1 /* GStreamer
2 * Copyright (C) <2005,2006> Wim Taymans <wim@fluendo.com>
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Library General Public
6 * License as published by the Free Software Foundation; either
7 * version 2 of the License, or (at your option) any later version.
8 *
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Library General Public License for more details.
13 *
14 * You should have received a copy of the GNU Library General Public
15 * License along with this library; if not, write to the
16 * Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
17 * Boston, MA 02110-1301, USA.
18 */
19 /*
20 * Unless otherwise indicated, Source Code is licensed under MIT license.
21 * See further explanation attached in License Statement (distributed in the file
22 * LICENSE).
23 *
24 * Permission is hereby granted, free of charge, to any person obtaining a copy of
25 * this software and associated documentation files (the "Software"), to deal in
26 * the Software without restriction, including without limitation the rights to
27 * use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies
28 * of the Software, and to permit persons to whom the Software is furnished to do
29 * so, subject to the following conditions:
30 *
31 * The above copyright notice and this permission notice shall be included in all
32 * copies or substantial portions of the Software.
33 *
34 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
35 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
36 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
37 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
38 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
39 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
40 * SOFTWARE.
41 */
42
43 /**
44 * SECTION:gstrtsprange
45 * @title: GstRTSPTimeRange
46 * @short_description: dealing with time ranges
47 *
48 * Provides helper functions to deal with time ranges.
49 */
50 #ifdef HAVE_CONFIG_H
51 #include "config.h"
52 #endif
53
54 #include <math.h>
55 #include <stdio.h>
56 #include <string.h>
57
58 #include "gstrtsprange.h"
59
60 static gdouble
gst_strtod(const gchar * dstr)61 gst_strtod (const gchar * dstr)
62 {
63 gchar s[G_ASCII_DTOSTR_BUF_SIZE] = { 0, };
64
65 /* canonicalise floating point string so we can handle float strings
66 * in the form "24.930" or "24,930" irrespective of the current locale.
67 * We should always be getting floats in 24.930 format with a floating point,
68 * but let's accept malformed ones as well, easy mistake to make after all */
69 g_strlcpy (s, dstr, sizeof (s));
70 g_strdelimit (s, ",", '.');
71 return g_ascii_strtod (s, NULL);
72 }
73
74 /* npt-time = "now" | npt-sec | npt-hhmmss
75 * npt-sec = 1*DIGIT [ "." *DIGIT ]
76 * npt-hhmmss = npt-hh ":" npt-mm ":" npt-ss [ "." *DIGIT ]
77 * npt-hh = 1*DIGIT ; any positive number
78 * npt-mm = 1*2DIGIT ; 0-59
79 * npt-ss = 1*2DIGIT ; 0-59
80 */
81 static GstRTSPResult
parse_npt_time(const gchar * str,GstRTSPTime * time)82 parse_npt_time (const gchar * str, GstRTSPTime * time)
83 {
84 if (strncmp (str, "now", 3) == 0) {
85 time->type = GST_RTSP_TIME_NOW;
86 } else if (str[0] == '\0' || str[0] == '-') {
87 time->type = GST_RTSP_TIME_END;
88 } else if (strstr (str, ":")) {
89 gint hours, mins;
90
91 if (sscanf (str, "%2d:%2d:", &hours, &mins) != 2)
92 return GST_RTSP_EINVAL;
93
94 str = strchr (str, ':');
95 str = strchr (str + 1, ':');
96 if (str == NULL)
97 return GST_RTSP_EINVAL;
98
99 time->type = GST_RTSP_TIME_SECONDS;
100 time->seconds = ((hours * 60) + mins) * 60 + gst_strtod (str + 1);
101 } else {
102 time->type = GST_RTSP_TIME_SECONDS;
103 time->seconds = gst_strtod (str);
104 }
105 return GST_RTSP_OK;
106 }
107
108 /* npt-range = ( npt-time "-" [ npt-time ] ) | ( "-" npt-time )
109 */
110 static GstRTSPResult
parse_npt_range(const gchar * str,GstRTSPTimeRange * range)111 parse_npt_range (const gchar * str, GstRTSPTimeRange * range)
112 {
113 GstRTSPResult res;
114 gchar *p;
115
116 range->unit = GST_RTSP_RANGE_NPT;
117
118 /* find '-' separator */
119 p = strstr (str, "-");
120 if (p == NULL)
121 return GST_RTSP_EINVAL;
122
123 if ((res = parse_npt_time (str, &range->min)) != GST_RTSP_OK)
124 goto done;
125
126 res = parse_npt_time (p + 1, &range->max);
127
128 /* a single - is not allowed */
129 if (range->min.type == GST_RTSP_TIME_END
130 && range->max.type == GST_RTSP_TIME_END)
131 return GST_RTSP_EINVAL;
132
133 done:
134 return res;
135 }
136
137 /* utc-time = utc-date "T" utc-time "Z"
138 * utc-date = 8DIGIT ; < YYYYMMDD >
139 * utc-time = 6DIGIT [ "." fraction ] ; < HHMMSS.fraction >
140 *
141 * Example for November 8, 1996 at 14h37 and 20 and a quarter seconds
142 * UTC:
143 *
144 * 19961108T143720.25Z
145 */
146 static GstRTSPResult
parse_utc_time(const gchar * str,GstRTSPTime * time,GstRTSPTime2 * time2,const gchar * limit)147 parse_utc_time (const gchar * str, GstRTSPTime * time, GstRTSPTime2 * time2,
148 const gchar * limit)
149 {
150
151 if (str[0] == '\0') {
152 time->type = GST_RTSP_TIME_END;
153 return GST_RTSP_OK;
154 } else {
155 gint year, month, day;
156 gint hours, mins;
157 gdouble secs;
158 gchar *T, *Z;
159
160 T = strchr (str, 'T');
161 if (T == NULL || T != str + 8)
162 return GST_RTSP_EINVAL;
163
164 Z = strchr (T + 1, 'Z');
165 if (Z == NULL)
166 return GST_RTSP_EINVAL;
167
168 time->type = GST_RTSP_TIME_UTC;
169
170 if (sscanf (str, "%4d%2d%2dT%2d%2d%lfZ", &year, &month, &day, &hours,
171 &mins, &secs) != 6)
172 return GST_RTSP_EINVAL;
173
174 time2->year = year;
175 time2->month = month;
176 time2->day = day;
177 time->seconds = ((hours * 60) + mins) * 60 + secs;
178 }
179 return GST_RTSP_OK;
180 }
181
182 /* utc-range = "clock" "=" utc-time "-" [ utc-time ]
183 */
184 static GstRTSPResult
parse_utc_range(const gchar * str,GstRTSPTimeRange * range)185 parse_utc_range (const gchar * str, GstRTSPTimeRange * range)
186 {
187 GstRTSPResult res;
188 gchar *p;
189
190 range->unit = GST_RTSP_RANGE_CLOCK;
191
192 /* find '-' separator, can't have a single - */
193 p = strstr (str, "-");
194 if (p == NULL || p == str)
195 return GST_RTSP_EINVAL;
196
197 if ((res = parse_utc_time (str, &range->min, &range->min2, p)) != GST_RTSP_OK)
198 goto done;
199
200 res = parse_utc_time (p + 1, &range->max, &range->max2, NULL);
201
202 done:
203 return res;
204 }
205
206 /* smpte-time = 1*2DIGIT ":" 1*2DIGIT ":" 1*2DIGIT [ ":" 1*2DIGIT ]
207 * [ "." 1*2DIGIT ]
208 * hours:minutes:seconds:frames.subframes
209 */
210 static GstRTSPResult
parse_smpte_time(const gchar * str,GstRTSPTime * time,GstRTSPTime2 * time2,const gchar * limit)211 parse_smpte_time (const gchar * str, GstRTSPTime * time, GstRTSPTime2 * time2,
212 const gchar * limit)
213 {
214 gint hours, mins, secs;
215
216 if (str[0] == '\0') {
217 time->type = GST_RTSP_TIME_END;
218 return GST_RTSP_OK;
219 } else {
220 if (sscanf (str, "%2d:%2d:%2d", &hours, &mins, &secs) != 3)
221 return GST_RTSP_EINVAL;
222
223 time->type = GST_RTSP_TIME_FRAMES;
224 time->seconds = ((hours * 60) + mins) * 60 + secs;
225 str = strchr (str, ':');
226 str = strchr (str + 1, ':');
227 str = strchr (str + 1, ':');
228 if (str && (limit == NULL || str < limit))
229 time2->frames = gst_strtod (str + 1);
230 }
231 return GST_RTSP_OK;
232 }
233
234 /* smpte-range = smpte-type "=" smpte-time "-" [ smpte-time ]
235 */
236 static GstRTSPResult
parse_smpte_range(const gchar * str,GstRTSPTimeRange * range)237 parse_smpte_range (const gchar * str, GstRTSPTimeRange * range)
238 {
239 GstRTSPResult res;
240 gchar *p;
241
242 /* find '-' separator, can't have a single - */
243 p = strstr (str, "-");
244 if (p == NULL || p == str)
245 return GST_RTSP_EINVAL;
246
247 if ((res =
248 parse_smpte_time (str, &range->min, &range->min2, p)) != GST_RTSP_OK)
249 goto done;
250
251 res = parse_smpte_time (p + 1, &range->max, &range->max2, NULL);
252
253 done:
254 return res;
255 }
256
257 /**
258 * gst_rtsp_range_parse:
259 * @rangestr: a range string to parse
260 * @range: (out): location to hold the #GstRTSPTimeRange result
261 *
262 * Parse @rangestr to a #GstRTSPTimeRange.
263 *
264 * Returns: #GST_RTSP_OK on success.
265 */
266 GstRTSPResult
gst_rtsp_range_parse(const gchar * rangestr,GstRTSPTimeRange ** range)267 gst_rtsp_range_parse (const gchar * rangestr, GstRTSPTimeRange ** range)
268 {
269 GstRTSPResult ret;
270 GstRTSPTimeRange *res;
271 gchar *p;
272
273 g_return_val_if_fail (rangestr != NULL, GST_RTSP_EINVAL);
274 g_return_val_if_fail (range != NULL, GST_RTSP_EINVAL);
275
276 res = g_new0 (GstRTSPTimeRange, 1);
277
278 p = (gchar *) rangestr;
279 /* first figure out the units of the range */
280 if (g_str_has_prefix (p, "npt=")) {
281 ret = parse_npt_range (p + 4, res);
282 } else if (g_str_has_prefix (p, "clock=")) {
283 ret = parse_utc_range (p + 6, res);
284 } else if (g_str_has_prefix (p, "smpte=")) {
285 res->unit = GST_RTSP_RANGE_SMPTE;
286 ret = parse_smpte_range (p + 6, res);
287 } else if (g_str_has_prefix (p, "smpte-30-drop=")) {
288 res->unit = GST_RTSP_RANGE_SMPTE_30_DROP;
289 ret = parse_smpte_range (p + 14, res);
290 } else if (g_str_has_prefix (p, "smpte-25=")) {
291 res->unit = GST_RTSP_RANGE_SMPTE_25;
292 ret = parse_smpte_range (p + 9, res);
293 } else
294 goto invalid;
295
296 if (ret != GST_RTSP_OK)
297 goto invalid;
298
299 *range = res;
300 return ret;
301
302 /* ERRORS */
303 invalid:
304 {
305 gst_rtsp_range_free (res);
306 return GST_RTSP_EINVAL;
307 }
308 }
309
310 static void
string_append_dtostr(GString * string,gdouble value,guint precision)311 string_append_dtostr (GString * string, gdouble value, guint precision)
312 {
313 gchar dstrbuf[G_ASCII_DTOSTR_BUF_SIZE] = { 0, };
314 gchar *dot;
315 guint len;
316
317 precision++;
318
319 if (value != 0.0)
320 value += 4.9 * pow (10.0, precision * -1.0);
321
322 g_ascii_dtostr (dstrbuf, G_ASCII_DTOSTR_BUF_SIZE, value);
323
324 dot = strchr (dstrbuf, '.');
325
326 if (dot == NULL)
327 goto done;
328
329 for (; *dot != '.' && *dot != '0'; dot++);
330
331 if ((dot - dstrbuf) + precision < G_ASCII_DTOSTR_BUF_SIZE)
332 dot[precision] = 0;
333
334 len = strlen (dstrbuf);
335 while (dstrbuf[len - 1] == '0')
336 dstrbuf[--len] = 0;
337 if (dstrbuf[len - 1] == '.')
338 dstrbuf[--len] = 0;
339
340 done:
341
342 g_string_append (string, dstrbuf);
343 }
344
345 static gboolean
time_to_string(const GstRTSPTime * t1,const GstRTSPTime2 * t2,GString * string)346 time_to_string (const GstRTSPTime * t1, const GstRTSPTime2 * t2,
347 GString * string)
348 {
349 gboolean res = TRUE;
350
351 switch (t1->type) {
352 case GST_RTSP_TIME_SECONDS:
353 /* need to format floating point value strings as in C locale */
354 string_append_dtostr (string, t1->seconds +
355 (t1->seconds ? 0.00000000005 : 0), 9);
356 break;
357 case GST_RTSP_TIME_NOW:
358 g_string_append (string, "now");
359 break;
360 case GST_RTSP_TIME_END:
361 break;
362 case GST_RTSP_TIME_FRAMES:
363 {
364 gint64 sec = t1->seconds;
365
366 /* need to format floating point value strings as in C locale */
367 g_string_append_printf (string, "%d:%02d:%02d", (gint) sec / (60 * 60),
368 (gint) (sec % (60 * 60)) / 60, (gint) sec % 60);
369
370 if (t2->frames > 0.0) {
371 g_string_append_printf (string, ":%s", t2->frames < 10 ? "0" : "");
372 string_append_dtostr (string, t2->frames + 0.005, 2);
373 }
374 break;
375 }
376 case GST_RTSP_TIME_UTC:
377 {
378 gint64 sec = t1->seconds;
379 gint hours, minutes;
380 gdouble seconds;
381
382 hours = sec / (60 * 60);
383 sec -= hours * 60 * 60;
384 minutes = sec / 60;
385 sec = ((hours * 60) + minutes) * 60;
386 seconds = t1->seconds - sec;
387 if (seconds)
388 seconds += 0.00000000005;
389
390 g_string_append_printf (string, "%04d%02d%02dT%02d%02d%s",
391 t2->year, t2->month, t2->day, hours, minutes,
392 seconds < 10 ? "0" : "");
393 string_append_dtostr (string, seconds, 9);
394 g_string_append (string, "Z");
395 break;
396 }
397 default:
398 res = FALSE;
399 break;
400 }
401 return res;
402 }
403
404 static gboolean
range_to_string(const GstRTSPTimeRange * range,GString * string)405 range_to_string (const GstRTSPTimeRange * range, GString * string)
406 {
407 gboolean res;
408
409 if (!(res = time_to_string (&range->min, &range->min2, string)))
410 goto done;
411
412 g_string_append (string, "-");
413
414 if (!(res = time_to_string (&range->max, &range->max2, string)))
415 goto done;
416
417 done:
418 return res;
419 }
420
421 /**
422 * gst_rtsp_range_to_string:
423 * @range: a #GstRTSPTimeRange
424 *
425 * Convert @range into a string representation.
426 *
427 * Returns: The string representation of @range. g_free() after usage.
428 */
429 gchar *
gst_rtsp_range_to_string(const GstRTSPTimeRange * range)430 gst_rtsp_range_to_string (const GstRTSPTimeRange * range)
431 {
432 GString *string;
433
434 g_return_val_if_fail (range != NULL, NULL);
435
436 switch (range->unit) {
437 case GST_RTSP_RANGE_NPT:
438 string = g_string_new ("npt=");
439 break;
440 case GST_RTSP_RANGE_SMPTE:
441 case GST_RTSP_RANGE_SMPTE_30_DROP:
442 string = g_string_new ("smpte=");
443 break;
444 case GST_RTSP_RANGE_SMPTE_25:
445 string = g_string_new ("smpte-25=");
446 break;
447 case GST_RTSP_RANGE_CLOCK:
448 string = g_string_new ("clock=");
449 break;
450 default:
451 goto not_implemented;
452 }
453
454 if (!range_to_string (range, string))
455 goto format_failed;
456
457 return g_string_free (string, FALSE);
458
459 /* ERRORS */
460 not_implemented:
461 {
462 g_warning ("time range unit not yet implemented");
463 return NULL;
464 }
465 format_failed:
466 {
467 g_string_free (string, TRUE);
468 return NULL;
469 }
470 }
471
472 /**
473 * gst_rtsp_range_free:
474 * @range: a #GstRTSPTimeRange
475 *
476 * Free the memory allocated by @range.
477 */
478 void
gst_rtsp_range_free(GstRTSPTimeRange * range)479 gst_rtsp_range_free (GstRTSPTimeRange * range)
480 {
481 g_return_if_fail (range != NULL);
482
483 g_free (range);
484 }
485
486 static GstClockTime
get_seconds(const GstRTSPTime * t)487 get_seconds (const GstRTSPTime * t)
488 {
489 if (t->seconds < G_MAXINT) {
490 gint num, denom;
491 /* Don't do direct multiply with GST_SECOND to avoid rounding
492 * errors.
493 * This only works for "small" numbers, because num is limited to 32-bit
494 */
495 gst_util_double_to_fraction (t->seconds, &num, &denom);
496 return gst_util_uint64_scale_int (GST_SECOND, num, denom);
497 } else {
498 return gst_util_gdouble_to_guint64 (t->seconds * GST_SECOND);
499 }
500 }
501
502 static GstClockTime
get_frames(const GstRTSPTime2 * t,GstRTSPRangeUnit unit)503 get_frames (const GstRTSPTime2 * t, GstRTSPRangeUnit unit)
504 {
505 gint num, denom;
506
507 gst_util_double_to_fraction (t->frames, &num, &denom);
508
509 switch (unit) {
510 case GST_RTSP_RANGE_SMPTE_25:
511 denom *= 25;
512 break;
513 case GST_RTSP_RANGE_SMPTE:
514 case GST_RTSP_RANGE_SMPTE_30_DROP:
515 default:
516 num *= 1001;
517 denom *= 30003;
518 break;
519 }
520 return gst_util_uint64_scale_int (GST_SECOND, num, denom);
521 }
522
523 static GstClockTime
get_time(GstRTSPRangeUnit unit,const GstRTSPTime * t1,const GstRTSPTime2 * t2)524 get_time (GstRTSPRangeUnit unit, const GstRTSPTime * t1,
525 const GstRTSPTime2 * t2)
526 {
527 GstClockTime res;
528
529 switch (t1->type) {
530 case GST_RTSP_TIME_SECONDS:
531 {
532 res = get_seconds (t1);
533 break;
534 }
535 case GST_RTSP_TIME_UTC:
536 {
537 GDateTime *dt, *bt;
538 GTimeSpan span;
539
540 /* make time base, we use 1900 */
541 bt = g_date_time_new_utc (1900, 1, 1, 0, 0, 0.0);
542 /* convert to GDateTime without the seconds */
543 dt = g_date_time_new_utc (t2->year, t2->month, t2->day, 0, 0, 0.0);
544 /* get amount of microseconds */
545 span = g_date_time_difference (dt, bt);
546 g_date_time_unref (bt);
547 g_date_time_unref (dt);
548 /* add seconds */
549 res = get_seconds (t1) + (span * 1000);
550 break;
551 }
552 case GST_RTSP_TIME_FRAMES:
553 res = get_seconds (t1);
554 res += get_frames (t2, unit);
555 break;
556 default:
557 case GST_RTSP_TIME_NOW:
558 case GST_RTSP_TIME_END:
559 res = GST_CLOCK_TIME_NONE;
560 break;
561 }
562 return res;
563 }
564
565 /**
566 * gst_rtsp_range_get_times:
567 * @range: a #GstRTSPTimeRange
568 * @min: (out): result minimum #GstClockTime
569 * @max: (out): result maximum #GstClockTime
570 *
571 * Retrieve the minimum and maximum values from @range converted to
572 * #GstClockTime in @min and @max.
573 *
574 * A value of %GST_CLOCK_TIME_NONE will be used to signal #GST_RTSP_TIME_NOW
575 * and #GST_RTSP_TIME_END for @min and @max respectively.
576 *
577 * UTC times will be converted to nanoseconds since 1900.
578 *
579 * Returns: %TRUE on success.
580 *
581 * Since: 1.2
582 */
583 gboolean
gst_rtsp_range_get_times(const GstRTSPTimeRange * range,GstClockTime * min,GstClockTime * max)584 gst_rtsp_range_get_times (const GstRTSPTimeRange * range,
585 GstClockTime * min, GstClockTime * max)
586 {
587 g_return_val_if_fail (range != NULL, FALSE);
588
589 if (min)
590 *min = get_time (range->unit, &range->min, &range->min2);
591 if (max)
592 *max = get_time (range->unit, &range->max, &range->max2);
593
594 return TRUE;
595 }
596
597 static void
set_time(GstRTSPTime * time,GstRTSPTime2 * time2,GstRTSPRangeUnit unit,GstClockTime clock_time)598 set_time (GstRTSPTime * time, GstRTSPTime2 * time2, GstRTSPRangeUnit unit,
599 GstClockTime clock_time)
600 {
601 memset (time, 0, sizeof (GstRTSPTime));
602 memset (time2, 0, sizeof (GstRTSPTime2));
603
604 if (clock_time == GST_CLOCK_TIME_NONE) {
605 time->type = GST_RTSP_TIME_END;
606 return;
607 }
608
609 switch (unit) {
610 case GST_RTSP_RANGE_SMPTE:
611 case GST_RTSP_RANGE_SMPTE_30_DROP:
612 {
613 time->seconds = (guint64) (clock_time / GST_SECOND);
614 time2->frames = 30003 * (clock_time % GST_SECOND) /
615 (gdouble) (1001 * GST_SECOND);
616 time->type = GST_RTSP_TIME_FRAMES;
617 g_assert (time2->frames < 30);
618 break;
619 }
620 case GST_RTSP_RANGE_SMPTE_25:
621 {
622 time->seconds = (guint64) (clock_time / GST_SECOND);
623 time2->frames = (25 * (clock_time % GST_SECOND)) / (gdouble) GST_SECOND;
624 time->type = GST_RTSP_TIME_FRAMES;
625 g_assert (time2->frames < 25);
626 break;
627 }
628 case GST_RTSP_RANGE_NPT:
629 {
630 time->seconds = (gdouble) clock_time / (gdouble) GST_SECOND;
631 time->type = GST_RTSP_TIME_SECONDS;
632 break;
633 }
634 case GST_RTSP_RANGE_CLOCK:
635 {
636 GDateTime *bt, *datetime;
637 GstClockTime subsecond = clock_time % GST_SECOND;
638
639 bt = g_date_time_new_utc (1900, 1, 1, 0, 0, 0.0);
640 datetime = g_date_time_add_seconds (bt, clock_time / GST_SECOND);
641
642 time2->year = g_date_time_get_year (datetime);
643 time2->month = g_date_time_get_month (datetime);
644 time2->day = g_date_time_get_day_of_month (datetime);
645
646 time->seconds = g_date_time_get_hour (datetime) * 60 * 60;
647 time->seconds += g_date_time_get_minute (datetime) * 60;
648 time->seconds += g_date_time_get_seconds (datetime);
649 time->seconds += (gdouble) subsecond / (gdouble) GST_SECOND;
650 time->type = GST_RTSP_TIME_UTC;
651
652 g_date_time_unref (bt);
653 g_date_time_unref (datetime);
654 break;
655 }
656 }
657
658 if (time->seconds < 0.000000001)
659 time->seconds = 0;
660 if (time2->frames < 0.000000001)
661 time2->frames = 0;
662 }
663
664 /**
665 * gst_rtsp_range_convert_units:
666 * @range: a #GstRTSPTimeRange
667 * @unit: the unit to convert the range into
668 *
669 * Converts the range in-place between different types of units.
670 * Ranges containing the special value #GST_RTSP_TIME_NOW can not be
671 * converted as these are only valid for #GST_RTSP_RANGE_NPT.
672 *
673 * Returns: %TRUE if the range could be converted
674 */
675
676 gboolean
gst_rtsp_range_convert_units(GstRTSPTimeRange * range,GstRTSPRangeUnit unit)677 gst_rtsp_range_convert_units (GstRTSPTimeRange * range, GstRTSPRangeUnit unit)
678 {
679 if (range->unit == unit)
680 return TRUE;
681
682 if (range->min.type == GST_RTSP_TIME_NOW ||
683 range->max.type == GST_RTSP_TIME_NOW)
684 return FALSE;
685
686 set_time (&range->min, &range->min2, unit,
687 get_time (range->unit, &range->min, &range->min2));
688 set_time (&range->max, &range->max2, unit,
689 get_time (range->unit, &range->max, &range->max2));
690
691 range->unit = unit;
692
693 return TRUE;
694 }
695