Fix -Wdeclaration-after-statement warnings.
[paraslash.git] / aft.c
1 /*
2 * Copyright (C) 2007-2008 Andre Noll <maan@systemlinux.org>
3 *
4 * Licensed under the GPL v2. For licencing details see COPYING.
5 */
6
7 /** \file aft.c Audio file table functions. */
8
9 #include <dirent.h> /* readdir() */
10 #include "para.h"
11 #include "error.h"
12 #include "string.h"
13 #include <sys/mman.h>
14 #include <fnmatch.h>
15 #include <sys/shm.h>
16
17 #include "afh.h"
18 #include "afs.h"
19 #include "net.h"
20 #include "vss.h"
21 #include "fd.h"
22 #include "ipc.h"
23
24 static struct osl_table *audio_file_table;
25
26 /** The different sorting methods of the ls command. */
27 enum ls_sorting_method {
28 /** -sp (default) */
29 LS_SORT_BY_PATH,
30 /** -ss */
31 LS_SORT_BY_SCORE,
32 /** -sl */
33 LS_SORT_BY_LAST_PLAYED,
34 /** -sn */
35 LS_SORT_BY_NUM_PLAYED,
36 /** -sf */
37 LS_SORT_BY_FREQUENCY,
38 /** -sc */
39 LS_SORT_BY_CHANNELS,
40 /** -si */
41 LS_SORT_BY_IMAGE_ID,
42 /** -sy */
43 LS_SORT_BY_LYRICS_ID,
44 /** -sb */
45 LS_SORT_BY_BITRATE,
46 /** -sd */
47 LS_SORT_BY_DURATION,
48 /** -sa */
49 LS_SORT_BY_AUDIO_FORMAT,
50 /** -sh */
51 LS_SORT_BY_HASH,
52 };
53
54 /** The different listing modes of the ls command. */
55 enum ls_listing_mode {
56 /** Default listing mode. */
57 LS_MODE_SHORT,
58 /** -l or -ll */
59 LS_MODE_LONG,
60 /** -lv */
61 LS_MODE_VERBOSE,
62 /** -lm */
63 LS_MODE_MBOX,
64 /** -lc */
65 LS_MODE_CHUNKS
66 };
67
68 /** The flags accepted by the ls command. */
69 enum ls_flags {
70 /** -p */
71 LS_FLAG_FULL_PATH = 1,
72 /** -a */
73 LS_FLAG_ADMISSIBLE_ONLY = 2,
74 /** -r */
75 LS_FLAG_REVERSE = 4,
76 };
77
78 /**
79 * The size of the individual output fields of the ls command.
80 *
81 * These depend on the actual content being listed. If, for instance only files
82 * with duration less than an hour are being listed, then the duration with is
83 * made smaller because then the duration is listed as mm:ss rather than
84 * hh:mm:ss.
85 */
86 struct ls_widths {
87 /** size of the score field. */
88 unsigned short score_width;
89 /** size of the image id field. */
90 unsigned short image_id_width;
91 /** size of the lyrics id field. */
92 unsigned short lyrics_id_width;
93 /** size of the bitrate field. */
94 unsigned short bitrate_width;
95 /** size of the frequency field. */
96 unsigned short frequency_width;
97 /** size of the duration field. */
98 unsigned short duration_width;
99 /** size of the num played field. */
100 unsigned short num_played_width;
101 /** size of the amp field. */
102 unsigned short amp_width;
103 };
104
105 /** Data passed from the ls command handler to its callback function. */
106 struct ls_options {
107 /** The given command line flags. */
108 unsigned flags;
109 /** The sorting method given at the command line. */
110 enum ls_sorting_method sorting;
111 /** The given listing mode (short, long, verbose, mbox). */
112 enum ls_listing_mode mode;
113 /** The arguments passed to the ls command. */
114 char **patterns;
115 /** Number of non-option arguments. */
116 int num_patterns;
117 /** Used for long listing mode to align the output fields. */
118 struct ls_widths widths;
119 /** Size of the \a data array. */
120 uint32_t array_size;
121 /** Number of used entries in the data array. */
122 uint32_t num_matching_paths;
123 /** Array of matching entries. */
124 struct ls_data *data;
125 /** Used to sort the array. */
126 struct ls_data **data_ptr;
127 };
128
129 /**
130 * Describes the layout of the mmapped-afs info struct.
131 *
132 * \sa struct afs_info.
133 */
134 enum afsi_offsets {
135 /** Where .last_played is stored. */
136 AFSI_LAST_PLAYED_OFFSET = 0,
137 /** Storage position of the attributes bitmap. */
138 AFSI_ATTRIBUTES_OFFSET = 8,
139 /** Storage position of the .num_played field. */
140 AFSI_NUM_PLAYED_OFFSET = 16,
141 /** Storage position of the .image_id field. */
142 AFSI_IMAGE_ID_OFFSET = 20,
143 /** Storage position of the .lyrics_id field. */
144 AFSI_LYRICS_ID_OFFSET = 24,
145 /** Storage position of the .audio_format_id field. */
146 AFSI_AUDIO_FORMAT_ID_OFFSET = 28,
147 /** Storage position of the amplification field. */
148 AFSI_AMP_OFFSET = 29,
149 /** 2 bytes reserved space for future usage. */
150 AFSI_AUDIO_FORMAT_UNUSED_OFFSET = 30,
151 /** On-disk storage space needed. */
152 AFSI_SIZE = 32
153 };
154
155 /**
156 * Convert a struct afs_info to an osl object.
157 *
158 * \param afsi Pointer to the audio file info to be converted.
159 * \param obj Result pointer.
160 *
161 * \sa load_afsi().
162 */
163 void save_afsi(struct afs_info *afsi, struct osl_object *obj)
164 {
165 char *buf = obj->data;
166
167 write_u64(buf + AFSI_LAST_PLAYED_OFFSET, afsi->last_played);
168 write_u64(buf + AFSI_ATTRIBUTES_OFFSET, afsi->attributes);
169 write_u32(buf + AFSI_NUM_PLAYED_OFFSET, afsi->num_played);
170 write_u32(buf + AFSI_IMAGE_ID_OFFSET, afsi->image_id);
171 write_u32(buf + AFSI_LYRICS_ID_OFFSET, afsi->lyrics_id);
172 write_u8(buf + AFSI_AUDIO_FORMAT_ID_OFFSET,
173 afsi->audio_format_id);
174 write_u8(buf + AFSI_AMP_OFFSET, afsi->amp);
175 memset(buf + AFSI_AUDIO_FORMAT_UNUSED_OFFSET, 0, 2);
176 }
177
178 /**
179 * Get the audio file selector info struct stored in an osl object.
180 *
181 * \param afsi Points to the audio_file info structure to be filled in.
182 * \param obj The osl object holding the data.
183 *
184 * \return Positive on success, negative on errors. Possible errors: \p E_BAD_AFS.
185 *
186 * \sa save_afsi().
187 */
188 int load_afsi(struct afs_info *afsi, struct osl_object *obj)
189 {
190 char *buf = obj->data;
191 if (obj->size < AFSI_SIZE)
192 return -E_BAD_AFSI;
193 afsi->last_played = read_u64(buf + AFSI_LAST_PLAYED_OFFSET);
194 afsi->attributes = read_u64(buf + AFSI_ATTRIBUTES_OFFSET);
195 afsi->num_played = read_u32(buf + AFSI_NUM_PLAYED_OFFSET);
196 afsi->image_id = read_u32(buf + AFSI_IMAGE_ID_OFFSET);
197 afsi->lyrics_id = read_u32(buf + AFSI_LYRICS_ID_OFFSET);
198 afsi->audio_format_id = read_u8(buf +
199 AFSI_AUDIO_FORMAT_ID_OFFSET);
200 afsi->amp = read_u8(buf + AFSI_AMP_OFFSET);
201 return 1;
202 }
203
204 /** The columns of the audio file table. */
205 enum audio_file_table_columns {
206 /** The hash on the content of the audio file. */
207 AFTCOL_HASH,
208 /** The full path in the filesystem. */
209 AFTCOL_PATH,
210 /** The audio file selector info. */
211 AFTCOL_AFSI,
212 /** The audio format handler info. */
213 AFTCOL_AFHI,
214 /** The chunk table info and the chunk table of the audio file. */
215 AFTCOL_CHUNKS,
216 /** The number of columns of this table. */
217 NUM_AFT_COLUMNS
218 };
219
220 static struct osl_column_description aft_cols[] = {
221 [AFTCOL_HASH] = {
222 .storage_type = OSL_MAPPED_STORAGE,
223 .storage_flags = OSL_RBTREE | OSL_FIXED_SIZE | OSL_UNIQUE,
224 .name = "hash",
225 .compare_function = osl_hash_compare,
226 .data_size = HASH_SIZE
227 },
228 [AFTCOL_PATH] = {
229 .storage_type = OSL_MAPPED_STORAGE,
230 .storage_flags = OSL_RBTREE | OSL_UNIQUE,
231 .name = "path",
232 .compare_function = string_compare,
233 },
234 [AFTCOL_AFSI] = {
235 .storage_type = OSL_MAPPED_STORAGE,
236 .storage_flags = OSL_FIXED_SIZE,
237 .name = "afs_info",
238 .data_size = AFSI_SIZE
239 },
240 [AFTCOL_AFHI] = {
241 .storage_type = OSL_MAPPED_STORAGE,
242 .name = "afh_info",
243 },
244 [AFTCOL_CHUNKS] = {
245 .storage_type = OSL_DISK_STORAGE,
246 .name = "chunks",
247 }
248 };
249
250 static struct osl_table_description audio_file_table_desc = {
251 .name = "audio_files",
252 .num_columns = NUM_AFT_COLUMNS,
253 .flags = OSL_LARGE_TABLE,
254 .column_descriptions = aft_cols
255 };
256
257 /* We don't want * dot or dot-dot anywhere. */
258 static int verify_dotfile(const char *rest)
259 {
260 /*
261 * The first character was '.', but that has already been discarded, we
262 * now test the rest.
263 */
264 switch (*rest) {
265 case '\0': case '/': /* /foo/. and /foo/./bar are not ok */
266 return -1;
267 case '.': /* path start with /foo/.. */
268 if (rest[1] == '\0' || rest[1] == '/')
269 return -1; /* /foo/.. or /foo/../bar are not ok */
270 /* /foo/..bar is ok */
271 }
272 return 1;
273 }
274
275 /*
276 * We fundamentally don't like some paths: We don't want double slashes or
277 * slashes at the end that can make pathnames ambiguous.
278 */
279 static int verify_path(const char *orig_path, char **resolved_path)
280 {
281 char c;
282 size_t len;
283 char *path;
284
285 if (*orig_path != '/') /* we only accept absolute paths */
286 return -E_BAD_PATH;
287 len = strlen(orig_path);
288 *resolved_path = para_strdup(orig_path);
289 path = *resolved_path;
290 while (len > 1 && path[--len] == '/')
291 path[len] = '\0'; /* remove slash at the end */
292 c = *path++;
293 while (c) {
294 if (c == '/') {
295 c = *path++;
296 switch (c) {
297 case '/': /* double slash */
298 goto bad_path;
299 case '.':
300 if (verify_dotfile(path) < 0)
301 goto bad_path;
302 default:
303 continue;
304 }
305 }
306 c = *path++;
307 }
308 return 1;
309 bad_path:
310 free(*resolved_path);
311 return -E_BAD_PATH;
312 }
313
314 /** The on-disk layout of a afhi struct. */
315 enum afhi_offsets {
316 /** Where the number of seconds is stored. */
317 AFHI_SECONDS_TOTAL_OFFSET = 0,
318 /** Position of the bitrate. */
319 AFHI_BITRATE_OFFSET = 4,
320 /** Position of the frequency. */
321 AFHI_FREQUENCY_OFFSET = 8,
322 /** Location of the audio file header. */
323 AFHI_HEADER_OFFSET_OFFSET = 12,
324 /* Length of the audio file header. Zero means: No header. */
325 AFHI_HEADER_LEN_OFFSET = 16,
326 /** The total number of chunks (4 bytes). */
327 CHUNKS_TOTAL_OFFSET = 20,
328 /** The length of the audio file header (4 bytes). */
329 HEADER_LEN_OFFSET = 24,
330 /** The start of the audio file header (4 bytes). */
331 HEADER_OFFSET_OFFSET = 28,
332 /** The seconds part of the chunk time (4 bytes). */
333 CHUNK_TV_TV_SEC_OFFSET = 32,
334 /** The microseconds part of the chunk time (4 bytes). */
335 CHUNK_TV_TV_USEC_OFFSET = 36,
336 /** Number of channels is stored here. (1 byte) */
337 AFHI_CHANNELS_OFFSET = 40,
338 /** EOF timeout in ms. (2 byte) */
339 AFHI_EOF_OFFSET = 41,
340 /** The tag info position. */
341 AFHI_INFO_STRING_OFFSET = 43,
342 /** Minimal on-disk size of a valid afhi struct. */
343 MIN_AFHI_SIZE = 44
344 };
345
346 static unsigned sizeof_afhi_buf(const struct afh_info *afhi)
347 {
348 if (!afhi)
349 return 0;
350 return strlen(afhi->info_string) + MIN_AFHI_SIZE;
351 }
352
353 static void save_afhi(struct afh_info *afhi, char *buf)
354 {
355 if (!afhi)
356 return;
357 write_u32(buf + AFHI_SECONDS_TOTAL_OFFSET, afhi->seconds_total);
358 write_u32(buf + AFHI_BITRATE_OFFSET, afhi->bitrate);
359 write_u32(buf + AFHI_FREQUENCY_OFFSET, afhi->frequency);
360 write_u32(buf + AFHI_HEADER_OFFSET_OFFSET, afhi->header_offset);
361 write_u32(buf + AFHI_HEADER_LEN_OFFSET, afhi->header_len);
362 write_u8(buf + AFHI_CHANNELS_OFFSET, afhi->channels);
363 write_u32(buf + CHUNKS_TOTAL_OFFSET, afhi->chunks_total);
364 write_u32(buf + HEADER_LEN_OFFSET, afhi->header_len);
365 write_u32(buf + HEADER_OFFSET_OFFSET, afhi->header_offset);
366 write_u32(buf + CHUNK_TV_TV_SEC_OFFSET, afhi->chunk_tv.tv_sec);
367 write_u32(buf + CHUNK_TV_TV_USEC_OFFSET, afhi->chunk_tv.tv_usec);
368 write_u16(buf + AFHI_EOF_OFFSET, tv2ms(&afhi->eof_tv));
369 strcpy(buf + AFHI_INFO_STRING_OFFSET, afhi->info_string); /* OK */
370 }
371
372 static void load_afhi(const char *buf, struct afh_info *afhi)
373 {
374 afhi->seconds_total = read_u32(buf + AFHI_SECONDS_TOTAL_OFFSET);
375 afhi->bitrate = read_u32(buf + AFHI_BITRATE_OFFSET);
376 afhi->frequency = read_u32(buf + AFHI_FREQUENCY_OFFSET);
377 afhi->header_offset = read_u32(buf + AFHI_HEADER_OFFSET_OFFSET);
378 afhi->header_len = read_u32(buf + AFHI_HEADER_LEN_OFFSET);
379 afhi->channels = read_u8(buf + AFHI_CHANNELS_OFFSET);
380 afhi->chunks_total = read_u32(buf + CHUNKS_TOTAL_OFFSET);
381 afhi->header_len = read_u32(buf + HEADER_LEN_OFFSET);
382 afhi->header_offset = read_u32(buf + HEADER_OFFSET_OFFSET);
383 afhi->chunk_tv.tv_sec = read_u32(buf + CHUNK_TV_TV_SEC_OFFSET);
384 afhi->chunk_tv.tv_usec = read_u32(buf + CHUNK_TV_TV_USEC_OFFSET);
385 ms2tv(read_u16(buf + AFHI_EOF_OFFSET), &afhi->eof_tv);
386 afhi->info_string = para_strdup(buf + AFHI_INFO_STRING_OFFSET);
387 }
388
389 static unsigned sizeof_chunk_table(struct afh_info *afhi)
390 {
391 if (!afhi)
392 return 0;
393 return 4 * (afhi->chunks_total + 1);
394 }
395
396 static void save_chunk_table(struct afh_info *afhi, char *buf)
397 {
398 int i;
399
400 for (i = 0; i <= afhi->chunks_total; i++)
401 write_u32(buf + 4 * i, afhi->chunk_table[i]);
402 }
403
404 static void load_chunk_table(struct afh_info *afhi, char *buf)
405 {
406 int i;
407
408 afhi->chunk_table = para_malloc(sizeof_chunk_table(afhi));
409 for (i = 0; i <= afhi->chunks_total; i++)
410 afhi->chunk_table[i] = read_u32(buf + 4 * i);
411 }
412
413 /**
414 * Get the row of the audio file table corresponding to the given path.
415 *
416 * \param path The full path of the audio file.
417 * \param row Result pointer.
418 *
419 * \return The return value of the underlying call to osl_get_row().
420 */
421 int aft_get_row_of_path(const char *path, struct osl_row **row)
422 {
423 struct osl_object obj = {.data = (char *)path, .size = strlen(path) + 1};
424
425 return osl_get_row(audio_file_table, AFTCOL_PATH, &obj, row);
426 }
427
428 /**
429 * Get the row of the audio file table corresponding to the given hash value.
430 *
431 * \param hash The hash value of the desired audio file.
432 * \param row resul pointer.
433 *
434 * \return The return value of the underlying call to osl_get_row().
435 */
436 int aft_get_row_of_hash(HASH_TYPE *hash, struct osl_row **row)
437 {
438 const struct osl_object obj = {.data = hash, .size = HASH_SIZE};
439 return osl_get_row(audio_file_table, AFTCOL_HASH, &obj, row);
440 }
441
442 /**
443 * Get the osl object holding the audio file selector info of a row.
444 *
445 * \param row Pointer to a row in the audio file table.
446 * \param obj Result pointer.
447 *
448 * \return The return value of the underlying call to osl_get_object().
449 */
450 int get_afsi_object_of_row(const struct osl_row *row, struct osl_object *obj)
451 {
452 return osl_get_object(audio_file_table, row, AFTCOL_AFSI, obj);
453 }
454
455 /**
456 * Get the osl object holding the audio file selector info, given a path.
457 *
458 *
459 * \param path The full path of the audio file.
460 * \param obj Result pointer.
461 *
462 * \return Positive on success, negative on errors.
463 */
464 int get_afsi_object_of_path(const char *path, struct osl_object *obj)
465 {
466 struct osl_row *row;
467 int ret = aft_get_row_of_path(path, &row);
468 if (ret < 0)
469 return ret;
470 return get_afsi_object_of_row(row, obj);
471 }
472
473 /**
474 * Get the audio file selector info, given a row of the audio file table.
475 *
476 * \param row Pointer to a row in the audio file table.
477 * \param afsi Result pointer.
478 *
479 * \return Positive on success, negative on errors.
480 */
481 int get_afsi_of_row(const struct osl_row *row, struct afs_info *afsi)
482 {
483 struct osl_object obj;
484 int ret = get_afsi_object_of_row(row, &obj);
485 if (ret < 0)
486 return ret;
487 return load_afsi(afsi, &obj);
488 }
489
490 /**
491 * Get the audio file selector info, given the path of an audio table.
492 *
493 * \param path The full path of the audio file.
494 * \param afsi Result pointer.
495 *
496 * \return Positive on success, negative on errors.
497 */
498 int get_afsi_of_path(const char *path, struct afs_info *afsi)
499 {
500 struct osl_object obj;
501 int ret = get_afsi_object_of_path(path, &obj);
502 if (ret < 0)
503 return ret;
504 return load_afsi(afsi, &obj);
505 }
506
507 /**
508 * Get the path of an audio file, given a row of the audio file table.
509 *
510 * \param row Pointer to a row in the audio file table.
511 * \param path Result pointer.
512 *
513 * The result is a pointer to mmapped data. The caller must not attempt
514 * to free it.
515 *
516 * \return Standard.
517 */
518 int get_audio_file_path_of_row(const struct osl_row *row, char **path)
519 {
520 struct osl_object path_obj;
521 int ret = osl_get_object(audio_file_table, row, AFTCOL_PATH,
522 &path_obj);
523 if (ret < 0)
524 return ret;
525 *path = path_obj.data;
526 return 1;
527 }
528
529 /**
530 * Get the object containing the hash value of an audio file, given a row.
531 *
532 * \param row Pointer to a row of the audio file table.
533 * \param obj Result pointer.
534 *
535 * \return The return value of the underlying call to osl_get_object().
536 *
537 * \sa get_hash_of_row().
538 */
539 static int get_hash_object_of_aft_row(const struct osl_row *row, struct osl_object *obj)
540 {
541 return osl_get_object(audio_file_table, row, AFTCOL_HASH, obj);
542 }
543
544 /**
545 * Get the hash value of an audio file, given a row of the audio file table.
546 *
547 * \param row Pointer to a row of the audio file table.
548 * \param hash Result pointer.
549 *
550 * \a hash points to mapped data and must not be freed by the caller.
551 *
552 * \return The return value of the underlying call to
553 * get_hash_object_of_aft_row().
554 */
555 static int get_hash_of_row(const struct osl_row *row, HASH_TYPE **hash)
556 {
557 struct osl_object obj;
558 int ret = get_hash_object_of_aft_row(row, &obj);
559
560 if (ret < 0)
561 return ret;
562 *hash = obj.data;
563 return 1;
564 }
565
566 /**
567 * Get the audio format handler info, given a row of the audio file table.
568 *
569 * \param row Pointer to a row of the audio file table.
570 * \param afhi Result pointer.
571 *
572 * \return The return value of the underlying call to osl_get_object().
573 *
574 * \sa get_chunk_table_of_row().
575 */
576 int get_afhi_of_row(const struct osl_row *row, struct afh_info *afhi)
577 {
578 struct osl_object obj;
579 int ret = osl_get_object(audio_file_table, row, AFTCOL_AFHI,
580 &obj);
581 if (ret < 0)
582 return ret;
583 load_afhi(obj.data, afhi);
584 return 1;
585 }
586
587 /* returns shmid on success */
588 static int save_afd(struct audio_file_data *afd)
589 {
590 size_t size = sizeof(*afd) + sizeof_chunk_table(&afd->afhi);
591 int shmid, ret = shm_new(size);
592 void *shm_afd;
593 char *buf;
594
595 if (ret < 0)
596 return ret;
597 shmid = ret;
598 ret = shm_attach(shmid, ATTACH_RW, &shm_afd);
599 if (ret < 0)
600 goto err;
601 *(struct audio_file_data *)shm_afd = *afd;
602 buf = shm_afd;
603 buf += sizeof(*afd);
604 save_chunk_table(&afd->afhi, buf);
605 shm_detach(shm_afd);
606 return shmid;
607 err:
608 shm_destroy(shmid);
609 return ret;
610 }
611
612 int load_afd(int shmid, struct audio_file_data *afd)
613 {
614 void *shm_afd;
615 char *buf;
616 int ret;
617
618 ret = shm_attach(shmid, ATTACH_RO, &shm_afd);
619 if (ret < 0)
620 return ret;
621 *afd = *(struct audio_file_data *)shm_afd;
622 buf = shm_afd;
623 buf += sizeof(*afd);
624 load_chunk_table(&afd->afhi, buf);
625 shm_detach(shm_afd);
626 return 1;
627 }
628
629 /**
630 * Mmap the given audio file and update statistics.
631 *
632 * \param aft_row Determines the audio file to be opened and updated.
633 * \param score The score of the audio file.
634 * \param afd Result pointer.
635 *
636 * On success, the numplayed field of the audio file selector info is increased
637 * and the lastplayed time is set to the current time. Finally, the score of
638 * the audio file is updated.
639 *
640 * \return Positive shmid on success, negative on errors.
641 */
642 int open_and_update_audio_file(struct osl_row *aft_row, long score,
643 struct audio_file_data *afd)
644 {
645 HASH_TYPE *aft_hash, file_hash[HASH_SIZE];
646 struct osl_object afsi_obj;
647 struct afs_info old_afsi, new_afsi;
648 int ret = get_hash_of_row(aft_row, &aft_hash);
649 struct afsi_change_event_data aced;
650 struct osl_object map, chunk_table_obj;
651 char *path;
652
653 if (ret < 0)
654 return ret;
655 ret = get_audio_file_path_of_row(aft_row, &path);
656 if (ret < 0)
657 return ret;
658 ret = get_afsi_object_of_row(aft_row, &afsi_obj);
659 if (ret < 0)
660 return ret;
661 ret = load_afsi(&old_afsi, &afsi_obj);
662 if (ret < 0)
663 return ret;
664 ret = get_afhi_of_row(aft_row, &afd->afhi);
665 if (ret < 0)
666 return ret;
667 afd->afhi.chunk_table = NULL;
668 ret = osl_open_disk_object(audio_file_table, aft_row,
669 AFTCOL_CHUNKS, &chunk_table_obj);
670 if (ret < 0)
671 goto err;
672 ret = mmap_full_file(path, O_RDONLY, &map.data,
673 &map.size, &afd->fd);
674 if (ret < 0)
675 goto err;
676 hash_function(map.data, map.size, file_hash);
677 ret = hash_compare(file_hash, aft_hash);
678 para_munmap(map.data, map.size);
679 if (ret) {
680 ret = -E_HASH_MISMATCH;
681 goto err;
682 }
683 new_afsi = old_afsi;
684 new_afsi.num_played++;
685 new_afsi.last_played = time(NULL);
686 save_afsi(&new_afsi, &afsi_obj); /* in-place update */
687
688 load_chunk_table(&afd->afhi, chunk_table_obj.data);
689 {
690 struct ls_data d = {
691 .afhi = afd->afhi, /* struct copy */
692 .afsi = old_afsi,
693 .path = path,
694 .score = score,
695 .hash = file_hash
696 };
697 struct para_buffer pb = {.max_size = VERBOSE_LS_OUTPUT_SIZE - 1};
698 ret = make_status_items(&d, &pb); /* frees info string */
699 afd->afhi.info_string = NULL;
700 if (ret < 0)
701 goto err;
702 strncpy(afd->verbose_ls_output, pb.buf, VERBOSE_LS_OUTPUT_SIZE);
703 afd->verbose_ls_output[VERBOSE_LS_OUTPUT_SIZE - 1] = '\0';
704 free(pb.buf);
705 }
706 aced.aft_row = aft_row;
707 aced.old_afsi = &old_afsi;
708 afs_event(AFSI_CHANGE, NULL, &aced);
709 ret = save_afd(afd);
710 err:
711 free(afd->afhi.chunk_table);
712 free(afd->afhi.info_string);
713 osl_close_disk_object(&chunk_table_obj);
714 return ret;
715 }
716
717 static int get_local_time(uint64_t *seconds, char *buf, size_t size,
718 time_t current_time, enum ls_listing_mode lm)
719 {
720 struct tm t;
721
722 if (!localtime_r((time_t *)seconds, &t))
723 return -E_LOCALTIME;
724 if (lm == LS_MODE_MBOX) {
725 if (!strftime(buf, size, "%c", &t))
726 return -E_STRFTIME;
727 return 1;
728 }
729 if (*seconds + 6 * 30 * 24 * 3600 > current_time) {
730 if (!strftime(buf, size, "%b %e %k:%M", &t))
731 return -E_STRFTIME;
732 return 1;
733 }
734 if (!strftime(buf, size, "%b %e %Y", &t))
735 return -E_STRFTIME;
736 return 1;
737 }
738
739 /** Compute the number of (decimal) digits of a number. */
740 #define GET_NUM_DIGITS(x, num) { \
741 typeof((x)) _tmp = PARA_ABS(x); \
742 *num = 1; \
743 if ((x)) \
744 while ((_tmp) > 9) { \
745 (_tmp) /= 10; \
746 (*num)++; \
747 } \
748 }
749
750 static short unsigned get_duration_width(int seconds)
751 {
752 short unsigned width;
753 unsigned hours = seconds / 3600, mins = (seconds % 3600) / 60;
754
755 if (!hours) /* less than one hour => m:ss or mm:ss => 4 or 5 digits */
756 return 4 + (mins > 9);
757 /* more than one hour => h:mm:ss, hh:mm:ss, hhh:mm:ss, ... */
758 GET_NUM_DIGITS(hours, &width);
759 return width + 6;
760 }
761
762 static void get_duration_buf(int seconds, char *buf, struct ls_options *opts)
763 {
764 unsigned hours = seconds / 3600, mins = (seconds % 3600) / 60;
765 short unsigned max_width;
766
767 if (!hours) { /* m:ss or mm:ss */
768 max_width = opts->mode == LS_MODE_LONG?
769 opts->widths.duration_width : 4;
770 sprintf(buf, "%*u:%02u", max_width - 3, mins, seconds % 60);
771 } else { /* more than one hour => h:mm:ss, hh:mm:ss, hhh:mm:ss, ... */
772 max_width = opts->mode == LS_MODE_LONG?
773 opts->widths.duration_width : 7;
774 sprintf(buf, "%*u:%02u:%02u", max_width - 6, hours, mins,
775 seconds % 60);
776 }
777 }
778
779 static char *make_attribute_lines(const char *att_bitmap, struct afs_info *afsi)
780 {
781 char *att_text, *att_lines;
782
783 get_attribute_text(&afsi->attributes, " ", &att_text);
784 if (!att_text)
785 return para_strdup(att_bitmap);
786 att_lines = make_message("%s: %s\n%s: %s",
787 status_item_list[SI_ATTRIBUTES_BITMAP], att_bitmap,
788 status_item_list[SI_ATTRIBUTES_TXT], att_text);
789 free(att_text);
790 return att_lines;
791 }
792
793 static char *make_lyrics_lines(struct afs_info *afsi)
794 {
795 char *lyrics_name;
796
797 lyr_get_name_by_id(afsi->lyrics_id, &lyrics_name);
798 return make_message("%s: %u\n%s: %s\n",
799 status_item_list[SI_LYRICS_ID], afsi->lyrics_id,
800 status_item_list[SI_LYRICS_NAME], lyrics_name?
801 lyrics_name : "(none)");
802 }
803
804 static char *make_image_lines(struct afs_info *afsi)
805 {
806 char *image_name;
807 img_get_name_by_id(afsi->image_id, &image_name);
808 return make_message("%s: %u\n%s: %s\n",
809 status_item_list[SI_IMAGE_ID], afsi->image_id,
810 status_item_list[SI_IMAGE_NAME], image_name?
811 image_name : "(none)");
812 }
813
814 static char *make_filename_lines(const char *path, unsigned flags)
815 {
816 char *dirname, *ret;
817 const char *basename;
818
819 if (!(flags & LS_FLAG_FULL_PATH))
820 return make_message("%s: %s\n",
821 status_item_list[SI_BASENAME], path);
822 basename = para_basename(path),
823 dirname = para_dirname(path);
824 ret = make_message("%s: %s\n%s: %s\n%s: %s\n",
825 status_item_list[SI_PATH], path,
826 status_item_list[SI_DIRECTORY], dirname? dirname : "?",
827 status_item_list[SI_BASENAME], basename? basename : "?");
828 free(dirname);
829 return ret;
830 }
831
832 static int print_chunk_table(struct ls_data *d, struct para_buffer *b)
833 {
834 struct osl_object chunk_table_obj;
835 struct osl_row *aft_row;
836 int ret, i;
837 char *buf;
838
839 ret = aft_get_row_of_hash(d->hash, &aft_row);
840 if (ret < 0)
841 return ret;
842 ret = osl_open_disk_object(audio_file_table, aft_row,
843 AFTCOL_CHUNKS, &chunk_table_obj);
844 if (ret < 0)
845 return ret;
846 ret = para_printf(b, "%s\n"
847 "chunk_time: %lu:%lu\nchunk_offsets: ",
848 d->path,
849 (long unsigned) d->afhi.chunk_tv.tv_sec,
850 (long unsigned) d->afhi.chunk_tv.tv_usec
851 );
852 if (ret < 0)
853 goto out;
854 buf = chunk_table_obj.data;
855 for (i = 0; i <= d->afhi.chunks_total; i++) {
856 ret = para_printf(b, "%u ", (unsigned) read_u32(buf + 4 * i));
857 if (ret < 0)
858 goto out;
859 }
860 ret = para_printf(b, "\n");
861 out:
862 osl_close_disk_object(&chunk_table_obj);
863 return ret;
864 }
865
866 static int print_list_item(struct ls_data *d, struct ls_options *opts,
867 struct para_buffer *b, time_t current_time)
868 {
869 int ret;
870 char att_buf[65];
871 char last_played_time[30];
872 char duration_buf[30]; /* nobody has an audio file long enough to overflow this */
873 char score_buf[30] = "";
874 struct afs_info *afsi = &d->afsi;
875 struct afh_info *afhi = &d->afhi;
876 struct ls_widths *w = &opts->widths;
877 int have_score = opts->flags & LS_FLAG_ADMISSIBLE_ONLY;
878 char asc_hash[2 * HASH_SIZE + 1];
879 char *att_lines, *lyrics_lines, *image_lines, *filename_lines;
880
881 if (opts->mode == LS_MODE_SHORT) {
882 ret = para_printf(b, "%s\n", d->path);
883 goto out;
884 }
885 if (opts->mode == LS_MODE_CHUNKS) {
886 ret = print_chunk_table(d, b);
887 goto out;
888 }
889 get_attribute_bitmap(&afsi->attributes, att_buf);
890 ret = get_local_time(&afsi->last_played, last_played_time,
891 sizeof(last_played_time), current_time, opts->mode);
892 if (ret < 0)
893 goto out;
894 get_duration_buf(afhi->seconds_total, duration_buf, opts);
895 if (have_score) {
896 if (opts->mode == LS_MODE_LONG)
897 sprintf(score_buf, "%*li ", w->score_width, d->score);
898 else
899 sprintf(score_buf, "%li ", d->score);
900 }
901
902 if (opts->mode == LS_MODE_LONG) {
903 ret = para_printf(b,
904 "%s" /* score */
905 "%s " /* attributes */
906 "%*u " /* amp */
907 "%*d " /* image_id */
908 "%*d " /* lyrics_id */
909 "%*d " /* bitrate */
910 "%s " /* audio format */
911 "%*d " /* frequency */
912 "%d " /* channels */
913 "%s " /* duration */
914 "%*d " /* num_played */
915 "%s " /* last_played */
916 "%s\n", /* path */
917 score_buf,
918 att_buf,
919 w->amp_width, afsi->amp,
920 w->image_id_width, afsi->image_id,
921 w->lyrics_id_width, afsi->lyrics_id,
922 w->bitrate_width, afhi->bitrate,
923 audio_format_name(afsi->audio_format_id),
924 w->frequency_width, afhi->frequency,
925 afhi->channels,
926 duration_buf,
927 w->num_played_width, afsi->num_played,
928 last_played_time,
929 d->path
930 );
931 goto out;
932 }
933 hash_to_asc(d->hash, asc_hash);
934 att_lines = make_attribute_lines(att_buf, afsi);
935 lyrics_lines = make_lyrics_lines(afsi);
936 image_lines = make_image_lines(afsi);
937 filename_lines = make_filename_lines(d->path, opts->flags);
938 if (opts->mode == LS_MODE_MBOX) {
939 const char *bn = para_basename(d->path);
940 ret = para_printf(b,
941 "From foo@localhost %s\n"
942 "Received: from\nTo: bar\nFrom: a\n"
943 "Subject: %s\n\n",
944 last_played_time,
945 bn? bn : "?");
946 if (ret < 0)
947 goto out;
948 }
949 ret = para_printf(b,
950 "%s" /* filename stuff */
951 "%s%s%s%s" /* score */
952 "%s\n" /* attributes */
953 "%s: %s\n" /* hash */
954 "%s" /* image id, image name */
955 "%s" /* lyrics */
956 "%s: %dkbit/s\n" /* bitrate */
957 "%s: %s\n" /* format */
958 "%s: %dHz\n" /* frequency */
959 "%s: %d\n" /* channels */
960 "%s: %s\n" /* duration */
961 "%s: %lu\n" /* seconds total */
962 "%s: %s\n" /* last played time */
963 "%s: %d\n" /* num_played */
964 "%s: %u\n" /* ampplification */
965 "%s" /* tag info */
966 "%s: %lu\n" /* chunk time */
967 "%s: %lu\n", /* num chunks */
968 filename_lines,
969 have_score? status_item_list[SI_SCORE] : "",
970 have_score? ": " : "",
971 score_buf,
972 have_score? "\n" : "",
973 att_lines,
974 status_item_list[SI_HASH], asc_hash,
975 image_lines,
976 lyrics_lines,
977 status_item_list[SI_BITRATE], afhi->bitrate,
978 status_item_list[SI_FORMAT], audio_format_name(afsi->audio_format_id),
979 status_item_list[SI_FREQUENCY], afhi->frequency,
980 status_item_list[SI_CHANNELS], afhi->channels,
981 status_item_list[SI_DURATION], duration_buf,
982 status_item_list[SI_SECONDS_TOTAL], afhi->seconds_total,
983 status_item_list[SI_LAST_PLAYED], last_played_time,
984 status_item_list[SI_NUM_PLAYED], afsi->num_played,
985 status_item_list[SI_AMPLIFICATION], afsi->amp,
986 afhi->info_string,
987 status_item_list[SI_CHUNK_TIME], tv2ms(&afhi->chunk_tv),
988 status_item_list[SI_NUM_CHUNKS], afhi->chunks_total
989 );
990 if (ret < 0)
991 goto out;
992 if (opts->mode == LS_MODE_MBOX) {
993 struct osl_object lyrics_def;
994 lyr_get_def_by_id(afsi->lyrics_id, &lyrics_def);
995 if (lyrics_def.data) {
996 ret = para_printf(b, "Lyrics:\n~~~~~~~\n%s",
997 (char *)lyrics_def.data);
998 osl_close_disk_object(&lyrics_def);
999 }
1000 }
1001 free(att_lines);
1002 free(lyrics_lines);
1003 free(image_lines);
1004 free(filename_lines);
1005 out:
1006 free(afhi->info_string);
1007 return ret;
1008 }
1009
1010 void make_empty_status_items(char *buf)
1011 {
1012 sprintf(buf,
1013 "%s: \n" /* path */
1014 "%s: \n" /* dirname */
1015 "%s: \n" /* basename */
1016 "%s: \n" /* score */
1017 "%s: \n" /* attributes bitmap */
1018 "%s: \n" /* attributes txt */
1019 "%s: \n" /* hash */
1020 "%s: \n" /* image id */
1021 "%s: \n" /* image name */
1022 "%s: \n" /* lyrics id */
1023 "%s: \n" /* lyrics name */
1024 "%s: \n" /* bitrate */
1025 "%s: \n" /* format */
1026 "%s: \n" /* frequency */
1027 "%s: \n" /* channels */
1028 "%s: \n" /* duration */
1029 "%s: \n" /* seconds total */
1030 "%s: \n" /* num played */
1031 "%s: \n" /* last played */
1032 "%s: \n" /* audio file info */
1033 "%s: \n" /* taginfo1 */
1034 "%s: \n" /* taginfo2 */
1035 "%s: \n" /* amplification */
1036 ,
1037 status_item_list[SI_PATH],
1038 status_item_list[SI_DIRECTORY],
1039 status_item_list[SI_BASENAME],
1040 status_item_list[SI_SCORE],
1041 status_item_list[SI_ATTRIBUTES_BITMAP],
1042 status_item_list[SI_ATTRIBUTES_TXT],
1043 status_item_list[SI_HASH],
1044 status_item_list[SI_IMAGE_ID],
1045 status_item_list[SI_IMAGE_NAME],
1046 status_item_list[SI_LYRICS_ID],
1047 status_item_list[SI_LYRICS_NAME],
1048 status_item_list[SI_BITRATE],
1049 status_item_list[SI_FORMAT],
1050 status_item_list[SI_FREQUENCY],
1051 status_item_list[SI_CHANNELS],
1052 status_item_list[SI_DURATION],
1053 status_item_list[SI_SECONDS_TOTAL],
1054 status_item_list[SI_NUM_PLAYED],
1055 status_item_list[SI_LAST_PLAYED],
1056 status_item_list[SI_AUDIO_FILE_INFO],
1057 status_item_list[SI_TAGINFO1],
1058 status_item_list[SI_TAGINFO2],
1059 status_item_list[SI_AMPLIFICATION]
1060 );
1061 }
1062
1063 int make_status_items(struct ls_data *d, struct para_buffer *pb)
1064 {
1065 struct ls_options opts = {
1066 .flags = LS_FLAG_FULL_PATH | LS_FLAG_ADMISSIBLE_ONLY,
1067 .mode = LS_MODE_VERBOSE,
1068 };
1069 time_t current_time;
1070
1071 time(&current_time);
1072 return print_list_item(d, &opts, pb, current_time);
1073 }
1074
1075
1076 static int ls_audio_format_compare(const void *a, const void *b)
1077 {
1078 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1079 return NUM_COMPARE(d1->afsi.audio_format_id, d2->afsi.audio_format_id);
1080 }
1081
1082 static int ls_duration_compare(const void *a, const void *b)
1083 {
1084 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1085 return NUM_COMPARE(d1->afhi.seconds_total, d2->afhi.seconds_total);
1086 }
1087
1088 static int ls_bitrate_compare(const void *a, const void *b)
1089 {
1090 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1091 return NUM_COMPARE(d1->afhi.bitrate, d2->afhi.bitrate);
1092 }
1093
1094 static int ls_lyrics_id_compare(const void *a, const void *b)
1095 {
1096 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1097 return NUM_COMPARE(d1->afsi.lyrics_id, d2->afsi.lyrics_id);
1098 }
1099
1100 static int ls_image_id_compare(const void *a, const void *b)
1101 {
1102 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1103 return NUM_COMPARE(d1->afsi.image_id, d2->afsi.image_id);
1104 }
1105
1106 static int ls_channels_compare(const void *a, const void *b)
1107 {
1108 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1109 return NUM_COMPARE(d1->afhi.channels, d2->afhi.channels);
1110 }
1111
1112 static int ls_frequency_compare(const void *a, const void *b)
1113 {
1114 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1115 return NUM_COMPARE(d1->afhi.frequency, d2->afhi.frequency);
1116 }
1117
1118 static int ls_num_played_compare(const void *a, const void *b)
1119 {
1120 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1121 return NUM_COMPARE(d1->afsi.num_played, d2->afsi.num_played);
1122 }
1123
1124 static int ls_last_played_compare(const void *a, const void *b)
1125 {
1126 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1127 return NUM_COMPARE(d1->afsi.last_played, d2->afsi.last_played);
1128 }
1129
1130 static int ls_score_compare(const void *a, const void *b)
1131 {
1132 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1133 return NUM_COMPARE(d1->score, d2->score);
1134 }
1135
1136 static int ls_path_compare(const void *a, const void *b)
1137 {
1138 struct ls_data *d1 = *(struct ls_data **)a, *d2 = *(struct ls_data **)b;
1139 return strcmp(d1->path, d2->path);
1140 }
1141
1142 static int sort_matching_paths(struct ls_options *options)
1143 {
1144 size_t nmemb = options->num_matching_paths;
1145 size_t size = sizeof(*options->data_ptr);
1146 int (*compar)(const void *, const void *);
1147 int i;
1148
1149 options->data_ptr = para_malloc(nmemb * sizeof(*options->data_ptr));
1150 for (i = 0; i < nmemb; i++)
1151 options->data_ptr[i] = options->data + i;
1152
1153 /* In these cases the array is already sorted */
1154 if (options->sorting == LS_SORT_BY_PATH
1155 && !(options->flags & LS_FLAG_ADMISSIBLE_ONLY)
1156 && (options->flags & LS_FLAG_FULL_PATH))
1157 return 1;
1158 if (options->sorting == LS_SORT_BY_SCORE &&
1159 options->flags & LS_FLAG_ADMISSIBLE_ONLY)
1160 return 1;
1161
1162 switch (options->sorting) {
1163 case LS_SORT_BY_PATH:
1164 compar = ls_path_compare; break;
1165 case LS_SORT_BY_SCORE:
1166 compar = ls_score_compare; break;
1167 case LS_SORT_BY_LAST_PLAYED:
1168 compar = ls_last_played_compare; break;
1169 case LS_SORT_BY_NUM_PLAYED:
1170 compar = ls_num_played_compare; break;
1171 case LS_SORT_BY_FREQUENCY:
1172 compar = ls_frequency_compare; break;
1173 case LS_SORT_BY_CHANNELS:
1174 compar = ls_channels_compare; break;
1175 case LS_SORT_BY_IMAGE_ID:
1176 compar = ls_image_id_compare; break;
1177 case LS_SORT_BY_LYRICS_ID:
1178 compar = ls_lyrics_id_compare; break;
1179 case LS_SORT_BY_BITRATE:
1180 compar = ls_bitrate_compare; break;
1181 case LS_SORT_BY_DURATION:
1182 compar = ls_duration_compare; break;
1183 case LS_SORT_BY_AUDIO_FORMAT:
1184 compar = ls_audio_format_compare; break;
1185 default:
1186 return -E_BAD_SORT;
1187 }
1188 qsort(options->data_ptr, nmemb, size, compar);
1189 return 1;
1190 }
1191
1192 /* row is either an aft_row or a row of the score table */
1193 /* TODO: Only compute widths if we need them */
1194 static int prepare_ls_row(struct osl_row *row, void *ls_opts)
1195 {
1196 int ret, i;
1197 struct ls_options *options = ls_opts;
1198 struct ls_data *d;
1199 struct ls_widths *w;
1200 unsigned short num_digits;
1201 unsigned tmp;
1202 struct osl_row *aft_row;
1203 long score;
1204 char *path;
1205
1206 if (options->flags & LS_FLAG_ADMISSIBLE_ONLY) {
1207 ret = get_score_and_aft_row(row, &score, &aft_row);
1208 if (ret < 0)
1209 return ret;
1210 } else
1211 aft_row = row;
1212 ret = get_audio_file_path_of_row(aft_row, &path);
1213 if (ret < 0)
1214 return ret;
1215 if (!(options->flags & LS_FLAG_FULL_PATH)) {
1216 char *p = strrchr(path, '/');
1217 if (p)
1218 path = p + 1;
1219 }
1220 if (options->num_patterns) {
1221 for (i = 0; i < options->num_patterns; i++) {
1222 ret = fnmatch(options->patterns[i], path, 0);
1223 if (!ret)
1224 break;
1225 if (ret == FNM_NOMATCH)
1226 continue;
1227 return -E_FNMATCH;
1228 }
1229 if (i >= options->num_patterns) /* no match */
1230 return 1;
1231 }
1232 tmp = options->num_matching_paths++;
1233 if (options->num_matching_paths > options->array_size) {
1234 options->array_size++;
1235 options->array_size *= 2;
1236 options->data = para_realloc(options->data, options->array_size
1237 * sizeof(*options->data));
1238 }
1239 d = options->data + tmp;
1240 ret = get_afsi_of_row(aft_row, &d->afsi);
1241 if (ret < 0)
1242 return ret;
1243 ret = get_afhi_of_row(aft_row, &d->afhi);
1244 if (ret < 0)
1245 return ret;
1246 d->path = path;
1247 ret = get_hash_of_row(aft_row, &d->hash);
1248 if (ret < 0)
1249 goto err;
1250 w = &options->widths;
1251 GET_NUM_DIGITS(d->afsi.image_id, &num_digits);
1252 w->image_id_width = PARA_MAX(w->image_id_width, num_digits);
1253 GET_NUM_DIGITS(d->afsi.lyrics_id, &num_digits);
1254 w->lyrics_id_width = PARA_MAX(w->lyrics_id_width, num_digits);
1255 GET_NUM_DIGITS(d->afhi.bitrate, &num_digits);
1256 w->bitrate_width = PARA_MAX(w->bitrate_width, num_digits);
1257 GET_NUM_DIGITS(d->afhi.frequency, &num_digits);
1258 w->frequency_width = PARA_MAX(w->frequency_width, num_digits);
1259 GET_NUM_DIGITS(d->afsi.num_played, &num_digits);
1260 w->num_played_width = PARA_MAX(w->num_played_width, num_digits);
1261 /* get the number of chars to print this amount of time */
1262 tmp = get_duration_width(d->afhi.seconds_total);
1263 w->duration_width = PARA_MAX(w->duration_width, tmp);
1264 GET_NUM_DIGITS(d->afsi.amp, &num_digits);
1265 w->amp_width = PARA_MAX(w->amp_width, num_digits);
1266 if (options->flags & LS_FLAG_ADMISSIBLE_ONLY) {
1267 GET_NUM_DIGITS(score, &num_digits);
1268 num_digits++; /* add one for the sign (space or "-") */
1269 w->score_width = PARA_MAX(w->score_width, num_digits);
1270 d->score = score;
1271 }
1272 return 1;
1273 err:
1274 free(d->afhi.info_string);
1275 return ret;
1276 }
1277
1278 static void com_ls_callback(int fd, const struct osl_object *query)
1279 {
1280 struct ls_options *opts = query->data;
1281 char *p, *pattern_start = (char *)query->data + sizeof(*opts);
1282 struct para_buffer b = {.max_size = SHMMAX,
1283 .max_size_handler = pass_buffer_as_shm, .private_data = &fd};
1284 int i = 0, ret;
1285 time_t current_time;
1286
1287
1288 if (opts->num_patterns) {
1289 opts->patterns = para_malloc(opts->num_patterns * sizeof(char *));
1290 for (i = 0, p = pattern_start; i < opts->num_patterns; i++) {
1291 opts->patterns[i] = p;
1292 p += strlen(p) + 1;
1293 }
1294 } else
1295 opts->patterns = NULL;
1296 if (opts->flags & LS_FLAG_ADMISSIBLE_ONLY)
1297 ret = admissible_file_loop(opts, prepare_ls_row);
1298 else
1299 ret = osl_rbtree_loop(audio_file_table, AFTCOL_PATH, opts,
1300 prepare_ls_row);
1301 if (ret < 0)
1302 goto out;
1303 ret = opts->num_patterns? -E_NO_MATCH : 0;
1304 if (!opts->num_matching_paths)
1305 goto out;
1306 ret = sort_matching_paths(opts);
1307 if (ret < 0)
1308 goto out;
1309 time(&current_time);
1310 if (opts->flags & LS_FLAG_REVERSE)
1311 for (i = opts->num_matching_paths - 1; i >= 0; i--) {
1312 ret = print_list_item(opts->data_ptr[i], opts, &b, current_time);
1313 if (ret < 0)
1314 goto out;
1315 }
1316 else
1317 for (i = 0; i < opts->num_matching_paths; i++) {
1318 ret = print_list_item(opts->data_ptr[i], opts, &b, current_time);
1319 if (ret < 0)
1320 goto out;
1321 }
1322 out:
1323 if (b.offset)
1324 pass_buffer_as_shm(b.buf, b.offset, &fd);
1325 free(b.buf);
1326 free(opts->data);
1327 free(opts->data_ptr);
1328 free(opts->patterns);
1329 }
1330
1331 /*
1332 * TODO: flags -h (sort by hash)
1333 */
1334 int com_ls(int fd, int argc, char * const * const argv)
1335 {
1336 int i, ret;
1337 unsigned flags = 0;
1338 enum ls_sorting_method sort = LS_SORT_BY_PATH;
1339 enum ls_listing_mode mode = LS_MODE_SHORT;
1340 struct ls_options opts = {.patterns = NULL};
1341 struct osl_object query = {.data = &opts, .size = sizeof(opts)};
1342
1343 for (i = 1; i < argc; i++) {
1344 const char *arg = argv[i];
1345 if (arg[0] != '-')
1346 break;
1347 if (!strcmp(arg, "--")) {
1348 i++;
1349 break;
1350 }
1351 if (!strncmp(arg, "-l", 2)) {
1352 if (!*(arg + 2)) {
1353 mode = LS_MODE_LONG;
1354 continue;
1355 }
1356 if (*(arg + 3))
1357 return -E_AFT_SYNTAX;
1358 switch(*(arg + 2)) {
1359 case 's':
1360 mode = LS_MODE_SHORT;
1361 continue;
1362 case 'l':
1363 mode = LS_MODE_LONG;
1364 continue;
1365 case 'v':
1366 mode = LS_MODE_VERBOSE;
1367 continue;
1368 case 'm':
1369 mode = LS_MODE_MBOX;
1370 continue;
1371 case 'c':
1372 mode = LS_MODE_CHUNKS;
1373 continue;
1374 default:
1375 return -E_AFT_SYNTAX;
1376 }
1377 }
1378 if (!strcmp(arg, "-p")) {
1379 flags |= LS_FLAG_FULL_PATH;
1380 continue;
1381 }
1382 if (!strcmp(arg, "-a")) {
1383 flags |= LS_FLAG_ADMISSIBLE_ONLY;
1384 continue;
1385 }
1386 if (!strcmp(arg, "-r")) {
1387 flags |= LS_FLAG_REVERSE;
1388 continue;
1389 }
1390 if (!strncmp(arg, "-s", 2)) {
1391 if (!*(arg + 2) || *(arg + 3))
1392 return -E_AFT_SYNTAX;
1393 switch(*(arg + 2)) {
1394 case 'p':
1395 sort = LS_SORT_BY_PATH;
1396 continue;
1397 case 's': /* -ss implies -a */
1398 sort = LS_SORT_BY_SCORE;
1399 flags |= LS_FLAG_ADMISSIBLE_ONLY;
1400 continue;
1401 case 'l':
1402 sort = LS_SORT_BY_LAST_PLAYED;
1403 continue;
1404 case 'n':
1405 sort = LS_SORT_BY_NUM_PLAYED;
1406 continue;
1407 case 'f':
1408 sort = LS_SORT_BY_FREQUENCY;
1409 continue;
1410 case 'c':
1411 sort = LS_SORT_BY_CHANNELS;
1412 continue;
1413 case 'i':
1414 sort = LS_SORT_BY_IMAGE_ID;
1415 continue;
1416 case 'y':
1417 sort = LS_SORT_BY_LYRICS_ID;
1418 continue;
1419 case 'b':
1420 sort = LS_SORT_BY_BITRATE;
1421 continue;
1422 case 'd':
1423 sort = LS_SORT_BY_DURATION;
1424 continue;
1425 case 'a':
1426 sort = LS_SORT_BY_AUDIO_FORMAT;
1427 continue;
1428 default:
1429 return -E_AFT_SYNTAX;
1430 }
1431 }
1432 return -E_AFT_SYNTAX;
1433 }
1434 opts.flags = flags;
1435 opts.sorting = sort;
1436 opts.mode = mode;
1437 opts.num_patterns = argc - i;
1438 ret = send_option_arg_callback_request(&query, opts.num_patterns,
1439 argv + i, com_ls_callback, send_result, &fd);
1440 return ret;
1441 }
1442
1443 /**
1444 * Call the given function for each file in the audio file table.
1445 *
1446 * \param private_data An arbitrary data pointer, passed to \a func.
1447 * \param func The custom function to be called.
1448 *
1449 * \return The return value of the underlying call to osl_rbtree_loop().
1450 */
1451 int audio_file_loop(void *private_data, osl_rbtree_loop_func *func)
1452 {
1453 return osl_rbtree_loop(audio_file_table, AFTCOL_HASH, private_data,
1454 func);
1455 }
1456
1457 static struct osl_row *find_hash_sister(HASH_TYPE *hash)
1458 {
1459 const struct osl_object obj = {.data = hash, .size = HASH_SIZE};
1460 struct osl_row *row;
1461
1462 osl_get_row(audio_file_table, AFTCOL_HASH, &obj, &row);
1463 return row;
1464 }
1465
1466 /** The format of the data stored by save_audio_file_data(). */
1467 enum com_add_buffer_offsets {
1468 /** afhi (if present) starts here. */
1469 CAB_AFHI_OFFSET_POS = 0,
1470 /** Start of the chunk table (if present). */
1471 CAB_CHUNKS_OFFSET_POS = 2,
1472 /** Audio format id. */
1473 CAB_AUDIO_FORMAT_OFFSET = 4,
1474 /** Flags given to the add command. */
1475 CAB_FLAGS_OFFSET = 5,
1476 /** The hash of the audio file being added. */
1477 CAB_HASH_OFFSET = 9,
1478 /** Start of the path of the audio file. */
1479 CAB_PATH_OFFSET = (CAB_HASH_OFFSET + HASH_SIZE),
1480 };
1481
1482 /*
1483 * Store the given data to a single buffer. Doesn't need the audio file selector
1484 * info struct as the server knows it as well.
1485 *
1486 * It's OK to call this with afhi == NULL. In this case, the audio format
1487 * handler info won't be stored in the buffer.
1488 */
1489 static void save_add_callback_buffer(HASH_TYPE *hash, const char *path,
1490 struct afh_info *afhi, uint32_t flags,
1491 uint8_t audio_format_num, struct osl_object *obj)
1492 {
1493 size_t path_len = strlen(path) + 1;
1494 size_t afhi_size = sizeof_afhi_buf(afhi);
1495 size_t size = CAB_PATH_OFFSET + path_len + afhi_size
1496 + sizeof_chunk_table(afhi);
1497 char *buf = para_malloc(size);
1498 uint16_t pos;
1499
1500 write_u8(buf + CAB_AUDIO_FORMAT_OFFSET, audio_format_num);
1501 write_u32(buf + CAB_FLAGS_OFFSET, flags);
1502
1503 memcpy(buf + CAB_HASH_OFFSET, hash, HASH_SIZE);
1504 strcpy(buf + CAB_PATH_OFFSET, path);
1505
1506 pos = CAB_PATH_OFFSET + path_len;
1507 PARA_DEBUG_LOG("size: %zu, afhi starts at %d\n", size, pos);
1508 PARA_DEBUG_LOG("last afhi byte: %p, pos %zu\n", buf + pos + afhi_size - 1,
1509 pos + afhi_size - 1);
1510 write_u16(buf + CAB_AFHI_OFFSET_POS, pos);
1511 save_afhi(afhi, buf + pos);
1512
1513 pos += afhi_size;
1514 PARA_DEBUG_LOG("size: %zu, chunks start at %d\n", size, pos);
1515 write_u16(buf + CAB_CHUNKS_OFFSET_POS, pos);
1516 if (afhi)
1517 save_chunk_table(afhi, buf + pos);
1518 PARA_DEBUG_LOG("last byte in buf: %p\n", buf + size - 1);
1519 obj->data = buf;
1520 obj->size = size;
1521 }
1522
1523 /*
1524
1525 Overview of the add command.
1526
1527 Input: What was passed to the callback by the command handler.
1528 ~~~~~~
1529 HS: Hash sister. Whether an audio file with identical hash
1530 already exists in the osl database.
1531
1532 PB: Path brother. Whether a file with the given path exists
1533 in the table.
1534
1535 F: Force flag given. Whether add was called with -f.
1536
1537 output: Action performed by the callback.
1538 ~~~~~~~
1539 AFHI: Whether afhi and chunk table are computed and sent.
1540 ACTION: Table modifications to be done by the callback.
1541
1542 +----+----+---+------+---------------------------------------------------+
1543 | HS | PB | F | AFHI | ACTION
1544 +----+----+---+------+---------------------------------------------------+
1545 | Y | Y | Y | Y | if HS != PB: remove PB. HS: force afhi update,
1546 | | update path, keep afsi
1547 +----+----+---+------+---------------------------------------------------+
1548 | Y | Y | N | N | if HS == PB: do not send callback request at all.
1549 | | otherwise: remove PB, HS: update path, keep afhi,
1550 | | afsi.
1551 +----+----+---+------+---------------------------------------------------+
1552 | Y | N | Y | Y | (rename) force afhi update of HS, update path of
1553 | | HS, keep afsi
1554 +----+----+---+------+---------------------------------------------------+
1555 | Y | N | N | N | (file rename) update path of HS, keep afsi, afhi
1556 +----+----+---+------+---------------------------------------------------+
1557 | N | Y | Y | Y | (file change) update afhi, hash, of PB, keep afsi
1558 | | (force has no effect)
1559 +----+----+---+------+---------------------------------------------------+
1560 | N | Y | N | Y | (file change) update afhi, hash of PB, keep afsi
1561 +----+----+---+------+---------------------------------------------------+
1562 | N | N | Y | Y | (new file) create new entry (force has no effect)
1563 +----+----+---+------+---------------------------------------------------+
1564 | N | N | N | Y | (new file) create new entry
1565 +----+----+---+------+---------------------------------------------------+
1566
1567 Notes:
1568
1569 afhi <=> force or no HS
1570 F => AFHI
1571
1572 */
1573
1574 /** Flags passed to the add command. */
1575 enum com_add_flags {
1576 /** Skip paths that exist already. */
1577 ADD_FLAG_LAZY = 1,
1578 /** Force adding. */
1579 ADD_FLAG_FORCE = 2,
1580 /** Print what is being done. */
1581 ADD_FLAG_VERBOSE = 4,
1582 /** Try to add files with unknown suffixes. */
1583 ADD_FLAG_ALL = 8,
1584 };
1585
1586 static void com_add_callback(int fd, const struct osl_object *query)
1587 {
1588 char *buf = query->data, *path;
1589 struct osl_row *pb, *aft_row;
1590 struct osl_row *hs;
1591 struct osl_object objs[NUM_AFT_COLUMNS];
1592 HASH_TYPE *hash;
1593 char asc[2 * HASH_SIZE + 1];
1594 int ret;
1595 char afsi_buf[AFSI_SIZE];
1596 uint32_t flags = read_u32(buf + CAB_FLAGS_OFFSET);
1597 struct afs_info default_afsi = {.last_played = 0};
1598 struct para_buffer msg = {.max_size = SHMMAX,
1599 .max_size_handler = pass_buffer_as_shm, .private_data = &fd};
1600 uint16_t afhi_offset, chunks_offset;
1601
1602 hash = (HASH_TYPE *)buf + CAB_HASH_OFFSET;
1603 hash_to_asc(hash, asc);;
1604 objs[AFTCOL_HASH].data = buf + CAB_HASH_OFFSET;
1605 objs[AFTCOL_HASH].size = HASH_SIZE;
1606
1607 path = buf + CAB_PATH_OFFSET;
1608 objs[AFTCOL_PATH].data = path;
1609 objs[AFTCOL_PATH].size = strlen(path) + 1;
1610
1611 PARA_INFO_LOG("request to add %s\n", path);
1612 hs = find_hash_sister(hash);
1613 ret = aft_get_row_of_path(path, &pb);
1614 if (ret < 0 && ret != -E_RB_KEY_NOT_FOUND)
1615 goto out;
1616 if (hs && pb && hs == pb && !(flags & ADD_FLAG_FORCE)) {
1617 if (flags & ADD_FLAG_VERBOSE)
1618 ret = para_printf(&msg, "ignoring duplicate\n");
1619 else
1620 ret = 1;
1621 goto out;
1622 }
1623 if (hs && hs != pb) {
1624 struct osl_object obj;
1625 if (pb) { /* hs trumps pb, remove pb */
1626 if (flags & ADD_FLAG_VERBOSE) {
1627 ret = para_printf(&msg, "removing path brother\n");
1628 if (ret < 0)
1629 goto out;
1630 }
1631 ret = osl_del_row(audio_file_table, pb);
1632 if (ret < 0)
1633 goto out;
1634 pb = NULL;
1635 }
1636 /* file rename, update hs' path */
1637 if (flags & ADD_FLAG_VERBOSE) {
1638 ret = osl_get_object(audio_file_table, hs,
1639 AFTCOL_PATH, &obj);
1640 if (ret < 0)
1641 goto out;
1642 ret = para_printf(&msg, "renamed from %s\n", (char *)obj.data);
1643 if (ret < 0)
1644 goto out;
1645 }
1646 ret = osl_update_object(audio_file_table, hs, AFTCOL_PATH,
1647 &objs[AFTCOL_PATH]);
1648 if (ret < 0)
1649 goto out;
1650 afs_event(AUDIO_FILE_RENAME, &msg, hs);
1651 if (!(flags & ADD_FLAG_FORCE))
1652 goto out;
1653 }
1654 /* no hs or force mode, child must have sent afhi */
1655 afhi_offset = read_u16(buf + CAB_AFHI_OFFSET_POS);
1656 chunks_offset = read_u16(buf + CAB_CHUNKS_OFFSET_POS);
1657
1658 objs[AFTCOL_AFHI].data = buf + afhi_offset;
1659 objs[AFTCOL_AFHI].size = chunks_offset - afhi_offset;
1660 ret = -E_NO_AFHI;
1661 if (!objs[AFTCOL_AFHI].size) /* "impossible" */
1662 goto out;
1663 objs[AFTCOL_CHUNKS].data = buf + chunks_offset;
1664 objs[AFTCOL_CHUNKS].size = query->size - chunks_offset;
1665 if (pb && !hs) { /* update pb's hash */
1666 char old_asc[2 * HASH_SIZE + 1];
1667 HASH_TYPE *old_hash;
1668 ret = get_hash_of_row(pb, &old_hash);
1669 if (ret < 0)
1670 goto out;
1671 hash_to_asc(old_hash, old_asc);
1672 if (flags & ADD_FLAG_VERBOSE) {
1673 ret = para_printf(&msg, "file change: %s -> %s\n",
1674 old_asc, asc);
1675 if (ret < 0)
1676 goto out;
1677 }
1678 ret = osl_update_object(audio_file_table, pb, AFTCOL_HASH,
1679 &objs[AFTCOL_HASH]);
1680 if (ret < 0)
1681 goto out;
1682 }
1683 if (hs || pb) { /* (hs != NULL and pb != NULL) implies hs == pb */
1684 struct osl_row *row = pb? pb : hs;
1685 /* update afhi and chunk_table */
1686 if (flags & ADD_FLAG_VERBOSE) {
1687 ret = para_printf(&msg, "updating afhi and chunk table\n");
1688 if (ret < 0)
1689 goto out;
1690 }
1691 ret = osl_update_object(audio_file_table, row, AFTCOL_AFHI,
1692 &objs[AFTCOL_AFHI]);
1693 if (ret < 0)
1694 goto out;
1695 ret = osl_update_object(audio_file_table, row, AFTCOL_CHUNKS,
1696 &objs[AFTCOL_CHUNKS]);
1697 if (ret < 0)
1698 goto out;
1699 afs_event(AFHI_CHANGE, &msg, row);
1700 goto out;
1701 }
1702 /* new entry, use default afsi */
1703 if (flags & ADD_FLAG_VERBOSE) {
1704 ret = para_printf(&msg, "new file\n");
1705 if (ret < 0)
1706 goto out;
1707 }
1708 default_afsi.last_played = time(NULL) - 365 * 24 * 60 * 60;
1709 default_afsi.audio_format_id = read_u8(buf + CAB_AUDIO_FORMAT_OFFSET);
1710
1711 objs[AFTCOL_AFSI].data = &afsi_buf;
1712 objs[AFTCOL_AFSI].size = AFSI_SIZE;
1713 save_afsi(&default_afsi, &objs[AFTCOL_AFSI]);
1714 ret = osl_add_and_get_row(audio_file_table, objs, &aft_row);
1715 afs_event(AUDIO_FILE_ADD, &msg, aft_row);
1716 out:
1717 if (ret < 0)
1718 ret = para_printf(&msg, "%s\n", para_strerror(-ret));
1719 if (msg.offset)
1720 pass_buffer_as_shm(msg.buf, msg.offset, &fd);
1721 free(msg.buf);
1722 }
1723
1724 /** Used by com_add(). */
1725 struct private_add_data {
1726 /** The socket file descriptor. */
1727 int fd;
1728 /** The given add flags. */
1729 uint32_t flags;
1730 };
1731
1732 static void path_brother_callback(int fd, const struct osl_object *query)
1733 {
1734 char *path = query->data;
1735 struct osl_row *path_brother;
1736 int ret = aft_get_row_of_path(path, &path_brother);
1737 if (ret < 0)
1738 return;
1739 pass_buffer_as_shm((char *)&path_brother, sizeof(path_brother), &fd);
1740 }
1741
1742 static void hash_sister_callback(int fd, const struct osl_object *query)
1743 {
1744 HASH_TYPE *hash = query->data;
1745 struct osl_row *hash_sister;
1746
1747 hash_sister = find_hash_sister(hash);
1748 if (!hash_sister)
1749 return;
1750 pass_buffer_as_shm((char *)&hash_sister, sizeof(hash_sister), &fd);
1751 }
1752
1753 static int get_row_pointer_from_result(struct osl_object *result, void *private)
1754 {
1755 struct osl_row **row = private;
1756 *row = result->data;
1757 return 1;
1758 }
1759
1760 static int add_one_audio_file(const char *path, void *private_data)
1761 {
1762 int ret, send_ret = 1, fd;
1763 uint8_t format_num = -1;
1764 struct private_add_data *pad = private_data;
1765 struct afh_info afhi, *afhi_ptr = NULL;
1766 struct osl_row *pb = NULL, *hs = NULL; /* path brother/hash sister */
1767 struct osl_object map, obj = {.data = NULL}, query;
1768 HASH_TYPE hash[HASH_SIZE];
1769
1770 ret = guess_audio_format(path);
1771 if (ret < 0 && !(pad->flags & ADD_FLAG_ALL))
1772 goto out_free;
1773 query.data = (char *)path;
1774 query.size = strlen(path) + 1;
1775 ret = send_callback_request(path_brother_callback, &query,
1776 get_row_pointer_from_result, &pb);
1777 if (ret < 0 && ret != -E_RB_KEY_NOT_FOUND)
1778 goto out_free;
1779 ret = 1;
1780 if (pb && (pad->flags & ADD_FLAG_LAZY)) { /* lazy is really cheap */
1781 if (pad->flags & ADD_FLAG_VERBOSE)
1782 send_ret = send_va_buffer(pad->fd, "lazy-ignore: %s\n", path);
1783 goto out_free;
1784 }
1785 /* We still want to add this file. Compute its hash. */
1786 ret = mmap_full_file(path, O_RDONLY, &map.data, &map.size, &fd);
1787 if (ret < 0)
1788 goto out_free;
1789 hash_function(map.data, map.size, hash);
1790
1791 /* Check whether the database contains a file with the same hash. */
1792 query.data = hash;
1793 query.size = HASH_SIZE;
1794 ret = send_callback_request(hash_sister_callback, &query,
1795 get_row_pointer_from_result, &hs);
1796 if (ret < 0)
1797 goto out_unmap;
1798 /* Return success if we already know this file. */
1799 ret = 1;
1800 if (pb && hs && hs == pb && !(pad->flags & ADD_FLAG_FORCE)) {
1801 if (pad->flags & ADD_FLAG_VERBOSE)
1802 send_ret = send_va_buffer(pad->fd,
1803 "%s exists, not forcing update\n", path);
1804 goto out_unmap;
1805 }
1806 /*
1807 * We won't recalculate the audio format info and the chunk table if
1808 * there is a hash sister and FORCE was not given.
1809 */
1810 if (!hs || (pad->flags & ADD_FLAG_FORCE)) {
1811 ret = compute_afhi(path, map.data, map.size, fd, &afhi);
1812 if (ret < 0)
1813 goto out_unmap;
1814 format_num = ret;
1815 afhi_ptr = &afhi;
1816 }
1817 munmap(map.data, map.size);
1818 close(fd);
1819 if (pad->flags & ADD_FLAG_VERBOSE) {
1820 send_ret = send_va_buffer(pad->fd, "adding %s\n", path);
1821 if (send_ret < 0)
1822 goto out_free;
1823 }
1824 save_add_callback_buffer(hash, path, afhi_ptr, pad->flags, format_num, &obj);
1825 /* Ask afs to consider this entry for adding. */
1826 ret = send_callback_request(com_add_callback, &obj, send_result, &pad->fd);
1827 goto out_free;
1828
1829 out_unmap:
1830 close(fd);
1831 munmap(map.data, map.size);
1832 out_free:
1833 if (ret < 0 && send_ret >= 0)
1834 send_ret = send_va_buffer(pad->fd, "failed to add %s (%s)\n", path,
1835 para_strerror(-ret));
1836 free(obj.data);
1837 if (afhi_ptr) {
1838 free(afhi_ptr->chunk_table);
1839 free(afhi_ptr->info_string);
1840 }
1841 /* Stop adding files only on send errors. */
1842 return send_ret;
1843 }
1844
1845 int com_add(int fd, int argc, char * const * const argv)
1846 {
1847 int i, ret;
1848 struct private_add_data pad = {.fd = fd, .flags = 0};
1849 struct stat statbuf;
1850
1851 for (i = 1; i < argc; i++) {
1852 const char *arg = argv[i];
1853 if (arg[0] != '-')
1854 break;
1855 if (!strcmp(arg, "--")) {
1856 i++;
1857 break;
1858 }
1859 if (!strcmp(arg, "-a")) {
1860 pad.flags |= ADD_FLAG_ALL;
1861 continue;
1862 }
1863 if (!strcmp(arg, "-l")) {
1864 pad.flags |= ADD_FLAG_LAZY;
1865 continue;
1866 }
1867 if (!strcmp(arg, "-f")) {
1868 pad.flags |= ADD_FLAG_FORCE;
1869 continue;
1870 }
1871 if (!strcmp(arg, "-v")) {
1872 pad.flags |= ADD_FLAG_VERBOSE;
1873 continue;
1874 }
1875 }
1876 if (argc <= i)
1877 return -E_AFT_SYNTAX;
1878 for (; i < argc; i++) {
1879 char *path;
1880 ret = verify_path(argv[i], &path);
1881 if (ret < 0) {
1882 ret = send_va_buffer(fd, "%s: %s\n", argv[i],
1883 para_strerror(-ret));
1884 if (ret < 0)
1885 return ret;
1886 continue;
1887 }
1888 ret = stat(path, &statbuf);
1889 if (ret < 0) {
1890 ret = send_va_buffer(fd, "failed to stat %s (%s)\n", path,
1891 strerror(errno));
1892 free(path);
1893 if (ret < 0)
1894 return ret;
1895 continue;
1896 }
1897 if (S_ISDIR(statbuf.st_mode))
1898 ret = for_each_file_in_dir(path, add_one_audio_file,
1899 &pad);
1900 else
1901 ret = add_one_audio_file(path, &pad);
1902 if (ret < 0) {
1903 send_va_buffer(fd, "%s: %s\n", path, para_strerror(-ret));
1904 free(path);
1905 return ret;
1906 }
1907 free(path);
1908 }
1909 return 1;
1910
1911 }
1912
1913 /**
1914 * Flags used by the touch command.
1915 *
1916 * \sa com_touch().
1917 */
1918 enum touch_flags {
1919 /** Whether the \p FNM_PATHNAME flag should be passed to fnmatch(). */
1920 TOUCH_FLAG_FNM_PATHNAME = 1,
1921 /** Activates verbose mode. */
1922 TOUCH_FLAG_VERBOSE = 2
1923 };
1924
1925 /** Options used by com_touch(). */
1926 struct com_touch_options {
1927 /** New num_played value. */
1928 int32_t num_played;
1929 /** New last played count. */
1930 int64_t last_played;
1931 /** New lyrics id. */
1932 int32_t lyrics_id;
1933 /** New image id. */
1934 int32_t image_id;
1935 /** New amplification value. */
1936 int32_t amp;
1937 /** Command line flags (see \ref touch_flags). */
1938 unsigned flags;
1939 };
1940
1941 /** Data passed to the action handler of com_touch(). */
1942 struct touch_action_data {
1943 /** Command line options (see \ref com_touch_options). */
1944 struct com_touch_options *cto;
1945 /** Message buffer. */
1946 struct para_buffer pb;
1947 /** How many audio files matched the given pattern. */
1948 unsigned num_matches;
1949 };
1950
1951 static int touch_audio_file(__a_unused struct osl_table *table,
1952 struct osl_row *row, const char *name, void *data)
1953 {
1954 struct touch_action_data *tad = data;
1955 struct osl_object obj;
1956 struct afs_info old_afsi, new_afsi;
1957 int ret, no_options = tad->cto->num_played < 0 && tad->cto->last_played < 0 &&
1958 tad->cto->lyrics_id < 0 && tad->cto->image_id < 0 && tad->cto->amp < 0;
1959 struct afsi_change_event_data aced;
1960
1961 ret = get_afsi_object_of_row(row, &obj);
1962 if (ret < 0)
1963 return para_printf(&tad->pb, "%s: %s\n", name, para_strerror(-ret));
1964 ret = load_afsi(&old_afsi, &obj);
1965 if (ret < 0)
1966 return para_printf(&tad->pb, "%s: %s\n", name, para_strerror(-ret));
1967 new_afsi = old_afsi;
1968 if (no_options) {
1969 new_afsi.num_played++;
1970 new_afsi.last_played = time(NULL);
1971 if (tad->cto->flags & TOUCH_FLAG_VERBOSE) {
1972 ret = para_printf(&tad->pb, "%s: num_played = %u, "
1973 "last_played = now()\n", name,
1974 new_afsi.num_played);
1975 if (ret < 0)
1976 return ret;
1977 }
1978 } else {
1979 if (tad->cto->flags & TOUCH_FLAG_VERBOSE) {
1980 ret = para_printf(&tad->pb, "touching %s\n", name);
1981 if (ret < 0)
1982 return ret;
1983 }
1984 if (tad->cto->lyrics_id >= 0)
1985 new_afsi.lyrics_id = tad->cto->lyrics_id;
1986 if (tad->cto->image_id >= 0)
1987 new_afsi.image_id = tad->cto->image_id;
1988 if (tad->cto->num_played >= 0)
1989 new_afsi.num_played = tad->cto->num_played;
1990 if (tad->cto->last_played >= 0)
1991 new_afsi.last_played = tad->cto->last_played;
1992 if (tad->cto->amp >= 0)
1993 new_afsi.amp = tad->cto->amp;
1994 }
1995 tad->num_matches++;
1996 save_afsi(&new_afsi, &obj); /* in-place update */
1997 aced.aft_row = row;
1998 aced.old_afsi = &old_afsi;
1999 afs_event(AFSI_CHANGE, &tad->pb, &aced);
2000 return 1;
2001 }
2002
2003 static void com_touch_callback(int fd, const struct osl_object *query)
2004 {
2005 struct touch_action_data tad = {.cto = query->data,
2006 .pb = {
2007 .max_size = SHMMAX,
2008 .private_data = &fd,
2009 .max_size_handler = pass_buffer_as_shm
2010 }
2011 };
2012 int ret, ret2 = 0;
2013 struct pattern_match_data pmd = {
2014 .table = audio_file_table,
2015 .loop_col_num = AFTCOL_HASH,
2016 .match_col_num = AFTCOL_PATH,
2017 .patterns = {.data = (char *)query->data + sizeof(*tad.cto),
2018 .size = query->size - sizeof(*tad.cto)},
2019 .data = &tad,
2020 .action = touch_audio_file
2021 };
2022 if (tad.cto->flags & TOUCH_FLAG_FNM_PATHNAME)
2023 pmd.fnmatch_flags |= FNM_PATHNAME;
2024 ret = for_each_matching_row(&pmd);
2025 if (ret < 0)
2026 ret2 = para_printf(&tad.pb, "%s\n", para_strerror(-ret));
2027 else
2028 if (!tad.num_matches)
2029 ret2 = para_printf(&tad.pb, "no matches\n");
2030 if (ret2 >= 0 && tad.pb.offset)
2031 pass_buffer_as_shm(tad.pb.buf, tad.pb.offset, &fd);
2032 free(tad.pb.buf);
2033 }
2034
2035 int com_touch(int fd, int argc, char * const * const argv)
2036 {
2037 struct com_touch_options cto = {
2038 .num_played = -1,
2039 .last_played = -1,
2040 .lyrics_id = -1,
2041 .image_id = -1,
2042 .amp = -1,
2043 };
2044 struct osl_object query = {.data = &cto, .size = sizeof(cto)};
2045 int i, ret;
2046
2047
2048 for (i = 1; i < argc; i++) {
2049 const char *arg = argv[i];
2050 if (arg[0] != '-')
2051 break;
2052 if (!strcmp(arg, "--")) {
2053 i++;
2054 break;
2055 }
2056 if (!strncmp(arg, "-n", 2)) {
2057 ret = para_atoi32(arg + 2, &cto.num_played);
2058 if (ret < 0)
2059 return ret;
2060 continue;
2061 }
2062 if (!strncmp(arg, "-l", 2)) {
2063 ret = para_atoi64(arg + 2, &cto.last_played);
2064 if (ret < 0)
2065 return ret;
2066 continue;
2067 }
2068 if (!strncmp(arg, "-y", 2)) {
2069 ret = para_atoi32(arg + 2, &cto.lyrics_id);
2070 if (ret < 0)
2071 return ret;
2072 continue;
2073 }
2074 if (!strncmp(arg, "-i", 2)) {
2075 ret = para_atoi32(arg + 2, &cto.image_id);
2076 if (ret < 0)
2077 return ret;
2078 continue;
2079 }
2080 if (!strncmp(arg, "-a", 2)) {
2081 int32_t val;
2082 ret = para_atoi32(arg + 2, &val);
2083 if (ret < 0)
2084 return ret;
2085 if (val < 0 || val > 255)
2086 return -ERRNO_TO_PARA_ERROR(EINVAL);
2087 cto.amp = val;
2088 continue;
2089 }
2090 if (!strcmp(arg, "-p")) {
2091 cto.flags |= TOUCH_FLAG_FNM_PATHNAME;
2092 continue;
2093 }
2094 if (!strcmp(arg, "-v")) {
2095 cto.flags |= TOUCH_FLAG_VERBOSE;
2096 continue;
2097 }
2098 break; /* non-option starting with dash */
2099 }
2100 if (i >= argc)
2101 return -E_AFT_SYNTAX;
2102 ret = send_option_arg_callback_request(&query, argc - i,
2103 argv + i, com_touch_callback, send_result, &fd);
2104 if (ret < 0)
2105 send_va_buffer(fd, "%s\n", para_strerror(-ret));
2106 return ret;
2107 }
2108
2109 /** Flags for com_rm(). */
2110 enum rm_flags {
2111 /** -v */
2112 RM_FLAG_VERBOSE = 1,
2113 /** -f */
2114 RM_FLAG_FORCE = 2,
2115 /** -p */
2116 RM_FLAG_FNM_PATHNAME = 4
2117 };
2118
2119 /** Data passed to the action handler of com_rm(). */
2120 struct com_rm_action_data {
2121 /** Command line flags ((see \ref rm_flags). */
2122 uint32_t flags;
2123 /** Message buffer. */
2124 struct para_buffer pb;
2125 /** Number of audio files removed. */
2126 unsigned num_removed;
2127 };
2128
2129 static int remove_audio_file(__a_unused struct osl_table *table,
2130 struct osl_row *row, const char *name, void *data)
2131 {
2132 struct com_rm_action_data *crd = data;
2133 int ret, ret2;
2134
2135 if (crd->flags & RM_FLAG_VERBOSE) {
2136 ret = para_printf(&crd->pb, "removing %s\n", name);
2137 if (ret < 0)
2138 return ret;
2139 }
2140 afs_event(AUDIO_FILE_REMOVE, &crd->pb, row);
2141 ret = osl_del_row(audio_file_table, row);
2142 if (ret < 0)
2143 ret2 = para_printf(&crd->pb, "%s: %s\n", name,
2144 para_strerror(-ret));
2145 else
2146 crd->num_removed++;
2147 return ret;
2148 }
2149
2150 static void com_rm_callback(int fd, const struct osl_object *query)
2151 {
2152 struct com_rm_action_data crd = {.flags = *(uint32_t *)query->data,
2153 .pb = {
2154 .max_size = SHMMAX,
2155 .private_data = &fd,
2156 .max_size_handler = pass_buffer_as_shm
2157 }
2158 };
2159 int ret;
2160 struct pattern_match_data pmd = {
2161 .table = audio_file_table,
2162 .loop_col_num = AFTCOL_HASH,
2163 .match_col_num = AFTCOL_PATH,
2164 .patterns = {.data = (char *)query->data + sizeof(uint32_t),
2165 .size = query->size - sizeof(uint32_t)},
2166 .data = &crd,
2167 .action = remove_audio_file
2168 };
2169 if (crd.flags & RM_FLAG_FNM_PATHNAME)
2170 pmd.fnmatch_flags |= FNM_PATHNAME;
2171 ret = for_each_matching_row(&pmd);
2172 if (ret < 0) {
2173 ret = para_printf(&crd.pb, "%s\n", para_strerror(-ret));
2174 return;
2175 }
2176 if (!crd.num_removed && !(crd.flags & RM_FLAG_FORCE))
2177 ret = para_printf(&crd.pb, "no matches -- nothing removed\n");
2178 else {
2179 if (crd.flags & RM_FLAG_VERBOSE)
2180 ret = para_printf(&crd.pb, "removed %u files\n", crd.num_removed);
2181 }
2182 if (ret >= 0 && crd.pb.offset)
2183 pass_buffer_as_shm(crd.pb.buf, crd.pb.offset, &fd);
2184 free(crd.pb.buf);
2185 }
2186
2187 /* TODO options: -r (recursive) */
2188 int com_rm(int fd, int argc, char * const * const argv)
2189 {
2190 uint32_t flags = 0;
2191 struct osl_object query = {.data = &flags, .size = sizeof(flags)};
2192 int i, ret;
2193
2194 for (i = 1; i < argc; i++) {
2195 const char *arg = argv[i];
2196 if (arg[0] != '-')
2197 break;
2198 if (!strcmp(arg, "--")) {
2199 i++;
2200 break;
2201 }
2202 if (!strcmp(arg, "-f")) {
2203 flags |= RM_FLAG_FORCE;
2204 continue;
2205 }
2206 if (!strcmp(arg, "-p")) {
2207 flags |= RM_FLAG_FNM_PATHNAME;
2208 continue;
2209 }
2210 if (!strcmp(arg, "-v")) {
2211 flags |= RM_FLAG_VERBOSE;
2212 continue;
2213 }
2214 break;
2215 }
2216 if (i >= argc)
2217 return -E_AFT_SYNTAX;
2218 ret = send_option_arg_callback_request(&query, argc - i, argv + i,
2219 com_rm_callback, send_result, &fd);
2220 if (ret < 0)
2221 send_va_buffer(fd, "%s\n", para_strerror(-ret));
2222 return ret;
2223 }
2224
2225 /**
2226 * Flags used by the cpsi command.
2227 *
2228 * \sa com_cpsi().
2229 */
2230 enum cpsi_flags {
2231 /** Whether the lyrics id should be copied. */
2232 CPSI_FLAG_COPY_LYRICS_ID = 1,
2233 /** Whether the image id should be copied. */
2234 CPSI_FLAG_COPY_IMAGE_ID = 2,
2235 /** Whether the lastplayed time should be copied. */
2236 CPSI_FLAG_COPY_LASTPLAYED = 4,
2237 /** Whether the numplayed count should be copied. */
2238 CPSI_FLAG_COPY_NUMPLAYED = 8,
2239 /** Whether the attributes should be copied. */
2240 CPSI_FLAG_COPY_ATTRIBUTES = 16,
2241 /** Activates verbose mode. */
2242 CPSI_FLAG_VERBOSE = 32,
2243 };
2244
2245 /** Data passed to the action handler of com_cpsi(). */
2246 struct cpsi_action_data {
2247 /** command line flags (see \ref cpsi_flags). */
2248 unsigned flags;
2249 /** Number of audio files changed. */
2250 unsigned num_copied;
2251 /** Message buffer. */
2252 struct para_buffer pb;
2253 /** Values are copied from here. */
2254 struct afs_info source_afsi;
2255 };
2256
2257 static int copy_selector_info(__a_unused struct osl_table *table,
2258 struct osl_row *row, const char *name, void *data)
2259 {
2260 struct cpsi_action_data *cad = data;
2261 struct osl_object target_afsi_obj;
2262 int ret;
2263 struct afs_info old_afsi, target_afsi;
2264 struct afsi_change_event_data aced;
2265
2266 ret = get_afsi_object_of_row(row, &target_afsi_obj);
2267 if (ret < 0)
2268 return ret;
2269 load_afsi(&target_afsi, &target_afsi_obj);
2270 old_afsi = target_afsi;
2271 if (cad->flags & CPSI_FLAG_COPY_LYRICS_ID)
2272 target_afsi.lyrics_id = cad->source_afsi.lyrics_id;
2273 if (cad->flags & CPSI_FLAG_COPY_IMAGE_ID)
2274 target_afsi.image_id = cad->source_afsi.image_id;
2275 if (cad->flags & CPSI_FLAG_COPY_LASTPLAYED)
2276 target_afsi.last_played = cad->source_afsi.last_played;
2277 if (cad->flags & CPSI_FLAG_COPY_NUMPLAYED)
2278 target_afsi.num_played = cad->source_afsi.num_played;
2279 if (cad->flags & CPSI_FLAG_COPY_ATTRIBUTES)
2280 target_afsi.attributes = cad->source_afsi.attributes;
2281 save_afsi(&target_afsi, &target_afsi_obj); /* in-place update */
2282 cad->num_copied++;
2283 if (cad->flags & CPSI_FLAG_VERBOSE) {
2284 ret = para_printf(&cad->pb, "copied afsi to %s\n", name);
2285 if (ret < 0)
2286 return ret;
2287 }
2288 aced.aft_row = row;
2289 aced.old_afsi = &old_afsi;
2290 afs_event(AFSI_CHANGE, &cad->pb, &aced);
2291 return 1;
2292 }
2293
2294 static void com_cpsi_callback(int fd, const struct osl_object *query)
2295 {
2296 struct cpsi_action_data cad = {
2297 .flags = *(unsigned *)query->data,
2298 .pb = {
2299 .max_size = SHMMAX,
2300 .private_data = &fd,
2301 .max_size_handler = pass_buffer_as_shm
2302 }
2303 };
2304 int ret;
2305 char *source_path = (char *)query->data + sizeof(cad.flags);
2306 struct pattern_match_data pmd = {
2307 .table = audio_file_table,
2308 .loop_col_num = AFTCOL_HASH,
2309 .match_col_num = AFTCOL_PATH,
2310 .patterns = {.data = source_path + strlen(source_path) + 1,
2311 .size = query->size - sizeof(cad.flags)
2312 - strlen(source_path) - 1},
2313 .data = &cad,
2314 .action = copy_selector_info
2315 };
2316
2317 ret = get_afsi_of_path(source_path, &cad.source_afsi);
2318 if (ret < 0)
2319 goto out;
2320 ret = for_each_matching_row(&pmd);
2321 out:
2322 if (ret < 0)
2323 ret = para_printf(&cad.pb, "%s\n", para_strerror(-ret));
2324 else if (cad.flags & CPSI_FLAG_VERBOSE) {
2325 if (cad.num_copied)
2326 ret = para_printf(&cad.pb, "copied requested afsi from %s "
2327 "to %u files\n",
2328 source_path, cad.num_copied);
2329 else
2330 ret = para_printf(&cad.pb, "nothing copied\n");
2331 }
2332 if (cad.pb.offset)
2333 pass_buffer_as_shm(cad.pb.buf, cad.pb.offset, &fd);
2334 free(cad.pb.buf);
2335 }
2336
2337 int com_cpsi(int fd, int argc, char * const * const argv)
2338 {
2339 unsigned flags = 0;
2340 int i, ret;
2341 struct osl_object options = {.data = &flags, .size = sizeof(flags)};
2342
2343 for (i = 1; i < argc; i++) {
2344 const char *arg = argv[i];
2345 if (arg[0] != '-')
2346 break;
2347 if (!strcmp(arg, "--")) {
2348 i++;
2349 break;
2350 }
2351 if (!strcmp(arg, "-y")) {
2352 flags |= CPSI_FLAG_COPY_LYRICS_ID;
2353 continue;
2354 }
2355 if (!strcmp(arg, "-i")) {
2356 flags |= CPSI_FLAG_COPY_IMAGE_ID;
2357 continue;
2358 }
2359 if (!strcmp(arg, "-l")) {
2360 flags |= CPSI_FLAG_COPY_LASTPLAYED;
2361 continue;
2362 }
2363 if (!strcmp(arg, "-n")) {
2364 flags |= CPSI_FLAG_COPY_NUMPLAYED;
2365 continue;
2366 }
2367 if (!strcmp(arg, "-a")) {
2368 flags |= CPSI_FLAG_COPY_ATTRIBUTES;
2369 continue;
2370 }
2371 if (!strcmp(arg, "-v")) {
2372 flags |= CPSI_FLAG_VERBOSE;
2373 continue;
2374 }
2375 break;
2376 }
2377 if (i + 1 >= argc) /* need at least souce file and pattern */
2378 return -E_AFT_SYNTAX;
2379 if (!(flags & ~CPSI_FLAG_VERBOSE)) /* no copy flags given */
2380 flags = ~(unsigned)CPSI_FLAG_VERBOSE | flags;
2381 ret = send_option_arg_callback_request(&options, argc - i, argv + i,
2382 com_cpsi_callback, send_result, &fd);
2383 if (ret < 0)
2384 send_va_buffer(fd, "%s\n", para_strerror(-ret));
2385 return ret;
2386 }
2387
2388 /* TODO: optionally fix problems by removing offending rows */
2389 static int check_audio_file(struct osl_row *row, void *data)
2390 {
2391 char *path;
2392 struct para_buffer *pb = data;
2393 struct stat statbuf;
2394 int ret = get_audio_file_path_of_row(row, &path);
2395 struct afs_info afsi;
2396 char *blob_name;
2397
2398 if (ret < 0)
2399 return para_printf(pb, "%s\n", para_strerror(-ret));
2400 if (stat(path, &statbuf) < 0) {
2401 ret = para_printf(pb, "%s: stat error (%s)\n", path, strerror(errno));
2402 if (ret < 0)
2403 return ret;
2404 } else {
2405 if (!S_ISREG(statbuf.st_mode)) {
2406 ret = para_printf(pb, "%s: not a regular file\n", path);
2407 if (ret < 0)
2408 return ret;
2409 }
2410 }
2411 ret = get_afsi_of_row(row, &afsi);
2412 if (ret < 0)
2413 return para_printf(pb, "%s: %s\n", path, para_strerror(-ret));
2414 ret = lyr_get_name_by_id(afsi.lyrics_id, &blob_name);
2415 if (ret < 0) {
2416 ret = para_printf(pb, "%s lyrics id %u: %s\n", path, afsi.lyrics_id,
2417 para_strerror(-ret));
2418 if (ret < 0)
2419 return ret;
2420 }
2421 ret = img_get_name_by_id(afsi.image_id, &blob_name);
2422 if (ret < 0)
2423 ret = para_printf(pb, "%s image id %u: %s\n", path, afsi.image_id,
2424 para_strerror(-ret));
2425 return ret;
2426 }
2427
2428 /**
2429 * Check the audio file table for inconsistencies.
2430 *
2431 * \param fd The afs socket.
2432 * \param query Unused.
2433 *
2434 * This function always succeeds.
2435 *
2436 * \sa com_check().
2437 */
2438 void aft_check_callback(int fd, __a_unused const struct osl_object *query)
2439 {
2440 struct para_buffer pb = {
2441 .max_size = SHMMAX,
2442 .private_data = &fd,
2443 .max_size_handler = pass_buffer_as_shm
2444 };
2445 int ret = para_printf(&pb, "checking audio file table...\n");
2446
2447 if (ret < 0)
2448 return;
2449 audio_file_loop(&pb, check_audio_file);
2450 if (pb.offset)
2451 pass_buffer_as_shm(pb.buf, pb.offset, &fd);
2452 free(pb.buf);
2453 }
2454
2455 /**
2456 * Close the audio file table.
2457 *
2458 * \param flags Usual flags that are passed to osl_close_table().
2459 *
2460 * \sa osl_close_table().
2461 */
2462 static void aft_close(void)
2463 {
2464 osl_close_table(audio_file_table, OSL_MARK_CLEAN);
2465 audio_file_table = NULL;
2466 }
2467
2468 /**
2469 * Open the audio file table.
2470 *
2471 * \param dir The database directory.
2472 *
2473 * \return Standard.
2474 *
2475 * \sa osl_open_table().
2476 */
2477 static int aft_open(const char *dir)
2478 {
2479 int ret;
2480
2481 audio_file_table_desc.dir = dir;
2482 ret = osl_open_table(&audio_file_table_desc, &audio_file_table);
2483 if (ret >= 0) {
2484 unsigned num;
2485 osl_get_num_rows(audio_file_table, &num);
2486 PARA_INFO_LOG("audio file table contains %d files\n", num);
2487 return ret;
2488 }
2489 PARA_INFO_LOG("failed to open audio file table\n");
2490 audio_file_table = NULL;
2491 if (ret >= 0 || is_errno(-ret, ENOENT))
2492 return 1;
2493 return ret;
2494 }
2495
2496 static int aft_create(const char *dir)
2497 {
2498 audio_file_table_desc.dir = dir;
2499 return osl_create_table(&audio_file_table_desc);
2500 }
2501
2502 static int clear_attribute(struct osl_row *row, void *data)
2503 {
2504 struct rmatt_event_data *red = data;
2505 struct afs_info afsi;
2506 struct osl_object obj;
2507 int ret = get_afsi_object_of_row(row, &obj);
2508 uint64_t mask = ~(1ULL << red->bitnum);
2509
2510 if (ret < 0)
2511 return ret;
2512 ret = load_afsi(&afsi, &obj);
2513 if (ret < 0)
2514 return ret;
2515 afsi.attributes &= mask;
2516 save_afsi(&afsi, &obj);
2517 return 1;
2518 }
2519
2520 static int aft_event_handler(enum afs_events event, struct para_buffer *pb,
2521 void *data)
2522 {
2523 int ret;
2524
2525 switch(event) {
2526 case ATTRIBUTE_REMOVE: {
2527 const struct rmatt_event_data *red = data;
2528 ret = para_printf(pb, "clearing attribute %s (bit %u) from all "
2529 "entries in the audio file table\n", red->name,
2530 red->bitnum);
2531 if (ret < 0)
2532 return ret;
2533 return audio_file_loop(data, clear_attribute);
2534 }
2535 default:
2536 return 1;
2537 }
2538 }
2539
2540 void aft_init(struct afs_table *t)
2541 {
2542 t->name = audio_file_table_desc.name;
2543 t->open = aft_open;
2544 t->close = aft_close;
2545 t->create = aft_create;
2546 t->event_handler = aft_event_handler;
2547 }