Audio plugin host https://kx.studio/carla
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  1. #include "MiddleWare.h"
  2. #include <cstring>
  3. #include <cstdio>
  4. #include <cstdlib>
  5. #include <fstream>
  6. #include <rtosc/undo-history.h>
  7. #include <rtosc/thread-link.h>
  8. #include <rtosc/ports.h>
  9. #include <lo/lo.h>
  10. #include <unistd.h>
  11. #include "../UI/Connection.h"
  12. #include "../UI/Fl_Osc_Interface.h"
  13. #include <map>
  14. #include "Util.h"
  15. #include "Master.h"
  16. #include "Part.h"
  17. #include "PresetExtractor.h"
  18. #include "../Containers/MultiPseudoStack.h"
  19. #include "../Params/PresetsStore.h"
  20. #include "../Params/ADnoteParameters.h"
  21. #include "../Params/SUBnoteParameters.h"
  22. #include "../Params/PADnoteParameters.h"
  23. #include "../DSP/FFTwrapper.h"
  24. #include "../Synth/OscilGen.h"
  25. #include "../Nio/Nio.h"
  26. #include <string>
  27. #include <future>
  28. #include <atomic>
  29. #include <list>
  30. #ifndef errx
  31. #include <err.h>
  32. #endif
  33. using std::string;
  34. /******************************************************************************
  35. * LIBLO And Reflection Code *
  36. * *
  37. * All messages that are handled are handled in a serial fashion. *
  38. * Thus, changes in the current interface sending messages can be encoded *
  39. * into the stream via events which simply echo back the active interface *
  40. ******************************************************************************/
  41. static void liblo_error_cb(int i, const char *m, const char *loc)
  42. {
  43. fprintf(stderr, "liblo :-( %d-%s@%s\n",i,m,loc);
  44. }
  45. void path_search(const char *m, const char *url)
  46. {
  47. using rtosc::Ports;
  48. using rtosc::Port;
  49. //assumed upper bound of 32 ports (may need to be resized)
  50. char types[129];
  51. rtosc_arg_t args[128];
  52. size_t pos = 0;
  53. const Ports *ports = NULL;
  54. const char *str = rtosc_argument(m,0).s;
  55. const char *needle = rtosc_argument(m,1).s;
  56. //zero out data
  57. memset(types, 0, sizeof(types));
  58. memset(args, 0, sizeof(args));
  59. if(!*str) {
  60. ports = &Master::ports;
  61. } else {
  62. const Port *port = Master::ports.apropos(rtosc_argument(m,0).s);
  63. if(port)
  64. ports = port->ports;
  65. }
  66. if(ports) {
  67. //RTness not confirmed here
  68. for(const Port &p:*ports) {
  69. if(strstr(p.name, needle)!=p.name)
  70. continue;
  71. types[pos] = 's';
  72. args[pos++].s = p.name;
  73. types[pos] = 'b';
  74. if(p.metadata && *p.metadata) {
  75. args[pos].b.data = (unsigned char*) p.metadata;
  76. auto tmp = rtosc::Port::MetaContainer(p.metadata);
  77. args[pos++].b.len = tmp.length();
  78. } else {
  79. args[pos].b.data = (unsigned char*) NULL;
  80. args[pos++].b.len = 0;
  81. }
  82. }
  83. }
  84. //Reply to requester [wow, these messages are getting huge...]
  85. char buffer[1024*20];
  86. size_t length = rtosc_amessage(buffer, sizeof(buffer), "/paths", types, args);
  87. if(length) {
  88. lo_message msg = lo_message_deserialise((void*)buffer, length, NULL);
  89. lo_address addr = lo_address_new_from_url(url);
  90. if(addr)
  91. lo_send_message(addr, buffer, msg);
  92. }
  93. }
  94. static int handler_function(const char *path, const char *types, lo_arg **argv,
  95. int argc, lo_message msg, void *user_data)
  96. {
  97. (void) types;
  98. (void) argv;
  99. (void) argc;
  100. MiddleWare *mw = (MiddleWare*)user_data;
  101. lo_address addr = lo_message_get_source(msg);
  102. if(addr) {
  103. const char *tmp = lo_address_get_url(addr);
  104. if(tmp != mw->activeUrl()) {
  105. mw->transmitMsg("/echo", "ss", "OSC_URL", tmp);
  106. mw->activeUrl(tmp);
  107. }
  108. }
  109. char buffer[2048];
  110. memset(buffer, 0, sizeof(buffer));
  111. size_t size = 2048;
  112. lo_message_serialise(msg, path, buffer, &size);
  113. if(!strcmp(buffer, "/path-search") && !strcmp("ss", rtosc_argument_string(buffer))) {
  114. path_search(buffer, mw->activeUrl().c_str());
  115. } else if(buffer[0]=='/' && rindex(buffer, '/')[1]) {
  116. mw->transmitMsg(rtosc::Ports::collapsePath(buffer));
  117. }
  118. return 0;
  119. }
  120. typedef void(*cb_t)(void*,const char*);
  121. /*****************************************************************************
  122. * Memory Deallocation *
  123. *****************************************************************************/
  124. void deallocate(const char *str, void *v)
  125. {
  126. //printf("deallocating a '%s' at '%p'\n", str, v);
  127. if(!strcmp(str, "Part"))
  128. delete (Part*)v;
  129. else if(!strcmp(str, "Master"))
  130. delete (Master*)v;
  131. else if(!strcmp(str, "fft_t"))
  132. delete[] (fft_t*)v;
  133. else
  134. fprintf(stderr, "Unknown type '%s', leaking pointer %p!!\n", str, v);
  135. }
  136. /*****************************************************************************
  137. * PadSynth Setup *
  138. *****************************************************************************/
  139. void preparePadSynth(string path, PADnoteParameters *p, rtosc::RtData &d)
  140. {
  141. //printf("preparing padsynth parameters\n");
  142. assert(!path.empty());
  143. path += "sample";
  144. unsigned max = 0;
  145. p->sampleGenerator([&max,&path,&d]
  146. (unsigned N, PADnoteParameters::Sample &s)
  147. {
  148. max = max<N ? N : max;
  149. //printf("sending info to '%s'\n", (path+to_s(N)).c_str());
  150. d.chain((path+to_s(N)).c_str(), "ifb",
  151. s.size, s.basefreq, sizeof(float*), &s.smp);
  152. }, []{return false;});
  153. //clear out unused samples
  154. for(unsigned i = max+1; i < PAD_MAX_SAMPLES; ++i) {
  155. d.chain((path+to_s(i)).c_str(), "ifb",
  156. 0, 440.0f, sizeof(float*), NULL);
  157. }
  158. }
  159. /******************************************************************************
  160. * MIDI Serialization *
  161. * *
  162. ******************************************************************************/
  163. void saveMidiLearn(XMLwrapper &xml, const rtosc::MidiMappernRT &midi)
  164. {
  165. xml.beginbranch("midi-learn");
  166. for(auto value:midi.inv_map) {
  167. XmlNode binding("midi-binding");
  168. auto biject = std::get<3>(value.second);
  169. binding["osc-path"] = value.first;
  170. binding["coarse-CC"] = to_s(std::get<1>(value.second));
  171. binding["fine-CC"] = to_s(std::get<2>(value.second));
  172. binding["type"] = "i";
  173. binding["minimum"] = to_s(biject.min);
  174. binding["maximum"] = to_s(biject.max);
  175. xml.add(binding);
  176. }
  177. xml.endbranch();
  178. }
  179. void loadMidiLearn(XMLwrapper &xml, rtosc::MidiMappernRT &midi)
  180. {
  181. using rtosc::Port;
  182. if(xml.enterbranch("midi-learn")) {
  183. auto nodes = xml.getBranch();
  184. //TODO clear mapper
  185. for(auto node:nodes) {
  186. if(node.name != "midi-binding" ||
  187. !node.has("osc-path") ||
  188. !node.has("coarse-CC"))
  189. continue;
  190. const string path = node["osc-path"];
  191. const int CC = atoi(node["coarse-CC"].c_str());
  192. const Port *p = Master::ports.apropos(path.c_str());
  193. if(p) {
  194. printf("loading midi port...\n");
  195. midi.addNewMapper(CC, *p, path);
  196. } else {
  197. printf("unknown midi bindable <%s>\n", path.c_str());
  198. }
  199. }
  200. xml.exitbranch();
  201. } else
  202. printf("cannot find 'midi-learn' branch...\n");
  203. }
  204. /******************************************************************************
  205. * Non-RealTime Object Store *
  206. * *
  207. * *
  208. * Storage For Objects which need to be interfaced with outside the realtime *
  209. * thread (aka they have long lived operations which can be done out-of-band) *
  210. * *
  211. * - OscilGen instances as prepare() cannot be done in realtime and PAD *
  212. * depends on these instances *
  213. * - PADnoteParameter instances as applyparameters() cannot be done in *
  214. * realtime *
  215. * *
  216. * These instances are collected on every part change and kit change *
  217. ******************************************************************************/
  218. struct NonRtObjStore
  219. {
  220. std::map<std::string, void*> objmap;
  221. void extractMaster(Master *master)
  222. {
  223. for(int i=0; i < NUM_MIDI_PARTS; ++i) {
  224. extractPart(master->part[i], i);
  225. }
  226. }
  227. void extractPart(Part *part, int i)
  228. {
  229. for(int j=0; j < NUM_KIT_ITEMS; ++j) {
  230. auto &obj = part->kit[j];
  231. extractAD(obj.adpars, i, j);
  232. extractPAD(obj.padpars, i, j);
  233. }
  234. }
  235. void extractAD(ADnoteParameters *adpars, int i, int j)
  236. {
  237. std::string base = "/part"+to_s(i)+"/kit"+to_s(j)+"/";
  238. for(int k=0; k<NUM_VOICES; ++k) {
  239. std::string nbase = base+"adpars/VoicePar"+to_s(k)+"/";
  240. if(adpars) {
  241. auto &nobj = adpars->VoicePar[k];
  242. objmap[nbase+"OscilSmp/"] = nobj.OscilSmp;
  243. objmap[nbase+"FMSmp/"] = nobj.FMSmp;
  244. } else {
  245. objmap[nbase+"OscilSmp/"] = nullptr;
  246. objmap[nbase+"FMSmp/"] = nullptr;
  247. }
  248. }
  249. }
  250. void extractPAD(PADnoteParameters *padpars, int i, int j)
  251. {
  252. std::string base = "/part"+to_s(i)+"/kit"+to_s(j)+"/";
  253. for(int k=0; k<NUM_VOICES; ++k) {
  254. if(padpars) {
  255. objmap[base+"padpars/"] = padpars;
  256. objmap[base+"padpars/oscilgen/"] = padpars->oscilgen;
  257. } else {
  258. objmap[base+"padpars/"] = nullptr;
  259. objmap[base+"padpars/oscilgen/"] = nullptr;
  260. }
  261. }
  262. }
  263. void clear(void)
  264. {
  265. objmap.clear();
  266. }
  267. bool has(std::string loc)
  268. {
  269. return objmap.find(loc) != objmap.end();
  270. }
  271. void *get(std::string loc)
  272. {
  273. return objmap[loc];
  274. }
  275. void handleOscil(const char *msg, rtosc::RtData &d) {
  276. string obj_rl(d.message, msg);
  277. void *osc = get(obj_rl);
  278. assert(osc);
  279. strcpy(d.loc, obj_rl.c_str());
  280. d.obj = osc;
  281. OscilGen::non_realtime_ports.dispatch(msg, d);
  282. }
  283. void handlePad(const char *msg, rtosc::RtData &d) {
  284. string obj_rl(d.message, msg);
  285. void *pad = get(obj_rl);
  286. if(!strcmp(msg, "prepare"))
  287. preparePadSynth(obj_rl, (PADnoteParameters*)pad, d);
  288. else {
  289. assert(pad);
  290. strcpy(d.loc, obj_rl.c_str());
  291. d.obj = pad;
  292. PADnoteParameters::non_realtime_ports.dispatch(msg, d);
  293. }
  294. }
  295. };
  296. /******************************************************************************
  297. * Realtime Parameter Store *
  298. * *
  299. * Storage for AD/PAD/SUB parameters which are allocated as needed by kits. *
  300. * Two classes of events affect this: *
  301. * 1. When a message to enable a kit is observed, then the kit is allocated *
  302. * and sent prior to the enable message. *
  303. * 2. When a part is allocated all part information is rebuilt *
  304. * *
  305. * (NOTE pointers aren't really needed here, just booleans on whether it has *
  306. * been allocated) *
  307. * This may be later utilized for copy/paste support *
  308. ******************************************************************************/
  309. struct ParamStore
  310. {
  311. ParamStore(void)
  312. {
  313. memset(add, 0, sizeof(add));
  314. memset(pad, 0, sizeof(pad));
  315. memset(sub, 0, sizeof(sub));
  316. }
  317. void extractPart(Part *part, int i)
  318. {
  319. for(int j=0; j < NUM_KIT_ITEMS; ++j) {
  320. auto kit = part->kit[j];
  321. add[i][j] = kit.adpars;
  322. sub[i][j] = kit.subpars;
  323. pad[i][j] = kit.padpars;
  324. }
  325. }
  326. ADnoteParameters *add[NUM_MIDI_PARTS][NUM_KIT_ITEMS];
  327. SUBnoteParameters *sub[NUM_MIDI_PARTS][NUM_KIT_ITEMS];
  328. PADnoteParameters *pad[NUM_MIDI_PARTS][NUM_KIT_ITEMS];
  329. };
  330. //XXX perhaps move this to Nio
  331. //(there needs to be some standard Nio stub file for this sort of stuff)
  332. namespace Nio
  333. {
  334. using std::get;
  335. rtosc::Ports ports = {
  336. {"sink-list:", 0, 0, [](const char *, rtosc::RtData &d) {
  337. auto list = Nio::getSinks();
  338. char *ret = rtosc_splat(d.loc, list);
  339. d.reply(ret);
  340. delete [] ret;
  341. }},
  342. {"source-list:", 0, 0, [](const char *, rtosc::RtData &d) {
  343. auto list = Nio::getSources();
  344. char *ret = rtosc_splat(d.loc, list);
  345. d.reply(ret);
  346. delete [] ret;
  347. }},
  348. {"source::s", 0, 0, [](const char *msg, rtosc::RtData &d) {
  349. if(rtosc_narguments(msg) == 0)
  350. d.reply(d.loc, "s", Nio::getSource().c_str());
  351. else
  352. Nio::setSource(rtosc_argument(msg,0).s);}},
  353. {"sink::s", 0, 0, [](const char *msg, rtosc::RtData &d) {
  354. if(rtosc_narguments(msg) == 0)
  355. d.reply(d.loc, "s", Nio::getSink().c_str());
  356. else
  357. Nio::setSink(rtosc_argument(msg,0).s);}},
  358. };
  359. }
  360. /* Implementation */
  361. class MiddleWareImpl
  362. {
  363. public:
  364. MiddleWare *parent;
  365. private:
  366. //Detect if the name of the process is 'zynaddsubfx'
  367. bool isPlugin() const
  368. {
  369. std::string proc_file = "/proc/" + to_s(getpid()) + "/comm";
  370. std::ifstream ifs(proc_file);
  371. if(ifs.good()) {
  372. std::string comm_name;
  373. ifs >> comm_name;
  374. return comm_name != "zynaddsubfx";
  375. }
  376. return true;
  377. }
  378. public:
  379. Config* const config;
  380. MiddleWareImpl(MiddleWare *mw, SYNTH_T synth, Config* config,
  381. int preferred_port);
  382. ~MiddleWareImpl(void);
  383. //Apply function while parameters are write locked
  384. void doReadOnlyOp(std::function<void()> read_only_fn);
  385. void savePart(int npart, const char *filename)
  386. {
  387. //Copy is needed as filename WILL get trashed during the rest of the run
  388. std::string fname = filename;
  389. //printf("saving part(%d,'%s')\n", npart, filename);
  390. doReadOnlyOp([this,fname,npart](){
  391. int res = master->part[npart]->saveXML(fname.c_str());
  392. (void)res;
  393. /*printf("results: '%s' '%d'\n",fname.c_str(), res);*/});
  394. }
  395. void loadPendingBank(int par, Bank &bank)
  396. {
  397. if(((unsigned int)par < bank.banks.size())
  398. && (bank.banks[par].dir != bank.bankfiletitle))
  399. bank.loadbank(bank.banks[par].dir);
  400. }
  401. void loadPart(int npart, const char *filename, Master *master)
  402. {
  403. actual_load[npart]++;
  404. if(actual_load[npart] != pending_load[npart])
  405. return;
  406. assert(actual_load[npart] <= pending_load[npart]);
  407. //load part in async fashion when possible
  408. #if HAVE_ASYNC
  409. auto alloc = std::async(std::launch::async,
  410. [master,filename,this,npart](){
  411. Part *p = new Part(*master->memory, synth,
  412. master->time,
  413. config->cfg.GzipCompression,
  414. config->cfg.Interpolation,
  415. &master->microtonal, master->fft);
  416. if(p->loadXMLinstrument(filename))
  417. fprintf(stderr, "Warning: failed to load part<%s>!\n", filename);
  418. auto isLateLoad = [this,npart]{
  419. return actual_load[npart] != pending_load[npart];
  420. };
  421. p->applyparameters(isLateLoad);
  422. return p;});
  423. //Load the part
  424. if(idle) {
  425. while(alloc.wait_for(std::chrono::seconds(0)) != std::future_status::ready) {
  426. idle(idle_ptr);
  427. }
  428. }
  429. Part *p = alloc.get();
  430. #else
  431. Part *p = new Part(*master->memory, synth, master->time,
  432. config->cfg.GzipCompression,
  433. config->cfg.Interpolation,
  434. &master->microtonal, master->fft);
  435. if(p->loadXMLinstrument(filename))
  436. fprintf(stderr, "Warning: failed to load part<%s>!\n", filename);
  437. auto isLateLoad = [this,npart]{
  438. return actual_load[npart] != pending_load[npart];
  439. };
  440. p->applyparameters(isLateLoad);
  441. #endif
  442. obj_store.extractPart(p, npart);
  443. kits.extractPart(p, npart);
  444. //Give it to the backend and wait for the old part to return for
  445. //deallocation
  446. parent->transmitMsg("/load-part", "ib", npart, sizeof(Part*), &p);
  447. GUI::raiseUi(ui, "/damage", "s", ("/part"+to_s(npart)+"/").c_str());
  448. }
  449. //Load a new cleared Part instance
  450. void loadClearPart(int npart)
  451. {
  452. if(npart == -1)
  453. return;
  454. Part *p = new Part(*master->memory, synth,
  455. master->time,
  456. config->cfg.GzipCompression,
  457. config->cfg.Interpolation,
  458. &master->microtonal, master->fft);
  459. p->applyparameters();
  460. obj_store.extractPart(p, npart);
  461. kits.extractPart(p, npart);
  462. //Give it to the backend and wait for the old part to return for
  463. //deallocation
  464. parent->transmitMsg("/load-part", "ib", npart, sizeof(Part*), &p);
  465. GUI::raiseUi(ui, "/damage", "s", ("/part"+to_s(npart)+"/").c_str());
  466. }
  467. //Well, you don't get much crazier than changing out all of your RT
  468. //structures at once... TODO error handling
  469. void loadMaster(const char *filename)
  470. {
  471. Master *m = new Master(synth, config);
  472. m->uToB = uToB;
  473. m->bToU = bToU;
  474. if(filename) {
  475. if ( m->loadXML(filename) ) {
  476. delete m;
  477. return;
  478. }
  479. m->applyparameters();
  480. }
  481. //Update resource locator table
  482. updateResources(m);
  483. master = m;
  484. //Give it to the backend and wait for the old part to return for
  485. //deallocation
  486. parent->transmitMsg("/load-master", "b", sizeof(Master*), &m);
  487. }
  488. void updateResources(Master *m)
  489. {
  490. obj_store.clear();
  491. obj_store.extractMaster(m);
  492. for(int i=0; i<NUM_MIDI_PARTS; ++i)
  493. kits.extractPart(m->part[i], i);
  494. }
  495. //If currently broadcasting messages
  496. bool broadcast = false;
  497. //If message should be forwarded through snoop ports
  498. bool forward = false;
  499. //if message is in order or out-of-order execution
  500. bool in_order = false;
  501. //If accepting undo events as user driven
  502. bool recording_undo = true;
  503. void bToUhandle(const char *rtmsg);
  504. void tick(void)
  505. {
  506. if(server)
  507. while(lo_server_recv_noblock(server, 0));
  508. while(bToU->hasNext()) {
  509. const char *rtmsg = bToU->read();
  510. bToUhandle(rtmsg);
  511. }
  512. while(auto *m = multi_thread_source.read()) {
  513. handleMsg(m->memory);
  514. multi_thread_source.free(m);
  515. }
  516. }
  517. void kitEnable(const char *msg);
  518. void kitEnable(int part, int kit, int type);
  519. // Handle an event with special cases
  520. void handleMsg(const char *msg);
  521. void write(const char *path, const char *args, ...);
  522. void write(const char *path, const char *args, va_list va);
  523. // Send a message to a remote client
  524. void sendToRemote(const char *msg, std::string dest);
  525. // Send a message to the current remote client
  526. void sendToCurrentRemote(const char *msg)
  527. {
  528. sendToRemote(msg, in_order ? curr_url : last_url);
  529. }
  530. // Broadcast a message to all listening remote clients
  531. void broadcastToRemote(const char *msg);
  532. /*
  533. * Provides a mapping for non-RT objects stored inside the backend
  534. * - Oscilgen almost all parameters can be safely set
  535. * - Padnote can have anything set on its oscilgen and a very small set
  536. * of general parameters
  537. */
  538. NonRtObjStore obj_store;
  539. //This code will own the pointer to master, be prepared for odd things if
  540. //this assumption is broken
  541. Master *master;
  542. //The ONLY means that any chunk of UI code should have for interacting with the
  543. //backend
  544. Fl_Osc_Interface *osc;
  545. //Synth Engine Parameters
  546. ParamStore kits;
  547. //Callback When Waiting on async events
  548. void(*idle)(void*);
  549. void* idle_ptr;
  550. //General UI callback
  551. cb_t cb;
  552. //UI handle
  553. void *ui;
  554. std::atomic_int pending_load[NUM_MIDI_PARTS];
  555. std::atomic_int actual_load[NUM_MIDI_PARTS];
  556. //Undo/Redo
  557. rtosc::UndoHistory undo;
  558. //MIDI Learn
  559. rtosc::MidiMappernRT midi_mapper;
  560. //Link To the Realtime
  561. rtosc::ThreadLink *bToU;
  562. rtosc::ThreadLink *uToB;
  563. //Link to the unknown
  564. MultiQueue multi_thread_source;
  565. //LIBLO
  566. lo_server server;
  567. string last_url, curr_url;
  568. //Synthesis Rate Parameters
  569. const SYNTH_T synth;
  570. PresetsStore presetsstore;
  571. };
  572. /*****************************************************************************
  573. * Data Object for Non-RT Class Dispatch *
  574. *****************************************************************************/
  575. class MwDataObj:public rtosc::RtData
  576. {
  577. public:
  578. MwDataObj(MiddleWareImpl *mwi_)
  579. {
  580. loc_size = 1024;
  581. loc = new char[loc_size];
  582. memset(loc, 0, loc_size);
  583. buffer = new char[4*4096];
  584. memset(buffer, 0, 4*4096);
  585. obj = mwi_;
  586. mwi = mwi_;
  587. forwarded = false;
  588. }
  589. ~MwDataObj(void)
  590. {
  591. delete[] buffer;
  592. }
  593. //Replies and broadcasts go to the remote
  594. //Chain calls repeat the call into handle()
  595. //Forward calls send the message directly to the realtime
  596. virtual void reply(const char *path, const char *args, ...)
  597. {
  598. //printf("reply building '%s'\n", path);
  599. va_list va;
  600. va_start(va,args);
  601. if(!strcmp(path, "/forward")) { //forward the information to the backend
  602. args++;
  603. path = va_arg(va, const char *);
  604. rtosc_vmessage(buffer,4*4096,path,args,va);
  605. } else {
  606. rtosc_vmessage(buffer,4*4096,path,args,va);
  607. reply(buffer);
  608. }
  609. va_end(va);
  610. }
  611. virtual void reply(const char *msg){
  612. mwi->sendToCurrentRemote(msg);
  613. };
  614. //virtual void broadcast(const char *path, const char *args, ...){(void)path;(void)args;};
  615. //virtual void broadcast(const char *msg){(void)msg;};
  616. virtual void chain(const char *msg) override
  617. {
  618. assert(msg);
  619. // printf("chain call on <%s>\n", msg);
  620. mwi->handleMsg(msg);
  621. }
  622. virtual void chain(const char *path, const char *args, ...) override
  623. {
  624. assert(path);
  625. va_list va;
  626. va_start(va,args);
  627. rtosc_vmessage(buffer,4*4096,path,args,va);
  628. chain(buffer);
  629. va_end(va);
  630. }
  631. virtual void forward(const char *) override
  632. {
  633. forwarded = true;
  634. }
  635. bool forwarded;
  636. private:
  637. char *buffer;
  638. MiddleWareImpl *mwi;
  639. };
  640. static int extractInt(const char *msg)
  641. {
  642. const char *mm = msg;
  643. while(*mm && !isdigit(*mm)) ++mm;
  644. if(isdigit(*mm))
  645. return atoi(mm);
  646. return -1;
  647. }
  648. static const char *chomp(const char *msg)
  649. {
  650. while(*msg && *msg!='/') ++msg; \
  651. msg = *msg ? msg+1 : msg;
  652. return msg;
  653. };
  654. using rtosc::RtData;
  655. #define rObject Bank
  656. #define rBegin [](const char *msg, RtData &d) { (void)msg;(void)d;\
  657. rObject &impl = *((rObject*)d.obj);(void)impl;
  658. #define rEnd }
  659. /*****************************************************************************
  660. * Instrument Banks *
  661. * *
  662. * Banks and presets in general are not classed as realtime safe *
  663. * *
  664. * The supported operations are: *
  665. * - Load Names *
  666. * - Load Bank *
  667. * - Refresh List of Banks *
  668. *****************************************************************************/
  669. rtosc::Ports bankPorts = {
  670. {"rescan:", 0, 0,
  671. rBegin;
  672. impl.rescanforbanks();
  673. //Send updated banks
  674. int i = 0;
  675. for(auto &elm : impl.banks)
  676. d.reply("/bank/bank_select", "iss", i++, elm.name.c_str(), elm.dir.c_str());
  677. rEnd},
  678. {"slot#1024:", 0, 0,
  679. rBegin;
  680. const int loc = extractInt(msg);
  681. if(loc >= BANK_SIZE)
  682. return;
  683. d.reply("/bankview", "iss",
  684. loc, impl.ins[loc].name.c_str(),
  685. impl.ins[loc].filename.c_str());
  686. rEnd},
  687. {"banks:", 0, 0,
  688. rBegin;
  689. int i = 0;
  690. for(auto &elm : impl.banks)
  691. d.reply("/bank/bank_select", "iss", i++, elm.name.c_str(), elm.dir.c_str());
  692. rEnd},
  693. {"bank_select::i", 0, 0,
  694. rBegin
  695. if(rtosc_narguments(msg)) {
  696. const int pos = rtosc_argument(msg, 0).i;
  697. d.reply(d.loc, "i", pos);
  698. if(impl.bankpos != pos) {
  699. impl.bankpos = pos;
  700. impl.loadbank(impl.banks[pos].dir);
  701. //Reload bank slots
  702. for(int i=0; i<BANK_SIZE; ++i)
  703. d.reply("/bankview", "iss",
  704. i, impl.ins[i].name.c_str(),
  705. impl.ins[i].filename.c_str());
  706. }
  707. } else
  708. d.reply("/bank/bank_select", "i", impl.bankpos);
  709. rEnd},
  710. {"rename_slot:is", 0, 0,
  711. rBegin;
  712. const int slot = rtosc_argument(msg, 0).i;
  713. const char *name = rtosc_argument(msg, 1).s;
  714. const int err = impl.setname(slot, name, -1);
  715. if(err) {
  716. d.reply("/alert", "s",
  717. "Failed To Rename Bank Slot, please check file permissions");
  718. }
  719. rEnd},
  720. {"swap_slots:ii", 0, 0,
  721. rBegin;
  722. const int slota = rtosc_argument(msg, 0).i;
  723. const int slotb = rtosc_argument(msg, 1).i;
  724. const int err = impl.swapslot(slota, slotb);
  725. if(err)
  726. d.reply("/alert", "s",
  727. "Failed To Swap Bank Slots, please check file permissions");
  728. rEnd},
  729. {"clear_slot:i", 0, 0,
  730. rBegin;
  731. const int slot = rtosc_argument(msg, 0).i;
  732. const int err = impl.clearslot(slot);
  733. if(err)
  734. d.reply("/alert", "s",
  735. "Failed To Clear Bank Slot, please check file permissions");
  736. rEnd},
  737. {"msb:i", 0, 0,
  738. rBegin;
  739. impl.setMsb(rtosc_argument(msg, 0).i);
  740. rEnd},
  741. {"lsb:i", 0, 0,
  742. rBegin;
  743. impl.setLsb(rtosc_argument(msg, 0).i);
  744. rEnd},
  745. };
  746. /******************************************************************************
  747. * MiddleWare Snooping Ports *
  748. * *
  749. * These ports handle: *
  750. * - Events going to the realtime thread which cannot be safely handled *
  751. * there *
  752. * - Events generated by the realtime thread which are not destined for a *
  753. * user interface *
  754. ******************************************************************************/
  755. #undef rObject
  756. #define rObject MiddleWareImpl
  757. /*
  758. * BASE/part#/kititem#
  759. * BASE/part#/kit#/adpars/voice#/oscil/\*
  760. * BASE/part#/kit#/adpars/voice#/mod-oscil/\*
  761. * BASE/part#/kit#/padpars/prepare
  762. * BASE/part#/kit#/padpars/oscil/\*
  763. */
  764. static rtosc::Ports middwareSnoopPorts = {
  765. {"part#16/kit#8/adpars/VoicePar#8/OscilSmp/", 0, &OscilGen::non_realtime_ports,
  766. rBegin;
  767. impl.obj_store.handleOscil(chomp(chomp(chomp(chomp(chomp(msg))))), d);
  768. rEnd},
  769. {"part#16/kit#8/adpars/VoicePar#8/FMSmp/", 0, &OscilGen::non_realtime_ports,
  770. rBegin
  771. impl.obj_store.handleOscil(chomp(chomp(chomp(chomp(chomp(msg))))), d);
  772. rEnd},
  773. {"part#16/kit#8/padpars/", 0, &PADnoteParameters::non_realtime_ports,
  774. rBegin
  775. impl.obj_store.handlePad(chomp(chomp(chomp(msg))), d);
  776. rEnd},
  777. {"bank/", 0, &bankPorts,
  778. rBegin;
  779. d.obj = &impl.master->bank;
  780. bankPorts.dispatch(chomp(msg),d);
  781. rEnd},
  782. {"bank/save_to_slot:ii", 0, 0,
  783. rBegin;
  784. const int part_id = rtosc_argument(msg, 0).i;
  785. const int slot = rtosc_argument(msg, 1).i;
  786. int err = 0;
  787. impl.doReadOnlyOp([&impl,slot,part_id,&err](){
  788. err = impl.master->bank.savetoslot(slot, impl.master->part[part_id]);});
  789. if(err) {
  790. char buffer[1024];
  791. rtosc_message(buffer, 1024, "/alert", "s",
  792. "Failed To Save To Bank Slot, please check file permissions");
  793. GUI::raiseUi(impl.ui, buffer);
  794. }
  795. rEnd},
  796. {"config/", 0, &Config::ports,
  797. rBegin;
  798. d.obj = impl.config;
  799. Config::ports.dispatch(chomp(msg), d);
  800. rEnd},
  801. {"presets/", 0, &real_preset_ports, [](const char *msg, RtData &d) {
  802. MiddleWareImpl *obj = (MiddleWareImpl*)d.obj;
  803. d.obj = (void*)obj->parent;
  804. real_preset_ports.dispatch(chomp(msg), d);
  805. if(strstr(msg, "paste") && rtosc_argument_string(msg)[0] == 's')
  806. d.reply("/damage", "s", rtosc_argument(msg, 0).s);
  807. }},
  808. {"io/", 0, &Nio::ports, [](const char *msg, RtData &d) {
  809. Nio::ports.dispatch(chomp(msg), d);}},
  810. {"part*/kit*/{Padenabled,Ppadenabled,Psubenabled}:T:F", 0, 0,
  811. rBegin;
  812. impl.kitEnable(msg);
  813. d.forward();
  814. rEnd},
  815. {"save_xlz:s", 0, 0,
  816. rBegin;
  817. const char *file = rtosc_argument(msg, 0).s;
  818. XMLwrapper xml;
  819. saveMidiLearn(xml, impl.midi_mapper);
  820. xml.saveXMLfile(file, impl.master->gzip_compression);
  821. rEnd},
  822. {"load_xlz:s", 0, 0,
  823. rBegin;
  824. const char *file = rtosc_argument(msg, 0).s;
  825. XMLwrapper xml;
  826. xml.loadXMLfile(file);
  827. loadMidiLearn(xml, impl.midi_mapper);
  828. rEnd},
  829. {"save_xmz:s", 0, 0,
  830. rBegin;
  831. const char *file = rtosc_argument(msg, 0).s;
  832. //Copy is needed as filename WILL get trashed during the rest of the run
  833. impl.doReadOnlyOp([&impl,file](){
  834. int res = impl.master->saveXML(file);
  835. (void)res;});
  836. rEnd},
  837. {"save_xiz:is", 0, 0,
  838. rBegin;
  839. const int part_id = rtosc_argument(msg,0).i;
  840. const char *file = rtosc_argument(msg,1).s;
  841. impl.savePart(part_id, file);
  842. rEnd},
  843. {"load_xmz:s", 0, 0,
  844. rBegin;
  845. const char *file = rtosc_argument(msg, 0).s;
  846. impl.loadMaster(file);
  847. rEnd},
  848. {"reset_master:", 0, 0,
  849. rBegin;
  850. impl.loadMaster(NULL);
  851. rEnd},
  852. {"load_xiz:is", 0, 0,
  853. rBegin;
  854. const int part_id = rtosc_argument(msg,0).i;
  855. const char *file = rtosc_argument(msg,1).s;
  856. impl.pending_load[part_id]++;
  857. impl.loadPart(part_id, file, impl.master);
  858. rEnd},
  859. {"load-part:is", 0, 0,
  860. rBegin;
  861. const int part_id = rtosc_argument(msg,0).i;
  862. const char *file = rtosc_argument(msg,1).s;
  863. impl.pending_load[part_id]++;
  864. impl.loadPart(part_id, file, impl.master);
  865. rEnd},
  866. {"setprogram:i:c", 0, 0,
  867. rBegin;
  868. Bank &bank = impl.master->bank;
  869. const int slot = rtosc_argument(msg, 0).i + 128*bank.bank_lsb;
  870. if(slot < BANK_SIZE) {
  871. impl.pending_load[0]++;
  872. impl.loadPart(0, impl.master->bank.ins[slot].filename.c_str(), impl.master);
  873. }
  874. rEnd},
  875. {"part#16/clear:", 0, 0,
  876. rBegin;
  877. impl.loadClearPart(extractInt(msg));
  878. rEnd},
  879. {"undo:", 0, 0,
  880. rBegin;
  881. impl.undo.seekHistory(-1);
  882. rEnd},
  883. {"redo:", 0, 0,
  884. rBegin;
  885. impl.undo.seekHistory(+1);
  886. rEnd},
  887. {"learn:s", 0, 0,
  888. rBegin;
  889. string addr = rtosc_argument(msg, 0).s;
  890. auto &midi = impl.midi_mapper;
  891. auto map = midi.getMidiMappingStrings();
  892. if(map.find(addr) != map.end())
  893. midi.map(addr.c_str(), false);
  894. else
  895. midi.map(addr.c_str(), true);
  896. rEnd},
  897. //drop this message into the abyss
  898. {"ui/title:", 0, 0, [](const char *msg, RtData &d) {}}
  899. };
  900. static rtosc::Ports middlewareReplyPorts = {
  901. {"echo:ss", 0, 0,
  902. rBegin;
  903. const char *type = rtosc_argument(msg, 0).s;
  904. const char *url = rtosc_argument(msg, 1).s;
  905. if(!strcmp(type, "OSC_URL"))
  906. impl.curr_url = url;
  907. rEnd},
  908. {"free:sb", 0, 0,
  909. rBegin;
  910. const char *type = rtosc_argument(msg, 0).s;
  911. void *ptr = *(void**)rtosc_argument(msg, 1).b.data;
  912. deallocate(type, ptr);
  913. rEnd},
  914. {"request_memory:", 0, 0,
  915. rBegin;
  916. //Generate out more memory for the RT memory pool
  917. //5MBi chunk
  918. size_t N = 5*1024*1024;
  919. void *mem = malloc(N);
  920. impl.uToB->write("/add-rt-memory", "bi", sizeof(void*), &mem, N);
  921. rEnd},
  922. {"setprogram:cc:ii", 0, 0,
  923. rBegin;
  924. const int part = rtosc_argument(msg, 0).i;
  925. const int program = rtosc_argument(msg, 1).i;
  926. impl.loadPart(part, impl.master->bank.ins[program].filename.c_str(), impl.master);
  927. rEnd},
  928. {"undo_pause:", 0, 0, rBegin; impl.recording_undo = false; rEnd},
  929. {"undo_resume:", 0, 0, rBegin; impl.recording_undo = true; rEnd},
  930. {"undo_change", 0, 0,
  931. rBegin;
  932. if(impl.recording_undo)
  933. impl.undo.recordEvent(msg);
  934. rEnd},
  935. {"midi-use-CC:i", 0, 0,
  936. rBegin;
  937. impl.midi_mapper.useFreeID(rtosc_argument(msg, 0).i);
  938. rEnd},
  939. {"broadcast:", 0, 0, rBegin; impl.broadcast = true; rEnd},
  940. {"forward:", 0, 0, rBegin; impl.forward = true; rEnd},
  941. };
  942. #undef rBegin
  943. #undef rEnd
  944. /******************************************************************************
  945. * MiddleWare Implementation *
  946. ******************************************************************************/
  947. MiddleWareImpl::MiddleWareImpl(MiddleWare *mw, SYNTH_T synth_,
  948. Config* config, int preferrred_port)
  949. :parent(mw), config(config), ui(nullptr), synth(std::move(synth_)),
  950. presetsstore(*config)
  951. {
  952. bToU = new rtosc::ThreadLink(4096*2,1024);
  953. uToB = new rtosc::ThreadLink(4096*2,1024);
  954. midi_mapper.base_ports = &Master::ports;
  955. midi_mapper.rt_cb = [this](const char *msg){handleMsg(msg);};
  956. if(preferrred_port != -1)
  957. server = lo_server_new_with_proto(to_s(preferrred_port).c_str(),
  958. LO_UDP, liblo_error_cb);
  959. else
  960. server = lo_server_new_with_proto(NULL, LO_UDP, liblo_error_cb);
  961. if(server) {
  962. lo_server_add_method(server, NULL, NULL, handler_function, mw);
  963. fprintf(stderr, "lo server running on %d\n", lo_server_get_port(server));
  964. } else
  965. fprintf(stderr, "lo server could not be started :-/\n");
  966. //dummy callback for starters
  967. cb = [](void*, const char*){};
  968. idle = 0;
  969. idle_ptr = 0;
  970. master = new Master(synth, config);
  971. master->bToU = bToU;
  972. master->uToB = uToB;
  973. osc = GUI::genOscInterface(mw);
  974. //Grab objects of interest from master
  975. updateResources(master);
  976. //Null out Load IDs
  977. for(int i=0; i < NUM_MIDI_PARTS; ++i) {
  978. pending_load[i] = 0;
  979. actual_load[i] = 0;
  980. }
  981. //Setup Undo
  982. undo.setCallback([this](const char *msg) {
  983. // printf("undo callback <%s>\n", msg);
  984. char buf[1024];
  985. rtosc_message(buf, 1024, "/undo_pause","");
  986. handleMsg(buf);
  987. handleMsg(msg);
  988. rtosc_message(buf, 1024, "/undo_resume","");
  989. handleMsg(buf);
  990. });
  991. }
  992. MiddleWareImpl::~MiddleWareImpl(void)
  993. {
  994. if(server)
  995. lo_server_free(server);
  996. delete master;
  997. delete osc;
  998. delete bToU;
  999. delete uToB;
  1000. }
  1001. /** Threading When Saving
  1002. * ----------------------
  1003. *
  1004. * Procedure Middleware:
  1005. * 1) Middleware sends /freeze_state to backend
  1006. * 2) Middleware waits on /state_frozen from backend
  1007. * All intervening commands are held for out of order execution
  1008. * 3) Aquire memory
  1009. * At this time by the memory barrier we are guarenteed that all old
  1010. * writes are done and assuming the freezing logic is sound, then it is
  1011. * impossible for any other parameter to change at this time
  1012. * 3) Middleware performs saving operation
  1013. * 4) Middleware sends /thaw_state to backend
  1014. * 5) Restore in order execution
  1015. *
  1016. * Procedure Backend:
  1017. * 1) Observe /freeze_state and disable all mutating events (MIDI CC)
  1018. * 2) Run a memory release to ensure that all writes are complete
  1019. * 3) Send /state_frozen to Middleware
  1020. * time...
  1021. * 4) Observe /thaw_state and resume normal processing
  1022. */
  1023. void MiddleWareImpl::doReadOnlyOp(std::function<void()> read_only_fn)
  1024. {
  1025. assert(uToB);
  1026. uToB->write("/freeze_state","");
  1027. std::list<const char *> fico;
  1028. int tries = 0;
  1029. while(tries++ < 10000) {
  1030. if(!bToU->hasNext()) {
  1031. usleep(500);
  1032. continue;
  1033. }
  1034. const char *msg = bToU->read();
  1035. if(!strcmp("/state_frozen", msg))
  1036. break;
  1037. size_t bytes = rtosc_message_length(msg, bToU->buffer_size());
  1038. char *save_buf = new char[bytes];
  1039. memcpy(save_buf, msg, bytes);
  1040. fico.push_back(save_buf);
  1041. }
  1042. assert(tries < 10000);//if this happens, the backend must be dead
  1043. std::atomic_thread_fence(std::memory_order_acquire);
  1044. //Now it is safe to do any read only operation
  1045. read_only_fn();
  1046. //Now to resume normal operations
  1047. uToB->write("/thaw_state","");
  1048. for(auto x:fico) {
  1049. uToB->raw_write(x);
  1050. delete [] x;
  1051. }
  1052. }
  1053. void MiddleWareImpl::broadcastToRemote(const char *rtmsg)
  1054. {
  1055. //Always send to the local UI
  1056. sendToRemote(rtmsg, "GUI");
  1057. //Send to remote UI if there's one listening
  1058. if(curr_url != "GUI")
  1059. sendToRemote(rtmsg, curr_url);
  1060. broadcast = false;
  1061. }
  1062. void MiddleWareImpl::sendToRemote(const char *rtmsg, std::string dest)
  1063. {
  1064. //printf("sendToRemote(%s:%s,%s)\n", rtmsg, rtosc_argument_string(rtmsg),
  1065. // dest.c_str());
  1066. if(dest == "GUI") {
  1067. cb(ui, rtmsg);
  1068. } else if(!dest.empty()) {
  1069. lo_message msg = lo_message_deserialise((void*)rtmsg,
  1070. rtosc_message_length(rtmsg, bToU->buffer_size()), NULL);
  1071. //Send to known url
  1072. lo_address addr = lo_address_new_from_url(dest.c_str());
  1073. if(addr)
  1074. lo_send_message(addr, rtmsg, msg);
  1075. }
  1076. }
  1077. /**
  1078. * Handle all events coming from the backend
  1079. *
  1080. * This includes forwarded events which need to be retransmitted to the backend
  1081. * after the snooping code inspects the message
  1082. */
  1083. void MiddleWareImpl::bToUhandle(const char *rtmsg)
  1084. {
  1085. //Verify Message isn't a known corruption bug
  1086. assert(strcmp(rtmsg, "/part0/kit0/Ppadenableda"));
  1087. assert(strcmp(rtmsg, "/ze_state"));
  1088. //Dump Incomming Events For Debugging
  1089. if(strcmp(rtmsg, "/vu-meter") && false) {
  1090. fprintf(stdout, "%c[%d;%d;%dm", 0x1B, 0, 1 + 30, 0 + 40);
  1091. fprintf(stdout, "frontend[%c]: '%s'<%s>\n", forward?'f':broadcast?'b':'N',
  1092. rtmsg, rtosc_argument_string(rtmsg));
  1093. fprintf(stdout, "%c[%d;%d;%dm", 0x1B, 0, 7 + 30, 0 + 40);
  1094. }
  1095. //Activity dot
  1096. //printf(".");fflush(stdout);
  1097. MwDataObj d(this);
  1098. middlewareReplyPorts.dispatch(rtmsg, d, true);
  1099. in_order = true;
  1100. //Normal message not captured by the ports
  1101. if(d.matches == 0) {
  1102. if(forward) {
  1103. forward = false;
  1104. handleMsg(rtmsg);
  1105. } if(broadcast)
  1106. broadcastToRemote(rtmsg);
  1107. else
  1108. sendToCurrentRemote(rtmsg);
  1109. }
  1110. in_order = false;
  1111. }
  1112. //Allocate kits on a as needed basis
  1113. void MiddleWareImpl::kitEnable(const char *msg)
  1114. {
  1115. const string argv = rtosc_argument_string(msg);
  1116. if(argv != "T")
  1117. return;
  1118. //Extract fields from:
  1119. //BASE/part#/kit#/Pxxxenabled
  1120. int type = -1;
  1121. if(strstr(msg, "Padenabled"))
  1122. type = 0;
  1123. else if(strstr(msg, "Ppadenabled"))
  1124. type = 1;
  1125. else if(strstr(msg, "Psubenabled"))
  1126. type = 2;
  1127. else
  1128. return;
  1129. const char *tmp = strstr(msg, "part");
  1130. if(tmp == NULL)
  1131. return;
  1132. const int part = atoi(tmp+4);
  1133. tmp = strstr(msg, "kit");
  1134. if(tmp == NULL)
  1135. return;
  1136. const int kit = atoi(tmp+3);
  1137. kitEnable(part, kit, type);
  1138. }
  1139. void MiddleWareImpl::kitEnable(int part, int kit, int type)
  1140. {
  1141. //printf("attempting a kit enable<%d,%d,%d>\n", part, kit, type);
  1142. string url = "/part"+to_s(part)+"/kit"+to_s(kit)+"/";
  1143. void *ptr = NULL;
  1144. if(type == 0 && kits.add[part][kit] == NULL) {
  1145. ptr = kits.add[part][kit] = new ADnoteParameters(synth, master->fft);
  1146. url += "adpars-data";
  1147. obj_store.extractAD(kits.add[part][kit], part, kit);
  1148. } else if(type == 1 && kits.pad[part][kit] == NULL) {
  1149. ptr = kits.pad[part][kit] = new PADnoteParameters(synth, master->fft);
  1150. url += "padpars-data";
  1151. obj_store.extractPAD(kits.pad[part][kit], part, kit);
  1152. } else if(type == 2 && kits.sub[part][kit] == NULL) {
  1153. ptr = kits.sub[part][kit] = new SUBnoteParameters();
  1154. url += "subpars-data";
  1155. }
  1156. //Send the new memory
  1157. if(ptr)
  1158. uToB->write(url.c_str(), "b", sizeof(void*), &ptr);
  1159. }
  1160. /*
  1161. * Handle all messages traveling to the realtime side.
  1162. */
  1163. void MiddleWareImpl::handleMsg(const char *msg)
  1164. {
  1165. //Check for known bugs
  1166. assert(msg && *msg && rindex(msg, '/')[1]);
  1167. assert(strstr(msg,"free") == NULL || strstr(rtosc_argument_string(msg), "b") == NULL);
  1168. assert(strcmp(msg, "/part0/Psysefxvol"));
  1169. assert(strcmp(msg, "/Penabled"));
  1170. assert(strcmp(msg, "part0/part0/Ppanning"));
  1171. assert(strcmp(msg, "sysefx0sysefx0/preset"));
  1172. assert(strcmp(msg, "/sysefx0preset"));
  1173. assert(strcmp(msg, "Psysefxvol0/part0"));
  1174. if(strcmp("/get-vu", msg) && false) {
  1175. fprintf(stdout, "%c[%d;%d;%dm", 0x1B, 0, 6 + 30, 0 + 40);
  1176. fprintf(stdout, "middleware: '%s':%s\n", msg, rtosc_argument_string(msg));
  1177. fprintf(stdout, "%c[%d;%d;%dm", 0x1B, 0, 7 + 30, 0 + 40);
  1178. }
  1179. const char *last_path = rindex(msg, '/');
  1180. if(!last_path) {
  1181. printf("Bad message in handleMsg() <%s>\n", msg);
  1182. assert(false);
  1183. return;
  1184. }
  1185. MwDataObj d(this);
  1186. middwareSnoopPorts.dispatch(msg, d, true);
  1187. //A message unmodified by snooping
  1188. if(d.matches == 0 || d.forwarded) {
  1189. //if(strcmp("/get-vu", msg)) {
  1190. // printf("Message Continuing on<%s:%s>...\n", msg, rtosc_argument_string(msg));
  1191. //}
  1192. uToB->raw_write(msg);
  1193. } else {
  1194. //printf("Message Handled<%s:%s>...\n", msg, rtosc_argument_string(msg));
  1195. }
  1196. }
  1197. void MiddleWareImpl::write(const char *path, const char *args, ...)
  1198. {
  1199. //We have a free buffer in the threadlink, so use it
  1200. va_list va;
  1201. va_start(va, args);
  1202. write(path, args, va);
  1203. va_end(va);
  1204. }
  1205. void MiddleWareImpl::write(const char *path, const char *args, va_list va)
  1206. {
  1207. //printf("is that a '%s' I see there?\n", path);
  1208. char *buffer = uToB->buffer();
  1209. unsigned len = uToB->buffer_size();
  1210. bool success = rtosc_vmessage(buffer, len, path, args, va);
  1211. //printf("working on '%s':'%s'\n",path, args);
  1212. if(success)
  1213. handleMsg(buffer);
  1214. else
  1215. warnx("Failed to write message to '%s'", path);
  1216. }
  1217. /******************************************************************************
  1218. * MidleWare Forwarding Stubs *
  1219. ******************************************************************************/
  1220. MiddleWare::MiddleWare(SYNTH_T synth, Config* config,
  1221. int preferred_port)
  1222. :impl(new MiddleWareImpl(this, std::move(synth), config, preferred_port))
  1223. {}
  1224. MiddleWare::~MiddleWare(void)
  1225. {
  1226. delete impl;
  1227. }
  1228. void MiddleWare::updateResources(Master *m)
  1229. {
  1230. impl->updateResources(m);
  1231. }
  1232. Master *MiddleWare::spawnMaster(void)
  1233. {
  1234. assert(impl->master);
  1235. assert(impl->master->uToB);
  1236. return impl->master;
  1237. }
  1238. Fl_Osc_Interface *MiddleWare::spawnUiApi(void)
  1239. {
  1240. return impl->osc;
  1241. }
  1242. void MiddleWare::tick(void)
  1243. {
  1244. impl->tick();
  1245. }
  1246. void MiddleWare::doReadOnlyOp(std::function<void()> fn)
  1247. {
  1248. impl->doReadOnlyOp(fn);
  1249. }
  1250. void MiddleWare::setUiCallback(void(*cb)(void*,const char *), void *ui)
  1251. {
  1252. impl->cb = cb;
  1253. impl->ui = ui;
  1254. }
  1255. void MiddleWare::setIdleCallback(void(*cb)(void*), void *ptr)
  1256. {
  1257. impl->idle = cb;
  1258. impl->idle_ptr = ptr;
  1259. }
  1260. void MiddleWare::transmitMsg(const char *msg)
  1261. {
  1262. impl->handleMsg(msg);
  1263. }
  1264. void MiddleWare::transmitMsg(const char *path, const char *args, ...)
  1265. {
  1266. char buffer[1024];
  1267. va_list va;
  1268. va_start(va,args);
  1269. if(rtosc_vmessage(buffer,1024,path,args,va))
  1270. transmitMsg(buffer);
  1271. else
  1272. fprintf(stderr, "Error in transmitMsg(...)\n");
  1273. va_end(va);
  1274. }
  1275. void MiddleWare::transmitMsg_va(const char *path, const char *args, va_list va)
  1276. {
  1277. char buffer[1024];
  1278. if(rtosc_vmessage(buffer, 1024, path, args, va))
  1279. transmitMsg(buffer);
  1280. else
  1281. fprintf(stderr, "Error in transmitMsg(va)n");
  1282. }
  1283. void MiddleWare::messageAnywhere(const char *path, const char *args, ...)
  1284. {
  1285. auto *mem = impl->multi_thread_source.alloc();
  1286. if(!mem)
  1287. fprintf(stderr, "Middleware::messageAnywhere memory pool out of memory...\n");
  1288. va_list va;
  1289. va_start(va,args);
  1290. if(rtosc_vmessage(mem->memory,mem->size,path,args,va))
  1291. impl->multi_thread_source.write(mem);
  1292. else {
  1293. fprintf(stderr, "Middleware::messageAnywhere message too big...\n");
  1294. impl->multi_thread_source.free(mem);
  1295. }
  1296. }
  1297. void MiddleWare::pendingSetBank(int bank)
  1298. {
  1299. impl->bToU->write("/setbank", "c", bank);
  1300. }
  1301. void MiddleWare::pendingSetProgram(int part, int program)
  1302. {
  1303. impl->pending_load[part]++;
  1304. impl->bToU->write("/setprogram", "cc", part, program);
  1305. }
  1306. std::string MiddleWare::activeUrl(void)
  1307. {
  1308. return impl->last_url;
  1309. }
  1310. void MiddleWare::activeUrl(std::string u)
  1311. {
  1312. impl->last_url = u;
  1313. }
  1314. const SYNTH_T &MiddleWare::getSynth(void) const
  1315. {
  1316. return impl->synth;
  1317. }
  1318. const char* MiddleWare::getServerAddress(void) const
  1319. {
  1320. if(impl->server)
  1321. return lo_server_get_url(impl->server);
  1322. else
  1323. return "NULL";
  1324. }
  1325. const PresetsStore& MiddleWare::getPresetsStore() const
  1326. {
  1327. return impl->presetsstore;
  1328. }
  1329. PresetsStore& MiddleWare::getPresetsStore()
  1330. {
  1331. return impl->presetsstore;
  1332. }