void *vpri)
pri->pvts[chanpos]->setup_ack = 1;
/* Send any queued digits */
for (x = 0;x < strlen(pri->pvts[chanpos]->dialdest); x++) {
ast_log(LOG_DEBUG, "Sending pending digit '%c'\n", pri->pvts[chanpos]->dialdest[x]);
ast_debug(1, "Sending pending digit '%c'\n", pri->pvts[chanpos]->dialdest[x]);
pri_information(pri->pri, pri->pvts[chanpos]->call,
pri->pvts[chanpos]->dialdest[x]);
}
@ -1646,6 +1653,7 @@ static void *pri_dchannel(void *vpri)
PRI_SPAN(e->notify.channel), PRI_CHANNEL(e->notify.channel), pri->span);
} else {
struct ast_frame f = { AST_FRAME_CONTROL, };
sig_pri_lock_private(pri->pvts[chanpos]);
switch (e->notify.info) {
case PRI_NOTIFY_REMOTE_HOLD:
@ -1661,7 +1669,7 @@ static void *pri_dchannel(void *vpri)
}
break;
default:
ast_log(LOG_DEBUG, "Event: %d\n", e->e);
ast_debug(1, "Event: %d\n", e->e);
}
}
ast_mutex_unlock(&pri->lock);
@ -1795,7 +1803,6 @@ int sig_pri_call(struct sig_pri_chan *p, struct ast_channel *ast, char *rdest, i
l = NULL;
n = NULL;
if (!p->hidecallerid) {
l = ast->connected.id.number;
if (!p->hidecalleridname) {
@ -1803,7 +1810,6 @@ int sig_pri_call(struct sig_pri_chan *p, struct ast_channel *ast, char *rdest, i
}
}
if (strlen(c) < p->stripmsd) {
ast_log(LOG_WARNING, "Number '%s' is shorter than stripmsd (%d)\n", c, p->stripmsd);
return -1;
@ -1836,29 +1842,29 @@ int sig_pri_call(struct sig_pri_chan *p, struct ast_channel *ast, char *rdest, i
pri_sr_set_channel(sr, PVT_TO_CHANNEL(p), exclusive, 1);
pri_sr_set_bearer(sr, p->digital ? PRI_TRANS_CAP_DIGITAL : ast->transfercapability,
(p->digital ? -1 : layer1));
(p->digital ? -1 : layer1));
if (p->pri->facilityenable)
pri_facility_enable(p->pri->pri);
ast_verb(3, "Requested transfer capability: 0x%.2x - %s\n", ast->transfercapability, ast_transfercapability2str(ast->transfercapability));
dp_strip = 0;
pridialplan = p->pri->dialplan - 1;
if (pridialplan == -2 || pridialplan == -3) { /* compute dynamically */
if (strncmp(c + p->stripmsd, p->pri->internationalprefix, strlen(p->pri->internationalprefix)) == 0) {
pridialplan = p->pri->dialplan - 1;
if (pridialplan == -2 || pridialplan == -3) { /* compute dynamically */
if (strncmp(c + p->stripmsd, p->pri->internationalprefix, strlen(p->pri->internationalprefix)) == 0) {
if (pridialplan == -2) {
dp_strip = strlen(p->pri->internationalprefix);
dp_strip = strlen(p->pri->internationalprefix);
}
pridialplan = PRI_INTERNATIONAL_ISDN;
} else if (strncmp(c + p->stripmsd, p->pri->nationalprefix, strlen(p->pri->nationalprefix)) == 0) {
pridialplan = PRI_INTERNATIONAL_ISDN;
} else if (strncmp(c + p->stripmsd, p->pri->nationalprefix, strlen(p->pri->nationalprefix)) == 0) {
if (pridialplan == -2) {
dp_strip = strlen(p->pri->nationalprefix);
dp_strip = strlen(p->pri->nationalprefix);
}
pridialplan = PRI_NATIONAL_ISDN;
} else {
pridialplan = PRI_NATIONAL_ISDN;
} else {
pridialplan = PRI_LOCAL_ISDN;
}
}
}
}
while (c[p->stripmsd] > '9' && c[p->stripmsd] != '*' && c[p->stripmsd] != '#') {
switch (c[p->stripmsd]) {
case 'U':
@ -1917,7 +1923,7 @@ int sig_pri_call(struct sig_pri_chan *p, struct ast_channel *ast, char *rdest, i
}
c++;
}
pri_sr_set_called(sr, c + p->stripmsd + dp_strip, pridialplan, s ? 1 : 0);
pri_sr_set_called(sr, c + p->stripmsd + dp_strip, pridialplan, s ? 1 : 0);
ldp_strip = 0;
prilocaldialplan = p->pri->localdialplan - 1;
@ -2032,7 +2038,7 @@ int sig_pri_call(struct sig_pri_chan *p, struct ast_channel *ast, char *rdest, i
int sig_pri_indicate(struct sig_pri_chan *p, struct ast_channel *chan, int condition, const void *data, size_t datalen)
{
int res = 0;
int res = -1;
switch (condition) {
case AST_CONTROL_BUSY:
@ -2093,12 +2099,16 @@ int sig_pri_indicate(struct sig_pri_chan *p, struct ast_channel *chan, int condi
res = 0;
break;
case AST_CONTROL_PROGRESS:
ast_log(LOG_DEBUG,"Received AST_CONTROL_PROGRESS on %s\n",chan->name);
ast_debug(1,"Received AST_CONTROL_PROGRESS on %s\n",chan->name);
p->digital = 0; /* Digital-only calls isn't allowing any inband progress messages */
if (!p->progress && p->pri && !p->outgoing) {
if (p->pri->pri) {
if (!pri_grab(p, p->pri)) {
#ifdef HAVE_PRI_PROG_W_CAUSE
pri_progress_with_cause(p->pri->pri,p->call, PVT_TO_CHANNEL(p), 1, -1); /* no cause at all */
#else
pri_progress(p->pri->pri,p->call, PVT_TO_CHANNEL(p), 1);
#endif
pri_rel(p->pri);
} else {
ast_log(LOG_WARNING, "Unable to grab PRI on span %d\n", p->pri->span);
@ -2256,10 +2266,11 @@ int sig_pri_start_pri(struct sig_pri_pri *pri)
default:
pri->dchans[i] = pri_new(pri->fds[i], pri->nodetype, pri->switchtype);
#ifdef HAVE_PRI_SERVICE_MESSAGES
if (pri->enable_service_message_support) {
pri_set_service_message_support(pri->dchans[i], 1);
}
if (pri->enable_service_message_support) {
pri_set_service_message_support(pri->dchans[i], 1);
}
#endif
break;
}
/* Force overlap dial if we're doing GR-303! */

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