libao: Avoid segfault on com_cycle.
[paraslash.git] / audiod.c
index 64ea8a51efeeb13cb65f86d1ea417120679ff2f4..6a4c9dbead6c61bbaaedfb484369749404dbe7b5 100644 (file)
--- a/audiod.c
+++ b/audiod.c
@@ -7,9 +7,7 @@
 /** \file audiod.c the paraslash's audio daemon */
 #include <regex.h>
 #include <sys/types.h>
-#include <dirent.h>
 #include <signal.h>
-#include <openssl/rc4.h>
 #include <stdbool.h>
 
 #include "para.h"
@@ -33,6 +31,7 @@
 #include "write.h"
 #include "write_common.h"
 #include "signal.h"
+#include "version.h"
 
 /** define the array of error lists needed by para_audiod */
 INIT_AUDIOD_ERRLISTS;
@@ -167,7 +166,7 @@ struct command_task {
  * \return The audio format number on success, -E_UNSUPPORTED_AUDIO_FORMAT if
  * \a name is not a supported audio format.
  */
-int get_audio_format_num(const char *name)
+static int get_audio_format_num(const char *name)
 {
        int i;
 
@@ -430,22 +429,15 @@ static void kill_btrn(struct btr_node *btrn, struct task *t, int error)
 
 static void kill_all_decoders(int error)
 {
-       int i, j;
+       int i;
 
        FOR_EACH_SLOT(i) {
-               struct slot_info *s = &slot[i];
-               struct audio_format_info *a;
+               struct slot_info *s = slot + i;
                if (s->format < 0)
                        continue;
-               a = afi + s->format;
-               if (s->wns)
-                       for (j = 0; j < a->num_writers; j++)
-                               kill_btrn(s->wns[j].btrn, &s->wns[j].task, error);
-               if (s->fns)
-                       for (j = 0; j < a->num_writers; j++)
-                               kill_btrn(s->fns[j].btrn, &s->wns[j].task, error);
-               if (s->receiver_node)
-                       kill_btrn(s->receiver_node->btrn, &s->receiver_node->task,
+               if (!s->receiver_node)
+                       continue;
+               kill_btrn(s->receiver_node->btrn, &s->receiver_node->task,
                                error);
        }
 }
@@ -469,20 +461,6 @@ static int get_empty_slot(void)
        return -E_NO_MORE_SLOTS;
 }
 
-/**
- * get the number of filters
- *
- * \param audio_format_num the number identifying the audio format
- *
- * \return the number of filters for the given audio format
- *
- * \sa struct filter;
- */
-int num_filters(int audio_format_num)
-{
-       return afi[audio_format_num].num_filters;
-}
-
 static void open_filters(struct slot_info *s)
 {
        struct audio_format_info *a = afi + s->format;
@@ -823,6 +801,14 @@ static int parse_receiver_args(void)
                ret = get_audio_format_num(arg);
                if (ret < 0)
                        goto out;
+               /*
+                * If multiple receivers are given for this audio format, the
+                * last one wins and we have to free the previous receiver
+                * config here. Since we are iterating backwards, the winning
+                * receiver arg is in fact the first one given.
+                */
+               if (afi[ret].receiver_conf)
+                       afi[ret].receiver->free_config(afi[ret].receiver_conf);
                afi[ret].receiver_conf = check_receiver_arg(recv_arg, &receiver_num);
                if (!afi[ret].receiver_conf) {
                        ret = -E_RECV_SYNTAX;
@@ -830,9 +816,9 @@ static int parse_receiver_args(void)
                }
                afi[ret].receiver = &receivers[receiver_num];
        }
-       /* use the first available receiver with no arguments
-        * for those audio formats for which no receiver
-        * was specified
+       /*
+        * Use the first available receiver with no arguments for those audio
+        * formats for which no receiver was specified.
         */
        cmd = para_strdup(receivers[0].name);
        FOR_EACH_AUDIO_FORMAT(i) {
@@ -1089,17 +1075,17 @@ static void try_to_close_slot(int slot_num)
 
        if (s->format < 0)
                return;
-       if (s->receiver_node && s->receiver_node->task.error != -E_TASK_UNREGISTERED)
+       if (s->receiver_node && s->receiver_node->task.error >= 0)
                return;
        for (i = 0; i < a->num_filters; i++)
-               if (s->fns && s->fns[i].task.error != -E_TASK_UNREGISTERED)
+               if (s->fns && s->fns[i].task.error >= 0)
                        return;
        if (a->num_writers > 0) {
                for (i = 0; i < a->num_writers; i++)
-                       if (s->wns && s->wns[i].task.error != -E_TASK_UNREGISTERED)
+                       if (s->wns && s->wns[i].task.error >= 0)
                                return;
        } else {
-               if (s->wns && s->wns[0].task.error != -E_TASK_UNREGISTERED)
+               if (s->wns && s->wns[0].task.error >= 0)
                        return;
        }
        PARA_INFO_LOG("closing slot %d\n", slot_num);
@@ -1180,7 +1166,7 @@ static void status_post_select(__a_unused struct sched *s, struct task *t)
                        kill_btrn(st->ct->btrn, &st->ct->task, -E_AUDIOD_OFF);
                        goto out;
                }
-               if (st->ct->task.error != -E_TASK_UNREGISTERED)
+               if (st->ct->task.error >= 0)
                        goto out;
                close_stat_pipe();
                st->clock_diff_count = conf.clock_diff_count_arg;
@@ -1191,7 +1177,7 @@ static void status_post_select(__a_unused struct sched *s, struct task *t)
                size_t sz;
                int ret;
                if (st->ct->task.error < 0) {
-                       if (st->ct->task.error != -E_TASK_UNREGISTERED)
+                       if (st->ct->task.error >= 0)
                                goto out;
                        close_stat_pipe();
                        goto out;