/[svn]/linuxsampler/trunk/src/network/lscpserver.cpp
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Annotation of /linuxsampler/trunk/src/network/lscpserver.cpp

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Revision 836 - (hide annotations) (download)
Wed Feb 8 20:28:46 2006 UTC (18 years, 2 months ago) by persson
File size: 70091 byte(s)
* fixed some invalid iterator errors

1 schoenebeck 35 /***************************************************************************
2     * *
3     * LinuxSampler - modular, streaming capable sampler *
4     * *
5 schoenebeck 56 * Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck *
6 schoenebeck 385 * Copyright (C) 2005 Christian Schoenebeck *
7 schoenebeck 35 * *
8 schoenebeck 385 * This library is free software; you can redistribute it and/or modify *
9 schoenebeck 35 * it under the terms of the GNU General Public License as published by *
10     * the Free Software Foundation; either version 2 of the License, or *
11     * (at your option) any later version. *
12     * *
13 schoenebeck 385 * This library is distributed in the hope that it will be useful, *
14 schoenebeck 35 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
15     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
16     * GNU General Public License for more details. *
17     * *
18     * You should have received a copy of the GNU General Public License *
19 schoenebeck 385 * along with this library; if not, write to the Free Software *
20 schoenebeck 35 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, *
21     * MA 02111-1307 USA *
22     ***************************************************************************/
23    
24     #include "lscpserver.h"
25 senkov 113 #include "lscpresultset.h"
26 senkov 170 #include "lscpevent.h"
27 senkov 397 //#include "../common/global.h"
28 schoenebeck 35
29 schoenebeck 411 #include <fcntl.h>
30    
31 schoenebeck 401 #if HAVE_SQLITE3
32     # include "sqlite3.h"
33 senkov 397 #endif
34    
35 schoenebeck 411 #include "../engines/EngineFactory.h"
36 schoenebeck 660 #include "../engines/EngineChannelFactory.h"
37 schoenebeck 203 #include "../drivers/audio/AudioOutputDeviceFactory.h"
38     #include "../drivers/midi/MidiInputDeviceFactory.h"
39 schoenebeck 53
40 senkov 170 /**
41     * Below are a few static members of the LSCPServer class.
42     * The big assumption here is that LSCPServer is going to remain a singleton.
43     * These members are used to support client connections.
44     * Class handles multiple connections at the same time using select() and non-blocking recv()
45     * Commands are processed by a single LSCPServer thread.
46     * Notifications are delivered either by the thread that originated them
47     * or (if the resultset is currently in progress) by the LSCPServer thread
48     * after the resultset was sent out.
49     * This makes sure that resultsets can not be interrupted by notifications.
50     * This also makes sure that the thread sending notification is not blocked
51     * by the LSCPServer thread.
52     */
53     fd_set LSCPServer::fdSet;
54     int LSCPServer::currentSocket = -1;
55 schoenebeck 210 std::vector<yyparse_param_t> LSCPServer::Sessions = std::vector<yyparse_param_t>();
56 senkov 170 std::map<int,String> LSCPServer::bufferedNotifies = std::map<int,String>();
57     std::map<int,String> LSCPServer::bufferedCommands = std::map<int,String>();
58     std::map< LSCPEvent::event_t, std::list<int> > LSCPServer::eventSubscriptions = std::map< LSCPEvent::event_t, std::list<int> >();
59     Mutex LSCPServer::NotifyMutex = Mutex();
60     Mutex LSCPServer::NotifyBufferMutex = Mutex();
61     Mutex LSCPServer::SubscriptionMutex = Mutex();
62 senkov 360 Mutex LSCPServer::RTNotifyMutex = Mutex();
63 senkov 170
64 senkov 667 LSCPServer::LSCPServer(Sampler* pSampler, long int addr, short int port) : Thread(true, false, 0, -4) {
65     SocketAddress.sin_family = AF_INET;
66     SocketAddress.sin_addr.s_addr = addr;
67     SocketAddress.sin_port = port;
68 schoenebeck 53 this->pSampler = pSampler;
69 schoenebeck 556 LSCPEvent::RegisterEvent(LSCPEvent::event_channel_count, "CHANNEL_COUNT");
70 senkov 170 LSCPEvent::RegisterEvent(LSCPEvent::event_voice_count, "VOICE_COUNT");
71     LSCPEvent::RegisterEvent(LSCPEvent::event_stream_count, "STREAM_COUNT");
72     LSCPEvent::RegisterEvent(LSCPEvent::event_buffer_fill, "BUFFER_FILL");
73 schoenebeck 556 LSCPEvent::RegisterEvent(LSCPEvent::event_channel_info, "CHANNEL_INFO");
74 senkov 170 LSCPEvent::RegisterEvent(LSCPEvent::event_misc, "MISCELLANEOUS");
75 iliev 778 LSCPEvent::RegisterEvent(LSCPEvent::event_total_voice_count, "TOTAL_VOICE_COUNT");
76 schoenebeck 475 hSocket = -1;
77 schoenebeck 35 }
78    
79 schoenebeck 475 LSCPServer::~LSCPServer() {
80     if (hSocket >= 0) close(hSocket);
81     }
82    
83 schoenebeck 211 /**
84     * Blocks the calling thread until the LSCP Server is initialized and
85     * accepting socket connections, if the server is already initialized then
86     * this method will return immediately.
87     * @param TimeoutSeconds - optional: max. wait time in seconds
88     * (default: 0s)
89     * @param TimeoutNanoSeconds - optional: max wait time in nano seconds
90     * (default: 0ns)
91     * @returns 0 on success, a value less than 0 if timeout exceeded
92     */
93     int LSCPServer::WaitUntilInitialized(long TimeoutSeconds, long TimeoutNanoSeconds) {
94     return Initialized.WaitAndUnlockIf(false, TimeoutSeconds, TimeoutNanoSeconds);
95     }
96    
97 schoenebeck 35 int LSCPServer::Main() {
98 schoenebeck 475 hSocket = socket(AF_INET, SOCK_STREAM, 0);
99 schoenebeck 35 if (hSocket < 0) {
100     std::cerr << "LSCPServer: Could not create server socket." << std::endl;
101 schoenebeck 53 //return -1;
102     exit(EXIT_FAILURE);
103 schoenebeck 35 }
104    
105     if (bind(hSocket, (sockaddr*) &SocketAddress, sizeof(sockaddr_in)) < 0) {
106 schoenebeck 227 std::cerr << "LSCPServer: Could not bind server socket, retrying for " << ToString(LSCP_SERVER_BIND_TIMEOUT) << " seconds...";
107     for (int trial = 0; true; trial++) { // retry for LSCP_SERVER_BIND_TIMEOUT seconds
108     if (bind(hSocket, (sockaddr*) &SocketAddress, sizeof(sockaddr_in)) < 0) {
109     if (trial > LSCP_SERVER_BIND_TIMEOUT) {
110     std::cerr << "gave up!" << std::endl;
111     close(hSocket);
112     //return -1;
113     exit(EXIT_FAILURE);
114     }
115     else sleep(1); // sleep 1s
116     }
117     else break; // success
118     }
119 schoenebeck 35 }
120    
121     listen(hSocket, 1);
122 schoenebeck 211 Initialized.Set(true);
123 schoenebeck 35
124     // now wait for client connections and handle their requests
125     sockaddr_in client;
126     int length = sizeof(client);
127 senkov 170 FD_ZERO(&fdSet);
128     FD_SET(hSocket, &fdSet);
129     int maxSessions = hSocket;
130 schoenebeck 203
131 iliev 793 timeval timeout;
132    
133 schoenebeck 35 while (true) {
134 iliev 793 // check if some engine channel's parameter / status changed, if so notify the respective LSCP event subscribers
135     {
136     std::set<EngineChannel*> engineChannels = EngineChannelFactory::EngineChannelInstances();
137     std::set<EngineChannel*>::iterator itEngineChannel = engineChannels.begin();
138     std::set<EngineChannel*>::iterator itEnd = engineChannels.end();
139     for (; itEngineChannel != itEnd; ++itEngineChannel) {
140     if ((*itEngineChannel)->StatusChanged()) {
141     SendLSCPNotify(LSCPEvent(LSCPEvent::event_channel_info, (*itEngineChannel)->iSamplerChannelIndex));
142     }
143     }
144     }
145    
146     //Now let's deliver late notifies (if any)
147     NotifyBufferMutex.Lock();
148     for (std::map<int,String>::iterator iterNotify = bufferedNotifies.begin(); iterNotify != bufferedNotifies.end(); iterNotify++) {
149 wylder 814 #ifdef MSG_NOSIGNAL
150 iliev 793 send(iterNotify->first, iterNotify->second.c_str(), iterNotify->second.size(), MSG_NOSIGNAL);
151 wylder 814 #else
152     send(iterNotify->first, iterNotify->second.c_str(), iterNotify->second.size(), 0);
153     #endif
154 iliev 793 }
155 persson 836 bufferedNotifies.clear();
156 iliev 793 NotifyBufferMutex.Unlock();
157    
158     fd_set selectSet = fdSet;
159     timeout.tv_sec = 0;
160     timeout.tv_usec = 100000;
161    
162     int retval = select(maxSessions+1, &selectSet, NULL, NULL, &timeout);
163    
164 senkov 170 if (retval == 0)
165 senkov 198 continue; //Nothing try again
166 senkov 170 if (retval == -1) {
167     std::cerr << "LSCPServer: Socket select error." << std::endl;
168     close(hSocket);
169     exit(EXIT_FAILURE);
170     }
171 schoenebeck 203
172 senkov 170 //Accept new connections now (if any)
173     if (FD_ISSET(hSocket, &selectSet)) {
174     int socket = accept(hSocket, (sockaddr*) &client, (socklen_t*) &length);
175     if (socket < 0) {
176     std::cerr << "LSCPServer: Client connection failed." << std::endl;
177     exit(EXIT_FAILURE);
178     }
179 schoenebeck 35
180 senkov 170 if (fcntl(socket, F_SETFL, O_NONBLOCK)) {
181     std::cerr << "LSCPServer: F_SETFL O_NONBLOCK failed." << std::endl;
182     exit(EXIT_FAILURE);
183     }
184 schoenebeck 35
185 schoenebeck 210 // Parser initialization
186     yyparse_param_t yyparse_param;
187     yyparse_param.pServer = this;
188     yyparse_param.hSession = socket;
189    
190     Sessions.push_back(yyparse_param);
191 senkov 170 FD_SET(socket, &fdSet);
192     if (socket > maxSessions)
193     maxSessions = socket;
194     dmsg(1,("LSCPServer: Client connection established on socket:%d.\n", socket));
195     LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_misc, "Client connection established on socket", socket));
196     continue; //Maybe this was the only selected socket, better select again
197     }
198 schoenebeck 35
199 senkov 170 //Something was selected and it was not the hSocket, so it must be some command(s) coming.
200 schoenebeck 210 for (std::vector<yyparse_param_t>::iterator iter = Sessions.begin(); iter != Sessions.end(); iter++) {
201     if (FD_ISSET((*iter).hSession, &selectSet)) { //Was it this socket?
202 senkov 170 if (GetLSCPCommand(iter)) { //Have we read the entire command?
203     dmsg(3,("LSCPServer: Got command on socket %d, calling parser.\n", currentSocket));
204 schoenebeck 219 int dummy; // just a temporary hack to fulfill the restart() function prototype
205     restart(NULL, dummy); // restart the 'scanner'
206 schoenebeck 210 currentSocket = (*iter).hSession; //a hack
207 schoenebeck 475 dmsg(2,("LSCPServer: [%s]\n",bufferedCommands[currentSocket].c_str()));
208 schoenebeck 210 if ((*iter).bVerbose) { // if echo mode enabled
209     AnswerClient(bufferedCommands[currentSocket]);
210     }
211     int result = yyparse(&(*iter));
212 senkov 170 currentSocket = -1; //continuation of a hack
213     dmsg(3,("LSCPServer: Done parsing on socket %d.\n", currentSocket));
214     if (result == LSCP_QUIT) { //Was it a quit command by any chance?
215     CloseConnection(iter);
216     }
217     }
218     //socket may have been closed, iter may be invalid, get out of the loop for now.
219     //we'll be back if there is data.
220 schoenebeck 203 break;
221 senkov 170 }
222     }
223 schoenebeck 35 }
224     }
225    
226 schoenebeck 210 void LSCPServer::CloseConnection( std::vector<yyparse_param_t>::iterator iter ) {
227     int socket = (*iter).hSession;
228 senkov 170 dmsg(1,("LSCPServer: Client connection terminated on socket:%d.\n",socket));
229     LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_misc, "Client connection terminated on socket", socket));
230 schoenebeck 210 Sessions.erase(iter);
231 senkov 170 FD_CLR(socket, &fdSet);
232     SubscriptionMutex.Lock(); //Must unsubscribe this socket from all events (if any)
233     for (std::map< LSCPEvent::event_t, std::list<int> >::iterator iter = eventSubscriptions.begin(); iter != eventSubscriptions.end(); iter++) {
234     iter->second.remove(socket);
235     }
236     SubscriptionMutex.Unlock();
237     NotifyMutex.Lock();
238     bufferedCommands.erase(socket);
239     bufferedNotifies.erase(socket);
240     close(socket);
241     NotifyMutex.Unlock();
242     }
243    
244 senkov 360 int LSCPServer::EventSubscribers( std::list<LSCPEvent::event_t> events ) {
245     int subs = 0;
246     SubscriptionMutex.Lock();
247     for( std::list<LSCPEvent::event_t>::iterator iter = events.begin();
248     iter != events.end(); iter++)
249     {
250     subs += eventSubscriptions.count(*iter);
251     }
252     SubscriptionMutex.Unlock();
253     return subs;
254     }
255    
256 senkov 170 void LSCPServer::SendLSCPNotify( LSCPEvent event ) {
257     SubscriptionMutex.Lock();
258     if (eventSubscriptions.count(event.GetType()) == 0) {
259     SubscriptionMutex.Unlock(); //Nobody is subscribed to this event
260     return;
261     }
262     std::list<int>::iterator iter = eventSubscriptions[event.GetType()].begin();
263     std::list<int>::iterator end = eventSubscriptions[event.GetType()].end();
264     String notify = event.Produce();
265    
266     while (true) {
267     if (NotifyMutex.Trylock()) {
268     for(;iter != end; iter++)
269 wylder 814 #ifdef MSG_NOSIGNAL
270 iliev 707 send(*iter, notify.c_str(), notify.size(), MSG_NOSIGNAL);
271 wylder 814 #else
272     send(*iter, notify.c_str(), notify.size(), 0);
273     #endif
274 senkov 170 NotifyMutex.Unlock();
275     break;
276     } else {
277     if (NotifyBufferMutex.Trylock()) {
278     for(;iter != end; iter++)
279     bufferedNotifies[*iter] += notify;
280     NotifyBufferMutex.Unlock();
281     break;
282     }
283     }
284     }
285     SubscriptionMutex.Unlock();
286     }
287    
288     extern int GetLSCPCommand( void *buf, int max_size ) {
289     String command = LSCPServer::bufferedCommands[LSCPServer::currentSocket];
290     if (command.size() == 0) { //Parser wants input but we have nothing.
291     strcpy((char*) buf, "\n"); //So give it an empty command
292     return 1; //to keep it happy.
293     }
294    
295     if (max_size < command.size()) {
296     std::cerr << "getLSCPCommand: Flex buffer too small, ignoring the command." << std::endl;
297     return 0; //This will never happen
298     }
299    
300     strcpy((char*) buf, command.c_str());
301     LSCPServer::bufferedCommands.erase(LSCPServer::currentSocket);
302     return command.size();
303     }
304    
305 schoenebeck 35 /**
306 senkov 170 * Will be called to try to read the command from the socket
307     * If command is read, it will return true. Otherwise false is returned.
308     * In any case the received portion (complete or incomplete) is saved into bufferedCommand map.
309     */
310 schoenebeck 210 bool LSCPServer::GetLSCPCommand( std::vector<yyparse_param_t>::iterator iter ) {
311     int socket = (*iter).hSession;
312 senkov 170 char c;
313     int i = 0;
314     while (true) {
315     int result = recv(socket, (void *)&c, 1, 0); //Read one character at a time for now
316     if (result == 0) { //socket was selected, so 0 here means client has closed the connection
317     CloseConnection(iter);
318     break;
319     }
320     if (result == 1) {
321 schoenebeck 203 if (c == '\r')
322 senkov 170 continue; //Ignore CR
323     if (c == '\n') {
324 senkov 184 LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_misc, "Received \'" + bufferedCommands[socket] + "\' on socket", socket));
325 senkov 170 bufferedCommands[socket] += "\n";
326     return true; //Complete command was read
327     }
328     bufferedCommands[socket] += c;
329     }
330     if (result == -1) {
331     if (errno == EAGAIN) //Would block, try again later.
332     return false;
333     switch(errno) {
334     case EBADF:
335     dmsg(2,("LSCPScanner: The argument s is an invalid descriptor.\n"));
336     break;
337     case ECONNREFUSED:
338     dmsg(2,("LSCPScanner: A remote host refused to allow the network connection (typically because it is not running the requested service).\n"));
339     break;
340     case ENOTCONN:
341     dmsg(2,("LSCPScanner: The socket is associated with a connection-oriented protocol and has not been connected (see connect(2) and accept(2)).\n"));
342     break;
343     case ENOTSOCK:
344     dmsg(2,("LSCPScanner: The argument s does not refer to a socket.\n"));
345     break;
346     case EAGAIN:
347     dmsg(2,("LSCPScanner: The socket is marked non-blocking and the receive operation would block, or a receive timeout had been set and the timeout expired before data was received.\n"));
348 schoenebeck 203 break;
349     case EINTR:
350 senkov 170 dmsg(2,("LSCPScanner: The receive was interrupted by delivery of a signal before any data were available.\n"));
351 schoenebeck 203 break;
352     case EFAULT:
353     dmsg(2,("LSCPScanner: The receive buffer pointer(s) point outside the process's address space.\n"));
354     break;
355     case EINVAL:
356     dmsg(2,("LSCPScanner: Invalid argument passed.\n"));
357     break;
358     case ENOMEM:
359     dmsg(2,("LSCPScanner: Could not allocate memory for recvmsg.\n"));
360     break;
361     default:
362     dmsg(2,("LSCPScanner: Unknown recv() error.\n"));
363     break;
364     }
365 senkov 170 CloseConnection(iter);
366     break;
367     }
368     }
369     return false;
370     }
371    
372     /**
373 schoenebeck 35 * Will be called by the parser whenever it wants to send an answer to the
374     * client / frontend.
375     *
376     * @param ReturnMessage - message that will be send to the client
377     */
378     void LSCPServer::AnswerClient(String ReturnMessage) {
379     dmsg(2,("LSCPServer::AnswerClient(ReturnMessage=%s)", ReturnMessage.c_str()));
380 senkov 170 if (currentSocket != -1) {
381     NotifyMutex.Lock();
382 wylder 814 #ifdef MSG_NOSIGNAL
383 iliev 707 send(currentSocket, ReturnMessage.c_str(), ReturnMessage.size(), MSG_NOSIGNAL);
384 wylder 814 #else
385     send(currentSocket, ReturnMessage.c_str(), ReturnMessage.size(), 0);
386     #endif
387 senkov 170 NotifyMutex.Unlock();
388     }
389 schoenebeck 35 }
390    
391 capela 143 /**
392     * Find a created audio output device index.
393     */
394     int LSCPServer::GetAudioOutputDeviceIndex ( AudioOutputDevice *pDevice )
395     {
396     // Search for the created device to get its index
397     std::map<uint, AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
398     std::map<uint, AudioOutputDevice*>::iterator iter = devices.begin();
399     for (; iter != devices.end(); iter++) {
400     if (iter->second == pDevice)
401     return iter->first;
402     }
403     // Not found.
404     return -1;
405     }
406    
407 senkov 155 /**
408     * Find a created midi input device index.
409     */
410     int LSCPServer::GetMidiInputDeviceIndex ( MidiInputDevice *pDevice )
411     {
412     // Search for the created device to get its index
413     std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
414     std::map<uint, MidiInputDevice*>::iterator iter = devices.begin();
415     for (; iter != devices.end(); iter++) {
416     if (iter->second == pDevice)
417     return iter->first;
418     }
419     // Not found.
420     return -1;
421     }
422    
423 schoenebeck 123 String LSCPServer::CreateAudioOutputDevice(String Driver, std::map<String,String> Parameters) {
424     dmsg(2,("LSCPServer: CreateAudioOutputDevice(Driver=%s)\n", Driver.c_str()));
425     LSCPResultSet result;
426     try {
427     AudioOutputDevice* pDevice = pSampler->CreateAudioOutputDevice(Driver, Parameters);
428     // search for the created device to get its index
429 capela 143 int index = GetAudioOutputDeviceIndex(pDevice);
430 schoenebeck 123 if (index == -1) throw LinuxSamplerException("Internal error: could not find created audio output device.");
431     result = index; // success
432     }
433     catch (LinuxSamplerException e) {
434     result.Error(e);
435     }
436     return result.Produce();
437     }
438    
439 senkov 155 String LSCPServer::CreateMidiInputDevice(String Driver, std::map<String,String> Parameters) {
440     dmsg(2,("LSCPServer: CreateMidiInputDevice(Driver=%s)\n", Driver.c_str()));
441     LSCPResultSet result;
442     try {
443     MidiInputDevice* pDevice = pSampler->CreateMidiInputDevice(Driver, Parameters);
444     // search for the created device to get its index
445     int index = GetMidiInputDeviceIndex(pDevice);
446     if (index == -1) throw LinuxSamplerException("Internal error: could not find created midi input device.");
447     result = index; // success
448     }
449     catch (LinuxSamplerException e) {
450     result.Error(e);
451     }
452     return result.Produce();
453     }
454    
455 schoenebeck 123 String LSCPServer::DestroyAudioOutputDevice(uint DeviceIndex) {
456     dmsg(2,("LSCPServer: DestroyAudioOutputDevice(DeviceIndex=%d)\n", DeviceIndex));
457     LSCPResultSet result;
458     try {
459     std::map<uint, AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
460 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceIndex) + ".");
461 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceIndex];
462     pSampler->DestroyAudioOutputDevice(pDevice);
463     }
464     catch (LinuxSamplerException e) {
465     result.Error(e);
466     }
467     return result.Produce();
468     }
469    
470 senkov 155 String LSCPServer::DestroyMidiInputDevice(uint DeviceIndex) {
471     dmsg(2,("LSCPServer: DestroyMidiInputDevice(DeviceIndex=%d)\n", DeviceIndex));
472     LSCPResultSet result;
473     try {
474     std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
475 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceIndex) + ".");
476 senkov 155 MidiInputDevice* pDevice = devices[DeviceIndex];
477     pSampler->DestroyMidiInputDevice(pDevice);
478     }
479     catch (LinuxSamplerException e) {
480     result.Error(e);
481     }
482     return result.Produce();
483     }
484    
485 schoenebeck 35 /**
486     * Will be called by the parser to load an instrument.
487     */
488 capela 137 String LSCPServer::LoadInstrument(String Filename, uint uiInstrument, uint uiSamplerChannel, bool bBackground) {
489 schoenebeck 53 dmsg(2,("LSCPServer: LoadInstrument(Filename=%s,Instrument=%d,SamplerChannel=%d)\n", Filename.c_str(), uiInstrument, uiSamplerChannel));
490 senkov 120 LSCPResultSet result;
491 schoenebeck 53 try {
492     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
493 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
494 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
495     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel yet");
496 schoenebeck 223 if (!pSamplerChannel->GetAudioOutputDevice())
497 schoenebeck 374 throw LinuxSamplerException("No audio output device connected to sampler channel");
498 capela 137 if (bBackground) {
499 schoenebeck 411 InstrumentLoader.StartNewLoad(Filename, uiInstrument, pEngineChannel);
500 capela 137 }
501 schoenebeck 392 else {
502 schoenebeck 411 // tell the engine channel which instrument to load
503     pEngineChannel->PrepareLoadInstrument(Filename.c_str(), uiInstrument);
504 schoenebeck 392 // actually start to load the instrument (blocks until completed)
505 schoenebeck 411 pEngineChannel->LoadInstrument();
506 schoenebeck 392 }
507 schoenebeck 53 }
508     catch (LinuxSamplerException e) {
509 senkov 120 result.Error(e);
510 schoenebeck 53 }
511 senkov 120 return result.Produce();
512 schoenebeck 35 }
513    
514     /**
515 schoenebeck 411 * Will be called by the parser to assign a sampler engine type to a
516     * sampler channel.
517 schoenebeck 35 */
518 schoenebeck 411 String LSCPServer::SetEngineType(String EngineName, uint uiSamplerChannel) {
519 schoenebeck 705 dmsg(2,("LSCPServer: SetEngineType(EngineName=%s,uiSamplerChannel=%d)\n", EngineName.c_str(), uiSamplerChannel));
520 senkov 120 LSCPResultSet result;
521 schoenebeck 475 try {
522 schoenebeck 53 SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
523 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
524 senkov 360 LockRTNotify();
525 schoenebeck 411 pSamplerChannel->SetEngineType(EngineName);
526 schoenebeck 705 if(HasSoloChannel()) pSamplerChannel->GetEngineChannel()->SetMute(-1);
527 senkov 360 UnlockRTNotify();
528 schoenebeck 53 }
529     catch (LinuxSamplerException e) {
530 senkov 120 result.Error(e);
531 schoenebeck 53 }
532 senkov 120 return result.Produce();
533 schoenebeck 35 }
534    
535     /**
536     * Will be called by the parser to get the amount of sampler channels.
537     */
538     String LSCPServer::GetChannels() {
539     dmsg(2,("LSCPServer: GetChannels()\n"));
540 senkov 120 LSCPResultSet result;
541     result.Add(pSampler->SamplerChannels());
542     return result.Produce();
543 schoenebeck 35 }
544    
545     /**
546 schoenebeck 209 * Will be called by the parser to get the list of sampler channels.
547     */
548     String LSCPServer::ListChannels() {
549     dmsg(2,("LSCPServer: ListChannels()\n"));
550     String list;
551     std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels();
552     std::map<uint,SamplerChannel*>::iterator iter = channels.begin();
553     for (; iter != channels.end(); iter++) {
554     if (list != "") list += ",";
555     list += ToString(iter->first);
556     }
557     LSCPResultSet result;
558     result.Add(list);
559     return result.Produce();
560     }
561    
562     /**
563 schoenebeck 35 * Will be called by the parser to add a sampler channel.
564     */
565     String LSCPServer::AddChannel() {
566     dmsg(2,("LSCPServer: AddChannel()\n"));
567 schoenebeck 53 SamplerChannel* pSamplerChannel = pSampler->AddSamplerChannel();
568 senkov 120 LSCPResultSet result(pSamplerChannel->Index());
569     return result.Produce();
570 schoenebeck 35 }
571    
572     /**
573     * Will be called by the parser to remove a sampler channel.
574     */
575 schoenebeck 53 String LSCPServer::RemoveChannel(uint uiSamplerChannel) {
576     dmsg(2,("LSCPServer: RemoveChannel(SamplerChannel=%d)\n", uiSamplerChannel));
577 senkov 120 LSCPResultSet result;
578 senkov 360 LockRTNotify();
579 schoenebeck 53 pSampler->RemoveSamplerChannel(uiSamplerChannel);
580 senkov 360 UnlockRTNotify();
581 senkov 120 return result.Produce();
582 schoenebeck 35 }
583    
584     /**
585 capela 527 * Will be called by the parser to get the amount of all available engines.
586 schoenebeck 35 */
587     String LSCPServer::GetAvailableEngines() {
588     dmsg(2,("LSCPServer: GetAvailableEngines()\n"));
589 capela 527 LSCPResultSet result("1");
590 senkov 120 return result.Produce();
591 schoenebeck 35 }
592    
593     /**
594 capela 527 * Will be called by the parser to get a list of all available engines.
595     */
596     String LSCPServer::ListAvailableEngines() {
597     dmsg(2,("LSCPServer: ListAvailableEngines()\n"));
598     LSCPResultSet result("\'GIG\'");
599     return result.Produce();
600     }
601    
602     /**
603 schoenebeck 411 * Will be called by the parser to get descriptions for a particular
604     * sampler engine.
605 schoenebeck 35 */
606     String LSCPServer::GetEngineInfo(String EngineName) {
607     dmsg(2,("LSCPServer: GetEngineInfo(EngineName=%s)\n", EngineName.c_str()));
608 senkov 120 LSCPResultSet result;
609 schoenebeck 53 try {
610 schoenebeck 411 Engine* pEngine = EngineFactory::Create(EngineName);
611     result.Add("DESCRIPTION", pEngine->Description());
612     result.Add("VERSION", pEngine->Version());
613 schoenebeck 660 EngineFactory::Destroy(pEngine);
614 schoenebeck 53 }
615     catch (LinuxSamplerException e) {
616 senkov 120 result.Error(e);
617 schoenebeck 53 }
618 senkov 120 return result.Produce();
619 schoenebeck 35 }
620    
621     /**
622     * Will be called by the parser to get informations about a particular
623     * sampler channel.
624     */
625 schoenebeck 53 String LSCPServer::GetChannelInfo(uint uiSamplerChannel) {
626     dmsg(2,("LSCPServer: GetChannelInfo(SamplerChannel=%d)\n", uiSamplerChannel));
627 senkov 120 LSCPResultSet result;
628 senkov 113 try {
629     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
630 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
631 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
632 schoenebeck 123
633 senkov 117 //Defaults values
634     String EngineName = "NONE";
635 schoenebeck 225 float Volume = 0.0f;
636 senkov 117 String InstrumentFileName = "NONE";
637 senkov 376 String InstrumentName = "NONE";
638 capela 133 int InstrumentIndex = -1;
639     int InstrumentStatus = -1;
640 schoenebeck 225 int AudioOutputChannels = 0;
641     String AudioRouting;
642 schoenebeck 705 int Mute = 0;
643     bool Solo = false;
644 schoenebeck 123
645 schoenebeck 475 if (pEngineChannel) {
646     EngineName = pEngineChannel->EngineName();
647 schoenebeck 411 AudioOutputChannels = pEngineChannel->Channels();
648     Volume = pEngineChannel->Volume();
649     InstrumentStatus = pEngineChannel->InstrumentStatus();
650     InstrumentIndex = pEngineChannel->InstrumentIndex();
651     if (InstrumentIndex != -1) {
652     InstrumentFileName = pEngineChannel->InstrumentFileName();
653     InstrumentName = pEngineChannel->InstrumentName();
654     }
655     for (int chan = 0; chan < pEngineChannel->Channels(); chan++) {
656 schoenebeck 225 if (AudioRouting != "") AudioRouting += ",";
657 schoenebeck 411 AudioRouting += ToString(pEngineChannel->OutputChannel(chan));
658 schoenebeck 225 }
659 schoenebeck 705 Mute = pEngineChannel->GetMute();
660     Solo = pEngineChannel->GetSolo();
661 senkov 113 }
662 senkov 117
663     result.Add("ENGINE_NAME", EngineName);
664     result.Add("VOLUME", Volume);
665    
666 capela 143 //Some not-so-hardcoded stuff to make GUI look good
667     result.Add("AUDIO_OUTPUT_DEVICE", GetAudioOutputDeviceIndex(pSamplerChannel->GetAudioOutputDevice()));
668 schoenebeck 225 result.Add("AUDIO_OUTPUT_CHANNELS", AudioOutputChannels);
669     result.Add("AUDIO_OUTPUT_ROUTING", AudioRouting);
670 senkov 113
671 capela 159 result.Add("MIDI_INPUT_DEVICE", GetMidiInputDeviceIndex(pSamplerChannel->GetMidiInputDevice()));
672     result.Add("MIDI_INPUT_PORT", pSamplerChannel->GetMidiInputPort());
673 schoenebeck 675 if (pSamplerChannel->GetMidiInputChannel() == midi_chan_all) result.Add("MIDI_INPUT_CHANNEL", "ALL");
674 schoenebeck 274 else result.Add("MIDI_INPUT_CHANNEL", pSamplerChannel->GetMidiInputChannel());
675 capela 159
676 senkov 117 result.Add("INSTRUMENT_FILE", InstrumentFileName);
677     result.Add("INSTRUMENT_NR", InstrumentIndex);
678 senkov 376 result.Add("INSTRUMENT_NAME", InstrumentName);
679 capela 133 result.Add("INSTRUMENT_STATUS", InstrumentStatus);
680 schoenebeck 705 result.Add("MUTE", Mute == -1 ? "MUTED_BY_SOLO" : (Mute ? "true" : "false"));
681     result.Add("SOLO", Solo);
682 senkov 113 }
683     catch (LinuxSamplerException e) {
684 senkov 120 result.Error(e);
685 senkov 113 }
686 senkov 120 return result.Produce();
687 schoenebeck 35 }
688    
689     /**
690     * Will be called by the parser to get the amount of active voices on a
691     * particular sampler channel.
692     */
693 schoenebeck 53 String LSCPServer::GetVoiceCount(uint uiSamplerChannel) {
694     dmsg(2,("LSCPServer: GetVoiceCount(SamplerChannel=%d)\n", uiSamplerChannel));
695 senkov 120 LSCPResultSet result;
696 schoenebeck 53 try {
697     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
698 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
699 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
700     if (!pEngineChannel) throw LinuxSamplerException("No engine loaded on sampler channel");
701 schoenebeck 620 if (!pEngineChannel->GetEngine()) throw LinuxSamplerException("No audio output device connected to sampler channel");
702 schoenebeck 411 result.Add(pEngineChannel->GetEngine()->VoiceCount());
703 schoenebeck 53 }
704     catch (LinuxSamplerException e) {
705 senkov 120 result.Error(e);
706 schoenebeck 53 }
707 senkov 120 return result.Produce();
708 schoenebeck 35 }
709    
710     /**
711     * Will be called by the parser to get the amount of active disk streams on a
712     * particular sampler channel.
713     */
714 schoenebeck 53 String LSCPServer::GetStreamCount(uint uiSamplerChannel) {
715     dmsg(2,("LSCPServer: GetStreamCount(SamplerChannel=%d)\n", uiSamplerChannel));
716 senkov 120 LSCPResultSet result;
717 schoenebeck 53 try {
718     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
719 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
720 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
721     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
722 schoenebeck 620 if (!pEngineChannel->GetEngine()) throw LinuxSamplerException("No audio output device connected to sampler channel");
723 schoenebeck 411 result.Add(pEngineChannel->GetEngine()->DiskStreamCount());
724 schoenebeck 53 }
725     catch (LinuxSamplerException e) {
726 senkov 120 result.Error(e);
727 schoenebeck 53 }
728 senkov 120 return result.Produce();
729 schoenebeck 35 }
730    
731     /**
732     * Will be called by the parser to get the buffer fill states of all disk
733     * streams on a particular sampler channel.
734     */
735 schoenebeck 53 String LSCPServer::GetBufferFill(fill_response_t ResponseType, uint uiSamplerChannel) {
736     dmsg(2,("LSCPServer: GetBufferFill(ResponseType=%d, SamplerChannel=%d)\n", ResponseType, uiSamplerChannel));
737 senkov 120 LSCPResultSet result;
738 schoenebeck 53 try {
739     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
740 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
741 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
742     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
743 schoenebeck 620 if (!pEngineChannel->GetEngine()) throw LinuxSamplerException("No audio output device connected to sampler channel");
744 schoenebeck 411 if (!pEngineChannel->GetEngine()->DiskStreamSupported()) result.Add("NA");
745 senkov 129 else {
746     switch (ResponseType) {
747     case fill_response_bytes:
748 schoenebeck 411 result.Add(pEngineChannel->GetEngine()->DiskStreamBufferFillBytes());
749     break;
750 senkov 129 case fill_response_percentage:
751 schoenebeck 411 result.Add(pEngineChannel->GetEngine()->DiskStreamBufferFillPercentage());
752     break;
753 senkov 129 default:
754     throw LinuxSamplerException("Unknown fill response type");
755     }
756     }
757 schoenebeck 53 }
758     catch (LinuxSamplerException e) {
759 senkov 120 result.Error(e);
760 schoenebeck 53 }
761 senkov 120 return result.Produce();
762 schoenebeck 35 }
763    
764 schoenebeck 123 String LSCPServer::GetAvailableAudioOutputDrivers() {
765     dmsg(2,("LSCPServer: GetAvailableAudioOutputDrivers()\n"));
766 senkov 120 LSCPResultSet result;
767 schoenebeck 53 try {
768 capela 527 int n = AudioOutputDeviceFactory::AvailableDrivers().size();
769     result.Add(n);
770     }
771     catch (LinuxSamplerException e) {
772     result.Error(e);
773     }
774     return result.Produce();
775     }
776    
777     String LSCPServer::ListAvailableAudioOutputDrivers() {
778     dmsg(2,("LSCPServer: ListAvailableAudioOutputDrivers()\n"));
779     LSCPResultSet result;
780     try {
781 schoenebeck 123 String s = AudioOutputDeviceFactory::AvailableDriversAsString();
782     result.Add(s);
783 schoenebeck 53 }
784     catch (LinuxSamplerException e) {
785 schoenebeck 123 result.Error(e);
786 schoenebeck 53 }
787 senkov 120 return result.Produce();
788 schoenebeck 35 }
789    
790 senkov 155 String LSCPServer::GetAvailableMidiInputDrivers() {
791     dmsg(2,("LSCPServer: GetAvailableMidiInputDrivers()\n"));
792     LSCPResultSet result;
793     try {
794 capela 527 int n = MidiInputDeviceFactory::AvailableDrivers().size();
795     result.Add(n);
796     }
797     catch (LinuxSamplerException e) {
798     result.Error(e);
799     }
800     return result.Produce();
801     }
802    
803     String LSCPServer::ListAvailableMidiInputDrivers() {
804     dmsg(2,("LSCPServer: ListAvailableMidiInputDrivers()\n"));
805     LSCPResultSet result;
806     try {
807 senkov 155 String s = MidiInputDeviceFactory::AvailableDriversAsString();
808     result.Add(s);
809     }
810     catch (LinuxSamplerException e) {
811     result.Error(e);
812     }
813     return result.Produce();
814     }
815    
816     String LSCPServer::GetMidiInputDriverInfo(String Driver) {
817     dmsg(2,("LSCPServer: GetMidiInputDriverInfo(Driver=%s)\n",Driver.c_str()));
818     LSCPResultSet result;
819     try {
820     result.Add("DESCRIPTION", MidiInputDeviceFactory::GetDriverDescription(Driver));
821     result.Add("VERSION", MidiInputDeviceFactory::GetDriverVersion(Driver));
822    
823     std::map<String,DeviceCreationParameter*> parameters = MidiInputDeviceFactory::GetAvailableDriverParameters(Driver);
824     if (parameters.size()) { // if there are parameters defined for this driver
825     String s;
826     std::map<String,DeviceCreationParameter*>::iterator iter = parameters.begin();
827     for (;iter != parameters.end(); iter++) {
828     if (s != "") s += ",";
829     s += iter->first;
830     }
831     result.Add("PARAMETERS", s);
832     }
833     }
834     catch (LinuxSamplerException e) {
835     result.Error(e);
836     }
837     return result.Produce();
838     }
839    
840 schoenebeck 123 String LSCPServer::GetAudioOutputDriverInfo(String Driver) {
841     dmsg(2,("LSCPServer: GetAudioOutputDriverInfo(Driver=%s)\n",Driver.c_str()));
842     LSCPResultSet result;
843     try {
844     result.Add("DESCRIPTION", AudioOutputDeviceFactory::GetDriverDescription(Driver));
845     result.Add("VERSION", AudioOutputDeviceFactory::GetDriverVersion(Driver));
846    
847     std::map<String,DeviceCreationParameter*> parameters = AudioOutputDeviceFactory::GetAvailableDriverParameters(Driver);
848     if (parameters.size()) { // if there are parameters defined for this driver
849     String s;
850     std::map<String,DeviceCreationParameter*>::iterator iter = parameters.begin();
851     for (;iter != parameters.end(); iter++) {
852     if (s != "") s += ",";
853     s += iter->first;
854     }
855     result.Add("PARAMETERS", s);
856     }
857     }
858     catch (LinuxSamplerException e) {
859     result.Error(e);
860     }
861     return result.Produce();
862     }
863    
864 senkov 155 String LSCPServer::GetMidiInputDriverParameterInfo(String Driver, String Parameter, std::map<String,String> DependencyList) {
865 schoenebeck 226 dmsg(2,("LSCPServer: GetMidiInputDriverParameterInfo(Driver=%s,Parameter=%s,DependencyListSize=%d)\n",Driver.c_str(),Parameter.c_str(),DependencyList.size()));
866 senkov 155 LSCPResultSet result;
867     try {
868     DeviceCreationParameter* pParameter = MidiInputDeviceFactory::GetDriverParameter(Driver, Parameter);
869     result.Add("TYPE", pParameter->Type());
870     result.Add("DESCRIPTION", pParameter->Description());
871 schoenebeck 223 result.Add("MANDATORY", pParameter->Mandatory());
872     result.Add("FIX", pParameter->Fix());
873     result.Add("MULTIPLICITY", pParameter->Multiplicity());
874 schoenebeck 226 optional<String> oDepends = pParameter->Depends();
875     optional<String> oDefault = pParameter->Default(DependencyList);
876     optional<String> oRangeMin = pParameter->RangeMin(DependencyList);
877     optional<String> oRangeMax = pParameter->RangeMax(DependencyList);
878     optional<String> oPossibilities = pParameter->Possibilities(DependencyList);
879     if (oDepends) result.Add("DEPENDS", *oDepends);
880     if (oDefault) result.Add("DEFAULT", *oDefault);
881     if (oRangeMin) result.Add("RANGE_MIN", *oRangeMin);
882     if (oRangeMax) result.Add("RANGE_MAX", *oRangeMax);
883     if (oPossibilities) result.Add("POSSIBILITIES", *oPossibilities);
884 senkov 155 }
885     catch (LinuxSamplerException e) {
886     result.Error(e);
887     }
888     return result.Produce();
889     }
890    
891 schoenebeck 123 String LSCPServer::GetAudioOutputDriverParameterInfo(String Driver, String Parameter, std::map<String,String> DependencyList) {
892 schoenebeck 226 dmsg(2,("LSCPServer: GetAudioOutputDriverParameterInfo(Driver=%s,Parameter=%s,DependencyListSize=%d)\n",Driver.c_str(),Parameter.c_str(),DependencyList.size()));
893 schoenebeck 123 LSCPResultSet result;
894     try {
895     DeviceCreationParameter* pParameter = AudioOutputDeviceFactory::GetDriverParameter(Driver, Parameter);
896     result.Add("TYPE", pParameter->Type());
897     result.Add("DESCRIPTION", pParameter->Description());
898 schoenebeck 223 result.Add("MANDATORY", pParameter->Mandatory());
899     result.Add("FIX", pParameter->Fix());
900     result.Add("MULTIPLICITY", pParameter->Multiplicity());
901 schoenebeck 226 optional<String> oDepends = pParameter->Depends();
902     optional<String> oDefault = pParameter->Default(DependencyList);
903     optional<String> oRangeMin = pParameter->RangeMin(DependencyList);
904     optional<String> oRangeMax = pParameter->RangeMax(DependencyList);
905     optional<String> oPossibilities = pParameter->Possibilities(DependencyList);
906     if (oDepends) result.Add("DEPENDS", *oDepends);
907     if (oDefault) result.Add("DEFAULT", *oDefault);
908     if (oRangeMin) result.Add("RANGE_MIN", *oRangeMin);
909     if (oRangeMax) result.Add("RANGE_MAX", *oRangeMax);
910     if (oPossibilities) result.Add("POSSIBILITIES", *oPossibilities);
911 schoenebeck 123 }
912     catch (LinuxSamplerException e) {
913     result.Error(e);
914     }
915     return result.Produce();
916     }
917    
918     String LSCPServer::GetAudioOutputDeviceCount() {
919     dmsg(2,("LSCPServer: GetAudioOutputDeviceCount()\n"));
920     LSCPResultSet result;
921     try {
922     uint count = pSampler->AudioOutputDevices();
923 senkov 138 result.Add(count); // success
924 schoenebeck 123 }
925     catch (LinuxSamplerException e) {
926     result.Error(e);
927     }
928     return result.Produce();
929     }
930    
931 senkov 155 String LSCPServer::GetMidiInputDeviceCount() {
932     dmsg(2,("LSCPServer: GetMidiInputDeviceCount()\n"));
933     LSCPResultSet result;
934     try {
935     uint count = pSampler->MidiInputDevices();
936     result.Add(count); // success
937     }
938     catch (LinuxSamplerException e) {
939     result.Error(e);
940     }
941     return result.Produce();
942     }
943    
944 schoenebeck 123 String LSCPServer::GetAudioOutputDevices() {
945     dmsg(2,("LSCPServer: GetAudioOutputDevices()\n"));
946     LSCPResultSet result;
947     try {
948     String s;
949     std::map<uint, AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
950     std::map<uint, AudioOutputDevice*>::iterator iter = devices.begin();
951     for (; iter != devices.end(); iter++) {
952     if (s != "") s += ",";
953     s += ToString(iter->first);
954     }
955     result.Add(s);
956     }
957     catch (LinuxSamplerException e) {
958     result.Error(e);
959     }
960     return result.Produce();
961     }
962    
963 senkov 155 String LSCPServer::GetMidiInputDevices() {
964     dmsg(2,("LSCPServer: GetMidiInputDevices()\n"));
965     LSCPResultSet result;
966     try {
967     String s;
968     std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
969     std::map<uint, MidiInputDevice*>::iterator iter = devices.begin();
970     for (; iter != devices.end(); iter++) {
971     if (s != "") s += ",";
972     s += ToString(iter->first);
973     }
974     result.Add(s);
975     }
976     catch (LinuxSamplerException e) {
977     result.Error(e);
978     }
979     return result.Produce();
980     }
981    
982 schoenebeck 123 String LSCPServer::GetAudioOutputDeviceInfo(uint DeviceIndex) {
983     dmsg(2,("LSCPServer: GetAudioOutputDeviceInfo(DeviceIndex=%d)\n",DeviceIndex));
984     LSCPResultSet result;
985     try {
986     std::map<uint,AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
987 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceIndex) + ".");
988 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceIndex];
989 schoenebeck 221 result.Add("DRIVER", pDevice->Driver());
990 schoenebeck 123 std::map<String,DeviceCreationParameter*> parameters = pDevice->DeviceParameters();
991     std::map<String,DeviceCreationParameter*>::iterator iter = parameters.begin();
992     for (; iter != parameters.end(); iter++) {
993     result.Add(iter->first, iter->second->Value());
994     }
995     }
996     catch (LinuxSamplerException e) {
997     result.Error(e);
998     }
999     return result.Produce();
1000     }
1001    
1002 senkov 155 String LSCPServer::GetMidiInputDeviceInfo(uint DeviceIndex) {
1003     dmsg(2,("LSCPServer: GetMidiInputDeviceInfo(DeviceIndex=%d)\n",DeviceIndex));
1004     LSCPResultSet result;
1005     try {
1006     std::map<uint,MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1007 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(DeviceIndex) + ".");
1008 senkov 155 MidiInputDevice* pDevice = devices[DeviceIndex];
1009 schoenebeck 221 result.Add("DRIVER", pDevice->Driver());
1010 senkov 155 std::map<String,DeviceCreationParameter*> parameters = pDevice->DeviceParameters();
1011     std::map<String,DeviceCreationParameter*>::iterator iter = parameters.begin();
1012     for (; iter != parameters.end(); iter++) {
1013     result.Add(iter->first, iter->second->Value());
1014     }
1015     }
1016     catch (LinuxSamplerException e) {
1017     result.Error(e);
1018     }
1019     return result.Produce();
1020     }
1021     String LSCPServer::GetMidiInputPortInfo(uint DeviceIndex, uint PortIndex) {
1022     dmsg(2,("LSCPServer: GetMidiInputPortInfo(DeviceIndex=%d, PortIndex=%d)\n",DeviceIndex, PortIndex));
1023     LSCPResultSet result;
1024     try {
1025 schoenebeck 223 // get MIDI input device
1026 senkov 155 std::map<uint,MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1027 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(DeviceIndex) + ".");
1028 senkov 155 MidiInputDevice* pDevice = devices[DeviceIndex];
1029 schoenebeck 223
1030     // get MIDI port
1031 schoenebeck 221 MidiInputPort* pMidiInputPort = pDevice->GetPort(PortIndex);
1032     if (!pMidiInputPort) throw LinuxSamplerException("There is no MIDI input port with index " + ToString(PortIndex) + ".");
1033 schoenebeck 223
1034     // return the values of all MIDI port parameters
1035 schoenebeck 221 std::map<String,DeviceRuntimeParameter*> parameters = pMidiInputPort->PortParameters();
1036     std::map<String,DeviceRuntimeParameter*>::iterator iter = parameters.begin();
1037 senkov 155 for (; iter != parameters.end(); iter++) {
1038     result.Add(iter->first, iter->second->Value());
1039     }
1040     }
1041     catch (LinuxSamplerException e) {
1042     result.Error(e);
1043     }
1044     return result.Produce();
1045     }
1046    
1047 schoenebeck 123 String LSCPServer::GetAudioOutputChannelInfo(uint DeviceId, uint ChannelId) {
1048     dmsg(2,("LSCPServer: GetAudioOutputChannelInfo(DeviceId=%d,ChannelId)\n",DeviceId,ChannelId));
1049     LSCPResultSet result;
1050     try {
1051     // get audio output device
1052     std::map<uint,AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1053 schoenebeck 223 if (!devices.count(DeviceId)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceId) + ".");
1054 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceId];
1055    
1056     // get audio channel
1057     AudioChannel* pChannel = pDevice->Channel(ChannelId);
1058 schoenebeck 374 if (!pChannel) throw LinuxSamplerException("Audio output device does not have audio channel " + ToString(ChannelId) + ".");
1059 schoenebeck 123
1060     // return the values of all audio channel parameters
1061     std::map<String,DeviceRuntimeParameter*> parameters = pChannel->ChannelParameters();
1062     std::map<String,DeviceRuntimeParameter*>::iterator iter = parameters.begin();
1063     for (; iter != parameters.end(); iter++) {
1064     result.Add(iter->first, iter->second->Value());
1065     }
1066     }
1067     catch (LinuxSamplerException e) {
1068     result.Error(e);
1069     }
1070     return result.Produce();
1071     }
1072    
1073 senkov 185 String LSCPServer::GetMidiInputPortParameterInfo(uint DeviceId, uint PortId, String ParameterName) {
1074     dmsg(2,("LSCPServer: GetMidiInputPortParameterInfo(DeviceId=%d,PortId=%d,ParameterName=%s)\n",DeviceId,PortId,ParameterName.c_str()));
1075     LSCPResultSet result;
1076     try {
1077 schoenebeck 223 // get MIDI input device
1078     std::map<uint,MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1079     if (!devices.count(DeviceId)) throw LinuxSamplerException("There is no midi input device with index " + ToString(DeviceId) + ".");
1080     MidiInputDevice* pDevice = devices[DeviceId];
1081 senkov 185
1082 schoenebeck 221 // get midi port
1083     MidiInputPort* pPort = pDevice->GetPort(PortId);
1084     if (!pPort) throw LinuxSamplerException("Midi input device does not have port " + ToString(PortId) + ".");
1085 senkov 185
1086 schoenebeck 223 // get desired port parameter
1087     std::map<String,DeviceRuntimeParameter*> parameters = pPort->PortParameters();
1088     if (!parameters.count(ParameterName)) throw LinuxSamplerException("Midi port does not provide a parameter '" + ParameterName + "'.");
1089     DeviceRuntimeParameter* pParameter = parameters[ParameterName];
1090 schoenebeck 203
1091 senkov 185 // return all fields of this audio channel parameter
1092     result.Add("TYPE", pParameter->Type());
1093     result.Add("DESCRIPTION", pParameter->Description());
1094     result.Add("FIX", pParameter->Fix());
1095     result.Add("MULTIPLICITY", pParameter->Multiplicity());
1096 schoenebeck 223 if (pParameter->RangeMin()) result.Add("RANGE_MIN", *pParameter->RangeMin());
1097     if (pParameter->RangeMax()) result.Add("RANGE_MAX", *pParameter->RangeMax());
1098     if (pParameter->Possibilities()) result.Add("POSSIBILITIES", *pParameter->Possibilities());
1099 senkov 185 }
1100     catch (LinuxSamplerException e) {
1101     result.Error(e);
1102     }
1103     return result.Produce();
1104     }
1105    
1106 schoenebeck 123 String LSCPServer::GetAudioOutputChannelParameterInfo(uint DeviceId, uint ChannelId, String ParameterName) {
1107     dmsg(2,("LSCPServer: GetAudioOutputChannelParameterInfo(DeviceId=%d,ChannelId=%d,ParameterName=%s)\n",DeviceId,ChannelId,ParameterName.c_str()));
1108     LSCPResultSet result;
1109     try {
1110     // get audio output device
1111     std::map<uint,AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1112 schoenebeck 223 if (!devices.count(DeviceId)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceId) + ".");
1113 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceId];
1114    
1115     // get audio channel
1116     AudioChannel* pChannel = pDevice->Channel(ChannelId);
1117 schoenebeck 374 if (!pChannel) throw LinuxSamplerException("Audio output device does not have audio channel " + ToString(ChannelId) + ".");
1118 schoenebeck 123
1119     // get desired audio channel parameter
1120     std::map<String,DeviceRuntimeParameter*> parameters = pChannel->ChannelParameters();
1121 schoenebeck 223 if (!parameters.count(ParameterName)) throw LinuxSamplerException("Audio channel does not provide a parameter '" + ParameterName + "'.");
1122 schoenebeck 123 DeviceRuntimeParameter* pParameter = parameters[ParameterName];
1123    
1124     // return all fields of this audio channel parameter
1125     result.Add("TYPE", pParameter->Type());
1126     result.Add("DESCRIPTION", pParameter->Description());
1127     result.Add("FIX", pParameter->Fix());
1128     result.Add("MULTIPLICITY", pParameter->Multiplicity());
1129 schoenebeck 223 if (pParameter->RangeMin()) result.Add("RANGE_MIN", *pParameter->RangeMin());
1130     if (pParameter->RangeMax()) result.Add("RANGE_MAX", *pParameter->RangeMax());
1131     if (pParameter->Possibilities()) result.Add("POSSIBILITIES", *pParameter->Possibilities());
1132 schoenebeck 123 }
1133     catch (LinuxSamplerException e) {
1134     result.Error(e);
1135     }
1136     return result.Produce();
1137     }
1138    
1139     String LSCPServer::SetAudioOutputChannelParameter(uint DeviceId, uint ChannelId, String ParamKey, String ParamVal) {
1140     dmsg(2,("LSCPServer: SetAudioOutputChannelParameter(DeviceId=%d,ChannelId=%d,ParamKey=%s,ParamVal=%s)\n",DeviceId,ChannelId,ParamKey.c_str(),ParamVal.c_str()));
1141     LSCPResultSet result;
1142     try {
1143     // get audio output device
1144     std::map<uint,AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1145 schoenebeck 223 if (!devices.count(DeviceId)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceId) + ".");
1146 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceId];
1147    
1148     // get audio channel
1149     AudioChannel* pChannel = pDevice->Channel(ChannelId);
1150 schoenebeck 374 if (!pChannel) throw LinuxSamplerException("Audio output device does not have audio channel " + ToString(ChannelId) + ".");
1151 schoenebeck 123
1152     // get desired audio channel parameter
1153     std::map<String,DeviceRuntimeParameter*> parameters = pChannel->ChannelParameters();
1154 schoenebeck 223 if (!parameters.count(ParamKey)) throw LinuxSamplerException("Audio channel does not provide a parameter '" + ParamKey + "'.");
1155 schoenebeck 123 DeviceRuntimeParameter* pParameter = parameters[ParamKey];
1156    
1157     // set new channel parameter value
1158     pParameter->SetValue(ParamVal);
1159     }
1160     catch (LinuxSamplerException e) {
1161     result.Error(e);
1162     }
1163     return result.Produce();
1164     }
1165    
1166     String LSCPServer::SetAudioOutputDeviceParameter(uint DeviceIndex, String ParamKey, String ParamVal) {
1167     dmsg(2,("LSCPServer: SetAudioOutputDeviceParameter(DeviceIndex=%d,ParamKey=%s,ParamVal=%s)\n",DeviceIndex,ParamKey.c_str(),ParamVal.c_str()));
1168     LSCPResultSet result;
1169     try {
1170     std::map<uint,AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1171 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no audio output device with index " + ToString(DeviceIndex) + ".");
1172 schoenebeck 123 AudioOutputDevice* pDevice = devices[DeviceIndex];
1173     std::map<String,DeviceCreationParameter*> parameters = pDevice->DeviceParameters();
1174 schoenebeck 223 if (!parameters.count(ParamKey)) throw LinuxSamplerException("Audio output device " + ToString(DeviceIndex) + " does not have a device parameter '" + ParamKey + "'");
1175 schoenebeck 123 parameters[ParamKey]->SetValue(ParamVal);
1176     }
1177     catch (LinuxSamplerException e) {
1178     result.Error(e);
1179     }
1180     return result.Produce();
1181     }
1182    
1183 senkov 155 String LSCPServer::SetMidiInputDeviceParameter(uint DeviceIndex, String ParamKey, String ParamVal) {
1184     dmsg(2,("LSCPServer: SetMidiOutputDeviceParameter(DeviceIndex=%d,ParamKey=%s,ParamVal=%s)\n",DeviceIndex,ParamKey.c_str(),ParamVal.c_str()));
1185     LSCPResultSet result;
1186     try {
1187     std::map<uint,MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1188 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(DeviceIndex) + ".");
1189 senkov 155 MidiInputDevice* pDevice = devices[DeviceIndex];
1190     std::map<String,DeviceCreationParameter*> parameters = pDevice->DeviceParameters();
1191 schoenebeck 223 if (!parameters.count(ParamKey)) throw LinuxSamplerException("MIDI input device " + ToString(DeviceIndex) + " does not have a device parameter '" + ParamKey + "'");
1192 senkov 155 parameters[ParamKey]->SetValue(ParamVal);
1193     }
1194     catch (LinuxSamplerException e) {
1195     result.Error(e);
1196     }
1197     return result.Produce();
1198     }
1199    
1200     String LSCPServer::SetMidiInputPortParameter(uint DeviceIndex, uint PortIndex, String ParamKey, String ParamVal) {
1201     dmsg(2,("LSCPServer: SetMidiOutputDeviceParameter(DeviceIndex=%d,ParamKey=%s,ParamVal=%s)\n",DeviceIndex,ParamKey.c_str(),ParamVal.c_str()));
1202     LSCPResultSet result;
1203     try {
1204 schoenebeck 223 // get MIDI input device
1205 senkov 155 std::map<uint,MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1206 schoenebeck 223 if (!devices.count(DeviceIndex)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(DeviceIndex) + ".");
1207 senkov 155 MidiInputDevice* pDevice = devices[DeviceIndex];
1208 schoenebeck 223
1209     // get MIDI port
1210 schoenebeck 221 MidiInputPort* pMidiInputPort = pDevice->GetPort(PortIndex);
1211     if (!pMidiInputPort) throw LinuxSamplerException("There is no MIDI input port with index " + ToString(PortIndex) + ".");
1212 schoenebeck 223
1213     // set port parameter value
1214 schoenebeck 221 std::map<String,DeviceRuntimeParameter*> parameters = pMidiInputPort->PortParameters();
1215 schoenebeck 223 if (!parameters.count(ParamKey)) throw LinuxSamplerException("MIDI input device " + ToString(PortIndex) + " does not have a parameter '" + ParamKey + "'");
1216 senkov 155 parameters[ParamKey]->SetValue(ParamVal);
1217     }
1218     catch (LinuxSamplerException e) {
1219     result.Error(e);
1220     }
1221     return result.Produce();
1222     }
1223    
1224 schoenebeck 35 /**
1225     * Will be called by the parser to change the audio output channel for
1226     * playback on a particular sampler channel.
1227     */
1228 schoenebeck 123 String LSCPServer::SetAudioOutputChannel(uint ChannelAudioOutputChannel, uint AudioOutputDeviceInputChannel, uint uiSamplerChannel) {
1229     dmsg(2,("LSCPServer: SetAudioOutputChannel(ChannelAudioOutputChannel=%d, AudioOutputDeviceInputChannel=%d, SamplerChannel=%d)\n",ChannelAudioOutputChannel,AudioOutputDeviceInputChannel,uiSamplerChannel));
1230 schoenebeck 225 LSCPResultSet result;
1231     try {
1232     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1233 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1234 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
1235     if (!pEngineChannel) throw LinuxSamplerException("No engine type yet assigned to sampler channel " + ToString(uiSamplerChannel));
1236 schoenebeck 374 if (!pSamplerChannel->GetAudioOutputDevice()) throw LinuxSamplerException("No audio output device connected to sampler channel " + ToString(uiSamplerChannel));
1237 schoenebeck 411 pEngineChannel->SetOutputChannel(ChannelAudioOutputChannel, AudioOutputDeviceInputChannel);
1238 schoenebeck 225 }
1239     catch (LinuxSamplerException e) {
1240     result.Error(e);
1241     }
1242     return result.Produce();
1243 schoenebeck 35 }
1244    
1245 capela 159 String LSCPServer::SetAudioOutputDevice(uint AudioDeviceId, uint uiSamplerChannel) {
1246     dmsg(2,("LSCPServer: SetAudiotOutputDevice(AudioDeviceId=%d, SamplerChannel=%d)\n",AudioDeviceId,uiSamplerChannel));
1247     LSCPResultSet result;
1248     try {
1249     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1250 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1251 capela 159 std::map<uint, AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1252 schoenebeck 223 if (!devices.count(AudioDeviceId)) throw LinuxSamplerException("There is no audio output device with index " + ToString(AudioDeviceId));
1253 capela 159 AudioOutputDevice* pDevice = devices[AudioDeviceId];
1254     pSamplerChannel->SetAudioOutputDevice(pDevice);
1255     }
1256     catch (LinuxSamplerException e) {
1257     result.Error(e);
1258     }
1259     return result.Produce();
1260     }
1261    
1262 capela 143 String LSCPServer::SetAudioOutputType(String AudioOutputDriver, uint uiSamplerChannel) {
1263     dmsg(2,("LSCPServer: SetAudioOutputType(String AudioOutputDriver=%s, SamplerChannel=%d)\n",AudioOutputDriver.c_str(),uiSamplerChannel));
1264     LSCPResultSet result;
1265     try {
1266     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1267 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1268 capela 143 // Driver type name aliasing...
1269 schoenebeck 226 if (AudioOutputDriver == "Alsa") AudioOutputDriver = "ALSA";
1270     if (AudioOutputDriver == "Jack") AudioOutputDriver = "JACK";
1271 capela 143 // Check if there's one audio output device already created
1272     // for the intended audio driver type (AudioOutputDriver)...
1273     AudioOutputDevice *pDevice = NULL;
1274     std::map<uint, AudioOutputDevice*> devices = pSampler->GetAudioOutputDevices();
1275     std::map<uint, AudioOutputDevice*>::iterator iter = devices.begin();
1276     for (; iter != devices.end(); iter++) {
1277     if ((iter->second)->Driver() == AudioOutputDriver) {
1278     pDevice = iter->second;
1279     break;
1280     }
1281     }
1282     // If it doesn't exist, create a new one with default parameters...
1283     if (pDevice == NULL) {
1284     std::map<String,String> params;
1285     pDevice = pSampler->CreateAudioOutputDevice(AudioOutputDriver, params);
1286     }
1287     // Must have a device...
1288     if (pDevice == NULL)
1289     throw LinuxSamplerException("Internal error: could not create audio output device.");
1290     // Set it as the current channel device...
1291     pSamplerChannel->SetAudioOutputDevice(pDevice);
1292     }
1293     catch (LinuxSamplerException e) {
1294     result.Error(e);
1295     }
1296     return result.Produce();
1297     }
1298    
1299 capela 159 String LSCPServer::SetMIDIInputPort(uint MIDIPort, uint uiSamplerChannel) {
1300     dmsg(2,("LSCPServer: SetMIDIInputPort(MIDIPort=%d, SamplerChannel=%d)\n",MIDIPort,uiSamplerChannel));
1301 senkov 120 LSCPResultSet result;
1302 schoenebeck 53 try {
1303     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1304 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1305 capela 159 pSamplerChannel->SetMidiInputPort(MIDIPort);
1306 schoenebeck 53 }
1307     catch (LinuxSamplerException e) {
1308 senkov 120 result.Error(e);
1309 schoenebeck 53 }
1310 senkov 120 return result.Produce();
1311 schoenebeck 53 }
1312    
1313 capela 159 String LSCPServer::SetMIDIInputChannel(uint MIDIChannel, uint uiSamplerChannel) {
1314     dmsg(2,("LSCPServer: SetMIDIInputChannel(MIDIChannel=%d, SamplerChannel=%d)\n",MIDIChannel,uiSamplerChannel));
1315 senkov 120 LSCPResultSet result;
1316 senkov 68 try {
1317     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1318 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1319 schoenebeck 675 pSamplerChannel->SetMidiInputChannel((midi_chan_t) MIDIChannel);
1320 senkov 68 }
1321     catch (LinuxSamplerException e) {
1322 senkov 120 result.Error(e);
1323 senkov 68 }
1324 senkov 120 return result.Produce();
1325 schoenebeck 35 }
1326    
1327 capela 159 String LSCPServer::SetMIDIInputDevice(uint MIDIDeviceId, uint uiSamplerChannel) {
1328     dmsg(2,("LSCPServer: SetMIDIInputDevice(MIDIDeviceId=%d, SamplerChannel=%d)\n",MIDIDeviceId,uiSamplerChannel));
1329 schoenebeck 123 LSCPResultSet result;
1330     try {
1331 capela 159 SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1332 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1333 capela 159 std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1334 schoenebeck 223 if (!devices.count(MIDIDeviceId)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(MIDIDeviceId));
1335 capela 159 MidiInputDevice* pDevice = devices[MIDIDeviceId];
1336     pSamplerChannel->SetMidiInputDevice(pDevice);
1337 schoenebeck 123 }
1338     catch (LinuxSamplerException e) {
1339     result.Error(e);
1340     }
1341     return result.Produce();
1342     }
1343    
1344 capela 159 String LSCPServer::SetMIDIInputType(String MidiInputDriver, uint uiSamplerChannel) {
1345     dmsg(2,("LSCPServer: SetMIDIInputType(String MidiInputDriver=%s, SamplerChannel=%d)\n",MidiInputDriver.c_str(),uiSamplerChannel));
1346     LSCPResultSet result;
1347     try {
1348     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1349 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1350 capela 159 // Driver type name aliasing...
1351 schoenebeck 226 if (MidiInputDriver == "Alsa") MidiInputDriver = "ALSA";
1352 capela 159 // Check if there's one MIDI input device already created
1353     // for the intended MIDI driver type (MidiInputDriver)...
1354     MidiInputDevice *pDevice = NULL;
1355     std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1356     std::map<uint, MidiInputDevice*>::iterator iter = devices.begin();
1357     for (; iter != devices.end(); iter++) {
1358     if ((iter->second)->Driver() == MidiInputDriver) {
1359     pDevice = iter->second;
1360     break;
1361     }
1362     }
1363     // If it doesn't exist, create a new one with default parameters...
1364     if (pDevice == NULL) {
1365     std::map<String,String> params;
1366     pDevice = pSampler->CreateMidiInputDevice(MidiInputDriver, params);
1367     // Make it with at least one initial port.
1368     std::map<String,DeviceCreationParameter*> parameters = pDevice->DeviceParameters();
1369 schoenebeck 221 parameters["PORTS"]->SetValue("1");
1370 capela 159 }
1371     // Must have a device...
1372     if (pDevice == NULL)
1373     throw LinuxSamplerException("Internal error: could not create MIDI input device.");
1374     // Set it as the current channel device...
1375     pSamplerChannel->SetMidiInputDevice(pDevice);
1376     }
1377     catch (LinuxSamplerException e) {
1378     result.Error(e);
1379     }
1380     return result.Produce();
1381     }
1382    
1383 schoenebeck 35 /**
1384 capela 159 * Will be called by the parser to change the MIDI input device, port and channel on which
1385     * engine of a particular sampler channel should listen to.
1386     */
1387     String LSCPServer::SetMIDIInput(uint MIDIDeviceId, uint MIDIPort, uint MIDIChannel, uint uiSamplerChannel) {
1388     dmsg(2,("LSCPServer: SetMIDIInput(MIDIDeviceId=%d, MIDIPort=%d, MIDIChannel=%d, SamplerChannel=%d)\n", MIDIDeviceId, MIDIPort, MIDIChannel, uiSamplerChannel));
1389     LSCPResultSet result;
1390     try {
1391     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1392 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1393 capela 159 std::map<uint, MidiInputDevice*> devices = pSampler->GetMidiInputDevices();
1394 schoenebeck 223 if (!devices.count(MIDIDeviceId)) throw LinuxSamplerException("There is no MIDI input device with index " + ToString(MIDIDeviceId));
1395 capela 159 MidiInputDevice* pDevice = devices[MIDIDeviceId];
1396 schoenebeck 675 pSamplerChannel->SetMidiInput(pDevice, MIDIPort, (midi_chan_t) MIDIChannel);
1397 capela 159 }
1398     catch (LinuxSamplerException e) {
1399     result.Error(e);
1400     }
1401     return result.Produce();
1402     }
1403    
1404     /**
1405 schoenebeck 35 * Will be called by the parser to change the global volume factor on a
1406     * particular sampler channel.
1407     */
1408 schoenebeck 225 String LSCPServer::SetVolume(double dVolume, uint uiSamplerChannel) {
1409     dmsg(2,("LSCPServer: SetVolume(Volume=%f, SamplerChannel=%d)\n", dVolume, uiSamplerChannel));
1410 senkov 120 LSCPResultSet result;
1411 schoenebeck 53 try {
1412     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1413 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1414 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
1415     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
1416     pEngineChannel->Volume(dVolume);
1417 schoenebeck 53 }
1418     catch (LinuxSamplerException e) {
1419 senkov 120 result.Error(e);
1420 schoenebeck 53 }
1421 senkov 120 return result.Produce();
1422 schoenebeck 35 }
1423    
1424     /**
1425 schoenebeck 705 * Will be called by the parser to mute/unmute particular sampler channel.
1426     */
1427     String LSCPServer::SetChannelMute(bool bMute, uint uiSamplerChannel) {
1428     dmsg(2,("LSCPServer: SetChannelMute(bMute=%d,uiSamplerChannel=%d)\n",bMute,uiSamplerChannel));
1429     LSCPResultSet result;
1430     try {
1431     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1432     if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1433    
1434     EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
1435     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
1436    
1437     if(!bMute) pEngineChannel->SetMute((HasSoloChannel() && !pEngineChannel->GetSolo()) ? -1 : 0);
1438     else pEngineChannel->SetMute(1);
1439     } catch (LinuxSamplerException e) {
1440     result.Error(e);
1441     }
1442     return result.Produce();
1443     }
1444    
1445     /**
1446     * Will be called by the parser to solo particular sampler channel.
1447     */
1448     String LSCPServer::SetChannelSolo(bool bSolo, uint uiSamplerChannel) {
1449     dmsg(2,("LSCPServer: SetChannelSolo(bSolo=%d,uiSamplerChannel=%d)\n",bSolo,uiSamplerChannel));
1450     LSCPResultSet result;
1451     try {
1452     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1453     if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1454    
1455     EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
1456     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
1457    
1458     bool oldSolo = pEngineChannel->GetSolo();
1459     bool hadSoloChannel = HasSoloChannel();
1460    
1461     pEngineChannel->SetSolo(bSolo);
1462    
1463     if(!oldSolo && bSolo) {
1464     if(pEngineChannel->GetMute() == -1) pEngineChannel->SetMute(0);
1465     if(!hadSoloChannel) MuteNonSoloChannels();
1466     }
1467    
1468     if(oldSolo && !bSolo) {
1469     if(!HasSoloChannel()) UnmuteChannels();
1470     else if(!pEngineChannel->GetMute()) pEngineChannel->SetMute(-1);
1471     }
1472     } catch (LinuxSamplerException e) {
1473     result.Error(e);
1474     }
1475     return result.Produce();
1476     }
1477    
1478     /**
1479     * Determines whether there is at least one solo channel in the channel list.
1480     *
1481     * @returns true if there is at least one solo channel in the channel list,
1482     * false otherwise.
1483     */
1484     bool LSCPServer::HasSoloChannel() {
1485     std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels();
1486     std::map<uint,SamplerChannel*>::iterator iter = channels.begin();
1487     for (; iter != channels.end(); iter++) {
1488     EngineChannel* c = iter->second->GetEngineChannel();
1489     if(c && c->GetSolo()) return true;
1490     }
1491    
1492     return false;
1493     }
1494    
1495     /**
1496     * Mutes all unmuted non-solo channels. Notice that the channels are muted
1497     * with -1 which indicates that they are muted because of the presence
1498     * of a solo channel(s). Channels muted with -1 will be automatically unmuted
1499     * when there are no solo channels left.
1500     */
1501     void LSCPServer::MuteNonSoloChannels() {
1502     dmsg(2,("LSCPServer: MuteNonSoloChannels()\n"));
1503     std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels();
1504     std::map<uint,SamplerChannel*>::iterator iter = channels.begin();
1505     for (; iter != channels.end(); iter++) {
1506     EngineChannel* c = iter->second->GetEngineChannel();
1507     if(c && !c->GetSolo() && !c->GetMute()) c->SetMute(-1);
1508     }
1509     }
1510    
1511     /**
1512     * Unmutes all channels that are muted because of the presence
1513     * of a solo channel(s).
1514     */
1515     void LSCPServer::UnmuteChannels() {
1516     dmsg(2,("LSCPServer: UnmuteChannels()\n"));
1517     std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels();
1518     std::map<uint,SamplerChannel*>::iterator iter = channels.begin();
1519     for (; iter != channels.end(); iter++) {
1520     EngineChannel* c = iter->second->GetEngineChannel();
1521     if(c && c->GetMute() == -1) c->SetMute(0);
1522     }
1523     }
1524    
1525     /**
1526 schoenebeck 35 * Will be called by the parser to reset a particular sampler channel.
1527     */
1528 schoenebeck 53 String LSCPServer::ResetChannel(uint uiSamplerChannel) {
1529     dmsg(2,("LSCPServer: ResetChannel(SamplerChannel=%d)\n", uiSamplerChannel));
1530 senkov 120 LSCPResultSet result;
1531 schoenebeck 53 try {
1532     SamplerChannel* pSamplerChannel = pSampler->GetSamplerChannel(uiSamplerChannel);
1533 schoenebeck 374 if (!pSamplerChannel) throw LinuxSamplerException("Invalid sampler channel number " + ToString(uiSamplerChannel));
1534 schoenebeck 411 EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel();
1535     if (!pEngineChannel) throw LinuxSamplerException("No engine type assigned to sampler channel");
1536 schoenebeck 670 pEngineChannel->Reset();
1537 schoenebeck 53 }
1538     catch (LinuxSamplerException e) {
1539 senkov 120 result.Error(e);
1540 schoenebeck 53 }
1541 senkov 120 return result.Produce();
1542 schoenebeck 35 }
1543    
1544     /**
1545 schoenebeck 212 * Will be called by the parser to reset the whole sampler.
1546     */
1547     String LSCPServer::ResetSampler() {
1548     dmsg(2,("LSCPServer: ResetSampler()\n"));
1549     pSampler->Reset();
1550     LSCPResultSet result;
1551     return result.Produce();
1552     }
1553    
1554     /**
1555 schoenebeck 563 * Will be called by the parser to return general informations about this
1556     * sampler.
1557     */
1558     String LSCPServer::GetServerInfo() {
1559     dmsg(2,("LSCPServer: GetServerInfo()\n"));
1560     LSCPResultSet result;
1561     result.Add("DESCRIPTION", "LinuxSampler - modular, streaming capable sampler");
1562 schoenebeck 570 result.Add("VERSION", VERSION);
1563     result.Add("PROTOCOL_VERSION", "1.0");
1564 schoenebeck 563 return result.Produce();
1565     }
1566    
1567     /**
1568 iliev 778 * Will be called by the parser to return the current number of all active voices.
1569     */
1570     String LSCPServer::GetTotalVoiceCount() {
1571     dmsg(2,("LSCPServer: GetTotalVoiceCount()\n"));
1572     LSCPResultSet result;
1573     result.Add(pSampler->GetVoiceCount());
1574     return result.Produce();
1575     }
1576    
1577     /**
1578     * Will be called by the parser to return the maximum number of voices.
1579     */
1580     String LSCPServer::GetTotalVoiceCountMax() {
1581     dmsg(2,("LSCPServer: GetTotalVoiceCountMax()\n"));
1582     LSCPResultSet result;
1583     result.Add(EngineFactory::EngineInstances().size() * CONFIG_MAX_VOICES);
1584     return result.Produce();
1585     }
1586    
1587     /**
1588 schoenebeck 35 * Will be called by the parser to subscribe a client (frontend) on the
1589     * server for receiving event messages.
1590     */
1591 senkov 170 String LSCPServer::SubscribeNotification(LSCPEvent::event_t type) {
1592     dmsg(2,("LSCPServer: SubscribeNotification(Event=%s)\n", LSCPEvent::Name(type).c_str()));
1593     LSCPResultSet result;
1594     SubscriptionMutex.Lock();
1595     eventSubscriptions[type].push_back(currentSocket);
1596     SubscriptionMutex.Unlock();
1597     return result.Produce();
1598 schoenebeck 35 }
1599    
1600     /**
1601     * Will be called by the parser to unsubscribe a client on the server
1602     * for not receiving further event messages.
1603     */
1604 senkov 170 String LSCPServer::UnsubscribeNotification(LSCPEvent::event_t type) {
1605     dmsg(2,("LSCPServer: UnsubscribeNotification(Event=%s)\n", LSCPEvent::Name(type).c_str()));
1606     LSCPResultSet result;
1607     SubscriptionMutex.Lock();
1608     eventSubscriptions[type].remove(currentSocket);
1609     SubscriptionMutex.Unlock();
1610     return result.Produce();
1611 schoenebeck 35 }
1612 capela 133
1613 senkov 397 static int select_callback(void * lscpResultSet, int argc,
1614     char **argv, char **azColName)
1615     {
1616     LSCPResultSet* resultSet = (LSCPResultSet*) lscpResultSet;
1617     resultSet->Add(argc, argv);
1618     return 0;
1619     }
1620    
1621     String LSCPServer::QueryDatabase(String query) {
1622     LSCPResultSet result;
1623 schoenebeck 401 #if HAVE_SQLITE3
1624 senkov 397 char* zErrMsg = NULL;
1625     sqlite3 *db;
1626     String selectStr = "SELECT " + query;
1627    
1628     int rc = sqlite3_open("linuxsampler.db", &db);
1629     if (rc == SQLITE_OK)
1630     {
1631     rc = sqlite3_exec(db, selectStr.c_str(), select_callback, &result, &zErrMsg);
1632     }
1633     if ( rc != SQLITE_OK )
1634     {
1635 senkov 398 result.Error(String(zErrMsg), rc);
1636 senkov 397 }
1637     sqlite3_close(db);
1638     #else
1639     result.Error(String("SQLITE3 was not installed when linuxsampler was built. SELECT statement is not available."), 0);
1640     #endif
1641     return result.Produce();
1642     }
1643    
1644 schoenebeck 210 /**
1645     * Will be called by the parser to enable or disable echo mode; if echo
1646     * mode is enabled, all commands from the client will (immediately) be
1647     * echoed back to the client.
1648     */
1649     String LSCPServer::SetEcho(yyparse_param_t* pSession, double boolean_value) {
1650     dmsg(2,("LSCPServer: SetEcho(val=%f)\n", boolean_value));
1651     LSCPResultSet result;
1652     try {
1653     if (boolean_value == 0) pSession->bVerbose = false;
1654     else if (boolean_value == 1) pSession->bVerbose = true;
1655     else throw LinuxSamplerException("Not a boolean value, must either be 0 or 1");
1656     }
1657     catch (LinuxSamplerException e) {
1658     result.Error(e);
1659     }
1660     return result.Produce();
1661     }

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