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  1. /*
  2. Copyright (C) 2006-2011 Nasca Octavian Paul
  3. Author: Nasca Octavian Paul
  4. Copyright (C) 2017 Xenakios
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of version 2 of the GNU General Public License
  7. as published by the Free Software Foundation.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License (version 2) for more details.
  12. You should have received a copy of the GNU General Public License (version 2)
  13. along with this program; if not, write to the Free Software Foundation,
  14. Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  15. */
  16. #include "PluginProcessor.h"
  17. #include "PluginEditor.h"
  18. #include <array>
  19. extern String g_plugintitle;
  20. //==============================================================================
  21. PaulstretchpluginAudioProcessorEditor::PaulstretchpluginAudioProcessorEditor(PaulstretchpluginAudioProcessor& p)
  22. : AudioProcessorEditor(&p),
  23. m_wavecomponent(p.m_afm,p.m_thumb.get()),
  24. processor(p), m_perfmeter(&p),
  25. m_wavefilter_tab(TabbedButtonBar::TabsAtTop),
  26. m_free_filter_component(p.getStretchSource()->getMutex())
  27. {
  28. m_wave_container = new Component;
  29. m_free_filter_component.set_envelope(processor.m_free_filter_envelope);
  30. m_free_filter_component.TimeFromNormalized = [this](double x)
  31. {
  32. //return jmap<double>(pow(x, 3.0), 0.0, 1.0, 30.0, processor.getSampleRateChecked()/2.0);
  33. return 30.0*pow(1.05946309436, x*115.0);
  34. };
  35. m_free_filter_component.ValueFromNormalized = [this](double x)
  36. {
  37. return jmap<double>(x, 0.0, 1.0, -48.0, 12.0);
  38. };
  39. m_wavefilter_tab.setTabBarDepth(20);
  40. addAndMakeVisible(&m_perfmeter);
  41. addAndMakeVisible(&m_import_button);
  42. m_import_button.setButtonText("Import file...");
  43. m_import_button.onClick = [this]() { chooseFile(); };
  44. addAndMakeVisible(&m_settings_button);
  45. m_settings_button.setButtonText("Settings...");
  46. m_settings_button.onClick = [this]() { showSettingsMenu(); };
  47. addAndMakeVisible(&m_info_label);
  48. m_info_label.setJustificationType(Justification::centredRight);
  49. m_wavecomponent.GetFileCallback = [this]() { return processor.getAudioFile(); };
  50. const auto& pars = processor.getParameters();
  51. for (int i=0;i<pars.size();++i)
  52. {
  53. AudioProcessorParameterWithID* parid = dynamic_cast<AudioProcessorParameterWithID*>(pars[i]);
  54. jassert(parid);
  55. bool notifyonlyonrelease = false;
  56. if (parid->paramID.startsWith("fftsize") || parid->paramID.startsWith("numoutchans")
  57. || parid->paramID.startsWith("numinchans"))
  58. notifyonlyonrelease = true;
  59. int group_id = -1;
  60. if (i == cpi_harmonicsbw || i == cpi_harmonicsfreq || i == cpi_harmonicsgauss || i == cpi_numharmonics)
  61. group_id = 0;
  62. if (i == cpi_octavesm2 || i == cpi_octavesm1 || i == cpi_octaves0 || i == cpi_octaves1 || i == cpi_octaves15 ||
  63. i == cpi_octaves2 || i==cpi_octaves_extra1 || i==cpi_octaves_extra2)
  64. group_id = -2; // -2 for not included in the main parameters page
  65. if (i >= (int)cpi_octaves_ratio0 && i <= (int)cpi_octaves_ratio7)
  66. group_id = -2;
  67. if (i >= (int)cpi_enable_spec_module0 && i <= (int)cpi_enable_spec_module8)
  68. group_id = -2;
  69. if (i == cpi_tonalvsnoisebw || i == cpi_tonalvsnoisepreserve)
  70. group_id = 1;
  71. if (i == cpi_filter_low || i == cpi_filter_high)
  72. group_id = 6;
  73. if (i == cpi_compress)
  74. group_id = 8;
  75. if (i == cpi_spreadamount)
  76. group_id = 5;
  77. if (i == cpi_frequencyshift)
  78. group_id = 2;
  79. if (i == cpi_pitchshift)
  80. group_id = 3;
  81. if (i == cpi_freefilter_scaley || i == cpi_freefilter_shiftx || i == cpi_freefilter_shifty ||
  82. i == cpi_freefilter_tilty || i == cpi_freefilter_randomy_amount || i == cpi_freefilter_randomy_numbands
  83. || i == cpi_freefilter_randomy_rate)
  84. group_id = 7;
  85. if (group_id >= -1)
  86. {
  87. m_parcomps.emplace_back(std::make_unique<ParameterComponent>(pars[i], notifyonlyonrelease));
  88. m_parcomps.back()->m_group_id = group_id;
  89. if (group_id >= -1)
  90. addAndMakeVisible(m_parcomps.back().get());
  91. }
  92. else
  93. {
  94. m_parcomps.push_back(nullptr);
  95. }
  96. }
  97. //addAndMakeVisible(&m_specvis);
  98. m_wave_container->addAndMakeVisible(&m_zs);
  99. m_zs.RangeChanged = [this](Range<double> r)
  100. {
  101. m_wavecomponent.setViewRange(r);
  102. processor.m_wave_view_range = r;
  103. };
  104. m_zs.setRange(processor.m_wave_view_range, true);
  105. m_wavecomponent.ViewRangeChangedCallback = [this](Range<double> rng)
  106. {
  107. m_zs.setRange(rng, false);
  108. };
  109. m_wavecomponent.TimeSelectionChangedCallback = [this](Range<double> range, int which)
  110. {
  111. *processor.getFloatParameter(cpi_soundstart) = range.getStart();
  112. *processor.getFloatParameter(cpi_soundend) = range.getEnd();
  113. };
  114. m_wavecomponent.CursorPosCallback = [this]()
  115. {
  116. return processor.getStretchSource()->getInfilePositionPercent();
  117. };
  118. m_wavecomponent.SeekCallback = [this](double pos)
  119. {
  120. if (processor.getStretchSource()->getPlayRange().contains(pos))
  121. processor.getStretchSource()->seekPercent(pos);
  122. };
  123. m_wavecomponent.ShowFileCacheRange = true;
  124. m_spec_order_ed.setSource(processor.getStretchSource());
  125. addAndMakeVisible(&m_spec_order_ed);
  126. m_spec_order_ed.ModuleSelectedCallback = [this](int id)
  127. {
  128. for (int i = 0; i < m_parcomps.size(); ++i)
  129. {
  130. if (m_parcomps[i] != nullptr)
  131. {
  132. if (m_parcomps[i]->m_group_id == id)
  133. m_parcomps[i]->setHighLighted(true);
  134. else
  135. m_parcomps[i]->setHighLighted(false);
  136. }
  137. }
  138. };
  139. m_spec_order_ed.ModuleOrderOrEnabledChangedCallback = [this]()
  140. {
  141. /*
  142. const auto& specord = processor.getStretchSource()->getSpectrumProcessOrder();
  143. for (int i = 0; i < specord.size(); ++i)
  144. {
  145. int grtofind = specord[i].m_index;
  146. for (int j = 0; j < m_parcomps.size(); ++j)
  147. {
  148. int gid = m_parcomps[j]->m_group_id;
  149. if (gid == grtofind)
  150. {
  151. m_parcomps[j]->setEnabled(specord[i].m_enabled);
  152. }
  153. }
  154. }
  155. */
  156. processor.setDirty();
  157. };
  158. m_ratiomixeditor.GetParameterValue = [this](int which, int index)
  159. {
  160. if (which == 0)
  161. return (double)*processor.getFloatParameter((int)cpi_octaves_ratio0 + index);
  162. if (which == 1)
  163. {
  164. if (index == 0)
  165. return (double)*processor.getFloatParameter(cpi_octavesm2);
  166. if (index == 1)
  167. return (double)*processor.getFloatParameter(cpi_octavesm1);
  168. if (index == 2)
  169. return (double)*processor.getFloatParameter(cpi_octaves0);
  170. if (index == 3)
  171. return (double)*processor.getFloatParameter(cpi_octaves1);
  172. if (index == 4)
  173. return (double)*processor.getFloatParameter(cpi_octaves15);
  174. if (index == 5)
  175. return (double)*processor.getFloatParameter(cpi_octaves2);
  176. if (index == 6)
  177. return (double)*processor.getFloatParameter(cpi_octaves_extra1);
  178. if (index == 7)
  179. return (double)*processor.getFloatParameter(cpi_octaves_extra2);
  180. }
  181. return 0.0;
  182. };
  183. m_ratiomixeditor.OnRatioLevelChanged = [this](int index, double val)
  184. {
  185. if (index == 0)
  186. *processor.getFloatParameter(cpi_octavesm2) = val;
  187. if (index == 1)
  188. *processor.getFloatParameter(cpi_octavesm1) = val;
  189. if (index == 2)
  190. *processor.getFloatParameter(cpi_octaves0) = val;
  191. if (index == 3)
  192. *processor.getFloatParameter(cpi_octaves1) = val;
  193. if (index == 4)
  194. *processor.getFloatParameter(cpi_octaves15) = val;
  195. if (index == 5)
  196. *processor.getFloatParameter(cpi_octaves2) = val;
  197. if (index == 6)
  198. *processor.getFloatParameter(cpi_octaves_extra1) = val;
  199. if (index == 7)
  200. *processor.getFloatParameter(cpi_octaves_extra2) = val;
  201. };
  202. m_ratiomixeditor.OnRatioChanged = [this](int index, double val)
  203. {
  204. *processor.getFloatParameter((int)cpi_octaves_ratio0 + index) = val;
  205. };
  206. m_wave_container->addAndMakeVisible(&m_wavecomponent);
  207. m_wavefilter_tab.addTab("Waveform", Colours::white, m_wave_container, true);
  208. m_wavefilter_tab.addTab("Ratio mixer", Colours::white, &m_ratiomixeditor, false);
  209. m_wavefilter_tab.addTab("Free filter", Colours::white, &m_free_filter_component, false);
  210. addAndMakeVisible(&m_wavefilter_tab);
  211. setSize (1200, 320+14*25);
  212. startTimer(1, 100);
  213. startTimer(2, 1000);
  214. startTimer(3, 200);
  215. m_wavecomponent.startTimer(100);
  216. }
  217. PaulstretchpluginAudioProcessorEditor::~PaulstretchpluginAudioProcessorEditor()
  218. {
  219. }
  220. void PaulstretchpluginAudioProcessorEditor::paint (Graphics& g)
  221. {
  222. g.fillAll(Colours::darkgrey);
  223. }
  224. void PaulstretchpluginAudioProcessorEditor::resized()
  225. {
  226. m_import_button.setBounds(1, 1, 60, 24);
  227. m_import_button.changeWidthToFitText();
  228. m_settings_button.setBounds(m_import_button.getRight() + 1, 1, 60, 24);
  229. m_settings_button.changeWidthToFitText();
  230. m_perfmeter.setBounds(m_settings_button.getRight() + 1, 1, 150, 24);
  231. m_info_label.setBounds(m_perfmeter.getRight() + 1, m_settings_button.getY(),
  232. getWidth()- m_perfmeter.getRight()-1, 24);
  233. int w = getWidth();
  234. int xoffs = 1;
  235. int yoffs = 30;
  236. int div = w / 5;
  237. //std::vector<std::vector<int>> layout;
  238. //layout.emplace_back(cpi_capture_enabled, cpi_passthrough, cpi_pause_enabled, cpi_freeze);
  239. //layout.emplace_back(cpi_main_volume, cpi_num_inchans, cpi_num_outchans);
  240. m_parcomps[cpi_capture_enabled]->setBounds(xoffs, yoffs, div-1, 24);
  241. //xoffs += div;
  242. //m_parcomps[cpi_max_capture_len]->setBounds(xoffs, yoffs, div - 1, 24);
  243. xoffs += div;
  244. m_parcomps[cpi_passthrough]->setBounds(xoffs, yoffs, div - 1, 24);
  245. xoffs += div;
  246. m_parcomps[cpi_pause_enabled]->setBounds(xoffs, yoffs, div-1, 24);
  247. xoffs += div;
  248. m_parcomps[cpi_freeze]->setBounds(xoffs, yoffs, div - 1, 24);
  249. xoffs += div;
  250. m_parcomps[cpi_bypass_stretch]->setBounds(xoffs, yoffs, div - 1, 24);
  251. xoffs = 1;
  252. yoffs += 25;
  253. div = w / 3;
  254. m_parcomps[cpi_main_volume]->setBounds(xoffs, yoffs, div-1, 24);
  255. xoffs += div;
  256. m_parcomps[cpi_num_inchans]->setBounds(xoffs, yoffs, div - 1, 24);
  257. xoffs += div;
  258. m_parcomps[cpi_num_outchans]->setBounds(xoffs, yoffs, div-1, 24);
  259. div = w / 2;
  260. xoffs = 1;
  261. yoffs += 25;
  262. m_parcomps[cpi_fftsize]->setBounds(xoffs, yoffs, div - 1, 24);
  263. xoffs += div;
  264. m_parcomps[cpi_stretchamount]->setBounds(xoffs, yoffs, div - 1, 24);
  265. xoffs = 1;
  266. yoffs += 25;
  267. m_parcomps[cpi_pitchshift]->setBounds(xoffs, yoffs, div - 1, 24);
  268. xoffs += div;
  269. m_parcomps[cpi_frequencyshift]->setBounds(xoffs, yoffs, div - 1, 24);
  270. /*
  271. xoffs = 1;
  272. yoffs += 25;
  273. m_parcomps[cpi_octavesm2]->setBounds(xoffs, yoffs, div - 1, 24);
  274. xoffs += div;
  275. m_parcomps[cpi_octavesm1]->setBounds(xoffs, yoffs, div - 1, 24);
  276. xoffs = 1;
  277. yoffs += 25;
  278. m_parcomps[cpi_octaves0]->setBounds(xoffs, yoffs, div - 1, 24);
  279. xoffs += div;
  280. m_parcomps[cpi_octaves1]->setBounds(xoffs, yoffs, div - 1, 24);
  281. xoffs = 1;
  282. yoffs += 25;
  283. m_parcomps[cpi_octaves15]->setBounds(xoffs, yoffs, div - 1, 24);
  284. xoffs += div;
  285. m_parcomps[cpi_octaves2]->setBounds(xoffs, yoffs, div - 1, 24);
  286. */
  287. xoffs = 1;
  288. yoffs += 25;
  289. m_parcomps[cpi_numharmonics]->setBounds(xoffs, yoffs, div - 1, 24);
  290. xoffs += div;
  291. m_parcomps[cpi_harmonicsfreq]->setBounds(xoffs, yoffs, div - 1, 24);
  292. xoffs = 1;
  293. yoffs += 25;
  294. m_parcomps[cpi_harmonicsbw]->setBounds(xoffs, yoffs, div - 1, 24);
  295. xoffs += div;
  296. m_parcomps[cpi_harmonicsgauss]->setBounds(xoffs, yoffs, div - 1, 24);
  297. xoffs = 1;
  298. yoffs += 25;
  299. m_parcomps[cpi_spreadamount]->setBounds(xoffs, yoffs, div - 1, 24);
  300. xoffs += div;
  301. m_parcomps[cpi_compress]->setBounds(xoffs, yoffs, div - 1, 24);
  302. xoffs = 1;
  303. yoffs += 25;
  304. m_parcomps[cpi_tonalvsnoisebw]->setBounds(xoffs, yoffs, div - 1, 24);
  305. xoffs += div;
  306. m_parcomps[cpi_tonalvsnoisepreserve]->setBounds(xoffs, yoffs, div - 1, 24);
  307. xoffs = 1;
  308. yoffs += 25;
  309. // filter here
  310. m_parcomps[cpi_filter_low]->setBounds(xoffs, yoffs, div - 1, 24);
  311. xoffs += div;
  312. m_parcomps[cpi_filter_high]->setBounds(xoffs, yoffs, div - 1, 24);
  313. xoffs = 1;
  314. yoffs += 25;
  315. m_parcomps[cpi_loopxfadelen]->setBounds(xoffs, yoffs, div - 1, 24);
  316. xoffs += div;
  317. m_parcomps[cpi_onsetdetection]->setBounds(xoffs, yoffs, div - 1, 24);
  318. xoffs = 1;
  319. yoffs += 25;
  320. m_parcomps[cpi_soundstart]->setBounds(xoffs, yoffs, div - 1, 24);
  321. xoffs += div;
  322. m_parcomps[cpi_soundend]->setBounds(xoffs, yoffs, div - 1, 24);
  323. xoffs = 1;
  324. yoffs += 25;
  325. m_parcomps[cpi_freefilter_shiftx]->setBounds(xoffs, yoffs, div - 1, 24);
  326. xoffs += div;
  327. m_parcomps[cpi_freefilter_shifty]->setBounds(xoffs, yoffs, div - 1, 24);
  328. xoffs = 1;
  329. yoffs += 25;
  330. m_parcomps[cpi_freefilter_scaley]->setBounds(xoffs, yoffs, div - 1, 24);
  331. xoffs += div;
  332. m_parcomps[cpi_freefilter_tilty]->setBounds(xoffs, yoffs, div - 1, 24);
  333. xoffs = 1;
  334. yoffs += 25;
  335. div = w / 3;
  336. m_parcomps[cpi_freefilter_randomy_numbands]->setBounds(xoffs, yoffs, div - 1, 24);
  337. xoffs += div;
  338. m_parcomps[cpi_freefilter_randomy_rate]->setBounds(xoffs, yoffs, div - 1, 24);
  339. xoffs += div;
  340. m_parcomps[cpi_freefilter_randomy_amount]->setBounds(xoffs, yoffs, div - 1, 24);
  341. yoffs += 25;
  342. int remain_h = getHeight() - 1 - yoffs;
  343. m_spec_order_ed.setBounds(1, yoffs, getWidth() - 2, remain_h / 9 * 1);
  344. m_wavefilter_tab.setBounds(1, m_spec_order_ed.getBottom() + 1, getWidth() - 2, remain_h / 9 * 8);
  345. m_wavecomponent.setBounds(m_wave_container->getX(), 0, m_wave_container->getWidth(),
  346. m_wave_container->getHeight()-16);
  347. m_zs.setBounds(m_wave_container->getX(), m_wavecomponent.getBottom(), m_wave_container->getWidth(), 15);
  348. //m_wavecomponent.setBounds(1, m_spec_order_ed.getBottom()+1, getWidth()-2, remain_h/5*4);
  349. }
  350. void PaulstretchpluginAudioProcessorEditor::timerCallback(int id)
  351. {
  352. if (id == 1)
  353. {
  354. for (int i = 0; i < m_parcomps.size(); ++i)
  355. {
  356. if (m_parcomps[i]!=nullptr)
  357. m_parcomps[i]->updateComponent();
  358. }
  359. if (processor.isRecordingEnabled())
  360. {
  361. m_wavecomponent.setRecordingPosition(processor.getRecordingPositionPercent());
  362. } else
  363. m_wavecomponent.setRecordingPosition(-1.0);
  364. String infotext;
  365. if (processor.m_show_technical_info)
  366. {
  367. infotext += String(processor.m_prepare_count)+" ";
  368. infotext += String(processor.getStretchSource()->m_param_change_count);
  369. infotext += " param changes ";
  370. }
  371. infotext += m_last_err + " [FFT size " +
  372. String(processor.getStretchSource()->getFFTSize())+"]";
  373. double outlen = processor.getStretchSource()->getOutputDurationSecondsForRange(processor.getStretchSource()->getPlayRange(),
  374. processor.getStretchSource()->getFFTSize());
  375. infotext += " [Output length " + secondsToString2(outlen)+"]";
  376. if (processor.m_abnormal_output_samples > 0)
  377. infotext += " " + String(processor.m_abnormal_output_samples) + " invalid sample values";
  378. if (processor.isNonRealtime())
  379. infotext += " (offline rendering)";
  380. if (processor.m_playposinfo.isPlaying)
  381. infotext += " "+String(processor.m_playposinfo.timeInSeconds,1);
  382. if (processor.m_show_technical_info)
  383. infotext += " " + String(m_wavecomponent.m_image_init_count) + " " + String(m_wavecomponent.m_image_update_count)+ " ";
  384. if (processor.m_offline_render_state >= 0 && processor.m_offline_render_state <= 100)
  385. infotext += String(processor.m_offline_render_state)+"%";
  386. m_info_label.setText(infotext, dontSendNotification);
  387. }
  388. if (id == 2)
  389. {
  390. m_wavecomponent.setTimeSelection(processor.getTimeSelection());
  391. if (processor.m_state_dirty)
  392. {
  393. //m_spec_order_ed.setSource(processor.getStretchSource());
  394. processor.m_state_dirty = false;
  395. }
  396. }
  397. if (id == 3)
  398. {
  399. processor.m_free_filter_envelope->updateMinMaxValues();
  400. m_free_filter_component.repaint();
  401. m_spec_order_ed.repaint();
  402. }
  403. }
  404. bool PaulstretchpluginAudioProcessorEditor::isInterestedInFileDrag(const StringArray & files)
  405. {
  406. if (files.size() == 0)
  407. return false;
  408. File f(files[0]);
  409. String extension = f.getFileExtension().toLowerCase();
  410. if (processor.m_afm->getWildcardForAllFormats().containsIgnoreCase(extension))
  411. return true;
  412. return false;
  413. }
  414. void PaulstretchpluginAudioProcessorEditor::filesDropped(const StringArray & files, int x, int y)
  415. {
  416. if (files.size() > 0)
  417. {
  418. File f(files[0]);
  419. processor.setAudioFile(f);
  420. toFront(true);
  421. }
  422. }
  423. void PaulstretchpluginAudioProcessorEditor::chooseFile()
  424. {
  425. String initiallocfn = processor.m_propsfile->m_props_file->getValue("importfilefolder",
  426. File::getSpecialLocation(File::userHomeDirectory).getFullPathName());
  427. File initialloc(initiallocfn);
  428. String filterstring = processor.m_afm->getWildcardForAllFormats();
  429. FileChooser myChooser("Please select audio file...",
  430. initialloc,
  431. filterstring,true);
  432. if (myChooser.browseForFileToOpen())
  433. {
  434. File resu = myChooser.getResult();
  435. String pathname = resu.getFullPathName();
  436. if (pathname.startsWith("/localhost"))
  437. {
  438. pathname = pathname.substring(10);
  439. resu = File(pathname);
  440. }
  441. processor.m_propsfile->m_props_file->setValue("importfilefolder", resu.getParentDirectory().getFullPathName());
  442. m_last_err = processor.setAudioFile(resu);
  443. }
  444. }
  445. void PaulstretchpluginAudioProcessorEditor::showSettingsMenu()
  446. {
  447. PopupMenu menu;
  448. menu.addItem(4, "Reset parameters", true, false);
  449. menu.addItem(5, "Load file with plugin state", true, processor.m_load_file_with_state);
  450. menu.addItem(1, "Play when host transport running", true, processor.m_play_when_host_plays);
  451. menu.addItem(2, "Capture when host transport running", true, processor.m_capture_when_host_plays);
  452. int capturelen = *processor.getFloatParameter(cpi_max_capture_len);
  453. PopupMenu capturelenmenu;
  454. std::vector<int> capturelens{ 2,5,10,30,60,120 };
  455. for (int i=0;i<capturelens.size();++i)
  456. capturelenmenu.addItem(200+i, String(capturelens[i])+" seconds", true, capturelen == capturelens[i]);
  457. menu.addSubMenu("Capture buffer length", capturelenmenu);
  458. menu.addItem(3, "About...", true, false);
  459. #ifdef JUCE_DEBUG
  460. menu.addItem(6, "Dump preset to clipboard", true, false);
  461. #endif
  462. menu.addItem(7, "Show technical info", true, processor.m_show_technical_info);
  463. /*
  464. if (processor.m_offline_render_state==-1 || processor.m_offline_render_state == 200)
  465. menu.addItem(8, "Offline render...", true, false);
  466. else menu.addItem(9, "Cancel render", true, false);
  467. */
  468. int r = menu.show();
  469. if (r >= 200 && r < 210)
  470. {
  471. int caplen = capturelens[r - 200];
  472. *processor.getFloatParameter(cpi_max_capture_len) = (float)caplen;
  473. }
  474. if (r == 1)
  475. {
  476. toggleBool(processor.m_play_when_host_plays);
  477. }
  478. if (r == 2)
  479. {
  480. toggleBool(processor.m_capture_when_host_plays);
  481. }
  482. if (r == 4)
  483. {
  484. processor.resetParameters();
  485. }
  486. if (r == 5)
  487. {
  488. toggleBool(processor.m_load_file_with_state);
  489. }
  490. if (r == 3)
  491. {
  492. String fftlib = fftwf_version;
  493. String juceversiontxt = String("JUCE ") + String(JUCE_MAJOR_VERSION) + "." + String(JUCE_MINOR_VERSION);
  494. String title = g_plugintitle;
  495. #ifdef JUCE_DEBUG
  496. title += " (DEBUG)";
  497. #endif
  498. AlertWindow::showMessageBoxAsync(AlertWindow::InfoIcon,
  499. title,
  500. "Plugin for extreme time stretching and other sound processing\nBuilt on " + String(__DATE__) + " " + String(__TIME__) + "\n"
  501. "Copyright (C) 2006-2011 Nasca Octavian Paul, Tg. Mures, Romania\n"
  502. "(C) 2017-2018 Xenakios\n\n"
  503. "Using " + fftlib + " for FFT\n\n"
  504. + juceversiontxt + " (c) Roli. Used under the GPL license.\n\n"
  505. "GPL licensed source code for this plugin at : https://bitbucket.org/xenakios/paulstretchplugin/overview\n"
  506. , "OK",
  507. this);
  508. }
  509. if (r == 6)
  510. {
  511. ValueTree tree = processor.getStateTree(true,true);
  512. MemoryBlock destData;
  513. MemoryOutputStream stream(destData, true);
  514. tree.writeToStream(stream);
  515. String txt = Base64::toBase64(destData.getData(), destData.getSize());
  516. SystemClipboard::copyTextToClipboard(txt);
  517. }
  518. if (r == 7)
  519. {
  520. toggleBool(processor.m_show_technical_info);
  521. processor.m_propsfile->m_props_file->setValue("showtechnicalinfo", processor.m_show_technical_info);
  522. }
  523. if (r == 8)
  524. {
  525. #ifdef JUCE_WINDOWS
  526. processor.offlineRender(File("C:\\MusicAudio\\sourcesamples\\paultesmaus\\plugin_offline_test\\out.wav"));
  527. #else
  528. processor.offlineRender(File("/Users/teemu/AudioProjects/sourcesamples/paultests/pspout.wav"));
  529. #endif
  530. }
  531. if (r == 9)
  532. {
  533. processor.m_offline_render_cancel_requested = true;
  534. }
  535. }
  536. WaveformComponent::WaveformComponent(AudioFormatManager* afm, AudioThumbnail* thumb)
  537. {
  538. TimeSelectionChangedCallback = [](Range<double>, int) {};
  539. #ifdef JUCE_MODULE_AVAILABLE_juce_opengl
  540. if (m_use_opengl == true)
  541. m_ogl.attachTo(*this);
  542. #endif
  543. m_thumbnail = thumb;
  544. m_thumbnail->addChangeListener(this);
  545. setOpaque(true);
  546. }
  547. WaveformComponent::~WaveformComponent()
  548. {
  549. #ifdef JUCE_MODULE_AVAILABLE_juce_opengl
  550. if (m_use_opengl == true)
  551. m_ogl.detach();
  552. #endif
  553. m_thumbnail->removeChangeListener(this);
  554. }
  555. void WaveformComponent::changeListenerCallback(ChangeBroadcaster * /*cb*/)
  556. {
  557. jassert(MessageManager::getInstance()->isThisTheMessageThread());
  558. m_image_dirty = true;
  559. //repaint();
  560. }
  561. void WaveformComponent::updateCachedImage()
  562. {
  563. Graphics tempg(m_waveimage);
  564. tempg.fillAll(Colours::black);
  565. tempg.setColour(Colours::darkgrey);
  566. double thumblen = m_thumbnail->getTotalLength();
  567. m_thumbnail->drawChannels(tempg, { 0,0,getWidth(),getHeight() - m_topmargin },
  568. thumblen*m_view_range.getStart(), thumblen*m_view_range.getEnd(), 1.0f);
  569. m_image_dirty = false;
  570. ++m_image_update_count;
  571. }
  572. void WaveformComponent::paint(Graphics & g)
  573. {
  574. jassert(GetFileCallback);
  575. //Logger::writeToLog("Waveform component paint");
  576. g.fillAll(Colours::black);
  577. g.setColour(Colours::darkgrey);
  578. g.fillRect(0, 0, getWidth(), m_topmargin);
  579. if (m_thumbnail == nullptr || m_thumbnail->getTotalLength() < 0.01)
  580. {
  581. g.setColour(Colours::aqua.darker());
  582. g.drawText("No file loaded", 2, m_topmargin + 2, getWidth(), 20, Justification::topLeft);
  583. return;
  584. }
  585. g.setColour(Colours::lightslategrey);
  586. double thumblen = m_thumbnail->getTotalLength();
  587. double tick_interval = 1.0;
  588. if (thumblen > 60.0)
  589. tick_interval = 5.0;
  590. for (double secs = 0.0; secs < thumblen; secs += tick_interval)
  591. {
  592. float tickxcor = (float)jmap<double>(secs,
  593. thumblen*m_view_range.getStart(), thumblen*m_view_range.getEnd(), 0.0f, (float)getWidth());
  594. g.drawLine(tickxcor, 0.0, tickxcor, (float)m_topmargin, 1.0f);
  595. }
  596. bool m_use_cached_image = true;
  597. if (m_use_cached_image == true)
  598. {
  599. if (m_image_dirty == true || m_waveimage.getWidth() != getWidth()
  600. || m_waveimage.getHeight() != getHeight() - m_topmargin)
  601. {
  602. if (m_waveimage.getWidth() != getWidth()
  603. || m_waveimage.getHeight() != getHeight() - m_topmargin)
  604. {
  605. m_waveimage = Image(Image::ARGB, getWidth(), getHeight() - m_topmargin, true);
  606. ++m_image_init_count;
  607. }
  608. updateCachedImage();
  609. }
  610. g.drawImage(m_waveimage, 0, m_topmargin, getWidth(), getHeight() - m_topmargin, 0, 0, getWidth(), getHeight() - m_topmargin);
  611. }
  612. else
  613. {
  614. g.setColour(Colours::darkgrey);
  615. m_thumbnail->drawChannels(g, { 0,m_topmargin,getWidth(),getHeight() - m_topmargin },
  616. thumblen*m_view_range.getStart(), thumblen*m_view_range.getEnd(), 1.0f);
  617. }
  618. if (m_is_at_selection_drag_area)
  619. g.setColour(Colours::white.withAlpha(0.6f));
  620. else
  621. g.setColour(Colours::white.withAlpha(0.5f));
  622. double sel_len = m_time_sel_end - m_time_sel_start;
  623. //if (sel_len > 0.0 && sel_len < 1.0)
  624. {
  625. int xcorleft = normalizedToViewX<int>(m_time_sel_start);
  626. int xcorright = normalizedToViewX<int>(m_time_sel_end);
  627. g.fillRect(xcorleft, m_topmargin, xcorright - xcorleft, getHeight() - m_topmargin);
  628. }
  629. if (m_file_cached.first.getLength() > 0.0 &&
  630. (bool)ShowFileCacheRange.getValue())
  631. {
  632. g.setColour(Colours::red.withAlpha(0.2f));
  633. int xcorleft = (int)jmap<double>(m_file_cached.first.getStart(), m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  634. int xcorright = (int)jmap<double>(m_file_cached.first.getEnd(), m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  635. g.fillRect(xcorleft, 0, xcorright - xcorleft, m_topmargin / 2);
  636. xcorleft = (int)jmap<double>(m_file_cached.second.getStart(), m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  637. xcorright = (int)jmap<double>(m_file_cached.second.getEnd(), m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  638. if (xcorright - xcorleft>0)
  639. {
  640. g.setColour(Colours::blue.withAlpha(0.2f));
  641. g.fillRect(xcorleft, m_topmargin / 2, xcorright - xcorleft, m_topmargin / 2);
  642. }
  643. }
  644. g.setColour(Colours::white);
  645. if (CursorPosCallback)
  646. {
  647. g.fillRect(normalizedToViewX<int>(CursorPosCallback()), m_topmargin, 1, getHeight() - m_topmargin);
  648. }
  649. if (m_rec_pos >= 0.0)
  650. {
  651. g.setColour(Colours::lightpink);
  652. g.fillRect(normalizedToViewX<int>(m_rec_pos), m_topmargin, 1, getHeight() - m_topmargin);
  653. }
  654. g.setColour(Colours::aqua);
  655. g.drawText(GetFileCallback().getFileName(), 2, m_topmargin + 2, getWidth(), 20, Justification::topLeft);
  656. g.drawText(secondsToString2(thumblen), getWidth() - 200, m_topmargin + 2, 200, 20, Justification::topRight);
  657. }
  658. void WaveformComponent::timerCallback()
  659. {
  660. repaint();
  661. }
  662. void WaveformComponent::setFileCachedRange(std::pair<Range<double>, Range<double>> rng)
  663. {
  664. m_file_cached = rng;
  665. }
  666. void WaveformComponent::setTimerEnabled(bool b)
  667. {
  668. if (b == true)
  669. startTimer(100);
  670. else
  671. stopTimer();
  672. }
  673. void WaveformComponent::setViewRange(Range<double> rng)
  674. {
  675. m_view_range = rng;
  676. m_waveimage = Image();
  677. repaint();
  678. }
  679. void WaveformComponent::mouseDown(const MouseEvent & e)
  680. {
  681. m_mousedown = true;
  682. m_lock_timesel_set = true;
  683. double pos = viewXToNormalized(e.x);
  684. if (e.y < m_topmargin || e.mods.isCommandDown())
  685. {
  686. if (SeekCallback)
  687. SeekCallback(pos);
  688. m_didseek = true;
  689. }
  690. else
  691. {
  692. m_time_sel_drag_target = getTimeSelectionEdge(e.x, e.y);
  693. m_drag_time_start = pos;
  694. if (m_time_sel_drag_target == 0)
  695. {
  696. //m_time_sel_start = 0.0;
  697. //m_time_sel_end = 1.0;
  698. }
  699. }
  700. repaint();
  701. }
  702. void WaveformComponent::mouseUp(const MouseEvent & /*e*/)
  703. {
  704. m_is_dragging_selection = false;
  705. m_lock_timesel_set = false;
  706. m_mousedown = false;
  707. m_didseek = false;
  708. if (m_didchangetimeselection)
  709. {
  710. TimeSelectionChangedCallback(Range<double>(m_time_sel_start, m_time_sel_end), 1);
  711. m_didchangetimeselection = false;
  712. }
  713. }
  714. void WaveformComponent::mouseDrag(const MouseEvent & e)
  715. {
  716. if (m_didseek == true)
  717. return;
  718. if (m_time_sel_drag_target == 0 && e.y>=50 && m_is_dragging_selection==false)
  719. {
  720. m_time_sel_start = m_drag_time_start;
  721. m_time_sel_end = viewXToNormalized(e.x);
  722. }
  723. double curlen = m_time_sel_end - m_time_sel_start;
  724. if (m_time_sel_drag_target == 0 && m_is_at_selection_drag_area)
  725. {
  726. m_is_dragging_selection = true;
  727. double diff = m_drag_time_start - viewXToNormalized(e.x);
  728. m_time_sel_start = jlimit<double>(0.0, 1.0-curlen, m_time_sel_start - diff);
  729. m_time_sel_end = jlimit<double>(curlen, 1.0, m_time_sel_end - diff);
  730. m_drag_time_start -= diff;
  731. }
  732. curlen = m_time_sel_end - m_time_sel_start;
  733. if (m_time_sel_drag_target == 1)
  734. {
  735. m_time_sel_start = viewXToNormalized(e.x);
  736. }
  737. if (m_time_sel_drag_target == 2)
  738. {
  739. m_time_sel_end = viewXToNormalized(e.x);
  740. }
  741. if (m_time_sel_start > m_time_sel_end)
  742. {
  743. std::swap(m_time_sel_start, m_time_sel_end);
  744. if (m_time_sel_drag_target == 1)
  745. m_time_sel_drag_target = 2;
  746. else if (m_time_sel_drag_target == 2)
  747. m_time_sel_drag_target = 1;
  748. }
  749. m_time_sel_start = jlimit(0.0, 1.0, m_time_sel_start);
  750. m_time_sel_end = jlimit(0.0, 1.0, m_time_sel_end);
  751. if (TimeSelectionChangedCallback)
  752. {
  753. if (m_time_sel_end>m_time_sel_start)
  754. TimeSelectionChangedCallback(Range<double>(m_time_sel_start, m_time_sel_end), 0);
  755. else
  756. TimeSelectionChangedCallback(Range<double>(0.0, 1.0), 0);
  757. }
  758. m_didchangetimeselection = true;
  759. repaint();
  760. }
  761. void WaveformComponent::mouseMove(const MouseEvent & e)
  762. {
  763. m_time_sel_drag_target = getTimeSelectionEdge(e.x, e.y);
  764. if (m_time_sel_drag_target == 0)
  765. setMouseCursor(MouseCursor::NormalCursor);
  766. if (m_time_sel_drag_target == 1)
  767. setMouseCursor(MouseCursor::LeftRightResizeCursor);
  768. if (m_time_sel_drag_target == 2)
  769. setMouseCursor(MouseCursor::LeftRightResizeCursor);
  770. Range<int> temp(normalizedToViewX<int>(m_time_sel_start), normalizedToViewX<int>(m_time_sel_end));
  771. m_is_at_selection_drag_area = temp.contains(e.x) == true && e.y < 50;
  772. }
  773. void WaveformComponent::mouseDoubleClick(const MouseEvent & e)
  774. {
  775. m_time_sel_start = 0.0;
  776. m_time_sel_end = 1.0;
  777. TimeSelectionChangedCallback({ 0.0,1.0 }, 0);
  778. repaint();
  779. }
  780. void WaveformComponent::mouseWheelMove(const MouseEvent & e, const MouseWheelDetails & wd)
  781. {
  782. return;
  783. /*
  784. double factor = 0.9;
  785. if (wd.deltaY < 0.0)
  786. factor = 1.11111;
  787. double normt = viewXToNormalized(e.x);
  788. double curlen = m_view_range.getLength();
  789. double newlen = curlen * factor;
  790. double oldt0 = m_view_range.getStart();
  791. double oldt1 = m_view_range.getEnd();
  792. double t0 = jlimit(0.0,1.0, normt + (curlen - newlen));
  793. double t1 = jlimit(0.0,1.0, t0+newlen);
  794. jassert(t1 > t0);
  795. m_view_range = { t0,t1 };
  796. //m_view_range = m_view_range.constrainRange({ 0.0, 1.0 });
  797. jassert(m_view_range.getStart() >= 0.0 && m_view_range.getEnd() <= 1.0);
  798. jassert(m_view_range.getLength() > 0.001);
  799. if (ViewRangeChangedCallback)
  800. ViewRangeChangedCallback(m_view_range);
  801. m_image_dirty = true;
  802. repaint();
  803. */
  804. }
  805. Range<double> WaveformComponent::getTimeSelection()
  806. {
  807. if (m_time_sel_start >= 0.0 && m_time_sel_end>m_time_sel_start + 0.001)
  808. return { m_time_sel_start, m_time_sel_end };
  809. return { 0.0, 1.0 };
  810. }
  811. void WaveformComponent::setTimeSelection(Range<double> rng)
  812. {
  813. if (m_lock_timesel_set == true)
  814. return;
  815. if (rng.isEmpty())
  816. rng = { -1.0,1.0 };
  817. m_time_sel_start = rng.getStart();
  818. m_time_sel_end = rng.getEnd();
  819. repaint();
  820. }
  821. int WaveformComponent::getTimeSelectionEdge(int x, int y)
  822. {
  823. int xcorleft = (int)jmap<double>(m_time_sel_start, m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  824. int xcorright = (int)jmap<double>(m_time_sel_end, m_view_range.getStart(), m_view_range.getEnd(), 0, getWidth());
  825. if (juce::Rectangle<int>(xcorleft - 5, m_topmargin, 10, getHeight() - m_topmargin).contains(x, y))
  826. return 1;
  827. if (juce::Rectangle<int>(xcorright - 5, m_topmargin, 10, getHeight() - m_topmargin).contains(x, y))
  828. return 2;
  829. return 0;
  830. }
  831. SpectralVisualizer::SpectralVisualizer()
  832. {
  833. m_img = Image(Image::RGB, 500, 200, true);
  834. }
  835. void SpectralVisualizer::setState(const ProcessParameters & pars, int nfreqs, double samplerate)
  836. {
  837. double t0 = Time::getMillisecondCounterHiRes();
  838. double hz = 440.0;
  839. int numharmonics = 40;
  840. double scaler = 1.0 / numharmonics;
  841. if (m_img.getWidth()!=getWidth() || m_img.getHeight()!=getHeight())
  842. m_img = Image(Image::RGB, getWidth(), getHeight(), true);
  843. if (m_nfreqs == 0 || nfreqs != m_nfreqs)
  844. {
  845. m_nfreqs = nfreqs;
  846. m_insamples = std::vector<REALTYPE>(nfreqs * 2);
  847. m_freqs1 = std::vector<REALTYPE>(nfreqs);
  848. m_freqs2 = std::vector<REALTYPE>(nfreqs);
  849. m_freqs3 = std::vector<REALTYPE>(nfreqs);
  850. m_fft = std::make_unique<FFT>(nfreqs*2);
  851. std::fill(m_insamples.begin(), m_insamples.end(), 0.0f);
  852. for (int i = 0; i < nfreqs; ++i)
  853. {
  854. for (int j = 0; j < numharmonics; ++j)
  855. {
  856. double oscgain = 1.0 - (1.0 / numharmonics)*j;
  857. m_insamples[i] += scaler * oscgain * sin(2 * c_PI / samplerate * i* (hz + hz * j));
  858. }
  859. }
  860. }
  861. //std::fill(m_freqs1.begin(), m_freqs1.end(), 0.0f);
  862. //std::fill(m_freqs2.begin(), m_freqs2.end(), 0.0f);
  863. //std::fill(m_freqs3.begin(), m_freqs3.end(), 0.0f);
  864. //std::fill(m_fft->freq.begin(), m_fft->freq.end(), 0.0f);
  865. for (int i = 0; i < nfreqs; ++i)
  866. {
  867. m_fft->smp[i] = m_insamples[i];
  868. }
  869. m_fft->applywindow(W_HAMMING);
  870. m_fft->smp2freq();
  871. double ratio = pow(2.0f, pars.pitch_shift.cents / 1200.0f);
  872. spectrum_do_pitch_shift(pars, nfreqs, m_fft->freq.data(), m_freqs2.data(), ratio);
  873. spectrum_do_freq_shift(pars, nfreqs, samplerate, m_freqs2.data(), m_freqs1.data());
  874. spectrum_do_compressor(pars, nfreqs, m_freqs1.data(), m_freqs2.data());
  875. spectrum_spread(nfreqs, samplerate, m_freqs3, m_freqs2.data(), m_freqs1.data(), pars.spread.bandwidth);
  876. //if (pars.harmonics.enabled)
  877. // spectrum_do_harmonics(pars, m_freqs3, nfreqs, samplerate, m_freqs1.data(), m_freqs2.data());
  878. //else spectrum_copy(nfreqs, m_freqs1.data(), m_freqs2.data());
  879. Graphics g(m_img);
  880. g.fillAll(Colours::black);
  881. g.setColour(Colours::white);
  882. for (int i = 0; i < nfreqs; ++i)
  883. {
  884. double binfreq = (samplerate / 2 / nfreqs)*i;
  885. double xcor = jmap<double>(binfreq, 0.0, samplerate / 2.0, 0.0, getWidth());
  886. double ycor = getHeight()- jmap<double>(m_freqs2[i], 0.0, nfreqs/128, 0.0, getHeight());
  887. ycor = jlimit<double>(0.0, getHeight(), ycor);
  888. g.drawLine(xcor, getHeight(), xcor, ycor, 1.0);
  889. }
  890. double t1 = Time::getMillisecondCounterHiRes();
  891. m_elapsed = t1 - t0;
  892. repaint();
  893. }
  894. void SpectralVisualizer::paint(Graphics & g)
  895. {
  896. g.drawImage(m_img, 0, 0, getWidth(), getHeight(), 0, 0, m_img.getWidth(), m_img.getHeight());
  897. g.setColour(Colours::yellow);
  898. g.drawText(String(m_elapsed, 1)+" ms", 1, 1, getWidth(), 30, Justification::topLeft);
  899. }
  900. void SpectralChainEditor::paint(Graphics & g)
  901. {
  902. g.fillAll(Colours::black);
  903. if (m_src == nullptr)
  904. return;
  905. int box_w = getWidth() / m_order.size();
  906. int box_h = getHeight();
  907. for (int i = 0; i < m_order.size(); ++i)
  908. {
  909. //if (i!=m_cur_index)
  910. drawBox(g, i, i*box_w, 0, box_w - 20, box_h);
  911. if (i<m_order.size() - 1)
  912. g.drawArrow(juce::Line<float>(i*box_w + (box_w - 20), box_h / 2, i*box_w + box_w, box_h / 2), 2.0f, 12.0f, 12.0f);
  913. }
  914. if (m_drag_x>=0 && m_drag_x<getWidth() && m_cur_index>=0)
  915. drawBox(g, m_cur_index, m_drag_x, 0, box_w - 30, box_h);
  916. }
  917. void SpectralChainEditor::setSource(StretchAudioSource * src)
  918. {
  919. m_src = src;
  920. m_order = m_src->getSpectrumProcessOrder();
  921. repaint();
  922. }
  923. void SpectralChainEditor::mouseDown(const MouseEvent & ev)
  924. {
  925. m_did_drag = false;
  926. int box_w = getWidth() / m_order.size();
  927. int box_h = getHeight();
  928. m_cur_index = ev.x / box_w;
  929. if (m_cur_index >= 0)
  930. {
  931. if (ModuleSelectedCallback)
  932. ModuleSelectedCallback(m_order[m_cur_index].m_index);
  933. juce::Rectangle<int> r(box_w*m_cur_index, 1, 12, 12);
  934. if (r.contains(ev.x, ev.y))
  935. {
  936. for (int i = 0; i < m_order.size(); ++i)
  937. {
  938. if (m_order[i].m_index == m_cur_index)
  939. {
  940. //Logger::writeToLog("SpectralChainEditor::mouseDown "+m_order[i].m_enabled->name);
  941. //return;
  942. }
  943. }
  944. toggleBool(m_order[m_cur_index].m_enabled);
  945. Logger::writeToLog("SpectralChainEditor::mouseDown " + m_order[m_cur_index].m_enabled->name);
  946. //m_src->setSpectrumProcessOrder(m_order);
  947. //if (ModuleOrderOrEnabledChangedCallback)
  948. // ModuleOrderOrEnabledChangedCallback();
  949. repaint();
  950. return;
  951. }
  952. }
  953. m_drag_x = ev.x;
  954. repaint();
  955. }
  956. void SpectralChainEditor::mouseDrag(const MouseEvent & ev)
  957. {
  958. int box_w = getWidth() / m_order.size();
  959. juce::Rectangle<int> r(box_w*m_cur_index, 1, 12, 12);
  960. if (r.contains(ev.x, ev.y))
  961. return;
  962. if (m_cur_index >= 0 && m_cur_index < m_order.size())
  963. {
  964. int box_h = getHeight();
  965. int new_index = ev.x / box_w;
  966. if (new_index >= 0 && new_index < m_order.size() && new_index != m_cur_index)
  967. {
  968. swapSpectrumProcesses(m_order[m_cur_index], m_order[new_index]);
  969. m_cur_index = new_index;
  970. m_did_drag = true;
  971. m_src->setSpectrumProcessOrder(m_order);
  972. if (ModuleOrderOrEnabledChangedCallback)
  973. ModuleOrderOrEnabledChangedCallback();
  974. }
  975. int diff = m_drag_x - ev.x;
  976. m_drag_x -= diff;
  977. repaint();
  978. }
  979. }
  980. void SpectralChainEditor::mouseUp(const MouseEvent & ev)
  981. {
  982. m_drag_x = -1;
  983. //m_cur_index = -1;
  984. repaint();
  985. }
  986. void SpectralChainEditor::setModuleSelected(int id)
  987. {
  988. if (id != m_cur_index)
  989. {
  990. m_cur_index = id;
  991. repaint();
  992. }
  993. }
  994. void SpectralChainEditor::moveModule(int old_id, int new_id)
  995. {
  996. if (old_id == m_cur_index)
  997. return;
  998. std::swap(m_order[old_id], m_order[new_id]);
  999. m_cur_index = new_id;
  1000. m_src->setSpectrumProcessOrder(m_order);
  1001. repaint();
  1002. if (ModuleOrderOrEnabledChangedCallback)
  1003. ModuleOrderOrEnabledChangedCallback();
  1004. }
  1005. void SpectralChainEditor::drawBox(Graphics & g, int index, int x, int y, int w, int h)
  1006. {
  1007. jassert(m_order[index].m_enabled != nullptr);
  1008. String txt;
  1009. if (m_order[index].m_index == 0)
  1010. txt = "Harmonics";
  1011. if (m_order[index].m_index == 1)
  1012. txt = "Tonal vs Noise";
  1013. if (m_order[index].m_index == 2)
  1014. txt = "Frequency shift";
  1015. if (m_order[index].m_index == 3)
  1016. txt = "Pitch shift";
  1017. if (m_order[index].m_index == 4)
  1018. txt = "Ratios";
  1019. if (m_order[index].m_index == 5)
  1020. txt = "Spread";
  1021. if (m_order[index].m_index == 6)
  1022. txt = "Filter";
  1023. if (m_order[index].m_index == 8)
  1024. txt = "Compressor";
  1025. if (m_order[index].m_index == 7)
  1026. txt = "Free filter";
  1027. if (index == m_cur_index)
  1028. {
  1029. g.setColour(Colours::darkgrey);
  1030. //g.fillRect(i*box_w, 0, box_w - 30, box_h - 1);
  1031. g.fillRect(x, y, w, h);
  1032. }
  1033. g.setColour(Colours::white);
  1034. g.drawRect(x, y, w, h);
  1035. g.drawFittedText(txt, x,y,w,h-5, Justification::centredBottom, 3);
  1036. //g.drawFittedText(m_order[index].m_enabled->name, x, y, w, h, Justification::centred, 3);
  1037. g.setColour(Colours::gold);
  1038. g.drawRect(x + 2, y + 2, 12, 12);
  1039. if ((bool)*m_order[index].m_enabled == true)
  1040. {
  1041. g.drawLine(x+2, y+2, x+14, y+14);
  1042. g.drawLine(x+2, y+14, x+14, y+2);
  1043. }
  1044. g.setColour(Colours::white);
  1045. }
  1046. ParameterComponent::ParameterComponent(AudioProcessorParameter * par, bool notifyOnlyOnRelease) : m_par(par)
  1047. {
  1048. addAndMakeVisible(&m_label);
  1049. m_labeldefcolor = m_label.findColour(Label::textColourId);
  1050. m_label.setText(par->getName(50), dontSendNotification);
  1051. AudioParameterFloat* floatpar = dynamic_cast<AudioParameterFloat*>(par);
  1052. if (floatpar)
  1053. {
  1054. m_slider = std::make_unique<MySlider>(&floatpar->range);
  1055. m_notify_only_on_release = notifyOnlyOnRelease;
  1056. m_slider->setRange(floatpar->range.start, floatpar->range.end, floatpar->range.interval);
  1057. m_slider->setValue(*floatpar, dontSendNotification);
  1058. m_slider->addListener(this);
  1059. m_slider->setDoubleClickReturnValue(true, floatpar->range.convertFrom0to1(par->getDefaultValue()));
  1060. addAndMakeVisible(m_slider.get());
  1061. }
  1062. AudioParameterInt* intpar = dynamic_cast<AudioParameterInt*>(par);
  1063. if (intpar)
  1064. {
  1065. m_slider = std::make_unique<MySlider>();
  1066. m_notify_only_on_release = notifyOnlyOnRelease;
  1067. m_slider->setRange(intpar->getRange().getStart(), intpar->getRange().getEnd(), 1.0);
  1068. m_slider->setValue(*intpar, dontSendNotification);
  1069. m_slider->addListener(this);
  1070. addAndMakeVisible(m_slider.get());
  1071. }
  1072. AudioParameterChoice* choicepar = dynamic_cast<AudioParameterChoice*>(par);
  1073. if (choicepar)
  1074. {
  1075. }
  1076. AudioParameterBool* boolpar = dynamic_cast<AudioParameterBool*>(par);
  1077. if (boolpar)
  1078. {
  1079. m_togglebut = std::make_unique<ToggleButton>();
  1080. m_togglebut->setToggleState(*boolpar, dontSendNotification);
  1081. m_togglebut->addListener(this);
  1082. m_togglebut->setButtonText(par->getName(50));
  1083. addAndMakeVisible(m_togglebut.get());
  1084. }
  1085. }
  1086. void ParameterComponent::resized()
  1087. {
  1088. if (m_slider)
  1089. {
  1090. int labw = 200;
  1091. if (getWidth() < 400)
  1092. labw = 100;
  1093. m_label.setBounds(0, 0, labw, 24);
  1094. m_slider->setBounds(m_label.getRight() + 1, 0, getWidth() - 2 - m_label.getWidth(), 24);
  1095. }
  1096. if (m_togglebut)
  1097. m_togglebut->setBounds(1, 0, getWidth() - 1, 24);
  1098. }
  1099. void ParameterComponent::sliderValueChanged(Slider * slid)
  1100. {
  1101. if (m_notify_only_on_release == true)
  1102. return;
  1103. AudioParameterFloat* floatpar = dynamic_cast<AudioParameterFloat*>(m_par);
  1104. if (floatpar != nullptr)
  1105. *floatpar = slid->getValue();
  1106. AudioParameterInt* intpar = dynamic_cast<AudioParameterInt*>(m_par);
  1107. if (intpar != nullptr)
  1108. *intpar = slid->getValue();
  1109. }
  1110. void ParameterComponent::sliderDragStarted(Slider * slid)
  1111. {
  1112. m_dragging = true;
  1113. }
  1114. void ParameterComponent::sliderDragEnded(Slider * slid)
  1115. {
  1116. m_dragging = false;
  1117. if (m_notify_only_on_release == false)
  1118. return;
  1119. AudioParameterFloat* floatpar = dynamic_cast<AudioParameterFloat*>(m_par);
  1120. if (floatpar != nullptr)
  1121. *floatpar = slid->getValue();
  1122. AudioParameterInt* intpar = dynamic_cast<AudioParameterInt*>(m_par);
  1123. if (intpar != nullptr)
  1124. *intpar = slid->getValue();
  1125. }
  1126. void ParameterComponent::buttonClicked(Button * but)
  1127. {
  1128. AudioParameterBool* boolpar = dynamic_cast<AudioParameterBool*>(m_par);
  1129. if (m_togglebut != nullptr && m_togglebut->getToggleState() != *boolpar)
  1130. {
  1131. *boolpar = m_togglebut->getToggleState();
  1132. }
  1133. }
  1134. void ParameterComponent::updateComponent()
  1135. {
  1136. AudioParameterFloat* floatpar = dynamic_cast<AudioParameterFloat*>(m_par);
  1137. if (floatpar != nullptr && m_slider != nullptr && m_dragging == false && (float)m_slider->getValue() != *floatpar)
  1138. {
  1139. m_slider->setValue(*floatpar, dontSendNotification);
  1140. }
  1141. AudioParameterInt* intpar = dynamic_cast<AudioParameterInt*>(m_par);
  1142. if (intpar != nullptr && m_slider != nullptr && m_dragging == false && (int)m_slider->getValue() != *intpar)
  1143. {
  1144. m_slider->setValue(*intpar, dontSendNotification);
  1145. }
  1146. AudioParameterBool* boolpar = dynamic_cast<AudioParameterBool*>(m_par);
  1147. if (m_togglebut != nullptr && m_togglebut->getToggleState() != *boolpar)
  1148. {
  1149. m_togglebut->setToggleState(*boolpar, dontSendNotification);
  1150. }
  1151. }
  1152. void ParameterComponent::setHighLighted(bool b)
  1153. {
  1154. if (b == false)
  1155. {
  1156. m_label.setColour(Label::textColourId, m_labeldefcolor);
  1157. if (m_togglebut)
  1158. m_togglebut->setColour(ToggleButton::textColourId, m_labeldefcolor);
  1159. }
  1160. else
  1161. {
  1162. m_label.setColour(Label::textColourId, Colours::yellow);
  1163. if (m_togglebut)
  1164. m_togglebut->setColour(ToggleButton::textColourId, Colours::yellow);
  1165. }
  1166. }
  1167. MySlider::MySlider(NormalisableRange<float>* range) : m_range(range)
  1168. {
  1169. }
  1170. double MySlider::proportionOfLengthToValue(double x)
  1171. {
  1172. if (m_range)
  1173. return m_range->convertFrom0to1(x);
  1174. return Slider::proportionOfLengthToValue(x);
  1175. }
  1176. double MySlider::valueToProportionOfLength(double x)
  1177. {
  1178. if (m_range)
  1179. return m_range->convertTo0to1(x);
  1180. return Slider::valueToProportionOfLength(x);
  1181. }
  1182. PerfMeterComponent::PerfMeterComponent(PaulstretchpluginAudioProcessor * p)
  1183. : m_proc(p)
  1184. {
  1185. m_gradient.isRadial = false;
  1186. m_gradient.addColour(0.0, Colours::red);
  1187. m_gradient.addColour(0.25, Colours::yellow);
  1188. m_gradient.addColour(1.0, Colours::green);
  1189. startTimer(30);
  1190. }
  1191. void PerfMeterComponent::paint(Graphics & g)
  1192. {
  1193. m_gradient.point1 = {0.0f,0.0f};
  1194. m_gradient.point2 = {(float)getWidth(),0.0f};
  1195. g.fillAll(Colours::grey);
  1196. double amt = m_proc->getPreBufferingPercent();
  1197. g.setColour(Colours::green);
  1198. int w = amt * getWidth();
  1199. //g.setGradientFill(m_gradient);
  1200. g.fillRect(0, 0, w, getHeight());
  1201. g.setColour(Colours::white);
  1202. g.drawRect(0, 0, getWidth(), getHeight());
  1203. g.setFont(10.0f);
  1204. if (m_proc->getPreBufferAmount()>0)
  1205. g.drawText("PREBUFFER", 0, 0, getWidth(), getHeight(), Justification::centred);
  1206. else
  1207. g.drawText("NO PREBUFFER", 0, 0, getWidth(), getHeight(), Justification::centred);
  1208. }
  1209. void PerfMeterComponent::mouseDown(const MouseEvent & ev)
  1210. {
  1211. PopupMenu bufferingmenu;
  1212. int curbufamount = m_proc->getPreBufferAmount();
  1213. bufferingmenu.addItem(100, "None", true, curbufamount == -1);
  1214. bufferingmenu.addItem(101, "Small", true, curbufamount == 1);
  1215. bufferingmenu.addItem(102, "Medium", true, curbufamount == 2);
  1216. bufferingmenu.addItem(103, "Large", true, curbufamount == 3);
  1217. bufferingmenu.addItem(104, "Very large", true, curbufamount == 4);
  1218. bufferingmenu.addItem(105, "Huge", true, curbufamount == 5);
  1219. int r = bufferingmenu.show();
  1220. if (r >= 100 && r < 200)
  1221. {
  1222. if (r == 100)
  1223. m_proc->m_use_backgroundbuffering = false;
  1224. if (r > 100)
  1225. m_proc->setPreBufferAmount(r - 100);
  1226. }
  1227. }
  1228. void PerfMeterComponent::timerCallback()
  1229. {
  1230. repaint();
  1231. }
  1232. void zoom_scrollbar::mouseDown(const MouseEvent &e)
  1233. {
  1234. m_drag_start_x = e.x;
  1235. }
  1236. void zoom_scrollbar::mouseMove(const MouseEvent &e)
  1237. {
  1238. auto ha = get_hot_area(e.x, e.y);
  1239. if (ha == ha_left_edge || m_hot_area == ha_right_edge)
  1240. setMouseCursor(MouseCursor::LeftRightResizeCursor);
  1241. else
  1242. setMouseCursor(MouseCursor::NormalCursor);
  1243. if (ha != m_hot_area)
  1244. {
  1245. m_hot_area = ha;
  1246. repaint();
  1247. }
  1248. }
  1249. void zoom_scrollbar::mouseDrag(const MouseEvent &e)
  1250. {
  1251. if (m_hot_area == ha_none)
  1252. return;
  1253. if (m_hot_area == ha_left_edge)
  1254. {
  1255. double new_left_edge = 1.0 / getWidth()*e.x;
  1256. m_therange.setStart(jlimit(0.0, m_therange.getEnd() - 0.01, new_left_edge));
  1257. repaint();
  1258. }
  1259. if (m_hot_area == ha_right_edge)
  1260. {
  1261. double new_right_edge = 1.0 / getWidth()*e.x;
  1262. m_therange.setEnd(jlimit(m_therange.getStart() + 0.01, 1.0, new_right_edge));
  1263. repaint();
  1264. }
  1265. if (m_hot_area == ha_handle)
  1266. {
  1267. double delta = 1.0 / getWidth()*(e.x - m_drag_start_x);
  1268. //double old_start = m_start;
  1269. //double old_end = m_end;
  1270. double old_len = m_therange.getLength();
  1271. m_therange.setStart(jlimit(0.0, 1.0 - old_len, m_therange.getStart() + delta));
  1272. m_therange.setEnd(jlimit(old_len, m_therange.getStart() + old_len, m_therange.getEnd() + delta));
  1273. m_drag_start_x = e.x;
  1274. repaint();
  1275. }
  1276. if (RangeChanged)
  1277. RangeChanged(m_therange);
  1278. }
  1279. void zoom_scrollbar::mouseEnter(const MouseEvent & event)
  1280. {
  1281. m_hot_area = get_hot_area(event.x, event.y);
  1282. repaint();
  1283. }
  1284. void zoom_scrollbar::mouseExit(const MouseEvent &)
  1285. {
  1286. m_hot_area = ha_none;
  1287. repaint();
  1288. }
  1289. void zoom_scrollbar::paint(Graphics &g)
  1290. {
  1291. g.setColour(Colours::darkgrey);
  1292. g.fillRect(0, 0, getWidth(), getHeight());
  1293. int x0 = (int)(getWidth()*m_therange.getStart());
  1294. int x1 = (int)(getWidth()*m_therange.getEnd());
  1295. if (m_hot_area != ha_none)
  1296. g.setColour(Colours::white);
  1297. else g.setColour(Colours::lightgrey);
  1298. g.fillRect(x0, 0, x1 - x0, getHeight());
  1299. }
  1300. void zoom_scrollbar::setRange(Range<double> rng, bool docallback)
  1301. {
  1302. if (rng.isEmpty())
  1303. return;
  1304. m_therange = rng.constrainRange({ 0.0,1.0 });
  1305. if (RangeChanged && docallback)
  1306. RangeChanged(m_therange);
  1307. repaint();
  1308. }
  1309. zoom_scrollbar::hot_area zoom_scrollbar::get_hot_area(int x, int)
  1310. {
  1311. int x0 = (int)(getWidth()*m_therange.getStart());
  1312. int x1 = (int)(getWidth()*m_therange.getEnd());
  1313. if (is_in_range(x, x0 - 5, x0 + 5))
  1314. return ha_left_edge;
  1315. if (is_in_range(x, x1 - 5, x1 + 5))
  1316. return ha_right_edge;
  1317. if (is_in_range(x, x0 + 5, x1 - 5))
  1318. return ha_handle;
  1319. return ha_none;
  1320. }
  1321. RatioMixerEditor::RatioMixerEditor(int numratios)
  1322. {
  1323. for (int i = 0; i < numratios; ++i)
  1324. {
  1325. auto ratslid = std::make_unique<Slider>(Slider::LinearHorizontal,Slider::TextBoxBelow);
  1326. ratslid->setRange(0.125, 8.0);
  1327. ratslid->onValueChange = [this,i]() {OnRatioChanged(i, m_ratio_sliders[i]->getValue()); };
  1328. addAndMakeVisible(ratslid.get());
  1329. m_ratio_sliders.emplace_back(std::move(ratslid));
  1330. auto ratlevslid = std::make_unique<Slider>();
  1331. ratlevslid->setRange(0.0, 1.0);
  1332. ratlevslid->setSliderStyle(Slider::LinearVertical);
  1333. if (i==3)
  1334. ratlevslid->setValue(1.0,dontSendNotification);
  1335. else ratlevslid->setValue(0.0,dontSendNotification);
  1336. ratlevslid->onValueChange = [this, i]() { OnRatioLevelChanged(i, m_ratio_level_sliders[i]->getValue()); };
  1337. addAndMakeVisible(ratlevslid.get());
  1338. m_ratio_level_sliders.emplace_back(std::move(ratlevslid));
  1339. }
  1340. startTimer(200);
  1341. setOpaque(true);
  1342. }
  1343. void RatioMixerEditor::resized()
  1344. {
  1345. int nsliders = m_ratio_sliders.size();
  1346. int slidw = getWidth() / nsliders;
  1347. for (int i = 0; i < nsliders; ++i)
  1348. {
  1349. m_ratio_level_sliders[i]->setBounds(slidw/2+slidw * i-10, 15, 20, getHeight() - 55);
  1350. m_ratio_sliders[i]->setBounds(slidw * i, getHeight() - 48, slidw - 5, 47);
  1351. }
  1352. }
  1353. void RatioMixerEditor::timerCallback()
  1354. {
  1355. if (!GetParameterValue)
  1356. return;
  1357. for (int i = 0; i < m_ratio_level_sliders.size(); ++i)
  1358. {
  1359. double v = GetParameterValue(0, i);
  1360. if (v!=m_ratio_sliders[i]->getValue())
  1361. m_ratio_sliders[i]->setValue(v, dontSendNotification);
  1362. v = GetParameterValue(1, i);
  1363. if (v!=m_ratio_level_sliders[i]->getValue())
  1364. m_ratio_level_sliders[i]->setValue(v, dontSendNotification);
  1365. }
  1366. }
  1367. void RatioMixerEditor::paint(Graphics & g)
  1368. {
  1369. g.fillAll(Colours::grey);
  1370. g.setColour(Colours::white);
  1371. int nsliders = m_ratio_sliders.size();
  1372. int slidw = getWidth() / nsliders;
  1373. for (int i = 0; i < 8; ++i)
  1374. g.drawText(String(i + 1), slidw / 2 + slidw * i - 8, 1, 15, 15, Justification::centred);
  1375. }