Audio plugin host https://kx.studio/carla
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

603 lines
17KB

  1. /*
  2. * Pixmap Keyboard, a custom Qt4 widget
  3. * Copyright (C) 2011-2013 Filipe Coelho <falktx@falktx.com>
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation; either version 2 of
  8. * the License, or any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * For a full copy of the GNU General Public License see the doc/GPL.txt file.
  16. */
  17. #include "pixmapkeyboard.hpp"
  18. #include <QtCore/QTimer>
  19. #include <QtGui/QKeyEvent>
  20. #include <QtGui/QMouseEvent>
  21. #include <QtGui/QPainter>
  22. #ifndef HAVE_CPP11_SUPPORT
  23. static std::map<int, QRectF> kMidiKey2RectMapHorizontal;
  24. #else
  25. static std::map<int, QRectF> kMidiKey2RectMapHorizontal = {
  26. {0, QRectF(0, 0, 18, 64)}, // C
  27. {1, QRectF(13, 0, 11, 42)}, // C#
  28. {2, QRectF(18, 0, 25, 64)}, // D
  29. {3, QRectF(37, 0, 11, 42)}, // D#
  30. {4, QRectF(42, 0, 18, 64)}, // E
  31. {5, QRectF(60, 0, 18, 64)}, // F
  32. {6, QRectF(73, 0, 11, 42)}, // F#
  33. {7, QRectF(78, 0, 25, 64)}, // G
  34. {8, QRectF(97, 0, 11, 42)}, // G#
  35. {9, QRectF(102, 0, 25, 64)}, // A
  36. {10, QRectF(121, 0, 11, 42)}, // A#
  37. {11, QRectF(126, 0, 18, 64)} // B
  38. };
  39. #endif
  40. #ifndef HAVE_CPP11_SUPPORT
  41. static std::map<int, QRectF> kMidiKey2RectMapVertical;
  42. #else
  43. static std::map<int, QRectF> kMidiKey2RectMapVertical = {
  44. {11, QRectF(0, 0, 64, 18)}, // B
  45. {10, QRectF(0, 14, 42, 7)}, // A#
  46. {9, QRectF(0, 18, 64, 24)}, // A
  47. {8, QRectF(0, 38, 42, 7)}, // G#
  48. {7, QRectF(0, 42, 64, 24)}, // G
  49. {6, QRectF(0, 62, 42, 7)}, // F#
  50. {5, QRectF(0, 66, 64, 18)}, // F
  51. {4, QRectF(0, 84, 64, 18)}, // E
  52. {3, QRectF(0, 98, 42, 7)}, // D#
  53. {2, QRectF(0, 102, 64, 24)}, // D
  54. {1, QRectF(0, 122, 42, 7)}, // C#
  55. {0, QRectF(0, 126, 64, 18)} // C
  56. };
  57. #endif
  58. #ifndef HAVE_CPP11_SUPPORT
  59. static std::map<int, int> kMidiKeyboard2KeyMap;
  60. #else
  61. static const std::map<int, int> kMidiKeyboard2KeyMap = {
  62. // 3th octave
  63. {Qt::Key_Z, 48},
  64. {Qt::Key_S, 49},
  65. {Qt::Key_X, 50},
  66. {Qt::Key_D, 51},
  67. {Qt::Key_C, 52},
  68. {Qt::Key_V, 53},
  69. {Qt::Key_G, 54},
  70. {Qt::Key_B, 55},
  71. {Qt::Key_H, 56},
  72. {Qt::Key_N, 57},
  73. {Qt::Key_J, 58},
  74. {Qt::Key_M, 59},
  75. // 4th octave
  76. {Qt::Key_Q, 60},
  77. {Qt::Key_2, 61},
  78. {Qt::Key_W, 62},
  79. {Qt::Key_3, 63},
  80. {Qt::Key_E, 64},
  81. {Qt::Key_R, 65},
  82. {Qt::Key_5, 66},
  83. {Qt::Key_T, 67},
  84. {Qt::Key_6, 68},
  85. {Qt::Key_Y, 69},
  86. {Qt::Key_7, 70},
  87. {Qt::Key_U, 71}
  88. };
  89. #endif
  90. #ifndef HAVE_CPP11_SUPPORT
  91. static QVector<int> kBlackNotes;
  92. #else
  93. static const QVector<int> kBlackNotes = {1, 3, 6, 8, 10};
  94. #endif
  95. #ifndef HAVE_CPP11_SUPPORT
  96. static const struct PixmapKeyboardInit {
  97. PixmapKeyboardInit() {
  98. // kMidiKey2RectMapHorizontal
  99. kMidiKey2RectMapHorizontal[0] = QRectF(0, 0, 18, 64); // C
  100. kMidiKey2RectMapHorizontal[1] = QRectF(13, 0, 11, 42); // C#
  101. kMidiKey2RectMapHorizontal[2] = QRectF(18, 0, 25, 64); // D
  102. kMidiKey2RectMapHorizontal[3] = QRectF(37, 0, 11, 42); // D#
  103. kMidiKey2RectMapHorizontal[4] = QRectF(42, 0, 18, 64); // E
  104. kMidiKey2RectMapHorizontal[5] = QRectF(60, 0, 18, 64); // F
  105. kMidiKey2RectMapHorizontal[6] = QRectF(73, 0, 11, 42); // F#
  106. kMidiKey2RectMapHorizontal[7] = QRectF(78, 0, 25, 64); // G
  107. kMidiKey2RectMapHorizontal[8] = QRectF(97, 0, 11, 42); // G#
  108. kMidiKey2RectMapHorizontal[9] = QRectF(102, 0, 25, 64); // A
  109. kMidiKey2RectMapHorizontal[10] = QRectF(121, 0, 11, 42); // A#
  110. kMidiKey2RectMapHorizontal[11] = QRectF(126, 0, 18, 64); // B
  111. // kMidiKey2RectMapVertical
  112. kMidiKey2RectMapVertical[11] = QRectF(0, 0, 64, 18); // B
  113. kMidiKey2RectMapVertical[10] = QRectF(0, 14, 42, 7); // A#
  114. kMidiKey2RectMapVertical[9] = QRectF(0, 18, 64, 24); // A
  115. kMidiKey2RectMapVertical[8] = QRectF(0, 38, 42, 7); // G#
  116. kMidiKey2RectMapVertical[7] = QRectF(0, 42, 64, 24); // G
  117. kMidiKey2RectMapVertical[6] = QRectF(0, 62, 42, 7); // F#
  118. kMidiKey2RectMapVertical[5] = QRectF(0, 66, 64, 18); // F
  119. kMidiKey2RectMapVertical[4] = QRectF(0, 84, 64, 18); // E
  120. kMidiKey2RectMapVertical[3] = QRectF(0, 98, 42, 7); // D#
  121. kMidiKey2RectMapVertical[2] = QRectF(0, 102, 64, 24); // D
  122. kMidiKey2RectMapVertical[1] = QRectF(0, 122, 42, 7); // C#
  123. kMidiKey2RectMapVertical[0] = QRectF(0, 126, 64, 18); // C
  124. // kMidiKeyboard2KeyMap, 3th octave
  125. kMidiKeyboard2KeyMap[Qt::Key_Z] = 48;
  126. kMidiKeyboard2KeyMap[Qt::Key_S] = 49;
  127. kMidiKeyboard2KeyMap[Qt::Key_X] = 50;
  128. kMidiKeyboard2KeyMap[Qt::Key_D] = 51;
  129. kMidiKeyboard2KeyMap[Qt::Key_C] = 52;
  130. kMidiKeyboard2KeyMap[Qt::Key_V] = 53;
  131. kMidiKeyboard2KeyMap[Qt::Key_G] = 54;
  132. kMidiKeyboard2KeyMap[Qt::Key_B] = 55;
  133. kMidiKeyboard2KeyMap[Qt::Key_H] = 56;
  134. kMidiKeyboard2KeyMap[Qt::Key_N] = 57;
  135. kMidiKeyboard2KeyMap[Qt::Key_J] = 58;
  136. kMidiKeyboard2KeyMap[Qt::Key_M] = 59;
  137. // kMidiKeyboard2KeyMap, 4th octave
  138. kMidiKeyboard2KeyMap[Qt::Key_Q] = 60;
  139. kMidiKeyboard2KeyMap[Qt::Key_2] = 61;
  140. kMidiKeyboard2KeyMap[Qt::Key_W] = 62;
  141. kMidiKeyboard2KeyMap[Qt::Key_3] = 63;
  142. kMidiKeyboard2KeyMap[Qt::Key_E] = 64;
  143. kMidiKeyboard2KeyMap[Qt::Key_R] = 65;
  144. kMidiKeyboard2KeyMap[Qt::Key_5] = 66;
  145. kMidiKeyboard2KeyMap[Qt::Key_T] = 67;
  146. kMidiKeyboard2KeyMap[Qt::Key_6] = 68;
  147. kMidiKeyboard2KeyMap[Qt::Key_Y] = 69;
  148. kMidiKeyboard2KeyMap[Qt::Key_7] = 70;
  149. kMidiKeyboard2KeyMap[Qt::Key_U] = 71;
  150. // kBlackNotes
  151. kBlackNotes << 1;
  152. kBlackNotes << 3;
  153. kBlackNotes << 6;
  154. kBlackNotes << 8;
  155. kBlackNotes << 10;
  156. }
  157. } _pixmapKeyboardInitInit;
  158. #endif
  159. PixmapKeyboard::PixmapKeyboard(QWidget* parent)
  160. : QWidget(parent),
  161. fPixmap(""),
  162. fPixmapMode(HORIZONTAL),
  163. fColorStr("orange"),
  164. fFont("Monospace", 7, QFont::Normal),
  165. fOctaves(6),
  166. fLastMouseNote(-1),
  167. fWidth(0),
  168. fHeight(0),
  169. fMidiMap(kMidiKey2RectMapHorizontal)
  170. {
  171. setCursor(Qt::PointingHandCursor);
  172. setMode(HORIZONTAL);
  173. }
  174. void PixmapKeyboard::allNotesOff()
  175. {
  176. fEnabledKeys.clear();
  177. emit notesOff();
  178. update();
  179. }
  180. void PixmapKeyboard::sendNoteOn(int note, bool sendSignal)
  181. {
  182. if (0 <= note && note <= 127 && ! fEnabledKeys.contains(note))
  183. {
  184. fEnabledKeys.append(note);
  185. if (sendSignal)
  186. emit noteOn(note);
  187. update();
  188. }
  189. if (fEnabledKeys.count() == 1)
  190. emit notesOn();
  191. }
  192. void PixmapKeyboard::sendNoteOff(int note, bool sendSignal)
  193. {
  194. if (note >= 0 && note <= 127 && fEnabledKeys.contains(note))
  195. {
  196. fEnabledKeys.removeOne(note);
  197. if (sendSignal)
  198. emit noteOff(note);
  199. update();
  200. }
  201. if (fEnabledKeys.count() == 0)
  202. emit notesOff();
  203. }
  204. void PixmapKeyboard::setMode(Orientation mode, Color color)
  205. {
  206. if (color == COLOR_CLASSIC)
  207. {
  208. fColorStr = "classic";
  209. }
  210. else if (color == COLOR_ORANGE)
  211. {
  212. fColorStr = "orange";
  213. }
  214. else
  215. {
  216. qCritical("PixmapKeyboard::setMode(%i, %i) - invalid color", mode, color);
  217. return setMode(mode);
  218. }
  219. if (mode == HORIZONTAL)
  220. {
  221. fMidiMap = kMidiKey2RectMapHorizontal;
  222. fPixmap.load(QString(":/bitmaps/kbd_h_%1.png").arg(fColorStr));
  223. fPixmapMode = HORIZONTAL;
  224. fWidth = fPixmap.width();
  225. fHeight = fPixmap.height() / 2;
  226. }
  227. else if (mode == VERTICAL)
  228. {
  229. fMidiMap = kMidiKey2RectMapVertical;
  230. fPixmap.load(QString(":/bitmaps/kbd_v_%1.png").arg(fColorStr));
  231. fPixmapMode = VERTICAL;
  232. fWidth = fPixmap.width() / 2;
  233. fHeight = fPixmap.height();
  234. }
  235. else
  236. {
  237. qCritical("PixmapKeyboard::setMode(%i, %i) - invalid mode", mode, color);
  238. return setMode(HORIZONTAL);
  239. }
  240. setOctaves(fOctaves);
  241. }
  242. void PixmapKeyboard::setOctaves(int octaves)
  243. {
  244. Q_ASSERT(octaves >= 1 && octaves <= 10);
  245. if (octaves < 1)
  246. octaves = 1;
  247. else if (octaves > 10)
  248. octaves = 10;
  249. fOctaves = octaves;
  250. if (fPixmapMode == HORIZONTAL)
  251. {
  252. setMinimumSize(fWidth * fOctaves, fHeight);
  253. setMaximumSize(fWidth * fOctaves, fHeight);
  254. }
  255. else if (fPixmapMode == VERTICAL)
  256. {
  257. setMinimumSize(fWidth, fHeight * fOctaves);
  258. setMaximumSize(fWidth, fHeight * fOctaves);
  259. }
  260. update();
  261. }
  262. void PixmapKeyboard::handleMousePos(const QPoint& pos)
  263. {
  264. int note, octave;
  265. QPointF keyPos;
  266. if (fPixmapMode == HORIZONTAL)
  267. {
  268. if (pos.x() < 0 or pos.x() > fOctaves * 144)
  269. return;
  270. int posX = pos.x() - 1;
  271. octave = posX / fWidth;
  272. keyPos = QPointF(posX % fWidth, pos.y());
  273. }
  274. else if (fPixmapMode == VERTICAL)
  275. {
  276. if (pos.y() < 0 or pos.y() > fOctaves * 144)
  277. return;
  278. int posY = pos.y() - 1;
  279. octave = fOctaves - posY / fHeight;
  280. keyPos = QPointF(pos.x(), posY % fHeight);
  281. }
  282. else
  283. return;
  284. if (fMidiMap[1].contains(keyPos)) // C#
  285. note = 1;
  286. else if (fMidiMap[3].contains(keyPos)) // D#
  287. note = 3;
  288. else if (fMidiMap[6].contains(keyPos)) // F#
  289. note = 6;
  290. else if (fMidiMap[8].contains(keyPos)) // G#
  291. note = 8;
  292. else if (fMidiMap[10].contains(keyPos))// A#
  293. note = 10;
  294. else if (fMidiMap[0].contains(keyPos)) // C
  295. note = 0;
  296. else if (fMidiMap[2].contains(keyPos)) // D
  297. note = 2;
  298. else if (fMidiMap[4].contains(keyPos)) // E
  299. note = 4;
  300. else if (fMidiMap[5].contains(keyPos)) // F
  301. note = 5;
  302. else if (fMidiMap[7].contains(keyPos)) // G
  303. note = 7;
  304. else if (fMidiMap[9].contains(keyPos)) // A
  305. note = 9;
  306. else if (fMidiMap[11].contains(keyPos))// B
  307. note = 11;
  308. else
  309. note = -1;
  310. if (note != -1)
  311. {
  312. note += octave * 12;
  313. if (fLastMouseNote != note)
  314. {
  315. sendNoteOff(fLastMouseNote);
  316. sendNoteOn(note);
  317. }
  318. }
  319. else if (fLastMouseNote != -1)
  320. sendNoteOff(fLastMouseNote);
  321. fLastMouseNote = note;
  322. }
  323. void PixmapKeyboard::keyPressEvent(QKeyEvent* event)
  324. {
  325. if (! event->isAutoRepeat())
  326. {
  327. int qKey = event->key();
  328. std::map<int, int>::const_iterator it = kMidiKeyboard2KeyMap.find(qKey);
  329. if (it != kMidiKeyboard2KeyMap.end())
  330. sendNoteOn(it->second);
  331. }
  332. QWidget::keyPressEvent(event);
  333. }
  334. void PixmapKeyboard::keyReleaseEvent(QKeyEvent* event)
  335. {
  336. if (! event->isAutoRepeat())
  337. {
  338. int qKey = event->key();
  339. std::map<int, int>::const_iterator it = kMidiKeyboard2KeyMap.find(qKey);
  340. if (it != kMidiKeyboard2KeyMap.end())
  341. sendNoteOff(it->second);
  342. }
  343. QWidget::keyReleaseEvent(event);
  344. }
  345. void PixmapKeyboard::mousePressEvent(QMouseEvent* event)
  346. {
  347. fLastMouseNote = -1;
  348. handleMousePos(event->pos());
  349. setFocus();
  350. QWidget::mousePressEvent(event);
  351. }
  352. void PixmapKeyboard::mouseMoveEvent(QMouseEvent* event)
  353. {
  354. handleMousePos(event->pos());
  355. QWidget::mouseMoveEvent(event);
  356. }
  357. void PixmapKeyboard::mouseReleaseEvent(QMouseEvent* event)
  358. {
  359. if (fLastMouseNote != -1)
  360. {
  361. sendNoteOff(fLastMouseNote);
  362. fLastMouseNote = -1;
  363. }
  364. QWidget::mouseReleaseEvent(event);
  365. }
  366. void PixmapKeyboard::paintEvent(QPaintEvent* event)
  367. {
  368. QPainter painter(this);
  369. event->accept();
  370. // -------------------------------------------------------------
  371. // Paint clean keys (as background)
  372. for (int octave=0; octave < fOctaves; ++octave)
  373. {
  374. QRectF target;
  375. if (fPixmapMode == HORIZONTAL)
  376. target = QRectF(fWidth * octave, 0, fWidth, fHeight);
  377. else if (fPixmapMode == VERTICAL)
  378. target = QRectF(0, fHeight * octave, fWidth, fHeight);
  379. else
  380. return;
  381. QRectF source = QRectF(0, 0, fWidth, fHeight);
  382. painter.drawPixmap(target, fPixmap, source);
  383. }
  384. // -------------------------------------------------------------
  385. // Paint (white) pressed keys
  386. bool paintedWhite = false;
  387. for (int i=0, count=fEnabledKeys.count(); i < count; ++i)
  388. {
  389. int octave, note = fEnabledKeys[i];
  390. const QRectF& pos(_getRectFromMidiNote(note));
  391. if (_isNoteBlack(note))
  392. continue;
  393. if (note < 12)
  394. octave = 0;
  395. else if (note < 24)
  396. octave = 1;
  397. else if (note < 36)
  398. octave = 2;
  399. else if (note < 48)
  400. octave = 3;
  401. else if (note < 60)
  402. octave = 4;
  403. else if (note < 72)
  404. octave = 5;
  405. else if (note < 84)
  406. octave = 6;
  407. else if (note < 96)
  408. octave = 7;
  409. else if (note < 108)
  410. octave = 8;
  411. else if (note < 120)
  412. octave = 9;
  413. else if (note < 132)
  414. octave = 10;
  415. else
  416. // cannot paint this note
  417. continue;
  418. if (fPixmapMode == VERTICAL)
  419. octave = fOctaves - octave - 1;
  420. QRectF target, source;
  421. if (fPixmapMode == HORIZONTAL)
  422. {
  423. target = QRectF(pos.x() + (fWidth * octave), 0, pos.width(), pos.height());
  424. source = QRectF(pos.x(), fHeight, pos.width(), pos.height());
  425. }
  426. else if (fPixmapMode == VERTICAL)
  427. {
  428. target = QRectF(pos.x(), pos.y() + (fHeight * octave), pos.width(), pos.height());
  429. source = QRectF(fWidth, pos.y(), pos.width(), pos.height());
  430. }
  431. else
  432. return;
  433. paintedWhite = true;
  434. painter.drawPixmap(target, fPixmap, source);
  435. }
  436. // -------------------------------------------------------------
  437. // Clear white keys border
  438. if (paintedWhite)
  439. {
  440. for (int octave=0; octave < fOctaves; ++octave)
  441. {
  442. foreach (int note, kBlackNotes)
  443. {
  444. QRectF target, source;
  445. const QRectF& pos(_getRectFromMidiNote(note));
  446. if (fPixmapMode == HORIZONTAL)
  447. {
  448. target = QRectF(pos.x() + (fWidth * octave), 0, pos.width(), pos.height());
  449. source = QRectF(pos.x(), 0, pos.width(), pos.height());
  450. }
  451. else if (fPixmapMode == VERTICAL)
  452. {
  453. target = QRectF(pos.x(), pos.y() + (fHeight * octave), pos.width(), pos.height());
  454. source = QRectF(0, pos.y(), pos.width(), pos.height());
  455. }
  456. else
  457. return;
  458. painter.drawPixmap(target, fPixmap, source);
  459. }
  460. }
  461. }
  462. // -------------------------------------------------------------
  463. // Paint (black) pressed keys
  464. for (int i=0, count=fEnabledKeys.count(); i < count; ++i)
  465. {
  466. int octave, note = fEnabledKeys[i];
  467. const QRectF& pos(_getRectFromMidiNote(note));
  468. if (! _isNoteBlack(note))
  469. continue;
  470. if (note < 12)
  471. octave = 0;
  472. else if (note < 24)
  473. octave = 1;
  474. else if (note < 36)
  475. octave = 2;
  476. else if (note < 48)
  477. octave = 3;
  478. else if (note < 60)
  479. octave = 4;
  480. else if (note < 72)
  481. octave = 5;
  482. else if (note < 84)
  483. octave = 6;
  484. else if (note < 96)
  485. octave = 7;
  486. else if (note < 108)
  487. octave = 8;
  488. else if (note < 120)
  489. octave = 9;
  490. else if (note < 132)
  491. octave = 10;
  492. else
  493. // cannot paint this note
  494. continue;
  495. if (fPixmapMode == VERTICAL)
  496. octave = fOctaves - octave - 1;
  497. QRectF target, source;
  498. if (fPixmapMode == HORIZONTAL)
  499. {
  500. target = QRectF(pos.x() + (fWidth * octave), 0, pos.width(), pos.height());
  501. source = QRectF(pos.x(), fHeight, pos.width(), pos.height());
  502. }
  503. else if (fPixmapMode == VERTICAL)
  504. {
  505. target = QRectF(pos.x(), pos.y() + (fHeight * octave), pos.width(), pos.height());
  506. source = QRectF(fWidth, pos.y(), pos.width(), pos.height());
  507. }
  508. else
  509. return;
  510. painter.drawPixmap(target, fPixmap, source);
  511. }
  512. // Paint C-number note info
  513. painter.setFont(fFont);
  514. painter.setPen(Qt::black);
  515. for (int i=0; i < fOctaves; ++i)
  516. {
  517. if (fPixmapMode == HORIZONTAL)
  518. painter.drawText(i * 144, 48, 18, 18, Qt::AlignCenter, QString("C%1").arg(i-1));
  519. else if (fPixmapMode == VERTICAL)
  520. painter.drawText(45, (fOctaves * 144) - (i * 144) - 16, 18, 18, Qt::AlignCenter, QString("C%1").arg(i-1));
  521. }
  522. }
  523. bool PixmapKeyboard::_isNoteBlack(int note) const
  524. {
  525. const int baseNote = note % 12;
  526. return kBlackNotes.contains(baseNote);
  527. }
  528. const QRectF& PixmapKeyboard::_getRectFromMidiNote(int note) const
  529. {
  530. const int baseNote = note % 12;
  531. return fMidiMap[baseNote];
  532. }