280d6dc19f73c1d63adc4d3956de5961a553f630
[Rockbox.git] / apps / playlist.c
blob280d6dc19f73c1d63adc4d3956de5961a553f630
1 /***************************************************************************
2 * __________ __ ___.
3 * Open \______ \ ____ ____ | | _\_ |__ _______ ___
4 * Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
5 * Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
6 * Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
7 * \/ \/ \/ \/ \/
8 * $Id$
10 * Copyright (C) 2002 by wavey@wavey.org
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version 2
15 * of the License, or (at your option) any later version.
17 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
18 * KIND, either express or implied.
20 ****************************************************************************/
23 Dynamic playlist design (based on design originally proposed by ricII)
25 There are two files associated with a dynamic playlist:
26 1. Playlist file : This file contains the initial songs in the playlist.
27 The file is created by the user and stored on the hard
28 drive. NOTE: If we are playing the contents of a
29 directory, there will be no playlist file.
30 2. Control file : This file is automatically created when a playlist is
31 started and contains all the commands done to it.
33 The first non-comment line in a control file must begin with
34 "P:VERSION:DIR:FILE" where VERSION is the playlist control file version,
35 DIR is the directory where the playlist is located and FILE is the
36 playlist filename. For dirplay, FILE will be empty. An empty playlist
37 will have both entries as null.
39 Control file commands:
40 a. Add track (A:<position>:<last position>:<path to track>)
41 - Insert a track at the specified position in the current
42 playlist. Last position is used to specify where last insertion
43 occurred.
44 b. Queue track (Q:<position>:<last position>:<path to track>)
45 - Queue a track at the specified position in the current
46 playlist. Queued tracks differ from added tracks in that they
47 are deleted from the playlist as soon as they are played and
48 they are not saved to disk as part of the playlist.
49 c. Delete track (D:<position>)
50 - Delete track from specified position in the current playlist.
51 d. Shuffle playlist (S:<seed>:<index>)
52 - Shuffle entire playlist with specified seed. The index
53 identifies the first index in the newly shuffled playlist
54 (needed for repeat mode).
55 e. Unshuffle playlist (U:<index>)
56 - Unshuffle entire playlist. The index identifies the first index
57 in the newly unshuffled playlist.
58 f. Reset last insert position (R)
59 - Needed so that insertions work properly after resume
61 Resume:
62 The only resume info that needs to be saved is the current index in the
63 playlist and the position in the track. When resuming, all the commands
64 in the control file will be reapplied so that the playlist indices are
65 exactly the same as before shutdown. To avoid unnecessary disk
66 accesses, the shuffle mode settings are also saved in settings and only
67 flushed to disk when required.
70 #include <stdio.h>
71 #include <stdlib.h>
72 #include <string.h>
73 #include <ctype.h>
74 #include "playlist.h"
75 #include "ata_idle_notify.h"
76 #include "file.h"
77 #include "action.h"
78 #include "dir.h"
79 #include "sprintf.h"
80 #include "debug.h"
81 #include "audio.h"
82 #include "lcd.h"
83 #include "kernel.h"
84 #include "settings.h"
85 #include "status.h"
86 #include "applimits.h"
87 #include "screens.h"
88 #include "buffer.h"
89 #include "misc.h"
90 #include "button.h"
91 #include "filetree.h"
92 #include "abrepeat.h"
93 #include "thread.h"
94 #include "usb.h"
95 #include "filetypes.h"
96 #ifdef HAVE_LCD_BITMAP
97 #include "icons.h"
98 #endif
100 #include "lang.h"
101 #include "talk.h"
102 #include "splash.h"
103 #include "rbunicode.h"
104 #include "root_menu.h"
106 #define PLAYLIST_CONTROL_FILE ROCKBOX_DIR "/.playlist_control"
107 #define PLAYLIST_CONTROL_FILE_VERSION 2
110 Each playlist index has a flag associated with it which identifies what
111 type of track it is. These flags are stored in the 4 high order bits of
112 the index.
114 NOTE: This limits the playlist file size to a max of 256M.
116 Bits 31-30:
117 00 = Playlist track
118 01 = Track was prepended into playlist
119 10 = Track was inserted into playlist
120 11 = Track was appended into playlist
121 Bit 29:
122 0 = Added track
123 1 = Queued track
124 Bit 28:
125 0 = Track entry is valid
126 1 = Track does not exist on disk and should be skipped
128 #define PLAYLIST_SEEK_MASK 0x0FFFFFFF
129 #define PLAYLIST_INSERT_TYPE_MASK 0xC0000000
130 #define PLAYLIST_QUEUE_MASK 0x20000000
132 #define PLAYLIST_INSERT_TYPE_PREPEND 0x40000000
133 #define PLAYLIST_INSERT_TYPE_INSERT 0x80000000
134 #define PLAYLIST_INSERT_TYPE_APPEND 0xC0000000
136 #define PLAYLIST_QUEUED 0x20000000
137 #define PLAYLIST_SKIPPED 0x10000000
139 #define PLAYLIST_DISPLAY_COUNT 10
141 struct directory_search_context {
142 struct playlist_info* playlist;
143 int position;
144 bool queue;
145 int count;
148 static struct playlist_info current_playlist;
149 static char now_playing[MAX_PATH+1];
151 static void empty_playlist(struct playlist_info* playlist, bool resume);
152 static void new_playlist(struct playlist_info* playlist, const char *dir,
153 const char *file);
154 static void create_control(struct playlist_info* playlist);
155 static int check_control(struct playlist_info* playlist);
156 static int recreate_control(struct playlist_info* playlist);
157 static void update_playlist_filename(struct playlist_info* playlist,
158 const char *dir, const char *file);
159 static int add_indices_to_playlist(struct playlist_info* playlist,
160 char* buffer, size_t buflen);
161 static int add_track_to_playlist(struct playlist_info* playlist,
162 const char *filename, int position,
163 bool queue, int seek_pos);
164 static int directory_search_callback(char* filename, void* context);
165 static int remove_track_from_playlist(struct playlist_info* playlist,
166 int position, bool write);
167 static int randomise_playlist(struct playlist_info* playlist,
168 unsigned int seed, bool start_current,
169 bool write);
170 static int sort_playlist(struct playlist_info* playlist, bool start_current,
171 bool write);
172 static int get_next_index(const struct playlist_info* playlist, int steps,
173 int repeat_mode);
174 static void find_and_set_playlist_index(struct playlist_info* playlist,
175 unsigned int seek);
176 static int compare(const void* p1, const void* p2);
177 static int get_filename(struct playlist_info* playlist, int index, int seek,
178 bool control_file, char *buf, int buf_length);
179 static int get_next_directory(char *dir);
180 static int get_next_dir(char *dir, bool is_forward, bool recursion);
181 static int get_previous_directory(char *dir);
182 static int check_subdir_for_music(char *dir, char *subdir);
183 static int format_track_path(char *dest, char *src, int buf_length, int max,
184 const char *dir);
185 static void display_playlist_count(int count, const unsigned char *fmt,
186 bool final);
187 static void display_buffer_full(void);
188 static int flush_cached_control(struct playlist_info* playlist);
189 static int update_control(struct playlist_info* playlist,
190 enum playlist_command command, int i1, int i2,
191 const char* s1, const char* s2, void* data);
192 static void sync_control(struct playlist_info* playlist, bool force);
193 static int rotate_index(const struct playlist_info* playlist, int index);
195 #ifdef HAVE_DIRCACHE
196 #define PLAYLIST_LOAD_POINTERS 1
198 static struct event_queue playlist_queue;
199 static long playlist_stack[(DEFAULT_STACK_SIZE + 0x800)/sizeof(long)];
200 static const char playlist_thread_name[] = "playlist cachectrl";
201 #endif
203 #define BOM "\xef\xbb\xbf"
204 #define BOM_SIZE 3
206 /* Check if the filename suggests M3U or M3U8 format. */
207 static bool is_m3u8(const char* filename)
209 int len = strlen(filename);
211 /* Default to M3U8 unless explicitly told otherwise. */
212 return !(len > 4 && strcasecmp(&filename[len - 4], ".m3u") == 0);
215 /* Check if a strings starts with an UTF-8 byte-order mark. */
216 static bool is_utf8_bom(const char* str, int len)
218 return len >= BOM_SIZE && memcmp(str, BOM, BOM_SIZE) == 0;
221 /* Convert a filename in an M3U playlist to UTF-8.
223 * buf - the filename to convert; can contain more than one line from the
224 * playlist.
225 * buf_len - amount of buf that is used.
226 * buf_max - total size of buf.
227 * temp - temporary conversion buffer, at least buf_max bytes.
229 * Returns the length of the converted filename.
231 static int convert_m3u(char* buf, int buf_len, int buf_max, char* temp)
233 int i = 0;
234 char* dest;
236 /* Locate EOL. */
237 while ((buf[i] != '\n') && (buf[i] != '\r') && (i < buf_len))
239 i++;
242 /* Work back killing white space. */
243 while ((i > 0) && isspace(buf[i - 1]))
245 i--;
248 buf_len = i;
249 dest = temp;
251 /* Convert char by char, so as to not overflow temp (iso_decode should
252 * preferably handle this). No more than 4 bytes should be generated for
253 * each input char.
255 for (i = 0; i < buf_len && dest < (temp + buf_max - 4); i++)
257 dest = iso_decode(&buf[i], dest, -1, 1);
260 *dest = 0;
261 strcpy(buf, temp);
262 return dest - temp;
266 * remove any files and indices associated with the playlist
268 static void empty_playlist(struct playlist_info* playlist, bool resume)
270 playlist->filename[0] = '\0';
271 playlist->utf8 = true;
273 if(playlist->fd >= 0)
274 /* If there is an already open playlist, close it. */
275 close(playlist->fd);
276 playlist->fd = -1;
278 if(playlist->control_fd >= 0)
279 close(playlist->control_fd);
280 playlist->control_fd = -1;
281 playlist->control_created = false;
283 playlist->in_ram = false;
285 if (playlist->buffer)
286 playlist->buffer[0] = 0;
288 playlist->buffer_end_pos = 0;
290 playlist->index = 0;
291 playlist->first_index = 0;
292 playlist->amount = 0;
293 playlist->last_insert_pos = -1;
294 playlist->seed = 0;
295 playlist->shuffle_modified = false;
296 playlist->deleted = false;
297 playlist->num_inserted_tracks = 0;
298 playlist->started = false;
300 playlist->num_cached = 0;
301 playlist->pending_control_sync = false;
303 if (!resume && playlist->current)
305 /* start with fresh playlist control file when starting new
306 playlist */
307 create_control(playlist);
309 /* Reset resume settings */
310 global_status.resume_first_index = 0;
311 global_status.resume_seed = -1;
316 * Initialize a new playlist for viewing/editing/playing. dir is the
317 * directory where the playlist is located and file is the filename.
319 static void new_playlist(struct playlist_info* playlist, const char *dir,
320 const char *file)
322 const char *fileused = file;
323 const char *dirused = dir;
324 empty_playlist(playlist, false);
326 if (!fileused)
328 fileused = "";
330 if (dirused && playlist->current) /* !current cannot be in_ram */
331 playlist->in_ram = true;
332 else
333 dirused = ""; /* empty playlist */
336 update_playlist_filename(playlist, dirused, fileused);
338 if (playlist->control_fd >= 0)
340 update_control(playlist, PLAYLIST_COMMAND_PLAYLIST,
341 PLAYLIST_CONTROL_FILE_VERSION, -1, dirused, fileused, NULL);
342 sync_control(playlist, false);
347 * create control file for playlist
349 static void create_control(struct playlist_info* playlist)
351 playlist->control_fd = open(playlist->control_filename,
352 O_CREAT|O_RDWR|O_TRUNC);
353 if (playlist->control_fd < 0)
355 if (check_rockboxdir())
357 cond_talk_ids_fq(LANG_PLAYLIST_CONTROL_ACCESS_ERROR);
358 gui_syncsplash(HZ*2, (unsigned char *)"%s (%d)",
359 str(LANG_PLAYLIST_CONTROL_ACCESS_ERROR),
360 playlist->control_fd);
362 playlist->control_created = false;
364 else
366 playlist->control_created = true;
371 * validate the control file. This may include creating/initializing it if
372 * necessary;
374 static int check_control(struct playlist_info* playlist)
376 if (!playlist->control_created)
378 create_control(playlist);
380 if (playlist->control_fd >= 0)
382 char* dir = playlist->filename;
383 char* file = playlist->filename+playlist->dirlen;
384 char c = playlist->filename[playlist->dirlen-1];
386 playlist->filename[playlist->dirlen-1] = '\0';
388 update_control(playlist, PLAYLIST_COMMAND_PLAYLIST,
389 PLAYLIST_CONTROL_FILE_VERSION, -1, dir, file, NULL);
390 sync_control(playlist, false);
391 playlist->filename[playlist->dirlen-1] = c;
395 if (playlist->control_fd < 0)
396 return -1;
398 return 0;
402 * recreate the control file based on current playlist entries
404 static int recreate_control(struct playlist_info* playlist)
406 char temp_file[MAX_PATH+1];
407 int temp_fd = -1;
408 int i;
409 int result = 0;
411 if(playlist->control_fd >= 0)
413 char* dir = playlist->filename;
414 char* file = playlist->filename+playlist->dirlen;
415 char c = playlist->filename[playlist->dirlen-1];
417 close(playlist->control_fd);
419 snprintf(temp_file, sizeof(temp_file), "%s_temp",
420 playlist->control_filename);
422 if (rename(playlist->control_filename, temp_file) < 0)
423 return -1;
425 temp_fd = open(temp_file, O_RDONLY);
426 if (temp_fd < 0)
427 return -1;
429 playlist->control_fd = open(playlist->control_filename,
430 O_CREAT|O_RDWR|O_TRUNC);
431 if (playlist->control_fd < 0)
432 return -1;
434 playlist->filename[playlist->dirlen-1] = '\0';
436 /* cannot call update_control() because of mutex */
437 result = fdprintf(playlist->control_fd, "P:%d:%s:%s\n",
438 PLAYLIST_CONTROL_FILE_VERSION, dir, file);
440 playlist->filename[playlist->dirlen-1] = c;
442 if (result < 0)
444 close(temp_fd);
445 return result;
449 playlist->seed = 0;
450 playlist->shuffle_modified = false;
451 playlist->deleted = false;
452 playlist->num_inserted_tracks = 0;
454 if (playlist->current)
456 global_status.resume_seed = -1;
457 status_save();
460 for (i=0; i<playlist->amount; i++)
462 if (playlist->indices[i] & PLAYLIST_INSERT_TYPE_MASK)
464 bool queue = playlist->indices[i] & PLAYLIST_QUEUE_MASK;
465 char inserted_file[MAX_PATH+1];
467 lseek(temp_fd, playlist->indices[i] & PLAYLIST_SEEK_MASK,
468 SEEK_SET);
469 read_line(temp_fd, inserted_file, sizeof(inserted_file));
471 result = fdprintf(playlist->control_fd, "%c:%d:%d:",
472 queue?'Q':'A', i, playlist->last_insert_pos);
473 if (result > 0)
475 /* save the position in file where name is written */
476 int seek_pos = lseek(playlist->control_fd, 0, SEEK_CUR);
478 result = fdprintf(playlist->control_fd, "%s\n",
479 inserted_file);
481 playlist->indices[i] =
482 (playlist->indices[i] & ~PLAYLIST_SEEK_MASK) | seek_pos;
485 if (result < 0)
486 break;
488 playlist->num_inserted_tracks++;
492 close(temp_fd);
493 remove(temp_file);
494 fsync(playlist->control_fd);
496 if (result < 0)
497 return result;
499 return 0;
503 * store directory and name of playlist file
505 static void update_playlist_filename(struct playlist_info* playlist,
506 const char *dir, const char *file)
508 char *sep="";
509 int dirlen = strlen(dir);
511 playlist->utf8 = is_m3u8(file);
513 /* If the dir does not end in trailing slash, we use a separator.
514 Otherwise we don't. */
515 if('/' != dir[dirlen-1])
517 sep="/";
518 dirlen++;
521 playlist->dirlen = dirlen;
523 snprintf(playlist->filename, sizeof(playlist->filename),
524 "%s%s%s", dir, sep, file);
528 * calculate track offsets within a playlist file
530 static int add_indices_to_playlist(struct playlist_info* playlist,
531 char* buffer, size_t buflen)
533 unsigned int nread;
534 unsigned int i = 0;
535 unsigned int count = 0;
536 bool store_index;
537 unsigned char *p;
538 int result = 0;
540 if(-1 == playlist->fd)
541 playlist->fd = open(playlist->filename, O_RDONLY);
542 if(playlist->fd < 0)
543 return -1; /* failure */
545 gui_syncsplash(0, ID2P(LANG_WAIT));
547 if (!buffer)
549 /* use mp3 buffer for maximum load speed */
550 audio_stop();
551 #if CONFIG_CODEC != SWCODEC
552 talk_buffer_steal(); /* we use the mp3 buffer, need to tell */
553 buflen = (audiobufend - audiobuf);
554 buffer = (char *)audiobuf;
555 #else
556 buffer = (char *)audio_get_buffer(false, &buflen);
557 #endif
560 store_index = true;
562 while(1)
564 nread = read(playlist->fd, buffer, buflen);
565 /* Terminate on EOF */
566 if(nread <= 0)
567 break;
569 p = (unsigned char *)buffer;
571 /* utf8 BOM at beginning of file? */
572 if(i == 0 && is_utf8_bom(p, nread)) {
573 nread -= BOM_SIZE;
574 p += BOM_SIZE;
575 i += BOM_SIZE;
576 playlist->utf8 = true; /* Override any earlier indication. */
579 for(count=0; count < nread; count++,p++) {
581 /* Are we on a new line? */
582 if((*p == '\n') || (*p == '\r'))
584 store_index = true;
586 else if(store_index)
588 store_index = false;
590 if(*p != '#')
592 if ( playlist->amount >= playlist->max_playlist_size ) {
593 display_buffer_full();
594 result = -1;
595 goto exit;
598 /* Store a new entry */
599 playlist->indices[ playlist->amount ] = i+count;
600 #ifdef HAVE_DIRCACHE
601 if (playlist->filenames)
602 playlist->filenames[ playlist->amount ] = NULL;
603 #endif
604 playlist->amount++;
609 i+= count;
612 exit:
613 #ifdef HAVE_DIRCACHE
614 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
615 #endif
617 return result;
621 * Utility function to create a new playlist, fill it with the next or
622 * previous directory, shuffle it if needed, and start playback.
623 * If play_last is true and direction zero or negative, start playing
624 * the last file in the directory, otherwise start playing the first.
626 static int create_and_play_dir(int direction, bool play_last)
628 char dir[MAX_PATH + 1];
629 int res;
630 int index = -1;
632 if(direction > 0)
633 res = get_next_directory(dir);
634 else
635 res = get_previous_directory(dir);
637 if (!res)
639 if (playlist_create(dir, NULL) != -1)
641 ft_build_playlist(tree_get_context(), 0);
643 if (global_settings.playlist_shuffle)
644 playlist_shuffle(current_tick, -1);
646 if (play_last && direction <= 0)
647 index = current_playlist.amount - 1;
648 else
649 index = 0;
651 #if (CONFIG_CODEC != SWCODEC)
652 playlist_start(index, 0);
653 #endif
656 /* we've overwritten the dircache when getting the next/previous dir,
657 so the tree browser context will need to be reloaded */
658 reload_directory();
661 return index;
665 * Removes all tracks, from the playlist, leaving the presently playing
666 * track queued.
668 int playlist_remove_all_tracks(struct playlist_info *playlist)
670 int result;
672 if (playlist == NULL)
673 playlist = &current_playlist;
675 while (playlist->index > 0)
676 if ((result = remove_track_from_playlist(playlist, 0, true)) < 0)
677 return result;
679 while (playlist->amount > 1)
680 if ((result = remove_track_from_playlist(playlist, 1, true)) < 0)
681 return result;
683 if (playlist->amount == 1) {
684 playlist->indices[0] |= PLAYLIST_QUEUED;
687 return 0;
692 * Add track to playlist at specified position. There are five special
693 * positions that can be specified:
694 * PLAYLIST_PREPEND - Add track at beginning of playlist
695 * PLAYLIST_INSERT - Add track after current song. NOTE: If
696 * there are already inserted tracks then track
697 * is added to the end of the insertion list
698 * PLAYLIST_INSERT_FIRST - Add track immediately after current song, no
699 * matter what other tracks have been inserted
700 * PLAYLIST_INSERT_LAST - Add track to end of playlist
701 * PLAYLIST_INSERT_SHUFFLED - Add track at some random point between the
702 * current playing track and end of playlist
703 * PLAYLIST_REPLACE - Erase current playlist, Cue the current track
704 * and inster this track at the end.
706 static int add_track_to_playlist(struct playlist_info* playlist,
707 const char *filename, int position,
708 bool queue, int seek_pos)
710 int insert_position, orig_position;
711 unsigned long flags = PLAYLIST_INSERT_TYPE_INSERT;
712 int i;
714 insert_position = orig_position = position;
716 if (playlist->amount >= playlist->max_playlist_size)
718 display_buffer_full();
719 return -1;
722 switch (position)
724 case PLAYLIST_PREPEND:
725 position = insert_position = playlist->first_index;
726 break;
727 case PLAYLIST_INSERT:
728 /* if there are already inserted tracks then add track to end of
729 insertion list else add after current playing track */
730 if (playlist->last_insert_pos >= 0 &&
731 playlist->last_insert_pos < playlist->amount &&
732 (playlist->indices[playlist->last_insert_pos]&
733 PLAYLIST_INSERT_TYPE_MASK) == PLAYLIST_INSERT_TYPE_INSERT)
734 position = insert_position = playlist->last_insert_pos+1;
735 else if (playlist->amount > 0)
736 position = insert_position = playlist->index + 1;
737 else
738 position = insert_position = 0;
740 if (playlist->started)
741 playlist->last_insert_pos = position;
742 break;
743 case PLAYLIST_INSERT_FIRST:
744 if (playlist->amount > 0)
745 position = insert_position = playlist->index + 1;
746 else
747 position = insert_position = 0;
749 if (playlist->last_insert_pos < 0 && playlist->started)
750 playlist->last_insert_pos = position;
751 break;
752 case PLAYLIST_INSERT_LAST:
753 if (playlist->first_index > 0)
754 position = insert_position = playlist->first_index;
755 else
756 position = insert_position = playlist->amount;
757 break;
758 case PLAYLIST_INSERT_SHUFFLED:
760 if (playlist->started)
762 int offset;
763 int n = playlist->amount -
764 rotate_index(playlist, playlist->index);
766 if (n > 0)
767 offset = rand() % n;
768 else
769 offset = 0;
771 position = playlist->index + offset + 1;
772 if (position >= playlist->amount)
773 position -= playlist->amount;
775 insert_position = position;
777 else
778 position = insert_position = (rand() % (playlist->amount+1));
779 break;
781 case PLAYLIST_REPLACE:
782 if (playlist_remove_all_tracks(playlist) < 0)
783 return -1;
785 position = insert_position = playlist->index + 1;
786 break;
789 if (queue)
790 flags |= PLAYLIST_QUEUED;
792 /* shift indices so that track can be added */
793 for (i=playlist->amount; i>insert_position; i--)
795 playlist->indices[i] = playlist->indices[i-1];
796 #ifdef HAVE_DIRCACHE
797 if (playlist->filenames)
798 playlist->filenames[i] = playlist->filenames[i-1];
799 #endif
802 /* update stored indices if needed */
803 if (playlist->amount > 0 && insert_position <= playlist->index &&
804 playlist->started)
805 playlist->index++;
807 if (playlist->amount > 0 && insert_position <= playlist->first_index &&
808 orig_position != PLAYLIST_PREPEND && playlist->started)
810 playlist->first_index++;
812 if (seek_pos < 0 && playlist->current)
814 global_status.resume_first_index = playlist->first_index;
815 status_save();
819 if (insert_position < playlist->last_insert_pos ||
820 (insert_position == playlist->last_insert_pos && position < 0))
821 playlist->last_insert_pos++;
823 if (seek_pos < 0 && playlist->control_fd >= 0)
825 int result = update_control(playlist,
826 (queue?PLAYLIST_COMMAND_QUEUE:PLAYLIST_COMMAND_ADD), position,
827 playlist->last_insert_pos, filename, NULL, &seek_pos);
829 if (result < 0)
830 return result;
833 playlist->indices[insert_position] = flags | seek_pos;
835 #ifdef HAVE_DIRCACHE
836 if (playlist->filenames)
837 playlist->filenames[insert_position] = NULL;
838 #endif
840 playlist->amount++;
841 playlist->num_inserted_tracks++;
843 return insert_position;
847 * Callback for playlist_directory_tracksearch to insert track into
848 * playlist.
850 static int directory_search_callback(char* filename, void* context)
852 struct directory_search_context* c =
853 (struct directory_search_context*) context;
854 int insert_pos;
856 insert_pos = add_track_to_playlist(c->playlist, filename, c->position,
857 c->queue, -1);
859 if (insert_pos < 0)
860 return -1;
862 (c->count)++;
864 /* Make sure tracks are inserted in correct order if user requests
865 INSERT_FIRST */
866 if (c->position == PLAYLIST_INSERT_FIRST || c->position >= 0)
867 c->position = insert_pos + 1;
869 if (((c->count)%PLAYLIST_DISPLAY_COUNT) == 0)
871 unsigned char* count_str;
873 if (c->queue)
874 count_str = ID2P(LANG_PLAYLIST_QUEUE_COUNT);
875 else
876 count_str = ID2P(LANG_PLAYLIST_INSERT_COUNT);
878 display_playlist_count(c->count, count_str, false);
880 if ((c->count) == PLAYLIST_DISPLAY_COUNT &&
881 (audio_status() & AUDIO_STATUS_PLAY) &&
882 c->playlist->started)
883 audio_flush_and_reload_tracks();
886 return 0;
890 * remove track at specified position
892 static int remove_track_from_playlist(struct playlist_info* playlist,
893 int position, bool write)
895 int i;
896 bool inserted;
898 if (playlist->amount <= 0)
899 return -1;
901 inserted = playlist->indices[position] & PLAYLIST_INSERT_TYPE_MASK;
903 /* shift indices now that track has been removed */
904 for (i=position; i<playlist->amount; i++)
906 playlist->indices[i] = playlist->indices[i+1];
907 #ifdef HAVE_DIRCACHE
908 if (playlist->filenames)
909 playlist->filenames[i] = playlist->filenames[i+1];
910 #endif
913 playlist->amount--;
915 if (inserted)
916 playlist->num_inserted_tracks--;
917 else
918 playlist->deleted = true;
920 /* update stored indices if needed */
921 if (position < playlist->index)
922 playlist->index--;
924 if (position < playlist->first_index)
926 playlist->first_index--;
928 if (write)
930 global_status.resume_first_index = playlist->first_index;
931 status_save();
935 if (position <= playlist->last_insert_pos)
936 playlist->last_insert_pos--;
938 if (write && playlist->control_fd >= 0)
940 int result = update_control(playlist, PLAYLIST_COMMAND_DELETE,
941 position, -1, NULL, NULL, NULL);
943 if (result < 0)
944 return result;
946 sync_control(playlist, false);
949 return 0;
953 * randomly rearrange the array of indices for the playlist. If start_current
954 * is true then update the index to the new index of the current playing track
956 static int randomise_playlist(struct playlist_info* playlist,
957 unsigned int seed, bool start_current,
958 bool write)
960 int count;
961 int candidate;
962 long store;
963 unsigned int current = playlist->indices[playlist->index];
965 /* seed 0 is used to identify sorted playlist for resume purposes */
966 if (seed == 0)
967 seed = 1;
969 /* seed with the given seed */
970 srand(seed);
972 /* randomise entire indices list */
973 for(count = playlist->amount - 1; count >= 0; count--)
975 /* the rand is from 0 to RAND_MAX, so adjust to our value range */
976 candidate = rand() % (count + 1);
978 /* now swap the values at the 'count' and 'candidate' positions */
979 store = playlist->indices[candidate];
980 playlist->indices[candidate] = playlist->indices[count];
981 playlist->indices[count] = store;
982 #ifdef HAVE_DIRCACHE
983 if (playlist->filenames)
985 store = (long)playlist->filenames[candidate];
986 playlist->filenames[candidate] = playlist->filenames[count];
987 playlist->filenames[count] = (struct dircache_entry *)store;
989 #endif
992 if (start_current)
993 find_and_set_playlist_index(playlist, current);
995 /* indices have been moved so last insert position is no longer valid */
996 playlist->last_insert_pos = -1;
998 playlist->seed = seed;
999 if (playlist->num_inserted_tracks > 0 || playlist->deleted)
1000 playlist->shuffle_modified = true;
1002 if (write)
1004 update_control(playlist, PLAYLIST_COMMAND_SHUFFLE, seed,
1005 playlist->first_index, NULL, NULL, NULL);
1006 global_status.resume_seed = seed;
1007 status_save();
1010 return 0;
1014 * Sort the array of indices for the playlist. If start_current is true then
1015 * set the index to the new index of the current song.
1017 static int sort_playlist(struct playlist_info* playlist, bool start_current,
1018 bool write)
1020 unsigned int current = playlist->indices[playlist->index];
1022 if (playlist->amount > 0)
1023 qsort(playlist->indices, playlist->amount,
1024 sizeof(playlist->indices[0]), compare);
1026 #ifdef HAVE_DIRCACHE
1027 /** We need to re-check the song names from disk because qsort can't
1028 * sort two arrays at once :/
1029 * FIXME: Please implement a better way to do this. */
1030 memset(playlist->filenames, 0, playlist->max_playlist_size * sizeof(int));
1031 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
1032 #endif
1034 if (start_current)
1035 find_and_set_playlist_index(playlist, current);
1037 /* indices have been moved so last insert position is no longer valid */
1038 playlist->last_insert_pos = -1;
1040 if (!playlist->num_inserted_tracks && !playlist->deleted)
1041 playlist->shuffle_modified = false;
1042 if (write && playlist->control_fd >= 0)
1044 update_control(playlist, PLAYLIST_COMMAND_UNSHUFFLE,
1045 playlist->first_index, -1, NULL, NULL, NULL);
1046 global_status.resume_seed = 0;
1047 status_save();
1050 return 0;
1053 /* Calculate how many steps we have to really step when skipping entries
1054 * marked as bad.
1056 static int calculate_step_count(const struct playlist_info *playlist, int steps)
1058 int i, count, direction;
1059 int index;
1060 int stepped_count = 0;
1062 if (steps < 0)
1064 direction = -1;
1065 count = -steps;
1067 else
1069 direction = 1;
1070 count = steps;
1073 index = playlist->index;
1074 i = 0;
1075 do {
1076 /* Boundary check */
1077 if (index < 0)
1078 index += playlist->amount;
1079 if (index >= playlist->amount)
1080 index -= playlist->amount;
1082 /* Check if we found a bad entry. */
1083 if (playlist->indices[index] & PLAYLIST_SKIPPED)
1085 steps += direction;
1086 /* Are all entries bad? */
1087 if (stepped_count++ > playlist->amount)
1088 break ;
1090 else
1091 i++;
1093 index += direction;
1094 } while (i <= count);
1096 return steps;
1099 /* Marks the index of the track to be skipped that is "steps" away from
1100 * current playing track.
1102 void playlist_skip_entry(struct playlist_info *playlist, int steps)
1104 int index;
1106 if (playlist == NULL)
1107 playlist = &current_playlist;
1109 /* need to account for already skipped tracks */
1110 steps = calculate_step_count(playlist, steps);
1112 index = playlist->index + steps;
1113 if (index < 0)
1114 index += playlist->amount;
1115 else if (index >= playlist->amount)
1116 index -= playlist->amount;
1118 playlist->indices[index] |= PLAYLIST_SKIPPED;
1122 * returns the index of the track that is "steps" away from current playing
1123 * track.
1125 static int get_next_index(const struct playlist_info* playlist, int steps,
1126 int repeat_mode)
1128 int current_index = playlist->index;
1129 int next_index = -1;
1131 if (playlist->amount <= 0)
1132 return -1;
1134 if (repeat_mode == -1)
1135 repeat_mode = global_settings.repeat_mode;
1137 if (repeat_mode == REPEAT_SHUFFLE && playlist->amount <= 1)
1138 repeat_mode = REPEAT_ALL;
1140 steps = calculate_step_count(playlist, steps);
1141 switch (repeat_mode)
1143 case REPEAT_SHUFFLE:
1144 /* Treat repeat shuffle just like repeat off. At end of playlist,
1145 play will be resumed in playlist_next() */
1146 case REPEAT_OFF:
1148 current_index = rotate_index(playlist, current_index);
1149 next_index = current_index+steps;
1150 if ((next_index < 0) || (next_index >= playlist->amount))
1151 next_index = -1;
1152 else
1153 next_index = (next_index+playlist->first_index) %
1154 playlist->amount;
1156 break;
1159 case REPEAT_ONE:
1160 #ifdef AB_REPEAT_ENABLE
1161 case REPEAT_AB:
1162 #endif
1163 next_index = current_index;
1164 break;
1166 case REPEAT_ALL:
1167 default:
1169 next_index = (current_index+steps) % playlist->amount;
1170 while (next_index < 0)
1171 next_index += playlist->amount;
1173 if (steps >= playlist->amount)
1175 int i, index;
1177 index = next_index;
1178 next_index = -1;
1180 /* second time around so skip the queued files */
1181 for (i=0; i<playlist->amount; i++)
1183 if (playlist->indices[index] & PLAYLIST_QUEUE_MASK)
1184 index = (index+1) % playlist->amount;
1185 else
1187 next_index = index;
1188 break;
1192 break;
1196 /* No luck if the whole playlist was bad. */
1197 if (playlist->indices[next_index] & PLAYLIST_SKIPPED)
1198 return -1;
1200 return next_index;
1204 * Search for the seek track and set appropriate indices. Used after shuffle
1205 * to make sure the current index is still pointing to correct track.
1207 static void find_and_set_playlist_index(struct playlist_info* playlist,
1208 unsigned int seek)
1210 int i;
1212 /* Set the index to the current song */
1213 for (i=0; i<playlist->amount; i++)
1215 if (playlist->indices[i] == seek)
1217 playlist->index = playlist->first_index = i;
1219 if (playlist->current)
1221 global_status.resume_first_index = i;
1222 status_save();
1225 break;
1231 * used to sort track indices. Sort order is as follows:
1232 * 1. Prepended tracks (in prepend order)
1233 * 2. Playlist/directory tracks (in playlist order)
1234 * 3. Inserted/Appended tracks (in insert order)
1236 static int compare(const void* p1, const void* p2)
1238 unsigned long* e1 = (unsigned long*) p1;
1239 unsigned long* e2 = (unsigned long*) p2;
1240 unsigned long flags1 = *e1 & PLAYLIST_INSERT_TYPE_MASK;
1241 unsigned long flags2 = *e2 & PLAYLIST_INSERT_TYPE_MASK;
1243 if (flags1 == flags2)
1244 return (*e1 & PLAYLIST_SEEK_MASK) - (*e2 & PLAYLIST_SEEK_MASK);
1245 else if (flags1 == PLAYLIST_INSERT_TYPE_PREPEND ||
1246 flags2 == PLAYLIST_INSERT_TYPE_APPEND)
1247 return -1;
1248 else if (flags1 == PLAYLIST_INSERT_TYPE_APPEND ||
1249 flags2 == PLAYLIST_INSERT_TYPE_PREPEND)
1250 return 1;
1251 else if (flags1 && flags2)
1252 return (*e1 & PLAYLIST_SEEK_MASK) - (*e2 & PLAYLIST_SEEK_MASK);
1253 else
1254 return *e1 - *e2;
1257 #ifdef HAVE_DIRCACHE
1259 * Thread to update filename pointers to dircache on background
1260 * without affecting playlist load up performance. This thread also flushes
1261 * any pending control commands when the disk spins up.
1263 static bool playlist_flush_callback(void)
1265 struct playlist_info *playlist;
1266 playlist = &current_playlist;
1267 if (playlist->control_fd >= 0)
1269 if (playlist->num_cached > 0)
1271 mutex_lock(&playlist->control_mutex);
1272 flush_cached_control(playlist);
1273 mutex_unlock(&playlist->control_mutex);
1275 sync_control(playlist, true);
1277 return true;
1280 static void playlist_thread(void)
1282 struct queue_event ev;
1283 bool dirty_pointers = false;
1284 static char tmp[MAX_PATH+1];
1286 struct playlist_info *playlist;
1287 int index;
1288 int seek;
1289 bool control_file;
1291 int sleep_time = 5;
1293 #ifndef HAVE_FLASH_STORAGE
1294 if (global_settings.disk_spindown > 1 &&
1295 global_settings.disk_spindown <= 5)
1296 sleep_time = global_settings.disk_spindown - 1;
1297 #endif
1299 while (1)
1301 queue_wait_w_tmo(&playlist_queue, &ev, HZ*sleep_time);
1303 switch (ev.id)
1305 case PLAYLIST_LOAD_POINTERS:
1306 dirty_pointers = true;
1307 break ;
1309 /* Start the background scanning after either the disk spindown
1310 timeout or 5s, whichever is less */
1311 case SYS_TIMEOUT:
1312 playlist = &current_playlist;
1313 if (playlist->control_fd >= 0)
1315 if (playlist->num_cached > 0)
1316 register_ata_idle_func(playlist_flush_callback);
1319 if (!dirty_pointers)
1320 break ;
1322 if (!dircache_is_enabled() || !playlist->filenames
1323 || playlist->amount <= 0)
1324 break ;
1326 #ifdef HAVE_ADJUSTABLE_CPU_FREQ
1327 cpu_boost(true);
1328 #endif
1329 for (index = 0; index < playlist->amount
1330 && queue_empty(&playlist_queue); index++)
1332 /* Process only pointers that are not already loaded. */
1333 if (playlist->filenames[index])
1334 continue ;
1336 control_file = playlist->indices[index] & PLAYLIST_INSERT_TYPE_MASK;
1337 seek = playlist->indices[index] & PLAYLIST_SEEK_MASK;
1339 /* Load the filename from playlist file. */
1340 if (get_filename(playlist, index, seek, control_file, tmp,
1341 sizeof(tmp)) < 0)
1342 break ;
1344 /* Set the dircache entry pointer. */
1345 playlist->filenames[index] = dircache_get_entry_ptr(tmp);
1347 /* And be on background so user doesn't notice any delays. */
1348 yield();
1351 #ifdef HAVE_ADJUSTABLE_CPU_FREQ
1352 cpu_boost(false);
1353 #endif
1354 dirty_pointers = false;
1355 break ;
1357 #ifndef SIMULATOR
1358 case SYS_USB_CONNECTED:
1359 usb_acknowledge(SYS_USB_CONNECTED_ACK);
1360 usb_wait_for_disconnect(&playlist_queue);
1361 break ;
1362 #endif
1366 #endif
1369 * gets pathname for track at seek index
1371 static int get_filename(struct playlist_info* playlist, int index, int seek,
1372 bool control_file, char *buf, int buf_length)
1374 int fd;
1375 int max = -1;
1376 char tmp_buf[MAX_PATH+1];
1377 char dir_buf[MAX_PATH+1];
1378 bool utf8 = playlist->utf8;
1380 if (buf_length > MAX_PATH+1)
1381 buf_length = MAX_PATH+1;
1383 #ifdef HAVE_DIRCACHE
1384 if (dircache_is_enabled() && playlist->filenames)
1386 if (playlist->filenames[index] != NULL)
1388 dircache_copy_path(playlist->filenames[index], tmp_buf, sizeof(tmp_buf)-1);
1389 max = strlen(tmp_buf) + 1;
1392 #else
1393 (void)index;
1394 #endif
1396 if (playlist->in_ram && !control_file && max < 0)
1398 strncpy(tmp_buf, &playlist->buffer[seek], sizeof(tmp_buf));
1399 tmp_buf[MAX_PATH] = '\0';
1400 max = strlen(tmp_buf) + 1;
1402 else if (max < 0)
1404 mutex_lock(&playlist->control_mutex);
1406 if (control_file)
1408 fd = playlist->control_fd;
1409 utf8 = true;
1411 else
1413 if(-1 == playlist->fd)
1414 playlist->fd = open(playlist->filename, O_RDONLY);
1416 fd = playlist->fd;
1419 if(-1 != fd)
1422 if (lseek(fd, seek, SEEK_SET) != seek)
1423 max = -1;
1424 else
1426 max = read(fd, tmp_buf, MIN((size_t) buf_length, sizeof(tmp_buf)));
1428 if ((max > 0) && !utf8)
1430 /* Use dir_buf as a temporary buffer. Note that dir_buf must
1431 * be as large as tmp_buf.
1433 max = convert_m3u(tmp_buf, max, sizeof(tmp_buf), dir_buf);
1438 mutex_unlock(&playlist->control_mutex);
1440 if (max < 0)
1442 if (control_file)
1443 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
1444 else
1445 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_ACCESS_ERROR));
1447 return max;
1451 strncpy(dir_buf, playlist->filename, playlist->dirlen-1);
1452 dir_buf[playlist->dirlen-1] = 0;
1454 return (format_track_path(buf, tmp_buf, buf_length, max, dir_buf));
1457 static int get_next_directory(char *dir){
1458 return get_next_dir(dir,true,false);
1461 static int get_previous_directory(char *dir){
1462 return get_next_dir(dir,false,false);
1466 * search through all the directories (starting with the current) to find
1467 * one that has tracks to play
1469 static int get_next_dir(char *dir, bool is_forward, bool recursion)
1471 struct playlist_info* playlist = &current_playlist;
1472 int result = -1;
1473 int sort_dir = global_settings.sort_dir;
1474 char *start_dir = NULL;
1475 bool exit = false;
1476 struct tree_context* tc = tree_get_context();
1477 int dirfilter = *(tc->dirfilter);
1479 if (global_settings.next_folder == FOLDER_ADVANCE_RANDOM)
1481 int fd = open(ROCKBOX_DIR "/folder_advance_list.dat",O_RDONLY);
1482 char buffer[MAX_PATH];
1483 int folder_count = 0,i;
1484 srand(current_tick);
1485 *(tc->dirfilter) = SHOW_MUSIC;
1486 if (fd >= 0)
1488 read(fd,&folder_count,sizeof(int));
1489 while (!exit)
1491 i = rand()%folder_count;
1492 lseek(fd,sizeof(int) + (MAX_PATH*i),SEEK_SET);
1493 read(fd,buffer,MAX_PATH);
1494 if (check_subdir_for_music(buffer,"") ==0)
1495 exit = true;
1497 strcpy(dir,buffer);
1498 close(fd);
1499 *(tc->dirfilter) = dirfilter;
1500 reload_directory();
1501 return 0;
1504 /* not random folder advance */
1505 if (recursion){
1506 /* start with root */
1507 dir[0] = '\0';
1509 else{
1510 /* start with current directory */
1511 strncpy(dir, playlist->filename, playlist->dirlen-1);
1512 dir[playlist->dirlen-1] = '\0';
1515 /* use the tree browser dircache to load files */
1516 *(tc->dirfilter) = SHOW_ALL;
1518 /* sort in another direction if previous dir is requested */
1519 if(!is_forward){
1520 if ((global_settings.sort_dir == 0) || (global_settings.sort_dir == 3))
1521 global_settings.sort_dir = 4;
1522 else if (global_settings.sort_dir == 1)
1523 global_settings.sort_dir = 2;
1524 else if (global_settings.sort_dir == 2)
1525 global_settings.sort_dir = 1;
1526 else if (global_settings.sort_dir == 4)
1527 global_settings.sort_dir = 0;
1530 while (!exit)
1532 struct entry *files;
1533 int num_files = 0;
1534 int i;
1536 if (ft_load(tc, (dir[0]=='\0')?"/":dir) < 0)
1538 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_DIRECTORY_ACCESS_ERROR));
1539 exit = true;
1540 result = -1;
1541 break;
1544 files = (struct entry*) tc->dircache;
1545 num_files = tc->filesindir;
1547 for (i=0; i<num_files; i++)
1549 /* user abort */
1550 if (action_userabort(TIMEOUT_NOBLOCK))
1552 result = -1;
1553 exit = true;
1554 break;
1557 if (files[i].attr & ATTR_DIRECTORY)
1559 if (!start_dir)
1561 result = check_subdir_for_music(dir, files[i].name);
1562 if (result != -1)
1564 exit = true;
1565 break;
1568 else if (!strcmp(start_dir, files[i].name))
1569 start_dir = NULL;
1573 if (!exit)
1575 /* move down to parent directory. current directory name is
1576 stored as the starting point for the search in parent */
1577 start_dir = strrchr(dir, '/');
1578 if (start_dir)
1580 *start_dir = '\0';
1581 start_dir++;
1583 else
1584 break;
1588 /* restore dirfilter & sort_dir */
1589 *(tc->dirfilter) = dirfilter;
1590 global_settings.sort_dir = sort_dir;
1592 /* special case if nothing found: try start searching again from root */
1593 if (result == -1 && !recursion){
1594 result = get_next_dir(dir,is_forward, true);
1597 return result;
1601 * Checks if there are any music files in the dir or any of its
1602 * subdirectories. May be called recursively.
1604 static int check_subdir_for_music(char *dir, char *subdir)
1606 int result = -1;
1607 int dirlen = strlen(dir);
1608 int num_files = 0;
1609 int i;
1610 struct entry *files;
1611 bool has_music = false;
1612 bool has_subdir = false;
1613 struct tree_context* tc = tree_get_context();
1615 snprintf(dir+dirlen, MAX_PATH-dirlen, "/%s", subdir);
1617 if (ft_load(tc, dir) < 0)
1619 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_DIRECTORY_ACCESS_ERROR));
1620 return -2;
1623 files = (struct entry*) tc->dircache;
1624 num_files = tc->filesindir;
1626 for (i=0; i<num_files; i++)
1628 if (files[i].attr & ATTR_DIRECTORY)
1629 has_subdir = true;
1630 else if ((files[i].attr & FILE_ATTR_MASK) == FILE_ATTR_AUDIO)
1632 has_music = true;
1633 break;
1637 if (has_music)
1638 return 0;
1640 if (has_subdir)
1642 for (i=0; i<num_files; i++)
1644 if (action_userabort(TIMEOUT_NOBLOCK))
1646 result = -2;
1647 break;
1650 if (files[i].attr & ATTR_DIRECTORY)
1652 result = check_subdir_for_music(dir, files[i].name);
1653 if (!result)
1654 break;
1659 if (result < 0)
1661 if (dirlen)
1663 dir[dirlen] = '\0';
1665 else
1667 strcpy(dir, "/");
1670 /* we now need to reload our current directory */
1671 if(ft_load(tc, dir) < 0)
1672 gui_syncsplash(HZ*2,
1673 ID2P(LANG_PLAYLIST_DIRECTORY_ACCESS_ERROR));
1676 return result;
1680 * Returns absolute path of track
1682 static int format_track_path(char *dest, char *src, int buf_length, int max,
1683 const char *dir)
1685 int i = 0;
1686 int j;
1687 char *temp_ptr;
1689 /* Zero-terminate the file name */
1690 while((src[i] != '\n') &&
1691 (src[i] != '\r') &&
1692 (i < max))
1693 i++;
1695 /* Now work back killing white space */
1696 while((src[i-1] == ' ') ||
1697 (src[i-1] == '\t'))
1698 i--;
1700 src[i]=0;
1702 /* replace backslashes with forward slashes */
1703 for ( j=0; j<i; j++ )
1704 if ( src[j] == '\\' )
1705 src[j] = '/';
1707 if('/' == src[0])
1709 strncpy(dest, src, buf_length);
1711 else
1713 /* handle dos style drive letter */
1714 if (':' == src[1])
1715 strncpy(dest, &src[2], buf_length);
1716 else if (!strncmp(src, "../", 3))
1718 /* handle relative paths */
1719 i=3;
1720 while(!strncmp(&src[i], "../", 3))
1721 i += 3;
1722 for (j=0; j<i/3; j++) {
1723 temp_ptr = strrchr(dir, '/');
1724 if (temp_ptr)
1725 *temp_ptr = '\0';
1726 else
1727 break;
1729 snprintf(dest, buf_length, "%s/%s", dir, &src[i]);
1731 else if ( '.' == src[0] && '/' == src[1] ) {
1732 snprintf(dest, buf_length, "%s/%s", dir, &src[2]);
1734 else {
1735 snprintf(dest, buf_length, "%s/%s", dir, src);
1739 return 0;
1743 * Display splash message showing progress of playlist/directory insertion or
1744 * save.
1746 static void display_playlist_count(int count, const unsigned char *fmt,
1747 bool final)
1749 static long talked_tick = 0;
1750 long id = P2ID(fmt);
1751 if(global_settings.talk_menu && id>=0)
1753 if(final || (count && (talked_tick == 0
1754 || TIME_AFTER(current_tick, talked_tick+5*HZ))))
1756 talked_tick = current_tick;
1757 talk_number(count, false);
1758 talk_id(id, true);
1761 fmt = P2STR(fmt);
1763 gui_syncsplash(0, fmt, count, str(LANG_OFF_ABORT));
1767 * Display buffer full message
1769 static void display_buffer_full(void)
1771 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_BUFFER_FULL));
1775 * Flush any cached control commands to disk. Called when playlist is being
1776 * modified. Returns 0 on success and -1 on failure.
1778 static int flush_cached_control(struct playlist_info* playlist)
1780 int result = 0;
1781 int i;
1783 if (!playlist->num_cached)
1784 return 0;
1786 lseek(playlist->control_fd, 0, SEEK_END);
1788 for (i=0; i<playlist->num_cached; i++)
1790 struct playlist_control_cache* cache =
1791 &(playlist->control_cache[i]);
1793 switch (cache->command)
1795 case PLAYLIST_COMMAND_PLAYLIST:
1796 result = fdprintf(playlist->control_fd, "P:%d:%s:%s\n",
1797 cache->i1, cache->s1, cache->s2);
1798 break;
1799 case PLAYLIST_COMMAND_ADD:
1800 case PLAYLIST_COMMAND_QUEUE:
1801 result = fdprintf(playlist->control_fd, "%c:%d:%d:",
1802 (cache->command == PLAYLIST_COMMAND_ADD)?'A':'Q',
1803 cache->i1, cache->i2);
1804 if (result > 0)
1806 /* save the position in file where name is written */
1807 int* seek_pos = (int *)cache->data;
1808 *seek_pos = lseek(playlist->control_fd, 0, SEEK_CUR);
1809 result = fdprintf(playlist->control_fd, "%s\n",
1810 cache->s1);
1812 break;
1813 case PLAYLIST_COMMAND_DELETE:
1814 result = fdprintf(playlist->control_fd, "D:%d\n", cache->i1);
1815 break;
1816 case PLAYLIST_COMMAND_SHUFFLE:
1817 result = fdprintf(playlist->control_fd, "S:%d:%d\n",
1818 cache->i1, cache->i2);
1819 break;
1820 case PLAYLIST_COMMAND_UNSHUFFLE:
1821 result = fdprintf(playlist->control_fd, "U:%d\n", cache->i1);
1822 break;
1823 case PLAYLIST_COMMAND_RESET:
1824 result = fdprintf(playlist->control_fd, "R\n");
1825 break;
1826 default:
1827 break;
1830 if (result <= 0)
1831 break;
1834 if (result > 0)
1836 if (global_status.resume_seed >= 0)
1838 global_status.resume_seed = -1;
1839 status_save();
1842 playlist->num_cached = 0;
1843 playlist->pending_control_sync = true;
1845 result = 0;
1847 else
1849 result = -1;
1850 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_UPDATE_ERROR));
1853 return result;
1857 * Update control data with new command. Depending on the command, it may be
1858 * cached or flushed to disk.
1860 static int update_control(struct playlist_info* playlist,
1861 enum playlist_command command, int i1, int i2,
1862 const char* s1, const char* s2, void* data)
1864 int result = 0;
1865 struct playlist_control_cache* cache;
1866 bool flush = false;
1868 mutex_lock(&playlist->control_mutex);
1870 cache = &(playlist->control_cache[playlist->num_cached++]);
1872 cache->command = command;
1873 cache->i1 = i1;
1874 cache->i2 = i2;
1875 cache->s1 = s1;
1876 cache->s2 = s2;
1877 cache->data = data;
1879 switch (command)
1881 case PLAYLIST_COMMAND_PLAYLIST:
1882 case PLAYLIST_COMMAND_ADD:
1883 case PLAYLIST_COMMAND_QUEUE:
1884 #ifndef HAVE_DIRCACHE
1885 case PLAYLIST_COMMAND_DELETE:
1886 case PLAYLIST_COMMAND_RESET:
1887 #endif
1888 flush = true;
1889 break;
1890 case PLAYLIST_COMMAND_SHUFFLE:
1891 case PLAYLIST_COMMAND_UNSHUFFLE:
1892 default:
1893 /* only flush when needed */
1894 break;
1897 if (flush || playlist->num_cached == PLAYLIST_MAX_CACHE)
1898 result = flush_cached_control(playlist);
1900 mutex_unlock(&playlist->control_mutex);
1902 return result;
1906 * sync control file to disk
1908 static void sync_control(struct playlist_info* playlist, bool force)
1910 #ifdef HAVE_DIRCACHE
1911 if (playlist->started && force)
1912 #else
1913 (void) force;
1915 if (playlist->started)
1916 #endif
1918 if (playlist->pending_control_sync)
1920 mutex_lock(&playlist->control_mutex);
1921 fsync(playlist->control_fd);
1922 playlist->pending_control_sync = false;
1923 mutex_unlock(&playlist->control_mutex);
1929 * Rotate indices such that first_index is index 0
1931 static int rotate_index(const struct playlist_info* playlist, int index)
1933 index -= playlist->first_index;
1934 if (index < 0)
1935 index += playlist->amount;
1937 return index;
1941 * Initialize playlist entries at startup
1943 void playlist_init(void)
1945 struct playlist_info* playlist = &current_playlist;
1947 playlist->current = true;
1948 snprintf(playlist->control_filename, sizeof(playlist->control_filename),
1949 "%s", PLAYLIST_CONTROL_FILE);
1950 playlist->fd = -1;
1951 playlist->control_fd = -1;
1952 playlist->max_playlist_size = global_settings.max_files_in_playlist;
1953 playlist->indices = buffer_alloc(
1954 playlist->max_playlist_size * sizeof(int));
1955 playlist->buffer_size =
1956 AVERAGE_FILENAME_LENGTH * global_settings.max_files_in_dir;
1957 playlist->buffer = buffer_alloc(playlist->buffer_size);
1958 mutex_init(&playlist->control_mutex);
1959 empty_playlist(playlist, true);
1961 #ifdef HAVE_DIRCACHE
1962 playlist->filenames = buffer_alloc(
1963 playlist->max_playlist_size * sizeof(int));
1964 memset(playlist->filenames, 0,
1965 playlist->max_playlist_size * sizeof(int));
1966 create_thread(playlist_thread, playlist_stack, sizeof(playlist_stack),
1967 0, playlist_thread_name IF_PRIO(, PRIORITY_BACKGROUND)
1968 IF_COP(, CPU));
1969 queue_init(&playlist_queue, true);
1970 #endif
1974 * Clean playlist at shutdown
1976 void playlist_shutdown(void)
1978 struct playlist_info* playlist = &current_playlist;
1980 if (playlist->control_fd >= 0)
1982 mutex_lock(&playlist->control_mutex);
1984 if (playlist->num_cached > 0)
1985 flush_cached_control(playlist);
1987 close(playlist->control_fd);
1989 mutex_unlock(&playlist->control_mutex);
1994 * Create new playlist
1996 int playlist_create(const char *dir, const char *file)
1998 struct playlist_info* playlist = &current_playlist;
2000 new_playlist(playlist, dir, file);
2002 if (file)
2003 /* load the playlist file */
2004 add_indices_to_playlist(playlist, NULL, 0);
2006 return 0;
2009 #define PLAYLIST_COMMAND_SIZE (MAX_PATH+12)
2012 * Restore the playlist state based on control file commands. Called to
2013 * resume playback after shutdown.
2015 int playlist_resume(void)
2017 struct playlist_info* playlist = &current_playlist;
2018 char *buffer;
2019 size_t buflen;
2020 int nread;
2021 int total_read = 0;
2022 int control_file_size = 0;
2023 bool first = true;
2024 bool sorted = true;
2026 /* use mp3 buffer for maximum load speed */
2027 #if CONFIG_CODEC != SWCODEC
2028 talk_buffer_steal(); /* we use the mp3 buffer, need to tell */
2029 buflen = (audiobufend - audiobuf);
2030 buffer = (char *)audiobuf;
2031 #else
2032 buffer = (char *)audio_get_buffer(false, &buflen);
2033 #endif
2035 empty_playlist(playlist, true);
2037 gui_syncsplash(0, ID2P(LANG_WAIT));
2038 playlist->control_fd = open(playlist->control_filename, O_RDWR);
2039 if (playlist->control_fd < 0)
2041 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2042 return -1;
2044 playlist->control_created = true;
2046 control_file_size = filesize(playlist->control_fd);
2047 if (control_file_size <= 0)
2049 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2050 return -1;
2053 /* read a small amount first to get the header */
2054 nread = read(playlist->control_fd, buffer,
2055 PLAYLIST_COMMAND_SIZE<buflen?PLAYLIST_COMMAND_SIZE:buflen);
2056 if(nread <= 0)
2058 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2059 return -1;
2062 playlist->started = true;
2064 while (1)
2066 int result = 0;
2067 int count;
2068 enum playlist_command current_command = PLAYLIST_COMMAND_COMMENT;
2069 int last_newline = 0;
2070 int str_count = -1;
2071 bool newline = true;
2072 bool exit_loop = false;
2073 char *p = buffer;
2074 char *str1 = NULL;
2075 char *str2 = NULL;
2076 char *str3 = NULL;
2077 unsigned long last_tick = current_tick;
2079 for(count=0; count<nread && !exit_loop; count++,p++)
2081 /* So a splash while we are loading. */
2082 if (current_tick - last_tick > HZ/4)
2084 gui_syncsplash(0, str(LANG_LOADING_PERCENT),
2085 (total_read+count)*100/control_file_size,
2086 str(LANG_OFF_ABORT));
2087 if (action_userabort(TIMEOUT_NOBLOCK))
2089 /* FIXME:
2090 * Not sure how to implement this, somebody more familiar
2091 * with the code, please fix this. */
2093 last_tick = current_tick;
2096 /* Are we on a new line? */
2097 if((*p == '\n') || (*p == '\r'))
2099 *p = '\0';
2101 /* save last_newline in case we need to load more data */
2102 last_newline = count;
2104 switch (current_command)
2106 case PLAYLIST_COMMAND_PLAYLIST:
2108 /* str1=version str2=dir str3=file */
2109 int version;
2111 if (!str1)
2113 result = -1;
2114 exit_loop = true;
2115 break;
2118 if (!str2)
2119 str2 = "";
2121 if (!str3)
2122 str3 = "";
2124 version = atoi(str1);
2126 if (version != PLAYLIST_CONTROL_FILE_VERSION)
2127 return -1;
2129 update_playlist_filename(playlist, str2, str3);
2131 if (str3[0] != '\0')
2133 /* NOTE: add_indices_to_playlist() overwrites the
2134 audiobuf so we need to reload control file
2135 data */
2136 add_indices_to_playlist(playlist, NULL, 0);
2138 else if (str2[0] != '\0')
2140 playlist->in_ram = true;
2141 resume_directory(str2);
2144 /* load the rest of the data */
2145 first = false;
2146 exit_loop = true;
2148 break;
2150 case PLAYLIST_COMMAND_ADD:
2151 case PLAYLIST_COMMAND_QUEUE:
2153 /* str1=position str2=last_position str3=file */
2154 int position, last_position;
2155 bool queue;
2157 if (!str1 || !str2 || !str3)
2159 result = -1;
2160 exit_loop = true;
2161 break;
2164 position = atoi(str1);
2165 last_position = atoi(str2);
2167 queue = (current_command == PLAYLIST_COMMAND_ADD)?
2168 false:true;
2170 /* seek position is based on str3's position in
2171 buffer */
2172 if (add_track_to_playlist(playlist, str3, position,
2173 queue, total_read+(str3-buffer)) < 0)
2174 return -1;
2176 playlist->last_insert_pos = last_position;
2178 break;
2180 case PLAYLIST_COMMAND_DELETE:
2182 /* str1=position */
2183 int position;
2185 if (!str1)
2187 result = -1;
2188 exit_loop = true;
2189 break;
2192 position = atoi(str1);
2194 if (remove_track_from_playlist(playlist, position,
2195 false) < 0)
2196 return -1;
2198 break;
2200 case PLAYLIST_COMMAND_SHUFFLE:
2202 /* str1=seed str2=first_index */
2203 int seed;
2205 if (!str1 || !str2)
2207 result = -1;
2208 exit_loop = true;
2209 break;
2212 if (!sorted)
2214 /* Always sort list before shuffling */
2215 sort_playlist(playlist, false, false);
2218 seed = atoi(str1);
2219 playlist->first_index = atoi(str2);
2221 if (randomise_playlist(playlist, seed, false,
2222 false) < 0)
2223 return -1;
2225 sorted = false;
2226 break;
2228 case PLAYLIST_COMMAND_UNSHUFFLE:
2230 /* str1=first_index */
2231 if (!str1)
2233 result = -1;
2234 exit_loop = true;
2235 break;
2238 playlist->first_index = atoi(str1);
2240 if (sort_playlist(playlist, false, false) < 0)
2241 return -1;
2243 sorted = true;
2244 break;
2246 case PLAYLIST_COMMAND_RESET:
2248 playlist->last_insert_pos = -1;
2249 break;
2251 case PLAYLIST_COMMAND_COMMENT:
2252 default:
2253 break;
2256 newline = true;
2258 /* to ignore any extra newlines */
2259 current_command = PLAYLIST_COMMAND_COMMENT;
2261 else if(newline)
2263 newline = false;
2265 /* first non-comment line must always specify playlist */
2266 if (first && *p != 'P' && *p != '#')
2268 result = -1;
2269 exit_loop = true;
2270 break;
2273 switch (*p)
2275 case 'P':
2276 /* playlist can only be specified once */
2277 if (!first)
2279 result = -1;
2280 exit_loop = true;
2281 break;
2284 current_command = PLAYLIST_COMMAND_PLAYLIST;
2285 break;
2286 case 'A':
2287 current_command = PLAYLIST_COMMAND_ADD;
2288 break;
2289 case 'Q':
2290 current_command = PLAYLIST_COMMAND_QUEUE;
2291 break;
2292 case 'D':
2293 current_command = PLAYLIST_COMMAND_DELETE;
2294 break;
2295 case 'S':
2296 current_command = PLAYLIST_COMMAND_SHUFFLE;
2297 break;
2298 case 'U':
2299 current_command = PLAYLIST_COMMAND_UNSHUFFLE;
2300 break;
2301 case 'R':
2302 current_command = PLAYLIST_COMMAND_RESET;
2303 break;
2304 case '#':
2305 current_command = PLAYLIST_COMMAND_COMMENT;
2306 break;
2307 default:
2308 result = -1;
2309 exit_loop = true;
2310 break;
2313 str_count = -1;
2314 str1 = NULL;
2315 str2 = NULL;
2316 str3 = NULL;
2318 else if(current_command != PLAYLIST_COMMAND_COMMENT)
2320 /* all control file strings are separated with a colon.
2321 Replace the colon with 0 to get proper strings that can be
2322 used by commands above */
2323 if (*p == ':')
2325 *p = '\0';
2326 str_count++;
2328 if ((count+1) < nread)
2330 switch (str_count)
2332 case 0:
2333 str1 = p+1;
2334 break;
2335 case 1:
2336 str2 = p+1;
2337 break;
2338 case 2:
2339 str3 = p+1;
2340 break;
2341 default:
2342 /* allow last string to contain colons */
2343 *p = ':';
2344 break;
2351 if (result < 0)
2353 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_INVALID));
2354 return result;
2357 if (!newline || (exit_loop && count<nread))
2359 if ((total_read + count) >= control_file_size)
2361 /* no newline at end of control file */
2362 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_INVALID));
2363 return -1;
2366 /* We didn't end on a newline or we exited loop prematurely.
2367 Either way, re-read the remainder. */
2368 count = last_newline;
2369 lseek(playlist->control_fd, total_read+count, SEEK_SET);
2372 total_read += count;
2374 if (first)
2375 /* still looking for header */
2376 nread = read(playlist->control_fd, buffer,
2377 PLAYLIST_COMMAND_SIZE<buflen?PLAYLIST_COMMAND_SIZE:buflen);
2378 else
2379 nread = read(playlist->control_fd, buffer, buflen);
2381 /* Terminate on EOF */
2382 if(nread <= 0)
2384 if (global_status.resume_seed >= 0)
2386 /* Apply shuffle command saved in settings */
2387 if (global_status.resume_seed == 0)
2388 sort_playlist(playlist, false, true);
2389 else
2391 if (!sorted)
2392 sort_playlist(playlist, false, false);
2394 randomise_playlist(playlist, global_status.resume_seed,
2395 false, true);
2399 playlist->first_index = global_status.resume_first_index;
2400 break;
2404 #ifdef HAVE_DIRCACHE
2405 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
2406 #endif
2408 return 0;
2412 * Add track to in_ram playlist. Used when playing directories.
2414 int playlist_add(const char *filename)
2416 struct playlist_info* playlist = &current_playlist;
2417 int len = strlen(filename);
2419 if((len+1 > playlist->buffer_size - playlist->buffer_end_pos) ||
2420 (playlist->amount >= playlist->max_playlist_size))
2422 display_buffer_full();
2423 return -1;
2426 playlist->indices[playlist->amount] = playlist->buffer_end_pos;
2427 #ifdef HAVE_DIRCACHE
2428 playlist->filenames[playlist->amount] = NULL;
2429 #endif
2430 playlist->amount++;
2432 strcpy(&playlist->buffer[playlist->buffer_end_pos], filename);
2433 playlist->buffer_end_pos += len;
2434 playlist->buffer[playlist->buffer_end_pos++] = '\0';
2436 return 0;
2439 /* shuffle newly created playlist using random seed. */
2440 int playlist_shuffle(int random_seed, int start_index)
2442 struct playlist_info* playlist = &current_playlist;
2444 unsigned int seek_pos = 0;
2445 bool start_current = false;
2447 if (start_index >= 0 && global_settings.play_selected)
2449 /* store the seek position before the shuffle */
2450 seek_pos = playlist->indices[start_index];
2451 playlist->index = global_status.resume_first_index =
2452 playlist->first_index = start_index;
2453 start_current = true;
2456 randomise_playlist(playlist, random_seed, start_current, true);
2458 return playlist->index;
2461 /* start playing current playlist at specified index/offset */
2462 int playlist_start(int start_index, int offset)
2464 struct playlist_info* playlist = &current_playlist;
2466 /* Cancel FM radio selection as previous music. For cases where we start
2467 playback without going to the WPS, such as playlist insert.. or
2468 playlist catalog. */
2469 previous_music_is_wps();
2471 playlist->index = start_index;
2473 #if CONFIG_CODEC != SWCODEC
2474 talk_buffer_steal(); /* will use the mp3 buffer */
2475 #endif
2477 playlist->started = true;
2478 sync_control(playlist, false);
2479 audio_play(offset);
2481 return 0;
2484 /* Returns false if 'steps' is out of bounds, else true */
2485 bool playlist_check(int steps)
2487 struct playlist_info* playlist = &current_playlist;
2489 /* always allow folder navigation */
2490 if (global_settings.next_folder && playlist->in_ram)
2491 return true;
2493 int index = get_next_index(playlist, steps, -1);
2495 if (index < 0 && steps >= 0 && global_settings.repeat_mode == REPEAT_SHUFFLE)
2496 index = get_next_index(playlist, steps, REPEAT_ALL);
2498 return (index >= 0);
2501 /* get trackname of track that is "steps" away from current playing track.
2502 NULL is used to identify end of playlist */
2503 char* playlist_peek(int steps)
2505 struct playlist_info* playlist = &current_playlist;
2506 int seek;
2507 char *temp_ptr;
2508 int index;
2509 bool control_file;
2511 index = get_next_index(playlist, steps, -1);
2512 if (index < 0)
2513 return NULL;
2515 control_file = playlist->indices[index] & PLAYLIST_INSERT_TYPE_MASK;
2516 seek = playlist->indices[index] & PLAYLIST_SEEK_MASK;
2518 if (get_filename(playlist, index, seek, control_file, now_playing,
2519 MAX_PATH+1) < 0)
2520 return NULL;
2522 temp_ptr = now_playing;
2524 if (!playlist->in_ram || control_file)
2526 /* remove bogus dirs from beginning of path
2527 (workaround for buggy playlist creation tools) */
2528 while (temp_ptr)
2530 if (file_exists(temp_ptr))
2531 break;
2533 temp_ptr = strchr(temp_ptr+1, '/');
2536 if (!temp_ptr)
2538 /* Even though this is an invalid file, we still need to pass a
2539 file name to the caller because NULL is used to indicate end
2540 of playlist */
2541 return now_playing;
2545 return temp_ptr;
2549 * Update indices as track has changed
2551 int playlist_next(int steps)
2553 struct playlist_info* playlist = &current_playlist;
2554 int index;
2556 if ( (steps > 0)
2557 #ifdef AB_REPEAT_ENABLE
2558 && (global_settings.repeat_mode != REPEAT_AB)
2559 #endif
2560 && (global_settings.repeat_mode != REPEAT_ONE) )
2562 int i, j;
2564 /* We need to delete all the queued songs */
2565 for (i=0, j=steps; i<j; i++)
2567 index = get_next_index(playlist, i, -1);
2569 if (playlist->indices[index] & PLAYLIST_QUEUE_MASK)
2571 remove_track_from_playlist(playlist, index, true);
2572 steps--; /* one less track */
2577 index = get_next_index(playlist, steps, -1);
2579 if (index < 0)
2581 /* end of playlist... or is it */
2582 if (global_settings.repeat_mode == REPEAT_SHUFFLE &&
2583 playlist->amount > 1)
2585 /* Repeat shuffle mode. Re-shuffle playlist and resume play */
2586 playlist->first_index = global_status.resume_first_index = 0;
2587 sort_playlist(playlist, false, false);
2588 randomise_playlist(playlist, current_tick, false, true);
2589 #if CONFIG_CODEC != SWCODEC
2590 playlist_start(0, 0);
2591 #endif
2592 playlist->index = 0;
2593 index = 0;
2595 else if (playlist->in_ram && global_settings.next_folder)
2597 index = create_and_play_dir(steps, true);
2599 if (index >= 0)
2601 playlist->index = index;
2605 return index;
2608 playlist->index = index;
2610 if (playlist->last_insert_pos >= 0 && steps > 0)
2612 /* check to see if we've gone beyond the last inserted track */
2613 int cur = rotate_index(playlist, index);
2614 int last_pos = rotate_index(playlist, playlist->last_insert_pos);
2616 if (cur > last_pos)
2618 /* reset last inserted track */
2619 playlist->last_insert_pos = -1;
2621 if (playlist->control_fd >= 0)
2623 int result = update_control(playlist, PLAYLIST_COMMAND_RESET,
2624 -1, -1, NULL, NULL, NULL);
2626 if (result < 0)
2627 return result;
2629 sync_control(playlist, false);
2634 return index;
2637 /* try playing next or previous folder */
2638 bool playlist_next_dir(int direction)
2640 /* not to mess up real playlists */
2641 if(!current_playlist.in_ram)
2642 return false;
2644 return create_and_play_dir(direction, false) >= 0;
2647 /* Get resume info for current playing song. If return value is -1 then
2648 settings shouldn't be saved. */
2649 int playlist_get_resume_info(int *resume_index)
2651 struct playlist_info* playlist = &current_playlist;
2653 *resume_index = playlist->index;
2655 return 0;
2658 /* Update resume info for current playing song. Returns -1 on error. */
2659 int playlist_update_resume_info(const struct mp3entry* id3)
2661 struct playlist_info* playlist = &current_playlist;
2663 if (id3)
2665 if (global_status.resume_index != playlist->index ||
2666 global_status.resume_offset != id3->offset)
2668 global_status.resume_index = playlist->index;
2669 global_status.resume_offset = id3->offset;
2670 status_save();
2673 else
2675 global_status.resume_index = -1;
2676 global_status.resume_offset = -1;
2677 status_save();
2680 return 0;
2683 /* Returns index of current playing track for display purposes. This value
2684 should not be used for resume purposes as it doesn't represent the actual
2685 index into the playlist */
2686 int playlist_get_display_index(void)
2688 struct playlist_info* playlist = &current_playlist;
2690 /* first_index should always be index 0 for display purposes */
2691 int index = rotate_index(playlist, playlist->index);
2693 return (index+1);
2696 /* returns number of tracks in current playlist */
2697 int playlist_amount(void)
2699 return playlist_amount_ex(NULL);
2703 * Create a new playlist If playlist is not NULL then we're loading a
2704 * playlist off disk for viewing/editing. The index_buffer is used to store
2705 * playlist indices (required for and only used if !current playlist). The
2706 * temp_buffer (if not NULL) is used as a scratchpad when loading indices.
2708 int playlist_create_ex(struct playlist_info* playlist,
2709 const char* dir, const char* file,
2710 void* index_buffer, int index_buffer_size,
2711 void* temp_buffer, int temp_buffer_size)
2713 if (!playlist)
2714 playlist = &current_playlist;
2715 else
2717 /* Initialize playlist structure */
2718 int r = rand() % 10;
2719 playlist->current = false;
2721 /* Use random name for control file */
2722 snprintf(playlist->control_filename, sizeof(playlist->control_filename),
2723 "%s.%d", PLAYLIST_CONTROL_FILE, r);
2724 playlist->fd = -1;
2725 playlist->control_fd = -1;
2727 if (index_buffer)
2729 int num_indices = index_buffer_size / sizeof(int);
2731 #ifdef HAVE_DIRCACHE
2732 num_indices /= 2;
2733 #endif
2734 if (num_indices > global_settings.max_files_in_playlist)
2735 num_indices = global_settings.max_files_in_playlist;
2737 playlist->max_playlist_size = num_indices;
2738 playlist->indices = index_buffer;
2739 #ifdef HAVE_DIRCACHE
2740 playlist->filenames = (const struct dircache_entry **)
2741 &playlist->indices[num_indices];
2742 #endif
2744 else
2746 playlist->max_playlist_size = current_playlist.max_playlist_size;
2747 playlist->indices = current_playlist.indices;
2748 #ifdef HAVE_DIRCACHE
2749 playlist->filenames = current_playlist.filenames;
2750 #endif
2753 playlist->buffer_size = 0;
2754 playlist->buffer = NULL;
2755 mutex_init(&playlist->control_mutex);
2758 new_playlist(playlist, dir, file);
2760 if (file)
2761 /* load the playlist file */
2762 add_indices_to_playlist(playlist, temp_buffer, temp_buffer_size);
2764 return 0;
2768 * Set the specified playlist as the current.
2769 * NOTE: You will get undefined behaviour if something is already playing so
2770 * remember to stop before calling this. Also, this call will
2771 * effectively close your playlist, making it unusable.
2773 int playlist_set_current(struct playlist_info* playlist)
2775 if (!playlist || (check_control(playlist) < 0))
2776 return -1;
2778 empty_playlist(&current_playlist, false);
2780 strncpy(current_playlist.filename, playlist->filename,
2781 sizeof(current_playlist.filename));
2783 current_playlist.utf8 = playlist->utf8;
2784 current_playlist.fd = playlist->fd;
2786 close(playlist->control_fd);
2787 close(current_playlist.control_fd);
2788 remove(current_playlist.control_filename);
2789 if (rename(playlist->control_filename,
2790 current_playlist.control_filename) < 0)
2791 return -1;
2792 current_playlist.control_fd = open(current_playlist.control_filename,
2793 O_RDWR);
2794 if (current_playlist.control_fd < 0)
2795 return -1;
2796 current_playlist.control_created = true;
2798 current_playlist.dirlen = playlist->dirlen;
2800 if (playlist->indices && playlist->indices != current_playlist.indices)
2802 memcpy(current_playlist.indices, playlist->indices,
2803 playlist->max_playlist_size*sizeof(int));
2804 #ifdef HAVE_DIRCACHE
2805 memcpy(current_playlist.filenames, playlist->filenames,
2806 playlist->max_playlist_size*sizeof(int));
2807 #endif
2810 current_playlist.first_index = playlist->first_index;
2811 current_playlist.amount = playlist->amount;
2812 current_playlist.last_insert_pos = playlist->last_insert_pos;
2813 current_playlist.seed = playlist->seed;
2814 current_playlist.shuffle_modified = playlist->shuffle_modified;
2815 current_playlist.deleted = playlist->deleted;
2816 current_playlist.num_inserted_tracks = playlist->num_inserted_tracks;
2818 memcpy(current_playlist.control_cache, playlist->control_cache,
2819 sizeof(current_playlist.control_cache));
2820 current_playlist.num_cached = playlist->num_cached;
2821 current_playlist.pending_control_sync = playlist->pending_control_sync;
2823 return 0;
2827 * Close files and delete control file for non-current playlist.
2829 void playlist_close(struct playlist_info* playlist)
2831 if (!playlist)
2832 return;
2834 if (playlist->fd >= 0)
2835 close(playlist->fd);
2837 if (playlist->control_fd >= 0)
2838 close(playlist->control_fd);
2840 if (playlist->control_created)
2841 remove(playlist->control_filename);
2844 void playlist_sync(struct playlist_info* playlist)
2846 if (!playlist)
2847 playlist = &current_playlist;
2849 sync_control(playlist, false);
2850 if ((audio_status() & AUDIO_STATUS_PLAY) && playlist->started)
2851 audio_flush_and_reload_tracks();
2853 #ifdef HAVE_DIRCACHE
2854 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
2855 #endif
2859 * Insert track into playlist at specified position (or one of the special
2860 * positions). Returns position where track was inserted or -1 if error.
2862 int playlist_insert_track(struct playlist_info* playlist, const char *filename,
2863 int position, bool queue, bool sync)
2865 int result;
2867 if (!playlist)
2868 playlist = &current_playlist;
2870 if (check_control(playlist) < 0)
2872 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2873 return -1;
2876 result = add_track_to_playlist(playlist, filename, position, queue, -1);
2878 /* Check if we want manually sync later. For example when adding
2879 * bunch of files from tagcache, syncing after every file wouldn't be
2880 * a good thing to do. */
2881 if (sync && result >= 0)
2882 playlist_sync(playlist);
2884 return result;
2888 * Insert all tracks from specified directory into playlist.
2890 int playlist_insert_directory(struct playlist_info* playlist,
2891 const char *dirname, int position, bool queue,
2892 bool recurse)
2894 int result;
2895 unsigned char *count_str;
2896 struct directory_search_context context;
2898 if (!playlist)
2899 playlist = &current_playlist;
2901 if (check_control(playlist) < 0)
2903 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2904 return -1;
2907 if (position == PLAYLIST_REPLACE)
2909 if (playlist_remove_all_tracks(playlist) == 0)
2910 position = PLAYLIST_INSERT_LAST;
2911 else
2912 return -1;
2915 if (queue)
2916 count_str = ID2P(LANG_PLAYLIST_QUEUE_COUNT);
2917 else
2918 count_str = ID2P(LANG_PLAYLIST_INSERT_COUNT);
2920 display_playlist_count(0, count_str, false);
2922 context.playlist = playlist;
2923 context.position = position;
2924 context.queue = queue;
2925 context.count = 0;
2927 cpu_boost(true);
2929 result = playlist_directory_tracksearch(dirname, recurse,
2930 directory_search_callback, &context);
2932 sync_control(playlist, false);
2934 cpu_boost(false);
2936 display_playlist_count(context.count, count_str, true);
2938 if ((audio_status() & AUDIO_STATUS_PLAY) && playlist->started)
2939 audio_flush_and_reload_tracks();
2941 #ifdef HAVE_DIRCACHE
2942 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
2943 #endif
2945 return result;
2949 * Insert all tracks from specified playlist into dynamic playlist.
2951 int playlist_insert_playlist(struct playlist_info* playlist, const char *filename,
2952 int position, bool queue)
2954 int fd;
2955 int max;
2956 char *temp_ptr;
2957 const char *dir;
2958 unsigned char *count_str;
2959 char temp_buf[MAX_PATH+1];
2960 char trackname[MAX_PATH+1];
2961 int count = 0;
2962 int result = 0;
2963 bool utf8 = is_m3u8(filename);
2965 if (!playlist)
2966 playlist = &current_playlist;
2968 if (check_control(playlist) < 0)
2970 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
2971 return -1;
2974 fd = open(filename, O_RDONLY);
2975 if (fd < 0)
2977 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_ACCESS_ERROR));
2978 return -1;
2981 /* we need the directory name for formatting purposes */
2982 dir = filename;
2984 temp_ptr = strrchr(filename+1,'/');
2985 if (temp_ptr)
2986 *temp_ptr = 0;
2987 else
2988 dir = "/";
2990 if (queue)
2991 count_str = ID2P(LANG_PLAYLIST_QUEUE_COUNT);
2992 else
2993 count_str = ID2P(LANG_PLAYLIST_INSERT_COUNT);
2995 display_playlist_count(count, count_str, false);
2997 if (position == PLAYLIST_REPLACE)
2999 if (playlist_remove_all_tracks(playlist) == 0)
3000 position = PLAYLIST_INSERT_LAST;
3001 else return -1;
3004 cpu_boost(true);
3006 while ((max = read_line(fd, temp_buf, sizeof(temp_buf))) > 0)
3008 /* user abort */
3009 if (action_userabort(TIMEOUT_NOBLOCK))
3010 break;
3012 if (count == 0 && is_utf8_bom(temp_buf, max))
3014 max -= BOM_SIZE;
3015 memmove(temp_buf, temp_buf + BOM_SIZE, max);
3018 if (temp_buf[0] != '#' && temp_buf[0] != '\0')
3020 int insert_pos;
3022 if (!utf8)
3024 /* Use trackname as a temporay buffer. Note that trackname must
3025 * be as large as temp_buf.
3027 max = convert_m3u(temp_buf, max, sizeof(temp_buf), trackname);
3030 /* we need to format so that relative paths are correctly
3031 handled */
3032 if (format_track_path(trackname, temp_buf, sizeof(trackname), max,
3033 dir) < 0)
3035 result = -1;
3036 break;
3039 insert_pos = add_track_to_playlist(playlist, trackname, position,
3040 queue, -1);
3042 if (insert_pos < 0)
3044 result = -1;
3045 break;
3048 /* Make sure tracks are inserted in correct order if user
3049 requests INSERT_FIRST */
3050 if (position == PLAYLIST_INSERT_FIRST || position >= 0)
3051 position = insert_pos + 1;
3053 count++;
3055 if ((count%PLAYLIST_DISPLAY_COUNT) == 0)
3057 display_playlist_count(count, count_str, false);
3059 if (count == PLAYLIST_DISPLAY_COUNT &&
3060 (audio_status() & AUDIO_STATUS_PLAY) &&
3061 playlist->started)
3062 audio_flush_and_reload_tracks();
3066 /* let the other threads work */
3067 yield();
3070 close(fd);
3072 if (temp_ptr)
3073 *temp_ptr = '/';
3075 sync_control(playlist, false);
3077 cpu_boost(false);
3079 display_playlist_count(count, count_str, true);
3081 if ((audio_status() & AUDIO_STATUS_PLAY) && playlist->started)
3082 audio_flush_and_reload_tracks();
3084 #ifdef HAVE_DIRCACHE
3085 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
3086 #endif
3088 return result;
3092 * Delete track at specified index. If index is PLAYLIST_DELETE_CURRENT then
3093 * we want to delete the current playing track.
3095 int playlist_delete(struct playlist_info* playlist, int index)
3097 int result = 0;
3099 if (!playlist)
3100 playlist = &current_playlist;
3102 if (check_control(playlist) < 0)
3104 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
3105 return -1;
3108 if (index == PLAYLIST_DELETE_CURRENT)
3109 index = playlist->index;
3111 result = remove_track_from_playlist(playlist, index, true);
3113 if (result != -1 && (audio_status() & AUDIO_STATUS_PLAY) &&
3114 playlist->started)
3115 audio_flush_and_reload_tracks();
3117 return result;
3121 * Move track at index to new_index. Tracks between the two are shifted
3122 * appropriately. Returns 0 on success and -1 on failure.
3124 int playlist_move(struct playlist_info* playlist, int index, int new_index)
3126 int result;
3127 int seek;
3128 bool control_file;
3129 bool queue;
3130 bool current = false;
3131 int r;
3132 char filename[MAX_PATH];
3134 if (!playlist)
3135 playlist = &current_playlist;
3137 if (check_control(playlist) < 0)
3139 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_CONTROL_ACCESS_ERROR));
3140 return -1;
3143 if (index == new_index)
3144 return -1;
3146 if (index == playlist->index)
3147 /* Moving the current track */
3148 current = true;
3150 control_file = playlist->indices[index] & PLAYLIST_INSERT_TYPE_MASK;
3151 queue = playlist->indices[index] & PLAYLIST_QUEUE_MASK;
3152 seek = playlist->indices[index] & PLAYLIST_SEEK_MASK;
3154 if (get_filename(playlist, index, seek, control_file, filename,
3155 sizeof(filename)) < 0)
3156 return -1;
3158 /* Delete track from original position */
3159 result = remove_track_from_playlist(playlist, index, true);
3161 if (result != -1)
3163 /* We want to insert the track at the position that was specified by
3164 new_index. This may be different then new_index because of the
3165 shifting that occurred after the delete */
3166 r = rotate_index(playlist, new_index);
3168 if (r == 0)
3169 /* First index */
3170 new_index = PLAYLIST_PREPEND;
3171 else if (r == playlist->amount)
3172 /* Append */
3173 new_index = PLAYLIST_INSERT_LAST;
3174 else
3175 /* Calculate index of desired position */
3176 new_index = (r+playlist->first_index)%playlist->amount;
3178 result = add_track_to_playlist(playlist, filename, new_index, queue,
3179 -1);
3181 if (result != -1)
3183 if (current)
3185 /* Moved the current track */
3186 switch (new_index)
3188 case PLAYLIST_PREPEND:
3189 playlist->index = playlist->first_index;
3190 break;
3191 case PLAYLIST_INSERT_LAST:
3192 playlist->index = playlist->first_index - 1;
3193 if (playlist->index < 0)
3194 playlist->index += playlist->amount;
3195 break;
3196 default:
3197 playlist->index = new_index;
3198 break;
3202 if ((audio_status() & AUDIO_STATUS_PLAY) && playlist->started)
3203 audio_flush_and_reload_tracks();
3207 #ifdef HAVE_DIRCACHE
3208 queue_post(&playlist_queue, PLAYLIST_LOAD_POINTERS, 0);
3209 #endif
3211 return result;
3214 /* shuffle currently playing playlist */
3215 int playlist_randomise(struct playlist_info* playlist, unsigned int seed,
3216 bool start_current)
3218 int result;
3220 if (!playlist)
3221 playlist = &current_playlist;
3223 check_control(playlist);
3225 result = randomise_playlist(playlist, seed, start_current, true);
3227 if (result != -1 && (audio_status() & AUDIO_STATUS_PLAY) &&
3228 playlist->started)
3229 audio_flush_and_reload_tracks();
3231 return result;
3234 /* sort currently playing playlist */
3235 int playlist_sort(struct playlist_info* playlist, bool start_current)
3237 int result;
3239 if (!playlist)
3240 playlist = &current_playlist;
3242 check_control(playlist);
3244 result = sort_playlist(playlist, start_current, true);
3246 if (result != -1 && (audio_status() & AUDIO_STATUS_PLAY) &&
3247 playlist->started)
3248 audio_flush_and_reload_tracks();
3250 return result;
3253 /* returns true if playlist has been modified */
3254 bool playlist_modified(const struct playlist_info* playlist)
3256 if (!playlist)
3257 playlist = &current_playlist;
3259 if (playlist->shuffle_modified ||
3260 playlist->deleted ||
3261 playlist->num_inserted_tracks > 0)
3262 return true;
3264 return false;
3267 /* returns index of first track in playlist */
3268 int playlist_get_first_index(const struct playlist_info* playlist)
3270 if (!playlist)
3271 playlist = &current_playlist;
3273 return playlist->first_index;
3276 /* returns shuffle seed of playlist */
3277 int playlist_get_seed(const struct playlist_info* playlist)
3279 if (!playlist)
3280 playlist = &current_playlist;
3282 return playlist->seed;
3285 /* returns number of tracks in playlist (includes queued/inserted tracks) */
3286 int playlist_amount_ex(const struct playlist_info* playlist)
3288 if (!playlist)
3289 playlist = &current_playlist;
3291 return playlist->amount;
3294 /* returns full path of playlist (minus extension) */
3295 char *playlist_name(const struct playlist_info* playlist, char *buf,
3296 int buf_size)
3298 char *sep;
3300 if (!playlist)
3301 playlist = &current_playlist;
3303 snprintf(buf, buf_size, "%s", playlist->filename+playlist->dirlen);
3305 if (!buf[0])
3306 return NULL;
3308 /* Remove extension */
3309 sep = strrchr(buf, '.');
3310 if (sep)
3311 *sep = 0;
3313 return buf;
3316 /* returns the playlist filename */
3317 char *playlist_get_name(const struct playlist_info* playlist, char *buf,
3318 int buf_size)
3320 if (!playlist)
3321 playlist = &current_playlist;
3323 snprintf(buf, buf_size, "%s", playlist->filename);
3325 if (!buf[0])
3326 return NULL;
3328 return buf;
3331 /* Fills info structure with information about track at specified index.
3332 Returns 0 on success and -1 on failure */
3333 int playlist_get_track_info(struct playlist_info* playlist, int index,
3334 struct playlist_track_info* info)
3336 int seek;
3337 bool control_file;
3339 if (!playlist)
3340 playlist = &current_playlist;
3342 if (index < 0 || index >= playlist->amount)
3343 return -1;
3345 control_file = playlist->indices[index] & PLAYLIST_INSERT_TYPE_MASK;
3346 seek = playlist->indices[index] & PLAYLIST_SEEK_MASK;
3348 if (get_filename(playlist, index, seek, control_file, info->filename,
3349 sizeof(info->filename)) < 0)
3350 return -1;
3352 info->attr = 0;
3354 if (control_file)
3356 if (playlist->indices[index] & PLAYLIST_QUEUE_MASK)
3357 info->attr |= PLAYLIST_ATTR_QUEUED;
3358 else
3359 info->attr |= PLAYLIST_ATTR_INSERTED;
3363 if (playlist->indices[index] & PLAYLIST_SKIPPED)
3364 info->attr |= PLAYLIST_ATTR_SKIPPED;
3366 info->index = index;
3367 info->display_index = rotate_index(playlist, index) + 1;
3369 return 0;
3372 /* save the current dynamic playlist to specified file */
3373 int playlist_save(struct playlist_info* playlist, char *filename)
3375 int fd;
3376 int i, index;
3377 int count = 0;
3378 char path[MAX_PATH+1];
3379 char tmp_buf[MAX_PATH+1];
3380 int result = 0;
3381 bool overwrite_current = false;
3382 int* index_buf = NULL;
3384 if (!playlist)
3385 playlist = &current_playlist;
3387 if (playlist->amount <= 0)
3388 return -1;
3390 /* use current working directory as base for pathname */
3391 if (format_track_path(path, filename, sizeof(tmp_buf),
3392 strlen(filename)+1, getcwd(NULL, -1)) < 0)
3393 return -1;
3395 if (!strncmp(playlist->filename, path, strlen(path)))
3397 /* Attempting to overwrite current playlist file.*/
3399 if (playlist->buffer_size < (int)(playlist->amount * sizeof(int)))
3401 /* not enough buffer space to store updated indices */
3402 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_ACCESS_ERROR));
3403 return -1;
3406 /* in_ram buffer is unused for m3u files so we'll use for storing
3407 updated indices */
3408 index_buf = (int*)playlist->buffer;
3410 /* use temporary pathname */
3411 snprintf(path, sizeof(path), "%s_temp", playlist->filename);
3412 overwrite_current = true;
3415 fd = open(path, O_CREAT|O_WRONLY|O_TRUNC);
3416 if (fd < 0)
3418 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_ACCESS_ERROR));
3419 return -1;
3422 display_playlist_count(count, ID2P(LANG_PLAYLIST_SAVE_COUNT), false);
3424 cpu_boost(true);
3426 if (is_m3u8(path))
3428 /* some applications require a BOM to read the file properly */
3429 write(fd, BOM, BOM_SIZE);
3432 index = playlist->first_index;
3433 for (i=0; i<playlist->amount; i++)
3435 bool control_file;
3436 bool queue;
3437 int seek;
3439 /* user abort */
3440 if (action_userabort(TIMEOUT_NOBLOCK))
3442 result = -1;
3443 break;
3446 control_file = playlist->indices[index] & PLAYLIST_INSERT_TYPE_MASK;
3447 queue = playlist->indices[index] & PLAYLIST_QUEUE_MASK;
3448 seek = playlist->indices[index] & PLAYLIST_SEEK_MASK;
3450 /* Don't save queued files */
3451 if (!queue)
3453 if (get_filename(playlist, index, seek, control_file, tmp_buf,
3454 MAX_PATH+1) < 0)
3456 result = -1;
3457 break;
3460 if (overwrite_current)
3461 index_buf[count] = lseek(fd, 0, SEEK_CUR);
3463 if (fdprintf(fd, "%s\n", tmp_buf) < 0)
3465 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_ACCESS_ERROR));
3466 result = -1;
3467 break;
3470 count++;
3472 if ((count % PLAYLIST_DISPLAY_COUNT) == 0)
3473 display_playlist_count(count, ID2P(LANG_PLAYLIST_SAVE_COUNT),
3474 false);
3476 yield();
3479 index = (index+1)%playlist->amount;
3482 display_playlist_count(count, ID2P(LANG_PLAYLIST_SAVE_COUNT), true);
3484 close(fd);
3486 if (overwrite_current && result >= 0)
3488 result = -1;
3490 mutex_lock(&playlist->control_mutex);
3492 /* Replace the current playlist with the new one and update indices */
3493 close(playlist->fd);
3494 if (remove(playlist->filename) >= 0)
3496 if (rename(path, playlist->filename) >= 0)
3498 playlist->fd = open(playlist->filename, O_RDONLY);
3499 if (playlist->fd >= 0)
3501 index = playlist->first_index;
3502 for (i=0, count=0; i<playlist->amount; i++)
3504 if (!(playlist->indices[index] & PLAYLIST_QUEUE_MASK))
3506 playlist->indices[index] = index_buf[count];
3507 count++;
3509 index = (index+1)%playlist->amount;
3512 /* we need to recreate control because inserted tracks are
3513 now part of the playlist and shuffle has been
3514 invalidated */
3515 result = recreate_control(playlist);
3520 mutex_unlock(&playlist->control_mutex);
3524 cpu_boost(false);
3526 return result;
3530 * Search specified directory for tracks and notify via callback. May be
3531 * called recursively.
3533 int playlist_directory_tracksearch(const char* dirname, bool recurse,
3534 int (*callback)(char*, void*),
3535 void* context)
3537 char buf[MAX_PATH+1];
3538 int result = 0;
3539 int num_files = 0;
3540 int i;
3541 struct entry *files;
3542 struct tree_context* tc = tree_get_context();
3543 int old_dirfilter = *(tc->dirfilter);
3545 if (!callback)
3546 return -1;
3548 /* use the tree browser dircache to load files */
3549 *(tc->dirfilter) = SHOW_ALL;
3551 if (ft_load(tc, dirname) < 0)
3553 gui_syncsplash(HZ*2, ID2P(LANG_PLAYLIST_DIRECTORY_ACCESS_ERROR));
3554 *(tc->dirfilter) = old_dirfilter;
3555 return -1;
3558 files = (struct entry*) tc->dircache;
3559 num_files = tc->filesindir;
3561 /* we've overwritten the dircache so tree browser will need to be
3562 reloaded */
3563 reload_directory();
3565 for (i=0; i<num_files; i++)
3567 /* user abort */
3568 if (action_userabort(TIMEOUT_NOBLOCK))
3570 result = -1;
3571 break;
3574 if (files[i].attr & ATTR_DIRECTORY)
3576 if (recurse)
3578 /* recursively add directories */
3579 snprintf(buf, sizeof(buf), "%s/%s", dirname, files[i].name);
3580 result = playlist_directory_tracksearch(buf, recurse,
3581 callback, context);
3582 if (result < 0)
3583 break;
3585 /* we now need to reload our current directory */
3586 if(ft_load(tc, dirname) < 0)
3588 result = -1;
3589 break;
3592 files = (struct entry*) tc->dircache;
3593 num_files = tc->filesindir;
3594 if (!num_files)
3596 result = -1;
3597 break;
3600 else
3601 continue;
3603 else if ((files[i].attr & FILE_ATTR_MASK) == FILE_ATTR_AUDIO)
3605 snprintf(buf, sizeof(buf), "%s/%s", dirname, files[i].name);
3607 if (callback(buf, context) != 0)
3609 result = -1;
3610 break;
3613 /* let the other threads work */
3614 yield();
3618 /* restore dirfilter */
3619 *(tc->dirfilter) = old_dirfilter;
3621 return result;