Assists music production by grouping standalone programs into sessions. Community version of "Non Session Manager".
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  1. /*******************************************************************************/
  2. /* Copyright (C) 2008 Jonathan Moore Liles */
  3. /* */
  4. /* This program is free software; you can redistribute it and/or modify it */
  5. /* under the terms of the GNU General Public License as published by the */
  6. /* Free Software Foundation; either version 2 of the License, or (at your */
  7. /* option) any later version. */
  8. /* */
  9. /* This program is distributed in the hope that it will be useful, but WITHOUT */
  10. /* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or */
  11. /* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for */
  12. /* more details. */
  13. /* */
  14. /* You should have received a copy of the GNU General Public License along */
  15. /* with This program; see the file COPYING. If not,write to the Free Software */
  16. /* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
  17. /*******************************************************************************/
  18. #include "Timeline.H"
  19. #include "Tempo_Sequence.H"
  20. #include "Time_Sequence.H"
  21. #include "Audio_Sequence.H"
  22. #include "Control_Sequence.H"
  23. #include <FL/Fl_Scrollbar.H>
  24. #include "Annotation_Sequence.H"
  25. // #include <FL/Fl_Image.H>
  26. // #include <FL/Fl_RGB_Image.H> // needed for alpha blending
  27. #include "Track.H"
  28. bool Timeline::draw_with_measure_lines = true;
  29. Timeline::snap_e Timeline::snap_to = Bars;
  30. bool Timeline::snap_magnetic = true;
  31. bool Timeline::follow_playhead = true;
  32. bool Timeline::center_playhead = true;
  33. const float UPDATE_FREQ = 0.02f;
  34. #include "Playback_DS.H"
  35. #include "Record_DS.H"
  36. #include "Transport.H"
  37. /** return the combined height of all visible children of (veritcal)
  38. pack, /p/. This is necessary because pack sizes are adjusted only
  39. when the relevant areas are exposes. */
  40. static int
  41. pack_visible_height ( const Fl_Pack *p )
  42. {
  43. int th = 0;
  44. const Fl_Widget* const *w = p->array();
  45. for ( int i = p->children(); i--; ++w )
  46. if ( (*w)->visible() )
  47. th += (*w)->h() + p->spacing();
  48. return th;
  49. }
  50. /** recalculate the size of vertical scrolling area and inform scrollbar */
  51. void
  52. Timeline::adjust_vscroll ( void )
  53. {
  54. vscroll->value( _yposition, h() - rulers->h() - hscroll->h(), 0, pack_visible_height( tracks ) );
  55. }
  56. void
  57. Timeline::cb_scroll ( Fl_Widget *w, void *v )
  58. {
  59. ((Timeline*)v)->cb_scroll( w );
  60. }
  61. void
  62. Timeline::cb_scroll ( Fl_Widget *w )
  63. {
  64. if ( w == vscroll )
  65. {
  66. tracks->position( tracks->x(), (rulers->y() + rulers->h()) - vscroll->value() );
  67. yposition( vscroll->value() );
  68. adjust_vscroll();
  69. }
  70. else
  71. {
  72. if ( hscroll->zoom_changed() )
  73. {
  74. nframes_t under_mouse = x_to_offset( Fl::event_x() );
  75. _fpp = hscroll->zoom();
  76. const int tw = tracks->w() - Track::width();
  77. // hscroll->value( ts_to_x( xoffset ), tw, 0, ts_to_x( _length ) );
  78. hscroll->value( max( 0, ts_to_x( under_mouse ) - ( Fl::event_x() - tracks->x() - Track::width() ) ),
  79. tw, 0, ts_to_x( _length ) );
  80. redraw();
  81. }
  82. xposition( hscroll->value() );
  83. }
  84. }
  85. Timeline::Timeline ( int X, int Y, int W, int H, const char* L ) : Fl_Overlay_Window( X, Y, W, H, L )
  86. {
  87. box( FL_FLAT_BOX );
  88. xoffset = 0;
  89. _yposition = 0;
  90. _old_yposition = 0;
  91. _old_xposition = 0;
  92. X = Y = 0;
  93. p1 = p2 = 0;
  94. {
  95. Scalebar *o = new Scalebar( X, Y + H - 18, W - 18, 18 );
  96. o->range( 0, 48000 * 300 );
  97. // o->zoom_range( 1, 16384 );
  98. // o->zoom_range( 1, 65536 << 4 );
  99. o->zoom_range( 1, 20 );
  100. o->zoom( 8 );
  101. o->type( FL_HORIZONTAL );
  102. o->callback( cb_scroll, this );
  103. hscroll = o;
  104. }
  105. {
  106. Fl_Scrollbar *o = new Fl_Scrollbar( X + W - 18, Y, 18, H - 18 );
  107. o->type( FL_VERTICAL );
  108. o->callback( cb_scroll, this );
  109. vscroll = o;
  110. }
  111. {
  112. Fl_Pack *o = new Fl_Pack( X + Track::width(), Y, (W - Track::width()) - vscroll->w(), H - hscroll->h(), "rulers" );
  113. o->type( Fl_Pack::VERTICAL );
  114. {
  115. Tempo_Sequence *o = new Tempo_Sequence( 0, 0, 800, 24 );
  116. o->color( fl_gray_ramp( 18 ) );
  117. o->label( "Tempo" );
  118. o->align( FL_ALIGN_LEFT );
  119. tempo_track = o;
  120. }
  121. {
  122. Time_Sequence *o = new Time_Sequence( 0, 24, 800, 24 );
  123. o->color( fl_gray_ramp( 16 ) );
  124. o->label( "Time" );
  125. o->align( FL_ALIGN_LEFT );
  126. time_track = o;
  127. }
  128. /* { */
  129. /* Annotation_Sequence *o = new Annotation_Sequence( 0, 24, 800, 24 ); */
  130. /* o->color( fl_gray_ramp( 'F' ) ); */
  131. /* o->label( "Ruler" ); */
  132. /* o->align( FL_ALIGN_LEFT ); */
  133. /* ruler_track = o; */
  134. /* } */
  135. o->size( o->w(), o->child( 0 )->h() * o->children() );
  136. rulers = o;
  137. o->end();
  138. }
  139. {
  140. // sample_rate() = engine->sample_rate();
  141. _fpp = 8;
  142. // _length = sample_rate() * 60 * 2;
  143. /* FIXME: hack */
  144. _length = -1;
  145. {
  146. Fl_Pack *o = new Fl_Pack( X, rulers->y() + rulers->h(), W - vscroll->w(), 1 );
  147. o->type( Fl_Pack::VERTICAL );
  148. o->spacing( 1 );
  149. tracks = o;
  150. o->end();
  151. resizable( o );
  152. }
  153. }
  154. /* rulers go above tracks... */
  155. add( rulers );
  156. /* make sure scrollbars are on top */
  157. add( vscroll );
  158. add( hscroll );
  159. vscroll->range( 0, tracks->h() );
  160. redraw();
  161. end();
  162. Fl::add_timeout( UPDATE_FREQ, update_cb, this );
  163. }
  164. float
  165. Timeline::beats_per_minute ( nframes_t when ) const
  166. {
  167. /* return tempo_track->beats_per_minute( when ); */
  168. }
  169. int
  170. Timeline::beats_per_bar ( nframes_t when ) const
  171. {
  172. time_sig t = time_track->time( when );
  173. return t.beats_per_bar;
  174. }
  175. void
  176. Timeline::beats_per_minute ( nframes_t when, float bpm )
  177. {
  178. tempo_track->add( new Tempo_Point( when, bpm ) );
  179. }
  180. void
  181. Timeline::time ( nframes_t when, int bpb, int note_type )
  182. {
  183. time_track->add( new Time_Point( when, bpb, note_type ) );
  184. }
  185. /* struct BBT */
  186. /* { */
  187. /* int bar, beat, tick; */
  188. /* BBT ( int bar, int beat, int tick ) : bar( bar ), beat( beat ), tick( tick ) */
  189. /* { */
  190. /* } */
  191. /* }; */
  192. /* /\** returns the BBT value for timestamp /when/ by examining the tempo/time maps *\/ */
  193. /* BBT */
  194. /* Timeline::bbt ( nframes_t when ) */
  195. /* { */
  196. /* Tempo_Sequence *tempo = (Tempo_Sequence*)rulers->child( 0 ); */
  197. /* BBT bbt; */
  198. /* for ( list <Sequence_Widget *>::const_iterator i = tempo.widgets.begin(); */
  199. /* i != tempo.widgets.end(); ++i ) */
  200. /* { */
  201. /* Tempo_Point *p = *i; */
  202. /* } */
  203. /* } */
  204. /************/
  205. /* Snapping */
  206. /************/
  207. struct nearest_line_arg
  208. {
  209. nframes_t original;
  210. nframes_t closest;
  211. };
  212. const int snap_pixel = 10;
  213. static nframes_t
  214. abs_diff ( nframes_t n1, nframes_t n2 )
  215. {
  216. return n1 > n2 ? n1 - n2 : n2 - n1;
  217. }
  218. void
  219. nearest_line_cb ( nframes_t frame, const BBT &bbt, void *arg )
  220. {
  221. nearest_line_arg *n = (nearest_line_arg *)arg;
  222. if ( Timeline::snap_to == Timeline::Bars && bbt.beat )
  223. return;
  224. if ( Timeline::snap_magnetic &&
  225. abs_diff( frame, n->original ) > timeline->x_to_ts( snap_pixel ) )
  226. return;
  227. if ( abs_diff( frame, n->original ) < abs_diff( n->original, n->closest ) )
  228. n->closest = frame;
  229. }
  230. /** Set the value pointed to by /frame/ to the frame number of the of
  231. the nearest measure line to /when/. Returns true if the new value of
  232. *frame is valid, false otherwise. */
  233. bool
  234. Timeline::nearest_line ( nframes_t when, nframes_t *frame ) const
  235. {
  236. if ( snap_to == None )
  237. return false;
  238. nearest_line_arg n = { when, -1 };
  239. render_tempomap( when - x_to_ts( w() >> 1 ), x_to_ts( w() ), nearest_line_cb, &n );
  240. *frame = n.closest;
  241. return *frame != (nframes_t)-1;
  242. }
  243. nframes_t
  244. Timeline::x_to_offset ( int x ) const
  245. {
  246. return x_to_ts( max( 0, x - Track::width() ) ) + xoffset;
  247. }
  248. /** draws a single measure line */
  249. static void
  250. draw_measure_cb ( nframes_t frame, const BBT &bbt, void *arg )
  251. {
  252. Fl_Color *color = (Fl_Color*)arg;
  253. fl_color( FL_BLACK );
  254. fl_line_style( FL_DASH, 0 );
  255. if ( bbt.beat )
  256. ++color;
  257. fl_color( *color );
  258. const int x = timeline->ts_to_x( frame - timeline->xoffset ) + Track::width();
  259. fl_line( x, 0, x, 5000 );
  260. fl_line_style( FL_SOLID, 0 );
  261. }
  262. /* FIXME: wrong place for this */
  263. const float ticks_per_beat = 1920.0;
  264. void
  265. Timeline::update_tempomap ( void )
  266. {
  267. /* FIXME: we need some type of locking! */
  268. _tempomap.clear();
  269. for ( list <Sequence_Widget *>::const_iterator i = time_track->_widgets.begin();
  270. i != time_track->_widgets.end(); ++i )
  271. _tempomap.push_back( *i );
  272. for ( list <Sequence_Widget *>::const_iterator i = tempo_track->_widgets.begin();
  273. i != tempo_track->_widgets.end(); ++i )
  274. _tempomap.push_back( *i );
  275. /* FIXME: shouldn't we ensure that time points always precede
  276. tempo points at the same position? */
  277. _tempomap.sort( Sequence_Widget::sort_func );
  278. }
  279. position_info
  280. Timeline::solve_tempomap ( nframes_t frame ) const
  281. {
  282. return render_tempomap( frame, 0, 0, 0 );
  283. }
  284. /* THREAD: UI and RT */
  285. /** draw appropriate measure lines inside the given bounding box */
  286. position_info
  287. Timeline::render_tempomap( nframes_t start, nframes_t length, measure_line_callback * cb, void *arg ) const
  288. {
  289. const nframes_t end = start + length;
  290. position_info pos;
  291. memset( &pos, 0, sizeof( pos ) );
  292. BBT &bbt = pos.bbt;
  293. const nframes_t samples_per_minute = sample_rate() * 60;
  294. float bpm = 120.0f;
  295. time_sig sig;
  296. sig.beats_per_bar = 4;
  297. sig.beat_type = 4;
  298. nframes_t f = 0;
  299. nframes_t next = 0;
  300. nframes_t frames_per_beat = samples_per_minute / bpm;
  301. /* FIXME: don't we need to sort so that Time_Points always preceed Tempo_Points? */
  302. for ( list <const Sequence_Widget *>::const_iterator i = _tempomap.begin();
  303. i != _tempomap.end(); ++i )
  304. {
  305. if ( ! strcmp( (*i)->class_name(), "Tempo_Point" ) )
  306. {
  307. const Tempo_Point *p = (Tempo_Point*)(*i);
  308. bpm = p->tempo();
  309. frames_per_beat = samples_per_minute / bpm;
  310. }
  311. else
  312. {
  313. const Time_Point *p = (Time_Point*)(*i);
  314. sig = p->time();
  315. /* Time point resets beat */
  316. bbt.beat = 0;
  317. }
  318. {
  319. list <const Sequence_Widget *>::const_iterator n = i;
  320. ++n;
  321. if ( n == _tempomap.end() )
  322. next = end;
  323. else
  324. // next = min( (*n)->start(), end );
  325. /* points may not always be aligned with beat boundaries, so we must align here */
  326. next = (*n)->start() - ( ( (*n)->start() - (*i)->start() ) % frames_per_beat );
  327. }
  328. for ( ; f < next; ++bbt.beat, f += frames_per_beat )
  329. {
  330. if ( bbt.beat == sig.beats_per_bar )
  331. {
  332. bbt.beat = 0;
  333. ++bbt.bar;
  334. }
  335. if ( f >= start )
  336. {
  337. /* in the zone */
  338. if ( cb )
  339. cb( f, bbt, arg );
  340. }
  341. if ( f + frames_per_beat >= end )
  342. goto done;
  343. }
  344. }
  345. done:
  346. if ( ! f )
  347. /* no points? */
  348. return pos;
  349. pos.frame = f;
  350. pos.tempo = bpm;
  351. pos.beats_per_bar = sig.beats_per_bar;
  352. pos.beat_type = sig.beat_type;
  353. assert( f <= end );
  354. assert( end - f <= frames_per_beat );
  355. /* FIXME: this this right? */
  356. const nframes_t frames_per_tick = frames_per_beat / ticks_per_beat;
  357. bbt.tick = ( end - f ) / frames_per_tick;
  358. return pos;
  359. }
  360. void
  361. Timeline::draw_measure_lines ( int X, int Y, int W, int H, Fl_Color color )
  362. {
  363. if ( ! draw_with_measure_lines )
  364. return;
  365. Fl_Color colors[] = { fl_color_average( FL_RED, color, 0.65f ),
  366. fl_color_average( FL_BLACK, color, 0.65f ) };
  367. const nframes_t start = x_to_offset( X );
  368. const nframes_t length = x_to_ts( W );
  369. fl_push_clip( X, Y, W, H );
  370. render_tempomap( start, length, draw_measure_cb, &colors );
  371. fl_pop_clip();
  372. }
  373. /** just like draw mesure lines except that it also draws the BBT values. */
  374. void
  375. Timeline::draw_measure_BBT ( int X, int Y, int W, int H, Fl_Color color )
  376. {
  377. // render_tempomap( X, Y, W, H, color, true );
  378. }
  379. void
  380. Timeline::xposition ( int X )
  381. {
  382. // _old_xposition = xoffset;
  383. /* FIXME: shouldn't have to do this... */
  384. X = min( X, ts_to_x( _length ) - tracks->w() - Track::width() );
  385. xoffset = x_to_ts( X );
  386. damage( FL_DAMAGE_SCROLL );
  387. }
  388. void
  389. Timeline::yposition ( int Y )
  390. {
  391. // _old_yposition = _yposition;
  392. _yposition = Y;
  393. damage( FL_DAMAGE_SCROLL );
  394. }
  395. void
  396. Timeline::draw_clip ( void * v, int X, int Y, int W, int H )
  397. {
  398. Timeline *tl = (Timeline *)v;
  399. fl_push_clip( X, Y, W, H );
  400. /* fl_color( rand() ); */
  401. /* fl_rectf( X, Y, X + W, Y + H ); */
  402. tl->draw_box();
  403. tl->draw_child( *tl->rulers );
  404. fl_push_clip( tl->tracks->x(), tl->rulers->y() + tl->rulers->h(), tl->tracks->w(), tl->h() - tl->rulers->h() - tl->hscroll->h() );
  405. tl->draw_child( *tl->tracks );
  406. fl_pop_clip();
  407. fl_pop_clip();
  408. }
  409. // static unsigned char *rect_image;
  410. void
  411. Timeline::resize ( int X, int Y, int W, int H )
  412. {
  413. Fl_Overlay_Window::resize( X, Y, W, H );
  414. /* why is this necessary? */
  415. rulers->resize( Track::width(), 0, W - Track::width() - vscroll->w(), rulers->h() );
  416. /* why is THIS necessary? */
  417. hscroll->resize( 0, H - 18, hscroll->w(), 18 );
  418. vscroll->size( vscroll->w(), H - 18 );
  419. }
  420. void
  421. Timeline::draw ( void )
  422. {
  423. int X, Y, W, H;
  424. int bdx = 0;
  425. int bdw = 0;
  426. X = tracks->x() + bdx + 1;
  427. Y = tracks->y();
  428. W = tracks->w() - bdw - 1;
  429. H = tracks->h();
  430. adjust_vscroll();
  431. /* if ( damage() & FL_DAMAGE_USER1 ) */
  432. /* { */
  433. /* /\* save the rectangle so we can draw it (darkened) in the overlay *\/ */
  434. /* Rectangle &r = _selection; */
  435. /* make_current(); */
  436. /* rect_image = fl_read_image( NULL, r.x, r.y, r.w, r.h, 0 ); */
  437. /* return; */
  438. /* } */
  439. if ( ( damage() & FL_DAMAGE_ALL ) || ( damage() & FL_DAMAGE_EXPOSE ) )
  440. {
  441. DMESSAGE( "complete redraw" );
  442. draw_box( box(), 0, 0, w(), h(), color() );
  443. fl_push_clip( 0, rulers->y(), w(), rulers->h() );
  444. draw_child( *rulers );
  445. fl_pop_clip();
  446. fl_push_clip( tracks->x(), rulers->y() + rulers->h(), tracks->w(), hscroll->y() - (rulers->y() + rulers->h()) );
  447. draw_child( *tracks );
  448. fl_pop_clip();
  449. draw_child( *hscroll );
  450. draw_child( *vscroll );
  451. redraw_overlay();
  452. /* Rectangle &r = _selection; */
  453. /* unsigned char *data = fl_read_image( NULL, r.x, r.y, r.w, r.h, 0 ); */
  454. /* Fl_RGB_Image bi( data, r.w, r.h, 3 ); */
  455. /* bi.color_average( FL_BLACK, 0.50f ); */
  456. /* bi.draw( r.x, r.y ); */
  457. /* delete[] data; */
  458. /* if ( r.w && r.h ) */
  459. /* { */
  460. /* const unsigned char data[] = { 0, 127, 0, 96, */
  461. /* 0, 96, 0, 127 }; */
  462. /* Fl_RGB_Image bi( data, 2, 2, 2 ); */
  463. /* Fl_Image *bi2 = bi.copy( r.w, r.h ); */
  464. /* bi2->draw( r.x, r.y ); */
  465. /* delete bi2; */
  466. /* } */
  467. goto done;
  468. }
  469. if ( damage() & FL_DAMAGE_SCROLL )
  470. {
  471. int dx = ts_to_x( _old_xposition ) - ts_to_x( xoffset );
  472. int dy = _old_yposition - _yposition;
  473. /* draw_child( *rulers ); */
  474. if ( ! dy )
  475. fl_scroll( rulers->x(), rulers->y(), rulers->w(), rulers->h(), dx, 0, draw_clip, this );
  476. Y = rulers->y() + rulers->h();
  477. H = h() - rulers->h() - hscroll->h();
  478. if ( dy == 0 )
  479. fl_scroll( X + Track::width(), Y, W - Track::width(), H, dx, dy, draw_clip, this );
  480. else
  481. fl_scroll( X, Y, W, H, dx, dy, draw_clip, this );
  482. }
  483. if ( damage() & FL_DAMAGE_CHILD )
  484. {
  485. fl_push_clip( rulers->x(), rulers->y(), rulers->w(), rulers->h() );
  486. update_child( *rulers );
  487. fl_pop_clip();
  488. fl_push_clip( tracks->x(), rulers->y() + rulers->h(), tracks->w(), h() - rulers->h() - hscroll->h() );
  489. update_child( *tracks );
  490. fl_pop_clip();
  491. update_child( *hscroll );
  492. update_child( *vscroll );
  493. }
  494. done:
  495. _old_xposition = xoffset;
  496. _old_yposition = _yposition;
  497. }
  498. void
  499. Timeline::draw_cursor ( nframes_t frame, Fl_Color color )
  500. {
  501. // int x = ( ts_to_x( frame ) - ts_to_x( xoffset ) ) + tracks->x() + Track::width();
  502. if ( frame < xoffset )
  503. return;
  504. const int x = ts_to_x( frame - xoffset ) + tracks->x() + Track::width();
  505. if ( x > tracks->x() + tracks->w() )
  506. return;
  507. fl_color( color );
  508. const int y = rulers->y() + rulers->h();
  509. const int h = this->h() - hscroll->h();
  510. fl_push_clip( Track::width(), y, tracks->w(), h );
  511. fl_line( x, y, x, h );
  512. fl_color( fl_darker( color ) );
  513. fl_line( x - 1, y, x - 1, h );
  514. fl_color( FL_BLACK );
  515. fl_line( x + 1, y, x + 1, h );
  516. /* draw cap */
  517. fl_color( color );
  518. fl_begin_polygon();
  519. fl_vertex( x - 8, y );
  520. fl_vertex( x, y + 8 );
  521. fl_vertex( x + 8, y );
  522. fl_end_polygon();
  523. /* draw cap outline */
  524. fl_color( FL_BLACK );
  525. fl_begin_line();
  526. fl_vertex( x - 8, y );
  527. fl_vertex( x, y + 8 );
  528. fl_vertex( x + 8, y );
  529. fl_end_line();
  530. fl_pop_clip();
  531. }
  532. void
  533. Timeline::draw_playhead ( void )
  534. {
  535. if ( p1 != p2 )
  536. {
  537. draw_cursor( p1, FL_BLUE );
  538. draw_cursor( p2, FL_GREEN );
  539. }
  540. draw_cursor( transport->frame, FL_RED );
  541. }
  542. void
  543. Timeline::redraw_playhead ( void )
  544. {
  545. static nframes_t last_playhead = -1;
  546. if ( last_playhead != transport->frame )
  547. {
  548. redraw_overlay();
  549. last_playhead = transport->frame;
  550. if ( follow_playhead )
  551. {
  552. if ( center_playhead && active() )
  553. xposition( max( 0, ts_to_x( transport->frame ) - ( ( tracks->w() - Track::width() ) >> 1 ) ) );
  554. else if ( ts_to_x( transport->frame ) > ts_to_x( xoffset ) + ( tracks->w() - Track::width() ) )
  555. xposition( ts_to_x( transport->frame ) );
  556. }
  557. }
  558. }
  559. /** called so many times a second to redraw the playhead etc. */
  560. void
  561. Timeline::update_cb ( void *arg )
  562. {
  563. Fl::repeat_timeout( UPDATE_FREQ, update_cb, arg );
  564. Timeline *tl = (Timeline *)arg;
  565. tl->redraw_playhead();
  566. }
  567. void
  568. Timeline::draw_overlay ( void )
  569. {
  570. draw_playhead();
  571. if ( ! ( _selection.w && _selection.h ) )
  572. return;
  573. fl_push_clip( tracks->x() + Track::width(), rulers->y() + rulers->h(), tracks->w() - Track::width(), h() - rulers->h() - hscroll->h() );
  574. const Rectangle &r = _selection;
  575. fl_color( FL_BLACK );
  576. fl_line_style( FL_SOLID, 2 );
  577. fl_rect( r.x + 2, r.y + 2, r.w, r.h );
  578. fl_color( FL_MAGENTA );
  579. fl_line_style( FL_DASH, 2 );
  580. fl_rect( r.x, r.y, r.w, r.h );
  581. fl_line( r.x, r.y, r.x + r.w, r.y + r.h );
  582. fl_line( r.x + r.w, r.y, r.x, r.y + r.h );
  583. /* fl_overlay_rect( r.x, r.y, r.w, r.h ); */
  584. fl_line_style( FL_SOLID, 0 );
  585. /* const unsigned char data[] = { 127, 127, 127, 96, */
  586. /* 127, 96, 127, 40 }; */
  587. /* Fl_RGB_Image bi( data, 2, 2, 2 ); */
  588. /* Fl_Image *bi2 = bi.copy( r.w, r.h ); */
  589. /* bi2->draw( r.x, r.y ); */
  590. /* delete bi2; */
  591. /* unsigned char *data = fl_read_image( NULL, r.x, r.y, r.w, r.h, 0 ); */
  592. /* Fl_RGB_Image bi( rect_image, r.w, r.h, 3 ); */
  593. /* bi.color_average( FL_BLACK, 0.50f ); */
  594. /* bi.draw( r.x, r.y ); */
  595. /* delete[] rect_image; */
  596. /* rect_image = NULL; */
  597. fl_pop_clip();
  598. }
  599. // #include "Sequence_Widget.H"
  600. /** select all widgets in inside rectangle /r/ */
  601. void
  602. Timeline::select ( const Rectangle &r )
  603. {
  604. const int Y = r.y;
  605. for ( int i = tracks->children(); i-- ; )
  606. {
  607. Track *t = (Track*)tracks->child( i );
  608. if ( ! ( t->y() > Y + r.h || t->y() + t->h() < Y ) )
  609. t->select( r.x, r.y, r.w, r.h, true, true );
  610. }
  611. }
  612. void
  613. Timeline::delete_selected ( void )
  614. {
  615. Sequence_Widget::delete_selected();
  616. }
  617. void
  618. Timeline::select_none ( void )
  619. {
  620. Sequence_Widget::select_none();
  621. }
  622. /** An unfortunate necessity for implementing our own DND aside from
  623. * the (bogus) native FLTK system */
  624. Track *
  625. Timeline::track_under ( int Y )
  626. {
  627. for ( int i = tracks->children(); i-- ; )
  628. {
  629. Track *t = (Track*)tracks->child( i );
  630. if ( ! ( t->y() > Y || t->y() + t->h() < Y ) )
  631. return t;
  632. }
  633. return NULL;
  634. }
  635. int
  636. Timeline::handle ( int m )
  637. {
  638. static Drag *drag = NULL;
  639. switch ( m )
  640. {
  641. case FL_FOCUS:
  642. case FL_UNFOCUS:
  643. // redraw();
  644. return 1;
  645. case FL_KEYBOARD:
  646. case FL_SHORTCUT:
  647. {
  648. if ( Fl::event_state() & ( FL_ALT | FL_CTRL | FL_SHIFT ) )
  649. /* we don't want any keys with modifiers... */
  650. return 0;
  651. switch ( Fl::event_key() )
  652. {
  653. case FL_Delete:
  654. case FL_Home:
  655. case FL_End:
  656. /* keep scrollbar from eating these. */
  657. return 0;
  658. case 'p':
  659. {
  660. int X = Fl::event_x() - Track::width();
  661. if ( X > 0 )
  662. {
  663. transport->locate( xoffset + x_to_ts( X ) );
  664. }
  665. return 1;
  666. }
  667. case '[':
  668. {
  669. int X = Fl::event_x() - Track::width();
  670. if ( X > 0 )
  671. {
  672. p1 = xoffset + x_to_ts( X );
  673. }
  674. return 1;
  675. }
  676. case ']':
  677. {
  678. int X = Fl::event_x() - Track::width();
  679. if ( X > 0 )
  680. {
  681. p2 = xoffset + x_to_ts( X );
  682. }
  683. return 1;
  684. }
  685. default:
  686. return Fl_Overlay_Window::handle( m );
  687. }
  688. return 0;
  689. }
  690. default:
  691. {
  692. if ( m == FL_PUSH )
  693. Fl::focus( this );
  694. int r = Fl_Overlay_Window::handle( m );
  695. if ( m != FL_RELEASE && r )
  696. return r;
  697. const int X = Fl::event_x();
  698. const int Y = Fl::event_y();
  699. switch ( m )
  700. {
  701. case FL_PUSH:
  702. {
  703. // take_focus();
  704. if ( Fl::event_state() & ( FL_ALT | FL_CTRL | FL_SHIFT ) )
  705. return 0;
  706. if ( Fl::event_button1() )
  707. {
  708. assert( ! drag );
  709. drag = new Drag( X - x(), Y - y() );
  710. _selection.x = drag->x;
  711. _selection.y = drag->y;
  712. }
  713. else if ( Fl::test_shortcut( FL_BUTTON3 ) && ! Fl::event_shift() )
  714. {
  715. Fl_Menu_Item menu[] =
  716. {
  717. { "Add Track", 0, 0, 0, FL_SUBMENU },
  718. { "Audio", 0, 0, 0 },
  719. { 0 },
  720. { 0 },
  721. };
  722. const Fl_Menu_Item *r = menu->popup( X, Y, "Timeline" );
  723. if ( r == &menu[1] )
  724. {
  725. /* FIXME: prompt for I/O config? */
  726. Loggable::block_start();
  727. /* add audio track */
  728. char *name = get_unique_track_name( "Audio" );
  729. Track *t = new Track( name );
  730. Audio_Sequence *o = new Audio_Sequence( t );
  731. // new Control_Sequence( t );
  732. add_track( t );
  733. t->sequence( o );
  734. Loggable::block_end();
  735. }
  736. }
  737. else
  738. return 0;
  739. break;
  740. }
  741. case FL_DRAG:
  742. {
  743. int ox = X - drag->x;
  744. int oy = Y - drag->y;
  745. if ( ox < 0 )
  746. _selection.x = X;
  747. if ( oy < 0 )
  748. _selection.y = Y;
  749. _selection.w = abs( ox );
  750. _selection.h = abs( oy );
  751. break;
  752. }
  753. case FL_RELEASE:
  754. {
  755. delete drag;
  756. drag = NULL;
  757. select( _selection );
  758. _selection.w = _selection.h = 0;
  759. break;
  760. }
  761. default:
  762. return 0;
  763. break;
  764. }
  765. redraw_overlay();
  766. return 1;
  767. }
  768. }
  769. }
  770. void
  771. Timeline::zoom_in ( void )
  772. {
  773. hscroll->zoom_in();
  774. }
  775. void
  776. Timeline::zoom_out ( void )
  777. {
  778. hscroll->zoom_out();
  779. }
  780. /** zoom the display to show /secs/ seconds per screen */
  781. void
  782. Timeline::zoom ( float secs )
  783. {
  784. const int sw = tracks->w() - Track::width();
  785. int fpp = (int)((secs * sample_rate()) / sw);
  786. int p = 0;
  787. while ( 1 << p < fpp ) p++;
  788. hscroll->zoom( p );
  789. redraw();
  790. }
  791. void
  792. Timeline::zoom_fit ( void )
  793. {
  794. zoom( _length / (float)sample_rate() );
  795. }
  796. Track *
  797. Timeline::track_by_name ( const char *name )
  798. {
  799. for ( int i = tracks->children(); i-- ; )
  800. {
  801. Track *t = (Track*)tracks->child( i );
  802. if ( ! strcmp( name, t->name() ) )
  803. return t;
  804. }
  805. return NULL;
  806. }
  807. char *
  808. Timeline::get_unique_track_name ( const char *name )
  809. {
  810. char pat[256];
  811. strcpy( pat, name );
  812. for ( int i = 1; track_by_name( pat ); ++i )
  813. snprintf( pat, sizeof( pat ), "%s.%d", name, i );
  814. return strdup( pat );
  815. }
  816. void
  817. Timeline::add_track ( Track *track )
  818. {
  819. DMESSAGE( "added new track to the timeline" );
  820. /* FIXME: do locking */
  821. tracks->add( track );
  822. /* FIXME: why is this necessary? doesn't the above add do DAMAGE_CHILD? */
  823. redraw();
  824. }
  825. void
  826. Timeline::remove_track ( Track *track )
  827. {
  828. DMESSAGE( "removed track from the timeline" );
  829. /* FIXME: do locking */
  830. /* FIXME: what to do about track contents? */
  831. tracks->remove( track );
  832. /* FIXME: why is this necessary? doesn't the above add do DAMAGE_CHILD? */
  833. redraw();
  834. }
  835. /** Initiate recording for all armed tracks */
  836. bool
  837. Timeline::record ( void )
  838. {
  839. /* FIXME: right place for this? */
  840. transport->recording = true;
  841. Loggable::block_start();
  842. for ( int i = tracks->children(); i-- ; )
  843. {
  844. Track *t = (Track*)tracks->child( i );
  845. if ( t->armed() && t->record_ds )
  846. t->record_ds->start( transport->frame );
  847. }
  848. deactivate();
  849. return true;
  850. }
  851. /** stop recording for all armed tracks */
  852. void
  853. Timeline::stop ( void )
  854. {
  855. for ( int i = tracks->children(); i-- ; )
  856. {
  857. Track *t = (Track*)tracks->child( i );
  858. if ( t->armed() && t->record_ds )
  859. t->record_ds->stop( transport->frame );
  860. }
  861. Loggable::block_end();
  862. activate();
  863. transport->recording = false;
  864. }
  865. /**********/
  866. /* Engine */
  867. /**********/
  868. /** call process() on each track header */
  869. nframes_t
  870. Timeline::process ( nframes_t nframes )
  871. {
  872. for ( int i = tracks->children(); i-- ; )
  873. {
  874. Track *t = (Track*)tracks->child( i );
  875. t->process( nframes );
  876. }
  877. /* FIXME: BOGUS */
  878. return nframes;
  879. }
  880. /* THREAD: RT */
  881. void
  882. Timeline::seek ( nframes_t frame )
  883. {
  884. for ( int i = tracks->children(); i-- ; )
  885. {
  886. Track *t = (Track*)tracks->child( i );
  887. t->seek( frame );
  888. }
  889. }
  890. /* THREAD: RT */
  891. int
  892. Timeline::seek_pending ( void )
  893. {
  894. int r = 0;
  895. for ( int i = tracks->children(); i-- ; )
  896. {
  897. Track *t = (Track*)tracks->child( i );
  898. if ( t->playback_ds )
  899. r += t->playback_ds->buffer_percent() < 50;
  900. }
  901. return r;
  902. }
  903. /* FIXME: shouldn't these belong to the engine? */
  904. int
  905. Timeline::total_input_buffer_percent ( void )
  906. {
  907. int r = 0;
  908. int cnt = 0;
  909. for ( int i = tracks->children(); i-- ; )
  910. {
  911. Track *t = (Track*)tracks->child( i );
  912. if ( t->record_ds )
  913. {
  914. ++cnt;
  915. r += t->record_ds->buffer_percent();
  916. }
  917. }
  918. if ( ! cnt )
  919. return 0;
  920. return r / cnt;
  921. }
  922. int
  923. Timeline::total_output_buffer_percent ( void )
  924. {
  925. int r = 0;
  926. int cnt = 0;
  927. for ( int i = tracks->children(); i-- ; )
  928. {
  929. Track *t = (Track*)tracks->child( i );
  930. if ( t->playback_ds )
  931. {
  932. ++cnt;
  933. r += t->playback_ds->buffer_percent();
  934. }
  935. }
  936. if ( ! cnt )
  937. return 0;
  938. return r / cnt;
  939. }
  940. int
  941. Timeline::total_playback_xruns ( void )
  942. {
  943. int r = 0;
  944. for ( int i = tracks->children(); i-- ; )
  945. {
  946. Track *t = (Track*)tracks->child( i );
  947. if ( t->playback_ds )
  948. r += t->playback_ds->xruns();
  949. }
  950. return r;
  951. }
  952. int
  953. Timeline::total_capture_xruns ( void )
  954. {
  955. int r = 0;
  956. for ( int i = tracks->children(); i-- ; )
  957. {
  958. Track *t = (Track*)tracks->child( i );
  959. if ( t->record_ds )
  960. r += t->record_ds->xruns();
  961. }
  962. return r;
  963. }