1 /***************************************************************************
3 * Open \______ \ ____ ____ | | _\_ |__ _______ ___
4 * Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
5 * Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
6 * Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
10 * Copyright (C) 2005 by Miika Pekkarinen
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 ****************************************************************************/
25 * ----------x---------x------------------x-----
27 * +---------------x-------+ | TagCache | Libraries
28 * | Modification routines | | Core |
29 * +-x---------x-----------+ | |
31 * | +------x-------------x-+ +-------------x-----+ |
32 * | | x==x Filters & clauses | |
33 * | | Search routines | +-------------------+ |
34 * | | x============================x DirCache
35 * | +-x--------------------+ | (optional)
37 * | | +-------------------------------+ +---------+ |
38 * | | | DB Commit (sort,unique,index) | | | |
39 * | | +-x--------------------------x--+ | Control | |
40 * | | | (R/W) | (R) | Thread | |
41 * | | | +----------------------+ | | | |
42 * | | | | TagCache DB Builder | | +---------+ |
43 * | | | +-x-------------x------+ | |
44 * | | | | (R) | (W) | |
45 * | | | | +--x--------x---------+ |
46 * | | | | | Temporary Commit DB | |
47 * | | | | +---------------------+ |
48 * +-x----x-------x--+ |
49 * | TagCache RAM DB x==\(W) +-----------------+ |
50 * +-----------------+ \===x | |
51 * | | | | (R) | Ram DB Loader x============x DirCache
52 * +-x----x---x---x---+ /==x | | (optional)
53 * | Tagcache Disk DB x==/ +-----------------+ |
54 * +------------------+ |
58 /* #define LOGF_ENABLE */
64 #include "ata_idle_notify.h"
82 #include "eeprom_settings.h"
86 #define yield() do { } while(0)
87 #define sim_sleep(timeout) do { } while(0)
88 #define do_timed_yield() do { } while(0)
92 /* Tag Cache thread. */
93 static struct event_queue tagcache_queue
;
94 static long tagcache_stack
[(DEFAULT_STACK_SIZE
+ 0x4000)/sizeof(long)];
95 static const char tagcache_thread_name
[] = "tagcache";
98 #define UNTAGGED "<Untagged>"
100 /* Previous path when scanning directory tree recursively. */
101 static char curpath
[TAG_MAXLEN
+32];
103 /* Used when removing duplicates. */
104 static char *tempbuf
; /* Allocated when needed. */
105 static long tempbufidx
; /* Current location in buffer. */
106 static long tempbuf_size
; /* Buffer size (TEMPBUF_SIZE). */
107 static long tempbuf_left
; /* Buffer space left. */
108 static long tempbuf_pos
;
110 #define SORTED_TAGS_COUNT 8
111 #define TAGCACHE_IS_UNIQUE(tag) (BIT_N(tag) & TAGCACHE_UNIQUE_TAGS)
112 #define TAGCACHE_IS_SORTED(tag) (BIT_N(tag) & TAGCACHE_SORTED_TAGS)
113 #define TAGCACHE_IS_NUMERIC_OR_NONUNIQUE(tag) \
114 (BIT_N(tag) & (TAGCACHE_NUMERIC_TAGS | ~TAGCACHE_UNIQUE_TAGS))
115 /* Tags we want to get sorted (loaded to the tempbuf). */
116 #define TAGCACHE_SORTED_TAGS ((1LU << tag_artist) | (1LU << tag_album) | \
117 (1LU << tag_genre) | (1LU << tag_composer) | (1LU << tag_comment) | \
118 (1LU << tag_albumartist) | (1LU << tag_grouping) | (1LU << tag_title))
120 /* Uniqued tags (we can use these tags with filters and conditional clauses). */
121 #define TAGCACHE_UNIQUE_TAGS ((1LU << tag_artist) | (1LU << tag_album) | \
122 (1LU << tag_genre) | (1LU << tag_composer) | (1LU << tag_comment) | \
123 (1LU << tag_albumartist) | (1LU << tag_grouping))
125 /* String presentation of the tags defined in tagcache.h. Must be in correct order! */
126 static const char *tags_str
[] = { "artist", "album", "genre", "title",
127 "filename", "composer", "comment", "albumartist", "grouping", "year",
128 "discnumber", "tracknumber", "bitrate", "length", "playcount", "rating",
129 "playtime", "lastplayed", "commitid", "mtime" };
131 /* Status information of the tagcache. */
132 static struct tagcache_stat tc_stat
;
134 /* Queue commands. */
135 enum tagcache_queue
{
142 /* Internal tagcache command queue. */
143 CMD_UPDATE_MASTER_HEADER
,
147 struct tagcache_command_entry
{
155 static struct tagcache_command_entry command_queue
[TAGCACHE_COMMAND_QUEUE_LENGTH
];
156 static volatile int command_queue_widx
= 0;
157 static volatile int command_queue_ridx
= 0;
158 static struct mutex command_queue_mutex
;
161 /* Tag database structures. */
163 /* Variable-length tag entry in tag files. */
164 struct tagfile_entry
{
165 int32_t tag_length
; /* Length of the data in bytes including '\0' */
166 int32_t idx_id
; /* Corresponding entry location in index file of not unique tags */
167 char tag_data
[0]; /* Begin of the tag data */
170 /* Fixed-size tag entry in master db index. */
172 int32_t tag_seek
[TAG_COUNT
]; /* Location of tag data or numeric tag data */
173 int32_t flag
; /* Status flags */
176 /* Header is the same in every file. */
177 struct tagcache_header
{
178 int32_t magic
; /* Header version number */
179 int32_t datasize
; /* Data size in bytes */
180 int32_t entry_count
; /* Number of entries in this file */
183 struct master_header
{
184 struct tagcache_header tch
;
185 int32_t serial
; /* Increasing counting number */
186 int32_t commitid
; /* Number of commits so far */
190 /* For the endianess correction */
191 static const char *tagfile_entry_ec
= "ll";
193 Note: This should be (1 + TAG_COUNT) amount of l's.
195 static const char *index_entry_ec
= "lllllllllllllllllllll";
197 static const char *tagcache_header_ec
= "lll";
198 static const char *master_header_ec
= "llllll";
200 static struct master_header current_tcmh
;
202 #ifdef HAVE_TC_RAMCACHE
203 /* Header is created when loading database to ram. */
204 struct ramcache_header
{
205 struct master_header h
; /* Header from the master index */
206 struct index_entry
*indices
; /* Master index file content */
207 char *tags
[TAG_COUNT
]; /* Tag file content (not including filename tag) */
208 int entry_count
[TAG_COUNT
]; /* Number of entries in the indices. */
211 # ifdef HAVE_EEPROM_SETTINGS
212 struct statefile_header
{
213 struct ramcache_header
*hdr
;
214 struct tagcache_stat tc_stat
;
218 /* Pointer to allocated ramcache_header */
219 static struct ramcache_header
*hdr
;
223 * Full tag entries stored in a temporary file waiting
224 * for commit to the cache. */
225 struct temp_file_entry
{
226 long tag_offset
[TAG_COUNT
];
227 short tag_length
[TAG_COUNT
];
233 struct tempbuf_id_list
{
235 struct tempbuf_id_list
*next
;
238 struct tempbuf_searchidx
{
242 struct tempbuf_id_list idlist
;
245 /* Lookup buffer for fixing messed up index while after sorting. */
246 static long commit_entry_count
;
247 static long lookup_buffer_depth
;
248 static struct tempbuf_searchidx
**lookup
;
250 /* Used when building the temporary file. */
251 static int cachefd
= -1, filenametag_fd
;
252 static int total_entry_count
= 0;
253 static int data_size
= 0;
254 static int processed_dir_count
;
256 /* Thread safe locking */
257 static volatile int write_lock
;
258 static volatile int read_lock
;
260 static bool delete_entry(long idx_id
);
262 const char* tagcache_tag_to_str(int tag
)
264 return tags_str
[tag
];
269 * Returns true if specified flag is still present, i.e., dircache
270 * has not been reloaded.
272 static bool is_dircache_intact(void)
274 return dircache_get_appflag(DIRCACHE_APPFLAG_TAGCACHE
);
278 static int open_tag_fd(struct tagcache_header
*hdr
, int tag
, bool write
)
284 if (TAGCACHE_IS_NUMERIC(tag
) || tag
< 0 || tag
>= TAG_COUNT
)
287 snprintf(buf
, sizeof buf
, TAGCACHE_FILE_INDEX
, tag
);
289 fd
= open(buf
, write
? O_RDWR
: O_RDONLY
);
292 logf("tag file open failed: tag=%d write=%d file=%s", tag
, write
, buf
);
293 tc_stat
.ready
= false;
297 /* Check the header. */
298 rc
= ecread(fd
, hdr
, 1, tagcache_header_ec
, tc_stat
.econ
);
299 if (hdr
->magic
!= TAGCACHE_MAGIC
|| rc
!= sizeof(struct tagcache_header
))
301 logf("header error");
302 tc_stat
.ready
= false;
310 static int open_master_fd(struct master_header
*hdr
, bool write
)
315 fd
= open(TAGCACHE_FILE_MASTER
, write
? O_RDWR
: O_RDONLY
);
318 logf("master file open failed for R/W");
319 tc_stat
.ready
= false;
323 tc_stat
.econ
= false;
325 /* Check the header. */
326 rc
= read(fd
, hdr
, sizeof(struct master_header
));
327 if (hdr
->tch
.magic
== TAGCACHE_MAGIC
&& rc
== sizeof(struct master_header
))
333 /* Trying to read again, this time with endianess correction enabled. */
334 lseek(fd
, 0, SEEK_SET
);
336 rc
= ecread(fd
, hdr
, 1, master_header_ec
, true);
337 if (hdr
->tch
.magic
!= TAGCACHE_MAGIC
|| rc
!= sizeof(struct master_header
))
339 logf("header error");
340 tc_stat
.ready
= false;
351 static bool do_timed_yield(void)
353 /* Sorting can lock up for quite a while, so yield occasionally */
354 static long wakeup_tick
= 0;
355 if (current_tick
>= wakeup_tick
)
357 wakeup_tick
= current_tick
+ (HZ
/4);
365 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
366 static long find_entry_ram(const char *filename
,
367 const struct dirent
*dc
)
369 static long last_pos
= 0;
372 /* Check if we tagcache is loaded into ram. */
373 if (!tc_stat
.ramcache
)
377 dc
= dircache_get_entry_ptr(filename
);
381 logf("tagcache: file not found.");
392 for (; i
< hdr
->h
.tch
.entry_count
; i
++)
394 if (hdr
->indices
[i
].tag_seek
[tag_filename
] == (long)dc
)
396 last_pos
= MAX(0, i
- 3);
413 static long find_entry_disk(const char *filename
)
415 struct tagcache_header tch
;
416 static long last_pos
= -1;
417 long pos_history
[POS_HISTORY_COUNT
];
418 long pos_history_idx
= 0;
420 struct tagfile_entry tfe
;
422 char buf
[TAG_MAXLEN
+32];
433 if ( (fd
= open_tag_fd(&tch
, tag_filename
, false)) < 0)
440 lseek(fd
, last_pos
, SEEK_SET
);
442 lseek(fd
, sizeof(struct tagcache_header
), SEEK_SET
);
446 pos
= lseek(fd
, 0, SEEK_CUR
);
447 for (i
= pos_history_idx
-1; i
>= 0; i
--)
448 pos_history
[i
+1] = pos_history
[i
];
449 pos_history
[0] = pos
;
451 if (ecread(fd
, &tfe
, 1, tagfile_entry_ec
, tc_stat
.econ
)
452 != sizeof(struct tagfile_entry
))
457 if (tfe
.tag_length
>= (long)sizeof(buf
))
459 logf("too long tag #1");
465 if (read(fd
, buf
, tfe
.tag_length
) != tfe
.tag_length
)
467 logf("read error #2");
473 if (!strcasecmp(filename
, buf
))
475 last_pos
= pos_history
[pos_history_idx
];
480 if (pos_history_idx
< POS_HISTORY_COUNT
- 1)
494 if (fd
!= filenametag_fd
)
499 if (fd
!= filenametag_fd
)
505 static int find_index(const char *filename
)
509 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
510 if (tc_stat
.ramcache
&& is_dircache_intact())
511 idx_id
= find_entry_ram(filename
, NULL
);
515 idx_id
= find_entry_disk(filename
);
520 bool tagcache_find_index(struct tagcache_search
*tcs
, const char *filename
)
527 idx_id
= find_index(filename
);
531 if (!tagcache_search(tcs
, tag_filename
))
534 tcs
->entry_count
= 0;
535 tcs
->idx_id
= idx_id
;
540 static bool get_index(int masterfd
, int idxid
,
541 struct index_entry
*idx
, bool use_ram
)
543 bool localfd
= false;
547 logf("Incorrect idxid: %d", idxid
);
551 #ifdef HAVE_TC_RAMCACHE
552 if (tc_stat
.ramcache
&& use_ram
)
554 if (hdr
->indices
[idxid
].flag
& FLAG_DELETED
)
557 memcpy(idx
, &hdr
->indices
[idxid
], sizeof(struct index_entry
));
566 struct master_header tcmh
;
569 masterfd
= open_master_fd(&tcmh
, false);
574 lseek(masterfd
, idxid
* sizeof(struct index_entry
)
575 + sizeof(struct master_header
), SEEK_SET
);
576 if (ecread(masterfd
, idx
, 1, index_entry_ec
, tc_stat
.econ
)
577 != sizeof(struct index_entry
))
579 logf("read error #3");
589 if (idx
->flag
& FLAG_DELETED
)
597 static bool write_index(int masterfd
, int idxid
, struct index_entry
*idx
)
599 /* We need to exclude all memory only flags & tags when writing to disk. */
600 if (idx
->flag
& FLAG_DIRCACHE
)
602 logf("memory only flags!");
606 #ifdef HAVE_TC_RAMCACHE
607 /* Only update numeric data. Writing the whole index to RAM by memcpy
608 * destroys dircache pointers!
610 if (tc_stat
.ramcache
)
613 struct index_entry
*idx_ram
= &hdr
->indices
[idxid
];
615 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
617 if (TAGCACHE_IS_NUMERIC(tag
))
619 idx_ram
->tag_seek
[tag
] = idx
->tag_seek
[tag
];
623 /* Don't touch the dircache flag or attributes. */
624 idx_ram
->flag
= (idx
->flag
& 0x0000ffff)
625 | (idx_ram
->flag
& (0xffff0000 | FLAG_DIRCACHE
));
629 lseek(masterfd
, idxid
* sizeof(struct index_entry
)
630 + sizeof(struct master_header
), SEEK_SET
);
631 if (ecwrite(masterfd
, idx
, 1, index_entry_ec
, tc_stat
.econ
)
632 != sizeof(struct index_entry
))
634 logf("write error #3");
635 logf("idxid: %d", idxid
);
642 #endif /* !__PCTOOL__ */
644 static bool open_files(struct tagcache_search
*tcs
, int tag
)
646 if (tcs
->idxfd
[tag
] < 0)
650 snprintf(fn
, sizeof fn
, TAGCACHE_FILE_INDEX
, tag
);
651 tcs
->idxfd
[tag
] = open(fn
, O_RDONLY
);
654 if (tcs
->idxfd
[tag
] < 0)
656 logf("File not open!");
663 static bool retrieve(struct tagcache_search
*tcs
, struct index_entry
*idx
,
664 int tag
, char *buf
, long size
)
666 struct tagfile_entry tfe
;
671 if (TAGCACHE_IS_NUMERIC(tag
))
674 seek
= idx
->tag_seek
[tag
];
677 logf("Retrieve failed");
681 #ifdef HAVE_TC_RAMCACHE
684 struct tagfile_entry
*ep
;
686 # ifdef HAVE_DIRCACHE
687 if (tag
== tag_filename
&& (idx
->flag
& FLAG_DIRCACHE
)
688 && is_dircache_intact())
690 dircache_copy_path((struct dirent
*)seek
,
696 if (tag
!= tag_filename
)
698 ep
= (struct tagfile_entry
*)&hdr
->tags
[tag
][seek
];
699 strncpy(buf
, ep
->tag_data
, size
-1);
706 if (!open_files(tcs
, tag
))
709 lseek(tcs
->idxfd
[tag
], seek
, SEEK_SET
);
710 if (ecread(tcs
->idxfd
[tag
], &tfe
, 1, tagfile_entry_ec
, tc_stat
.econ
)
711 != sizeof(struct tagfile_entry
))
713 logf("read error #5");
717 if (tfe
.tag_length
>= size
)
719 logf("too small buffer");
723 if (read(tcs
->idxfd
[tag
], buf
, tfe
.tag_length
) !=
726 logf("read error #6");
730 buf
[tfe
.tag_length
] = '\0';
735 static long check_virtual_tags(int tag
, const struct index_entry
*idx
)
741 case tag_virt_length_sec
:
742 data
= (idx
->tag_seek
[tag_length
]/1000) % 60;
745 case tag_virt_length_min
:
746 data
= (idx
->tag_seek
[tag_length
]/1000) / 60;
749 case tag_virt_playtime_sec
:
750 data
= (idx
->tag_seek
[tag_playtime
]/1000) % 60;
753 case tag_virt_playtime_min
:
754 data
= (idx
->tag_seek
[tag_playtime
]/1000) / 60;
757 case tag_virt_autoscore
:
758 if (idx
->tag_seek
[tag_length
] == 0
759 || idx
->tag_seek
[tag_playcount
] == 0)
765 data
= 100 * idx
->tag_seek
[tag_playtime
]
766 / idx
->tag_seek
[tag_length
]
767 / idx
->tag_seek
[tag_playcount
];
771 /* How many commits before the file has been added to the DB. */
772 case tag_virt_entryage
:
773 data
= current_tcmh
.commitid
- idx
->tag_seek
[tag_commitid
] - 1;
777 data
= idx
->tag_seek
[tag
];
783 long tagcache_get_numeric(const struct tagcache_search
*tcs
, int tag
)
785 struct index_entry idx
;
790 if (!TAGCACHE_IS_NUMERIC(tag
))
793 if (!get_index(tcs
->masterfd
, tcs
->idx_id
, &idx
, true))
796 return check_virtual_tags(tag
, &idx
);
799 inline static bool str_ends_with(const char *str1
, const char *str2
)
801 int str_len
= strlen(str1
);
802 int clause_len
= strlen(str2
);
804 if (clause_len
> str_len
)
807 return !strcasecmp(&str1
[str_len
- clause_len
], str2
);
810 inline static bool str_oneof(const char *str
, const char *list
)
813 int l
, len
= strlen(str
);
817 sep
= strchr(list
, '|');
818 l
= sep
? (long)sep
- (long)list
: (int)strlen(list
);
819 if ((l
==len
) && !strncasecmp(str
, list
, len
))
821 list
+= sep
? l
+ 1 : l
;
827 static bool check_against_clause(long numeric
, const char *str
,
828 const struct tagcache_search_clause
*clause
)
832 switch (clause
->type
)
835 return numeric
== clause
->numeric_data
;
837 return numeric
!= clause
->numeric_data
;
839 return numeric
> clause
->numeric_data
;
841 return numeric
>= clause
->numeric_data
;
843 return numeric
< clause
->numeric_data
;
845 return numeric
<= clause
->numeric_data
;
847 logf("Incorrect numeric tag: %d", clause
->type
);
852 switch (clause
->type
)
855 return !strcasecmp(clause
->str
, str
);
857 return strcasecmp(clause
->str
, str
);
859 return 0>strcasecmp(clause
->str
, str
);
861 return 0>=strcasecmp(clause
->str
, str
);
863 return 0<strcasecmp(clause
->str
, str
);
865 return 0<=strcasecmp(clause
->str
, str
);
866 case clause_contains
:
867 return (strcasestr(str
, clause
->str
) != NULL
);
868 case clause_not_contains
:
869 return (strcasestr(str
, clause
->str
) == NULL
);
870 case clause_begins_with
:
871 return (strcasestr(str
, clause
->str
) == str
);
872 case clause_not_begins_with
:
873 return (strcasestr(str
, clause
->str
) != str
);
874 case clause_ends_with
:
875 return str_ends_with(str
, clause
->str
);
876 case clause_not_ends_with
:
877 return !str_ends_with(str
, clause
->str
);
879 return str_oneof(str
, clause
->str
);
882 logf("Incorrect tag: %d", clause
->type
);
889 static bool check_clauses(struct tagcache_search
*tcs
,
890 struct index_entry
*idx
,
891 struct tagcache_search_clause
**clause
, int count
)
895 #ifdef HAVE_TC_RAMCACHE
898 /* Go through all conditional clauses. */
899 for (i
= 0; i
< count
; i
++)
901 struct tagfile_entry
*tfe
;
906 seek
= check_virtual_tags(clause
[i
]->tag
, idx
);
908 if (!TAGCACHE_IS_NUMERIC(clause
[i
]->tag
))
910 if (clause
[i
]->tag
== tag_filename
)
912 retrieve(tcs
, idx
, tag_filename
, buf
, sizeof buf
);
917 tfe
= (struct tagfile_entry
*)&hdr
->tags
[clause
[i
]->tag
][seek
];
922 if (!check_against_clause(seek
, str
, clause
[i
]))
929 /* Check for conditions. */
930 for (i
= 0; i
< count
; i
++)
932 struct tagfile_entry tfe
;
936 seek
= check_virtual_tags(clause
[i
]->tag
, idx
);
938 memset(str
, 0, sizeof str
);
939 if (!TAGCACHE_IS_NUMERIC(clause
[i
]->tag
))
941 int fd
= tcs
->idxfd
[clause
[i
]->tag
];
942 lseek(fd
, seek
, SEEK_SET
);
943 ecread(fd
, &tfe
, 1, tagfile_entry_ec
, tc_stat
.econ
);
944 if (tfe
.tag_length
>= (int)sizeof(str
))
946 logf("Too long tag read!");
950 read(fd
, str
, tfe
.tag_length
);
952 /* Check if entry has been deleted. */
957 if (!check_against_clause(seek
, str
, clause
[i
]))
965 bool tagcache_check_clauses(struct tagcache_search
*tcs
,
966 struct tagcache_search_clause
**clause
, int count
)
968 struct index_entry idx
;
973 if (!get_index(tcs
->masterfd
, tcs
->idx_id
, &idx
, true))
976 return check_clauses(tcs
, &idx
, clause
, count
);
979 static bool add_uniqbuf(struct tagcache_search
*tcs
, unsigned long id
)
983 /* If uniq buffer is not defined we must return true for search to work. */
984 if (tcs
->unique_list
== NULL
|| (!TAGCACHE_IS_UNIQUE(tcs
->type
)
985 && !TAGCACHE_IS_NUMERIC(tcs
->type
)))
990 for (i
= 0; i
< tcs
->unique_list_count
; i
++)
992 /* Return false if entry is found. */
993 if (tcs
->unique_list
[i
] == id
)
997 if (tcs
->unique_list_count
< tcs
->unique_list_capacity
)
999 tcs
->unique_list
[i
] = id
;
1000 tcs
->unique_list_count
++;
1006 static bool build_lookup_list(struct tagcache_search
*tcs
)
1008 struct index_entry entry
;
1011 tcs
->seek_list_count
= 0;
1013 #ifdef HAVE_TC_RAMCACHE
1018 for (i
= tcs
->seek_pos
; i
< hdr
->h
.tch
.entry_count
; i
++)
1020 struct index_entry
*idx
= &hdr
->indices
[i
];
1021 if (tcs
->seek_list_count
== SEEK_LIST_SIZE
)
1024 /* Skip deleted files. */
1025 if (idx
->flag
& FLAG_DELETED
)
1028 /* Go through all filters.. */
1029 for (j
= 0; j
< tcs
->filter_count
; j
++)
1031 if (idx
->tag_seek
[tcs
->filter_tag
[j
]] != tcs
->filter_seek
[j
])
1037 if (j
< tcs
->filter_count
)
1040 /* Check for conditions. */
1041 if (!check_clauses(tcs
, idx
, tcs
->clause
, tcs
->clause_count
))
1044 /* Add to the seek list if not already in uniq buffer. */
1045 if (!add_uniqbuf(tcs
, idx
->tag_seek
[tcs
->type
]))
1049 tcs
->seek_list
[tcs
->seek_list_count
] = idx
->tag_seek
[tcs
->type
];
1050 tcs
->seek_flags
[tcs
->seek_list_count
] = idx
->flag
;
1051 tcs
->seek_list_count
++;
1056 return tcs
->seek_list_count
> 0;
1060 lseek(tcs
->masterfd
, tcs
->seek_pos
* sizeof(struct index_entry
) +
1061 sizeof(struct master_header
), SEEK_SET
);
1063 while (ecread(tcs
->masterfd
, &entry
, 1, index_entry_ec
, tc_stat
.econ
)
1064 == sizeof(struct index_entry
))
1066 if (tcs
->seek_list_count
== SEEK_LIST_SIZE
)
1071 /* Check if entry has been deleted. */
1072 if (entry
.flag
& FLAG_DELETED
)
1075 /* Go through all filters.. */
1076 for (i
= 0; i
< tcs
->filter_count
; i
++)
1078 if (entry
.tag_seek
[tcs
->filter_tag
[i
]] != tcs
->filter_seek
[i
])
1082 if (i
< tcs
->filter_count
)
1085 /* Check for conditions. */
1086 if (!check_clauses(tcs
, &entry
, tcs
->clause
, tcs
->clause_count
))
1089 /* Add to the seek list if not already in uniq buffer. */
1090 if (!add_uniqbuf(tcs
, entry
.tag_seek
[tcs
->type
]))
1094 tcs
->seek_list
[tcs
->seek_list_count
] = entry
.tag_seek
[tcs
->type
];
1095 tcs
->seek_flags
[tcs
->seek_list_count
] = entry
.flag
;
1096 tcs
->seek_list_count
++;
1101 return tcs
->seek_list_count
> 0;
1105 static void remove_files(void)
1110 tc_stat
.ready
= false;
1111 tc_stat
.ramcache
= false;
1112 tc_stat
.econ
= false;
1113 remove(TAGCACHE_FILE_MASTER
);
1114 for (i
= 0; i
< TAG_COUNT
; i
++)
1116 if (TAGCACHE_IS_NUMERIC(i
))
1119 snprintf(buf
, sizeof buf
, TAGCACHE_FILE_INDEX
, i
);
1125 static bool check_all_headers(void)
1127 struct master_header myhdr
;
1128 struct tagcache_header tch
;
1132 if ( (fd
= open_master_fd(&myhdr
, false)) < 0)
1138 logf("tagcache is dirty!");
1142 memcpy(¤t_tcmh
, &myhdr
, sizeof(struct master_header
));
1144 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
1146 if (TAGCACHE_IS_NUMERIC(tag
))
1149 if ( (fd
= open_tag_fd(&tch
, tag
, false)) < 0)
1158 bool tagcache_search(struct tagcache_search
*tcs
, int tag
)
1160 struct tagcache_header tag_hdr
;
1161 struct master_header master_hdr
;
1164 if (tcs
->initialized
)
1165 tagcache_search_finish(tcs
);
1170 memset(tcs
, 0, sizeof(struct tagcache_search
));
1171 if (tc_stat
.commit_step
> 0 || !tc_stat
.ready
)
1174 tcs
->position
= sizeof(struct tagcache_header
);
1177 tcs
->seek_list_count
= 0;
1178 tcs
->filter_count
= 0;
1181 for (i
= 0; i
< TAG_COUNT
; i
++)
1184 #ifndef HAVE_TC_RAMCACHE
1185 tcs
->ramsearch
= false;
1187 tcs
->ramsearch
= tc_stat
.ramcache
;
1190 tcs
->entry_count
= hdr
->entry_count
[tcs
->type
];
1195 if (!TAGCACHE_IS_NUMERIC(tcs
->type
))
1197 tcs
->idxfd
[tcs
->type
] = open_tag_fd(&tag_hdr
, tcs
->type
, false);
1198 if (tcs
->idxfd
[tcs
->type
] < 0)
1202 /* Always open as R/W so we can pass tcs to functions that modify data also
1203 * without failing. */
1204 tcs
->masterfd
= open_master_fd(&master_hdr
, true);
1206 if (tcs
->masterfd
< 0)
1211 tcs
->initialized
= true;
1217 void tagcache_search_set_uniqbuf(struct tagcache_search
*tcs
,
1218 void *buffer
, long length
)
1220 tcs
->unique_list
= (unsigned long *)buffer
;
1221 tcs
->unique_list_capacity
= length
/ sizeof(*tcs
->unique_list
);
1222 tcs
->unique_list_count
= 0;
1225 bool tagcache_search_add_filter(struct tagcache_search
*tcs
,
1228 if (tcs
->filter_count
== TAGCACHE_MAX_FILTERS
)
1231 if (TAGCACHE_IS_NUMERIC_OR_NONUNIQUE(tag
))
1234 tcs
->filter_tag
[tcs
->filter_count
] = tag
;
1235 tcs
->filter_seek
[tcs
->filter_count
] = seek
;
1236 tcs
->filter_count
++;
1241 bool tagcache_search_add_clause(struct tagcache_search
*tcs
,
1242 struct tagcache_search_clause
*clause
)
1246 if (tcs
->clause_count
>= TAGCACHE_MAX_CLAUSES
)
1248 logf("Too many clauses");
1252 /* Check if there is already a similar filter in present (filters are
1253 * much faster than clauses).
1255 for (i
= 0; i
< tcs
->filter_count
; i
++)
1257 if (tcs
->filter_tag
[i
] == clause
->tag
)
1261 if (!TAGCACHE_IS_NUMERIC(clause
->tag
) && tcs
->idxfd
[clause
->tag
] < 0)
1265 snprintf(buf
, sizeof buf
, TAGCACHE_FILE_INDEX
, clause
->tag
);
1266 tcs
->idxfd
[clause
->tag
] = open(buf
, O_RDONLY
);
1269 tcs
->clause
[tcs
->clause_count
] = clause
;
1270 tcs
->clause_count
++;
1275 /* TODO: Remove this mess. */
1276 #ifdef HAVE_DIRCACHE
1277 #define TAG_FILENAME_RAM(tcs) ((tcs->type == tag_filename) \
1278 ? ((flag & FLAG_DIRCACHE) && is_dircache_intact()) : 1)
1280 #define TAG_FILENAME_RAM(tcs) (tcs->type != tag_filename)
1283 static bool get_next(struct tagcache_search
*tcs
)
1285 static char buf
[TAG_MAXLEN
+32];
1286 struct tagfile_entry entry
;
1289 if (!tcs
->valid
|| !tc_stat
.ready
)
1292 if (tcs
->idxfd
[tcs
->type
] < 0 && !TAGCACHE_IS_NUMERIC(tcs
->type
)
1293 #ifdef HAVE_TC_RAMCACHE
1299 /* Relative fetch. */
1300 if (tcs
->filter_count
> 0 || tcs
->clause_count
> 0
1301 || TAGCACHE_IS_NUMERIC(tcs
->type
))
1303 /* Check for end of list. */
1304 if (tcs
->seek_list_count
== 0)
1306 /* Try to fetch more. */
1307 if (!build_lookup_list(tcs
))
1314 tcs
->seek_list_count
--;
1315 flag
= tcs
->seek_flags
[tcs
->seek_list_count
];
1317 /* Seek stream to the correct position and continue to direct fetch. */
1318 if ((!tcs
->ramsearch
|| !TAG_FILENAME_RAM(tcs
))
1319 && !TAGCACHE_IS_NUMERIC(tcs
->type
))
1321 if (!open_files(tcs
, tcs
->type
))
1324 lseek(tcs
->idxfd
[tcs
->type
], tcs
->seek_list
[tcs
->seek_list_count
], SEEK_SET
);
1327 tcs
->position
= tcs
->seek_list
[tcs
->seek_list_count
];
1330 if (TAGCACHE_IS_NUMERIC(tcs
->type
))
1332 snprintf(buf
, sizeof(buf
), "%d", tcs
->position
);
1333 tcs
->result_seek
= tcs
->position
;
1335 tcs
->result_len
= strlen(buf
) + 1;
1340 #ifdef HAVE_TC_RAMCACHE
1341 if (tcs
->ramsearch
&& TAG_FILENAME_RAM(tcs
))
1343 struct tagfile_entry
*ep
;
1345 if (tcs
->entry_count
== 0)
1352 tcs
->result_seek
= tcs
->position
;
1354 # ifdef HAVE_DIRCACHE
1355 if (tcs
->type
== tag_filename
)
1357 dircache_copy_path((struct dirent
*)tcs
->position
,
1360 tcs
->result_len
= strlen(buf
) + 1;
1361 tcs
->idx_id
= FLAG_GET_ATTR(flag
);
1362 tcs
->ramresult
= false;
1368 ep
= (struct tagfile_entry
*)&hdr
->tags
[tcs
->type
][tcs
->position
];
1369 tcs
->position
+= sizeof(struct tagfile_entry
) + ep
->tag_length
;
1370 tcs
->result
= ep
->tag_data
;
1371 tcs
->result_len
= strlen(tcs
->result
) + 1;
1372 tcs
->idx_id
= ep
->idx_id
;
1373 tcs
->ramresult
= true;
1380 if (!open_files(tcs
, tcs
->type
))
1383 tcs
->result_seek
= lseek(tcs
->idxfd
[tcs
->type
], 0, SEEK_CUR
);
1384 if (ecread(tcs
->idxfd
[tcs
->type
], &entry
, 1,
1385 tagfile_entry_ec
, tc_stat
.econ
) != sizeof(struct tagfile_entry
))
1393 if (entry
.tag_length
> (long)sizeof(buf
))
1396 logf("too long tag #2");
1400 if (read(tcs
->idxfd
[tcs
->type
], buf
, entry
.tag_length
) != entry
.tag_length
)
1403 logf("read error #4");
1408 tcs
->result_len
= strlen(tcs
->result
) + 1;
1409 tcs
->idx_id
= entry
.idx_id
;
1410 tcs
->ramresult
= false;
1415 bool tagcache_get_next(struct tagcache_search
*tcs
)
1417 while (get_next(tcs
))
1419 if (tcs
->result_len
> 1)
1426 bool tagcache_retrieve(struct tagcache_search
*tcs
, int idxid
,
1427 int tag
, char *buf
, long size
)
1429 struct index_entry idx
;
1432 if (!get_index(tcs
->masterfd
, idxid
, &idx
, true))
1435 return retrieve(tcs
, &idx
, tag
, buf
, size
);
1438 static bool update_master_header(void)
1440 struct master_header myhdr
;
1446 if ( (fd
= open_master_fd(&myhdr
, true)) < 0)
1449 myhdr
.serial
= current_tcmh
.serial
;
1450 myhdr
.commitid
= current_tcmh
.commitid
;
1451 myhdr
.dirty
= current_tcmh
.dirty
;
1454 lseek(fd
, 0, SEEK_SET
);
1455 ecwrite(fd
, &myhdr
, 1, master_header_ec
, tc_stat
.econ
);
1458 #ifdef HAVE_TC_RAMCACHE
1461 hdr
->h
.serial
= current_tcmh
.serial
;
1462 hdr
->h
.commitid
= current_tcmh
.commitid
;
1463 hdr
->h
.dirty
= current_tcmh
.dirty
;
1472 void tagcache_modify(struct tagcache_search
*tcs
, int type
, const char *text
)
1474 struct tagentry
*entry
;
1476 if (tcs
->type
!= tag_title
)
1479 /* We will need reserve buffer for this. */
1482 struct tagfile_entry
*ep
;
1484 ep
= (struct tagfile_entry
*)&hdr
->tags
[tcs
->type
][tcs
->result_seek
];
1485 tcs
->seek_list
[tcs
->seek_list_count
];
1488 entry
= find_entry_ram();
1493 void tagcache_search_finish(struct tagcache_search
*tcs
)
1497 if (!tcs
->initialized
)
1500 if (tcs
->masterfd
>= 0)
1502 close(tcs
->masterfd
);
1506 for (i
= 0; i
< TAG_COUNT
; i
++)
1508 if (tcs
->idxfd
[i
] >= 0)
1510 close(tcs
->idxfd
[i
]);
1515 tcs
->ramsearch
= false;
1517 tcs
->initialized
= 0;
1522 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
1523 static struct tagfile_entry
*get_tag(const struct index_entry
*entry
, int tag
)
1525 return (struct tagfile_entry
*)&hdr
->tags
[tag
][entry
->tag_seek
[tag
]];
1528 static long get_tag_numeric(const struct index_entry
*entry
, int tag
)
1530 return check_virtual_tags(tag
, entry
);
1533 static char* get_tag_string(const struct index_entry
*entry
, int tag
)
1535 char* s
= get_tag(entry
, tag
)->tag_data
;
1536 return strcmp(s
, UNTAGGED
) ? s
: NULL
;
1539 bool tagcache_fill_tags(struct mp3entry
*id3
, const char *filename
)
1541 struct index_entry
*entry
;
1547 /* Find the corresponding entry in tagcache. */
1548 idx_id
= find_entry_ram(filename
, NULL
);
1549 if (idx_id
< 0 || !tc_stat
.ramcache
)
1552 entry
= &hdr
->indices
[idx_id
];
1554 id3
->title
= get_tag_string(entry
, tag_title
);
1555 id3
->artist
= get_tag_string(entry
, tag_artist
);
1556 id3
->album
= get_tag_string(entry
, tag_album
);
1557 id3
->genre_string
= get_tag_string(entry
, tag_genre
);
1558 id3
->composer
= get_tag_string(entry
, tag_composer
);
1559 id3
->comment
= get_tag_string(entry
, tag_comment
);
1560 id3
->albumartist
= get_tag_string(entry
, tag_albumartist
);
1561 id3
->grouping
= get_tag_string(entry
, tag_grouping
);
1563 id3
->playcount
= get_tag_numeric(entry
, tag_playcount
);
1564 id3
->rating
= get_tag_numeric(entry
, tag_rating
);
1565 id3
->lastplayed
= get_tag_numeric(entry
, tag_lastplayed
);
1566 id3
->score
= get_tag_numeric(entry
, tag_virt_autoscore
) / 10;
1567 id3
->year
= get_tag_numeric(entry
, tag_year
);
1569 id3
->discnum
= get_tag_numeric(entry
, tag_discnumber
);
1570 id3
->tracknum
= get_tag_numeric(entry
, tag_tracknumber
);
1571 id3
->bitrate
= get_tag_numeric(entry
, tag_bitrate
);
1572 if (id3
->bitrate
== 0)
1579 static inline void write_item(const char *item
)
1581 int len
= strlen(item
) + 1;
1584 write(cachefd
, item
, len
);
1587 static int check_if_empty(char **tag
)
1591 if (*tag
== NULL
|| **tag
== '\0')
1594 return sizeof(UNTAGGED
); /* Tag length */
1597 length
= strlen(*tag
);
1598 if (length
> TAG_MAXLEN
)
1600 logf("over length tag: %s", *tag
);
1601 length
= TAG_MAXLEN
;
1602 (*tag
)[length
] = '\0';
1608 #define ADD_TAG(entry,tag,data) \
1610 entry.tag_offset[tag] = offset; \
1611 entry.tag_length[tag] = check_if_empty(data); \
1612 offset += entry.tag_length[tag]
1614 static void add_tagcache(char *path
, unsigned long mtime
1615 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
1616 ,const struct dirent
*dc
1620 struct mp3entry id3
;
1621 struct temp_file_entry entry
;
1625 char tracknumfix
[3];
1627 int path_length
= strlen(path
);
1628 bool has_albumartist
;
1634 /* Check for overlength file path. */
1635 if (path_length
> TAG_MAXLEN
)
1637 /* Path can't be shortened. */
1638 logf("Too long path: %s", path
);
1642 /* Check if the file is supported. */
1643 if (probe_file_format(path
) == AFMT_UNKNOWN
)
1646 /* Check if the file is already cached. */
1647 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
1648 if (tc_stat
.ramcache
&& is_dircache_intact())
1650 idx_id
= find_entry_ram(path
, dc
);
1655 if (filenametag_fd
>= 0)
1657 idx_id
= find_entry_disk(path
);
1661 /* Check if file has been modified. */
1664 struct index_entry idx
;
1666 /* TODO: Mark that the index exists (for fast reverse scan) */
1667 //found_idx[idx_id/8] |= idx_id%8;
1669 if (!get_index(-1, idx_id
, &idx
, true))
1671 logf("failed to retrieve index entry");
1675 if ((unsigned long)idx
.tag_seek
[tag_mtime
] == mtime
)
1677 /* No changes to file. */
1681 /* Metadata might have been changed. Delete the entry. */
1682 logf("Re-adding: %s", path
);
1683 if (!delete_entry(idx_id
))
1685 logf("delete_entry failed: %d", idx_id
);
1690 fd
= open(path
, O_RDONLY
);
1693 logf("open fail: %s", path
);
1697 memset(&id3
, 0, sizeof(struct mp3entry
));
1698 memset(&entry
, 0, sizeof(struct temp_file_entry
));
1699 memset(&tracknumfix
, 0, sizeof(tracknumfix
));
1700 ret
= get_metadata(&id3
, fd
, path
);
1706 logf("-> %s", path
);
1708 /* Generate track number if missing. */
1709 if (id3
.tracknum
<= 0)
1711 const char *p
= strrchr(path
, '.');
1714 p
= &path
[strlen(path
)-1];
1718 if (isdigit(*p
) && isdigit(*(p
-1)))
1720 tracknumfix
[1] = *p
--;
1721 tracknumfix
[0] = *p
;
1727 if (tracknumfix
[0] != '\0')
1729 id3
.tracknum
= atoi(tracknumfix
);
1730 /* Set a flag to indicate track number has been generated. */
1731 entry
.flag
|= FLAG_TRKNUMGEN
;
1735 /* Unable to generate track number. */
1741 entry
.tag_offset
[tag_year
] = id3
.year
;
1742 entry
.tag_offset
[tag_discnumber
] = id3
.discnum
;
1743 entry
.tag_offset
[tag_tracknumber
] = id3
.tracknum
;
1744 entry
.tag_offset
[tag_length
] = id3
.length
;
1745 entry
.tag_offset
[tag_bitrate
] = id3
.bitrate
;
1746 entry
.tag_offset
[tag_mtime
] = mtime
;
1749 has_albumartist
= id3
.albumartist
!= NULL
1750 && strlen(id3
.albumartist
) > 0;
1751 has_grouping
= id3
.grouping
!= NULL
1752 && strlen(id3
.grouping
) > 0;
1754 ADD_TAG(entry
, tag_filename
, &path
);
1755 ADD_TAG(entry
, tag_title
, &id3
.title
);
1756 ADD_TAG(entry
, tag_artist
, &id3
.artist
);
1757 ADD_TAG(entry
, tag_album
, &id3
.album
);
1758 ADD_TAG(entry
, tag_genre
, &id3
.genre_string
);
1759 ADD_TAG(entry
, tag_composer
, &id3
.composer
);
1760 ADD_TAG(entry
, tag_comment
, &id3
.comment
);
1761 if (has_albumartist
)
1763 ADD_TAG(entry
, tag_albumartist
, &id3
.albumartist
);
1767 ADD_TAG(entry
, tag_albumartist
, &id3
.artist
);
1771 ADD_TAG(entry
, tag_grouping
, &id3
.grouping
);
1775 ADD_TAG(entry
, tag_grouping
, &id3
.title
);
1777 entry
.data_length
= offset
;
1779 /* Write the header */
1780 write(cachefd
, &entry
, sizeof(struct temp_file_entry
));
1782 /* And tags also... Correct order is critical */
1784 write_item(id3
.title
);
1785 write_item(id3
.artist
);
1786 write_item(id3
.album
);
1787 write_item(id3
.genre_string
);
1788 write_item(id3
.composer
);
1789 write_item(id3
.comment
);
1790 if (has_albumartist
)
1792 write_item(id3
.albumartist
);
1796 write_item(id3
.artist
);
1800 write_item(id3
.grouping
);
1804 write_item(id3
.title
);
1806 total_entry_count
++;
1809 static bool tempbuf_insert(char *str
, int id
, int idx_id
, bool unique
)
1811 struct tempbuf_searchidx
*index
= (struct tempbuf_searchidx
*)tempbuf
;
1812 int len
= strlen(str
)+1;
1815 unsigned *crcbuf
= (unsigned *)&tempbuf
[tempbuf_size
-4];
1816 char buf
[TAG_MAXLEN
+32];
1818 for (i
= 0; str
[i
] != '\0' && i
< (int)sizeof(buf
)-1; i
++)
1819 buf
[i
] = tolower(str
[i
]);
1822 crc32
= crc_32(buf
, i
, 0xffffffff);
1826 /* Check if the crc does not exist -> entry does not exist for sure. */
1827 for (i
= 0; i
< tempbufidx
; i
++)
1829 if (crcbuf
[-i
] != crc32
)
1832 if (!strcasecmp(str
, index
[i
].str
))
1834 if (id
< 0 || id
>= lookup_buffer_depth
)
1836 logf("lookup buf overf.: %d", id
);
1840 lookup
[id
] = &index
[i
];
1846 /* Insert to CRC buffer. */
1847 crcbuf
[-tempbufidx
] = crc32
;
1850 /* Insert it to the buffer. */
1851 tempbuf_left
-= len
;
1852 if (tempbuf_left
- 4 < 0 || tempbufidx
>= commit_entry_count
-1)
1855 if (id
>= lookup_buffer_depth
)
1857 logf("lookup buf overf. #2: %d", id
);
1863 lookup
[id
] = &index
[tempbufidx
];
1864 index
[tempbufidx
].idlist
.id
= id
;
1867 index
[tempbufidx
].idlist
.id
= -1;
1869 index
[tempbufidx
].idlist
.next
= NULL
;
1870 index
[tempbufidx
].idx_id
= idx_id
;
1871 index
[tempbufidx
].seek
= -1;
1872 index
[tempbufidx
].str
= &tempbuf
[tempbuf_pos
];
1873 memcpy(index
[tempbufidx
].str
, str
, len
);
1880 static int compare(const void *p1
, const void *p2
)
1884 struct tempbuf_searchidx
*e1
= (struct tempbuf_searchidx
*)p1
;
1885 struct tempbuf_searchidx
*e2
= (struct tempbuf_searchidx
*)p2
;
1887 if (strcmp(e1
->str
, UNTAGGED
) == 0)
1889 if (strcmp(e2
->str
, UNTAGGED
) == 0)
1893 else if (strcmp(e2
->str
, UNTAGGED
) == 0)
1896 return strncasecmp(e1
->str
, e2
->str
, TAG_MAXLEN
);
1899 static int tempbuf_sort(int fd
)
1901 struct tempbuf_searchidx
*index
= (struct tempbuf_searchidx
*)tempbuf
;
1902 struct tagfile_entry fe
;
1906 /* Generate reverse lookup entries. */
1907 for (i
= 0; i
< lookup_buffer_depth
; i
++)
1909 struct tempbuf_id_list
*idlist
;
1914 if (lookup
[i
]->idlist
.id
== i
)
1917 idlist
= &lookup
[i
]->idlist
;
1918 while (idlist
->next
!= NULL
)
1919 idlist
= idlist
->next
;
1921 tempbuf_left
-= sizeof(struct tempbuf_id_list
);
1922 if (tempbuf_left
- 4 < 0)
1925 idlist
->next
= (struct tempbuf_id_list
*)&tempbuf
[tempbuf_pos
];
1926 if (tempbuf_pos
& 0x03)
1928 tempbuf_pos
= (tempbuf_pos
& ~0x03) + 0x04;
1930 idlist
->next
= (struct tempbuf_id_list
*)&tempbuf
[tempbuf_pos
];
1932 tempbuf_pos
+= sizeof(struct tempbuf_id_list
);
1934 idlist
= idlist
->next
;
1936 idlist
->next
= NULL
;
1941 qsort(index
, tempbufidx
, sizeof(struct tempbuf_searchidx
), compare
);
1942 memset(lookup
, 0, lookup_buffer_depth
* sizeof(struct tempbuf_searchidx
**));
1944 for (i
= 0; i
< tempbufidx
; i
++)
1946 struct tempbuf_id_list
*idlist
= &index
[i
].idlist
;
1948 /* Fix the lookup list. */
1949 while (idlist
!= NULL
)
1951 if (idlist
->id
>= 0)
1952 lookup
[idlist
->id
] = &index
[i
];
1953 idlist
= idlist
->next
;
1956 index
[i
].seek
= lseek(fd
, 0, SEEK_CUR
);
1957 length
= strlen(index
[i
].str
) + 1;
1958 fe
.tag_length
= length
;
1959 fe
.idx_id
= index
[i
].idx_id
;
1961 /* Check the chunk alignment. */
1962 if ((fe
.tag_length
+ sizeof(struct tagfile_entry
))
1963 % TAGFILE_ENTRY_CHUNK_LENGTH
)
1965 fe
.tag_length
+= TAGFILE_ENTRY_CHUNK_LENGTH
-
1966 ((fe
.tag_length
+ sizeof(struct tagfile_entry
))
1967 % TAGFILE_ENTRY_CHUNK_LENGTH
);
1970 #ifdef TAGCACHE_STRICT_ALIGN
1971 /* Make sure the entry is long aligned. */
1972 if (index
[i
].seek
& 0x03)
1974 logf("tempbuf_sort: alignment error!");
1979 if (ecwrite(fd
, &fe
, 1, tagfile_entry_ec
, tc_stat
.econ
) !=
1980 sizeof(struct tagfile_entry
))
1982 logf("tempbuf_sort: write error #1");
1986 if (write(fd
, index
[i
].str
, length
) != length
)
1988 logf("tempbuf_sort: write error #2");
1992 /* Write some padding. */
1993 if (fe
.tag_length
- length
> 0)
1994 write(fd
, "XXXXXXXX", fe
.tag_length
- length
);
2000 inline static struct tempbuf_searchidx
* tempbuf_locate(int id
)
2002 if (id
< 0 || id
>= lookup_buffer_depth
)
2009 inline static int tempbuf_find_location(int id
)
2011 struct tempbuf_searchidx
*entry
;
2013 entry
= tempbuf_locate(id
);
2020 static bool build_numeric_indices(struct tagcache_header
*h
, int tmpfd
)
2022 struct master_header tcmh
;
2023 struct index_entry idx
;
2026 struct temp_file_entry
*entrybuf
= (struct temp_file_entry
*)tempbuf
;
2028 int entries_processed
= 0;
2030 char buf
[TAG_MAXLEN
];
2032 max_entries
= tempbuf_size
/ sizeof(struct temp_file_entry
) - 1;
2034 logf("Building numeric indices...");
2035 lseek(tmpfd
, sizeof(struct tagcache_header
), SEEK_SET
);
2037 if ( (masterfd
= open_master_fd(&tcmh
, true)) < 0)
2040 masterfd_pos
= lseek(masterfd
, tcmh
.tch
.entry_count
* sizeof(struct index_entry
),
2042 if (masterfd_pos
== filesize(masterfd
))
2044 logf("we can't append!");
2049 while (entries_processed
< h
->entry_count
)
2051 int count
= MIN(h
->entry_count
- entries_processed
, max_entries
);
2053 /* Read in as many entries as possible. */
2054 for (i
= 0; i
< count
; i
++)
2056 struct temp_file_entry
*tfe
= &entrybuf
[i
];
2059 /* Read in numeric data. */
2060 if (read(tmpfd
, tfe
, sizeof(struct temp_file_entry
)) !=
2061 sizeof(struct temp_file_entry
))
2063 logf("read fail #1");
2068 datastart
= lseek(tmpfd
, 0, SEEK_CUR
);
2071 * Read string data from the following tags:
2077 * A crc32 hash is calculated from the read data
2078 * and stored back to the data offset field kept in memory.
2080 #define tmpdb_read_string_tag(tag) \
2081 lseek(tmpfd, tfe->tag_offset[tag], SEEK_CUR); \
2082 if ((unsigned long)tfe->tag_length[tag] > sizeof buf) \
2084 logf("read fail: buffer overflow"); \
2089 if (read(tmpfd, buf, tfe->tag_length[tag]) != \
2090 tfe->tag_length[tag]) \
2092 logf("read fail #2"); \
2097 tfe->tag_offset[tag] = crc_32(buf, strlen(buf), 0xffffffff); \
2098 lseek(tmpfd, datastart, SEEK_SET)
2100 tmpdb_read_string_tag(tag_filename
);
2101 tmpdb_read_string_tag(tag_artist
);
2102 tmpdb_read_string_tag(tag_album
);
2103 tmpdb_read_string_tag(tag_title
);
2105 /* Seek to the end of the string data. */
2106 lseek(tmpfd
, tfe
->data_length
, SEEK_CUR
);
2109 /* Backup the master index position. */
2110 masterfd_pos
= lseek(masterfd
, 0, SEEK_CUR
);
2111 lseek(masterfd
, sizeof(struct master_header
), SEEK_SET
);
2113 /* Check if we can resurrect some deleted runtime statistics data. */
2114 for (i
= 0; i
< tcmh
.tch
.entry_count
; i
++)
2116 /* Read the index entry. */
2117 if (ecread(masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
2118 != sizeof(struct index_entry
))
2120 logf("read fail #3");
2126 * Skip unless the entry is marked as being deleted
2127 * or the data has already been resurrected.
2129 if (!(idx
.flag
& FLAG_DELETED
) || idx
.flag
& FLAG_RESURRECTED
)
2132 /* Now try to match the entry. */
2134 * To succesfully match a song, the following conditions
2137 * For numeric fields: tag_length
2138 * - Full identical match is required
2140 * If tag_filename matches, no further checking necessary.
2142 * For string hashes: tag_artist, tag_album, tag_title
2143 * - Two of these must match
2145 for (j
= 0; j
< count
; j
++)
2147 struct temp_file_entry
*tfe
= &entrybuf
[j
];
2149 /* Try to match numeric fields first. */
2150 if (tfe
->tag_offset
[tag_length
] != idx
.tag_seek
[tag_length
])
2153 /* Now it's time to do the hash matching. */
2154 if (tfe
->tag_offset
[tag_filename
] != idx
.tag_seek
[tag_filename
])
2156 int match_count
= 0;
2158 /* No filename match, check if we can match two other tags. */
2159 #define tmpdb_match(tag) \
2160 if (tfe->tag_offset[tag] == idx.tag_seek[tag]) \
2163 tmpdb_match(tag_artist
);
2164 tmpdb_match(tag_album
);
2165 tmpdb_match(tag_title
);
2167 if (match_count
< 2)
2169 /* Still no match found, give up. */
2174 /* A match found, now copy & resurrect the statistical data. */
2175 #define tmpdb_copy_tag(tag) \
2176 tfe->tag_offset[tag] = idx.tag_seek[tag]
2178 tmpdb_copy_tag(tag_playcount
);
2179 tmpdb_copy_tag(tag_rating
);
2180 tmpdb_copy_tag(tag_playtime
);
2181 tmpdb_copy_tag(tag_lastplayed
);
2182 tmpdb_copy_tag(tag_commitid
);
2184 /* Avoid processing this entry again. */
2185 idx
.flag
|= FLAG_RESURRECTED
;
2187 lseek(masterfd
, -sizeof(struct index_entry
), SEEK_CUR
);
2188 if (ecwrite(masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
2189 != sizeof(struct index_entry
))
2191 logf("masterfd writeback fail #1");
2196 logf("Entry resurrected");
2201 /* Restore the master index position. */
2202 lseek(masterfd
, masterfd_pos
, SEEK_SET
);
2204 /* Commit the data to the index. */
2205 for (i
= 0; i
< count
; i
++)
2207 int loc
= lseek(masterfd
, 0, SEEK_CUR
);
2209 if (ecread(masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
2210 != sizeof(struct index_entry
))
2212 logf("read fail #3");
2217 for (j
= 0; j
< TAG_COUNT
; j
++)
2219 if (!TAGCACHE_IS_NUMERIC(j
))
2222 idx
.tag_seek
[j
] = entrybuf
[i
].tag_offset
[j
];
2224 idx
.flag
= entrybuf
[i
].flag
;
2226 if (idx
.tag_seek
[tag_commitid
])
2228 /* Data has been resurrected. */
2229 idx
.flag
|= FLAG_DIRTYNUM
;
2231 else if (tc_stat
.ready
&& current_tcmh
.commitid
> 0)
2233 idx
.tag_seek
[tag_commitid
] = current_tcmh
.commitid
;
2234 idx
.flag
|= FLAG_DIRTYNUM
;
2237 /* Write back the updated index. */
2238 lseek(masterfd
, loc
, SEEK_SET
);
2239 if (ecwrite(masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
2240 != sizeof(struct index_entry
))
2248 entries_processed
+= count
;
2249 logf("%d/%ld entries processed", entries_processed
, h
->entry_count
);
2260 * == 0 temporary failure
2263 static int build_index(int index_type
, struct tagcache_header
*h
, int tmpfd
)
2266 struct tagcache_header tch
;
2267 struct master_header tcmh
;
2268 struct index_entry idxbuf
[IDX_BUF_DEPTH
];
2270 char buf
[TAG_MAXLEN
+32];
2271 int fd
= -1, masterfd
;
2276 logf("Building index: %d", index_type
);
2278 /* Check the number of entries we need to allocate ram for. */
2279 commit_entry_count
= h
->entry_count
+ 1;
2281 masterfd
= open_master_fd(&tcmh
, false);
2284 commit_entry_count
+= tcmh
.tch
.entry_count
;
2288 remove_files(); /* Just to be sure we are clean. */
2290 /* Open the index file, which contains the tag names. */
2291 fd
= open_tag_fd(&tch
, index_type
, true);
2294 logf("tch.datasize=%ld", tch
.datasize
);
2295 lookup_buffer_depth
= 1 +
2296 /* First part */ commit_entry_count
+
2297 /* Second part */ (tch
.datasize
/ TAGFILE_ENTRY_CHUNK_LENGTH
);
2301 lookup_buffer_depth
= 1 +
2302 /* First part */ commit_entry_count
+
2303 /* Second part */ 0;
2306 logf("lookup_buffer_depth=%ld", lookup_buffer_depth
);
2307 logf("commit_entry_count=%ld", commit_entry_count
);
2309 /* Allocate buffer for all index entries from both old and new
2312 tempbuf_pos
= commit_entry_count
* sizeof(struct tempbuf_searchidx
);
2314 /* Allocate lookup buffer. The first portion of commit_entry_count
2315 * contains the new tags in the temporary file and the second
2316 * part for locating entries already in the db.
2319 * +---------+---------------------------+
2320 * | index | position/ENTRY_CHUNK_SIZE | lookup buffer
2321 * +---------+---------------------------+
2323 * Old tags are inserted to a temporary buffer with position:
2324 * tempbuf_insert(position/ENTRY_CHUNK_SIZE, ...);
2325 * And new tags with index:
2326 * tempbuf_insert(idx, ...);
2328 * The buffer is sorted and written into tag file:
2329 * tempbuf_sort(...);
2330 * leaving master index locations messed up.
2332 * That is fixed using the lookup buffer for old tags:
2333 * new_seek = tempbuf_find_location(old_seek, ...);
2335 * new_seek = tempbuf_find_location(idx);
2337 lookup
= (struct tempbuf_searchidx
**)&tempbuf
[tempbuf_pos
];
2338 tempbuf_pos
+= lookup_buffer_depth
* sizeof(void **);
2339 memset(lookup
, 0, lookup_buffer_depth
* sizeof(void **));
2341 /* And calculate the remaining data space used mainly for storing
2342 * tag data (strings). */
2343 tempbuf_left
= tempbuf_size
- tempbuf_pos
- 8;
2344 if (tempbuf_left
- TAGFILE_ENTRY_AVG_LENGTH
* commit_entry_count
< 0)
2346 logf("Buffer way too small!");
2353 * If tag file contains unique tags (sorted index), we will load
2354 * it entirely into memory so we can resort it later for use with
2357 if (TAGCACHE_IS_SORTED(index_type
))
2359 logf("loading tags...");
2360 for (i
= 0; i
< tch
.entry_count
; i
++)
2362 struct tagfile_entry entry
;
2363 int loc
= lseek(fd
, 0, SEEK_CUR
);
2366 if (ecread(fd
, &entry
, 1, tagfile_entry_ec
, tc_stat
.econ
)
2367 != sizeof(struct tagfile_entry
))
2369 logf("read error #7");
2374 if (entry
.tag_length
>= (int)sizeof(buf
))
2376 logf("too long tag #3");
2381 if (read(fd
, buf
, entry
.tag_length
) != entry
.tag_length
)
2383 logf("read error #8");
2388 /* Skip deleted entries. */
2393 * Save the tag and tag id in the memory buffer. Tag id
2394 * is saved so we can later reindex the master lookup
2395 * table when the index gets resorted.
2397 ret
= tempbuf_insert(buf
, loc
/TAGFILE_ENTRY_CHUNK_LENGTH
2398 + commit_entry_count
, entry
.idx_id
,
2399 TAGCACHE_IS_UNIQUE(index_type
));
2410 tempbufidx
= tch
.entry_count
;
2415 * Creating new index file to store the tags. No need to preload
2416 * anything whether the index type is sorted or not.
2418 snprintf(buf
, sizeof buf
, TAGCACHE_FILE_INDEX
, index_type
);
2419 fd
= open(buf
, O_WRONLY
| O_CREAT
| O_TRUNC
);
2422 logf("%s open fail", buf
);
2426 tch
.magic
= TAGCACHE_MAGIC
;
2427 tch
.entry_count
= 0;
2430 if (ecwrite(fd
, &tch
, 1, tagcache_header_ec
, tc_stat
.econ
)
2431 != sizeof(struct tagcache_header
))
2433 logf("header write failed");
2439 /* Loading the tag lookup file as "master file". */
2440 logf("Loading index file");
2441 masterfd
= open(TAGCACHE_FILE_MASTER
, O_RDWR
);
2445 logf("Creating new DB");
2446 masterfd
= open(TAGCACHE_FILE_MASTER
, O_WRONLY
| O_CREAT
| O_TRUNC
);
2450 logf("Failure to create index file (%s)", TAGCACHE_FILE_MASTER
);
2455 /* Write the header (write real values later). */
2456 memset(&tcmh
, 0, sizeof(struct master_header
));
2458 tcmh
.tch
.entry_count
= 0;
2459 tcmh
.tch
.datasize
= 0;
2461 ecwrite(masterfd
, &tcmh
, 1, master_header_ec
, tc_stat
.econ
);
2463 masterfd_pos
= lseek(masterfd
, 0, SEEK_CUR
);
2468 * Master file already exists so we need to process the current
2473 if (ecread(masterfd
, &tcmh
, 1, master_header_ec
, tc_stat
.econ
) !=
2474 sizeof(struct master_header
) || tcmh
.tch
.magic
!= TAGCACHE_MAGIC
)
2476 logf("header error");
2483 * If we reach end of the master file, we need to expand it to
2484 * hold new tags. If the current index is not sorted, we can
2485 * simply append new data to end of the file.
2486 * However, if the index is sorted, we need to update all tag
2487 * pointers in the master file for the current index.
2489 masterfd_pos
= lseek(masterfd
, tcmh
.tch
.entry_count
* sizeof(struct index_entry
),
2491 if (masterfd_pos
== filesize(masterfd
))
2493 logf("appending...");
2499 * Load new unique tags in memory to be sorted later and added
2500 * to the master lookup file.
2502 if (TAGCACHE_IS_SORTED(index_type
))
2504 lseek(tmpfd
, sizeof(struct tagcache_header
), SEEK_SET
);
2505 /* h is the header of the temporary file containing new tags. */
2506 logf("inserting new tags...");
2507 for (i
= 0; i
< h
->entry_count
; i
++)
2509 struct temp_file_entry entry
;
2511 if (read(tmpfd
, &entry
, sizeof(struct temp_file_entry
)) !=
2512 sizeof(struct temp_file_entry
))
2514 logf("read fail #3");
2520 if (entry
.tag_length
[index_type
] >= (long)sizeof(buf
))
2522 logf("too long entry!");
2527 lseek(tmpfd
, entry
.tag_offset
[index_type
], SEEK_CUR
);
2528 if (read(tmpfd
, buf
, entry
.tag_length
[index_type
]) !=
2529 entry
.tag_length
[index_type
])
2531 logf("read fail #4");
2536 if (TAGCACHE_IS_UNIQUE(index_type
))
2537 error
= !tempbuf_insert(buf
, i
, -1, true);
2539 error
= !tempbuf_insert(buf
, i
, tcmh
.tch
.entry_count
+ i
, false);
2543 logf("insert error");
2548 lseek(tmpfd
, entry
.data_length
- entry
.tag_offset
[index_type
] -
2549 entry
.tag_length
[index_type
], SEEK_CUR
);
2554 /* Sort the buffer data and write it to the index file. */
2555 lseek(fd
, sizeof(struct tagcache_header
), SEEK_SET
);
2556 i
= tempbuf_sort(fd
);
2559 logf("sorted %d tags", i
);
2562 * Now update all indexes in the master lookup file.
2564 logf("updating indices...");
2565 lseek(masterfd
, sizeof(struct master_header
), SEEK_SET
);
2566 for (i
= 0; i
< tcmh
.tch
.entry_count
; i
+= idxbuf_pos
)
2569 int loc
= lseek(masterfd
, 0, SEEK_CUR
);
2571 idxbuf_pos
= MIN(tcmh
.tch
.entry_count
- i
, IDX_BUF_DEPTH
);
2573 if (ecread(masterfd
, idxbuf
, idxbuf_pos
, index_entry_ec
, tc_stat
.econ
)
2574 != (int)sizeof(struct index_entry
)*idxbuf_pos
)
2576 logf("read fail #5");
2580 lseek(masterfd
, loc
, SEEK_SET
);
2582 for (j
= 0; j
< idxbuf_pos
; j
++)
2584 if (idxbuf
[j
].flag
& FLAG_DELETED
)
2586 /* We can just ignore deleted entries. */
2587 // idxbuf[j].tag_seek[index_type] = 0;
2591 idxbuf
[j
].tag_seek
[index_type
] = tempbuf_find_location(
2592 idxbuf
[j
].tag_seek
[index_type
]/TAGFILE_ENTRY_CHUNK_LENGTH
2593 + commit_entry_count
);
2595 if (idxbuf
[j
].tag_seek
[index_type
] < 0)
2597 logf("update error: %d/%d/%d",
2598 idxbuf
[j
].flag
, i
+j
, tcmh
.tch
.entry_count
);
2606 /* Write back the updated index. */
2607 if (ecwrite(masterfd
, idxbuf
, idxbuf_pos
,
2608 index_entry_ec
, tc_stat
.econ
) !=
2609 (int)sizeof(struct index_entry
)*idxbuf_pos
)
2620 * Walk through the temporary file containing the new tags.
2622 // build_normal_index(h, tmpfd, masterfd, idx);
2623 logf("updating new indices...");
2624 lseek(masterfd
, masterfd_pos
, SEEK_SET
);
2625 lseek(tmpfd
, sizeof(struct tagcache_header
), SEEK_SET
);
2626 lseek(fd
, 0, SEEK_END
);
2627 for (i
= 0; i
< h
->entry_count
; i
+= idxbuf_pos
)
2631 idxbuf_pos
= MIN(h
->entry_count
- i
, IDX_BUF_DEPTH
);
2634 memset(idxbuf
, 0, sizeof(struct index_entry
)*IDX_BUF_DEPTH
);
2638 int loc
= lseek(masterfd
, 0, SEEK_CUR
);
2640 if (ecread(masterfd
, idxbuf
, idxbuf_pos
, index_entry_ec
, tc_stat
.econ
)
2641 != (int)sizeof(struct index_entry
)*idxbuf_pos
)
2643 logf("read fail #6");
2647 lseek(masterfd
, loc
, SEEK_SET
);
2650 /* Read entry headers. */
2651 for (j
= 0; j
< idxbuf_pos
; j
++)
2653 if (!TAGCACHE_IS_SORTED(index_type
))
2655 struct temp_file_entry entry
;
2656 struct tagfile_entry fe
;
2658 if (read(tmpfd
, &entry
, sizeof(struct temp_file_entry
)) !=
2659 sizeof(struct temp_file_entry
))
2661 logf("read fail #7");
2667 if (entry
.tag_length
[index_type
] >= (int)sizeof(buf
))
2669 logf("too long entry!");
2670 logf("length=%d", entry
.tag_length
[index_type
]);
2671 logf("pos=0x%02lx", lseek(tmpfd
, 0, SEEK_CUR
));
2676 lseek(tmpfd
, entry
.tag_offset
[index_type
], SEEK_CUR
);
2677 if (read(tmpfd
, buf
, entry
.tag_length
[index_type
]) !=
2678 entry
.tag_length
[index_type
])
2680 logf("read fail #8");
2681 logf("offset=0x%02lx", entry
.tag_offset
[index_type
]);
2682 logf("length=0x%02x", entry
.tag_length
[index_type
]);
2687 /* Write to index file. */
2688 idxbuf
[j
].tag_seek
[index_type
] = lseek(fd
, 0, SEEK_CUR
);
2689 fe
.tag_length
= entry
.tag_length
[index_type
];
2690 fe
.idx_id
= tcmh
.tch
.entry_count
+ i
+ j
;
2691 ecwrite(fd
, &fe
, 1, tagfile_entry_ec
, tc_stat
.econ
);
2692 write(fd
, buf
, fe
.tag_length
);
2696 lseek(tmpfd
, entry
.data_length
- entry
.tag_offset
[index_type
] -
2697 entry
.tag_length
[index_type
], SEEK_CUR
);
2701 /* Locate the correct entry from the sorted array. */
2702 idxbuf
[j
].tag_seek
[index_type
] = tempbuf_find_location(i
+ j
);
2703 if (idxbuf
[j
].tag_seek
[index_type
] < 0)
2705 logf("entry not found (%d)", j
);
2713 if (ecwrite(masterfd
, idxbuf
, idxbuf_pos
,
2714 index_entry_ec
, tc_stat
.econ
) !=
2715 (int)sizeof(struct index_entry
)*idxbuf_pos
)
2717 logf("tagcache: write fail #4");
2726 /* Finally write the header. */
2727 tch
.magic
= TAGCACHE_MAGIC
;
2728 tch
.entry_count
= tempbufidx
;
2729 tch
.datasize
= lseek(fd
, 0, SEEK_END
) - sizeof(struct tagcache_header
);
2730 lseek(fd
, 0, SEEK_SET
);
2731 ecwrite(fd
, &tch
, 1, tagcache_header_ec
, tc_stat
.econ
);
2733 if (index_type
!= tag_filename
)
2734 h
->datasize
+= tch
.datasize
;
2735 logf("s:%d/%ld/%ld", index_type
, tch
.datasize
, h
->datasize
);
2747 static bool commit(void)
2749 struct tagcache_header tch
;
2750 struct master_header tcmh
;
2754 #ifdef HAVE_DIRCACHE
2755 bool dircache_buffer_stolen
= false;
2757 bool local_allocation
= false;
2759 logf("committing tagcache");
2764 tmpfd
= open(TAGCACHE_FILE_TEMP
, O_RDONLY
);
2767 logf("nothing to commit");
2772 /* Load the header. */
2773 len
= sizeof(struct tagcache_header
);
2774 rc
= read(tmpfd
, &tch
, len
);
2776 if (tch
.magic
!= TAGCACHE_MAGIC
|| rc
!= len
)
2778 logf("incorrect header");
2780 remove(TAGCACHE_FILE_TEMP
);
2784 if (tch
.entry_count
== 0)
2786 logf("nothing to commit");
2788 remove(TAGCACHE_FILE_TEMP
);
2792 #ifdef HAVE_EEPROM_SETTINGS
2793 remove(TAGCACHE_STATEFILE
);
2796 /* At first be sure to unload the ramcache! */
2797 #ifdef HAVE_TC_RAMCACHE
2798 tc_stat
.ramcache
= false;
2803 /* Try to steal every buffer we can :) */
2804 if (tempbuf_size
== 0)
2805 local_allocation
= true;
2807 #ifdef HAVE_DIRCACHE
2808 if (tempbuf_size
== 0)
2810 /* Try to steal the dircache buffer. */
2811 tempbuf
= dircache_steal_buffer(&tempbuf_size
);
2812 tempbuf_size
&= ~0x03;
2814 if (tempbuf_size
> 0)
2816 dircache_buffer_stolen
= true;
2821 #ifdef HAVE_TC_RAMCACHE
2822 if (tempbuf_size
== 0 && tc_stat
.ramcache_allocated
> 0)
2824 tempbuf
= (char *)(hdr
+ 1);
2825 tempbuf_size
= tc_stat
.ramcache_allocated
- sizeof(struct ramcache_header
) - 128;
2826 tempbuf_size
&= ~0x03;
2830 /* And finally fail if there are no buffers available. */
2831 if (tempbuf_size
== 0)
2833 logf("delaying commit until next boot");
2834 tc_stat
.commit_delayed
= true;
2840 logf("commit %ld entries...", tch
.entry_count
);
2842 /* Mark DB dirty so it will stay disabled if commit fails. */
2843 current_tcmh
.dirty
= true;
2844 update_master_header();
2846 /* Now create the index files. */
2847 tc_stat
.commit_step
= 0;
2849 tc_stat
.commit_delayed
= false;
2851 for (i
= 0; i
< TAG_COUNT
; i
++)
2855 if (TAGCACHE_IS_NUMERIC(i
))
2858 tc_stat
.commit_step
++;
2859 ret
= build_index(i
, &tch
, tmpfd
);
2863 logf("tagcache failed init");
2865 tc_stat
.commit_delayed
= true;
2867 tc_stat
.commit_step
= 0;
2873 if (!build_numeric_indices(&tch
, tmpfd
))
2875 logf("Failure to commit numeric indices");
2877 tc_stat
.commit_step
= 0;
2883 remove(TAGCACHE_FILE_TEMP
);
2885 tc_stat
.commit_step
= 0;
2887 /* Update the master index headers. */
2888 if ( (masterfd
= open_master_fd(&tcmh
, true)) < 0)
2894 tcmh
.tch
.entry_count
+= tch
.entry_count
;
2895 tcmh
.tch
.datasize
= sizeof(struct master_header
)
2896 + sizeof(struct index_entry
) * tcmh
.tch
.entry_count
2901 lseek(masterfd
, 0, SEEK_SET
);
2902 ecwrite(masterfd
, &tcmh
, 1, master_header_ec
, tc_stat
.econ
);
2905 logf("tagcache committed");
2906 tc_stat
.ready
= check_all_headers();
2907 tc_stat
.readyvalid
= true;
2909 if (local_allocation
)
2915 #ifdef HAVE_DIRCACHE
2916 /* Rebuild the dircache, if we stole the buffer. */
2917 if (dircache_buffer_stolen
)
2921 #ifdef HAVE_TC_RAMCACHE
2922 /* Reload tagcache. */
2923 if (tc_stat
.ramcache_allocated
> 0)
2924 tagcache_start_scan();
2932 static void allocate_tempbuf(void)
2934 /* Yeah, malloc would be really nice now :) */
2936 tempbuf_size
= 32*1024*1024;
2937 tempbuf
= malloc(tempbuf_size
);
2939 tempbuf
= (char *)(((long)audiobuf
& ~0x03) + 0x04);
2940 tempbuf_size
= (long)audiobufend
- (long)audiobuf
- 4;
2941 audiobuf
+= tempbuf_size
;
2945 static void free_tempbuf(void)
2947 if (tempbuf_size
== 0)
2953 audiobuf
-= tempbuf_size
;
2961 static bool modify_numeric_entry(int masterfd
, int idx_id
, int tag
, long data
)
2963 struct index_entry idx
;
2968 if (!TAGCACHE_IS_NUMERIC(tag
))
2971 if (!get_index(masterfd
, idx_id
, &idx
, false))
2974 idx
.tag_seek
[tag
] = data
;
2975 idx
.flag
|= FLAG_DIRTYNUM
;
2977 return write_index(masterfd
, idx_id
, &idx
);
2981 bool tagcache_modify_numeric_entry(struct tagcache_search
*tcs
,
2984 struct master_header myhdr
;
2986 if (tcs
->masterfd
< 0)
2988 if ( (tcs
->masterfd
= open_master_fd(&myhdr
, true)) < 0)
2992 return modify_numeric_entry(tcs
->masterfd
, tcs
->idx_id
, tag
, data
);
2996 #define COMMAND_QUEUE_IS_EMPTY (command_queue_ridx == command_queue_widx)
2998 static bool command_queue_is_full(void)
3002 next
= command_queue_widx
+ 1;
3003 if (next
>= TAGCACHE_COMMAND_QUEUE_LENGTH
)
3006 return (next
== command_queue_ridx
);
3009 static bool command_queue_sync_callback(void)
3012 struct master_header myhdr
;
3015 mutex_lock(&command_queue_mutex
);
3017 if ( (masterfd
= open_master_fd(&myhdr
, true)) < 0)
3020 while (command_queue_ridx
!= command_queue_widx
)
3022 struct tagcache_command_entry
*ce
= &command_queue
[command_queue_ridx
];
3024 switch (ce
->command
)
3026 case CMD_UPDATE_MASTER_HEADER
:
3029 update_master_header();
3031 /* Re-open the masterfd. */
3032 if ( (masterfd
= open_master_fd(&myhdr
, true)) < 0)
3037 case CMD_UPDATE_NUMERIC
:
3039 modify_numeric_entry(masterfd
, ce
->idx_id
, ce
->tag
, ce
->data
);
3044 if (++command_queue_ridx
>= TAGCACHE_COMMAND_QUEUE_LENGTH
)
3045 command_queue_ridx
= 0;
3050 tc_stat
.queue_length
= 0;
3051 mutex_unlock(&command_queue_mutex
);
3055 static void run_command_queue(bool force
)
3057 if (COMMAND_QUEUE_IS_EMPTY
)
3060 if (force
|| command_queue_is_full())
3061 command_queue_sync_callback();
3063 register_storage_idle_func(command_queue_sync_callback
);
3066 static void queue_command(int cmd
, long idx_id
, int tag
, long data
)
3072 mutex_lock(&command_queue_mutex
);
3073 next
= command_queue_widx
+ 1;
3074 if (next
>= TAGCACHE_COMMAND_QUEUE_LENGTH
)
3077 /* Make sure queue is not full. */
3078 if (next
!= command_queue_ridx
)
3080 struct tagcache_command_entry
*ce
= &command_queue
[command_queue_widx
];
3083 ce
->idx_id
= idx_id
;
3087 command_queue_widx
= next
;
3089 tc_stat
.queue_length
++;
3091 mutex_unlock(&command_queue_mutex
);
3095 /* Queue is full, try again later... */
3096 mutex_unlock(&command_queue_mutex
);
3101 long tagcache_increase_serial(void)
3111 old
= current_tcmh
.serial
++;
3112 queue_command(CMD_UPDATE_MASTER_HEADER
, 0, 0, 0);
3117 void tagcache_update_numeric(int idx_id
, int tag
, long data
)
3119 queue_command(CMD_UPDATE_NUMERIC
, idx_id
, tag
, data
);
3121 #endif /* !__PCTOOL__ */
3123 long tagcache_get_serial(void)
3125 return current_tcmh
.serial
;
3128 long tagcache_get_commitid(void)
3130 return current_tcmh
.commitid
;
3133 static bool write_tag(int fd
, const char *tagstr
, const char *datastr
)
3138 snprintf(buf
, sizeof buf
, "%s=\"", tagstr
);
3139 for (i
= strlen(buf
); i
< (long)sizeof(buf
)-4; i
++)
3141 if (*datastr
== '\0')
3144 if (*datastr
== '"' || *datastr
== '\\')
3147 buf
[i
] = *(datastr
++);
3150 strcpy(&buf
[i
], "\" ");
3152 write(fd
, buf
, i
+ 2);
3159 static bool read_tag(char *dest
, long size
,
3160 const char *src
, const char *tagstr
)
3163 char current_tag
[32];
3165 while (*src
!= '\0')
3167 /* Skip all whitespace */
3175 /* Read in tag name */
3176 while (*src
!= '=' && *src
!= ' ')
3178 current_tag
[pos
] = *src
;
3182 if (*src
== '\0' || pos
>= (long)sizeof(current_tag
))
3185 current_tag
[pos
] = '\0';
3187 /* Read in tag data */
3189 /* Find the start. */
3190 while (*src
!= '"' && *src
!= '\0')
3193 if (*src
== '\0' || *(++src
) == '\0')
3196 /* Read the data. */
3197 for (pos
= 0; pos
< size
; pos
++)
3204 dest
[pos
] = *(src
+1);
3224 if (!strcasecmp(tagstr
, current_tag
))
3231 static int parse_changelog_line(int line_n
, const char *buf
, void *parameters
)
3233 struct index_entry idx
;
3234 char tag_data
[TAG_MAXLEN
+32];
3236 long masterfd
= (long)parameters
;
3237 const int import_tags
[] = { tag_playcount
, tag_rating
, tag_playtime
, tag_lastplayed
,
3245 logf("%d/%s", line_n
, buf
);
3246 if (!read_tag(tag_data
, sizeof tag_data
, buf
, "filename"))
3248 logf("filename missing");
3253 idx_id
= find_index(tag_data
);
3256 logf("entry not found");
3260 if (!get_index(masterfd
, idx_id
, &idx
, false))
3262 logf("failed to retrieve index entry");
3266 /* Stop if tag has already been modified. */
3267 if (idx
.flag
& FLAG_DIRTYNUM
)
3270 logf("import: %s", tag_data
);
3272 idx
.flag
|= FLAG_DIRTYNUM
;
3273 for (i
= 0; i
< (long)(sizeof(import_tags
)/sizeof(import_tags
[0])); i
++)
3277 if (!read_tag(tag_data
, sizeof tag_data
, buf
,
3278 tagcache_tag_to_str(import_tags
[i
])))
3283 data
= atoi(tag_data
);
3287 idx
.tag_seek
[import_tags
[i
]] = data
;
3289 if (import_tags
[i
] == tag_lastplayed
&& data
>= current_tcmh
.serial
)
3290 current_tcmh
.serial
= data
+ 1;
3291 else if (import_tags
[i
] == tag_commitid
&& data
>= current_tcmh
.commitid
)
3292 current_tcmh
.commitid
= data
+ 1;
3295 return write_index(masterfd
, idx_id
, &idx
) ? 0 : -5;
3298 bool tagcache_import_changelog(void)
3300 struct master_header myhdr
;
3301 struct tagcache_header tch
;
3312 clfd
= open(TAGCACHE_FILE_CHANGELOG
, O_RDONLY
);
3315 logf("failure to open changelog");
3319 if ( (masterfd
= open_master_fd(&myhdr
, true)) < 0)
3327 filenametag_fd
= open_tag_fd(&tch
, tag_filename
, false);
3329 fast_readline(clfd
, buf
, sizeof buf
, (long *)masterfd
,
3330 parse_changelog_line
);
3335 if (filenametag_fd
>= 0)
3336 close(filenametag_fd
);
3340 update_master_header();
3345 #endif /* !__PCTOOL__ */
3347 bool tagcache_create_changelog(struct tagcache_search
*tcs
)
3349 struct master_header myhdr
;
3350 struct index_entry idx
;
3351 char buf
[TAG_MAXLEN
+32];
3359 if (!tagcache_search(tcs
, tag_filename
))
3362 /* Initialize the changelog */
3363 clfd
= open(TAGCACHE_FILE_CHANGELOG
, O_WRONLY
| O_CREAT
| O_TRUNC
);
3366 logf("failure to open changelog");
3370 if (tcs
->masterfd
< 0)
3372 if ( (tcs
->masterfd
= open_master_fd(&myhdr
, false)) < 0)
3377 lseek(tcs
->masterfd
, 0, SEEK_SET
);
3378 ecread(tcs
->masterfd
, &myhdr
, 1, master_header_ec
, tc_stat
.econ
);
3381 write(clfd
, "## Changelog version 1\n", 23);
3383 for (i
= 0; i
< myhdr
.tch
.entry_count
; i
++)
3385 if (ecread(tcs
->masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
3386 != sizeof(struct index_entry
))
3388 logf("read error #9");
3389 tagcache_search_finish(tcs
);
3394 /* Skip until the entry found has been modified. */
3395 if (! (idx
.flag
& FLAG_DIRTYNUM
) )
3398 /* Skip deleted entries too. */
3399 if (idx
.flag
& FLAG_DELETED
)
3402 /* Now retrieve all tags. */
3403 for (j
= 0; j
< TAG_COUNT
; j
++)
3405 if (TAGCACHE_IS_NUMERIC(j
))
3407 snprintf(temp
, sizeof temp
, "%d", idx
.tag_seek
[j
]);
3408 write_tag(clfd
, tagcache_tag_to_str(j
), temp
);
3413 tagcache_retrieve(tcs
, i
, tcs
->type
, buf
, sizeof buf
);
3414 write_tag(clfd
, tagcache_tag_to_str(j
), buf
);
3417 write(clfd
, "\n", 1);
3423 tagcache_search_finish(tcs
);
3428 static bool delete_entry(long idx_id
)
3433 struct index_entry idx
, myidx
;
3434 struct master_header myhdr
;
3435 char buf
[TAG_MAXLEN
+32];
3436 int in_use
[TAG_COUNT
];
3438 logf("delete_entry(): %ld", idx_id
);
3440 #ifdef HAVE_TC_RAMCACHE
3441 /* At first mark the entry removed from ram cache. */
3442 if (tc_stat
.ramcache
)
3443 hdr
->indices
[idx_id
].flag
|= FLAG_DELETED
;
3446 if ( (masterfd
= open_master_fd(&myhdr
, true) ) < 0)
3449 lseek(masterfd
, idx_id
* sizeof(struct index_entry
), SEEK_CUR
);
3450 if (ecread(masterfd
, &myidx
, 1, index_entry_ec
, tc_stat
.econ
)
3451 != sizeof(struct index_entry
))
3453 logf("delete_entry(): read error");
3457 if (myidx
.flag
& FLAG_DELETED
)
3459 logf("delete_entry(): already deleted!");
3463 myidx
.flag
|= FLAG_DELETED
;
3464 lseek(masterfd
, -sizeof(struct index_entry
), SEEK_CUR
);
3465 if (ecwrite(masterfd
, &myidx
, 1, index_entry_ec
, tc_stat
.econ
)
3466 != sizeof(struct index_entry
))
3468 logf("delete_entry(): write_error #1");
3472 /* Now check which tags are no longer in use (if any) */
3473 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
3476 lseek(masterfd
, sizeof(struct master_header
), SEEK_SET
);
3477 for (i
= 0; i
< myhdr
.tch
.entry_count
; i
++)
3479 struct index_entry
*idxp
;
3481 #ifdef HAVE_TC_RAMCACHE
3482 /* Use RAM DB if available for greater speed */
3483 if (tc_stat
.ramcache
)
3484 idxp
= &hdr
->indices
[i
];
3488 if (ecread(masterfd
, &idx
, 1, index_entry_ec
, tc_stat
.econ
)
3489 != sizeof(struct index_entry
))
3491 logf("delete_entry(): read error #2");
3497 if (idxp
->flag
& FLAG_DELETED
)
3500 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
3502 if (TAGCACHE_IS_NUMERIC(tag
))
3505 if (idxp
->tag_seek
[tag
] == myidx
.tag_seek
[tag
])
3510 /* Now delete all tags no longer in use. */
3511 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
3513 struct tagcache_header tch
;
3514 int oldseek
= myidx
.tag_seek
[tag
];
3516 if (TAGCACHE_IS_NUMERIC(tag
))
3520 * Replace tag seek with a hash value of the field string data.
3521 * That way runtime statistics of moved or altered files can be
3524 #ifdef HAVE_TC_RAMCACHE
3525 if (tc_stat
.ramcache
&& tag
!= tag_filename
)
3527 struct tagfile_entry
*tfe
;
3528 int32_t *seek
= &hdr
->indices
[idx_id
].tag_seek
[tag
];
3530 tfe
= (struct tagfile_entry
*)&hdr
->tags
[tag
][*seek
];
3531 *seek
= crc_32(tfe
->tag_data
, strlen(tfe
->tag_data
), 0xffffffff);
3532 myidx
.tag_seek
[tag
] = *seek
;
3537 struct tagfile_entry tfe
;
3539 /* Open the index file, which contains the tag names. */
3540 if ((fd
= open_tag_fd(&tch
, tag
, true)) < 0)
3543 /* Skip the header block */
3544 lseek(fd
, myidx
.tag_seek
[tag
], SEEK_SET
);
3545 if (ecread(fd
, &tfe
, 1, tagfile_entry_ec
, tc_stat
.econ
)
3546 != sizeof(struct tagfile_entry
))
3548 logf("delete_entry(): read error #3");
3552 if (read(fd
, buf
, tfe
.tag_length
) != tfe
.tag_length
)
3554 logf("delete_entry(): read error #4");
3558 myidx
.tag_seek
[tag
] = crc_32(buf
, strlen(buf
), 0xffffffff);
3563 logf("in use: %d/%d", tag
, in_use
[tag
]);
3572 #ifdef HAVE_TC_RAMCACHE
3573 /* Delete from ram. */
3574 if (tc_stat
.ramcache
&& tag
!= tag_filename
)
3576 struct tagfile_entry
*tagentry
= (struct tagfile_entry
*)&hdr
->tags
[tag
][oldseek
];
3577 tagentry
->tag_data
[0] = '\0';
3581 /* Open the index file, which contains the tag names. */
3584 if ((fd
= open_tag_fd(&tch
, tag
, true)) < 0)
3588 /* Skip the header block */
3589 lseek(fd
, oldseek
+ sizeof(struct tagfile_entry
), SEEK_SET
);
3591 /* Debug, print 10 first characters of the tag
3594 logf("TAG:%s", buf);
3595 lseek(fd, -10, SEEK_CUR);
3598 /* Write first data byte in tag as \0 */
3601 /* Now tag data has been removed */
3606 /* Write index entry back into master index. */
3607 lseek(masterfd
, sizeof(struct master_header
) +
3608 (idx_id
* sizeof(struct index_entry
)), SEEK_SET
);
3609 if (ecwrite(masterfd
, &myidx
, 1, index_entry_ec
, tc_stat
.econ
)
3610 != sizeof(struct index_entry
))
3612 logf("delete_entry(): write_error #2");
3631 * Returns true if there is an event waiting in the queue
3632 * that requires the current operation to be aborted.
3634 static bool check_event_queue(void)
3636 struct queue_event ev
;
3638 queue_wait_w_tmo(&tagcache_queue
, &ev
, 0);
3643 case SYS_USB_CONNECTED
:
3644 /* Put the event back into the queue. */
3645 queue_post(&tagcache_queue
, ev
.id
, ev
.data
);
3653 #ifdef HAVE_TC_RAMCACHE
3654 static bool allocate_tagcache(void)
3656 struct master_header tcmh
;
3659 /* Load the header. */
3660 if ( (fd
= open_master_fd(&tcmh
, false)) < 0)
3669 * Now calculate the required cache size plus
3670 * some extra space for alignment fixes.
3672 tc_stat
.ramcache_allocated
= tcmh
.tch
.datasize
+ 128 + TAGCACHE_RESERVE
+
3673 sizeof(struct ramcache_header
) + TAG_COUNT
*sizeof(void *);
3674 hdr
= buffer_alloc(tc_stat
.ramcache_allocated
+ 128);
3675 memset(hdr
, 0, sizeof(struct ramcache_header
));
3676 memcpy(&hdr
->h
, &tcmh
, sizeof(struct master_header
));
3677 hdr
->indices
= (struct index_entry
*)(hdr
+ 1);
3678 logf("tagcache: %d bytes allocated.", tc_stat
.ramcache_allocated
);
3683 # ifdef HAVE_EEPROM_SETTINGS
3684 static bool tagcache_dumpload(void)
3686 struct statefile_header shdr
;
3691 fd
= open(TAGCACHE_STATEFILE
, O_RDONLY
);
3694 logf("no tagcache statedump");
3698 /* Check the statefile memory placement */
3699 hdr
= buffer_alloc(0);
3700 rc
= read(fd
, &shdr
, sizeof(struct statefile_header
));
3701 if (rc
!= sizeof(struct statefile_header
)
3702 /* || (long)hdr != (long)shdr.hdr */)
3704 logf("incorrect statefile");
3710 offpos
= (long)hdr
- (long)shdr
.hdr
;
3712 /* Lets allocate real memory and load it */
3713 hdr
= buffer_alloc(shdr
.tc_stat
.ramcache_allocated
);
3714 rc
= read(fd
, hdr
, shdr
.tc_stat
.ramcache_allocated
);
3717 if (rc
!= shdr
.tc_stat
.ramcache_allocated
)
3719 logf("read failure!");
3724 memcpy(&tc_stat
, &shdr
.tc_stat
, sizeof(struct tagcache_stat
));
3726 /* Now fix the pointers */
3727 hdr
->indices
= (struct index_entry
*)((long)hdr
->indices
+ offpos
);
3728 for (i
= 0; i
< TAG_COUNT
; i
++)
3729 hdr
->tags
[i
] += offpos
;
3734 static bool tagcache_dumpsave(void)
3736 struct statefile_header shdr
;
3739 if (!tc_stat
.ramcache
)
3742 fd
= open(TAGCACHE_STATEFILE
, O_WRONLY
| O_CREAT
| O_TRUNC
);
3745 logf("failed to create a statedump");
3749 /* Create the header */
3751 memcpy(&shdr
.tc_stat
, &tc_stat
, sizeof(struct tagcache_stat
));
3752 write(fd
, &shdr
, sizeof(struct statefile_header
));
3754 /* And dump the data too */
3755 write(fd
, hdr
, tc_stat
.ramcache_allocated
);
3762 static bool load_tagcache(void)
3764 struct tagcache_header
*tch
;
3765 long bytesleft
= tc_stat
.ramcache_allocated
;
3766 struct index_entry
*idx
;
3771 # ifdef HAVE_DIRCACHE
3772 while (dircache_is_initializing())
3775 dircache_set_appflag(DIRCACHE_APPFLAG_TAGCACHE
);
3778 logf("loading tagcache to ram...");
3780 fd
= open(TAGCACHE_FILE_MASTER
, O_RDONLY
);
3783 logf("tagcache open failed");
3787 if (ecread(fd
, &hdr
->h
, 1, master_header_ec
, tc_stat
.econ
)
3788 != sizeof(struct master_header
)
3789 || hdr
->h
.tch
.magic
!= TAGCACHE_MAGIC
)
3791 logf("incorrect header");
3797 /* Load the master index table. */
3798 for (i
= 0; i
< hdr
->h
.tch
.entry_count
; i
++)
3800 rc
= ecread(fd
, idx
, 1, index_entry_ec
, tc_stat
.econ
);
3801 if (rc
!= sizeof(struct index_entry
))
3803 logf("read error #10");
3808 bytesleft
-= sizeof(struct index_entry
);
3809 if (bytesleft
< 0 || ((long)idx
- (long)hdr
->indices
) >= tc_stat
.ramcache_allocated
)
3811 logf("too big tagcache.");
3821 /* Load the tags. */
3823 for (tag
= 0; tag
< TAG_COUNT
; tag
++)
3825 struct tagfile_entry
*fe
;
3826 char buf
[TAG_MAXLEN
+32];
3828 if (TAGCACHE_IS_NUMERIC(tag
))
3831 //p = ((void *)p+1);
3832 p
= (char *)((long)p
& ~0x03) + 0x04;
3835 /* Check the header. */
3836 tch
= (struct tagcache_header
*)p
;
3837 p
+= sizeof(struct tagcache_header
);
3839 if ( (fd
= open_tag_fd(tch
, tag
, false)) < 0)
3842 for (hdr
->entry_count
[tag
] = 0;
3843 hdr
->entry_count
[tag
] < tch
->entry_count
;
3844 hdr
->entry_count
[tag
]++)
3848 if (do_timed_yield())
3850 /* Abort if we got a critical event in queue */
3851 if (check_event_queue())
3855 fe
= (struct tagfile_entry
*)p
;
3856 pos
= lseek(fd
, 0, SEEK_CUR
);
3857 rc
= ecread(fd
, fe
, 1, tagfile_entry_ec
, tc_stat
.econ
);
3858 if (rc
!= sizeof(struct tagfile_entry
))
3860 /* End of lookup table. */
3861 logf("read error #11");
3866 /* We have a special handling for the filename tags. */
3867 if (tag
== tag_filename
)
3869 # ifdef HAVE_DIRCACHE
3870 const struct dirent
*dc
;
3873 // FIXME: This is wrong!
3874 // idx = &hdr->indices[hdr->entry_count[i]];
3875 idx
= &hdr
->indices
[fe
->idx_id
];
3877 if (fe
->tag_length
>= (long)sizeof(buf
)-1)
3881 logf("TAG:%s", buf
);
3882 logf("too long filename");
3887 rc
= read(fd
, buf
, fe
->tag_length
);
3888 if (rc
!= fe
->tag_length
)
3890 logf("read error #12");
3895 /* Check if the entry has already been removed */
3896 if (idx
->flag
& FLAG_DELETED
)
3899 /* This flag must not be used yet. */
3900 if (idx
->flag
& FLAG_DIRCACHE
)
3902 logf("internal error!");
3907 if (idx
->tag_seek
[tag
] != pos
)
3909 logf("corrupt data structures!");
3914 # ifdef HAVE_DIRCACHE
3915 if (dircache_is_enabled())
3917 dc
= dircache_get_entry_ptr(buf
);
3920 logf("Entry no longer valid.");
3922 delete_entry(fe
->idx_id
);
3926 idx
->flag
|= FLAG_DIRCACHE
;
3927 FLAG_SET_ATTR(idx
->flag
, fe
->idx_id
);
3928 idx
->tag_seek
[tag_filename
] = (long)dc
;
3933 /* This will be very slow unless dircache is enabled
3934 or target is flash based, but do it anyway for
3936 /* Check if entry has been removed. */
3937 if (global_settings
.tagcache_autoupdate
)
3939 if (!file_exists(buf
))
3941 logf("Entry no longer valid.");
3943 delete_entry(fe
->idx_id
);
3952 bytesleft
-= sizeof(struct tagfile_entry
) + fe
->tag_length
;
3955 logf("too big tagcache #2");
3956 logf("tl: %d", fe
->tag_length
);
3957 logf("bl: %ld", bytesleft
);
3963 rc
= read(fd
, fe
->tag_data
, fe
->tag_length
);
3966 if (rc
!= fe
->tag_length
)
3968 logf("read error #13");
3969 logf("rc=0x%04x", rc
); // 0x431
3970 logf("len=0x%04x", fe
->tag_length
); // 0x4000
3971 logf("pos=0x%04lx", lseek(fd
, 0, SEEK_CUR
)); // 0x433
3972 logf("tag=0x%02x", tag
); // 0x00
3980 tc_stat
.ramcache_used
= tc_stat
.ramcache_allocated
- bytesleft
;
3981 logf("tagcache loaded into ram!");
3985 #endif /* HAVE_TC_RAMCACHE */
3987 static bool check_deleted_files(void)
3990 char buf
[TAG_MAXLEN
+32];
3991 struct tagfile_entry tfe
;
3993 logf("reverse scan...");
3994 snprintf(buf
, sizeof buf
, TAGCACHE_FILE_INDEX
, tag_filename
);
3995 fd
= open(buf
, O_RDONLY
);
3999 logf("%s open fail", buf
);
4003 lseek(fd
, sizeof(struct tagcache_header
), SEEK_SET
);
4004 while (ecread(fd
, &tfe
, 1, tagfile_entry_ec
, tc_stat
.econ
)
4005 == sizeof(struct tagfile_entry
)
4007 && !check_event_queue()
4011 if (tfe
.tag_length
>= (long)sizeof(buf
)-1)
4013 logf("too long tag");
4018 if (read(fd
, buf
, tfe
.tag_length
) != tfe
.tag_length
)
4020 logf("read error #14");
4025 /* Check if the file has already deleted from the db. */
4029 /* Now check if the file exists. */
4030 if (!file_exists(buf
))
4032 logf("Entry no longer valid.");
4033 logf("-> %s / %d", buf
, tfe
.tag_length
);
4034 delete_entry(tfe
.idx_id
);
4045 static bool check_dir(const char *dirname
, int add_files
)
4049 int success
= false;
4050 int ignore
, unignore
;
4051 char newpath
[MAX_PATH
];
4053 dir
= opendir(dirname
);
4056 logf("tagcache: opendir() failed");
4060 /* check for a database.ignore file */
4061 snprintf(newpath
, MAX_PATH
, "%s/database.ignore", dirname
);
4062 ignore
= file_exists(newpath
);
4063 /* check for a database.unignore file */
4064 snprintf(newpath
, MAX_PATH
, "%s/database.unignore", dirname
);
4065 unignore
= file_exists(newpath
);
4067 /* don't do anything if both ignore and unignore are there */
4068 if (ignore
!= unignore
)
4069 add_files
= unignore
;
4071 /* Recursively scan the dir. */
4075 while (!check_event_queue())
4078 struct dirent
*entry
;
4080 entry
= readdir(dir
);
4088 if (!strcmp((char *)entry
->d_name
, ".") ||
4089 !strcmp((char *)entry
->d_name
, ".."))
4094 len
= strlen(curpath
);
4095 snprintf(&curpath
[len
], sizeof(curpath
) - len
, "/%s",
4098 processed_dir_count
++;
4099 if (entry
->attribute
& ATTR_DIRECTORY
)
4100 check_dir(curpath
, add_files
);
4103 tc_stat
.curentry
= curpath
;
4105 /* Add a new entry to the temporary db file. */
4106 add_tagcache(curpath
, (entry
->wrtdate
<< 16) | entry
->wrttime
4107 #if defined(HAVE_TC_RAMCACHE) && defined(HAVE_DIRCACHE)
4108 , dir
->internal_entry
4112 /* Wait until current path for debug screen is read and unset. */
4113 while (tc_stat
.syncscreen
&& tc_stat
.curentry
!= NULL
)
4116 tc_stat
.curentry
= NULL
;
4119 curpath
[len
] = '\0';
4127 void tagcache_screensync_event(void)
4129 tc_stat
.curentry
= NULL
;
4132 void tagcache_screensync_enable(bool state
)
4134 tc_stat
.syncscreen
= state
;
4137 void tagcache_build(const char *path
)
4139 struct tagcache_header header
;
4144 total_entry_count
= 0;
4145 processed_dir_count
= 0;
4147 #ifdef HAVE_DIRCACHE
4148 while (dircache_is_initializing())
4152 logf("updating tagcache");
4154 cachefd
= open(TAGCACHE_FILE_TEMP
, O_RDONLY
);
4157 logf("skipping, cache already waiting for commit");
4162 cachefd
= open(TAGCACHE_FILE_TEMP
, O_RDWR
| O_CREAT
| O_TRUNC
);
4165 logf("master file open failed: %s", TAGCACHE_FILE_TEMP
);
4169 filenametag_fd
= open_tag_fd(&header
, tag_filename
, false);
4173 logf("Scanning files...");
4174 /* Scan for new files. */
4175 memset(&header
, 0, sizeof(struct tagcache_header
));
4176 write(cachefd
, &header
, sizeof(struct tagcache_header
));
4178 if (strcmp("/", path
) != 0)
4179 strcpy(curpath
, path
);
4180 ret
= check_dir(path
, true);
4182 /* Write the header. */
4183 header
.magic
= TAGCACHE_MAGIC
;
4184 header
.datasize
= data_size
;
4185 header
.entry_count
= total_entry_count
;
4186 lseek(cachefd
, 0, SEEK_SET
);
4187 write(cachefd
, &header
, sizeof(struct tagcache_header
));
4190 if (filenametag_fd
>= 0)
4192 close(filenametag_fd
);
4193 filenametag_fd
= -1;
4203 /* Commit changes to the database. */
4209 remove(TAGCACHE_FILE_TEMP
);
4210 logf("tagcache built!");
4216 #ifdef HAVE_TC_RAMCACHE
4219 /* Import runtime statistics if we just initialized the db. */
4220 if (hdr
->h
.serial
== 0)
4221 queue_post(&tagcache_queue
, Q_IMPORT_CHANGELOG
, 0);
4228 #ifdef HAVE_TC_RAMCACHE
4229 static void load_ramcache(void)
4236 /* At first we should load the cache (if exists). */
4237 tc_stat
.ramcache
= load_tagcache();
4239 if (!tc_stat
.ramcache
)
4241 /* If loading failed, it must indicate some problem with the db
4242 * so disable it entirely to prevent further issues. */
4243 tc_stat
.ready
= false;
4250 void tagcache_unload_ramcache(void)
4252 tc_stat
.ramcache
= false;
4253 /* Just to make sure there is no statefile present. */
4254 // remove(TAGCACHE_STATEFILE);
4259 static void tagcache_thread(void)
4261 struct queue_event ev
;
4262 bool check_done
= false;
4264 /* If the previous cache build/update was interrupted, commit
4265 * the changes first in foreground. */
4271 #ifdef HAVE_TC_RAMCACHE
4272 # ifdef HAVE_EEPROM_SETTINGS
4273 if (firmware_settings
.initialized
&& firmware_settings
.disk_clean
)
4274 check_done
= tagcache_dumpload();
4276 remove(TAGCACHE_STATEFILE
);
4279 /* Allocate space for the tagcache if found on disk. */
4280 if (global_settings
.tagcache_ram
&& !tc_stat
.ramcache
)
4281 allocate_tagcache();
4285 tc_stat
.initialized
= true;
4287 /* Don't delay bootup with the header check but do it on background. */
4289 tc_stat
.ready
= check_all_headers();
4290 tc_stat
.readyvalid
= true;
4294 run_command_queue(false);
4296 queue_wait_w_tmo(&tagcache_queue
, &ev
, HZ
);
4300 case Q_IMPORT_CHANGELOG
:
4301 tagcache_import_changelog();
4306 remove(TAGCACHE_FILE_TEMP
);
4307 tagcache_build("/");
4311 tagcache_build("/");
4312 #ifdef HAVE_TC_RAMCACHE
4315 check_deleted_files();
4321 if (check_done
|| !tc_stat
.ready
)
4324 #ifdef HAVE_TC_RAMCACHE
4325 if (!tc_stat
.ramcache
&& global_settings
.tagcache_ram
)
4328 if (tc_stat
.ramcache
&& global_settings
.tagcache_autoupdate
)
4329 tagcache_build("/");
4333 if (global_settings
.tagcache_autoupdate
)
4335 tagcache_build("/");
4337 /* This will be very slow unless dircache is enabled
4338 or target is flash based, but do it anyway for
4340 check_deleted_files();
4343 logf("tagcache check done");
4355 case SYS_USB_CONNECTED
:
4356 logf("USB: TagCache");
4357 usb_acknowledge(SYS_USB_CONNECTED_ACK
);
4358 usb_wait_for_disconnect(&tagcache_queue
);
4365 bool tagcache_prepare_shutdown(void)
4367 if (tagcache_get_commit_step() > 0)
4370 tagcache_stop_scan();
4371 while (read_lock
|| write_lock
)
4377 void tagcache_shutdown(void)
4379 /* Flush the command queue. */
4380 run_command_queue(true);
4382 #ifdef HAVE_EEPROM_SETTINGS
4383 if (tc_stat
.ramcache
)
4384 tagcache_dumpsave();
4388 static int get_progress(void)
4390 int total_count
= -1;
4392 #ifdef HAVE_DIRCACHE
4393 if (dircache_is_enabled())
4395 total_count
= dircache_get_entry_count();
4399 #ifdef HAVE_TC_RAMCACHE
4401 if (hdr
&& tc_stat
.ramcache
)
4402 total_count
= hdr
->h
.tch
.entry_count
;
4406 if (total_count
< 0)
4409 return processed_dir_count
* 100 / total_count
;
4412 struct tagcache_stat
* tagcache_get_stat(void)
4414 tc_stat
.progress
= get_progress();
4415 tc_stat
.processed_entries
= processed_dir_count
;
4420 void tagcache_start_scan(void)
4422 queue_post(&tagcache_queue
, Q_START_SCAN
, 0);
4425 bool tagcache_update(void)
4430 queue_post(&tagcache_queue
, Q_UPDATE
, 0);
4434 bool tagcache_rebuild()
4436 queue_post(&tagcache_queue
, Q_REBUILD
, 0);
4440 void tagcache_stop_scan(void)
4442 queue_post(&tagcache_queue
, Q_STOP_SCAN
, 0);
4445 #ifdef HAVE_TC_RAMCACHE
4446 bool tagcache_is_ramcache(void)
4448 return tc_stat
.ramcache
;
4452 #endif /* !__PCTOOL__ */
4455 void tagcache_init(void)
4457 memset(&tc_stat
, 0, sizeof(struct tagcache_stat
));
4458 memset(¤t_tcmh
, 0, sizeof(struct master_header
));
4459 filenametag_fd
= -1;
4460 write_lock
= read_lock
= 0;
4463 mutex_init(&command_queue_mutex
);
4464 queue_init(&tagcache_queue
, true);
4465 create_thread(tagcache_thread
, tagcache_stack
,
4466 sizeof(tagcache_stack
), 0, tagcache_thread_name
4467 IF_PRIO(, PRIORITY_BACKGROUND
)
4470 tc_stat
.initialized
= true;
4474 tc_stat
.ready
= check_all_headers();
4479 void tagcache_reverse_scan(void)
4481 logf("Checking for deleted files");
4482 check_deleted_files();
4486 bool tagcache_is_initialized(void)
4488 return tc_stat
.initialized
;
4490 bool tagcache_is_usable(void)
4492 return tc_stat
.initialized
&& tc_stat
.ready
;
4494 int tagcache_get_commit_step(void)
4496 return tc_stat
.commit_step
;
4498 int tagcache_get_max_commit_step(void)
4500 return (int)(SORTED_TAGS_COUNT
)+1;