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streamer.c
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streamer.c
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/*
This file is part of Deadbeef Player source code
http://deadbeef.sourceforge.net
streamer implementation
Copyright (C) 2009-2017 Alexey Yakovenko
This software is provided 'as-is', without any express or implied
warranty. In no event will the authors be held liable for any damages
arising from the use of this software.
Permission is granted to anyone to use this software for any purpose,
including commercial applications, and to alter it and redistribute it
freely, subject to the following restrictions:
1. The origin of this software must not be misrepresented; you must not
claim that you wrote the original software. If you use this software
in a product, an acknowledgment in the product documentation would be
appreciated but is not required.
2. Altered source versions must be plainly marked as such, and must not be
misrepresented as being the original software.
3. This notice may not be removed or altered from any source distribution.
Alexey Yakovenko [email protected]
*/
#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include <assert.h>
#include <unistd.h>
#ifdef __linux__
#include <sys/prctl.h>
#endif
#include <sys/time.h>
#include <errno.h>
#include "threading.h"
#include "playlist.h"
#include "common.h"
#include "streamer.h"
#include "messagepump.h"
#include "conf.h"
#include "plugins.h"
#include "fastftoi.h"
#include "volume.h"
#include "vfs.h"
#include "premix.h"
#include "fft.h"
#include "handler.h"
#include "plugins/libparser/parser.h"
#include "strdupa.h"
#include "playqueue.h"
#include "streamreader.h"
#include "dsp.h"
#ifdef trace
#undef trace
#define trace(...)
#endif
//#define WRITE_DUMP 1
//#define DETECT_PL_LOCK_RC 1
#if WRITE_DUMP
FILE *out;
#endif
#define MAX_PLAYLIST_DOWNLOAD_SIZE 25000
#define STREAMER_HINTS (DDB_DECODER_HINT_NEED_BITRATE|DDB_DECODER_HINT_CAN_LOOP)
static intptr_t streamer_tid;
static int autoconv_8_to_16 = 1;
static int autoconv_16_to_24 = 0;
static int conf_streamer_override_samplerate = 0;
static int conf_streamer_use_dependent_samplerate = 0;
static int conf_streamer_samplerate = 44100;
static int conf_streamer_samplerate_mult_48 = 48000;
static int conf_streamer_samplerate_mult_44 = 44100;
static int trace_bufferfill = 0;
static int stop_after_current = 0;
static int stop_after_album = 0;
static int streaming_terminate;
static uintptr_t mutex;
static uintptr_t wdl_mutex; // wavedata listener
static float last_seekpos = -1;
static float playpos = 0; // play position of current song
static int avg_bitrate = -1; // avg bitrate of current song
static int streamer_is_buffering;
static playlist_t *streamer_playlist;
static playItem_t *playing_track;
static playItem_t *buffering_track;
static float playtime; // total playtime of playing track
static time_t started_timestamp; // result of calling time(NULL)
static playItem_t *streaming_track;
static playItem_t *last_played; // this is the last track that was played, should avoid setting this to NULL
static int _format_change_wait;
static ddb_waveformat_t prev_output_format; // last format that was sent to output via streamer_set_output_format
static ddb_waveformat_t last_block_fmt; // input file format corresponding to the current output
static DB_fileinfo_t *fileinfo;
static DB_FILE *fileinfo_file;
static DB_fileinfo_t *new_fileinfo;
static DB_FILE *new_fileinfo_file;
// This counter is incremented by one for each streamer_read call, which returns -1,
// which means audio should stop, but we need to wait a bit until buffered data has finished playing,
// so we wait AUDIO_STALL_WAIT periods
#define AUDIO_STALL_WAIT 20
static int _audio_stall_count;
// to allow interruption of stall file requests
static DB_FILE *streamer_file;
#if defined(HAVE_XGUI) || defined(ANDROID)
#include "equalizer.h"
#endif
static float freq_data[DDB_FREQ_BANDS * DDB_FREQ_MAX_CHANNELS];
static float audio_data[DDB_FREQ_BANDS * 2 * DDB_FREQ_MAX_CHANNELS];
static int audio_data_fill = 0;
static int audio_data_channels = 0;
// message queue
static struct handler_s *handler;
// visualization stuff
typedef struct wavedata_listener_s {
void *ctx;
void (*callback)(void *ctx, ddb_audio_data_t *data);
struct wavedata_listener_s *next;
} wavedata_listener_t;
static wavedata_listener_t *waveform_listeners;
static wavedata_listener_t *spectrum_listeners;
#if DETECT_PL_LOCK_RC
volatile pthread_t streamer_lock_tid = 0;
#endif
void
streamer_lock (void) {
#if DETECT_PL_LOCK_RC
extern pthread_t pl_lock_tid;
assert (pl_lock_tid != pthread_self()); // not permitted to lock streamer from inside of pl_lock
#endif
mutex_lock (mutex);
#if DETECT_PL_LOCK_RC
streamer_lock_tid = pthread_self();
#endif
}
void
streamer_unlock (void) {
#if DETECT_PL_LOCK_RC
streamer_lock_tid = 0;
#endif
mutex_unlock (mutex);
}
static void
play_index (int idx, int startpaused);
static void
play_current (void);
static void
play_next (int dir);
static void
streamer_set_current_playlist_real (int plt);
static int
stream_track (playItem_t *track, int startpaused);
static void
_handle_playback_stopped (void);
static void
_streamer_mark_album_played_up_to (playItem_t *item);
static void
streamer_abort_files (void) {
DB_FILE *file = fileinfo_file;
DB_FILE *newfile = new_fileinfo_file;
DB_FILE *strfile = streamer_file;
trace ("\033[0;33mstreamer_abort_files\033[37;0m\n");
trace ("%p %p %p\n", file, newfile, strfile);
if (file) {
deadbeef->fabort (file);
}
if (newfile) {
deadbeef->fabort (newfile);
}
if (strfile) {
deadbeef->fabort (strfile);
}
}
static void
send_songstarted (playItem_t *trk) {
ddb_event_track_t *pev = (ddb_event_track_t *)messagepump_event_alloc (DB_EV_SONGSTARTED);
pev->track = DB_PLAYITEM (trk);
pl_item_ref (trk);
pev->playtime = 0;
pev->started_timestamp = time(NULL);
messagepump_push_event ((ddb_event_t*)pev, 0, 0);
}
static void
send_songfinished (playItem_t *trk) {
ddb_event_track_t *pev = (ddb_event_track_t *)messagepump_event_alloc (DB_EV_SONGFINISHED);
pev->track = DB_PLAYITEM (trk);
pl_item_ref (trk);
pev->playtime = playtime;
pev->started_timestamp = started_timestamp;
messagepump_push_event ((ddb_event_t*)pev, 0, 0);
}
static void
send_trackchanged (playItem_t *from, playItem_t *to) {
if (from == to) {
return;
}
ddb_event_trackchange_t *event = (ddb_event_trackchange_t *)messagepump_event_alloc (DB_EV_SONGCHANGED);
event->playtime = playtime;
event->started_timestamp = started_timestamp;
if (from) {
pl_item_ref (from);
}
if (to) {
pl_item_ref (to);
}
event->from = (DB_playItem_t *)from;
event->to = (DB_playItem_t *)to;
messagepump_push_event ((ddb_event_t *)event, 0, 0);
}
static void
set_last_played (playItem_t *track) {
if (last_played) {
pl_item_unref (last_played);
}
last_played = track;
if (last_played) {
pl_item_ref (last_played);
}
}
static void
streamer_start_playback (playItem_t *from, playItem_t *it) {
if (from) {
pl_item_ref (from);
}
if (it) {
pl_item_ref (it);
}
streamer_set_playing_track (it);
if (playing_track) {
playing_track->played = 1;
set_last_played (playing_track);
playItem_t *qnext = playqueue_getnext();
if (qnext == playing_track) {
playqueue_pop ();
}
if (qnext) {
pl_item_unref (qnext);
}
trace ("from=%p (%s), to=%p (%s) [2]\n", from, from ? pl_find_meta (from, ":URI") : "null", it, it ? pl_find_meta (it, ":URI") : "null");
send_trackchanged (from, it);
started_timestamp = time (NULL);
}
if (from) {
pl_item_unref (from);
}
if (it) {
pl_item_unref (it);
}
trace ("streamer_start_playback %s\n", playing_track ? pl_find_meta (playing_track, ":URI") : "null");
}
playItem_t *
streamer_get_streaming_track (void) {
if (streaming_track) {
pl_item_ref (streaming_track);
}
return streaming_track;
}
playItem_t *
streamer_get_playing_track (void) {
playItem_t *it = (buffering_track && !playing_track) ? buffering_track : playing_track;
if (it) {
pl_item_ref (it);
}
return it;
}
playItem_t *
streamer_get_buffering_track (void) {
playItem_t *it = buffering_track;
if (it) {
pl_item_ref (it);
}
return it;
}
int
str_get_idx_of (playItem_t *it) {
pl_lock ();
if (!streamer_playlist) {
playlist_t *plt = plt_get_curr ();
streamer_set_streamer_playlist (plt);
plt_unref (plt);
}
playItem_t *c = streamer_playlist->head[PL_MAIN];
int idx = 0;
while (c && c != it) {
c = c->next[PL_MAIN];
idx++;
}
if (!c) {
pl_unlock ();
return -1;
}
pl_unlock ();
return idx;
}
playItem_t *
str_get_for_idx (int idx) {
pl_lock ();
if (!streamer_playlist) {
playlist_t *plt = plt_get_curr ();
streamer_set_streamer_playlist (plt);
plt_unref (plt);
}
playItem_t *it = streamer_playlist->head[PL_MAIN];
while (idx--) {
if (!it) {
pl_unlock ();
return NULL;
}
it = it->next[PL_MAIN];
}
if (it) {
pl_item_ref (it);
}
pl_unlock ();
return it;
}
static int
stop_after_album_check (playItem_t *cur, playItem_t *next) {
if (!stop_after_album) {
return 0;
}
if (!cur) {
return 0;
}
if (!next) {
stream_track (NULL, 0);
if (conf_get_int ("playlist.stop_after_album_reset", 0)) {
conf_set_int ("playlist.stop_after_album", 0);
stop_after_album = 0;
deadbeef->sendmessage (DB_EV_CONFIGCHANGED, 0, 0, 0);
}
return 1;
}
const char *cur_album = pl_find_meta_raw (cur, "album");
const char *next_album = pl_find_meta_raw (next, "album");
const char *keys[] = {
"band",
"album artist",
"albumartist",
"artist",
NULL
};
const char *cur_artist = NULL;
const char *next_artist = NULL;
for (int i = 0; keys[i]; i++) {
if (!cur_artist) {
cur_artist = pl_find_meta_raw (cur, keys[i]);
}
if (!next_artist) {
next_artist = pl_find_meta_raw (next, keys[i]);
}
if (cur_artist && next_artist) {
break;
}
}
if (cur_artist == next_artist && cur_album == next_album) {
return 0;
}
stream_track (NULL, 0);
if (conf_get_int ("playlist.stop_after_album_reset", 0)) {
conf_set_int ("playlist.stop_after_album", 0);
stop_after_album = 0;
deadbeef->sendmessage (DB_EV_CONFIGCHANGED, 0, 0, 0);
}
return 1;
}
static playItem_t *
get_random_track (void) {
if (!streamer_playlist) {
playlist_t *plt = plt_get_curr ();
streamer_set_streamer_playlist (plt);
plt_unref (plt);
}
playlist_t *plt = streamer_playlist;
int cnt = plt->count[PL_MAIN];
if (!cnt) {
trace ("empty playlist\n");
return NULL;
}
int curr = str_get_idx_of (streaming_track);
int r = rand () / (float)RAND_MAX * cnt;
if (r == curr) {
r++;
if (r >= cnt) {
r = 0;
}
}
return plt_get_item_for_idx (plt, r, PL_MAIN);
}
static playItem_t *
get_next_track (playItem_t *curr) {
pl_lock ();
if (!streamer_playlist) {
playlist_t *plt = plt_get_curr ();
streamer_set_streamer_playlist (plt);
plt_unref (plt);
}
while (playqueue_getcount ()) {
trace ("playqueue_getnext\n");
playItem_t *it = playqueue_getnext ();
if (it) {
pl_unlock ();
return it; // from playqueue
}
}
playlist_t *plt = streamer_playlist;
if (!plt->head[PL_MAIN]) {
pl_unlock ();
return NULL; // empty playlist
}
int pl_order = pl_get_order ();
int pl_loop_mode = conf_get_int ("playback.loop", 0);
if (pl_order == PLAYBACK_ORDER_SHUFFLE_TRACKS || pl_order == PLAYBACK_ORDER_SHUFFLE_ALBUMS) { // shuffle
playItem_t *it = NULL;
if (!curr || pl_order == PLAYBACK_ORDER_SHUFFLE_TRACKS) {
// find minimal notplayed
playItem_t *pmin = NULL; // notplayed minimum
for (playItem_t *i = plt->head[PL_MAIN]; i; i = i->next[PL_MAIN]) {
if (i->played) {
continue;
}
if (!pmin || i->shufflerating < pmin->shufflerating) {
pmin = i;
}
}
it = pmin;
if (!it) {
// all songs played, reshuffle and try again
if (pl_loop_mode == PLAYBACK_MODE_LOOP_ALL) { // loop
plt_reshuffle (streamer_playlist, &it, NULL);
}
}
if (!it) { // nothing found after reshuffle
pl_unlock ();
return NULL;
}
}
else {
// find minimal notplayed above current
int rating = curr->shufflerating;
playItem_t *pmin = NULL; // notplayed minimum
for (playItem_t *i = plt->head[PL_MAIN]; i; i = i->next[PL_MAIN]) {
if (i->played || i->shufflerating < rating) {
continue;
}
if (!pmin || i->shufflerating < pmin->shufflerating) {
pmin = i;
}
}
it = pmin;
if (!it) {
// all songs played, reshuffle and try again
if (pl_loop_mode == PLAYBACK_MODE_LOOP_ALL) { // loop
trace ("all songs played! reshuffle\n");
plt_reshuffle (streamer_playlist, &it, NULL);
}
}
if (!it) {
playItem_t *temp;
plt_reshuffle (streamer_playlist, &temp, NULL);
pl_unlock ();
return NULL;
}
}
// prevent repeating the same track after reshuffle
if (it == curr) {
if (it->next[PL_MAIN]) {
it = it->next[PL_MAIN];
}
else if (plt->head[PL_MAIN] && plt->head[PL_MAIN] != it) {
it = plt->head[PL_MAIN];
}
}
// plt_reshuffle doesn't add ref
pl_item_ref (it);
pl_unlock ();
return it;
}
else if (pl_order == PLAYBACK_ORDER_LINEAR) { // linear
playItem_t *it = NULL;
if (curr) {
it = curr->next[PL_MAIN];
}
if (!it) {
trace ("streamer_move_nextsong: was last track\n");
if (pl_loop_mode == PLAYBACK_MODE_LOOP_ALL) {
it = plt->head[PL_MAIN];
}
else {
pl_unlock ();
return NULL;
}
}
if (!it) {
pl_unlock ();
return NULL;
}
pl_item_ref (it);
pl_unlock ();
return it;
}
else if (pl_order == PLAYBACK_ORDER_RANDOM) { // random
pl_unlock ();
return get_random_track ();
}
pl_unlock ();
return NULL;
}
static playItem_t *
get_prev_track (playItem_t *curr) {
pl_lock ();
// check if prev song is in this playlist
if (-1 == str_get_idx_of (curr)) {
curr = NULL;
}
if (!streamer_playlist) {
playlist_t *plt = plt_get_curr ();
streamer_set_streamer_playlist (plt);
plt_unref (plt);
}
playlist_t *plt = streamer_playlist;
if (!plt->head[PL_MAIN]) {
pl_unlock ();
return NULL;
}
int pl_order = conf_get_int ("playback.order", 0);
int pl_loop_mode = conf_get_int ("playback.loop", 0);
if (pl_order == PLAYBACK_ORDER_SHUFFLE_TRACKS || pl_order == PLAYBACK_ORDER_SHUFFLE_ALBUMS) { // shuffle
if (!curr) {
playItem_t *it = plt->head[PL_MAIN];
pl_item_ref(it);
pl_unlock ();
return it;
}
else {
curr->played = 0;
// find already played song with maximum shuffle rating below prev song
int rating = curr->shufflerating;
playItem_t *pmax = NULL; // played maximum
playItem_t *amax = NULL; // absolute maximum
for (playItem_t *i = plt->head[PL_MAIN]; i; i = i->next[PL_MAIN]) {
if (i != curr && i->played && (!amax || i->shufflerating > amax->shufflerating)) {
amax = i;
}
if (i == curr || i->shufflerating > rating || !i->played) {
continue;
}
if (!pmax || i->shufflerating > pmax->shufflerating) {
pmax = i;
}
}
if (pmax && pl_order == PLAYBACK_ORDER_SHUFFLE_ALBUMS) {
while (pmax && pmax->next[PL_MAIN] && pmax->next[PL_MAIN]->played && pmax->shufflerating == pmax->next[PL_MAIN]->shufflerating) {
pmax = pmax->next[PL_MAIN];
}
}
playItem_t *it = pmax;
if (!it) {
// that means 1st in playlist, take amax
if (pl_loop_mode == PLAYBACK_MODE_LOOP_ALL) {
if (!amax) {
plt_reshuffle (streamer_playlist, NULL, &amax);
}
it = amax;
}
}
if (!it) {
pl_unlock ();
return NULL;
}
pl_item_ref (it);
pl_unlock ();
return it;
}
}
else if (pl_order == PLAYBACK_ORDER_LINEAR) { // linear
playItem_t *it = NULL;
if (curr) {
it = curr->prev[PL_MAIN];
}
if (!it) {
pl_unlock ();
return NULL;
}
pl_item_ref(it);
pl_unlock ();
return it;
}
else if (pl_order == PLAYBACK_ORDER_RANDOM) { // random
pl_unlock();
return get_random_track();
}
pl_unlock ();
return NULL;
}
int
streamer_move_to_nextsong (int r) {
if (r) {
streamer_abort_files ();
}
handler_push (handler, STR_EV_NEXT, 0, r, 0);
return 0;
}
int
streamer_move_to_prevsong (int r) {
if (r) {
streamer_abort_files ();
}
handler_push (handler, STR_EV_PREV, 0, r, 0);
return 0;
}
int
streamer_move_to_randomsong (int r) {
if (r) {
streamer_abort_files ();
}
handler_push (handler, STR_EV_RAND, 0, r, 0);
return 0;
}
// playlist must call that whenever item was removed
void
streamer_song_removed_notify (playItem_t *it) {
if (!mutex) {
return; // streamer is not running
}
}
#define CTMAP_MAX_PLUGINS 5
typedef struct ctmap_s {
char *ct;
char *plugins[CTMAP_MAX_PLUGINS];
struct ctmap_s *next;
} ctmap_t;
static ctmap_t *streamer_ctmap;
static char conf_network_ctmapping[2048];
static uintptr_t ctmap_mutex;
static void
ctmap_init_mutex (void) {
ctmap_mutex = mutex_create ();
}
static void
ctmap_free_mutex (void) {
if (ctmap_mutex) {
mutex_free (ctmap_mutex);
ctmap_mutex = 0;
}
}
static void
ctmap_lock (void) {
mutex_lock (ctmap_mutex);
}
static void
ctmap_unlock (void) {
mutex_unlock (ctmap_mutex);
}
static void
ctmap_free (void) {
while (streamer_ctmap) {
ctmap_t *ct = streamer_ctmap;
free (ct->ct);
for (int i = 0; ct->plugins[i]; i++) {
free (ct->plugins[i]);
}
streamer_ctmap = ct->next;
free (ct);
}
}
static void
ctmap_init (void) {
ctmap_free ();
char *mapstr = conf_network_ctmapping;
const char *p = mapstr;
char t[MAX_TOKEN];
char plugins[MAX_TOKEN*5];
ctmap_t *tail = NULL;
for (;;) {
p = gettoken (p, t);
if (!p) {
break;
}
ctmap_t *ctmap = malloc (sizeof (ctmap_t));
memset (ctmap, 0, sizeof (ctmap_t));
ctmap->ct = strdup (t);
int n = 0;
p = gettoken (p, t);
if (!p || strcmp (t, "{")) {
free (ctmap->ct);
free (ctmap);
break;
}
plugins[0] = 0;
for (;;) {
p = gettoken (p, t);
if (!p || !strcmp (t, "}") || n >= CTMAP_MAX_PLUGINS-1) {
break;
}
ctmap->plugins[n++] = strdup (t);
}
ctmap->plugins[n] = NULL;
if (tail) {
tail->next = ctmap;
}
tail = ctmap;
if (!streamer_ctmap) {
streamer_ctmap = ctmap;
}
}
}
static int
is_remote_stream (playItem_t *it) {
int remote = 0;
pl_lock ();
const char *uri = pl_find_meta (it, ":URI");
if (uri && !plug_is_local_file (uri)) {
remote = 1;
}
pl_unlock ();
return remote;
}
static DB_fileinfo_t *dec_open (DB_decoder_t *dec, uint32_t hints, playItem_t *it) {
if (dec->plugin.api_vminor >= 7 && dec->open2) {
DB_fileinfo_t *fi = dec->open2 (hints, DB_PLAYITEM (it));
return fi;
}
return dec->open (hints);
}
static playItem_t *first_failed_track;
// handle "first failed track" logic,
// and initialize dummy fileinfo for handling track switching for the tracks which can't be played
static void
streamer_play_failed (playItem_t *failed_track) {
streamer_lock();
if (!first_failed_track) {
first_failed_track = failed_track;
if (first_failed_track) {
pl_item_ref (first_failed_track);
}
}
else if (!failed_track) { // reset fail check
if (first_failed_track) {
pl_item_unref (first_failed_track);
first_failed_track = NULL;
}
}
if (failed_track) {
set_last_played (failed_track);
// the track has failed to be played,
// but we want to send it down to streamreader for proper track switching etc.
fileinfo = calloc(sizeof (DB_fileinfo_t), 1);
fileinfo_file = NULL;
new_fileinfo = NULL;
new_fileinfo_file = NULL;
if (streaming_track) {
pl_item_unref (streaming_track);
}
streaming_track = failed_track;
if (streaming_track) {
pl_item_ref (streaming_track);
}
}
streamer_unlock();
}
static void
fileinfo_free (DB_fileinfo_t *fileinfo) {
if (fileinfo->plugin) {
fileinfo->plugin->free (fileinfo);
}
else {
free (fileinfo);
}
}
static int
stream_track (playItem_t *it, int startpaused) {
if (fileinfo) {
fileinfo_free (fileinfo);
fileinfo = NULL;
fileinfo_file = NULL;
}
trace ("stream_track %s\n", playing_track ? pl_find_meta (playing_track, ":URI") : "null");
int err = 0;
playItem_t *from = NULL;
playItem_t *to = NULL;
if (first_failed_track && first_failed_track == it) {
streamer_play_failed (NULL); // looped to the first failed track
goto error;
}
// need to add refs here, because streamer_start_playback can destroy items
from = playing_track;
to = it;
if (from) {
pl_item_ref (from);
}
if (to) {
pl_item_ref (to);
}
streamer_lock ();
if (streaming_track) {
pl_item_unref (streaming_track);
streaming_track = NULL;
}
streamer_unlock ();
int paused_stream = 0;
if (it && startpaused) {
paused_stream = is_remote_stream (it);
}
if (!it || paused_stream) {
goto success;
}
char decoder_id[100] = "";
char filetype[100] = "";
pl_lock ();
const char *dec = pl_find_meta (it, ":DECODER");
if (dec) {
strncpy (decoder_id, dec, sizeof (decoder_id));
}
if (!decoder_id[0]) {
// some decoders set filetype override,
// but the override is invalid when decoder is not set.
// reset to default here, so that tracks become playable after failures
pl_delete_meta(it, "!FILETYPE");
}
const char *ft = pl_find_meta (it, ":FILETYPE");
if (ft) {
strncpy (filetype, ft, sizeof (filetype));
}
pl_unlock ();
char *cct = "undefined";
char *plugs[CTMAP_MAX_PLUGINS] = {NULL};
if (!decoder_id[0] && (!strcmp (filetype, "content") || !filetype[0])) {
// try to get content-type
trace ("\033[0;34mopening file %s\033[37;0m\n", pl_find_meta (it, ":URI"));
pl_lock ();
char *uri = strdupa (pl_find_meta (it, ":URI"));
pl_unlock ();
DB_FILE *fp = streamer_file = vfs_fopen (uri);
trace ("\033[0;34mgetting content-type\033[37;0m\n");
if (!fp) {
err = -1;
goto error;
}
const char *ct = vfs_get_content_type (fp);
if (!ct) {
vfs_fclose (fp);
fp = NULL;
streamer_file = NULL;
if (!startpaused) {
streamer_play_failed (it);
}
else {
err = -1;
}
pl_lock ();
trace_err ("Failed to play track: %s\n", pl_find_meta(it, ":URI"));
pl_unlock ();
goto error;
}
trace ("got content-type: %s\n", ct);
cct = strdupa (ct);
char *sc = strchr (cct, ';');
if (sc) {
*sc = 0;
}
ctmap_lock ();
ctmap_t *ctmap = streamer_ctmap;
while (ctmap) {
if (!strcmp (cct, ctmap->ct)) {
break;
}
ctmap = ctmap->next;
}
if (ctmap) {
int i;
for (i = 0; ctmap->plugins[i]; i++) {
plugs[i] = strdupa (ctmap->plugins[i]);
}
plugs[i] = NULL;
}
ctmap_unlock ();
if (!plugs[0] && (!strcmp (cct, "audio/x-mpegurl") || !strncmp (cct, "text/html", 9) || !strncmp (cct, "audio/x-scpls", 13) || !strncmp (cct, "application/octet-stream", 9))) {
// download playlist into temp file
trace ("downloading playlist into temp file...\n");
char *buf = NULL;