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) 2022 - Raw Material Software Limited
  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 7 End-User License
  8. Agreement and JUCE Privacy Policy.
  9. End User License Agreement: www.juce.com/juce-7-licence
  10. Privacy Policy: www.juce.com/juce-privacy-policy
  11. Or: You may also use this code under the terms of the GPL v3 (see
  12. www.gnu.org/licenses).
  13. JUCE IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL WARRANTIES, WHETHER
  14. EXPRESSED OR IMPLIED, INCLUDING MERCHANTABILITY AND FITNESS FOR PURPOSE, ARE
  15. DISCLAIMED.
  16. ==============================================================================
  17. */
  18. #include <juce_core/system/juce_TargetPlatform.h>
  19. #include "../utility/juce_CheckSettingMacros.h"
  20. #if JucePlugin_Build_AAX && (JUCE_INCLUDED_AAX_IN_MM || defined (_WIN32) || defined (_WIN64))
  21. #include "../utility/juce_IncludeSystemHeaders.h"
  22. #include "../utility/juce_IncludeModuleHeaders.h"
  23. #include "../utility/juce_WindowsHooks.h"
  24. #include <juce_audio_processors/format_types/juce_LegacyAudioParameter.cpp>
  25. JUCE_BEGIN_IGNORE_WARNINGS_MSVC (4127 4512 4996)
  26. JUCE_BEGIN_IGNORE_WARNINGS_GCC_LIKE ("-Wnon-virtual-dtor",
  27. "-Wsign-conversion",
  28. "-Wextra-semi",
  29. "-Wshift-sign-overflow",
  30. "-Wpragma-pack",
  31. "-Wzero-as-null-pointer-constant",
  32. "-Winconsistent-missing-destructor-override",
  33. "-Wfour-char-constants",
  34. "-Wtautological-overlap-compare",
  35. "-Wdeprecated-declarations")
  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. #if defined (AAX_SDK_2p3p1_REVISION) && AAX_SDK_2p3p1_REVISION <= AAX_SDK_CURRENT_REVISION
  59. #include <AAX_Exception.h>
  60. #include <AAX_Assert.h>
  61. #endif
  62. #if defined (AAX_SDK_2p4p0_REVISION) && AAX_SDK_2p4p0_REVISION <= AAX_SDK_CURRENT_REVISION
  63. #define JUCE_AAX_HAS_TRANSPORT_NOTIFICATION 1
  64. #else
  65. #define JUCE_AAX_HAS_TRANSPORT_NOTIFICATION 0
  66. #endif
  67. #if JUCE_AAX_HAS_TRANSPORT_NOTIFICATION
  68. #include <AAX_TransportTypes.h>
  69. #endif
  70. JUCE_END_IGNORE_WARNINGS_MSVC
  71. JUCE_END_IGNORE_WARNINGS_GCC_LIKE
  72. JUCE_BEGIN_IGNORE_WARNINGS_GCC_LIKE ("-Wfour-char-constants")
  73. #if JUCE_WINDOWS
  74. #ifndef JucePlugin_AAXLibs_path
  75. #error "You need to define the JucePlugin_AAXLibs_path macro. (This is best done via the Projucer)"
  76. #endif
  77. #if JUCE_64BIT
  78. #define JUCE_AAX_LIB "AAXLibrary_x64"
  79. #else
  80. #define JUCE_AAX_LIB "AAXLibrary"
  81. #endif
  82. #if JUCE_DEBUG
  83. #define JUCE_AAX_LIB_PATH "\\Debug\\"
  84. #define JUCE_AAX_LIB_SUFFIX "_D"
  85. #else
  86. #define JUCE_AAX_LIB_PATH "\\Release\\"
  87. #define JUCE_AAX_LIB_SUFFIX ""
  88. #endif
  89. #pragma comment(lib, JucePlugin_AAXLibs_path JUCE_AAX_LIB_PATH JUCE_AAX_LIB JUCE_AAX_LIB_SUFFIX ".lib")
  90. #endif
  91. #undef check
  92. #include "juce_AAX_Modifier_Injector.h"
  93. using namespace juce;
  94. #ifndef JucePlugin_AAX_Chunk_Identifier
  95. #define JucePlugin_AAX_Chunk_Identifier 'juce'
  96. #endif
  97. const int32_t juceChunkType = JucePlugin_AAX_Chunk_Identifier;
  98. //==============================================================================
  99. namespace AAXClasses
  100. {
  101. static int32 getAAXParamHash (AAX_CParamID paramID) noexcept
  102. {
  103. int32 result = 0;
  104. while (*paramID != 0)
  105. result = (31 * result) + (*paramID++);
  106. return result;
  107. }
  108. static void check (AAX_Result result)
  109. {
  110. jassertquiet (result == AAX_SUCCESS);
  111. }
  112. // maps a channel index of an AAX format to an index of a juce format
  113. struct AAXChannelStreamOrder
  114. {
  115. AAX_EStemFormat aaxStemFormat;
  116. AudioChannelSet::ChannelType speakerOrder[10];
  117. };
  118. static AAX_EStemFormat stemFormatForAmbisonicOrder (int order)
  119. {
  120. switch (order)
  121. {
  122. case 1: return AAX_eStemFormat_Ambi_1_ACN;
  123. case 2: return AAX_eStemFormat_Ambi_2_ACN;
  124. case 3: return AAX_eStemFormat_Ambi_3_ACN;
  125. default: break;
  126. }
  127. return AAX_eStemFormat_INT32_MAX;
  128. }
  129. static AAXChannelStreamOrder aaxChannelOrder[] =
  130. {
  131. { AAX_eStemFormat_Mono, { AudioChannelSet::centre, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown,
  132. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  133. { AAX_eStemFormat_Stereo, { AudioChannelSet::left, AudioChannelSet::right, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown,
  134. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  135. { AAX_eStemFormat_LCR, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::unknown, AudioChannelSet::unknown,
  136. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  137. { AAX_eStemFormat_LCRS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::centreSurround, AudioChannelSet::unknown,
  138. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  139. { AAX_eStemFormat_Quad, { AudioChannelSet::left, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown,
  140. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  141. { AAX_eStemFormat_5_0, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround,
  142. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  143. { AAX_eStemFormat_5_1, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::rightSurround,
  144. AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  145. { AAX_eStemFormat_6_0, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::centreSurround,
  146. AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  147. { AAX_eStemFormat_6_1, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurround, AudioChannelSet::centreSurround,
  148. AudioChannelSet::rightSurround, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  149. { AAX_eStemFormat_7_0_SDDS, { AudioChannelSet::left, AudioChannelSet::leftCentre, AudioChannelSet::centre, AudioChannelSet::rightCentre, AudioChannelSet::right,
  150. AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  151. { AAX_eStemFormat_7_0_DTS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide,
  152. AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  153. { AAX_eStemFormat_7_1_SDDS, { AudioChannelSet::left, AudioChannelSet::leftCentre, AudioChannelSet::centre, AudioChannelSet::rightCentre, AudioChannelSet::right,
  154. AudioChannelSet::leftSurround, AudioChannelSet::rightSurround, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  155. { AAX_eStemFormat_7_1_DTS, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide,
  156. AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::LFE, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  157. { AAX_eStemFormat_7_0_2, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide,
  158. AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::topSideLeft, AudioChannelSet::topSideRight, AudioChannelSet::unknown } },
  159. { AAX_eStemFormat_7_1_2, { AudioChannelSet::left, AudioChannelSet::centre, AudioChannelSet::right, AudioChannelSet::leftSurroundSide, AudioChannelSet::rightSurroundSide,
  160. AudioChannelSet::leftSurroundRear, AudioChannelSet::rightSurroundRear, AudioChannelSet::LFE, AudioChannelSet::topSideLeft, AudioChannelSet::topSideRight } },
  161. { AAX_eStemFormat_None, { AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown,
  162. AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown, AudioChannelSet::unknown } },
  163. };
  164. static AAX_EStemFormat aaxFormats[] =
  165. {
  166. AAX_eStemFormat_Mono,
  167. AAX_eStemFormat_Stereo,
  168. AAX_eStemFormat_LCR,
  169. AAX_eStemFormat_LCRS,
  170. AAX_eStemFormat_Quad,
  171. AAX_eStemFormat_5_0,
  172. AAX_eStemFormat_5_1,
  173. AAX_eStemFormat_6_0,
  174. AAX_eStemFormat_6_1,
  175. AAX_eStemFormat_7_0_SDDS,
  176. AAX_eStemFormat_7_1_SDDS,
  177. AAX_eStemFormat_7_0_DTS,
  178. AAX_eStemFormat_7_1_DTS,
  179. AAX_eStemFormat_7_0_2,
  180. AAX_eStemFormat_7_1_2,
  181. AAX_eStemFormat_Ambi_1_ACN,
  182. AAX_eStemFormat_Ambi_2_ACN,
  183. AAX_eStemFormat_Ambi_3_ACN
  184. };
  185. static AAX_EStemFormat getFormatForAudioChannelSet (const AudioChannelSet& set, bool ignoreLayout) noexcept
  186. {
  187. // if the plug-in ignores layout, it is ok to convert between formats only by their numchannnels
  188. if (ignoreLayout)
  189. {
  190. auto numChannels = set.size();
  191. switch (numChannels)
  192. {
  193. case 0: return AAX_eStemFormat_None;
  194. case 1: return AAX_eStemFormat_Mono;
  195. case 2: return AAX_eStemFormat_Stereo;
  196. case 3: return AAX_eStemFormat_LCR;
  197. case 4: return AAX_eStemFormat_Quad;
  198. case 5: return AAX_eStemFormat_5_0;
  199. case 6: return AAX_eStemFormat_5_1;
  200. case 7: return AAX_eStemFormat_7_0_DTS;
  201. case 8: return AAX_eStemFormat_7_1_DTS;
  202. case 9: return AAX_eStemFormat_7_0_2;
  203. case 10: return AAX_eStemFormat_7_1_2;
  204. default: break;
  205. }
  206. // check for ambisonics support
  207. auto sqrtMinusOne = std::sqrt (static_cast<float> (numChannels)) - 1.0f;
  208. auto ambisonicOrder = jmax (0, static_cast<int> (std::floor (sqrtMinusOne)));
  209. if (static_cast<float> (ambisonicOrder) == sqrtMinusOne)
  210. return stemFormatForAmbisonicOrder (ambisonicOrder);
  211. return AAX_eStemFormat_INT32_MAX;
  212. }
  213. if (set == AudioChannelSet::disabled()) return AAX_eStemFormat_None;
  214. if (set == AudioChannelSet::mono()) return AAX_eStemFormat_Mono;
  215. if (set == AudioChannelSet::stereo()) return AAX_eStemFormat_Stereo;
  216. if (set == AudioChannelSet::createLCR()) return AAX_eStemFormat_LCR;
  217. if (set == AudioChannelSet::createLCRS()) return AAX_eStemFormat_LCRS;
  218. if (set == AudioChannelSet::quadraphonic()) return AAX_eStemFormat_Quad;
  219. if (set == AudioChannelSet::create5point0()) return AAX_eStemFormat_5_0;
  220. if (set == AudioChannelSet::create5point1()) return AAX_eStemFormat_5_1;
  221. if (set == AudioChannelSet::create6point0()) return AAX_eStemFormat_6_0;
  222. if (set == AudioChannelSet::create6point1()) return AAX_eStemFormat_6_1;
  223. if (set == AudioChannelSet::create7point0()) return AAX_eStemFormat_7_0_DTS;
  224. if (set == AudioChannelSet::create7point1()) return AAX_eStemFormat_7_1_DTS;
  225. if (set == AudioChannelSet::create7point0SDDS()) return AAX_eStemFormat_7_0_SDDS;
  226. if (set == AudioChannelSet::create7point1SDDS()) return AAX_eStemFormat_7_1_SDDS;
  227. if (set == AudioChannelSet::create7point0point2()) return AAX_eStemFormat_7_0_2;
  228. if (set == AudioChannelSet::create7point1point2()) return AAX_eStemFormat_7_1_2;
  229. auto order = set.getAmbisonicOrder();
  230. if (order >= 0)
  231. return stemFormatForAmbisonicOrder (order);
  232. return AAX_eStemFormat_INT32_MAX;
  233. }
  234. static AudioChannelSet channelSetFromStemFormat (AAX_EStemFormat format, bool ignoreLayout) noexcept
  235. {
  236. if (! ignoreLayout)
  237. {
  238. switch (format)
  239. {
  240. case AAX_eStemFormat_None: return AudioChannelSet::disabled();
  241. case AAX_eStemFormat_Mono: return AudioChannelSet::mono();
  242. case AAX_eStemFormat_Stereo: return AudioChannelSet::stereo();
  243. case AAX_eStemFormat_LCR: return AudioChannelSet::createLCR();
  244. case AAX_eStemFormat_LCRS: return AudioChannelSet::createLCRS();
  245. case AAX_eStemFormat_Quad: return AudioChannelSet::quadraphonic();
  246. case AAX_eStemFormat_5_0: return AudioChannelSet::create5point0();
  247. case AAX_eStemFormat_5_1: return AudioChannelSet::create5point1();
  248. case AAX_eStemFormat_6_0: return AudioChannelSet::create6point0();
  249. case AAX_eStemFormat_6_1: return AudioChannelSet::create6point1();
  250. case AAX_eStemFormat_7_0_SDDS: return AudioChannelSet::create7point0SDDS();
  251. case AAX_eStemFormat_7_0_DTS: return AudioChannelSet::create7point0();
  252. case AAX_eStemFormat_7_1_SDDS: return AudioChannelSet::create7point1SDDS();
  253. case AAX_eStemFormat_7_1_DTS: return AudioChannelSet::create7point1();
  254. case AAX_eStemFormat_7_0_2: return AudioChannelSet::create7point0point2();
  255. case AAX_eStemFormat_7_1_2: return AudioChannelSet::create7point1point2();
  256. case AAX_eStemFormat_Ambi_1_ACN: return AudioChannelSet::ambisonic (1);
  257. case AAX_eStemFormat_Ambi_2_ACN: return AudioChannelSet::ambisonic (2);
  258. case AAX_eStemFormat_Ambi_3_ACN: return AudioChannelSet::ambisonic (3);
  259. case AAX_eStemFormat_Reserved_1:
  260. case AAX_eStemFormat_Reserved_2:
  261. case AAX_eStemFormat_Reserved_3:
  262. case AAX_eStemFormatNum:
  263. case AAX_eStemFormat_Any:
  264. case AAX_eStemFormat_INT32_MAX:
  265. default: return AudioChannelSet::disabled();
  266. }
  267. }
  268. return AudioChannelSet::discreteChannels (jmax (0, static_cast<int> (AAX_STEM_FORMAT_CHANNEL_COUNT (format))));
  269. }
  270. static AAX_EMeterType getMeterTypeForCategory (AudioProcessorParameter::Category category)
  271. {
  272. switch (category)
  273. {
  274. case AudioProcessorParameter::inputMeter: return AAX_eMeterType_Input;
  275. case AudioProcessorParameter::outputMeter: return AAX_eMeterType_Output;
  276. case AudioProcessorParameter::compressorLimiterGainReductionMeter: return AAX_eMeterType_CLGain;
  277. case AudioProcessorParameter::expanderGateGainReductionMeter: return AAX_eMeterType_EGGain;
  278. case AudioProcessorParameter::analysisMeter: return AAX_eMeterType_Analysis;
  279. case AudioProcessorParameter::genericParameter:
  280. case AudioProcessorParameter::inputGain:
  281. case AudioProcessorParameter::outputGain:
  282. case AudioProcessorParameter::otherMeter:
  283. default: return AAX_eMeterType_Other;
  284. }
  285. }
  286. static Colour getColourFromHighlightEnum (AAX_EHighlightColor colour) noexcept
  287. {
  288. switch (colour)
  289. {
  290. case AAX_eHighlightColor_Red: return Colours::red;
  291. case AAX_eHighlightColor_Blue: return Colours::blue;
  292. case AAX_eHighlightColor_Green: return Colours::green;
  293. case AAX_eHighlightColor_Yellow: return Colours::yellow;
  294. case AAX_eHighlightColor_Num:
  295. default: jassertfalse; break;
  296. }
  297. return Colours::black;
  298. }
  299. static int juceChannelIndexToAax (int juceIndex, const AudioChannelSet& channelSet)
  300. {
  301. auto isAmbisonic = (channelSet.getAmbisonicOrder() >= 0);
  302. auto currentLayout = getFormatForAudioChannelSet (channelSet, false);
  303. int layoutIndex;
  304. if (isAmbisonic && currentLayout != AAX_eStemFormat_INT32_MAX)
  305. return juceIndex;
  306. for (layoutIndex = 0; aaxChannelOrder[layoutIndex].aaxStemFormat != currentLayout; ++layoutIndex)
  307. if (aaxChannelOrder[layoutIndex].aaxStemFormat == 0) return juceIndex;
  308. auto& channelOrder = aaxChannelOrder[layoutIndex];
  309. auto channelType = channelSet.getTypeOfChannel (static_cast<int> (juceIndex));
  310. auto numSpeakers = numElementsInArray (channelOrder.speakerOrder);
  311. for (int i = 0; i < numSpeakers && channelOrder.speakerOrder[i] != 0; ++i)
  312. if (channelOrder.speakerOrder[i] == channelType)
  313. return i;
  314. return juceIndex;
  315. }
  316. //==============================================================================
  317. class JuceAAX_Processor;
  318. struct PluginInstanceInfo
  319. {
  320. PluginInstanceInfo (JuceAAX_Processor& p) : parameters (p) {}
  321. JuceAAX_Processor& parameters;
  322. JUCE_DECLARE_NON_COPYABLE (PluginInstanceInfo)
  323. };
  324. //==============================================================================
  325. struct JUCEAlgorithmContext
  326. {
  327. float** inputChannels;
  328. float** outputChannels;
  329. int32_t* bufferSize;
  330. int32_t* bypass;
  331. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  332. AAX_IMIDINode* midiNodeIn;
  333. #endif
  334. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  335. AAX_IMIDINode* midiNodeOut;
  336. #endif
  337. PluginInstanceInfo* pluginInstance;
  338. int32_t* isPrepared;
  339. float* const* meterTapBuffers;
  340. int32_t* sideChainBuffers;
  341. };
  342. struct JUCEAlgorithmIDs
  343. {
  344. enum
  345. {
  346. inputChannels = AAX_FIELD_INDEX (JUCEAlgorithmContext, inputChannels),
  347. outputChannels = AAX_FIELD_INDEX (JUCEAlgorithmContext, outputChannels),
  348. bufferSize = AAX_FIELD_INDEX (JUCEAlgorithmContext, bufferSize),
  349. bypass = AAX_FIELD_INDEX (JUCEAlgorithmContext, bypass),
  350. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  351. midiNodeIn = AAX_FIELD_INDEX (JUCEAlgorithmContext, midiNodeIn),
  352. #endif
  353. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  354. midiNodeOut = AAX_FIELD_INDEX (JUCEAlgorithmContext, midiNodeOut),
  355. #endif
  356. pluginInstance = AAX_FIELD_INDEX (JUCEAlgorithmContext, pluginInstance),
  357. preparedFlag = AAX_FIELD_INDEX (JUCEAlgorithmContext, isPrepared),
  358. meterTapBuffers = AAX_FIELD_INDEX (JUCEAlgorithmContext, meterTapBuffers),
  359. sideChainBuffers = AAX_FIELD_INDEX (JUCEAlgorithmContext, sideChainBuffers)
  360. };
  361. };
  362. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  363. static AAX_IMIDINode* getMidiNodeIn (const JUCEAlgorithmContext& c) noexcept { return c.midiNodeIn; }
  364. #else
  365. static AAX_IMIDINode* getMidiNodeIn (const JUCEAlgorithmContext&) noexcept { return nullptr; }
  366. #endif
  367. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  368. AAX_IMIDINode* midiNodeOut;
  369. static AAX_IMIDINode* getMidiNodeOut (const JUCEAlgorithmContext& c) noexcept { return c.midiNodeOut; }
  370. #else
  371. static AAX_IMIDINode* getMidiNodeOut (const JUCEAlgorithmContext&) noexcept { return nullptr; }
  372. #endif
  373. //==============================================================================
  374. class JuceAAX_Processor;
  375. class JuceAAX_GUI : public AAX_CEffectGUI,
  376. public ModifierKeyProvider
  377. {
  378. public:
  379. JuceAAX_GUI() = default;
  380. ~JuceAAX_GUI() override { DeleteViewContainer(); }
  381. static AAX_IEffectGUI* AAX_CALLBACK Create() { return new JuceAAX_GUI(); }
  382. void CreateViewContents() override;
  383. void CreateViewContainer() override
  384. {
  385. CreateViewContents();
  386. if (void* nativeViewToAttachTo = GetViewContainerPtr())
  387. {
  388. #if JUCE_MAC
  389. if (GetViewContainerType() == AAX_eViewContainer_Type_NSView)
  390. #else
  391. if (GetViewContainerType() == AAX_eViewContainer_Type_HWND)
  392. #endif
  393. {
  394. component->setVisible (true);
  395. component->addToDesktop (0, nativeViewToAttachTo);
  396. if (ModifierKeyReceiver* modReceiver = dynamic_cast<ModifierKeyReceiver*> (component->getPeer()))
  397. modReceiver->setModifierKeyProvider (this);
  398. }
  399. }
  400. }
  401. void DeleteViewContainer() override
  402. {
  403. if (component != nullptr)
  404. {
  405. JUCE_AUTORELEASEPOOL
  406. {
  407. if (auto* modReceiver = dynamic_cast<ModifierKeyReceiver*> (component->getPeer()))
  408. modReceiver->removeModifierKeyProvider();
  409. component->removeFromDesktop();
  410. component = nullptr;
  411. }
  412. }
  413. }
  414. AAX_Result GetViewSize (AAX_Point* viewSize) const override
  415. {
  416. if (component != nullptr)
  417. {
  418. *viewSize = convertToHostBounds ({ (float) component->getHeight(),
  419. (float) component->getWidth() });
  420. return AAX_SUCCESS;
  421. }
  422. return AAX_ERROR_NULL_OBJECT;
  423. }
  424. AAX_Result ParameterUpdated (AAX_CParamID) override
  425. {
  426. return AAX_SUCCESS;
  427. }
  428. AAX_Result SetControlHighlightInfo (AAX_CParamID paramID, AAX_CBoolean isHighlighted, AAX_EHighlightColor colour) override
  429. {
  430. if (component != nullptr && component->pluginEditor != nullptr)
  431. {
  432. auto index = getParamIndexFromID (paramID);
  433. if (index >= 0)
  434. {
  435. AudioProcessorEditor::ParameterControlHighlightInfo info;
  436. info.parameterIndex = index;
  437. info.isHighlighted = (isHighlighted != 0);
  438. info.suggestedColour = getColourFromHighlightEnum (colour);
  439. component->pluginEditor->setControlHighlight (info);
  440. }
  441. return AAX_SUCCESS;
  442. }
  443. return AAX_ERROR_NULL_OBJECT;
  444. }
  445. int getWin32Modifiers() const override
  446. {
  447. int modifierFlags = 0;
  448. if (auto* viewContainer = GetViewContainer())
  449. {
  450. uint32 aaxViewMods = 0;
  451. const_cast<AAX_IViewContainer*> (viewContainer)->GetModifiers (&aaxViewMods);
  452. if ((aaxViewMods & AAX_eModifiers_Shift) != 0) modifierFlags |= ModifierKeys::shiftModifier;
  453. if ((aaxViewMods & AAX_eModifiers_Alt ) != 0) modifierFlags |= ModifierKeys::altModifier;
  454. }
  455. return modifierFlags;
  456. }
  457. private:
  458. //==============================================================================
  459. int getParamIndexFromID (AAX_CParamID paramID) const noexcept;
  460. AAX_CParamID getAAXParamIDFromJuceIndex (int index) const noexcept;
  461. //==============================================================================
  462. static AAX_Point convertToHostBounds (AAX_Point pluginSize)
  463. {
  464. auto desktopScale = Desktop::getInstance().getGlobalScaleFactor();
  465. if (approximatelyEqual (desktopScale, 1.0f))
  466. return pluginSize;
  467. return { pluginSize.vert * desktopScale,
  468. pluginSize.horz * desktopScale };
  469. }
  470. //==============================================================================
  471. struct ContentWrapperComponent : public Component
  472. {
  473. ContentWrapperComponent (JuceAAX_GUI& gui, AudioProcessor& plugin)
  474. : owner (gui)
  475. {
  476. setOpaque (true);
  477. setBroughtToFrontOnMouseClick (true);
  478. pluginEditor.reset (plugin.createEditorIfNeeded());
  479. addAndMakeVisible (pluginEditor.get());
  480. if (pluginEditor != nullptr)
  481. {
  482. lastValidSize = pluginEditor->getLocalBounds();
  483. setBounds (lastValidSize);
  484. pluginEditor->addMouseListener (this, true);
  485. }
  486. }
  487. ~ContentWrapperComponent() override
  488. {
  489. if (pluginEditor != nullptr)
  490. {
  491. PopupMenu::dismissAllActiveMenus();
  492. pluginEditor->removeMouseListener (this);
  493. pluginEditor->processor.editorBeingDeleted (pluginEditor.get());
  494. }
  495. }
  496. void paint (Graphics& g) override
  497. {
  498. g.fillAll (Colours::black);
  499. }
  500. template <typename MethodType>
  501. void callMouseMethod (const MouseEvent& e, MethodType method)
  502. {
  503. if (auto* vc = owner.GetViewContainer())
  504. {
  505. auto parameterIndex = pluginEditor->getControlParameterIndex (*e.eventComponent);
  506. if (auto aaxParamID = owner.getAAXParamIDFromJuceIndex (parameterIndex))
  507. {
  508. uint32_t mods = 0;
  509. vc->GetModifiers (&mods);
  510. (vc->*method) (aaxParamID, mods);
  511. }
  512. }
  513. }
  514. void mouseDown (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseDown); }
  515. void mouseUp (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseUp); }
  516. void mouseDrag (const MouseEvent& e) override { callMouseMethod (e, &AAX_IViewContainer::HandleParameterMouseDrag); }
  517. void parentSizeChanged() override
  518. {
  519. resizeHostWindow();
  520. if (pluginEditor != nullptr)
  521. pluginEditor->repaint();
  522. }
  523. void childBoundsChanged (Component*) override
  524. {
  525. if (resizeHostWindow())
  526. {
  527. setSize (pluginEditor->getWidth(), pluginEditor->getHeight());
  528. lastValidSize = getBounds();
  529. }
  530. else
  531. {
  532. pluginEditor->setBoundsConstrained (pluginEditor->getBounds().withSize (lastValidSize.getWidth(),
  533. lastValidSize.getHeight()));
  534. }
  535. }
  536. bool resizeHostWindow()
  537. {
  538. if (pluginEditor != nullptr)
  539. {
  540. auto newSize = convertToHostBounds ({ (float) pluginEditor->getHeight(),
  541. (float) pluginEditor->getWidth() });
  542. return owner.GetViewContainer()->SetViewSize (newSize) == AAX_SUCCESS;
  543. }
  544. return false;
  545. }
  546. std::unique_ptr<AudioProcessorEditor> pluginEditor;
  547. JuceAAX_GUI& owner;
  548. #if JUCE_WINDOWS
  549. WindowsHooks hooks;
  550. #endif
  551. juce::Rectangle<int> lastValidSize;
  552. JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (ContentWrapperComponent)
  553. };
  554. std::unique_ptr<ContentWrapperComponent> component;
  555. ScopedJuceInitialiser_GUI libraryInitialiser;
  556. JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceAAX_GUI)
  557. };
  558. // Copied here, because not all versions of the AAX SDK define all of these values
  559. enum JUCE_AAX_EFrameRate : std::underlying_type_t<AAX_EFrameRate>
  560. {
  561. JUCE_AAX_eFrameRate_Undeclared = 0,
  562. JUCE_AAX_eFrameRate_24Frame = 1,
  563. JUCE_AAX_eFrameRate_25Frame = 2,
  564. JUCE_AAX_eFrameRate_2997NonDrop = 3,
  565. JUCE_AAX_eFrameRate_2997DropFrame = 4,
  566. JUCE_AAX_eFrameRate_30NonDrop = 5,
  567. JUCE_AAX_eFrameRate_30DropFrame = 6,
  568. JUCE_AAX_eFrameRate_23976 = 7,
  569. JUCE_AAX_eFrameRate_47952 = 8,
  570. JUCE_AAX_eFrameRate_48Frame = 9,
  571. JUCE_AAX_eFrameRate_50Frame = 10,
  572. JUCE_AAX_eFrameRate_5994NonDrop = 11,
  573. JUCE_AAX_eFrameRate_5994DropFrame = 12,
  574. JUCE_AAX_eFrameRate_60NonDrop = 13,
  575. JUCE_AAX_eFrameRate_60DropFrame = 14,
  576. JUCE_AAX_eFrameRate_100Frame = 15,
  577. JUCE_AAX_eFrameRate_11988NonDrop = 16,
  578. JUCE_AAX_eFrameRate_11988DropFrame = 17,
  579. JUCE_AAX_eFrameRate_120NonDrop = 18,
  580. JUCE_AAX_eFrameRate_120DropFrame = 19
  581. };
  582. static void AAX_CALLBACK algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd);
  583. static Array<JuceAAX_Processor*> activeProcessors;
  584. //==============================================================================
  585. class JuceAAX_Processor : public AAX_CEffectParameters,
  586. public juce::AudioPlayHead,
  587. public AudioProcessorListener,
  588. private AsyncUpdater
  589. {
  590. public:
  591. JuceAAX_Processor()
  592. : pluginInstance (createPluginFilterOfType (AudioProcessor::wrapperType_AAX))
  593. {
  594. inParameterChangedCallback = false;
  595. pluginInstance->setPlayHead (this);
  596. pluginInstance->addListener (this);
  597. rebuildChannelMapArrays();
  598. AAX_CEffectParameters::GetNumberOfChunks (&juceChunkIndex);
  599. activeProcessors.add (this);
  600. }
  601. ~JuceAAX_Processor() override
  602. {
  603. activeProcessors.removeAllInstancesOf (this);
  604. }
  605. static AAX_CEffectParameters* AAX_CALLBACK Create()
  606. {
  607. if (PluginHostType::jucePlugInIsRunningInAudioSuiteFn == nullptr)
  608. {
  609. PluginHostType::jucePlugInIsRunningInAudioSuiteFn = [] (AudioProcessor& processor)
  610. {
  611. for (auto* p : activeProcessors)
  612. if (&p->getPluginInstance() == &processor)
  613. return p->isInAudioSuite();
  614. return false;
  615. };
  616. }
  617. return new JuceAAX_Processor();
  618. }
  619. AAX_Result Uninitialize() override
  620. {
  621. cancelPendingUpdate();
  622. juceParameters.clear();
  623. if (isPrepared && pluginInstance != nullptr)
  624. {
  625. isPrepared = false;
  626. processingSidechainChange = false;
  627. pluginInstance->releaseResources();
  628. }
  629. return AAX_CEffectParameters::Uninitialize();
  630. }
  631. AAX_Result EffectInit() override
  632. {
  633. cancelPendingUpdate();
  634. check (Controller()->GetSampleRate (&sampleRate));
  635. processingSidechainChange = false;
  636. auto err = preparePlugin();
  637. if (err != AAX_SUCCESS)
  638. return err;
  639. addAudioProcessorParameters();
  640. return AAX_SUCCESS;
  641. }
  642. AAX_Result GetNumberOfChunks (int32_t* numChunks) const override
  643. {
  644. // The juceChunk is the last chunk.
  645. *numChunks = juceChunkIndex + 1;
  646. return AAX_SUCCESS;
  647. }
  648. AAX_Result GetChunkIDFromIndex (int32_t index, AAX_CTypeID* chunkID) const override
  649. {
  650. if (index != juceChunkIndex)
  651. return AAX_CEffectParameters::GetChunkIDFromIndex (index, chunkID);
  652. *chunkID = juceChunkType;
  653. return AAX_SUCCESS;
  654. }
  655. AAX_Result GetChunkSize (AAX_CTypeID chunkID, uint32_t* oSize) const override
  656. {
  657. if (chunkID != juceChunkType)
  658. return AAX_CEffectParameters::GetChunkSize (chunkID, oSize);
  659. auto& chunkMemoryBlock = perThreadFilterData.get();
  660. chunkMemoryBlock.data.reset();
  661. pluginInstance->getStateInformation (chunkMemoryBlock.data);
  662. chunkMemoryBlock.isValid = true;
  663. *oSize = (uint32_t) chunkMemoryBlock.data.getSize();
  664. return AAX_SUCCESS;
  665. }
  666. AAX_Result GetChunk (AAX_CTypeID chunkID, AAX_SPlugInChunk* oChunk) const override
  667. {
  668. if (chunkID != juceChunkType)
  669. return AAX_CEffectParameters::GetChunk (chunkID, oChunk);
  670. auto& chunkMemoryBlock = perThreadFilterData.get();
  671. if (! chunkMemoryBlock.isValid)
  672. return 20700; // AAX_ERROR_PLUGIN_API_INVALID_THREAD
  673. oChunk->fSize = (int32_t) chunkMemoryBlock.data.getSize();
  674. chunkMemoryBlock.data.copyTo (oChunk->fData, 0, chunkMemoryBlock.data.getSize());
  675. chunkMemoryBlock.isValid = false;
  676. return AAX_SUCCESS;
  677. }
  678. AAX_Result SetChunk (AAX_CTypeID chunkID, const AAX_SPlugInChunk* chunk) override
  679. {
  680. if (chunkID != juceChunkType)
  681. return AAX_CEffectParameters::SetChunk (chunkID, chunk);
  682. pluginInstance->setStateInformation ((void*) chunk->fData, chunk->fSize);
  683. // Notify Pro Tools that the parameters were updated.
  684. // Without it a bug happens in these circumstances:
  685. // * A preset is saved with the RTAS version of the plugin (".tfx" preset format).
  686. // * The preset is loaded in PT 10 using the AAX version.
  687. // * The session is then saved, and closed.
  688. // * The saved session is loaded, but acting as if the preset was never loaded.
  689. // IMPORTANT! If the plugin doesn't manage its own bypass parameter, don't try
  690. // to overwrite the bypass parameter value.
  691. auto numParameters = juceParameters.getNumParameters();
  692. for (int i = 0; i < numParameters; ++i)
  693. if (auto* juceParam = juceParameters.getParamForIndex (i))
  694. if (juceParam != ownedBypassParameter.get())
  695. if (auto paramID = getAAXParamIDFromJuceIndex (i))
  696. SetParameterNormalizedValue (paramID, juceParam->getValue());
  697. return AAX_SUCCESS;
  698. }
  699. AAX_Result ResetFieldData (AAX_CFieldIndex fieldIndex, void* data, uint32_t dataSize) const override
  700. {
  701. switch (fieldIndex)
  702. {
  703. case JUCEAlgorithmIDs::pluginInstance:
  704. {
  705. auto numObjects = dataSize / sizeof (PluginInstanceInfo);
  706. auto* objects = static_cast<PluginInstanceInfo*> (data);
  707. jassert (numObjects == 1); // not sure how to handle more than one..
  708. for (size_t i = 0; i < numObjects; ++i)
  709. new (objects + i) PluginInstanceInfo (const_cast<JuceAAX_Processor&> (*this));
  710. break;
  711. }
  712. case JUCEAlgorithmIDs::preparedFlag:
  713. {
  714. const_cast<JuceAAX_Processor*> (this)->preparePlugin();
  715. auto numObjects = dataSize / sizeof (uint32_t);
  716. auto* objects = static_cast<uint32_t*> (data);
  717. for (size_t i = 0; i < numObjects; ++i)
  718. objects[i] = 1;
  719. break;
  720. }
  721. case JUCEAlgorithmIDs::meterTapBuffers:
  722. {
  723. // this is a dummy field only when there are no aaxMeters
  724. jassert (aaxMeters.size() == 0);
  725. {
  726. auto numObjects = dataSize / sizeof (float*);
  727. auto* objects = static_cast<float**> (data);
  728. for (size_t i = 0; i < numObjects; ++i)
  729. objects[i] = nullptr;
  730. }
  731. break;
  732. }
  733. }
  734. return AAX_SUCCESS;
  735. }
  736. void setAudioProcessorParameter (AAX_CParamID paramID, double value)
  737. {
  738. if (auto* param = getParameterFromID (paramID))
  739. {
  740. auto newValue = static_cast<float> (value);
  741. if (newValue != param->getValue())
  742. {
  743. param->setValue (newValue);
  744. inParameterChangedCallback = true;
  745. param->sendValueChangedMessageToListeners (newValue);
  746. }
  747. }
  748. }
  749. AAX_Result GetNumberOfChanges (int32_t* numChanges) const override
  750. {
  751. const auto result = AAX_CEffectParameters::GetNumberOfChanges (numChanges);
  752. *numChanges += numSetDirtyCalls;
  753. return result;
  754. }
  755. AAX_Result UpdateParameterNormalizedValue (AAX_CParamID paramID, double value, AAX_EUpdateSource source) override
  756. {
  757. auto result = AAX_CEffectParameters::UpdateParameterNormalizedValue (paramID, value, source);
  758. setAudioProcessorParameter (paramID, value);
  759. return result;
  760. }
  761. AAX_Result GetParameterValueFromString (AAX_CParamID paramID, double* result, const AAX_IString& text) const override
  762. {
  763. if (auto* param = getParameterFromID (paramID))
  764. {
  765. if (! LegacyAudioParameter::isLegacy (param))
  766. {
  767. *result = param->getValueForText (text.Get());
  768. return AAX_SUCCESS;
  769. }
  770. }
  771. return AAX_CEffectParameters::GetParameterValueFromString (paramID, result, text);
  772. }
  773. AAX_Result GetParameterStringFromValue (AAX_CParamID paramID, double value, AAX_IString* result, int32_t maxLen) const override
  774. {
  775. if (auto* param = getParameterFromID (paramID))
  776. result->Set (param->getText ((float) value, maxLen).toRawUTF8());
  777. return AAX_SUCCESS;
  778. }
  779. AAX_Result GetParameterNumberofSteps (AAX_CParamID paramID, int32_t* result) const
  780. {
  781. if (auto* param = getParameterFromID (paramID))
  782. *result = getSafeNumberOfParameterSteps (*param);
  783. return AAX_SUCCESS;
  784. }
  785. AAX_Result GetParameterNormalizedValue (AAX_CParamID paramID, double* result) const override
  786. {
  787. if (auto* param = getParameterFromID (paramID))
  788. *result = (double) param->getValue();
  789. else
  790. *result = 0.0;
  791. return AAX_SUCCESS;
  792. }
  793. AAX_Result SetParameterNormalizedValue (AAX_CParamID paramID, double newValue) override
  794. {
  795. if (auto* p = mParameterManager.GetParameterByID (paramID))
  796. p->SetValueWithFloat ((float) newValue);
  797. setAudioProcessorParameter (paramID, (float) newValue);
  798. return AAX_SUCCESS;
  799. }
  800. AAX_Result SetParameterNormalizedRelative (AAX_CParamID paramID, double newDeltaValue) override
  801. {
  802. if (auto* param = getParameterFromID (paramID))
  803. {
  804. auto newValue = param->getValue() + (float) newDeltaValue;
  805. setAudioProcessorParameter (paramID, jlimit (0.0f, 1.0f, newValue));
  806. if (auto* p = mParameterManager.GetParameterByID (paramID))
  807. p->SetValueWithFloat (newValue);
  808. }
  809. return AAX_SUCCESS;
  810. }
  811. AAX_Result GetParameterNameOfLength (AAX_CParamID paramID, AAX_IString* result, int32_t maxLen) const override
  812. {
  813. if (auto* param = getParameterFromID (paramID))
  814. result->Set (param->getName (maxLen).toRawUTF8());
  815. return AAX_SUCCESS;
  816. }
  817. AAX_Result GetParameterName (AAX_CParamID paramID, AAX_IString* result) const override
  818. {
  819. if (auto* param = getParameterFromID (paramID))
  820. result->Set (param->getName (31).toRawUTF8());
  821. return AAX_SUCCESS;
  822. }
  823. AAX_Result GetParameterDefaultNormalizedValue (AAX_CParamID paramID, double* result) const override
  824. {
  825. if (auto* param = getParameterFromID (paramID))
  826. *result = (double) param->getDefaultValue();
  827. else
  828. *result = 0.0;
  829. jassert (*result >= 0 && *result <= 1.0f);
  830. return AAX_SUCCESS;
  831. }
  832. AudioProcessor& getPluginInstance() const noexcept { return *pluginInstance; }
  833. Optional<PositionInfo> getPosition() const override
  834. {
  835. PositionInfo info;
  836. const AAX_ITransport& transport = *Transport();
  837. info.setBpm ([&]
  838. {
  839. double bpm = 0.0;
  840. return transport.GetCurrentTempo (&bpm) == AAX_SUCCESS ? makeOptional (bpm) : nullopt;
  841. }());
  842. const auto signature = [&]
  843. {
  844. int32_t num = 4, den = 4;
  845. return transport.GetCurrentMeter (&num, &den) == AAX_SUCCESS
  846. ? makeOptional (TimeSignature { (int) num, (int) den })
  847. : nullopt;
  848. }();
  849. info.setTimeSignature (signature);
  850. info.setIsPlaying ([&]
  851. {
  852. bool isPlaying = false;
  853. return transport.IsTransportPlaying (&isPlaying) == AAX_SUCCESS && isPlaying;
  854. }());
  855. info.setIsRecording (recordingState.get());
  856. const auto optionalTimeInSamples = [&info, &transport]
  857. {
  858. int64_t timeInSamples = 0;
  859. return ((! info.getIsPlaying() && transport.GetTimelineSelectionStartPosition (&timeInSamples) == AAX_SUCCESS)
  860. || transport.GetCurrentNativeSampleLocation (&timeInSamples) == AAX_SUCCESS)
  861. ? makeOptional (timeInSamples)
  862. : nullopt;
  863. }();
  864. info.setTimeInSamples (optionalTimeInSamples);
  865. info.setTimeInSeconds ((float) optionalTimeInSamples.orFallback (0) / sampleRate);
  866. const auto tickPosition = [&]
  867. {
  868. int64_t ticks = 0;
  869. return ((info.getIsPlaying() && transport.GetCustomTickPosition (&ticks, optionalTimeInSamples.orFallback (0))) == AAX_SUCCESS)
  870. || transport.GetCurrentTickPosition (&ticks) == AAX_SUCCESS
  871. ? makeOptional (ticks)
  872. : nullopt;
  873. }();
  874. info.setPpqPosition (tickPosition.hasValue() ? makeOptional (static_cast<double> (*tickPosition) / 960'000.0) : nullopt);
  875. bool isLooping = false;
  876. int64_t loopStartTick = 0, loopEndTick = 0;
  877. if (transport.GetCurrentLoopPosition (&isLooping, &loopStartTick, &loopEndTick) == AAX_SUCCESS)
  878. {
  879. info.setIsLooping (isLooping);
  880. info.setLoopPoints (LoopPoints { (double) loopStartTick / 960000.0, (double) loopEndTick / 960000.0 });
  881. }
  882. AAX_EFrameRate frameRate;
  883. int32_t offset;
  884. if (transport.GetTimeCodeInfo (&frameRate, &offset) == AAX_SUCCESS)
  885. {
  886. info.setFrameRate ([&]() -> Optional<FrameRate>
  887. {
  888. switch ((JUCE_AAX_EFrameRate) frameRate)
  889. {
  890. case JUCE_AAX_eFrameRate_24Frame: return FrameRate().withBaseRate (24);
  891. case JUCE_AAX_eFrameRate_23976: return FrameRate().withBaseRate (24).withPullDown();
  892. case JUCE_AAX_eFrameRate_25Frame: return FrameRate().withBaseRate (25);
  893. case JUCE_AAX_eFrameRate_30NonDrop: return FrameRate().withBaseRate (30);
  894. case JUCE_AAX_eFrameRate_30DropFrame: return FrameRate().withBaseRate (30).withDrop();
  895. case JUCE_AAX_eFrameRate_2997NonDrop: return FrameRate().withBaseRate (30).withPullDown();
  896. case JUCE_AAX_eFrameRate_2997DropFrame: return FrameRate().withBaseRate (30).withPullDown().withDrop();
  897. case JUCE_AAX_eFrameRate_48Frame: return FrameRate().withBaseRate (48);
  898. case JUCE_AAX_eFrameRate_47952: return FrameRate().withBaseRate (48).withPullDown();
  899. case JUCE_AAX_eFrameRate_50Frame: return FrameRate().withBaseRate (50);
  900. case JUCE_AAX_eFrameRate_60NonDrop: return FrameRate().withBaseRate (60);
  901. case JUCE_AAX_eFrameRate_60DropFrame: return FrameRate().withBaseRate (60).withDrop();
  902. case JUCE_AAX_eFrameRate_5994NonDrop: return FrameRate().withBaseRate (60).withPullDown();
  903. case JUCE_AAX_eFrameRate_5994DropFrame: return FrameRate().withBaseRate (60).withPullDown().withDrop();
  904. case JUCE_AAX_eFrameRate_100Frame: return FrameRate().withBaseRate (100);
  905. case JUCE_AAX_eFrameRate_120NonDrop: return FrameRate().withBaseRate (120);
  906. case JUCE_AAX_eFrameRate_120DropFrame: return FrameRate().withBaseRate (120).withDrop();
  907. case JUCE_AAX_eFrameRate_11988NonDrop: return FrameRate().withBaseRate (120).withPullDown();
  908. case JUCE_AAX_eFrameRate_11988DropFrame: return FrameRate().withBaseRate (120).withPullDown().withDrop();
  909. case JUCE_AAX_eFrameRate_Undeclared: break;
  910. }
  911. return {};
  912. }());
  913. }
  914. const auto effectiveRate = info.getFrameRate().hasValue() ? info.getFrameRate()->getEffectiveRate() : 0.0;
  915. info.setEditOriginTime (makeOptional (effectiveRate != 0.0 ? offset / effectiveRate : offset));
  916. {
  917. int32_t bars{}, beats{};
  918. int64_t displayTicks{};
  919. if (optionalTimeInSamples.hasValue()
  920. && transport.GetBarBeatPosition (&bars, &beats, &displayTicks, *optionalTimeInSamples) == AAX_SUCCESS)
  921. {
  922. info.setBarCount (bars);
  923. if (signature.hasValue())
  924. {
  925. const auto ticksSinceBar = static_cast<int64_t> (((beats - 1) * 4 * 960'000) / signature->denominator) + displayTicks;
  926. if (tickPosition.hasValue() && ticksSinceBar <= tickPosition)
  927. {
  928. const auto barStartInTicks = static_cast<double> (*tickPosition - ticksSinceBar);
  929. info.setPpqPositionOfLastBarStart (barStartInTicks / 960'000.0);
  930. }
  931. }
  932. }
  933. }
  934. return info;
  935. }
  936. void audioProcessorParameterChanged (AudioProcessor* /*processor*/, int parameterIndex, float newValue) override
  937. {
  938. if (inParameterChangedCallback.get())
  939. {
  940. inParameterChangedCallback = false;
  941. return;
  942. }
  943. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  944. SetParameterNormalizedValue (paramID, (double) newValue);
  945. }
  946. void audioProcessorChanged (AudioProcessor* processor, const ChangeDetails& details) override
  947. {
  948. ++mNumPlugInChanges;
  949. if (details.parameterInfoChanged)
  950. {
  951. for (const auto* param : juceParameters)
  952. if (auto* aaxParam = mParameterManager.GetParameterByID (getAAXParamIDFromJuceIndex (param->getParameterIndex())))
  953. syncParameterAttributes (aaxParam, param);
  954. }
  955. if (details.latencyChanged)
  956. check (Controller()->SetSignalLatency (processor->getLatencySamples()));
  957. if (details.nonParameterStateChanged)
  958. ++numSetDirtyCalls;
  959. }
  960. void audioProcessorParameterChangeGestureBegin (AudioProcessor*, int parameterIndex) override
  961. {
  962. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  963. TouchParameter (paramID);
  964. }
  965. void audioProcessorParameterChangeGestureEnd (AudioProcessor*, int parameterIndex) override
  966. {
  967. if (auto paramID = getAAXParamIDFromJuceIndex (parameterIndex))
  968. ReleaseParameter (paramID);
  969. }
  970. AAX_Result NotificationReceived (AAX_CTypeID type, const void* data, uint32_t size) override
  971. {
  972. switch (type)
  973. {
  974. case AAX_eNotificationEvent_EnteringOfflineMode: pluginInstance->setNonRealtime (true); break;
  975. case AAX_eNotificationEvent_ExitingOfflineMode: pluginInstance->setNonRealtime (false); break;
  976. case AAX_eNotificationEvent_ASProcessingState:
  977. {
  978. if (data != nullptr && size == sizeof (AAX_EProcessingState))
  979. {
  980. const auto state = *static_cast<const AAX_EProcessingState*> (data);
  981. const auto nonRealtime = state == AAX_eProcessingState_StartPass
  982. || state == AAX_eProcessingState_BeginPassGroup;
  983. pluginInstance->setNonRealtime (nonRealtime);
  984. }
  985. break;
  986. }
  987. case AAX_eNotificationEvent_TrackNameChanged:
  988. if (data != nullptr)
  989. {
  990. AudioProcessor::TrackProperties props;
  991. props.name = String::fromUTF8 (static_cast<const AAX_IString*> (data)->Get());
  992. pluginInstance->updateTrackProperties (props);
  993. }
  994. break;
  995. case AAX_eNotificationEvent_SideChainBeingConnected:
  996. case AAX_eNotificationEvent_SideChainBeingDisconnected:
  997. {
  998. processingSidechainChange = true;
  999. sidechainDesired = (type == AAX_eNotificationEvent_SideChainBeingConnected);
  1000. updateSidechainState();
  1001. break;
  1002. }
  1003. #if JUCE_AAX_HAS_TRANSPORT_NOTIFICATION
  1004. case AAX_eNotificationEvent_TransportStateChanged:
  1005. if (data != nullptr)
  1006. {
  1007. const auto& info = *static_cast<const AAX_TransportStateInfo_V1*> (data);
  1008. recordingState.set (info.mIsRecording);
  1009. }
  1010. break;
  1011. #endif
  1012. }
  1013. return AAX_CEffectParameters::NotificationReceived (type, data, size);
  1014. }
  1015. const float* getAudioBufferForInput (const float* const* inputs, int sidechain, int mainNumIns, int idx) const noexcept
  1016. {
  1017. jassert (idx < (mainNumIns + 1));
  1018. if (idx < mainNumIns)
  1019. return inputs[inputLayoutMap[idx]];
  1020. return (sidechain != -1 ? inputs[sidechain] : sideChainBuffer.data());
  1021. }
  1022. void process (const float* const* inputs, float* const* outputs, const int sideChainBufferIdx,
  1023. const int bufferSize, const bool bypass,
  1024. AAX_IMIDINode* midiNodeIn, AAX_IMIDINode* midiNodesOut,
  1025. float* const meterBuffers)
  1026. {
  1027. auto numIns = pluginInstance->getTotalNumInputChannels();
  1028. auto numOuts = pluginInstance->getTotalNumOutputChannels();
  1029. auto numMeters = aaxMeters.size();
  1030. const ScopedLock sl (pluginInstance->getCallbackLock());
  1031. bool isSuspended = [this, sideChainBufferIdx]
  1032. {
  1033. if (processingSidechainChange)
  1034. return true;
  1035. bool processWantsSidechain = (sideChainBufferIdx != -1);
  1036. if (hasSidechain && canDisableSidechain && (sidechainDesired != processWantsSidechain))
  1037. {
  1038. sidechainDesired = processWantsSidechain;
  1039. processingSidechainChange = true;
  1040. triggerAsyncUpdate();
  1041. return true;
  1042. }
  1043. return pluginInstance->isSuspended();
  1044. }();
  1045. if (isSuspended)
  1046. {
  1047. for (int i = 0; i < numOuts; ++i)
  1048. FloatVectorOperations::clear (outputs[i], bufferSize);
  1049. if (meterBuffers != nullptr)
  1050. FloatVectorOperations::clear (meterBuffers, numMeters);
  1051. }
  1052. else
  1053. {
  1054. auto mainNumIns = pluginInstance->getMainBusNumInputChannels();
  1055. auto sidechain = (pluginInstance->getChannelCountOfBus (true, 1) > 0 ? sideChainBufferIdx : -1);
  1056. auto numChans = jmax (numIns, numOuts);
  1057. if (numChans == 0)
  1058. return;
  1059. if (channelList.size() <= numChans)
  1060. channelList.insertMultiple (-1, nullptr, 1 + numChans - channelList.size());
  1061. float** channels = channelList.getRawDataPointer();
  1062. if (numOuts >= numIns)
  1063. {
  1064. for (int i = 0; i < numOuts; ++i)
  1065. channels[i] = outputs[outputLayoutMap[i]];
  1066. for (int i = 0; i < numIns; ++i)
  1067. memcpy (channels[i], getAudioBufferForInput (inputs, sidechain, mainNumIns, i), (size_t) bufferSize * sizeof (float));
  1068. for (int i = numIns; i < numOuts; ++i)
  1069. zeromem (channels[i], (size_t) bufferSize * sizeof (float));
  1070. process (channels, numOuts, bufferSize, bypass, midiNodeIn, midiNodesOut);
  1071. }
  1072. else
  1073. {
  1074. for (int i = 0; i < numOuts; ++i)
  1075. channels[i] = outputs[outputLayoutMap[i]];
  1076. for (int i = 0; i < numOuts; ++i)
  1077. memcpy (channels[i], getAudioBufferForInput (inputs, sidechain, mainNumIns, i), (size_t) bufferSize * sizeof (float));
  1078. for (int i = numOuts; i < numIns; ++i)
  1079. channels[i] = const_cast<float*> (getAudioBufferForInput (inputs, sidechain, mainNumIns, i));
  1080. process (channels, numIns, bufferSize, bypass, midiNodeIn, midiNodesOut);
  1081. }
  1082. if (meterBuffers != nullptr)
  1083. for (int i = 0; i < numMeters; ++i)
  1084. meterBuffers[i] = aaxMeters[i]->getValue();
  1085. }
  1086. }
  1087. //==============================================================================
  1088. // In aax, the format of the aux and sidechain buses need to be fully determined
  1089. // by the format on the main buses. This function tried to provide such a mapping.
  1090. // Returns false if the in/out main layout is not supported
  1091. static bool fullBusesLayoutFromMainLayout (const AudioProcessor& p,
  1092. const AudioChannelSet& mainInput, const AudioChannelSet& mainOutput,
  1093. AudioProcessor::BusesLayout& fullLayout)
  1094. {
  1095. auto currentLayout = getDefaultLayout (p, true);
  1096. bool success = p.checkBusesLayoutSupported (currentLayout);
  1097. jassertquiet (success);
  1098. auto numInputBuses = p.getBusCount (true);
  1099. auto numOutputBuses = p.getBusCount (false);
  1100. if (auto* bus = p.getBus (true, 0))
  1101. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  1102. return false;
  1103. if (auto* bus = p.getBus (false, 0))
  1104. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  1105. return false;
  1106. // did this change the input again
  1107. if (numInputBuses > 0 && currentLayout.inputBuses.getReference (0) != mainInput)
  1108. return false;
  1109. #ifdef JucePlugin_PreferredChannelConfigurations
  1110. short configs[][2] = { JucePlugin_PreferredChannelConfigurations };
  1111. if (! AudioProcessor::containsLayout (currentLayout, configs))
  1112. return false;
  1113. #endif
  1114. bool foundValid = false;
  1115. {
  1116. auto onlyMains = currentLayout;
  1117. for (int i = 1; i < numInputBuses; ++i)
  1118. onlyMains.inputBuses.getReference (i) = AudioChannelSet::disabled();
  1119. for (int i = 1; i < numOutputBuses; ++i)
  1120. onlyMains.outputBuses.getReference (i) = AudioChannelSet::disabled();
  1121. if (p.checkBusesLayoutSupported (onlyMains))
  1122. {
  1123. foundValid = true;
  1124. fullLayout = onlyMains;
  1125. }
  1126. }
  1127. if (numInputBuses > 1)
  1128. {
  1129. // can the first bus be a sidechain or disabled, if not then we can't use this layout combination
  1130. if (auto* bus = p.getBus (true, 1))
  1131. if (! bus->isLayoutSupported (AudioChannelSet::mono(), &currentLayout) && ! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  1132. return foundValid;
  1133. // can all the other inputs be disabled, if not then we can't use this layout combination
  1134. for (int i = 2; i < numInputBuses; ++i)
  1135. if (auto* bus = p.getBus (true, i))
  1136. if (! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  1137. return foundValid;
  1138. if (auto* bus = p.getBus (true, 0))
  1139. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  1140. return foundValid;
  1141. if (auto* bus = p.getBus (false, 0))
  1142. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  1143. return foundValid;
  1144. // recheck if the format is correct
  1145. if ((numInputBuses > 0 && currentLayout.inputBuses .getReference (0) != mainInput)
  1146. || (numOutputBuses > 0 && currentLayout.outputBuses.getReference (0) != mainOutput))
  1147. return foundValid;
  1148. auto& sidechainBus = currentLayout.inputBuses.getReference (1);
  1149. if (sidechainBus != AudioChannelSet::mono() && sidechainBus != AudioChannelSet::disabled())
  1150. return foundValid;
  1151. for (int i = 2; i < numInputBuses; ++i)
  1152. if (! currentLayout.inputBuses.getReference (i).isDisabled())
  1153. return foundValid;
  1154. }
  1155. const bool hasSidechain = (numInputBuses > 1 && currentLayout.inputBuses.getReference (1) == AudioChannelSet::mono());
  1156. if (hasSidechain)
  1157. {
  1158. auto onlyMainsAndSidechain = currentLayout;
  1159. for (int i = 1; i < numOutputBuses; ++i)
  1160. onlyMainsAndSidechain.outputBuses.getReference (i) = AudioChannelSet::disabled();
  1161. if (p.checkBusesLayoutSupported (onlyMainsAndSidechain))
  1162. {
  1163. foundValid = true;
  1164. fullLayout = onlyMainsAndSidechain;
  1165. }
  1166. }
  1167. if (numOutputBuses > 1)
  1168. {
  1169. auto copy = currentLayout;
  1170. int maxAuxBuses = jmin (16, numOutputBuses);
  1171. for (int i = 1; i < maxAuxBuses; ++i)
  1172. copy.outputBuses.getReference (i) = mainOutput;
  1173. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  1174. copy.outputBuses.getReference (i) = AudioChannelSet::disabled();
  1175. if (p.checkBusesLayoutSupported (copy))
  1176. {
  1177. fullLayout = copy;
  1178. foundValid = true;
  1179. }
  1180. else
  1181. {
  1182. for (int i = 1; i < maxAuxBuses; ++i)
  1183. if (currentLayout.outputBuses.getReference (i).isDisabled())
  1184. return foundValid;
  1185. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  1186. if (auto* bus = p.getBus (false, i))
  1187. if (! bus->isLayoutSupported (AudioChannelSet::disabled(), &currentLayout))
  1188. return foundValid;
  1189. if (auto* bus = p.getBus (true, 0))
  1190. if (! bus->isLayoutSupported (mainInput, &currentLayout))
  1191. return foundValid;
  1192. if (auto* bus = p.getBus (false, 0))
  1193. if (! bus->isLayoutSupported (mainOutput, &currentLayout))
  1194. return foundValid;
  1195. if ((numInputBuses > 0 && currentLayout.inputBuses .getReference (0) != mainInput)
  1196. || (numOutputBuses > 0 && currentLayout.outputBuses.getReference (0) != mainOutput))
  1197. return foundValid;
  1198. if (numInputBuses > 1)
  1199. {
  1200. auto& sidechainBus = currentLayout.inputBuses.getReference (1);
  1201. if (sidechainBus != AudioChannelSet::mono() && sidechainBus != AudioChannelSet::disabled())
  1202. return foundValid;
  1203. }
  1204. for (int i = maxAuxBuses; i < numOutputBuses; ++i)
  1205. if (! currentLayout.outputBuses.getReference (i).isDisabled())
  1206. return foundValid;
  1207. fullLayout = currentLayout;
  1208. foundValid = true;
  1209. }
  1210. }
  1211. return foundValid;
  1212. }
  1213. bool isInAudioSuite()
  1214. {
  1215. AAX_CBoolean res;
  1216. Controller()->GetIsAudioSuite (&res);
  1217. return res > 0;
  1218. }
  1219. private:
  1220. friend class JuceAAX_GUI;
  1221. friend void AAX_CALLBACK AAXClasses::algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd);
  1222. void process (float* const* channels, const int numChans, const int bufferSize,
  1223. const bool bypass, [[maybe_unused]] AAX_IMIDINode* midiNodeIn, [[maybe_unused]] AAX_IMIDINode* midiNodesOut)
  1224. {
  1225. AudioBuffer<float> buffer (channels, numChans, bufferSize);
  1226. midiBuffer.clear();
  1227. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  1228. {
  1229. auto* midiStream = midiNodeIn->GetNodeBuffer();
  1230. auto numMidiEvents = midiStream->mBufferSize;
  1231. for (uint32_t i = 0; i < numMidiEvents; ++i)
  1232. {
  1233. auto& m = midiStream->mBuffer[i];
  1234. jassert ((int) m.mTimestamp < bufferSize);
  1235. midiBuffer.addEvent (m.mData, (int) m.mLength,
  1236. jlimit (0, (int) bufferSize - 1, (int) m.mTimestamp));
  1237. }
  1238. }
  1239. #endif
  1240. {
  1241. if (lastBufferSize != bufferSize)
  1242. {
  1243. lastBufferSize = bufferSize;
  1244. pluginInstance->setRateAndBufferSizeDetails (sampleRate, lastBufferSize);
  1245. // we only call prepareToPlay here if the new buffer size is larger than
  1246. // the one used last time prepareToPlay was called.
  1247. // currently, this should never actually happen, because as of Pro Tools 12,
  1248. // the maximum possible value is 1024, and we call prepareToPlay with that
  1249. // value during initialisation.
  1250. if (bufferSize > maxBufferSize)
  1251. prepareProcessorWithSampleRateAndBufferSize (sampleRate, bufferSize);
  1252. }
  1253. if (bypass && pluginInstance->getBypassParameter() == nullptr)
  1254. pluginInstance->processBlockBypassed (buffer, midiBuffer);
  1255. else
  1256. pluginInstance->processBlock (buffer, midiBuffer);
  1257. }
  1258. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsMidiEffect
  1259. {
  1260. AAX_CMidiPacket packet;
  1261. packet.mIsImmediate = false;
  1262. for (const auto metadata : midiBuffer)
  1263. {
  1264. jassert (isPositiveAndBelow (metadata.samplePosition, bufferSize));
  1265. if (metadata.numBytes <= 4)
  1266. {
  1267. packet.mTimestamp = (uint32_t) metadata.samplePosition;
  1268. packet.mLength = (uint32_t) metadata.numBytes;
  1269. memcpy (packet.mData, metadata.data, (size_t) metadata.numBytes);
  1270. check (midiNodesOut->PostMIDIPacket (&packet));
  1271. }
  1272. }
  1273. }
  1274. #endif
  1275. }
  1276. bool isBypassPartOfRegularParemeters() const
  1277. {
  1278. auto& audioProcessor = getPluginInstance();
  1279. int n = juceParameters.getNumParameters();
  1280. if (auto* bypassParam = audioProcessor.getBypassParameter())
  1281. for (int i = 0; i < n; ++i)
  1282. if (juceParameters.getParamForIndex (i) == bypassParam)
  1283. return true;
  1284. return false;
  1285. }
  1286. // Some older Pro Tools control surfaces (EUCON [PT version 12.4] and
  1287. // Avid S6 before version 2.1) cannot cope with a large number of
  1288. // parameter steps.
  1289. static int32_t getSafeNumberOfParameterSteps (const AudioProcessorParameter& param)
  1290. {
  1291. return jmin (param.getNumSteps(), 2048);
  1292. }
  1293. void addAudioProcessorParameters()
  1294. {
  1295. auto& audioProcessor = getPluginInstance();
  1296. #if JUCE_FORCE_USE_LEGACY_PARAM_IDS
  1297. const bool forceLegacyParamIDs = true;
  1298. #else
  1299. const bool forceLegacyParamIDs = false;
  1300. #endif
  1301. auto bypassPartOfRegularParams = isBypassPartOfRegularParemeters();
  1302. juceParameters.update (audioProcessor, forceLegacyParamIDs);
  1303. auto* bypassParameter = pluginInstance->getBypassParameter();
  1304. if (bypassParameter == nullptr)
  1305. {
  1306. ownedBypassParameter.reset (new AudioParameterBool (cDefaultMasterBypassID, "Master Bypass", false));
  1307. bypassParameter = ownedBypassParameter.get();
  1308. }
  1309. if (! bypassPartOfRegularParams)
  1310. juceParameters.addNonOwning (bypassParameter);
  1311. int parameterIndex = 0;
  1312. for (auto* juceParam : juceParameters)
  1313. {
  1314. auto isBypassParameter = (juceParam == bypassParameter);
  1315. auto category = juceParam->getCategory();
  1316. auto paramID = isBypassParameter ? String (cDefaultMasterBypassID)
  1317. : juceParameters.getParamID (audioProcessor, parameterIndex);
  1318. aaxParamIDs.add (paramID);
  1319. auto* aaxParamID = aaxParamIDs.getReference (parameterIndex++).toRawUTF8();
  1320. paramMap.set (AAXClasses::getAAXParamHash (aaxParamID), juceParam);
  1321. // is this a meter?
  1322. if (((category & 0xffff0000) >> 16) == 2)
  1323. {
  1324. aaxMeters.add (juceParam);
  1325. continue;
  1326. }
  1327. auto parameter = new AAX_CParameter<float> (aaxParamID,
  1328. AAX_CString (juceParam->getName (31).toRawUTF8()),
  1329. juceParam->getDefaultValue(),
  1330. AAX_CLinearTaperDelegate<float, 0>(),
  1331. AAX_CNumberDisplayDelegate<float, 3>(),
  1332. juceParam->isAutomatable());
  1333. parameter->AddShortenedName (juceParam->getName (4).toRawUTF8());
  1334. auto parameterNumSteps = getSafeNumberOfParameterSteps (*juceParam);
  1335. parameter->SetNumberOfSteps ((uint32_t) parameterNumSteps);
  1336. #if JUCE_FORCE_LEGACY_PARAMETER_AUTOMATION_TYPE
  1337. parameter->SetType (parameterNumSteps > 1000 ? AAX_eParameterType_Continuous
  1338. : AAX_eParameterType_Discrete);
  1339. #else
  1340. parameter->SetType (juceParam->isDiscrete() ? AAX_eParameterType_Discrete
  1341. : AAX_eParameterType_Continuous);
  1342. #endif
  1343. parameter->SetOrientation (juceParam->isOrientationInverted()
  1344. ? (AAX_eParameterOrientation_RightMinLeftMax | AAX_eParameterOrientation_TopMinBottomMax
  1345. | AAX_eParameterOrientation_RotarySingleDotMode | AAX_eParameterOrientation_RotaryRightMinLeftMax)
  1346. : (AAX_eParameterOrientation_LeftMinRightMax | AAX_eParameterOrientation_BottomMinTopMax
  1347. | AAX_eParameterOrientation_RotarySingleDotMode | AAX_eParameterOrientation_RotaryLeftMinRightMax));
  1348. mParameterManager.AddParameter (parameter);
  1349. if (isBypassParameter)
  1350. mPacketDispatcher.RegisterPacket (aaxParamID, JUCEAlgorithmIDs::bypass);
  1351. }
  1352. }
  1353. bool getMainBusFormats (AudioChannelSet& inputSet, AudioChannelSet& outputSet)
  1354. {
  1355. auto& audioProcessor = getPluginInstance();
  1356. #if JucePlugin_IsMidiEffect
  1357. // MIDI effect plug-ins do not support any audio channels
  1358. jassert (audioProcessor.getTotalNumInputChannels() == 0
  1359. && audioProcessor.getTotalNumOutputChannels() == 0);
  1360. inputSet = outputSet = AudioChannelSet();
  1361. return true;
  1362. #else
  1363. auto inputBuses = audioProcessor.getBusCount (true);
  1364. auto outputBuses = audioProcessor.getBusCount (false);
  1365. AAX_EStemFormat inputStemFormat = AAX_eStemFormat_None;
  1366. check (Controller()->GetInputStemFormat (&inputStemFormat));
  1367. AAX_EStemFormat outputStemFormat = AAX_eStemFormat_None;
  1368. check (Controller()->GetOutputStemFormat (&outputStemFormat));
  1369. #if JucePlugin_IsSynth
  1370. if (inputBuses == 0)
  1371. inputStemFormat = AAX_eStemFormat_None;
  1372. #endif
  1373. inputSet = (inputBuses > 0 ? channelSetFromStemFormat (inputStemFormat, false) : AudioChannelSet());
  1374. outputSet = (outputBuses > 0 ? channelSetFromStemFormat (outputStemFormat, false) : AudioChannelSet());
  1375. if ((inputSet == AudioChannelSet::disabled() && inputStemFormat != AAX_eStemFormat_None) || (outputSet == AudioChannelSet::disabled() && outputStemFormat != AAX_eStemFormat_None)
  1376. || (inputSet != AudioChannelSet::disabled() && inputBuses == 0) || (outputSet != AudioChannelSet::disabled() && outputBuses == 0))
  1377. return false;
  1378. return true;
  1379. #endif
  1380. }
  1381. AAX_Result preparePlugin()
  1382. {
  1383. auto& audioProcessor = getPluginInstance();
  1384. auto oldLayout = audioProcessor.getBusesLayout();
  1385. AudioChannelSet inputSet, outputSet;
  1386. if (! getMainBusFormats (inputSet, outputSet))
  1387. {
  1388. if (isPrepared)
  1389. {
  1390. isPrepared = false;
  1391. audioProcessor.releaseResources();
  1392. }
  1393. return AAX_ERROR_UNIMPLEMENTED;
  1394. }
  1395. AudioProcessor::BusesLayout newLayout;
  1396. if (! fullBusesLayoutFromMainLayout (audioProcessor, inputSet, outputSet, newLayout))
  1397. {
  1398. if (isPrepared)
  1399. {
  1400. isPrepared = false;
  1401. audioProcessor.releaseResources();
  1402. }
  1403. return AAX_ERROR_UNIMPLEMENTED;
  1404. }
  1405. hasSidechain = (newLayout.getNumChannels (true, 1) == 1);
  1406. if (hasSidechain)
  1407. {
  1408. sidechainDesired = true;
  1409. auto disabledSidechainLayout = newLayout;
  1410. disabledSidechainLayout.inputBuses.getReference (1) = AudioChannelSet::disabled();
  1411. canDisableSidechain = audioProcessor.checkBusesLayoutSupported (disabledSidechainLayout);
  1412. if (canDisableSidechain && ! lastSideChainState)
  1413. {
  1414. sidechainDesired = false;
  1415. newLayout = disabledSidechainLayout;
  1416. }
  1417. }
  1418. if (isInAudioSuite())
  1419. {
  1420. // AudioSuite doesn't support multiple output buses
  1421. for (int i = 1; i < newLayout.outputBuses.size(); ++i)
  1422. newLayout.outputBuses.getReference (i) = AudioChannelSet::disabled();
  1423. if (! audioProcessor.checkBusesLayoutSupported (newLayout))
  1424. {
  1425. // your plug-in needs to support a single output bus if running in AudioSuite
  1426. jassertfalse;
  1427. if (isPrepared)
  1428. {
  1429. isPrepared = false;
  1430. audioProcessor.releaseResources();
  1431. }
  1432. return AAX_ERROR_UNIMPLEMENTED;
  1433. }
  1434. }
  1435. const bool layoutChanged = (oldLayout != newLayout);
  1436. if (layoutChanged)
  1437. {
  1438. if (! audioProcessor.setBusesLayout (newLayout))
  1439. {
  1440. if (isPrepared)
  1441. {
  1442. isPrepared = false;
  1443. audioProcessor.releaseResources();
  1444. }
  1445. return AAX_ERROR_UNIMPLEMENTED;
  1446. }
  1447. rebuildChannelMapArrays();
  1448. }
  1449. if (layoutChanged || (! isPrepared))
  1450. {
  1451. if (isPrepared)
  1452. {
  1453. isPrepared = false;
  1454. audioProcessor.releaseResources();
  1455. }
  1456. prepareProcessorWithSampleRateAndBufferSize (sampleRate, lastBufferSize);
  1457. midiBuffer.ensureSize (2048);
  1458. midiBuffer.clear();
  1459. }
  1460. check (Controller()->SetSignalLatency (audioProcessor.getLatencySamples()));
  1461. isPrepared = true;
  1462. return AAX_SUCCESS;
  1463. }
  1464. void rebuildChannelMapArrays()
  1465. {
  1466. auto& audioProcessor = getPluginInstance();
  1467. for (int dir = 0; dir < 2; ++dir)
  1468. {
  1469. bool isInput = (dir == 0);
  1470. auto& layoutMap = isInput ? inputLayoutMap : outputLayoutMap;
  1471. layoutMap.clear();
  1472. auto numBuses = audioProcessor.getBusCount (isInput);
  1473. int chOffset = 0;
  1474. for (int busIdx = 0; busIdx < numBuses; ++busIdx)
  1475. {
  1476. auto channelFormat = audioProcessor.getChannelLayoutOfBus (isInput, busIdx);
  1477. if (channelFormat != AudioChannelSet::disabled())
  1478. {
  1479. auto numChannels = channelFormat.size();
  1480. for (int ch = 0; ch < numChannels; ++ch)
  1481. layoutMap.add (juceChannelIndexToAax (ch, channelFormat) + chOffset);
  1482. chOffset += numChannels;
  1483. }
  1484. }
  1485. }
  1486. }
  1487. static void algorithmCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd)
  1488. {
  1489. for (auto iter = instancesBegin; iter < instancesEnd; ++iter)
  1490. {
  1491. auto& i = **iter;
  1492. int sideChainBufferIdx = i.pluginInstance->parameters.hasSidechain && i.sideChainBuffers != nullptr
  1493. ? static_cast<int> (*i.sideChainBuffers) : -1;
  1494. // sidechain index of zero is an invalid index
  1495. if (sideChainBufferIdx <= 0)
  1496. sideChainBufferIdx = -1;
  1497. auto numMeters = i.pluginInstance->parameters.aaxMeters.size();
  1498. float* const meterTapBuffers = (i.meterTapBuffers != nullptr && numMeters > 0 ? *i.meterTapBuffers : nullptr);
  1499. i.pluginInstance->parameters.process (i.inputChannels, i.outputChannels, sideChainBufferIdx,
  1500. *(i.bufferSize), *(i.bypass) != 0,
  1501. getMidiNodeIn(i), getMidiNodeOut(i),
  1502. meterTapBuffers);
  1503. }
  1504. }
  1505. void prepareProcessorWithSampleRateAndBufferSize (double sr, int bs)
  1506. {
  1507. maxBufferSize = jmax (maxBufferSize, bs);
  1508. auto& audioProcessor = getPluginInstance();
  1509. audioProcessor.setRateAndBufferSizeDetails (sr, maxBufferSize);
  1510. audioProcessor.prepareToPlay (sr, maxBufferSize);
  1511. sideChainBuffer.resize (static_cast<size_t> (maxBufferSize));
  1512. }
  1513. //==============================================================================
  1514. void updateSidechainState()
  1515. {
  1516. if (! processingSidechainChange)
  1517. return;
  1518. auto& audioProcessor = getPluginInstance();
  1519. const auto sidechainActual = audioProcessor.getChannelCountOfBus (true, 1) > 0;
  1520. if (hasSidechain && canDisableSidechain && sidechainDesired != sidechainActual)
  1521. {
  1522. lastSideChainState = sidechainDesired;
  1523. if (isPrepared)
  1524. {
  1525. isPrepared = false;
  1526. audioProcessor.releaseResources();
  1527. }
  1528. if (auto* bus = audioProcessor.getBus (true, 1))
  1529. bus->setCurrentLayout (lastSideChainState ? AudioChannelSet::mono()
  1530. : AudioChannelSet::disabled());
  1531. prepareProcessorWithSampleRateAndBufferSize (audioProcessor.getSampleRate(), maxBufferSize);
  1532. isPrepared = true;
  1533. }
  1534. processingSidechainChange = false;
  1535. }
  1536. void handleAsyncUpdate() override
  1537. {
  1538. updateSidechainState();
  1539. }
  1540. //==============================================================================
  1541. static AudioProcessor::CurveData::Type aaxCurveTypeToJUCE (AAX_CTypeID type) noexcept
  1542. {
  1543. switch (type)
  1544. {
  1545. case AAX_eCurveType_EQ: return AudioProcessor::CurveData::Type::EQ;
  1546. case AAX_eCurveType_Dynamics: return AudioProcessor::CurveData::Type::Dynamics;
  1547. case AAX_eCurveType_Reduction: return AudioProcessor::CurveData::Type::GainReduction;
  1548. default: break;
  1549. }
  1550. return AudioProcessor::CurveData::Type::Unknown;
  1551. }
  1552. uint32_t getAAXMeterIdForParamId (const String& paramID) const noexcept
  1553. {
  1554. int idx;
  1555. for (idx = 0; idx < aaxMeters.size(); ++idx)
  1556. if (LegacyAudioParameter::getParamID (aaxMeters[idx], false) == paramID)
  1557. break;
  1558. // you specified a parameter id in your curve but the parameter does not have the meter
  1559. // category
  1560. jassert (idx < aaxMeters.size());
  1561. return 'Metr' + static_cast<AAX_CTypeID> (idx);
  1562. }
  1563. //==============================================================================
  1564. AAX_Result GetCurveData (AAX_CTypeID iCurveType, const float * iValues, uint32_t iNumValues, float * oValues ) const override
  1565. {
  1566. auto curveType = aaxCurveTypeToJUCE (iCurveType);
  1567. if (curveType != AudioProcessor::CurveData::Type::Unknown)
  1568. {
  1569. auto& audioProcessor = getPluginInstance();
  1570. auto curve = audioProcessor.getResponseCurve (curveType);
  1571. if (curve.curve)
  1572. {
  1573. if (oValues != nullptr && iValues != nullptr)
  1574. {
  1575. for (uint32_t i = 0; i < iNumValues; ++i)
  1576. oValues[i] = curve.curve (iValues[i]);
  1577. }
  1578. return AAX_SUCCESS;
  1579. }
  1580. }
  1581. return AAX_ERROR_UNIMPLEMENTED;
  1582. }
  1583. AAX_Result GetCurveDataMeterIds (AAX_CTypeID iCurveType, uint32_t *oXMeterId, uint32_t *oYMeterId) const override
  1584. {
  1585. auto curveType = aaxCurveTypeToJUCE (iCurveType);
  1586. if (curveType != AudioProcessor::CurveData::Type::Unknown)
  1587. {
  1588. auto& audioProcessor = getPluginInstance();
  1589. auto curve = audioProcessor.getResponseCurve (curveType);
  1590. if (curve.curve && curve.xMeterID.isNotEmpty() && curve.yMeterID.isNotEmpty())
  1591. {
  1592. if (oXMeterId != nullptr) *oXMeterId = getAAXMeterIdForParamId (curve.xMeterID);
  1593. if (oYMeterId != nullptr) *oYMeterId = getAAXMeterIdForParamId (curve.yMeterID);
  1594. return AAX_SUCCESS;
  1595. }
  1596. }
  1597. return AAX_ERROR_UNIMPLEMENTED;
  1598. }
  1599. AAX_Result GetCurveDataDisplayRange (AAX_CTypeID iCurveType, float *oXMin, float *oXMax, float *oYMin, float *oYMax) const override
  1600. {
  1601. auto curveType = aaxCurveTypeToJUCE (iCurveType);
  1602. if (curveType != AudioProcessor::CurveData::Type::Unknown)
  1603. {
  1604. auto& audioProcessor = getPluginInstance();
  1605. auto curve = audioProcessor.getResponseCurve (curveType);
  1606. if (curve.curve)
  1607. {
  1608. if (oXMin != nullptr) *oXMin = curve.xRange.getStart();
  1609. if (oXMax != nullptr) *oXMax = curve.xRange.getEnd();
  1610. if (oYMin != nullptr) *oYMin = curve.yRange.getStart();
  1611. if (oYMax != nullptr) *oYMax = curve.yRange.getEnd();
  1612. return AAX_SUCCESS;
  1613. }
  1614. }
  1615. return AAX_ERROR_UNIMPLEMENTED;
  1616. }
  1617. //==============================================================================
  1618. inline int getParamIndexFromID (AAX_CParamID paramID) const noexcept
  1619. {
  1620. if (auto* param = getParameterFromID (paramID))
  1621. return LegacyAudioParameter::getParamIndex (getPluginInstance(), param);
  1622. return -1;
  1623. }
  1624. inline AAX_CParamID getAAXParamIDFromJuceIndex (int index) const noexcept
  1625. {
  1626. if (isPositiveAndBelow (index, aaxParamIDs.size()))
  1627. return aaxParamIDs.getReference (index).toRawUTF8();
  1628. return nullptr;
  1629. }
  1630. AudioProcessorParameter* getParameterFromID (AAX_CParamID paramID) const noexcept
  1631. {
  1632. return paramMap [AAXClasses::getAAXParamHash (paramID)];
  1633. }
  1634. //==============================================================================
  1635. static AudioProcessor::BusesLayout getDefaultLayout (const AudioProcessor& p, bool enableAll)
  1636. {
  1637. AudioProcessor::BusesLayout defaultLayout;
  1638. for (int dir = 0; dir < 2; ++dir)
  1639. {
  1640. bool isInput = (dir == 0);
  1641. auto numBuses = p.getBusCount (isInput);
  1642. auto& layouts = (isInput ? defaultLayout.inputBuses : defaultLayout.outputBuses);
  1643. for (int i = 0; i < numBuses; ++i)
  1644. if (auto* bus = p.getBus (isInput, i))
  1645. layouts.add (enableAll || bus->isEnabledByDefault() ? bus->getDefaultLayout() : AudioChannelSet());
  1646. }
  1647. return defaultLayout;
  1648. }
  1649. static AudioProcessor::BusesLayout getDefaultLayout (AudioProcessor& p)
  1650. {
  1651. auto defaultLayout = getDefaultLayout (p, true);
  1652. if (! p.checkBusesLayoutSupported (defaultLayout))
  1653. defaultLayout = getDefaultLayout (p, false);
  1654. // Your processor must support the default layout
  1655. jassert (p.checkBusesLayoutSupported (defaultLayout));
  1656. return defaultLayout;
  1657. }
  1658. void syncParameterAttributes (AAX_IParameter* aaxParam, const AudioProcessorParameter* juceParam)
  1659. {
  1660. if (juceParam == nullptr)
  1661. return;
  1662. {
  1663. auto newName = juceParam->getName (31);
  1664. if (aaxParam->Name() != newName.toRawUTF8())
  1665. aaxParam->SetName (AAX_CString (newName.toRawUTF8()));
  1666. }
  1667. {
  1668. auto newType = juceParam->isDiscrete() ? AAX_eParameterType_Discrete : AAX_eParameterType_Continuous;
  1669. if (aaxParam->GetType() != newType)
  1670. aaxParam->SetType (newType);
  1671. }
  1672. {
  1673. auto newNumSteps = static_cast<uint32_t> (juceParam->getNumSteps());
  1674. if (aaxParam->GetNumberOfSteps() != newNumSteps)
  1675. aaxParam->SetNumberOfSteps (newNumSteps);
  1676. }
  1677. {
  1678. auto defaultValue = juceParam->getDefaultValue();
  1679. if (! approximatelyEqual (static_cast<float> (aaxParam->GetNormalizedDefaultValue()), defaultValue))
  1680. aaxParam->SetNormalizedDefaultValue (defaultValue);
  1681. }
  1682. }
  1683. //==============================================================================
  1684. ScopedJuceInitialiser_GUI libraryInitialiser;
  1685. std::unique_ptr<AudioProcessor> pluginInstance;
  1686. static constexpr auto maxSamplesPerBlock = 1 << AAX_eAudioBufferLength_Max;
  1687. bool isPrepared = false;
  1688. MidiBuffer midiBuffer;
  1689. Array<float*> channelList;
  1690. int32_t juceChunkIndex = 0, numSetDirtyCalls = 0;
  1691. AAX_CSampleRate sampleRate = 0;
  1692. int lastBufferSize = maxSamplesPerBlock, maxBufferSize = maxSamplesPerBlock;
  1693. bool hasSidechain = false, canDisableSidechain = false, lastSideChainState = false;
  1694. /* Pro Tools 2021 sends TransportStateChanged on the main thread, but we read
  1695. the recording state on the audio thread.
  1696. I'm not sure whether Pro Tools ensures that these calls are mutually
  1697. exclusive, so to ensure there are no data races, we store the recording
  1698. state in an atomic int and convert it to/from an Optional<bool> as necessary.
  1699. */
  1700. class RecordingState
  1701. {
  1702. public:
  1703. /* This uses Optional rather than std::optional for consistency with get() */
  1704. void set (const Optional<bool> newState)
  1705. {
  1706. state.store (newState.hasValue() ? (flagValid | (*newState ? flagActive : 0))
  1707. : 0,
  1708. std::memory_order_relaxed);
  1709. }
  1710. /* PositionInfo::setIsRecording takes an Optional<bool>, so we use that type rather
  1711. than std::optional to avoid having to convert.
  1712. */
  1713. Optional<bool> get() const
  1714. {
  1715. const auto loaded = state.load (std::memory_order_relaxed);
  1716. return ((loaded & flagValid) != 0) ? makeOptional ((loaded & flagActive) != 0)
  1717. : nullopt;
  1718. }
  1719. private:
  1720. enum RecordingFlags
  1721. {
  1722. flagValid = 1 << 0,
  1723. flagActive = 1 << 1
  1724. };
  1725. std::atomic<int> state { 0 };
  1726. };
  1727. RecordingState recordingState;
  1728. std::atomic<bool> processingSidechainChange, sidechainDesired;
  1729. std::vector<float> sideChainBuffer;
  1730. Array<int> inputLayoutMap, outputLayoutMap;
  1731. Array<String> aaxParamIDs;
  1732. HashMap<int32, AudioProcessorParameter*> paramMap;
  1733. LegacyAudioParametersWrapper juceParameters;
  1734. std::unique_ptr<AudioProcessorParameter> ownedBypassParameter;
  1735. Array<AudioProcessorParameter*> aaxMeters;
  1736. struct ChunkMemoryBlock
  1737. {
  1738. juce::MemoryBlock data;
  1739. bool isValid;
  1740. };
  1741. // temporary filter data is generated in GetChunkSize
  1742. // and the size of the data returned. To avoid generating
  1743. // it again in GetChunk, we need to store it somewhere.
  1744. // However, as GetChunkSize and GetChunk can be called
  1745. // on different threads, we store it in thread dependent storage
  1746. // in a hash map with the thread id as a key.
  1747. mutable ThreadLocalValue<ChunkMemoryBlock> perThreadFilterData;
  1748. CriticalSection perThreadDataLock;
  1749. ThreadLocalValue<bool> inParameterChangedCallback;
  1750. JUCE_DECLARE_NON_COPYABLE (JuceAAX_Processor)
  1751. };
  1752. //==============================================================================
  1753. void JuceAAX_GUI::CreateViewContents()
  1754. {
  1755. if (component == nullptr)
  1756. {
  1757. if (auto* params = dynamic_cast<JuceAAX_Processor*> (GetEffectParameters()))
  1758. component.reset (new ContentWrapperComponent (*this, params->getPluginInstance()));
  1759. else
  1760. jassertfalse;
  1761. }
  1762. }
  1763. int JuceAAX_GUI::getParamIndexFromID (AAX_CParamID paramID) const noexcept
  1764. {
  1765. if (auto* params = dynamic_cast<const JuceAAX_Processor*> (GetEffectParameters()))
  1766. return params->getParamIndexFromID (paramID);
  1767. return -1;
  1768. }
  1769. AAX_CParamID JuceAAX_GUI::getAAXParamIDFromJuceIndex (int index) const noexcept
  1770. {
  1771. if (auto* params = dynamic_cast<const JuceAAX_Processor*> (GetEffectParameters()))
  1772. return params->getAAXParamIDFromJuceIndex (index);
  1773. return nullptr;
  1774. }
  1775. //==============================================================================
  1776. struct AAXFormatConfiguration
  1777. {
  1778. AAXFormatConfiguration() noexcept {}
  1779. AAXFormatConfiguration (AAX_EStemFormat inFormat, AAX_EStemFormat outFormat) noexcept
  1780. : inputFormat (inFormat), outputFormat (outFormat) {}
  1781. AAX_EStemFormat inputFormat = AAX_eStemFormat_None,
  1782. outputFormat = AAX_eStemFormat_None;
  1783. bool operator== (const AAXFormatConfiguration other) const noexcept
  1784. {
  1785. return inputFormat == other.inputFormat && outputFormat == other.outputFormat;
  1786. }
  1787. bool operator< (const AAXFormatConfiguration other) const noexcept
  1788. {
  1789. return inputFormat == other.inputFormat ? (outputFormat < other.outputFormat)
  1790. : (inputFormat < other.inputFormat);
  1791. }
  1792. };
  1793. //==============================================================================
  1794. static int addAAXMeters (AudioProcessor& p, AAX_IEffectDescriptor& descriptor)
  1795. {
  1796. LegacyAudioParametersWrapper params;
  1797. #if JUCE_FORCE_USE_LEGACY_PARAM_IDS
  1798. const bool forceLegacyParamIDs = true;
  1799. #else
  1800. const bool forceLegacyParamIDs = false;
  1801. #endif
  1802. params.update (p, forceLegacyParamIDs);
  1803. int meterIdx = 0;
  1804. for (auto* param : params)
  1805. {
  1806. auto category = param->getCategory();
  1807. // is this a meter?
  1808. if (((category & 0xffff0000) >> 16) == 2)
  1809. {
  1810. if (auto* meterProperties = descriptor.NewPropertyMap())
  1811. {
  1812. meterProperties->AddProperty (AAX_eProperty_Meter_Type, getMeterTypeForCategory (category));
  1813. meterProperties->AddProperty (AAX_eProperty_Meter_Orientation, AAX_eMeterOrientation_TopRight);
  1814. descriptor.AddMeterDescription ('Metr' + static_cast<AAX_CTypeID> (meterIdx++),
  1815. param->getName (1024).toRawUTF8(), meterProperties);
  1816. }
  1817. }
  1818. }
  1819. return meterIdx;
  1820. }
  1821. static void createDescriptor (AAX_IComponentDescriptor& desc,
  1822. const AudioProcessor::BusesLayout& fullLayout,
  1823. AudioProcessor& processor,
  1824. Array<int32>& pluginIds,
  1825. const int numMeters)
  1826. {
  1827. auto aaxInputFormat = getFormatForAudioChannelSet (fullLayout.getMainInputChannelSet(), false);
  1828. auto aaxOutputFormat = getFormatForAudioChannelSet (fullLayout.getMainOutputChannelSet(), false);
  1829. #if JucePlugin_IsSynth
  1830. if (aaxInputFormat == AAX_eStemFormat_None)
  1831. aaxInputFormat = aaxOutputFormat;
  1832. #endif
  1833. #if JucePlugin_IsMidiEffect
  1834. aaxInputFormat = aaxOutputFormat = AAX_eStemFormat_Mono;
  1835. #endif
  1836. check (desc.AddAudioIn (JUCEAlgorithmIDs::inputChannels));
  1837. check (desc.AddAudioOut (JUCEAlgorithmIDs::outputChannels));
  1838. check (desc.AddAudioBufferLength (JUCEAlgorithmIDs::bufferSize));
  1839. check (desc.AddDataInPort (JUCEAlgorithmIDs::bypass, sizeof (int32_t)));
  1840. #if JucePlugin_WantsMidiInput || JucePlugin_IsMidiEffect
  1841. check (desc.AddMIDINode (JUCEAlgorithmIDs::midiNodeIn, AAX_eMIDINodeType_LocalInput,
  1842. JucePlugin_Name, 0xffff));
  1843. #endif
  1844. #if JucePlugin_ProducesMidiOutput || JucePlugin_IsSynth || JucePlugin_IsMidiEffect
  1845. check (desc.AddMIDINode (JUCEAlgorithmIDs::midiNodeOut, AAX_eMIDINodeType_LocalOutput,
  1846. JucePlugin_Name " Out", 0xffff));
  1847. #endif
  1848. check (desc.AddPrivateData (JUCEAlgorithmIDs::pluginInstance, sizeof (PluginInstanceInfo)));
  1849. check (desc.AddPrivateData (JUCEAlgorithmIDs::preparedFlag, sizeof (int32_t)));
  1850. if (numMeters > 0)
  1851. {
  1852. HeapBlock<AAX_CTypeID> meterIDs (static_cast<size_t> (numMeters));
  1853. for (int i = 0; i < numMeters; ++i)
  1854. meterIDs[i] = 'Metr' + static_cast<AAX_CTypeID> (i);
  1855. check (desc.AddMeters (JUCEAlgorithmIDs::meterTapBuffers, meterIDs.getData(), static_cast<uint32_t> (numMeters)));
  1856. }
  1857. else
  1858. {
  1859. // AAX does not allow there to be any gaps in the fields of the algorithm context structure
  1860. // so just add a dummy one here if there aren't any meters
  1861. check (desc.AddPrivateData (JUCEAlgorithmIDs::meterTapBuffers, sizeof (uintptr_t)));
  1862. }
  1863. // Create a property map
  1864. AAX_IPropertyMap* const properties = desc.NewPropertyMap();
  1865. jassert (properties != nullptr);
  1866. properties->AddProperty (AAX_eProperty_ManufacturerID, JucePlugin_AAXManufacturerCode);
  1867. properties->AddProperty (AAX_eProperty_ProductID, JucePlugin_AAXProductId);
  1868. #if JucePlugin_AAXDisableBypass
  1869. properties->AddProperty (AAX_eProperty_CanBypass, false);
  1870. #else
  1871. properties->AddProperty (AAX_eProperty_CanBypass, true);
  1872. #endif
  1873. properties->AddProperty (AAX_eProperty_InputStemFormat, static_cast<AAX_CPropertyValue> (aaxInputFormat));
  1874. properties->AddProperty (AAX_eProperty_OutputStemFormat, static_cast<AAX_CPropertyValue> (aaxOutputFormat));
  1875. // This value needs to match the RTAS wrapper's Type ID, so that
  1876. // the host knows that the RTAS/AAX plugins are equivalent.
  1877. const int32 pluginID = processor.getAAXPluginIDForMainBusConfig (fullLayout.getMainInputChannelSet(),
  1878. fullLayout.getMainOutputChannelSet(),
  1879. false);
  1880. // The plugin id generated from your AudioProcessor's getAAXPluginIDForMainBusConfig callback
  1881. // it not unique. Please fix your implementation!
  1882. jassert (! pluginIds.contains (pluginID));
  1883. pluginIds.add (pluginID);
  1884. properties->AddProperty (AAX_eProperty_PlugInID_Native, pluginID);
  1885. #if ! JucePlugin_AAXDisableAudioSuite
  1886. properties->AddProperty (AAX_eProperty_PlugInID_AudioSuite,
  1887. processor.getAAXPluginIDForMainBusConfig (fullLayout.getMainInputChannelSet(),
  1888. fullLayout.getMainOutputChannelSet(),
  1889. true));
  1890. #endif
  1891. #if JucePlugin_AAXDisableMultiMono
  1892. properties->AddProperty (AAX_eProperty_Constraint_MultiMonoSupport, false);
  1893. #else
  1894. properties->AddProperty (AAX_eProperty_Constraint_MultiMonoSupport, true);
  1895. #endif
  1896. #if JucePlugin_AAXDisableDynamicProcessing
  1897. properties->AddProperty (AAX_eProperty_Constraint_AlwaysProcess, true);
  1898. #endif
  1899. #if JucePlugin_AAXDisableDefaultSettingsChunks
  1900. properties->AddProperty (AAX_eProperty_Constraint_DoNotApplyDefaultSettings, true);
  1901. #endif
  1902. #if JucePlugin_AAXDisableSaveRestore
  1903. properties->AddProperty (AAX_eProperty_SupportsSaveRestore, false);
  1904. #endif
  1905. #if JUCE_AAX_HAS_TRANSPORT_NOTIFICATION
  1906. properties->AddProperty (AAX_eProperty_ObservesTransportState, true);
  1907. #endif
  1908. if (fullLayout.getChannelSet (true, 1) == AudioChannelSet::mono())
  1909. {
  1910. check (desc.AddSideChainIn (JUCEAlgorithmIDs::sideChainBuffers));
  1911. properties->AddProperty (AAX_eProperty_SupportsSideChainInput, true);
  1912. }
  1913. else
  1914. {
  1915. // AAX does not allow there to be any gaps in the fields of the algorithm context structure
  1916. // so just add a dummy one here if there aren't any side chains
  1917. check (desc.AddPrivateData (JUCEAlgorithmIDs::sideChainBuffers, sizeof (uintptr_t)));
  1918. }
  1919. auto maxAuxBuses = jmax (0, jmin (15, fullLayout.outputBuses.size() - 1));
  1920. // add the output buses
  1921. // This is incredibly dumb: the output bus format must be well defined
  1922. // for every main bus in/out format pair. This means that there cannot
  1923. // be two configurations with different aux formats but
  1924. // identical main bus in/out formats.
  1925. for (int busIdx = 1; busIdx < maxAuxBuses + 1; ++busIdx)
  1926. {
  1927. auto set = fullLayout.getChannelSet (false, busIdx);
  1928. if (set.isDisabled())
  1929. break;
  1930. auto auxFormat = getFormatForAudioChannelSet (set, true);
  1931. if (auxFormat != AAX_eStemFormat_INT32_MAX && auxFormat != AAX_eStemFormat_None)
  1932. {
  1933. auto& name = processor.getBus (false, busIdx)->getName();
  1934. check (desc.AddAuxOutputStem (0, static_cast<int32_t> (auxFormat), name.toRawUTF8()));
  1935. }
  1936. }
  1937. check (desc.AddProcessProc_Native (algorithmProcessCallback, properties));
  1938. }
  1939. static bool hostSupportsStemFormat (AAX_EStemFormat stemFormat, const AAX_IFeatureInfo* featureInfo)
  1940. {
  1941. if (featureInfo != nullptr)
  1942. {
  1943. AAX_ESupportLevel supportLevel;
  1944. if (featureInfo->SupportLevel (supportLevel) == AAX_SUCCESS && supportLevel == AAX_eSupportLevel_ByProperty)
  1945. {
  1946. std::unique_ptr<const AAX_IPropertyMap> props (featureInfo->AcquireProperties());
  1947. // Due to a bug in ProTools 12.8, ProTools thinks that AAX_eStemFormat_Ambi_1_ACN is not supported
  1948. // To workaround this bug, check if ProTools supports AAX_eStemFormat_Ambi_2_ACN, and, if yes,
  1949. // we can safely assume that it will also support AAX_eStemFormat_Ambi_1_ACN
  1950. if (stemFormat == AAX_eStemFormat_Ambi_1_ACN)
  1951. stemFormat = AAX_eStemFormat_Ambi_2_ACN;
  1952. if (props != nullptr && props->GetProperty ((AAX_EProperty) stemFormat, (AAX_CPropertyValue*) &supportLevel) != 0)
  1953. return (supportLevel == AAX_eSupportLevel_Supported);
  1954. }
  1955. }
  1956. return (AAX_STEM_FORMAT_INDEX (stemFormat) <= 12);
  1957. }
  1958. static void getPlugInDescription (AAX_IEffectDescriptor& descriptor, [[maybe_unused]] const AAX_IFeatureInfo* featureInfo)
  1959. {
  1960. auto plugin = createPluginFilterOfType (AudioProcessor::wrapperType_AAX);
  1961. auto numInputBuses = plugin->getBusCount (true);
  1962. auto numOutputBuses = plugin->getBusCount (false);
  1963. auto pluginNames = plugin->getAlternateDisplayNames();
  1964. pluginNames.insert (0, JucePlugin_Name);
  1965. pluginNames.removeDuplicates (false);
  1966. for (auto name : pluginNames)
  1967. descriptor.AddName (name.toRawUTF8());
  1968. descriptor.AddCategory (JucePlugin_AAXCategory);
  1969. const int numMeters = addAAXMeters (*plugin, descriptor);
  1970. #ifdef JucePlugin_AAXPageTableFile
  1971. // optional page table setting - define this macro in your project if you want
  1972. // to set this value - see Avid documentation for details about its format.
  1973. descriptor.AddResourceInfo (AAX_eResourceType_PageTable, JucePlugin_AAXPageTableFile);
  1974. #endif
  1975. check (descriptor.AddProcPtr ((void*) JuceAAX_GUI::Create, kAAX_ProcPtrID_Create_EffectGUI));
  1976. check (descriptor.AddProcPtr ((void*) JuceAAX_Processor::Create, kAAX_ProcPtrID_Create_EffectParameters));
  1977. Array<int32> pluginIds;
  1978. #if JucePlugin_IsMidiEffect
  1979. // MIDI effect plug-ins do not support any audio channels
  1980. jassert (numInputBuses == 0 && numOutputBuses == 0);
  1981. if (auto* desc = descriptor.NewComponentDescriptor())
  1982. {
  1983. createDescriptor (*desc, plugin->getBusesLayout(), *plugin, pluginIds, numMeters);
  1984. check (descriptor.AddComponent (desc));
  1985. }
  1986. #else
  1987. const int numIns = numInputBuses > 0 ? numElementsInArray (aaxFormats) : 0;
  1988. const int numOuts = numOutputBuses > 0 ? numElementsInArray (aaxFormats) : 0;
  1989. for (int inIdx = 0; inIdx < jmax (numIns, 1); ++inIdx)
  1990. {
  1991. auto aaxInFormat = numIns > 0 ? aaxFormats[inIdx] : AAX_eStemFormat_None;
  1992. auto inLayout = channelSetFromStemFormat (aaxInFormat, false);
  1993. for (int outIdx = 0; outIdx < jmax (numOuts, 1); ++outIdx)
  1994. {
  1995. auto aaxOutFormat = numOuts > 0 ? aaxFormats[outIdx] : AAX_eStemFormat_None;
  1996. auto outLayout = channelSetFromStemFormat (aaxOutFormat, false);
  1997. if (hostSupportsStemFormat (aaxInFormat, featureInfo)
  1998. && hostSupportsStemFormat (aaxOutFormat, featureInfo))
  1999. {
  2000. AudioProcessor::BusesLayout fullLayout;
  2001. if (! JuceAAX_Processor::fullBusesLayoutFromMainLayout (*plugin, inLayout, outLayout, fullLayout))
  2002. continue;
  2003. if (auto* desc = descriptor.NewComponentDescriptor())
  2004. {
  2005. createDescriptor (*desc, fullLayout, *plugin, pluginIds, numMeters);
  2006. check (descriptor.AddComponent (desc));
  2007. }
  2008. }
  2009. }
  2010. }
  2011. // You don't have any supported layouts
  2012. jassert (pluginIds.size() > 0);
  2013. #endif
  2014. }
  2015. } // namespace AAXClasses
  2016. void AAX_CALLBACK AAXClasses::algorithmProcessCallback (JUCEAlgorithmContext* const instancesBegin[], const void* const instancesEnd)
  2017. {
  2018. AAXClasses::JuceAAX_Processor::algorithmCallback (instancesBegin, instancesEnd);
  2019. }
  2020. //==============================================================================
  2021. AAX_Result JUCE_CDECL GetEffectDescriptions (AAX_ICollection*);
  2022. AAX_Result JUCE_CDECL GetEffectDescriptions (AAX_ICollection* collection)
  2023. {
  2024. ScopedJuceInitialiser_GUI libraryInitialiser;
  2025. std::unique_ptr<const AAX_IFeatureInfo> stemFormatFeatureInfo;
  2026. if (const auto* hostDescription = collection->DescriptionHost())
  2027. stemFormatFeatureInfo.reset (hostDescription->AcquireFeatureProperties (AAXATTR_ClientFeature_StemFormat));
  2028. if (auto* descriptor = collection->NewDescriptor())
  2029. {
  2030. AAXClasses::getPlugInDescription (*descriptor, stemFormatFeatureInfo.get());
  2031. collection->AddEffect (JUCE_STRINGIFY (JucePlugin_AAXIdentifier), descriptor);
  2032. collection->SetManufacturerName (JucePlugin_Manufacturer);
  2033. collection->AddPackageName (JucePlugin_Desc);
  2034. collection->AddPackageName (JucePlugin_Name);
  2035. collection->SetPackageVersion (JucePlugin_VersionCode);
  2036. return AAX_SUCCESS;
  2037. }
  2038. return AAX_ERROR_NULL_OBJECT;
  2039. }
  2040. JUCE_END_IGNORE_WARNINGS_GCC_LIKE
  2041. //==============================================================================
  2042. #if _MSC_VER || JUCE_MINGW
  2043. extern "C" BOOL WINAPI DllMain (HINSTANCE instance, DWORD reason, LPVOID) { if (reason == DLL_PROCESS_ATTACH) Process::setCurrentModuleInstanceHandle (instance); return true; }
  2044. #endif
  2045. #endif