The JUCE cross-platform C++ framework, with DISTRHO/KXStudio specific changes
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  1. /*
  2. ==============================================================================
  3. This file is part of the JUCE library.
  4. Copyright (c) 2017 - ROLI Ltd.
  5. JUCE is an open source library subject to commercial or open-source
  6. licensing.
  7. By using JUCE, you agree to the terms of both the JUCE 5 End-User License
  8. Agreement and JUCE 5 Privacy Policy (both updated and effective as of the
  9. 27th April 2017).
  10. End User License Agreement: www.juce.com/juce-5-licence
  11. Privacy Policy: www.juce.com/juce-5-privacy-policy
  12. Or: You may also use this code under the terms of the GPL v3 (see
  13. www.gnu.org/licenses).
  14. JUCE IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL WARRANTIES, WHETHER
  15. EXPRESSED OR IMPLIED, INCLUDING MERCHANTABILITY AND FITNESS FOR PURPOSE, ARE
  16. DISCLAIMED.
  17. ==============================================================================
  18. */
  19. #include "../../juce_core/system/juce_TargetPlatform.h"
  20. #include "../utility/juce_CheckSettingMacros.h"
  21. #if JucePlugin_Build_AAX && (JUCE_INCLUDED_AAX_IN_MM || defined (_WIN32) || defined (_WIN64))
  22. #include "../utility/juce_IncludeSystemHeaders.h"
  23. #include "../utility/juce_IncludeModuleHeaders.h"
  24. #include "../utility/juce_WindowsHooks.h"
  25. #include "../utility/juce_FakeMouseMoveGenerator.h"
  26. #ifdef __clang__
  27. #pragma clang diagnostic push
  28. #pragma clang diagnostic ignored "-Wnon-virtual-dtor"
  29. #pragma clang diagnostic ignored "-Wsign-conversion"
  30. #pragma clang diagnostic ignored "-Wextra-semi"
  31. #endif
  32. #ifdef _MSC_VER
  33. #pragma warning (push)
  34. #pragma warning (disable : 4127 4512)
  35. #endif
  36. #include <AAX_Version.h>
  37. static_assert (AAX_SDK_CURRENT_REVISION >= AAX_SDK_2p3p0_REVISION, "JUCE requires AAX SDK version 2.3.0 or higher");
  38. #include <AAX_Exports.cpp>
  39. #include <AAX_ICollection.h>
  40. #include <AAX_IComponentDescriptor.h>
  41. #include <AAX_IEffectDescriptor.h>
  42. #include <AAX_IPropertyMap.h>
  43. #include <AAX_CEffectParameters.h>
  44. #include <AAX_Errors.h>
  45. #include <AAX_CBinaryTaperDelegate.h>
  46. #include <AAX_CBinaryDisplayDelegate.h>
  47. #include <AAX_CLinearTaperDelegate.h>
  48. #include <AAX_CNumberDisplayDelegate.h>
  49. #include <AAX_CEffectGUI.h>
  50. #include <AAX_IViewContainer.h>
  51. #include <AAX_ITransport.h>
  52. #include <AAX_IMIDINode.h>
  53. #include <AAX_UtilsNative.h>
  54. #include <AAX_Enums.h>
  55. #include <AAX_IDescriptionHost.h>
  56. #include <AAX_IFeatureInfo.h>
  57. #include <AAX_UIDs.h>
  58. #ifdef _MSC_VER
  59. #pragma warning (pop)
  60. #endif
  61. #ifdef __clang__
  62. #pragma clang diagnostic pop
  63. #endif
  64. #if JUCE_WINDOWS
  65. #ifndef JucePlugin_AAXLibs_path
  66. #error "You need to define the JucePlugin_AAXLibs_path macro. (This is best done via the Projucer)"
  67. #endif
  68. #if JUCE_64BIT
  69. #define JUCE_AAX_LIB "AAXLibrary_x64"
  70. #else
  71. #define JUCE_AAX_LIB "AAXLibrary"
  72. #endif
  73. #if JUCE_DEBUG
  74. #define JUCE_AAX_LIB_PATH "\\Debug\\"
  75. #define JUCE_AAX_LIB_SUFFIX "_D"
  76. #else
  77. #define JUCE_AAX_LIB_PATH "\\Release\\"
  78. #define JUCE_AAX_LIB_SUFFIX ""
  79. #endif
  80. #pragma comment(lib, JucePlugin_AAXLibs_path JUCE_AAX_LIB_PATH JUCE_AAX_LIB JUCE_AAX_LIB_SUFFIX ".lib")
  81. #endif
  82. #undef check
  83. #include "juce_AAX_Modifier_Injector.h"
  84. using namespace juce;
  85. #ifndef JucePlugin_AAX_Chunk_Identifier
  86. #define JucePlugin_AAX_Chunk_Identifier 'juce'
  87. #endif
  88. const int32_t juceChunkType = JucePlugin_AAX_Chunk_Identifier;
  89. //==============================================================================
  90. namespace AAXClasses
  91. {
  92. static int32 getAAXParamHash (AAX_CParamID paramID) noexcept
  93. {
  94. int32 result = 0;
  95. while (*paramID != 0)
  96. result = (31 * result) + (*paramID++);
  97. return result;
  98. }
  99. static void check (AAX_Result result)
  100. {
  101. jassert (result == AAX_SUCCESS); ignoreUnused (result);
  102. }
  103. static bool isBypassParam (AAX_CParamID paramID) noexcept
  104. {
  105. return AAX::IsParameterIDEqual (paramID, cDefaultMasterBypassID) != 0;
  106. }
  107. // maps a channel index of an AAX format to an index of a juce format
  108. struct AAXChannelStreamOrder
  109. {
  110. AAX_EStemFormat aaxStemFormat;
  111. AudioChannelSet::ChannelType speakerOrder[10];
  112. };
  113. static AAX_EStemFormat stemFormatForAmbisonicOrder (int order)
  114. {
  115. switch (order)
  116. {
  117. case 1: return AAX_eStemFormat_Ambi_1_ACN;
  118. case 2: return AAX_eStemFormat_Ambi_2_ACN;
  119. case 3: return AAX_eStemFormat_Ambi_3_ACN;
  120. default: break;
  121. }
  122. return AAX_eStemFormat_INT32_MAX;
  123. }
  124. static AAXChannelStreamOrder aaxChannelOrder[] =
  125. {
  126. { AAX_eStemFormat_Mono, { AudioChannelSet::centre, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  127. { AAX_eStemFormat_Stereo, { AudioChannelSet::left, AudioChannelSet::right, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  128. { AAX_eStemFormat_LCR, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  129. { AAX_eStemFormat_LCRS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::centreSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  130. { AAX_eStemFormat_Quad, { AudioChannelSet::left, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  131. { AAX_eStemFormat_5_0, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  132. { AAX_eStemFormat_5_1, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  133. { AAX_eStemFormat_6_0, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::centreSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  134. { AAX_eStemFormat_6_1, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::centreSurround, AudioChannelSet::rightSurround, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  135. { AAX_eStemFormat_7_0_SDDS, { AudioChannelSet::left, AudioChannelSet::leftCentre, AudioChannelSet::centre, AudioChannelSet::rightCentre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  136. { AAX_eStemFormat_7_0_DTS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide, AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  137. { AAX_eStemFormat_7_1_SDDS, { AudioChannelSet::left, AudioChannelSet::leftCentre, AudioChannelSet::centre, AudioChannelSet::rightCentre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  138. { AAX_eStemFormat_7_1_DTS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide, AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  139. { AAX_eStemFormat_7_0_2, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide, AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::topSideLeft, AudioChannelSet::topSideRight, AudioChannelSet::unknown } },
  140. { AAX_eStemFormat_7_1_2, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide, AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::LFE, AudioChannelSet::topSideLeft, AudioChannelSet::topSideRight } },
  141. { AAX_eStemFormat_None, { AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  142. };
  143. static AAX_EStemFormat aaxFormats[] =
  144. {
  145. AAX_eStemFormat_Mono,
  146. AAX_eStemFormat_Stereo,
  147. AAX_eStemFormat_LCR,
  148. AAX_eStemFormat_LCRS,
  149. AAX_eStemFormat_Quad,
  150. AAX_eStemFormat_5_0,
  151. AAX_eStemFormat_5_1,
  152. AAX_eStemFormat_6_0,
  153. AAX_eStemFormat_6_1,
  154. AAX_eStemFormat_7_0_SDDS,
  155. AAX_eStemFormat_7_1_SDDS,
  156. AAX_eStemFormat_7_0_DTS,
  157. AAX_eStemFormat_7_1_DTS,
  158. AAX_eStemFormat_7_0_2,
  159. AAX_eStemFormat_7_1_2,
  160. AAX_eStemFormat_Ambi_1_ACN,
  161. AAX_eStemFormat_Ambi_2_ACN,
  162. AAX_eStemFormat_Ambi_3_ACN
  163. };
  164. static AAX_EStemFormat getFormatForAudioChannelSet (const AudioChannelSet& set, bool ignoreLayout) noexcept
  165. {
  166. // if the plug-in ignores layout, it is ok to convert between formats only by their numchannnels
  167. if (ignoreLayout)
  168. {
  169. auto numChannels = set.size();
  170. switch (numChannels)
  171. {
  172. case 0: return AAX_eStemFormat_None;
  173. case 1: return AAX_eStemFormat_Mono;
  174. case 2: return AAX_eStemFormat_Stereo;
  175. case 3: return AAX_eStemFormat_LCR;
  176. case 4: return AAX_eStemFormat_Quad;
  177. case 5: return AAX_eStemFormat_5_0;
  178. case 6: return AAX_eStemFormat_5_1;
  179. case 7: return AAX_eStemFormat_7_0_DTS;
  180. case 8: return AAX_eStemFormat_7_1_DTS;
  181. case 9: return AAX_eStemFormat_7_0_2;
  182. case 10: return AAX_eStemFormat_7_1_2;
  183. default: break;
  184. }
  185. // check for ambisonics support
  186. auto sqrtMinusOne = std::sqrt (static_cast<float> (numChannels)) - 1.0f;
  187. auto ambisonicOrder = jmax (0, static_cast<int> (std::floor (sqrtMinusOne)));
  188. if (static_cast<float> (ambisonicOrder) == sqrtMinusOne)
  189. return stemFormatForAmbisonicOrder (ambisonicOrder);
  190. return AAX_eStemFormat_INT32_MAX;
  191. }
  192. if (set == AudioChannelSet::disabled()) return AAX_eStemFormat_None;
  193. if (set == AudioChannelSet::mono()) return AAX_eStemFormat_Mono;
  194. if (set == AudioChannelSet::stereo()) return AAX_eStemFormat_Stereo;
  195. if (set == AudioChannelSet::createLCR()) return AAX_eStemFormat_LCR;
  196. if (set == AudioChannelSet::createLCRS()) return AAX_eStemFormat_LCRS;
  197. if (set == AudioChannelSet::quadraphonic()) return AAX_eStemFormat_Quad;
  198. if (set == AudioChannelSet::create5point0()) return AAX_eStemFormat_5_0;
  199. if (set == AudioChannelSet::create5point1()) return AAX_eStemFormat_5_1;
  200. if (set == AudioChannelSet::create6point0()) return AAX_eStemFormat_6_0;
  201. if (set == AudioChannelSet::create6point1()) return AAX_eStemFormat_6_1;
  202. if (set == AudioChannelSet::create7point0()) return AAX_eStemFormat_7_0_DTS;
  203. if (set == AudioChannelSet::create7point1()) return AAX_eStemFormat_7_1_DTS;
  204. if (set == AudioChannelSet::create7point0SDDS()) return AAX_eStemFormat_7_0_SDDS;
  205. if (set == AudioChannelSet::create7point1SDDS()) return AAX_eStemFormat_7_1_SDDS;
  206. if (set == AudioChannelSet::create7point0point2()) return AAX_eStemFormat_7_0_2;
  207. if (set == AudioChannelSet::create7point1point2()) return AAX_eStemFormat_7_1_2;
  208. auto order = set.getAmbisonicOrder();
  209. if (order >= 0)
  210. return stemFormatForAmbisonicOrder (order);
  211. return AAX_eStemFormat_INT32_MAX;
  212. }
  213. static AudioChannelSet channelSetFromStemFormat (AAX_EStemFormat format, bool ignoreLayout) noexcept
  214. {
  215. if (! ignoreLayout)
  216. {
  217. switch (format)
  218. {
  219. case AAX_eStemFormat_None: return AudioChannelSet::disabled();
  220. case AAX_eStemFormat_Mono: return AudioChannelSet::mono();
  221. case AAX_eStemFormat_Stereo: return AudioChannelSet::stereo();
  222. case AAX_eStemFormat_LCR: return AudioChannelSet::createLCR();
  223. case AAX_eStemFormat_LCRS: return AudioChannelSet::createLCRS();
  224. case AAX_eStemFormat_Quad: return AudioChannelSet::quadraphonic();
  225. case AAX_eStemFormat_5_0: return AudioChannelSet::create5point0();
  226. case AAX_eStemFormat_5_1: return AudioChannelSet::create5point1();
  227. case AAX_eStemFormat_6_0: return AudioChannelSet::create6point0();
  228. case AAX_eStemFormat_6_1: return AudioChannelSet::create6point1();
  229. case AAX_eStemFormat_7_0_SDDS: return AudioChannelSet::create7point0SDDS();
  230. case AAX_eStemFormat_7_0_DTS: return AudioChannelSet::create7point0();
  231. case AAX_eStemFormat_7_1_SDDS: return AudioChannelSet::create7point1SDDS();
  232. case AAX_eStemFormat_7_1_DTS: return AudioChannelSet::create7point1();
  233. case AAX_eStemFormat_7_0_2: return AudioChannelSet::create7point0point2();
  234. case AAX_eStemFormat_7_1_2: return AudioChannelSet::create7point1point2();
  235. case AAX_eStemFormat_Ambi_1_ACN: return AudioChannelSet::ambisonic (1);
  236. case AAX_eStemFormat_Ambi_2_ACN: return AudioChannelSet::ambisonic (2);
  237. case AAX_eStemFormat_Ambi_3_ACN: return AudioChannelSet::ambisonic (3);
  238. default: return AudioChannelSet::disabled();
  239. }
  240. }
  241. return AudioChannelSet::discreteChannels (jmax (0, static_cast<int> (AAX_STEM_FORMAT_CHANNEL_COUNT (format))));
  242. }
  243. static AAX_EMeterType getMeterTypeForCategory (AudioProcessorParameter::Category category)
  244. {
  245. switch (category)
  246. {
  247. case AudioProcessorParameter::inputMeter: return AAX_eMeterType_Input;
  248. case AudioProcessorParameter::outputMeter: return AAX_eMeterType_Output;
  249. case AudioProcessorParameter::compressorLimiterGainReductionMeter: return AAX_eMeterType_CLGain;
  250. case AudioProcessorParameter::expanderGateGainReductionMeter: return AAX_eMeterType_EGGain;
  251. case AudioProcessorParameter::analysisMeter: return AAX_eMeterType_Analysis;
  252. default: return AAX_eMeterType_Other;
  253. }
  254. }
  255. static Colour getColourFromHighlightEnum (AAX_EHighlightColor colour) noexcept
  256. {
  257. switch (colour)
  258. {
  259. case AAX_eHighlightColor_Red: return Colours::red;
  260. case AAX_eHighlightColor_Blue: return Colours::blue;
  261. case AAX_eHighlightColor_Green: return Colours::green;
  262. case AAX_eHighlightColor_Yellow: return Colours::yellow;
  263. default: jassertfalse; break;
  264. }
  265. return Colours::black;
  266. }
  267. static int juceChannelIndexToAax (int juceIndex, const AudioChannelSet& channelSet)
  268. {
  269. auto isAmbisonic = (channelSet.getAmbisonicOrder() >= 0);
  270. auto currentLayout = getFormatForAudioChannelSet (channelSet, false);
  271. int layoutIndex;
  272. if (isAmbisonic && currentLayout != AAX_eStemFormat_INT32_MAX)
  273. return juceIndex;
  274. for (layoutIndex = 0; aaxChannelOrder[layoutIndex].aaxStemFormat != currentLayout; ++layoutIndex)
  275. if (aaxChannelOrder[layoutIndex].aaxStemFormat == 0) return juceIndex;
  276. auto& channelOrder = aaxChannelOrder[layoutIndex];
  277. auto channelType = channelSet.getTypeOfChannel (static_cast<int> (juceIndex));
  278. auto numSpeakers = numElementsInArray (channelOrder.speakerOrder);
  279. for (int i = 0; i < numSpeakers && channelOrder.speakerOrder[i] != 0; ++i)
  280. if (channelOrder.speakerOrder[i] == channelType)
  281. return i;
  282. return juceIndex;
  283. }
  284. //==============================================================================
  285. class JuceAAX_Processor;
  286. struct PluginInstanceInfo
  287. {
  288. PluginInstanceInfo (JuceAAX_Processor& p) : parameters (p) {}
  289. JuceAAX_Processor& parameters;
  290. JUCE_DECLARE_NON_COPYABLE (PluginInstanceInfo)
  291. };
  292. //==============================================================================
  293. struct JUCEAlgorithmContext
  294. {
  295. float** inputChannels;
  296. float** outputChannels;
  297. int32_t* bufferSize;
  298. int32_t* bypass;
  299. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  300. AAX_IMIDINode* midiNodeIn;
  301. #endif
  302. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  303. AAX_IMIDINode* midiNodeOut;
  304. #endif
  305. PluginInstanceInfo* pluginInstance;
  306. int32_t* isPrepared;
  307. float* const* meterTapBuffers;
  308. int32_t* sideChainBuffers;
  309. };
  310. struct JUCEAlgorithmIDs
  311. {
  312. enum
  313. {
  314. inputChannels = AAX_FIELD_INDEX (JUCEAlgorithmContext, inputChannels),
  315. outputChannels = AAX_FIELD_INDEX (JUCEAlgorithmContext, outputChannels),
  316. bufferSize = AAX_FIELD_INDEX (JUCEAlgorithmContext, bufferSize),
  317. bypass = AAX_FIELD_INDEX (JUCEAlgorithmContext, bypass),
  318. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  319. midiNodeIn = AAX_FIELD_INDEX (JUCEAlgorithmContext, midiNodeIn),
  320. #endif
  321. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  322. midiNodeOut = AAX_FIELD_INDEX (JUCEAlgorithmContext, midiNodeOut),
  323. #endif
  324. pluginInstance = AAX_FIELD_INDEX (JUCEAlgorithmContext, pluginInstance),
  325. preparedFlag = AAX_FIELD_INDEX (JUCEAlgorithmContext, isPrepared),
  326. meterTapBuffers = AAX_FIELD_INDEX (JUCEAlgorithmContext, meterTapBuffers),
  327. sideChainBuffers = AAX_FIELD_INDEX (JUCEAlgorithmContext, sideChainBuffers)
  328. };
  329. };
  330. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  331. static AAX_IMIDINode* getMidiNodeIn (const JUCEAlgorithmContext& c) noexcept { return c.midiNodeIn; }
  332. #else
  333. static AAX_IMIDINode* getMidiNodeIn (const JUCEAlgorithmContext&) noexcept { return nullptr; }
  334. #endif
  335. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  336. AAX_IMIDINode* midiNodeOut;
  337. static AAX_IMIDINode* getMidiNodeOut (const JUCEAlgorithmContext& c) noexcept { return c.midiNodeOut; }
  338. #else
  339. static AAX_IMIDINode* getMidiNodeOut (const JUCEAlgorithmContext&) noexcept { return nullptr; }
  340. #endif
  341. //==============================================================================
  342. class JuceAAX_Processor;
  343. class JuceAAX_GUI : public AAX_CEffectGUI,
  344. public ModifierKeyProvider
  345. {
  346. public:
  347. JuceAAX_GUI() {}
  348. ~JuceAAX_GUI() { DeleteViewContainer(); }
  349. static AAX_IEffectGUI* AAX_CALLBACK Create() { return new JuceAAX_GUI(); }
  350. void CreateViewContents() override;
  351. void CreateViewContainer() override
  352. {
  353. CreateViewContents();
  354. if (void* nativeViewToAttachTo = GetViewContainerPtr())
  355. {
  356. #if JUCE_MAC
  357. if (GetViewContainerType() == AAX_eViewContainer_Type_NSView)
  358. #else
  359. if (GetViewContainerType() == AAX_eViewContainer_Type_HWND)
  360. #endif
  361. {
  362. component->setVisible (true);
  363. component->addToDesktop (0, nativeViewToAttachTo);
  364. if (ModifierKeyReceiver* modReceiver = dynamic_cast<ModifierKeyReceiver*> (component->getPeer()))
  365. modReceiver->setModifierKeyProvider (this);
  366. }
  367. }
  368. }
  369. void DeleteViewContainer() override
  370. {
  371. if (component != nullptr)
  372. {
  373. JUCE_AUTORELEASEPOOL
  374. {
  375. if (auto* modReceiver = dynamic_cast<ModifierKeyReceiver*> (component->getPeer()))
  376. modReceiver->removeModifierKeyProvider();
  377. component->removeFromDesktop();
  378. component = nullptr;
  379. }
  380. }
  381. }
  382. AAX_Result GetViewSize (AAX_Point* viewSize) const override
  383. {
  384. if (component != nullptr)
  385. {
  386. viewSize->horz = (float) component->getWidth();
  387. viewSize->vert = (float) component->getHeight();
  388. return AAX_SUCCESS;
  389. }
  390. return AAX_ERROR_NULL_OBJECT;
  391. }
  392. AAX_Result ParameterUpdated (AAX_CParamID) override
  393. {
  394. return AAX_SUCCESS;
  395. }
  396. AAX_Result SetControlHighlightInfo (AAX_CParamID paramID, AAX_CBoolean isHighlighted, AAX_EHighlightColor colour) override
  397. {
  398. if (component != nullptr && component->pluginEditor != nullptr)
  399. {
  400. if (! isBypassParam (paramID))
  401. {
  402. AudioProcessorEditor::ParameterControlHighlightInfo info;
  403. info.parameterIndex = getParamIndexFromID (paramID);
  404. info.isHighlighted = (isHighlighted != 0);
  405. info.suggestedColour = getColourFromHighlightEnum (colour);
  406. component->pluginEditor->setControlHighlight (info);
  407. }
  408. return AAX_SUCCESS;
  409. }
  410. return AAX_ERROR_NULL_OBJECT;
  411. }
  412. int getWin32Modifiers() const override
  413. {
  414. int modifierFlags = 0;
  415. if (auto* viewContainer = GetViewContainer())
  416. {
  417. uint32 aaxViewMods = 0;
  418. const_cast<AAX_IViewContainer*> (viewContainer)->GetModifiers (&aaxViewMods);
  419. if ((aaxViewMods & AAX_eModifiers_Shift) != 0) modifierFlags |= ModifierKeys::shiftModifier;
  420. if ((aaxViewMods & AAX_eModifiers_Alt ) != 0) modifierFlags |= ModifierKeys::altModifier;
  421. }
  422. return modifierFlags;
  423. }
  424. private:
  425. //==============================================================================
  426. int getParamIndexFromID (AAX_CParamID paramID) const noexcept;
  427. AAX_CParamID getAAXParamIDFromJuceIndex (int index) const noexcept;
  428. //==============================================================================
  429. struct ContentWrapperComponent : public Component
  430. {
  431. ContentWrapperComponent (JuceAAX_GUI& gui, AudioProcessor& plugin)
  432. : owner (gui)
  433. {
  434. setOpaque (true);
  435. setBroughtToFrontOnMouseClick (true);
  436. addAndMakeVisible (pluginEditor = plugin.createEditorIfNeeded());
  437. if (pluginEditor != nullptr)
  438. {
  439. setBounds (pluginEditor->getLocalBounds());
  440. pluginEditor->addMouseListener (this, true);
  441. }
  442. ignoreUnused (fakeMouseGenerator);
  443. }
  444. ~ContentWrapperComponent()
  445. {
  446. if (pluginEditor != nullptr)
  447. {
  448. PopupMenu::dismissAllActiveMenus();
  449. pluginEditor->removeMouseListener (this);
  450. pluginEditor->processor.editorBeingDeleted (pluginEditor);
  451. }
  452. }
  453. void paint (Graphics& g) override
  454. {
  455. g.fillAll (Colours::black);
  456. }
  457. template <typename MethodType>
  458. void callMouseMethod (const MouseEvent& e, MethodType method)
  459. {
  460. if (auto* vc = owner.GetViewContainer())
  461. {
  462. auto parameterIndex = pluginEditor->getControlParameterIndex (*e.eventComponent);
  463. if (auto aaxParamID = owner.getAAXParamIDFromJuceIndex (parameterIndex))
  464. {
  465. uint32_t mods = 0;
  466. vc->GetModifiers (&mods);
  467. (vc->*method) (aaxParamID, mods);
  468. }
  469. }
  470. }
  471. void mouseDown (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseDown); }
  472. void mouseUp (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseUp); }
  473. void mouseDrag (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseDrag); }
  474. void childBoundsChanged (Component*) override
  475. {
  476. if (pluginEditor != nullptr)
  477. {
  478. auto w = pluginEditor->getWidth();
  479. auto h = pluginEditor->getHeight();
  480. setSize (w, h);
  481. AAX_Point newSize ((float) h, (float) w);
  482. owner.GetViewContainer()->SetViewSize (newSize);
  483. }
  484. }
  485. ScopedPointer<AudioProcessorEditor> pluginEditor;
  486. JuceAAX_GUI& owner;
  487. #if JUCE_WINDOWS
  488. WindowsHooks hooks;
  489. #endif
  490. FakeMouseMoveGenerator fakeMouseGenerator;
  491. JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (ContentWrapperComponent)
  492. };
  493. ScopedPointer<ContentWrapperComponent> component;
  494. ScopedJuceInitialiser_GUI libraryInitialiser;
  495. JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceAAX_GUI)
  496. };
  497. static void AAX_CALLBACK algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd);
  498. //==============================================================================
  499. class JuceAAX_Processor : public AAX_CEffectParameters,
  500. public juce::AudioPlayHead,
  501. public AudioProcessorListener,
  502. private AsyncUpdater
  503. {
  504. public:
  505. JuceAAX_Processor()
  506. : pluginInstance (createPluginFilterOfType (AudioProcessor::wrapperType_AAX))
  507. {
  508. pluginInstance->setPlayHead (this);
  509. pluginInstance->addListener (this);
  510. rebuildChannelMapArrays();
  511. AAX_CEffectParameters::GetNumberOfChunks (&juceChunkIndex);
  512. }
  513. static AAX_CEffectParameters* AAX_CALLBACK Create()
  514. {
  515. PluginHostType::jucePlugInClientCurrentWrapperType = AudioProcessor::wrapperType_AAX;
  516. return new JuceAAX_Processor();
  517. }
  518. AAX_Result Uninitialize() override
  519. {
  520. cancelPendingUpdate();
  521. if (isPrepared && pluginInstance != nullptr)
  522. {
  523. isPrepared = false;
  524. processingSidechainChange.set (0);
  525. pluginInstance->releaseResources();
  526. }
  527. return AAX_CEffectParameters::Uninitialize();
  528. }
  529. AAX_Result EffectInit() override
  530. {
  531. cancelPendingUpdate();
  532. check (Controller()->GetSampleRate (&sampleRate));
  533. processingSidechainChange.set (0);
  534. auto err = preparePlugin();
  535. if (err != AAX_SUCCESS)
  536. return err;
  537. addBypassParameter();
  538. addAudioProcessorParameters();
  539. return AAX_SUCCESS;
  540. }
  541. AAX_Result GetNumberOfChunks (int32_t* numChunks) const override
  542. {
  543. // The juceChunk is the last chunk.
  544. *numChunks = juceChunkIndex + 1;
  545. return AAX_SUCCESS;
  546. }
  547. AAX_Result GetChunkIDFromIndex (int32_t index, AAX_CTypeID* chunkID) const override
  548. {
  549. if (index != juceChunkIndex)
  550. return AAX_CEffectParameters::GetChunkIDFromIndex (index, chunkID);
  551. *chunkID = juceChunkType;
  552. return AAX_SUCCESS;
  553. }
  554. AAX_Result GetChunkSize (AAX_CTypeID chunkID, uint32_t* oSize) const override
  555. {
  556. if (chunkID != juceChunkType)
  557. return AAX_CEffectParameters::GetChunkSize (chunkID, oSize);
  558. auto& chunkMemoryBlock = perThreadFilterData.get();
  559. chunkMemoryBlock.data.reset();
  560. pluginInstance->getStateInformation (chunkMemoryBlock.data);
  561. chunkMemoryBlock.isValid = true;
  562. *oSize = (uint32_t) chunkMemoryBlock.data.getSize();
  563. return AAX_SUCCESS;
  564. }
  565. AAX_Result GetChunk (AAX_CTypeID chunkID, AAX_SPlugInChunk* oChunk) const override
  566. {
  567. if (chunkID != juceChunkType)
  568. return AAX_CEffectParameters::GetChunk (chunkID, oChunk);
  569. auto& chunkMemoryBlock = perThreadFilterData.get();
  570. if (! chunkMemoryBlock.isValid)
  571. return 20700; // AAX_ERROR_PLUGIN_API_INVALID_THREAD
  572. oChunk->fSize = (int32_t) chunkMemoryBlock.data.getSize();
  573. chunkMemoryBlock.data.copyTo (oChunk->fData, 0, chunkMemoryBlock.data.getSize());
  574. chunkMemoryBlock.isValid = false;
  575. return AAX_SUCCESS;
  576. }
  577. AAX_Result SetChunk (AAX_CTypeID chunkID, const AAX_SPlugInChunk* chunk) override
  578. {
  579. if (chunkID != juceChunkType)
  580. return AAX_CEffectParameters::SetChunk (chunkID, chunk);
  581. pluginInstance->setStateInformation ((void*) chunk->fData, chunk->fSize);
  582. // Notify Pro Tools that the parameters were updated.
  583. // Without it a bug happens in these circumstances:
  584. // * A preset is saved with the RTAS version of the plugin (".tfx" preset format).
  585. // * The preset is loaded in PT 10 using the AAX version.
  586. // * The session is then saved, and closed.
  587. // * The saved session is loaded, but acting as if the preset was never loaded.
  588. auto numParameters = pluginInstance->getNumParameters();
  589. for (int i = 0; i < numParameters; ++i)
  590. if (auto paramID = getAAXParamIDFromJuceIndex(i))
  591. SetParameterNormalizedValue (paramID, (double) pluginInstance->getParameter(i));
  592. return AAX_SUCCESS;
  593. }
  594. AAX_Result ResetFieldData (AAX_CFieldIndex fieldIndex, void* data, uint32_t dataSize) const override
  595. {
  596. switch (fieldIndex)
  597. {
  598. case JUCEAlgorithmIDs::pluginInstance:
  599. {
  600. auto numObjects = dataSize / sizeof (PluginInstanceInfo);
  601. auto* objects = static_cast<PluginInstanceInfo*> (data);
  602. jassert (numObjects == 1); // not sure how to handle more than one..
  603. for (size_t i = 0; i < numObjects; ++i)
  604. new (objects + i) PluginInstanceInfo (const_cast<JuceAAX_Processor&> (*this));
  605. break;
  606. }
  607. case JUCEAlgorithmIDs::preparedFlag:
  608. {
  609. const_cast<JuceAAX_Processor*>(this)->preparePlugin();
  610. auto numObjects = dataSize / sizeof (uint32_t);
  611. auto* objects = static_cast<uint32_t*> (data);
  612. for (size_t i = 0; i < numObjects; ++i)
  613. objects[i] = 1;
  614. break;
  615. }
  616. case JUCEAlgorithmIDs::meterTapBuffers:
  617. {
  618. // this is a dummy field only when there are no aaxMeters
  619. jassert (aaxMeters.size() == 0);
  620. {
  621. auto numObjects = dataSize / sizeof (float*);
  622. auto* objects = static_cast<float**> (data);
  623. for (size_t i = 0; i < numObjects; ++i)
  624. objects[i] = nullptr;
  625. }
  626. break;
  627. }
  628. }
  629. return AAX_SUCCESS;
  630. }
  631. AAX_Result UpdateParameterNormalizedValue (AAX_CParamID paramID, double value, AAX_EUpdateSource source) override
  632. {
  633. auto result = AAX_CEffectParameters::UpdateParameterNormalizedValue (paramID, value, source);
  634. if (! isBypassParam (paramID))
  635. pluginInstance->setParameter (getParamIndexFromID (paramID), (float) value);
  636. return result;
  637. }
  638. AAX_Result GetParameterValueFromString (AAX_CParamID paramID, double* result, const AAX_IString& text) const override
  639. {
  640. if (isBypassParam (paramID))
  641. {
  642. *result = (text.Get()[0] == 'B') ? 1.0 : 0.0;
  643. return AAX_SUCCESS;
  644. }
  645. if (AudioProcessorParameter* param = pluginInstance->getParameters() [getParamIndexFromID (paramID)])
  646. {
  647. *result = param->getValueForText (text.Get());
  648. return AAX_SUCCESS;
  649. }
  650. return AAX_CEffectParameters::GetParameterValueFromString (paramID, result, text);
  651. }
  652. AAX_Result GetParameterStringFromValue (AAX_CParamID paramID, double value, AAX_IString* result, int32_t maxLen) const override
  653. {
  654. if (isBypassParam (paramID))
  655. {
  656. result->Set (value == 0 ? "Off" : (maxLen >= 8 ? "Bypassed" : "Byp"));
  657. }
  658. else
  659. {
  660. auto paramIndex = getParamIndexFromID (paramID);
  661. juce::String text;
  662. if (auto* param = pluginInstance->getParameters() [paramIndex])
  663. text = param->getText ((float) value, maxLen);
  664. else
  665. text = pluginInstance->getParameterText (paramIndex, maxLen);
  666. result->Set (text.toRawUTF8());
  667. }
  668. return AAX_SUCCESS;
  669. }
  670. AAX_Result GetParameterNumberofSteps (AAX_CParamID paramID, int32_t* result) const
  671. {
  672. if (isBypassParam (paramID))
  673. *result = 2;
  674. else
  675. *result = pluginInstance->getParameterNumSteps (getParamIndexFromID (paramID));
  676. return AAX_SUCCESS;
  677. }
  678. AAX_Result GetParameterNormalizedValue (AAX_CParamID paramID, double* result) const override
  679. {
  680. if (isBypassParam (paramID))
  681. return AAX_CEffectParameters::GetParameterNormalizedValue (paramID, result);
  682. *result = pluginInstance->getParameter (getParamIndexFromID (paramID));
  683. return AAX_SUCCESS;
  684. }
  685. AAX_Result SetParameterNormalizedValue (AAX_CParamID paramID, double newValue) override
  686. {
  687. if (isBypassParam (paramID))
  688. return AAX_CEffectParameters::SetParameterNormalizedValue (paramID, newValue);
  689. if (auto* p = mParameterManager.GetParameterByID (paramID))
  690. p->SetValueWithFloat ((float) newValue);
  691. pluginInstance->setParameter (getParamIndexFromID (paramID), (float) newValue);
  692. return AAX_SUCCESS;
  693. }
  694. AAX_Result SetParameterNormalizedRelative (AAX_CParamID paramID, double newDeltaValue) override
  695. {
  696. if (isBypassParam (paramID))
  697. return AAX_CEffectParameters::SetParameterNormalizedRelative (paramID, newDeltaValue);
  698. auto paramIndex = getParamIndexFromID (paramID);
  699. auto newValue = pluginInstance->getParameter (paramIndex) + (float) newDeltaValue;
  700. pluginInstance->setParameter (paramIndex, jlimit (0.0f, 1.0f, newValue));
  701. if (auto* p = mParameterManager.GetParameterByID (paramID))
  702. p->SetValueWithFloat (newValue);
  703. return AAX_SUCCESS;
  704. }
  705. AAX_Result GetParameterNameOfLength (AAX_CParamID paramID, AAX_IString* result, int32_t maxLen) const override
  706. {
  707. if (isBypassParam (paramID))
  708. result->Set (maxLen >= 13 ? "Master Bypass"
  709. : (maxLen >= 8 ? "Mast Byp"
  710. : (maxLen >= 6 ? "MstByp" : "MByp")));
  711. else
  712. result->Set (pluginInstance->getParameterName (getParamIndexFromID (paramID), maxLen).toRawUTF8());
  713. return AAX_SUCCESS;
  714. }
  715. AAX_Result GetParameterName (AAX_CParamID paramID, AAX_IString* result) const override
  716. {
  717. if (isBypassParam (paramID))
  718. result->Set ("Master Bypass");
  719. else
  720. result->Set (pluginInstance->getParameterName (getParamIndexFromID (paramID), 31).toRawUTF8());
  721. return AAX_SUCCESS;
  722. }
  723. AAX_Result GetParameterDefaultNormalizedValue (AAX_CParamID paramID, double* result) const override
  724. {
  725. if (! isBypassParam (paramID))
  726. {
  727. *result = (double) pluginInstance->getParameterDefaultValue (getParamIndexFromID (paramID));
  728. jassert (*result >= 0 && *result <= 1.0f);
  729. }
  730. return AAX_SUCCESS;
  731. }
  732. AudioProcessor& getPluginInstance() const noexcept { return *pluginInstance; }
  733. bool getCurrentPosition (juce::AudioPlayHead::CurrentPositionInfo& info) override
  734. {
  735. const AAX_ITransport& transport = *Transport();
  736. info.bpm = 0.0;
  737. check (transport.GetCurrentTempo (&info.bpm));
  738. int32_t num = 4, den = 4;
  739. transport.GetCurrentMeter (&num, &den);
  740. info.timeSigNumerator = (int) num;
  741. info.timeSigDenominator = (int) den;
  742. info.timeInSamples = 0;
  743. if (transport.IsTransportPlaying (&info.isPlaying) != AAX_SUCCESS)
  744. info.isPlaying = false;
  745. if (info.isPlaying
  746. || transport.GetTimelineSelectionStartPosition (&info.timeInSamples) != AAX_SUCCESS)
  747. check (transport.GetCurrentNativeSampleLocation (&info.timeInSamples));
  748. info.timeInSeconds = info.timeInSamples / sampleRate;
  749. int64_t ticks = 0;
  750. check (transport.GetCurrentTickPosition (&ticks));
  751. info.ppqPosition = ticks / 960000.0;
  752. info.isLooping = false;
  753. int64_t loopStartTick = 0, loopEndTick = 0;
  754. check (transport.GetCurrentLoopPosition (&info.isLooping, &loopStartTick, &loopEndTick));
  755. info.ppqLoopStart = loopStartTick / 960000.0;
  756. info.ppqLoopEnd = loopEndTick / 960000.0;
  757. info.editOriginTime = 0;
  758. info.frameRate = AudioPlayHead::fpsUnknown;
  759. AAX_EFrameRate frameRate;
  760. int32_t offset;
  761. if (transport.GetTimeCodeInfo (&frameRate, &offset) == AAX_SUCCESS)
  762. {
  763. double framesPerSec = 24.0;
  764. switch (frameRate)
  765. {
  766. case AAX_eFrameRate_Undeclared: break;
  767. case AAX_eFrameRate_24Frame: info.frameRate = AudioPlayHead::fps24; break;
  768. case AAX_eFrameRate_25Frame: info.frameRate = AudioPlayHead::fps25; framesPerSec = 25.0; break;
  769. case AAX_eFrameRate_2997NonDrop: info.frameRate = AudioPlayHead::fps2997; framesPerSec = 30.0 * 1000.0 / 1001.0; break;
  770. case AAX_eFrameRate_2997DropFrame: info.frameRate = AudioPlayHead::fps2997drop; framesPerSec = 30.0 * 1000.0 / 1001.0; break;
  771. case AAX_eFrameRate_30NonDrop: info.frameRate = AudioPlayHead::fps30; framesPerSec = 30.0; break;
  772. case AAX_eFrameRate_30DropFrame: info.frameRate = AudioPlayHead::fps30drop; framesPerSec = 30.0; break;
  773. case AAX_eFrameRate_23976: info.frameRate = AudioPlayHead::fps23976; framesPerSec = 24.0 * 1000.0 / 1001.0; break;
  774. default: break;
  775. }
  776. info.editOriginTime = offset / framesPerSec;
  777. }
  778. // No way to get these: (?)
  779. info.isRecording = false;
  780. info.ppqPositionOfLastBarStart = 0;
  781. return true;
  782. }
  783. void audioProcessorParameterChanged (AudioProcessor* /*processor*/, int parameterIndex, float newValue) override
  784. {
  785. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  786. SetParameterNormalizedValue (paramID, (double) newValue);
  787. }
  788. void audioProcessorChanged (AudioProcessor* processor) override
  789. {
  790. ++mNumPlugInChanges;
  791. auto numParameters = pluginInstance->getNumParameters();
  792. for (int i = 0; i < numParameters; ++i)
  793. {
  794. if (auto* p = mParameterManager.GetParameterByID (getAAXParamIDFromJuceIndex (i)))
  795. {
  796. auto newName = processor->getParameterName (i, 31);
  797. if (p->Name() != newName.toRawUTF8())
  798. p->SetName (AAX_CString (newName.toRawUTF8()));
  799. }
  800. }
  801. check (Controller()->SetSignalLatency (processor->getLatencySamples()));
  802. }
  803. void audioProcessorParameterChangeGestureBegin (AudioProcessor*, int parameterIndex) override
  804. {
  805. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  806. TouchParameter (paramID);
  807. }
  808. void audioProcessorParameterChangeGestureEnd (AudioProcessor*, int parameterIndex) override
  809. {
  810. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  811. ReleaseParameter (paramID);
  812. }
  813. AAX_Result NotificationReceived (AAX_CTypeID type, const void* data, uint32_t size) override
  814. {
  815. if (type == AAX_eNotificationEvent_EnteringOfflineMode) pluginInstance->setNonRealtime (true);
  816. if (type == AAX_eNotificationEvent_ExitingOfflineMode) pluginInstance->setNonRealtime (false);
  817. if (type == AAX_eNotificationEvent_TrackNameChanged && data != nullptr)
  818. {
  819. AudioProcessor::TrackProperties props;
  820. props.name = static_cast<const AAX_IString*> (data)->Get();
  821. pluginInstance->updateTrackProperties (props);
  822. }
  823. return AAX_CEffectParameters::NotificationReceived (type, data, size);
  824. }
  825. const float* getAudioBufferForInput (const float* const* inputs, int sidechain, int mainNumIns, int idx) const noexcept
  826. {
  827. jassert (idx < (mainNumIns + 1));
  828. if (idx < mainNumIns)
  829. return inputs[inputLayoutMap[idx]];
  830. return (sidechain != -1 ? inputs[sidechain] : sideChainBuffer.getData());
  831. }
  832. void process (const float* const* inputs, float* const* outputs, const int sideChainBufferIdx,
  833. const int bufferSize, const bool bypass,
  834. AAX_IMIDINode* midiNodeIn, AAX_IMIDINode* midiNodesOut,
  835. float* const meterBuffers)
  836. {
  837. auto numIns = pluginInstance->getTotalNumInputChannels();
  838. auto numOuts = pluginInstance->getTotalNumOutputChannels();
  839. auto numMeters = aaxMeters.size();
  840. bool processWantsSidechain = (sideChainBufferIdx != -1);
  841. bool isSuspended = pluginInstance->isSuspended();
  842. if (processingSidechainChange.get() == 0)
  843. {
  844. if (hasSidechain && canDisableSidechain && (sidechainDesired.get() != 0) != processWantsSidechain)
  845. {
  846. isSuspended = true;
  847. sidechainDesired.set (processWantsSidechain ? 1 : 0);
  848. processingSidechainChange.set (1);
  849. triggerAsyncUpdate();
  850. }
  851. }
  852. else
  853. isSuspended = true;
  854. if (isSuspended)
  855. {
  856. for (int i = 0; i < numOuts; ++i)
  857. FloatVectorOperations::clear (outputs[i], bufferSize);
  858. if (meterBuffers != nullptr)
  859. FloatVectorOperations::clear (meterBuffers, numMeters);
  860. }
  861. else
  862. {
  863. auto mainNumIns = pluginInstance->getMainBusNumInputChannels();
  864. auto sidechain = (pluginInstance->getChannelCountOfBus (true, 1) > 0 ? sideChainBufferIdx : -1);
  865. auto numChans = jmax (numIns, numOuts);
  866. if (numChans == 0)
  867. return;
  868. if (channelList.size() <= numChans)
  869. channelList.insertMultiple (-1, nullptr, 1 + numChans - channelList.size());
  870. float** channels = channelList.getRawDataPointer();
  871. if (numOuts >= numIns)
  872. {
  873. for (int i = 0; i < numOuts; ++i)
  874. channels[i] = outputs[outputLayoutMap[i]];
  875. for (int i = 0; i < numIns; ++i)
  876. memcpy (channels[i], getAudioBufferForInput (inputs, sidechain, mainNumIns, i), (size_t) bufferSize * sizeof (float));
  877. for (int i = numIns; i < numOuts; ++i)
  878. zeromem (channels[i], (size_t) bufferSize * sizeof (float));
  879. process (channels, numOuts, bufferSize, bypass, midiNodeIn, midiNodesOut);
  880. }
  881. else
  882. {
  883. for (int i = 0; i < numOuts; ++i)
  884. channels[i] = outputs[outputLayoutMap[i]];
  885. for (int i = 0; i < numOuts; ++i)
  886. memcpy (channels[i], getAudioBufferForInput (inputs, sidechain, mainNumIns, i), (size_t) bufferSize * sizeof (float));
  887. for (int i = numOuts; i < numIns; ++i)
  888. channels[i] = const_cast<float*> (getAudioBufferForInput (inputs, sidechain, mainNumIns, i));
  889. process (channels, numIns, bufferSize, bypass, midiNodeIn, midiNodesOut);
  890. }
  891. if (meterBuffers != nullptr)
  892. for (int i = 0; i < numMeters; ++i)
  893. meterBuffers[i] = pluginInstance->getParameter (aaxMeters[i]);
  894. }
  895. }
  896. //==============================================================================
  897. // In aax, the format of the aux and sidechain buses need to be fully determined
  898. // by the format on the main buses. This function tried to provide such a mapping.
  899. // Returns false if the in/out main layout is not supported
  900. static bool fullBusesLayoutFromMainLayout (const AudioProcessor& p,
  901. const AudioChannelSet& mainInput, const AudioChannelSet& mainOutput,
  902. AudioProcessor::BusesLayout& fullLayout)
  903. {
  904. auto currentLayout = getDefaultLayout (p, true);
  905. bool success = p.checkBusesLayoutSupported (currentLayout);
  906. jassert (success);
  907. ignoreUnused (success);
  908. auto numInputBuses = p.getBusCount (true);
  909. auto numOutputBuses = p.getBusCount (false);
  910. if (auto* bus = p.getBus (true, 0))
  911. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  912. return false;
  913. if (auto* bus = p.getBus (false, 0))
  914. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  915. return false;
  916. // did this change the input again
  917. if (numInputBuses > 0 && currentLayout.inputBuses.getReference (0) != mainInput)
  918. return false;
  919. #ifdef JucePlugin_PreferredChannelConfigurations
  920. short configs[][2] = { JucePlugin_PreferredChannelConfigurations };
  921. if (! AudioProcessor::containsLayout (currentLayout, configs))
  922. return false;
  923. #endif
  924. bool foundValid = false;
  925. {
  926. auto onlyMains = currentLayout;
  927. for (int i = 1; i < numInputBuses; ++i)
  928. onlyMains.inputBuses.getReference (i) = AudioChannelSet::disabled();
  929. for (int i = 1; i < numOutputBuses; ++i)
  930. onlyMains.outputBuses.getReference (i) = AudioChannelSet::disabled();
  931. if (p.checkBusesLayoutSupported (onlyMains))
  932. {
  933. foundValid = true;
  934. fullLayout = onlyMains;
  935. }
  936. }
  937. if (numInputBuses > 1)
  938. {
  939. // can the first bus be a sidechain or disabled, if not then we can't use this layout combination
  940. if (auto* bus = p.getBus (true, 1))
  941. if (! bus->isLayoutSupported (AudioChannelSet::mono(), &currentLayout) && ! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  942. return foundValid;
  943. // can all the other inputs be disabled, if not then we can't use this layout combination
  944. for (int i = 2; i < numInputBuses; ++i)
  945. if (auto* bus = p.getBus (true, i))
  946. if (! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  947. return foundValid;
  948. if (auto* bus = p.getBus (true, 0))
  949. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  950. return foundValid;
  951. if (auto* bus = p.getBus (false, 0))
  952. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  953. return foundValid;
  954. // recheck if the format is correct
  955. if ((numInputBuses > 0 && currentLayout.inputBuses .getReference (0) != mainInput)
  956. || (numOutputBuses > 0 && currentLayout.outputBuses.getReference (0) != mainOutput))
  957. return foundValid;
  958. auto& sidechainBus = currentLayout.inputBuses.getReference (1);
  959. if (sidechainBus != AudioChannelSet::mono() && sidechainBus != AudioChannelSet::disabled())
  960. return foundValid;
  961. for (int i = 2; i < numInputBuses; ++i)
  962. if (currentLayout.outputBuses.getReference (i) != AudioChannelSet::disabled())
  963. return foundValid;
  964. }
  965. const bool hasSidechain = (numInputBuses > 1 && currentLayout.inputBuses.getReference (1) == AudioChannelSet::mono());
  966. if (hasSidechain)
  967. {
  968. auto onlyMainsAndSidechain = currentLayout;
  969. for (int i = 1; i < numOutputBuses; ++i)
  970. onlyMainsAndSidechain.outputBuses.getReference (i) = AudioChannelSet::disabled();
  971. if (p.checkBusesLayoutSupported (onlyMainsAndSidechain))
  972. {
  973. foundValid = true;
  974. fullLayout = onlyMainsAndSidechain;
  975. }
  976. }
  977. if (numOutputBuses > 1)
  978. {
  979. auto copy = currentLayout;
  980. int maxAuxBuses = jmin (16, numOutputBuses);
  981. for (int i = 1; i < maxAuxBuses; ++i)
  982. copy.outputBuses.getReference (i) = mainOutput;
  983. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  984. copy.outputBuses.getReference (i) = AudioChannelSet::disabled();
  985. if (p.checkBusesLayoutSupported (copy))
  986. {
  987. fullLayout = copy;
  988. foundValid = true;
  989. }
  990. else
  991. {
  992. for (int i = 1; i < maxAuxBuses; ++i)
  993. if (currentLayout.outputBuses.getReference (i).isDisabled())
  994. return foundValid;
  995. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  996. if (auto* bus = p.getBus (false, i))
  997. if (! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  998. return foundValid;
  999. if (auto* bus = p.getBus (true, 0))
  1000. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  1001. return foundValid;
  1002. if (auto* bus = p.getBus (false, 0))
  1003. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  1004. return foundValid;
  1005. if ((numInputBuses > 0 && currentLayout.inputBuses .getReference (0) != mainInput)
  1006. || (numOutputBuses > 0 && currentLayout.outputBuses.getReference (0) != mainOutput))
  1007. return foundValid;
  1008. if (numInputBuses > 1)
  1009. {
  1010. auto& sidechainBus = currentLayout.inputBuses.getReference (1);
  1011. if (sidechainBus != AudioChannelSet::mono() && sidechainBus != AudioChannelSet::disabled())
  1012. return foundValid;
  1013. }
  1014. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  1015. if (! currentLayout.outputBuses.getReference (i).isDisabled())
  1016. return foundValid;
  1017. fullLayout = currentLayout;
  1018. foundValid = true;
  1019. }
  1020. }
  1021. return foundValid;
  1022. }
  1023. private:
  1024. friend class JuceAAX_GUI;
  1025. friend void AAX_CALLBACK AAXClasses::algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd);
  1026. void process (float* const* channels, const int numChans, const int bufferSize,
  1027. const bool bypass, AAX_IMIDINode* midiNodeIn, AAX_IMIDINode* midiNodesOut)
  1028. {
  1029. AudioBuffer<float> buffer (channels, numChans, bufferSize);
  1030. midiBuffer.clear();
  1031. ignoreUnused (midiNodeIn, midiNodesOut);
  1032. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  1033. {
  1034. auto* midiStream = midiNodeIn->GetNodeBuffer();
  1035. auto numMidiEvents = midiStream->mBufferSize;
  1036. for (uint32_t i = 0; i < numMidiEvents; ++i)
  1037. {
  1038. auto& m = midiStream->mBuffer[i];
  1039. jassert ((int) m.mTimestamp < bufferSize);
  1040. midiBuffer.addEvent (m.mData, (int) m.mLength,
  1041. jlimit (0, (int) bufferSize - 1, (int) m.mTimestamp));
  1042. }
  1043. }
  1044. #endif
  1045. {
  1046. if (lastBufferSize != bufferSize)
  1047. {
  1048. lastBufferSize = bufferSize;
  1049. pluginInstance->setRateAndBufferSizeDetails (sampleRate, bufferSize);
  1050. if (bufferSize > maxBufferSize)
  1051. {
  1052. // we only call prepareToPlay here if the new buffer size is larger than
  1053. // the one used last time prepareToPlay was called.
  1054. // currently, this should never actually happen, because as of Pro Tools 12,
  1055. // the maximum possible value is 1024, and we call prepareToPlay with that
  1056. // value during initialisation.
  1057. pluginInstance->prepareToPlay (sampleRate, bufferSize);
  1058. maxBufferSize = bufferSize;
  1059. sideChainBuffer.calloc (static_cast<size_t> (maxBufferSize));
  1060. }
  1061. }
  1062. const ScopedLock sl (pluginInstance->getCallbackLock());
  1063. if (bypass)
  1064. pluginInstance->processBlockBypassed (buffer, midiBuffer);
  1065. else
  1066. pluginInstance->processBlock (buffer, midiBuffer);
  1067. }
  1068. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsMidiEffect
  1069. {
  1070. const juce::uint8* midiEventData;
  1071. int midiEventSize, midiEventPosition;
  1072. MidiBuffer::Iterator i (midiBuffer);
  1073. AAX_CMidiPacket packet;
  1074. packet.mIsImmediate = false;
  1075. while (i.getNextEvent (midiEventData, midiEventSize, midiEventPosition))
  1076. {
  1077. jassert (isPositiveAndBelow (midiEventPosition, bufferSize));
  1078. if (midiEventSize <= 4)
  1079. {
  1080. packet.mTimestamp = (uint32_t) midiEventPosition;
  1081. packet.mLength = (uint32_t) midiEventSize;
  1082. memcpy (packet.mData, midiEventData, (size_t) midiEventSize);
  1083. check (midiNodesOut->PostMIDIPacket (&packet));
  1084. }
  1085. }
  1086. }
  1087. #endif
  1088. }
  1089. void addBypassParameter()
  1090. {
  1091. auto* masterBypass = new AAX_CParameter<bool> (cDefaultMasterBypassID,
  1092. AAX_CString ("Master Bypass"),
  1093. false,
  1094. AAX_CBinaryTaperDelegate<bool>(),
  1095. AAX_CBinaryDisplayDelegate<bool> ("bypass", "on"),
  1096. true);
  1097. masterBypass->SetNumberOfSteps (2);
  1098. masterBypass->SetType (AAX_eParameterType_Discrete);
  1099. mParameterManager.AddParameter (masterBypass);
  1100. mPacketDispatcher.RegisterPacket (cDefaultMasterBypassID, JUCEAlgorithmIDs::bypass);
  1101. }
  1102. void addAudioProcessorParameters()
  1103. {
  1104. auto& audioProcessor = getPluginInstance();
  1105. auto numParameters = audioProcessor.getNumParameters();
  1106. #if JUCE_FORCE_USE_LEGACY_PARAM_IDS
  1107. const bool usingManagedParameters = false;
  1108. #else
  1109. const bool usingManagedParameters = (audioProcessor.getParameters().size() == numParameters);
  1110. #endif
  1111. for (int parameterIndex = 0; parameterIndex < numParameters; ++parameterIndex)
  1112. {
  1113. auto category = audioProcessor.getParameterCategory (parameterIndex);
  1114. aaxParamIDs.add (usingManagedParameters ? audioProcessor.getParameterID (parameterIndex)
  1115. : String (parameterIndex));
  1116. auto paramID = aaxParamIDs.getReference (parameterIndex).getCharPointer();
  1117. paramMap.set (AAXClasses::getAAXParamHash (paramID), parameterIndex);
  1118. // is this a meter?
  1119. if (((category & 0xffff0000) >> 16) == 2)
  1120. {
  1121. aaxMeters.add (parameterIndex);
  1122. continue;
  1123. }
  1124. auto parameter = new AAX_CParameter<float> (paramID,
  1125. AAX_CString (audioProcessor.getParameterName (parameterIndex, 31).toRawUTF8()),
  1126. audioProcessor.getParameterDefaultValue (parameterIndex),
  1127. AAX_CLinearTaperDelegate<float, 0>(),
  1128. AAX_CNumberDisplayDelegate<float, 3>(),
  1129. audioProcessor.isParameterAutomatable (parameterIndex));
  1130. parameter->AddShortenedName (audioProcessor.getParameterName (parameterIndex, 4).toRawUTF8());
  1131. auto parameterNumSteps = audioProcessor.getParameterNumSteps (parameterIndex);
  1132. parameter->SetNumberOfSteps ((uint32_t) parameterNumSteps);
  1133. #if JUCE_FORCE_LEGACY_PARAMETER_AUTOMATION_TYPE
  1134. parameter->SetType (parameterNumSteps > 1000 ? AAX_eParameterType_Continuous
  1135. : AAX_eParameterType_Discrete);
  1136. #else
  1137. parameter->SetType (audioProcessor.isParameterDiscrete (parameterIndex) ? AAX_eParameterType_Discrete
  1138. : AAX_eParameterType_Continuous);
  1139. #endif
  1140. parameter->SetOrientation (audioProcessor.isParameterOrientationInverted (parameterIndex)
  1141. ? (AAX_eParameterOrientation_RightMinLeftMax | AAX_eParameterOrientation_TopMinBottomMax
  1142. | AAX_eParameterOrientation_RotarySingleDotMode | AAX_eParameterOrientation_RotaryRightMinLeftMax)
  1143. : (AAX_eParameterOrientation_LeftMinRightMax | AAX_eParameterOrientation_BottomMinTopMax
  1144. | AAX_eParameterOrientation_RotarySingleDotMode | AAX_eParameterOrientation_RotaryLeftMinRightMax));
  1145. mParameterManager.AddParameter (parameter);
  1146. }
  1147. }
  1148. bool getMainBusFormats (AudioChannelSet& inputSet, AudioChannelSet& outputSet)
  1149. {
  1150. auto& audioProcessor = getPluginInstance();
  1151. #if ! JucePlugin_IsMidiEffect
  1152. auto inputBuses = audioProcessor.getBusCount (true);
  1153. auto outputBuses = audioProcessor.getBusCount (false);
  1154. #endif
  1155. #if JucePlugin_IsMidiEffect
  1156. // MIDI effect plug-ins do not support any audio channels
  1157. jassert (audioProcessor.getTotalNumInputChannels() == 0
  1158. && audioProcessor.getTotalNumOutputChannels() == 0);
  1159. inputSet = outputSet = AudioChannelSet();
  1160. return true;
  1161. #else
  1162. AAX_EStemFormat inputStemFormat = AAX_eStemFormat_None;
  1163. check (Controller()->GetInputStemFormat (&inputStemFormat));
  1164. AAX_EStemFormat outputStemFormat = AAX_eStemFormat_None;
  1165. check (Controller()->GetOutputStemFormat (&outputStemFormat));
  1166. #if JucePlugin_IsSynth
  1167. if (inputBuses == 0)
  1168. inputStemFormat = AAX_eStemFormat_None;
  1169. #endif
  1170. inputSet = (inputBuses > 0 ? channelSetFromStemFormat (inputStemFormat, false) : AudioChannelSet());
  1171. outputSet = (outputBuses > 0 ? channelSetFromStemFormat (outputStemFormat, false) : AudioChannelSet());
  1172. if ( (inputSet == AudioChannelSet::disabled() && inputStemFormat != AAX_eStemFormat_None)
  1173. || (outputSet == AudioChannelSet::disabled() && outputStemFormat != AAX_eStemFormat_None)
  1174. || (inputSet != AudioChannelSet::disabled() && inputBuses == 0)
  1175. || (outputSet != AudioChannelSet::disabled() && outputBuses == 0))
  1176. return false;
  1177. return true;
  1178. #endif
  1179. }
  1180. AAX_Result preparePlugin()
  1181. {
  1182. auto& audioProcessor = getPluginInstance();
  1183. auto oldLayout = audioProcessor.getBusesLayout();
  1184. AudioChannelSet inputSet, outputSet;
  1185. if (! getMainBusFormats (inputSet, outputSet))
  1186. {
  1187. if (isPrepared)
  1188. {
  1189. isPrepared = false;
  1190. audioProcessor.releaseResources();
  1191. }
  1192. return AAX_ERROR_UNIMPLEMENTED;
  1193. }
  1194. AudioProcessor::BusesLayout newLayout;
  1195. if (! fullBusesLayoutFromMainLayout (audioProcessor, inputSet, outputSet, newLayout))
  1196. {
  1197. if (isPrepared)
  1198. {
  1199. isPrepared = false;
  1200. audioProcessor.releaseResources();
  1201. }
  1202. return AAX_ERROR_UNIMPLEMENTED;
  1203. }
  1204. hasSidechain = (newLayout.getNumChannels (true, 1) == 1);
  1205. if (hasSidechain)
  1206. {
  1207. sidechainDesired.set (1);
  1208. auto disabledSidechainLayout = newLayout;
  1209. disabledSidechainLayout.inputBuses.getReference (1) = AudioChannelSet::disabled();
  1210. canDisableSidechain = audioProcessor.checkBusesLayoutSupported (disabledSidechainLayout);
  1211. if (canDisableSidechain)
  1212. {
  1213. sidechainDesired.set (0);
  1214. newLayout = disabledSidechainLayout;
  1215. }
  1216. }
  1217. const bool layoutChanged = (oldLayout != newLayout);
  1218. if (layoutChanged)
  1219. {
  1220. if (! audioProcessor.setBusesLayout (newLayout))
  1221. {
  1222. if (isPrepared)
  1223. {
  1224. isPrepared = false;
  1225. audioProcessor.releaseResources();
  1226. }
  1227. return AAX_ERROR_UNIMPLEMENTED;
  1228. }
  1229. rebuildChannelMapArrays();
  1230. }
  1231. if (layoutChanged || (! isPrepared))
  1232. {
  1233. if (isPrepared)
  1234. {
  1235. isPrepared = false;
  1236. audioProcessor.releaseResources();
  1237. }
  1238. audioProcessor.setRateAndBufferSizeDetails (sampleRate, lastBufferSize);
  1239. audioProcessor.prepareToPlay (sampleRate, lastBufferSize);
  1240. maxBufferSize = lastBufferSize;
  1241. sideChainBuffer.calloc (static_cast<size_t> (maxBufferSize));
  1242. }
  1243. check (Controller()->SetSignalLatency (audioProcessor.getLatencySamples()));
  1244. isPrepared = true;
  1245. return AAX_SUCCESS;
  1246. }
  1247. void rebuildChannelMapArrays()
  1248. {
  1249. auto& audioProcessor = getPluginInstance();
  1250. for (int dir = 0; dir < 2; ++dir)
  1251. {
  1252. bool isInput = (dir == 0);
  1253. auto& layoutMap = isInput ? inputLayoutMap : outputLayoutMap;
  1254. layoutMap.clear();
  1255. auto numBuses = audioProcessor.getBusCount (isInput);
  1256. int chOffset = 0;
  1257. for (int busIdx = 0; busIdx < numBuses; ++busIdx)
  1258. {
  1259. auto channelFormat = audioProcessor.getChannelLayoutOfBus (isInput, busIdx);
  1260. if (channelFormat != AudioChannelSet::disabled())
  1261. {
  1262. auto numChannels = channelFormat.size();
  1263. for (int ch = 0; ch < numChannels; ++ch)
  1264. layoutMap.add (juceChannelIndexToAax (ch, channelFormat) + chOffset);
  1265. chOffset += numChannels;
  1266. }
  1267. }
  1268. }
  1269. }
  1270. static void algorithmCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd)
  1271. {
  1272. for (auto iter = instancesBegin; iter < instancesEnd; ++iter)
  1273. {
  1274. auto& i = **iter;
  1275. int sideChainBufferIdx = i.pluginInstance->parameters.hasSidechain && i.sideChainBuffers != nullptr
  1276. ? static_cast<int> (*i.sideChainBuffers) : -1;
  1277. // sidechain index of zero is an invalid index
  1278. if (sideChainBufferIdx <= 0)
  1279. sideChainBufferIdx = -1;
  1280. auto numMeters = i.pluginInstance->parameters.aaxMeters.size();
  1281. float* const meterTapBuffers = (i.meterTapBuffers != nullptr && numMeters > 0 ? *i.meterTapBuffers : nullptr);
  1282. i.pluginInstance->parameters.process (i.inputChannels, i.outputChannels, sideChainBufferIdx,
  1283. *(i.bufferSize), *(i.bypass) != 0,
  1284. getMidiNodeIn(i), getMidiNodeOut(i),
  1285. meterTapBuffers);
  1286. }
  1287. }
  1288. //==============================================================================
  1289. void handleAsyncUpdate() override
  1290. {
  1291. if (processingSidechainChange.get() == 0)
  1292. return;
  1293. auto& audioProcessor = getPluginInstance();
  1294. bool sidechainActual = audioProcessor.getChannelCountOfBus (true, 1) > 0;
  1295. if (hasSidechain && canDisableSidechain && (sidechainDesired.get() != 0) != sidechainActual)
  1296. {
  1297. if (isPrepared)
  1298. {
  1299. isPrepared = false;
  1300. audioProcessor.releaseResources();
  1301. }
  1302. if (auto* bus = audioProcessor.getBus (true, 1))
  1303. bus->setCurrentLayout (sidechainDesired.get() != 0 ? AudioChannelSet::mono()
  1304. : AudioChannelSet::disabled());
  1305. audioProcessor.prepareToPlay (audioProcessor.getSampleRate(), audioProcessor.getBlockSize());
  1306. isPrepared = true;
  1307. }
  1308. processingSidechainChange.set (0);
  1309. }
  1310. //==============================================================================
  1311. inline int getParamIndexFromID (AAX_CParamID paramID) const noexcept
  1312. {
  1313. return paramMap [AAXClasses::getAAXParamHash (paramID)];
  1314. }
  1315. inline AAX_CParamID getAAXParamIDFromJuceIndex (int index) const noexcept
  1316. {
  1317. if (isPositiveAndBelow (index, aaxParamIDs.size()))
  1318. return aaxParamIDs.getReference (index).getCharPointer();
  1319. return nullptr;
  1320. }
  1321. //==============================================================================
  1322. static AudioProcessor::BusesLayout getDefaultLayout (const AudioProcessor& p, bool enableAll)
  1323. {
  1324. AudioProcessor::BusesLayout defaultLayout;
  1325. for (int dir = 0; dir < 2; ++dir)
  1326. {
  1327. bool isInput = (dir == 0);
  1328. auto numBuses = p.getBusCount (isInput);
  1329. auto& layouts = (isInput ? defaultLayout.inputBuses : defaultLayout.outputBuses);
  1330. for (int i = 0; i < numBuses; ++i)
  1331. if (auto* bus = p.getBus (isInput, i))
  1332. layouts.add (enableAll || bus->isEnabledByDefault() ? bus->getDefaultLayout() : AudioChannelSet());
  1333. }
  1334. return defaultLayout;
  1335. }
  1336. static AudioProcessor::BusesLayout getDefaultLayout (AudioProcessor& p)
  1337. {
  1338. auto defaultLayout = getDefaultLayout (p, true);
  1339. if (! p.checkBusesLayoutSupported (defaultLayout))
  1340. defaultLayout = getDefaultLayout (p, false);
  1341. // Your processor must support the default layout
  1342. jassert (p.checkBusesLayoutSupported (defaultLayout));
  1343. return defaultLayout;
  1344. }
  1345. //==============================================================================
  1346. ScopedJuceInitialiser_GUI libraryInitialiser;
  1347. ScopedPointer<AudioProcessor> pluginInstance;
  1348. bool isPrepared = false;
  1349. MidiBuffer midiBuffer;
  1350. Array<float*> channelList;
  1351. int32_t juceChunkIndex = 0;
  1352. AAX_CSampleRate sampleRate = 0;
  1353. int lastBufferSize = 1024, maxBufferSize = 1024;
  1354. bool hasSidechain = false, canDisableSidechain = false;
  1355. Atomic<int> processingSidechainChange, sidechainDesired;
  1356. HeapBlock<float> sideChainBuffer;
  1357. Array<int> inputLayoutMap, outputLayoutMap;
  1358. Array<String> aaxParamIDs;
  1359. HashMap<int32, int> paramMap;
  1360. Array<int> aaxMeters;
  1361. struct ChunkMemoryBlock
  1362. {
  1363. juce::MemoryBlock data;
  1364. bool isValid;
  1365. };
  1366. // temporary filter data is generated in GetChunkSize
  1367. // and the size of the data returned. To avoid generating
  1368. // it again in GetChunk, we need to store it somewhere.
  1369. // However, as GetChunkSize and GetChunk can be called
  1370. // on different threads, we store it in thread dependant storage
  1371. // in a hash map with the thread id as a key.
  1372. mutable ThreadLocalValue<ChunkMemoryBlock> perThreadFilterData;
  1373. CriticalSection perThreadDataLock;
  1374. JUCE_DECLARE_NON_COPYABLE (JuceAAX_Processor)
  1375. };
  1376. //==============================================================================
  1377. void JuceAAX_GUI::CreateViewContents()
  1378. {
  1379. if (component == nullptr)
  1380. {
  1381. if (auto* params = dynamic_cast<JuceAAX_Processor*> (GetEffectParameters()))
  1382. component = new ContentWrapperComponent (*this, params->getPluginInstance());
  1383. else
  1384. jassertfalse;
  1385. }
  1386. }
  1387. int JuceAAX_GUI::getParamIndexFromID (AAX_CParamID paramID) const noexcept
  1388. {
  1389. if (auto* params = dynamic_cast<const JuceAAX_Processor*> (GetEffectParameters()))
  1390. return params->getParamIndexFromID (paramID);
  1391. return -1;
  1392. }
  1393. AAX_CParamID JuceAAX_GUI::getAAXParamIDFromJuceIndex (int index) const noexcept
  1394. {
  1395. if (auto* params = dynamic_cast<const JuceAAX_Processor*> (GetEffectParameters()))
  1396. return params->getAAXParamIDFromJuceIndex (index);
  1397. return nullptr;
  1398. }
  1399. //==============================================================================
  1400. struct AAXFormatConfiguration
  1401. {
  1402. AAXFormatConfiguration() noexcept {}
  1403. AAXFormatConfiguration (AAX_EStemFormat inFormat, AAX_EStemFormat outFormat) noexcept
  1404. : inputFormat (inFormat), outputFormat (outFormat) {}
  1405. AAX_EStemFormat inputFormat = AAX_eStemFormat_None,
  1406. outputFormat = AAX_eStemFormat_None;
  1407. bool operator== (const AAXFormatConfiguration other) const noexcept
  1408. {
  1409. return inputFormat == other.inputFormat && outputFormat == other.outputFormat;
  1410. }
  1411. bool operator< (const AAXFormatConfiguration other) const noexcept
  1412. {
  1413. return inputFormat == other.inputFormat ? (outputFormat < other.outputFormat)
  1414. : (inputFormat < other.inputFormat);
  1415. }
  1416. };
  1417. //==============================================================================
  1418. static int addAAXMeters (AudioProcessor& p, AAX_IEffectDescriptor& descriptor)
  1419. {
  1420. const int n = p.getNumParameters();
  1421. int meterIdx = 0;
  1422. for (int i = 0; i < n; ++i)
  1423. {
  1424. auto category = p.getParameterCategory (i);
  1425. // is this a meter?
  1426. if (((category & 0xffff0000) >> 16) == 2)
  1427. {
  1428. if (auto* meterProperties = descriptor.NewPropertyMap())
  1429. {
  1430. meterProperties->AddProperty (AAX_eProperty_Meter_Type, getMeterTypeForCategory (category));
  1431. meterProperties->AddProperty (AAX_eProperty_Meter_Orientation, AAX_eMeterOrientation_TopRight);
  1432. descriptor.AddMeterDescription ('Metr' + static_cast<AAX_CTypeID> (meterIdx++),
  1433. p.getParameterName (i).toRawUTF8(), meterProperties);
  1434. }
  1435. }
  1436. }
  1437. return meterIdx;
  1438. }
  1439. static void createDescriptor (AAX_IComponentDescriptor& desc,
  1440. const AudioProcessor::BusesLayout& fullLayout,
  1441. AudioProcessor& processor,
  1442. Array<int32>& pluginIds,
  1443. const int numMeters)
  1444. {
  1445. auto aaxInputFormat = getFormatForAudioChannelSet (fullLayout.getMainInputChannelSet(), false);
  1446. auto aaxOutputFormat = getFormatForAudioChannelSet (fullLayout.getMainOutputChannelSet(), false);
  1447. #if JucePlugin_IsSynth
  1448. if (aaxInputFormat == AAX_eStemFormat_None)
  1449. aaxInputFormat = aaxOutputFormat;
  1450. #endif
  1451. #if JucePlugin_IsMidiEffect
  1452. aaxInputFormat = aaxOutputFormat = AAX_eStemFormat_Mono;
  1453. #endif
  1454. check (desc.AddAudioIn (JUCEAlgorithmIDs::inputChannels));
  1455. check (desc.AddAudioOut (JUCEAlgorithmIDs::outputChannels));
  1456. check (desc.AddAudioBufferLength (JUCEAlgorithmIDs::bufferSize));
  1457. check (desc.AddDataInPort (JUCEAlgorithmIDs::bypass, sizeof (int32_t)));
  1458. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  1459. check (desc.AddMIDINode (JUCEAlgorithmIDs::midiNodeIn, AAX_eMIDINodeType_LocalInput,
  1460. JucePlugin_Name, 0xffff));
  1461. #endif
  1462. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  1463. check (desc.AddMIDINode (JUCEAlgorithmIDs::midiNodeOut, AAX_eMIDINodeType_LocalOutput,
  1464. JucePlugin_Name " Out", 0xffff));
  1465. #endif
  1466. check (desc.AddPrivateData (JUCEAlgorithmIDs::pluginInstance, sizeof (PluginInstanceInfo)));
  1467. check (desc.AddPrivateData (JUCEAlgorithmIDs::preparedFlag, sizeof (int32_t)));
  1468. if (numMeters > 0)
  1469. {
  1470. HeapBlock<AAX_CTypeID> meterIDs (static_cast<size_t> (numMeters));
  1471. for (int i = 0; i < numMeters; ++i)
  1472. meterIDs[i] = 'Metr' + static_cast<AAX_CTypeID> (i);
  1473. check (desc.AddMeters (JUCEAlgorithmIDs::meterTapBuffers, meterIDs.getData(), static_cast<uint32_t> (numMeters)));
  1474. }
  1475. else
  1476. {
  1477. // AAX does not allow there to be any gaps in the fields of the algorithm context structure
  1478. // so just add a dummy one here if there aren't any meters
  1479. check (desc.AddPrivateData (JUCEAlgorithmIDs::meterTapBuffers, sizeof (uintptr_t)));
  1480. }
  1481. // Create a property map
  1482. AAX_IPropertyMap* const properties = desc.NewPropertyMap();
  1483. jassert (properties != nullptr);
  1484. properties->AddProperty (AAX_eProperty_ManufacturerID, JucePlugin_AAXManufacturerCode);
  1485. properties->AddProperty (AAX_eProperty_ProductID, JucePlugin_AAXProductId);
  1486. #if JucePlugin_AAXDisableBypass
  1487. properties->AddProperty (AAX_eProperty_CanBypass, false);
  1488. #else
  1489. properties->AddProperty (AAX_eProperty_CanBypass, true);
  1490. #endif
  1491. properties->AddProperty (AAX_eProperty_InputStemFormat, static_cast<AAX_CPropertyValue> (aaxInputFormat));
  1492. properties->AddProperty (AAX_eProperty_OutputStemFormat, static_cast<AAX_CPropertyValue> (aaxOutputFormat));
  1493. // This value needs to match the RTAS wrapper's Type ID, so that
  1494. // the host knows that the RTAS/AAX plugins are equivalent.
  1495. const int32 pluginID = processor.getAAXPluginIDForMainBusConfig (fullLayout.getMainInputChannelSet(),
  1496. fullLayout.getMainOutputChannelSet(),
  1497. false);
  1498. // The plugin id generated from your AudioProcessor's getAAXPluginIDForMainBusConfig callback
  1499. // it not unique. Please fix your implementation!
  1500. jassert (! pluginIds.contains (pluginID));
  1501. pluginIds.add (pluginID);
  1502. properties->AddProperty (AAX_eProperty_PlugInID_Native, pluginID);
  1503. #if ! JucePlugin_AAXDisableAudioSuite
  1504. properties->AddProperty (AAX_eProperty_PlugInID_AudioSuite,
  1505. processor.getAAXPluginIDForMainBusConfig (fullLayout.getMainInputChannelSet(),
  1506. fullLayout.getMainOutputChannelSet(),
  1507. true));
  1508. #endif
  1509. #if JucePlugin_AAXDisableMultiMono
  1510. properties->AddProperty (AAX_eProperty_Constraint_MultiMonoSupport, false);
  1511. #else
  1512. properties->AddProperty (AAX_eProperty_Constraint_MultiMonoSupport, true);
  1513. #endif
  1514. #if JucePlugin_AAXDisableDynamicProcessing
  1515. properties->AddProperty (AAX_eProperty_Constraint_AlwaysProcess, true);
  1516. #endif
  1517. #if JucePlugin_AAXDisableSaveRestore
  1518. properties->AddProperty (AAX_eProperty_SupportsSaveRestore, false);
  1519. #endif
  1520. if (fullLayout.getChannelSet (true, 1) == AudioChannelSet::mono())
  1521. {
  1522. check (desc.AddSideChainIn (JUCEAlgorithmIDs::sideChainBuffers));
  1523. properties->AddProperty (AAX_eProperty_SupportsSideChainInput, true);
  1524. }
  1525. auto maxAuxBuses = jmax (0, jmin (15, fullLayout.outputBuses.size() - 1));
  1526. // add the output buses
  1527. // This is incrdibly dumb: the output bus format must be well defined
  1528. // for every main bus in/out format pair. This means that there cannot
  1529. // be two configurations with different aux formats but
  1530. // identical main bus in/out formats.
  1531. for (int busIdx = 1; busIdx < maxAuxBuses + 1; ++busIdx)
  1532. {
  1533. auto set = fullLayout.getChannelSet (false, busIdx);
  1534. if (set.isDisabled())
  1535. break;
  1536. auto auxFormat = getFormatForAudioChannelSet (set, true);
  1537. if (auxFormat != AAX_eStemFormat_INT32_MAX && auxFormat != AAX_eStemFormat_None)
  1538. {
  1539. auto& name = processor.getBus (false, busIdx)->getName();
  1540. check (desc.AddAuxOutputStem (0, static_cast<int32_t> (auxFormat), name.toRawUTF8()));
  1541. }
  1542. }
  1543. check (desc.AddProcessProc_Native (algorithmProcessCallback, properties));
  1544. }
  1545. static bool hostSupportsStemFormat (AAX_EStemFormat stemFormat, const AAX_IFeatureInfo* featureInfo)
  1546. {
  1547. if (featureInfo != nullptr)
  1548. {
  1549. AAX_ESupportLevel supportLevel;
  1550. if (featureInfo->SupportLevel (supportLevel) == AAX_SUCCESS && supportLevel == AAX_eSupportLevel_ByProperty)
  1551. {
  1552. ScopedPointer<const AAX_IPropertyMap> props (featureInfo->AcquireProperties());
  1553. // Due to a bug in ProTools 12.8, ProTools thinks that AAX_eStemFormat_Ambi_1_ACN is not supported
  1554. // To workaround this bug, check if ProTools supports AAX_eStemFormat_Ambi_2_ACN, and, if yes,
  1555. // we can safely assume that it will also support AAX_eStemFormat_Ambi_1_ACN
  1556. if (stemFormat == AAX_eStemFormat_Ambi_1_ACN)
  1557. stemFormat = AAX_eStemFormat_Ambi_2_ACN;
  1558. if (props != nullptr && props->GetProperty ((AAX_EProperty) stemFormat, (AAX_CPropertyValue*) &supportLevel) != 0)
  1559. return (supportLevel == AAX_eSupportLevel_Supported);
  1560. }
  1561. }
  1562. return (AAX_STEM_FORMAT_INDEX (stemFormat) <= 12);
  1563. }
  1564. static void getPlugInDescription (AAX_IEffectDescriptor& descriptor, const AAX_IFeatureInfo* featureInfo)
  1565. {
  1566. PluginHostType::jucePlugInClientCurrentWrapperType = AudioProcessor::wrapperType_AAX;
  1567. ScopedPointer<AudioProcessor> plugin = createPluginFilterOfType (AudioProcessor::wrapperType_AAX);
  1568. auto numInputBuses = plugin->getBusCount (true);
  1569. auto numOutputBuses = plugin->getBusCount (false);
  1570. auto pluginNames = plugin->getAlternateDisplayNames();
  1571. pluginNames.insert (0, JucePlugin_Desc);
  1572. pluginNames.insert (0, JucePlugin_Name);
  1573. pluginNames.removeDuplicates (false);
  1574. for (auto name : pluginNames)
  1575. descriptor.AddName (name.toRawUTF8());
  1576. descriptor.AddCategory (JucePlugin_AAXCategory);
  1577. const int numMeters = addAAXMeters (*plugin, descriptor);
  1578. #ifdef JucePlugin_AAXPageTableFile
  1579. // optional page table setting - define this macro in your project if you want
  1580. // to set this value - see Avid documentation for details about its format.
  1581. descriptor.AddResourceInfo (AAX_eResourceType_PageTable, JucePlugin_AAXPageTableFile);
  1582. #endif
  1583. check (descriptor.AddProcPtr ((void*) JuceAAX_GUI::Create, kAAX_ProcPtrID_Create_EffectGUI));
  1584. check (descriptor.AddProcPtr ((void*) JuceAAX_Processor::Create, kAAX_ProcPtrID_Create_EffectParameters));
  1585. #if JucePlugin_IsMidiEffect
  1586. // MIDI effect plug-ins do not support any audio channels
  1587. jassert (numInputBuses == 0 && numOutputBuses == 0);
  1588. if (auto* desc = descriptor.NewComponentDescriptor())
  1589. {
  1590. createDescriptor (*desc, 0, plugin->getBusesLayout(), *plugin, numMeters);
  1591. check (descriptor.AddComponent (desc));
  1592. }
  1593. #else
  1594. Array<int32> pluginIds;
  1595. const int numIns = numInputBuses > 0 ? numElementsInArray (aaxFormats) : 0;
  1596. const int numOuts = numOutputBuses > 0 ? numElementsInArray (aaxFormats) : 0;
  1597. for (int inIdx = 0; inIdx < jmax (numIns, 1); ++inIdx)
  1598. {
  1599. auto aaxInFormat = numIns > 0 ? aaxFormats[inIdx] : AAX_eStemFormat_None;
  1600. auto inLayout = channelSetFromStemFormat (aaxInFormat, false);
  1601. for (int outIdx = 0; outIdx < jmax (numOuts, 1); ++outIdx)
  1602. {
  1603. auto aaxOutFormat = numOuts > 0 ? aaxFormats[outIdx] : AAX_eStemFormat_None;
  1604. auto outLayout = channelSetFromStemFormat (aaxOutFormat, false);
  1605. if (hostSupportsStemFormat (aaxInFormat, featureInfo)
  1606. && hostSupportsStemFormat (aaxOutFormat, featureInfo))
  1607. {
  1608. AudioProcessor::BusesLayout fullLayout;
  1609. if (! JuceAAX_Processor::fullBusesLayoutFromMainLayout (*plugin, inLayout, outLayout, fullLayout))
  1610. continue;
  1611. if (auto* desc = descriptor.NewComponentDescriptor())
  1612. {
  1613. createDescriptor (*desc, fullLayout, *plugin, pluginIds, numMeters);
  1614. check (descriptor.AddComponent (desc));
  1615. }
  1616. }
  1617. }
  1618. }
  1619. // You don't have any supported layouts
  1620. jassert (pluginIds.size() > 0);
  1621. #endif
  1622. }
  1623. }
  1624. void AAX_CALLBACK AAXClasses::algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd)
  1625. {
  1626. AAXClasses::JuceAAX_Processor::algorithmCallback (instancesBegin, instancesEnd);
  1627. }
  1628. //==============================================================================
  1629. AAX_Result JUCE_CDECL GetEffectDescriptions (AAX_ICollection*);
  1630. AAX_Result JUCE_CDECL GetEffectDescriptions (AAX_ICollection* collection)
  1631. {
  1632. ScopedJuceInitialiser_GUI libraryInitialiser;
  1633. ScopedPointer<const AAX_IFeatureInfo> stemFormatFeatureInfo;
  1634. if (const auto* hostDescription = collection->DescriptionHost())
  1635. stemFormatFeatureInfo = hostDescription->AcquireFeatureProperties (AAXATTR_ClientFeature_StemFormat);
  1636. if (auto* descriptor = collection->NewDescriptor())
  1637. {
  1638. AAXClasses::getPlugInDescription (*descriptor, stemFormatFeatureInfo);
  1639. collection->AddEffect (JUCE_STRINGIFY (JucePlugin_AAXIdentifier), descriptor);
  1640. collection->SetManufacturerName (JucePlugin_Manufacturer);
  1641. collection->AddPackageName (JucePlugin_Desc);
  1642. collection->AddPackageName (JucePlugin_Name);
  1643. collection->SetPackageVersion (JucePlugin_VersionCode);
  1644. return AAX_SUCCESS;
  1645. }
  1646. return AAX_ERROR_NULL_OBJECT;
  1647. }
  1648. //==============================================================================
  1649. #if _MSC_VER || JUCE_MINGW
  1650. extern "C" BOOL WINAPI DllMain (HINSTANCE instance, DWORD reason, LPVOID) { if (reason == DLL_PROCESS_ATTACH) Process::setCurrentModuleInstanceHandle (instance); return true; }
  1651. #endif
  1652. #endif