/[svn]/liblscp/trunk/src/client.c
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Annotation of /liblscp/trunk/src/client.c

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Revision 1697 - (hide annotations) (download)
Sat Feb 16 19:31:32 2008 UTC (16 years, 2 months ago) by schoenebeck
File MIME type: text/plain
File size: 82752 byte(s)
* added LSCP event "DEVICE_MIDI"

1 capela 107 // client.c
2     //
3     /****************************************************************************
4     liblscp - LinuxSampler Control Protocol API
5 schoenebeck 1665 Copyright (C) 2004-2008, rncbc aka Rui Nuno Capela. All rights reserved.
6 capela 107
7     This library is free software; you can redistribute it and/or
8     modify it under the terms of the GNU Lesser General Public
9     License as published by the Free Software Foundation; either
10     version 2.1 of the License, or (at your option) any later version.
11    
12     This library is distributed in the hope that it will be useful,
13     but WITHOUT ANY WARRANTY; without even the implied warranty of
14     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15     Lesser General Public License for more details.
16    
17 capela 921 You should have received a copy of the GNU General Public License along
18     with this program; if not, write to the Free Software Foundation, Inc.,
19     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
20 capela 107
21     *****************************************************************************/
22    
23     #include "common.h"
24    
25     // Default timeout value (in milliseconds).
26     #define LSCP_TIMEOUT_MSECS 500
27    
28    
29     // Local prototypes.
30    
31 capela 144 static void _lscp_client_evt_proc (void *pvClient);
32 capela 107
33 capela 144 static lscp_status_t _lscp_client_evt_connect (lscp_client_t *pClient);
34     static lscp_status_t _lscp_client_evt_request (lscp_client_t *pClient, int iSubscribe, lscp_event_t event);
35 capela 107
36 capela 144
37 capela 107 //-------------------------------------------------------------------------
38 capela 132 // Event service (datagram oriented).
39 capela 107
40 capela 132 static void _lscp_client_evt_proc ( void *pvClient )
41 capela 107 {
42 capela 952 lscp_client_t *pClient = (lscp_client_t *) pvClient;
43 capela 562
44 capela 952 fd_set fds; // File descriptor list for select().
45     int fd, fdmax; // Maximum file descriptor number.
46     struct timeval tv; // For specifying a timeout value.
47     int iSelect; // Holds select return status.
48     int iTimeout;
49 capela 562
50 capela 952 char achBuffer[LSCP_BUFSIZ];
51     int cchBuffer;
52     const char *pszSeps = ":\r\n";
53     char * pszToken;
54     char * pch;
55     int cchToken;
56     lscp_event_t event;
57 capela 107
58     #ifdef DEBUG
59 capela 952 fprintf(stderr, "_lscp_client_evt_proc: Client waiting for events.\n");
60 capela 107 #endif
61    
62 capela 952 while (pClient->evt.iState) {
63 capela 177
64 capela 952 // Prepare for waiting on select...
65     fd = (int) pClient->evt.sock;
66     FD_ZERO(&fds);
67     FD_SET((unsigned int) fd, &fds);
68     fdmax = fd;
69 capela 177
70 capela 952 // Use the timeout (x10) select feature ...
71     iTimeout = 10 * pClient->iTimeout;
72     if (iTimeout >= 1000) {
73     tv.tv_sec = iTimeout / 1000;
74     iTimeout -= tv.tv_sec * 1000;
75     }
76     else tv.tv_sec = 0;
77     tv.tv_usec = iTimeout * 1000;
78 capela 177
79 capela 952 // Wait for event...
80     iSelect = select(fdmax + 1, &fds, NULL, NULL, &tv);
81     if (iSelect > 0 && FD_ISSET(fd, &fds)) {
82     // May recv now...
83     cchBuffer = recv(pClient->evt.sock, achBuffer, sizeof(achBuffer), 0);
84     if (cchBuffer > 0) {
85     // Make sure received buffer it's null terminated.
86     achBuffer[cchBuffer] = (char) 0;
87 schoenebeck 1692 pch = achBuffer;
88     do {
89     // Parse for the notification event message...
90     pszToken = lscp_strtok(NULL, pszSeps, &(pch)); // Have "NOTIFY"
91     if (strcasecmp(pszToken, "NOTIFY") == 0) {
92     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
93     event = lscp_event_from_text(pszToken);
94     // And pick the rest of data...
95     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
96     cchToken = (pszToken == NULL ? 0 : strlen(pszToken));
97     // Double-check if we're really up to it...
98     if (pClient->events & event) {
99     // Invoke the client event callback...
100     if ((*pClient->pfnCallback)(
101     pClient,
102     event,
103     pszToken,
104     cchToken,
105     pClient->pvData) != LSCP_OK) {
106     pClient->evt.iState = 0;
107     }
108 capela 952 }
109     }
110 schoenebeck 1692 } while (*pch);
111 capela 952 } else {
112     lscp_socket_perror("_lscp_client_evt_proc: recv");
113     pClient->evt.iState = 0;
114     }
115     } // Check if select has in error.
116     else if (iSelect < 0) {
117     lscp_socket_perror("_lscp_client_evt_proc: select");
118     pClient->evt.iState = 0;
119     }
120 capela 562
121 capela 952 // Finally, always signal the event.
122     lscp_cond_signal(pClient->cond);
123     }
124 capela 107
125     #ifdef DEBUG
126 capela 952 fprintf(stderr, "_lscp_client_evt_proc: Client closing.\n");
127 capela 107 #endif
128     }
129    
130    
131     //-------------------------------------------------------------------------
132 capela 144 // Event subscription helpers.
133    
134     // Open the event service socket connection.
135     static lscp_status_t _lscp_client_evt_connect ( lscp_client_t *pClient )
136     {
137 capela 952 lscp_socket_t sock;
138     struct sockaddr_in addr;
139     int cAddr;
140 capela 144 #if defined(WIN32)
141 capela 952 int iSockOpt = (-1);
142 capela 144 #endif
143    
144 capela 952 // Prepare the event connection socket...
145     sock = socket(AF_INET, SOCK_STREAM, 0);
146     if (sock == INVALID_SOCKET) {
147     lscp_socket_perror("_lscp_client_evt_connect: socket");
148     return LSCP_FAILED;
149     }
150 capela 144
151     #if defined(WIN32)
152 capela 952 if (setsockopt(sock, SOL_SOCKET, SO_DONTLINGER, (char *) &iSockOpt, sizeof(int)) == SOCKET_ERROR)
153     lscp_socket_perror("lscp_client_evt_connect: setsockopt(SO_DONTLINGER)");
154 capela 144 #endif
155    
156     #ifdef DEBUG
157 capela 952 lscp_socket_getopts("_lscp_client_evt_connect:", sock);
158 capela 144 #endif
159    
160 capela 952 // Use same address of the command connection.
161     cAddr = sizeof(struct sockaddr_in);
162     memmove((char *) &addr, &(pClient->cmd.addr), cAddr);
163 capela 144
164 capela 952 // Start the connection...
165     if (connect(sock, (struct sockaddr *) &addr, cAddr) == SOCKET_ERROR) {
166     lscp_socket_perror("_lscp_client_evt_connect: connect");
167     closesocket(sock);
168     return LSCP_FAILED;
169     }
170 capela 562
171 capela 952 // Set our socket agent struct...
172     lscp_socket_agent_init(&(pClient->evt), sock, &addr, cAddr);
173 capela 562
174 capela 952 // And finally the service thread...
175     return lscp_socket_agent_start(&(pClient->evt), _lscp_client_evt_proc, pClient, 0);
176 capela 144 }
177    
178    
179     // Subscribe to a single event.
180     static lscp_status_t _lscp_client_evt_request ( lscp_client_t *pClient, int iSubscribe, lscp_event_t event )
181     {
182 capela 952 const char *pszEvent;
183     char szQuery[LSCP_BUFSIZ];
184     int cchQuery;
185 capela 144
186 capela 952 if (pClient == NULL)
187     return LSCP_FAILED;
188 capela 144
189 capela 952 // Which (single) event?
190     pszEvent = lscp_event_to_text(event);
191     if (pszEvent == NULL)
192     return LSCP_FAILED;
193 capela 146
194 capela 952 // Build the query string...
195     cchQuery = sprintf(szQuery, "%sSUBSCRIBE %s\n\n", (iSubscribe == 0 ? "UN" : ""), pszEvent);
196     // Just send data, forget result...
197     if (send(pClient->evt.sock, szQuery, cchQuery, 0) < cchQuery) {
198     lscp_socket_perror("_lscp_client_evt_request: send");
199     return LSCP_FAILED;
200     }
201 capela 144
202 capela 952 // Wait on response.
203     lscp_cond_wait(pClient->cond, pClient->mutex);
204 capela 562
205 capela 952 // Update as naively as we can...
206     if (iSubscribe)
207     pClient->events |= event;
208     else
209     pClient->events &= ~event;
210 capela 144
211 capela 952 return LSCP_OK;
212 capela 144 }
213    
214    
215     //-------------------------------------------------------------------------
216 capela 107 // Client versioning teller fuunction.
217    
218    
219     /** Retrieve the current client library version string. */
220     const char* lscp_client_package (void) { return LSCP_PACKAGE; }
221    
222     /** Retrieve the current client library version string. */
223     const char* lscp_client_version (void) { return LSCP_VERSION; }
224    
225     /** Retrieve the current client library build timestamp string. */
226     const char* lscp_client_build (void) { return __DATE__ " " __TIME__; }
227    
228    
229     //-------------------------------------------------------------------------
230     // Client socket functions.
231    
232     /**
233     * Create a client instance, estabilishing a connection to a server hostname,
234     * which must be listening on the given port. A client callback function is
235     * also supplied for server notification event handling.
236     *
237     * @param pszHost Hostname of the linuxsampler listening server.
238     * @param iPort Port number of the linuxsampler listening server.
239     * @param pfnCallback Callback function to receive event notifications.
240     * @param pvData User context opaque data, that will be passed
241     * to the callback function.
242     *
243     * @returns The new client instance pointer if successfull, which shall be
244     * used on all subsequent client calls, NULL otherwise.
245     */
246     lscp_client_t* lscp_client_create ( const char *pszHost, int iPort, lscp_client_proc_t pfnCallback, void *pvData )
247     {
248 capela 952 lscp_client_t *pClient;
249     struct hostent *pHost;
250     lscp_socket_t sock;
251     struct sockaddr_in addr;
252     int cAddr;
253 capela 144 #if defined(WIN32)
254 capela 952 int iSockOpt = (-1);
255 capela 144 #endif
256 capela 107
257 capela 952 if (pfnCallback == NULL) {
258     fprintf(stderr, "lscp_client_create: Invalid client callback function.\n");
259     return NULL;
260     }
261 capela 107
262 capela 952 pHost = gethostbyname(pszHost);
263     if (pHost == NULL) {
264     lscp_socket_herror("lscp_client_create: gethostbyname");
265     return NULL;
266     }
267 capela 107
268 capela 952 // Allocate client descriptor...
269 capela 107
270 capela 952 pClient = (lscp_client_t *) malloc(sizeof(lscp_client_t));
271     if (pClient == NULL) {
272     fprintf(stderr, "lscp_client_create: Out of memory.\n");
273     return NULL;
274     }
275     memset(pClient, 0, sizeof(lscp_client_t));
276 capela 107
277 capela 952 pClient->pfnCallback = pfnCallback;
278     pClient->pvData = pvData;
279 capela 107
280     #ifdef DEBUG
281 capela 952 fprintf(stderr, "lscp_client_create: pClient=%p: pszHost=%s iPort=%d.\n", pClient, pszHost, iPort);
282 capela 107 #endif
283    
284 capela 952 // Prepare the command connection socket...
285 capela 107
286 capela 952 sock = socket(AF_INET, SOCK_STREAM, 0);
287     if (sock == INVALID_SOCKET) {
288     lscp_socket_perror("lscp_client_create: cmd: socket");
289     free(pClient);
290     return NULL;
291     }
292 capela 107
293     #if defined(WIN32)
294 capela 952 if (setsockopt(sock, SOL_SOCKET, SO_DONTLINGER, (char *) &iSockOpt, sizeof(int)) == SOCKET_ERROR)
295     lscp_socket_perror("lscp_client_create: cmd: setsockopt(SO_DONTLINGER)");
296 capela 107 #endif
297    
298     #ifdef DEBUG
299 capela 952 lscp_socket_getopts("lscp_client_create: cmd", sock);
300 capela 107 #endif
301    
302 capela 952 cAddr = sizeof(struct sockaddr_in);
303     memset((char *) &addr, 0, cAddr);
304     addr.sin_family = pHost->h_addrtype;
305     memmove((char *) &(addr.sin_addr), pHost->h_addr, pHost->h_length);
306     addr.sin_port = htons((short) iPort);
307 capela 107
308 capela 952 if (connect(sock, (struct sockaddr *) &addr, cAddr) == SOCKET_ERROR) {
309     lscp_socket_perror("lscp_client_create: cmd: connect");
310     closesocket(sock);
311     free(pClient);
312     return NULL;
313     }
314 capela 107
315 capela 952 // Initialize the command socket agent struct...
316     lscp_socket_agent_init(&(pClient->cmd), sock, &addr, cAddr);
317 capela 107
318     #ifdef DEBUG
319 capela 952 fprintf(stderr, "lscp_client_create: cmd: pClient=%p: sock=%d addr=%s port=%d.\n", pClient, pClient->cmd.sock, inet_ntoa(pClient->cmd.addr.sin_addr), ntohs(pClient->cmd.addr.sin_port));
320 capela 107 #endif
321    
322 capela 952 // Initialize the event service socket struct...
323     lscp_socket_agent_init(&(pClient->evt), INVALID_SOCKET, NULL, 0);
324     // No events subscribed, yet.
325     pClient->events = LSCP_EVENT_NONE;
326     // Initialize cached members.
327     pClient->audio_drivers = NULL;
328     pClient->midi_drivers = NULL;
329     pClient->audio_devices = NULL;
330     pClient->midi_devices = NULL;
331     pClient->engines = NULL;
332     pClient->channels = NULL;
333 capela 1019 pClient->fxsends = NULL;
334 capela 952 pClient->midi_instruments = NULL;
335 capela 975 pClient->midi_maps = NULL;
336     pClient->midi_map_name = NULL;
337 capela 952 lscp_driver_info_init(&(pClient->audio_driver_info));
338     lscp_driver_info_init(&(pClient->midi_driver_info));
339     lscp_device_info_init(&(pClient->audio_device_info));
340     lscp_device_info_init(&(pClient->midi_device_info));
341     lscp_param_info_init(&(pClient->audio_param_info));
342     lscp_param_info_init(&(pClient->midi_param_info));
343     lscp_device_port_info_init(&(pClient->audio_channel_info));
344     lscp_device_port_info_init(&(pClient->midi_port_info));
345     lscp_param_info_init(&(pClient->audio_channel_param_info));
346     lscp_param_info_init(&(pClient->midi_port_param_info));
347     lscp_server_info_init(&(pClient->server_info));
348     lscp_engine_info_init(&(pClient->engine_info));
349     lscp_channel_info_init(&(pClient->channel_info));
350 capela 1019 lscp_fxsend_info_init(&(pClient->fxsend_info));
351 capela 952 lscp_midi_instrument_info_init(&(pClient->midi_instrument_info));
352     // Initialize error stuff.
353     pClient->pszResult = NULL;
354     pClient->iErrno = -1;
355     // Stream usage stuff.
356     pClient->buffer_fill = NULL;
357     pClient->iStreamCount = 0;
358     // Default timeout value.
359     pClient->iTimeout = LSCP_TIMEOUT_MSECS;
360 capela 626 pClient->iTimeoutCount = 0;
361 capela 107
362 capela 952 // Initialize the transaction mutex.
363     lscp_mutex_init(pClient->mutex);
364     lscp_cond_init(pClient->cond);
365 capela 107
366 capela 952 // Finally we've some success...
367     return pClient;
368 capela 107 }
369    
370    
371     /**
372     * Wait for a client instance to terminate graciously.
373     *
374     * @param pClient Pointer to client instance structure.
375     */
376     lscp_status_t lscp_client_join ( lscp_client_t *pClient )
377     {
378 capela 952 if (pClient == NULL)
379     return LSCP_FAILED;
380 capela 107
381     #ifdef DEBUG
382 capela 952 fprintf(stderr, "lscp_client_join: pClient=%p.\n", pClient);
383 capela 107 #endif
384    
385 capela 132 // lscp_socket_agent_join(&(pClient->evt));
386 capela 952 lscp_socket_agent_join(&(pClient->cmd));
387 capela 107
388 capela 952 return LSCP_OK;
389 capela 107 }
390    
391    
392     /**
393     * Terminate and destroy a client instance.
394     *
395     * @param pClient Pointer to client instance structure.
396     *
397     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
398     */
399     lscp_status_t lscp_client_destroy ( lscp_client_t *pClient )
400     {
401 capela 952 if (pClient == NULL)
402     return LSCP_FAILED;
403 capela 107
404     #ifdef DEBUG
405 capela 952 fprintf(stderr, "lscp_client_destroy: pClient=%p.\n", pClient);
406 capela 107 #endif
407    
408 capela 952 // Lock this section up.
409     lscp_mutex_lock(pClient->mutex);
410 capela 562
411 capela 952 // Free up all cached members.
412     lscp_midi_instrument_info_free(&(pClient->midi_instrument_info));
413 capela 1019 lscp_fxsend_info_free(&(pClient->fxsend_info));
414 capela 952 lscp_channel_info_free(&(pClient->channel_info));
415     lscp_engine_info_free(&(pClient->engine_info));
416     lscp_server_info_free(&(pClient->server_info));
417     lscp_param_info_free(&(pClient->midi_port_param_info));
418     lscp_param_info_free(&(pClient->audio_channel_param_info));
419     lscp_device_port_info_free(&(pClient->midi_port_info));
420     lscp_device_port_info_free(&(pClient->audio_channel_info));
421     lscp_param_info_free(&(pClient->midi_param_info));
422     lscp_param_info_free(&(pClient->audio_param_info));
423     lscp_device_info_free(&(pClient->midi_device_info));
424     lscp_device_info_free(&(pClient->audio_device_info));
425     lscp_driver_info_free(&(pClient->midi_driver_info));
426     lscp_driver_info_free(&(pClient->audio_driver_info));
427     // Free available engine table.
428     lscp_szsplit_destroy(pClient->audio_drivers);
429     lscp_szsplit_destroy(pClient->midi_drivers);
430     lscp_isplit_destroy(pClient->audio_devices);
431     lscp_isplit_destroy(pClient->midi_devices);
432     lscp_szsplit_destroy(pClient->engines);
433     lscp_isplit_destroy(pClient->channels);
434 capela 1019 lscp_isplit_destroy(pClient->fxsends);
435 capela 952 lscp_midi_instruments_destroy(pClient->midi_instruments);
436 capela 975 lscp_isplit_destroy(pClient->midi_maps);
437     if (pClient->midi_map_name)
438     free(pClient->midi_map_name);
439 capela 952 // Make them null.
440     pClient->audio_drivers = NULL;
441     pClient->midi_drivers = NULL;
442     pClient->audio_devices = NULL;
443     pClient->midi_devices = NULL;
444     pClient->engines = NULL;
445     pClient->channels = NULL;
446 capela 1019 pClient->fxsends = NULL;
447 capela 952 pClient->midi_instruments = NULL;
448 capela 975 pClient->midi_maps = NULL;
449     pClient->midi_map_name = NULL;
450 capela 952 // Free result error stuff.
451     lscp_client_set_result(pClient, NULL, 0);
452     // Free stream usage stuff.
453     if (pClient->buffer_fill)
454     free(pClient->buffer_fill);
455     pClient->buffer_fill = NULL;
456     pClient->iStreamCount = 0;
457     pClient->iTimeout = 0;
458 capela 107
459 capela 952 // Free socket agents.
460     lscp_socket_agent_free(&(pClient->evt));
461     lscp_socket_agent_free(&(pClient->cmd));
462 capela 107
463 capela 952 // Last but not least, free good ol'transaction mutex.
464     lscp_mutex_unlock(pClient->mutex);
465     lscp_mutex_destroy(pClient->mutex);
466     lscp_cond_destroy(pClient->cond);
467 capela 107
468 capela 952 free(pClient);
469 capela 107
470 capela 952 return LSCP_OK;
471 capela 107 }
472    
473    
474     /**
475     * Set the client transaction timeout interval.
476     *
477     * @param pClient Pointer to client instance structure.
478     * @param iTimeout Transaction timeout in milliseconds.
479     *
480     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
481     */
482     lscp_status_t lscp_client_set_timeout ( lscp_client_t *pClient, int iTimeout )
483     {
484 capela 952 if (pClient == NULL)
485     return LSCP_FAILED;
486     if (iTimeout < 0)
487     return LSCP_FAILED;
488 capela 107
489 capela 952 pClient->iTimeout = iTimeout;
490     return LSCP_OK;
491 capela 107 }
492    
493    
494     /**
495     * Get the client transaction timeout interval.
496     *
497     * @param pClient Pointer to client instance structure.
498     *
499     * @returns The current timeout value milliseconds, -1 in case of failure.
500     */
501     int lscp_client_get_timeout ( lscp_client_t *pClient )
502     {
503 capela 952 if (pClient == NULL)
504     return -1;
505 capela 107
506 capela 952 return pClient->iTimeout;
507 capela 107 }
508    
509    
510     //-------------------------------------------------------------------------
511     // Client common protocol functions.
512    
513     /**
514     * Submit a command query line string to the server. The query string
515     * must be cr/lf and null terminated. Besides the return code, the
516     * specific server response to the command request is made available
517     * by the @ref lscp_client_get_result and @ref lscp_client_get_errno
518     * function calls.
519     *
520     * @param pClient Pointer to client instance structure.
521     * @param pszQuery Command request line to be sent to server,
522     * must be cr/lf and null terminated.
523     *
524     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
525     */
526     lscp_status_t lscp_client_query ( lscp_client_t *pClient, const char *pszQuery )
527     {
528 capela 952 lscp_status_t ret;
529 capela 562
530 capela 975 if (pClient == NULL)
531     return LSCP_FAILED;
532    
533 capela 952 // Lock this section up.
534     lscp_mutex_lock(pClient->mutex);
535 capela 107
536 capela 952 // Just make the now guarded call.
537     ret = lscp_client_call(pClient, pszQuery, 0);
538 capela 562
539 capela 952 // Unlock this section down.
540     lscp_mutex_unlock(pClient->mutex);
541 capela 562
542 capela 952 return ret;
543 capela 107 }
544    
545     /**
546     * Get the last received result string. In case of error or warning,
547     * this is the text of the error or warning message issued.
548     *
549     * @param pClient Pointer to client instance structure.
550     *
551     * @returns A pointer to the literal null-terminated result string as
552     * of the last command request.
553     */
554     const char *lscp_client_get_result ( lscp_client_t *pClient )
555     {
556 capela 952 if (pClient == NULL)
557     return NULL;
558 capela 107
559 capela 952 return pClient->pszResult;
560 capela 107 }
561    
562    
563     /**
564     * Get the last error/warning number received.
565     *
566     * @param pClient Pointer to client instance structure.
567     *
568     * @returns The numerical value of the last error or warning
569     * response code received.
570     */
571     int lscp_client_get_errno ( lscp_client_t *pClient )
572     {
573 capela 952 if (pClient == NULL)
574     return -1;
575 capela 107
576 capela 952 return pClient->iErrno;
577 capela 107 }
578    
579    
580     //-------------------------------------------------------------------------
581     // Client registration protocol functions.
582    
583     /**
584 schoenebeck 1697 * Register frontend for receiving event messages by the sampler backend.
585 schoenebeck 1689 * @e Caution: since liblscp v0.5.5.4 you have to call lscp_client_subscribe()
586     * for @e each event you want to subscribe. That is the old bitflag approach
587     * was abondoned at this point. You can however still register all older
588     * events with one lscp_client_subscribe() call at once. Thus, the old
589     * behavior of this functions was not broken. Those older events are namely:
590     * @code
591 capela 994 * SUBSCRIBE CHANNEL_COUNT | VOICE_COUNT | STREAM_COUNT
592     * | BUFFER_FILL | CHANNEL_INFO | TOTAL_VOICE_COUNT
593     * | AUDIO_OUTPUT_DEVICE_COUNT | AUDIO_OUTPUT_DEVICE_INFO
594     * | MIDI_INPUT_DEVICE_COUNT | MIDI_INPUT_DEVICE_INFO
595     * | MIDI_INSTRUMENT_MAP_COUNT | MIDI_INSTRUMENT_MAP_INFO
596     * | MIDI_INSTRUMENT_COUNT | MIDI_INSTRUMENT_INFO
597     * | MISCELLANEOUS
598 schoenebeck 1689 * @endcode
599     * The old events occupy the lower 16 bits (as bit flags), and all younger
600     * events enumerate the whole upper 16 bits range. The new, enumerated
601     * events are namely:
602     * @code
603     * SUBSCRIBE CHANNEL_MIDI
604     * @endcode
605 capela 107 *
606     * @param pClient Pointer to client instance structure.
607 schoenebeck 1697 * @param events LSCP event to subscribe.
608 capela 107 *
609     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
610     */
611 capela 144 lscp_status_t lscp_client_subscribe ( lscp_client_t *pClient, lscp_event_t events )
612 capela 107 {
613 schoenebeck 1690 lscp_status_t ret = LSCP_OK;
614 schoenebeck 1697 lscp_event_t currentEvent;
615 capela 107
616 capela 952 if (pClient == NULL)
617     return LSCP_FAILED;
618 capela 107
619 capela 952 // Lock this section up.
620     lscp_mutex_lock(pClient->mutex);
621 capela 144
622 capela 952 // If applicable, start the alternate connection...
623     if (pClient->events == LSCP_EVENT_NONE)
624     ret = _lscp_client_evt_connect(pClient);
625 capela 562
626 capela 952 // Send the subscription commands.
627     if (ret == LSCP_OK && (events & LSCP_EVENT_CHANNEL_COUNT))
628     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_CHANNEL_COUNT);
629     if (ret == LSCP_OK && (events & LSCP_EVENT_VOICE_COUNT))
630     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_VOICE_COUNT);
631     if (ret == LSCP_OK && (events & LSCP_EVENT_STREAM_COUNT))
632     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_STREAM_COUNT);
633     if (ret == LSCP_OK && (events & LSCP_EVENT_BUFFER_FILL))
634     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_BUFFER_FILL);
635     if (ret == LSCP_OK && (events & LSCP_EVENT_CHANNEL_INFO))
636     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_CHANNEL_INFO);
637 capela 994 if (ret == LSCP_OK && (events & LSCP_EVENT_TOTAL_VOICE_COUNT))
638     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_TOTAL_VOICE_COUNT);
639     if (ret == LSCP_OK && (events & LSCP_EVENT_AUDIO_OUTPUT_DEVICE_COUNT))
640     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_AUDIO_OUTPUT_DEVICE_COUNT);
641     if (ret == LSCP_OK && (events & LSCP_EVENT_AUDIO_OUTPUT_DEVICE_INFO))
642     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_AUDIO_OUTPUT_DEVICE_INFO);
643     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INPUT_DEVICE_COUNT))
644     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INPUT_DEVICE_COUNT);
645     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INPUT_DEVICE_INFO))
646     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INPUT_DEVICE_INFO);
647     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_MAP_COUNT))
648     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INSTRUMENT_MAP_COUNT);
649     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_MAP_INFO))
650     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INSTRUMENT_MAP_INFO);
651     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_COUNT))
652     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INSTRUMENT_COUNT);
653     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_INFO))
654     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MIDI_INSTRUMENT_INFO);
655 capela 952 if (ret == LSCP_OK && (events & LSCP_EVENT_MISCELLANEOUS))
656     ret = _lscp_client_evt_request(pClient, 1, LSCP_EVENT_MISCELLANEOUS);
657 schoenebeck 1689 // Caution: for the upper 16 bits, we don't use bit flags anymore ...
658 schoenebeck 1697 currentEvent = events & 0xffff0000;
659     if (ret == LSCP_OK && currentEvent) {
660     switch (currentEvent) {
661     case LSCP_EVENT_CHANNEL_MIDI:
662     case LSCP_EVENT_DEVICE_MIDI:
663     ret = _lscp_client_evt_request(pClient, 1, currentEvent);
664     break;
665     default: // unknown "upper" event type
666     ret = LSCP_FAILED;
667     break;
668     }
669     }
670 capela 107
671 capela 952 // Unlock this section down.
672     lscp_mutex_unlock(pClient->mutex);
673 capela 132
674 capela 952 return ret;
675 capela 107 }
676    
677    
678     /**
679 schoenebeck 1697 * Deregister frontend from receiving UDP event messages anymore.
680 schoenebeck 1689 * @e Caution: since liblscp v0.5.5.4 you have to call
681     * lscp_client_unsubscribe() for @e each event you want to unsubscribe.
682     * That is the old bitflag approach was abondoned at this point. You can
683     * however still register all older events with one lscp_client_subscribe()
684     * call at once. Thus, the old behavior of this functions was not broken.
685     * Those older events are namely:
686     * @code
687 capela 994 * UNSUBSCRIBE CHANNEL_COUNT | VOICE_COUNT | STREAM_COUNT
688     * | BUFFER_FILL | CHANNEL_INFO | TOTAL_VOICE_COUNT
689     * | AUDIO_OUTPUT_DEVICE_COUNT | AUDIO_OUTPUT_DEVICE_INFO
690     * | MIDI_INPUT_DEVICE_COUNT | MIDI_INPUT_DEVICE_INFO
691     * | MIDI_INSTRUMENT_MAP_COUNT | MIDI_INSTRUMENT_MAP_INFO
692     * | MIDI_INSTRUMENT_COUNT | MIDI_INSTRUMENT_INFO
693     * | MISCELLANEOUS
694 schoenebeck 1689 * @endcode
695     * The old events occupy the lower 16 bits (as bit flags), and all younger
696     * events enumerate the whole upper 16 bits range. The new, enumerated
697     * events are namely:
698     * @code
699     * UNSUBSCRIBE CHANNEL_MIDI
700     * @endcode
701 capela 107 *
702     * @param pClient Pointer to client instance structure.
703 schoenebeck 1697 * @param events LSCP event to unsubscribe.
704 capela 107 *
705     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
706     */
707 capela 144 lscp_status_t lscp_client_unsubscribe ( lscp_client_t *pClient, lscp_event_t events )
708 capela 107 {
709 capela 952 lscp_status_t ret = LSCP_OK;
710 schoenebeck 1697 lscp_event_t currentEvent;
711 capela 107
712 capela 952 if (pClient == NULL)
713     return LSCP_FAILED;
714 capela 107
715 capela 952 // Lock this section up.
716     lscp_mutex_lock(pClient->mutex);
717 capela 132
718 capela 952 // Send the unsubscription commands.
719     if (ret == LSCP_OK && (events & LSCP_EVENT_CHANNEL_COUNT))
720     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_CHANNEL_COUNT);
721     if (ret == LSCP_OK && (events & LSCP_EVENT_VOICE_COUNT))
722     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_VOICE_COUNT);
723     if (ret == LSCP_OK && (events & LSCP_EVENT_STREAM_COUNT))
724     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_STREAM_COUNT);
725     if (ret == LSCP_OK && (events & LSCP_EVENT_BUFFER_FILL))
726     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_BUFFER_FILL);
727     if (ret == LSCP_OK && (events & LSCP_EVENT_CHANNEL_INFO))
728     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_CHANNEL_INFO);
729 capela 994 if (ret == LSCP_OK && (events & LSCP_EVENT_TOTAL_VOICE_COUNT))
730     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_TOTAL_VOICE_COUNT);
731     if (ret == LSCP_OK && (events & LSCP_EVENT_AUDIO_OUTPUT_DEVICE_COUNT))
732     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_AUDIO_OUTPUT_DEVICE_COUNT);
733     if (ret == LSCP_OK && (events & LSCP_EVENT_AUDIO_OUTPUT_DEVICE_INFO))
734     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_AUDIO_OUTPUT_DEVICE_INFO);
735     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INPUT_DEVICE_COUNT))
736     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INPUT_DEVICE_COUNT);
737     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INPUT_DEVICE_INFO))
738     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INPUT_DEVICE_INFO);
739     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_MAP_COUNT))
740     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INSTRUMENT_MAP_COUNT);
741     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_MAP_INFO))
742     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INSTRUMENT_MAP_INFO);
743     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_COUNT))
744     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INSTRUMENT_COUNT);
745     if (ret == LSCP_OK && (events & LSCP_EVENT_MIDI_INSTRUMENT_INFO))
746     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MIDI_INSTRUMENT_INFO);
747 capela 952 if (ret == LSCP_OK && (events & LSCP_EVENT_MISCELLANEOUS))
748     ret = _lscp_client_evt_request(pClient, 0, LSCP_EVENT_MISCELLANEOUS);
749 schoenebeck 1689 // Caution: for the upper 16 bits, we don't use bit flags anymore ...
750 schoenebeck 1697 currentEvent = events & 0xffff0000;
751     if (ret == LSCP_OK && currentEvent) {
752     switch (currentEvent) {
753     case LSCP_EVENT_CHANNEL_MIDI:
754     case LSCP_EVENT_DEVICE_MIDI:
755     ret = _lscp_client_evt_request(pClient, 0, currentEvent);
756     break;
757     default: // unknown "upper" event type
758     ret = LSCP_FAILED;
759     break;
760     }
761     }
762 capela 107
763 capela 952 // If necessary, close the alternate connection...
764     if (pClient->events == LSCP_EVENT_NONE)
765     lscp_socket_agent_free(&(pClient->evt));
766 capela 144
767 capela 952 // Unlock this section down.
768     lscp_mutex_unlock(pClient->mutex);
769 capela 132
770 capela 952 return ret;
771 capela 107 }
772    
773    
774 capela 213 /**
775     * Getting current subscribed events.
776     *
777     * @param pClient Pointer to client instance structure.
778     *
779     * @returns The current subscrived bit-wise OR'ed event flags.
780     */
781     lscp_event_t lscp_client_get_events ( lscp_client_t *pClient )
782     {
783 capela 952 if (pClient == NULL)
784     return LSCP_EVENT_NONE;
785 capela 213
786 capela 952 return pClient->events;
787 capela 213 }
788    
789    
790 capela 107 //-------------------------------------------------------------------------
791     // Client command protocol functions.
792    
793     /**
794     * Loading an instrument:
795     * LOAD INSTRUMENT <filename> <instr-index> <sampler-channel>
796     *
797     * @param pClient Pointer to client instance structure.
798     * @param pszFileName Instrument file name.
799     * @param iInstrIndex Instrument index number.
800     * @param iSamplerChannel Sampler Channel.
801     *
802     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
803     */
804     lscp_status_t lscp_load_instrument ( lscp_client_t *pClient, const char *pszFileName, int iInstrIndex, int iSamplerChannel )
805     {
806 capela 952 char szQuery[LSCP_BUFSIZ];
807 capela 107
808 capela 952 if (pszFileName == NULL || iSamplerChannel < 0)
809     return LSCP_FAILED;
810 capela 107
811 capela 952 sprintf(szQuery, "LOAD INSTRUMENT '%s' %d %d\r\n", pszFileName, iInstrIndex, iSamplerChannel);
812     return lscp_client_query(pClient, szQuery);
813 capela 107 }
814    
815    
816     /**
817 capela 144 * Loading an instrument in the background (non modal):
818     * LOAD INSTRUMENT NON_MODAL <filename> <instr-index> <sampler-channel>
819     *
820     * @param pClient Pointer to client instance structure.
821     * @param pszFileName Instrument file name.
822     * @param iInstrIndex Instrument index number.
823     * @param iSamplerChannel Sampler Channel.
824     *
825     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
826     */
827     lscp_status_t lscp_load_instrument_non_modal ( lscp_client_t *pClient, const char *pszFileName, int iInstrIndex, int iSamplerChannel )
828     {
829 capela 952 char szQuery[LSCP_BUFSIZ];
830 capela 144
831 capela 952 if (pszFileName == NULL || iSamplerChannel < 0)
832     return LSCP_FAILED;
833 capela 144
834 capela 952 sprintf(szQuery, "LOAD INSTRUMENT NON_MODAL '%s' %d %d\r\n", pszFileName, iInstrIndex, iSamplerChannel);
835     return lscp_client_query(pClient, szQuery);
836 capela 144 }
837    
838    
839     /**
840 capela 107 * Loading a sampler engine:
841     * LOAD ENGINE <engine-name> <sampler-channel>
842     *
843     * @param pClient Pointer to client instance structure.
844     * @param pszEngineName Engine name.
845     * @param iSamplerChannel Sampler channel number.
846     *
847     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
848     */
849     lscp_status_t lscp_load_engine ( lscp_client_t *pClient, const char *pszEngineName, int iSamplerChannel )
850     {
851 capela 952 char szQuery[LSCP_BUFSIZ];
852 capela 107
853 capela 952 if (pszEngineName == NULL || iSamplerChannel < 0)
854     return LSCP_FAILED;
855 capela 107
856 capela 952 sprintf(szQuery, "LOAD ENGINE %s %d\r\n", pszEngineName, iSamplerChannel);
857     return lscp_client_query(pClient, szQuery);
858 capela 107 }
859    
860    
861     /**
862     * Current number of sampler channels:
863     * GET CHANNELS
864     *
865     * @param pClient Pointer to client instance structure.
866     *
867     * @returns The current total number of sampler channels on success,
868     * -1 otherwise.
869     */
870     int lscp_get_channels ( lscp_client_t *pClient )
871     {
872 capela 952 int iChannels = -1;
873 capela 132
874 capela 975 if (pClient == NULL)
875     return -1;
876    
877 capela 952 // Lock this section up.
878     lscp_mutex_lock(pClient->mutex);
879 capela 132
880 capela 952 if (lscp_client_call(pClient, "GET CHANNELS\r\n", 0) == LSCP_OK)
881     iChannels = atoi(lscp_client_get_result(pClient));
882 capela 132
883 capela 952 // Unlock this section doen.
884     lscp_mutex_unlock(pClient->mutex);
885 capela 132
886 capela 952 return iChannels;
887 capela 107 }
888    
889    
890     /**
891 capela 125 * List current sampler channels number identifiers:
892     * LIST CHANNELS
893     *
894     * @param pClient Pointer to client instance structure.
895     *
896     * @returns An array of the sampler channels identifiers as positive integers,
897     * terminated with -1 on success, NULL otherwise.
898     */
899     int *lscp_list_channels ( lscp_client_t *pClient )
900     {
901 capela 952 const char *pszSeps = ",";
902 capela 125
903 capela 952 if (pClient == NULL)
904     return NULL;
905 capela 562
906 capela 952 // Lock this section up.
907     lscp_mutex_lock(pClient->mutex);
908 capela 132
909 capela 952 if (pClient->channels) {
910     lscp_isplit_destroy(pClient->channels);
911     pClient->channels = NULL;
912     }
913 capela 125
914 capela 952 if (lscp_client_call(pClient, "LIST CHANNELS\r\n", 0) == LSCP_OK)
915     pClient->channels = lscp_isplit_create(lscp_client_get_result(pClient), pszSeps);
916 capela 125
917 capela 952 // Unlock this section down.
918     lscp_mutex_unlock(pClient->mutex);
919 capela 132
920 capela 952 return pClient->channels;
921 capela 125 }
922    
923    
924     /**
925 capela 107 * Adding a new sampler channel:
926     * ADD CHANNEL
927     *
928     * @param pClient Pointer to client instance structure.
929     *
930     * @returns The new sampler channel number identifier,
931     * or -1 in case of failure.
932     */
933     int lscp_add_channel ( lscp_client_t *pClient )
934     {
935 capela 952 int iSamplerChannel = -1;
936 capela 132
937 capela 975 if (pClient == NULL)
938     return -1;
939    
940 capela 952 // Lock this section up.
941     lscp_mutex_lock(pClient->mutex);
942 capela 132
943 capela 952 if (lscp_client_call(pClient, "ADD CHANNEL\r\n", 0) == LSCP_OK)
944     iSamplerChannel = atoi(lscp_client_get_result(pClient));
945 capela 562
946 capela 952 // Unlock this section down.
947     lscp_mutex_unlock(pClient->mutex);
948 capela 132
949 capela 952 return iSamplerChannel;
950 capela 107 }
951    
952    
953     /**
954     * Removing a sampler channel:
955     * REMOVE CHANNEL <sampler-channel>
956     *
957     * @param pClient Pointer to client instance structure.
958     * @param iSamplerChannel Sampler channel number.
959     *
960     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
961     */
962     lscp_status_t lscp_remove_channel ( lscp_client_t *pClient, int iSamplerChannel )
963     {
964 capela 952 char szQuery[LSCP_BUFSIZ];
965 capela 107
966 capela 952 if (iSamplerChannel < 0)
967     return LSCP_FAILED;
968 capela 107
969 capela 952 sprintf(szQuery, "REMOVE CHANNEL %d\r\n", iSamplerChannel);
970     return lscp_client_query(pClient, szQuery);
971 capela 107 }
972    
973    
974     /**
975 capela 523 * Getting all available engines count:
976 capela 107 * GET AVAILABLE_ENGINES
977     *
978     * @param pClient Pointer to client instance structure.
979     *
980 capela 523 * @returns The current total number of sampler engines on success,
981     * -1 otherwise.
982     */
983     int lscp_get_available_engines ( lscp_client_t *pClient )
984     {
985 capela 952 int iAvailableEngines = -1;
986 capela 523
987 capela 975 if (pClient == NULL)
988     return -1;
989    
990 capela 952 // Lock this section up.
991     lscp_mutex_lock(pClient->mutex);
992 capela 523
993 capela 952 if (lscp_client_call(pClient, "GET AVAILABLE_ENGINES\r\n", 0) == LSCP_OK)
994     iAvailableEngines = atoi(lscp_client_get_result(pClient));
995 capela 523
996 capela 952 // Unlock this section down.
997     lscp_mutex_unlock(pClient->mutex);
998 capela 523
999 capela 952 return iAvailableEngines;
1000 capela 523 }
1001    
1002    
1003     /**
1004     * Getting all available engines:
1005     * LIST AVAILABLE_ENGINES
1006     *
1007     * @param pClient Pointer to client instance structure.
1008     *
1009 capela 107 * @returns A NULL terminated array of engine name strings,
1010     * or NULL in case of failure.
1011     */
1012 capela 523 const char **lscp_list_available_engines ( lscp_client_t *pClient )
1013 capela 107 {
1014 capela 952 const char *pszSeps = ",";
1015 capela 107
1016 capela 975 if (pClient == NULL)
1017     return NULL;
1018    
1019 capela 952 // Lock this section up.
1020     lscp_mutex_lock(pClient->mutex);
1021 capela 132
1022 capela 952 if (pClient->engines) {
1023     lscp_szsplit_destroy(pClient->engines);
1024     pClient->engines = NULL;
1025     }
1026 capela 107
1027 capela 952 if (lscp_client_call(pClient, "LIST AVAILABLE_ENGINES\r\n", 0) == LSCP_OK)
1028     pClient->engines = lscp_szsplit_create(lscp_client_get_result(pClient), pszSeps);
1029 capela 107
1030 capela 952 // Unlock this section down.
1031     lscp_mutex_unlock(pClient->mutex);
1032 capela 132
1033 capela 952 return (const char **) pClient->engines;
1034 capela 107 }
1035    
1036    
1037     /**
1038     * Getting information about an engine.
1039     * GET ENGINE INFO <engine-name>
1040     *
1041     * @param pClient Pointer to client instance structure.
1042     * @param pszEngineName Engine name.
1043     *
1044     * @returns A pointer to a @ref lscp_engine_info_t structure, with all the
1045     * information of the given sampler engine, or NULL in case of failure.
1046     */
1047     lscp_engine_info_t *lscp_get_engine_info ( lscp_client_t *pClient, const char *pszEngineName )
1048     {
1049 capela 952 lscp_engine_info_t *pEngineInfo;
1050     char szQuery[LSCP_BUFSIZ];
1051     const char *pszResult;
1052     const char *pszSeps = ":";
1053     const char *pszCrlf = "\r\n";
1054     char *pszToken;
1055     char *pch;
1056 capela 107
1057 capela 975 if (pClient == NULL)
1058     return NULL;
1059 capela 952 if (pszEngineName == NULL)
1060     return NULL;
1061 capela 107
1062 capela 952 // Lock this section up.
1063     lscp_mutex_lock(pClient->mutex);
1064 capela 132
1065 capela 952 pEngineInfo = &(pClient->engine_info);
1066     lscp_engine_info_reset(pEngineInfo);
1067 capela 107
1068 capela 952 sprintf(szQuery, "GET ENGINE INFO %s\r\n", pszEngineName);
1069     if (lscp_client_call(pClient, szQuery, 1) == LSCP_OK) {
1070     pszResult = lscp_client_get_result(pClient);
1071     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
1072     while (pszToken) {
1073     if (strcasecmp(pszToken, "DESCRIPTION") == 0) {
1074     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1075     if (pszToken)
1076     lscp_unquote_dup(&(pEngineInfo->description), &pszToken);
1077     }
1078     else if (strcasecmp(pszToken, "VERSION") == 0) {
1079     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1080     if (pszToken)
1081     lscp_unquote_dup(&(pEngineInfo->version), &pszToken);
1082     }
1083     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1084     }
1085     }
1086     else pEngineInfo = NULL;
1087 capela 562
1088 capela 952 // Unlock this section down.
1089     lscp_mutex_unlock(pClient->mutex);
1090 capela 107
1091 capela 952 return pEngineInfo;
1092 capela 107 }
1093    
1094    
1095     /**
1096     * Getting sampler channel informations:
1097     * GET CHANNEL INFO <sampler-channel>
1098     *
1099     * @param pClient Pointer to client instance structure.
1100     * @param iSamplerChannel Sampler channel number.
1101     *
1102     * @returns A pointer to a @ref lscp_channel_info_t structure, with all the
1103     * information of the given sampler channel, or NULL in case of failure.
1104     */
1105     lscp_channel_info_t *lscp_get_channel_info ( lscp_client_t *pClient, int iSamplerChannel )
1106     {
1107 capela 952 lscp_channel_info_t *pChannelInfo;
1108     char szQuery[LSCP_BUFSIZ];
1109     const char *pszResult;
1110     const char *pszSeps = ":";
1111     const char *pszCrlf = "\r\n";
1112     char *pszToken;
1113     char *pch;
1114 capela 107
1115 capela 975 if (pClient == NULL)
1116     return NULL;
1117 capela 952 if (iSamplerChannel < 0)
1118     return NULL;
1119 capela 107
1120 capela 952 // Lock this section up.
1121     lscp_mutex_lock(pClient->mutex);
1122 capela 562
1123 capela 952 pChannelInfo = &(pClient->channel_info);
1124     lscp_channel_info_reset(pChannelInfo);
1125 capela 107
1126 capela 952 sprintf(szQuery, "GET CHANNEL INFO %d\r\n", iSamplerChannel);
1127     if (lscp_client_call(pClient, szQuery, 1) == LSCP_OK) {
1128     pszResult = lscp_client_get_result(pClient);
1129     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
1130     while (pszToken) {
1131     if (strcasecmp(pszToken, "ENGINE_NAME") == 0) {
1132     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1133     if (pszToken)
1134     lscp_unquote_dup(&(pChannelInfo->engine_name), &pszToken);
1135     }
1136     else if (strcasecmp(pszToken, "AUDIO_OUTPUT_DEVICE") == 0) {
1137     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1138     if (pszToken)
1139     pChannelInfo->audio_device = atoi(lscp_ltrim(pszToken));
1140     }
1141     else if (strcasecmp(pszToken, "AUDIO_OUTPUT_CHANNELS") == 0) {
1142     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1143     if (pszToken)
1144     pChannelInfo->audio_channels = atoi(lscp_ltrim(pszToken));
1145     }
1146     else if (strcasecmp(pszToken, "AUDIO_OUTPUT_ROUTING") == 0) {
1147     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1148     if (pszToken) {
1149     if (pChannelInfo->audio_routing)
1150 capela 1020 lscp_isplit_destroy(pChannelInfo->audio_routing);
1151     pChannelInfo->audio_routing = lscp_isplit_create(pszToken, ",");
1152 capela 952 }
1153     }
1154     else if (strcasecmp(pszToken, "INSTRUMENT_FILE") == 0) {
1155     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1156     if (pszToken)
1157     lscp_unquote_dup(&(pChannelInfo->instrument_file), &pszToken);
1158     }
1159     else if (strcasecmp(pszToken, "INSTRUMENT_NR") == 0) {
1160     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1161     if (pszToken)
1162     pChannelInfo->instrument_nr = atoi(lscp_ltrim(pszToken));
1163     }
1164     else if (strcasecmp(pszToken, "INSTRUMENT_NAME") == 0) {
1165     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1166     if (pszToken)
1167     lscp_unquote_dup(&(pChannelInfo->instrument_name), &pszToken);
1168     }
1169     else if (strcasecmp(pszToken, "INSTRUMENT_STATUS") == 0) {
1170     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1171     if (pszToken)
1172     pChannelInfo->instrument_status = atoi(lscp_ltrim(pszToken));
1173     }
1174     else if (strcasecmp(pszToken, "MIDI_INPUT_DEVICE") == 0) {
1175     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1176     if (pszToken)
1177     pChannelInfo->midi_device = atoi(lscp_ltrim(pszToken));
1178     }
1179     else if (strcasecmp(pszToken, "MIDI_INPUT_PORT") == 0) {
1180     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1181     if (pszToken)
1182     pChannelInfo->midi_port = atoi(lscp_ltrim(pszToken));
1183     }
1184     else if (strcasecmp(pszToken, "MIDI_INPUT_CHANNEL") == 0) {
1185     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1186     if (pszToken) {
1187     pszToken = lscp_ltrim(pszToken);
1188     if (strcasecmp(pszToken, "ALL") == 0)
1189     pChannelInfo->midi_channel = LSCP_MIDI_CHANNEL_ALL;
1190     else
1191     pChannelInfo->midi_channel = atoi(pszToken);
1192     }
1193     }
1194 capela 975 else if (strcasecmp(pszToken, "MIDI_INSTRUMENT_MAP") == 0) {
1195     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1196     if (pszToken) {
1197     pszToken = lscp_ltrim(pszToken);
1198     if (strcasecmp(pszToken, "NONE") == 0)
1199     pChannelInfo->midi_map = LSCP_MIDI_MAP_NONE;
1200     else
1201     if (strcasecmp(pszToken, "DEFAULT") == 0)
1202     pChannelInfo->midi_map = LSCP_MIDI_MAP_DEFAULT;
1203     else
1204     pChannelInfo->midi_map = atoi(pszToken);
1205     }
1206     }
1207 capela 952 else if (strcasecmp(pszToken, "VOLUME") == 0) {
1208     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1209     if (pszToken)
1210     pChannelInfo->volume = (float) atof(lscp_ltrim(pszToken));
1211     }
1212     else if (strcasecmp(pszToken, "MUTE") == 0) {
1213     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1214     if (pszToken)
1215     pChannelInfo->mute = (strcasecmp(lscp_unquote(&pszToken, 0), "TRUE") == 0);
1216     }
1217     else if (strcasecmp(pszToken, "SOLO") == 0) {
1218     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1219     if (pszToken)
1220     pChannelInfo->solo = (strcasecmp(lscp_unquote(&pszToken, 0), "TRUE") == 0);
1221     }
1222     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1223     }
1224     }
1225     else pChannelInfo = NULL;
1226 capela 562
1227 capela 952 // Unlock this section up.
1228     lscp_mutex_unlock(pClient->mutex);
1229 capela 107
1230 capela 952 return pChannelInfo;
1231 capela 107 }
1232    
1233    
1234     /**
1235     * Current number of active voices:
1236     * GET CHANNEL VOICE_COUNT <sampler-channel>
1237     *
1238     * @param pClient Pointer to client instance structure.
1239     * @param iSamplerChannel Sampler channel number.
1240     *
1241     * @returns The number of voices currently active, -1 in case of failure.
1242     */
1243     int lscp_get_channel_voice_count ( lscp_client_t *pClient, int iSamplerChannel )
1244     {
1245 capela 952 char szQuery[LSCP_BUFSIZ];
1246     int iVoiceCount = -1;
1247 capela 107
1248 capela 975 if (pClient == NULL)
1249     return -1;
1250 capela 952 if (iSamplerChannel < 0)
1251 capela 975 return -1;
1252 capela 107
1253 capela 952 // Lock this section up.
1254     lscp_mutex_lock(pClient->mutex);
1255 capela 132
1256 capela 952 sprintf(szQuery, "GET CHANNEL VOICE_COUNT %d\r\n", iSamplerChannel);
1257     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
1258     iVoiceCount = atoi(lscp_client_get_result(pClient));
1259 capela 107
1260 capela 952 // Unlock this section down.
1261     lscp_mutex_unlock(pClient->mutex);
1262 capela 132
1263 capela 952 return iVoiceCount;
1264 capela 107 }
1265    
1266    
1267     /**
1268     * Current number of active disk streams:
1269     * GET CHANNEL STREAM_COUNT <sampler-channel>
1270     *
1271 capela 167 * @param pClient Pointer to client instance structure.
1272     * @param iSamplerChannel Sampler channel number.
1273     *
1274 capela 107 * @returns The number of active disk streams on success, -1 otherwise.
1275     */
1276     int lscp_get_channel_stream_count ( lscp_client_t *pClient, int iSamplerChannel )
1277     {
1278 capela 952 char szQuery[LSCP_BUFSIZ];
1279     int iStreamCount = -1;
1280 capela 107
1281 capela 975 if (pClient == NULL)
1282     return -1;
1283 capela 952 if (iSamplerChannel < 0)
1284 capela 975 return -1;
1285 capela 107
1286 capela 952 // Lock this section up.
1287     lscp_mutex_lock(pClient->mutex);
1288 capela 132
1289 capela 952 sprintf(szQuery, "GET CHANNEL STREAM_COUNT %d\r\n", iSamplerChannel);
1290     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
1291     iStreamCount = atoi(lscp_client_get_result(pClient));
1292 capela 107
1293 capela 952 // Unlock this section down.
1294     lscp_mutex_unlock(pClient->mutex);
1295 capela 132
1296 capela 952 return iStreamCount;
1297 capela 107 }
1298    
1299    
1300     /**
1301 capela 167 * Current least usage of active disk streams.
1302     *
1303     * @param pClient Pointer to client instance structure.
1304     * @param iSamplerChannel Sampler channel number.
1305     *
1306     * @returns The usage percentage of the least filled active disk stream
1307     * on success, -1 otherwise.
1308     */
1309     int lscp_get_channel_stream_usage ( lscp_client_t *pClient, int iSamplerChannel )
1310     {
1311 capela 952 char szQuery[LSCP_BUFSIZ];
1312     int iStreamUsage = -1;
1313     const char *pszResult;
1314     const char *pszSeps = "[]%,";
1315     char *pszToken;
1316     char *pch;
1317     int iStream;
1318     int iPercent;
1319 capela 167
1320 capela 975 if (pClient == NULL)
1321     return -1;
1322 capela 952 if (iSamplerChannel < 0)
1323 capela 975 return -1;
1324 capela 167
1325 capela 952 // Lock this section up.
1326     lscp_mutex_lock(pClient->mutex);
1327 capela 167
1328 capela 952 iStream = 0;
1329     sprintf(szQuery, "GET CHANNEL BUFFER_FILL PERCENTAGE %d\r\n", iSamplerChannel);
1330     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK) {
1331     pszResult = lscp_client_get_result(pClient);
1332     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
1333     while (pszToken) {
1334     if (*pszToken) {
1335     // Skip stream id.
1336     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1337     if (pszToken == NULL)
1338     break;
1339     // Get least buffer fill percentage.
1340     iPercent = atol(pszToken);
1341     if (iStreamUsage > iPercent || iStream == 0)
1342     iStreamUsage = iPercent;
1343     iStream++;
1344     }
1345     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1346     }
1347     }
1348 capela 167
1349 capela 952 // Unlock this section down.
1350     lscp_mutex_unlock(pClient->mutex);
1351 capela 167
1352 capela 952 return iStreamUsage;
1353 capela 167 }
1354    
1355    
1356     /**
1357 capela 107 * Current fill state of disk stream buffers:
1358     * GET CHANNEL BUFFER_FILL {BYTES|PERCENTAGE} <sampler-channel>
1359     *
1360     * @param pClient Pointer to client instance structure.
1361     * @param usage_type Usage type to be returned, either
1362     * @ref LSCP_USAGE_BYTES, or
1363     * @ref LSCP_USAGE_PERCENTAGE.
1364     * @param iSamplerChannel Sampler channel number.
1365     *
1366     * @returns A pointer to a @ref lscp_buffer_fill_t structure, with the
1367     * information of the current disk stream buffer fill usage, for the given
1368     * sampler channel, or NULL in case of failure.
1369     */
1370     lscp_buffer_fill_t *lscp_get_channel_buffer_fill ( lscp_client_t *pClient, lscp_usage_t usage_type, int iSamplerChannel )
1371     {
1372 capela 952 lscp_buffer_fill_t *pBufferFill;
1373     char szQuery[LSCP_BUFSIZ];
1374     int iStreamCount;
1375     const char *pszUsageType = (usage_type == LSCP_USAGE_BYTES ? "BYTES" : "PERCENTAGE");
1376     const char *pszResult;
1377     const char *pszSeps = "[]%,";
1378     char *pszToken;
1379     char *pch;
1380     int iStream;
1381 capela 107
1382 capela 952 // Retrieve a channel stream estimation.
1383     iStreamCount = lscp_get_channel_stream_count(pClient, iSamplerChannel);
1384 capela 975 if (iStreamCount < 0)
1385 capela 952 return NULL;
1386 capela 132
1387 capela 952 // Lock this section up.
1388     lscp_mutex_lock(pClient->mutex);
1389 capela 132
1390 capela 952 // Check if we need to reallocate the stream usage array.
1391     if (pClient->iStreamCount != iStreamCount) {
1392     if (pClient->buffer_fill)
1393     free(pClient->buffer_fill);
1394     if (iStreamCount > 0)
1395     pClient->buffer_fill = (lscp_buffer_fill_t *) malloc(iStreamCount * sizeof(lscp_buffer_fill_t));
1396     else
1397     pClient->buffer_fill = NULL;
1398     pClient->iStreamCount = iStreamCount;
1399     }
1400 capela 107
1401 capela 952 // Get buffer fill usage...
1402     pBufferFill = pClient->buffer_fill;
1403     if (pBufferFill && iStreamCount > 0) {
1404     iStream = 0;
1405     pBufferFill = pClient->buffer_fill;
1406     sprintf(szQuery, "GET CHANNEL BUFFER_FILL %s %d\r\n", pszUsageType, iSamplerChannel);
1407     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK) {
1408     pszResult = lscp_client_get_result(pClient);
1409     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
1410     while (pszToken && iStream < pClient->iStreamCount) {
1411     if (*pszToken) {
1412     pBufferFill[iStream].stream_id = atol(pszToken);
1413     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1414     if (pszToken == NULL)
1415     break;
1416     pBufferFill[iStream].stream_usage = atol(pszToken);
1417     iStream++;
1418     }
1419     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1420     }
1421     } // Reset the usage, whatever it was before.
1422     else while (iStream < pClient->iStreamCount)
1423     pBufferFill[iStream++].stream_usage = 0;
1424     }
1425 capela 562
1426 capela 952 // Unlock this section down.
1427     lscp_mutex_unlock(pClient->mutex);
1428 capela 107
1429 capela 952 return pBufferFill;
1430 capela 107 }
1431    
1432    
1433     /**
1434     * Setting audio output type:
1435     * SET CHANNEL AUDIO_OUTPUT_TYPE <sampler-channel> <audio-output-type>
1436     *
1437     * @param pClient Pointer to client instance structure.
1438     * @param iSamplerChannel Sampler channel number.
1439     * @param pszAudioDriver Audio output driver type (e.g. "ALSA" or "JACK").
1440 capela 946 *
1441     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1442 capela 107 */
1443     lscp_status_t lscp_set_channel_audio_type ( lscp_client_t *pClient, int iSamplerChannel, const char *pszAudioDriver )
1444     {
1445 capela 952 char szQuery[LSCP_BUFSIZ];
1446 capela 107
1447 capela 952 if (iSamplerChannel < 0 || pszAudioDriver == NULL)
1448     return LSCP_FAILED;
1449 capela 107
1450 capela 952 sprintf(szQuery, "SET CHANNEL AUDIO_OUTPUT_TYPE %d %s\r\n", iSamplerChannel, pszAudioDriver);
1451     return lscp_client_query(pClient, szQuery);
1452 capela 107 }
1453    
1454    
1455     /**
1456 capela 144 * Setting audio output device:
1457     * SET CHANNEL AUDIO_OUTPUT_DEVICE <sampler-channel> <device-id>
1458     *
1459     * @param pClient Pointer to client instance structure.
1460     * @param iSamplerChannel Sampler channel number.
1461     * @param iAudioDevice Audio output device number identifier.
1462 capela 946 *
1463     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1464 capela 144 */
1465     lscp_status_t lscp_set_channel_audio_device ( lscp_client_t *pClient, int iSamplerChannel, int iAudioDevice )
1466     {
1467 capela 952 char szQuery[LSCP_BUFSIZ];
1468 capela 144
1469 capela 952 if (iSamplerChannel < 0 || iAudioDevice < 0)
1470     return LSCP_FAILED;
1471 capela 144
1472 capela 952 sprintf(szQuery, "SET CHANNEL AUDIO_OUTPUT_DEVICE %d %d\r\n", iSamplerChannel, iAudioDevice);
1473     return lscp_client_query(pClient, szQuery);
1474 capela 144 }
1475    
1476    
1477     /**
1478 capela 107 * Setting audio output channel:
1479     * SET CHANNEL AUDIO_OUTPUT_CHANNEL <sampler-channel> <audio-output-chan> <audio-input-chan>
1480     *
1481     * @param pClient Pointer to client instance structure.
1482     * @param iSamplerChannel Sampler channel number.
1483     * @param iAudioOut Audio output device channel to be routed from.
1484     * @param iAudioIn Audio output device channel to be routed into.
1485     *
1486     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1487     */
1488     lscp_status_t lscp_set_channel_audio_channel ( lscp_client_t *pClient, int iSamplerChannel, int iAudioOut, int iAudioIn )
1489     {
1490 capela 952 char szQuery[LSCP_BUFSIZ];
1491 capela 107
1492 capela 952 if (iSamplerChannel < 0 || iAudioOut < 0 || iAudioIn < 0)
1493     return LSCP_FAILED;
1494 capela 107
1495 capela 952 sprintf(szQuery, "SET CHANNEL AUDIO_OUTPUT_CHANNEL %d %d %d\r\n", iSamplerChannel, iAudioOut, iAudioIn);
1496     return lscp_client_query(pClient, szQuery);
1497 capela 107 }
1498    
1499    
1500     /**
1501     * Setting MIDI input type:
1502     * SET CHANNEL MIDI_INPUT_TYPE <sampler-channel> <midi-input-type>
1503     *
1504     * @param pClient Pointer to client instance structure.
1505     * @param iSamplerChannel Sampler channel number.
1506     * @param pszMidiDriver MIDI input driver type (e.g. "ALSA").
1507     *
1508     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1509     */
1510     lscp_status_t lscp_set_channel_midi_type ( lscp_client_t *pClient, int iSamplerChannel, const char *pszMidiDriver )
1511     {
1512 capela 952 char szQuery[LSCP_BUFSIZ];
1513 capela 107
1514 capela 952 if (iSamplerChannel < 0 || pszMidiDriver == NULL)
1515     return LSCP_FAILED;
1516 capela 107
1517 capela 952 sprintf(szQuery, "SET CHANNEL MIDI_INPUT_TYPE %d %s\r\n", iSamplerChannel, pszMidiDriver);
1518     return lscp_client_query(pClient, szQuery);
1519 capela 107 }
1520    
1521    
1522     /**
1523 capela 144 * Setting MIDI input device:
1524     * SET CHANNEL MIDI_INPUT_DEVICE <sampler-channel> <device-id>
1525     *
1526     * @param pClient Pointer to client instance structure.
1527     * @param iSamplerChannel Sampler channel number.
1528     * @param iMidiDevice MIDI input device number identifier.
1529 capela 946 *
1530     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1531 capela 144 */
1532     lscp_status_t lscp_set_channel_midi_device ( lscp_client_t *pClient, int iSamplerChannel, int iMidiDevice )
1533     {
1534 capela 952 char szQuery[LSCP_BUFSIZ];
1535 capela 144
1536 capela 952 if (iSamplerChannel < 0 || iMidiDevice < 0)
1537     return LSCP_FAILED;
1538 capela 144
1539 capela 952 sprintf(szQuery, "SET CHANNEL MIDI_INPUT_DEVICE %d %d\r\n", iSamplerChannel, iMidiDevice);
1540     return lscp_client_query(pClient, szQuery);
1541 capela 144 }
1542    
1543    
1544     /**
1545 capela 107 * Setting MIDI input port:
1546     * SET CHANNEL MIDI_INPUT_PORT <sampler-channel> <midi-input-port>
1547     *
1548     * @param pClient Pointer to client instance structure.
1549     * @param iSamplerChannel Sampler channel number.
1550     * @param iMidiPort MIDI input driver virtual port number.
1551     *
1552     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1553     */
1554     lscp_status_t lscp_set_channel_midi_port ( lscp_client_t *pClient, int iSamplerChannel, int iMidiPort )
1555     {
1556 capela 952 char szQuery[LSCP_BUFSIZ];
1557 capela 107
1558 capela 952 if (iSamplerChannel < 0 || iMidiPort < 0)
1559     return LSCP_FAILED;
1560 capela 107
1561 capela 952 sprintf(szQuery, "SET CHANNEL MIDI_INPUT_PORT %d %d\r\n", iSamplerChannel, iMidiPort);
1562     return lscp_client_query(pClient, szQuery);
1563 capela 107 }
1564    
1565    
1566     /**
1567     * Setting MIDI input channel:
1568     * SET CHANNEL MIDI_INPUT_CHANNEL <sampler-channel> <midi-input-chan>
1569     *
1570     * @param pClient Pointer to client instance structure.
1571     * @param iSamplerChannel Sampler channel number.
1572 capela 278 * @param iMidiChannel MIDI channel address number to listen (0-15) or
1573 capela 975 * @ref LSCP_MIDI_CHANNEL_ALL (16) to listen on all channels.
1574 capela 107 *
1575     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1576     */
1577     lscp_status_t lscp_set_channel_midi_channel ( lscp_client_t *pClient, int iSamplerChannel, int iMidiChannel )
1578     {
1579 capela 952 char szQuery[LSCP_BUFSIZ];
1580 capela 107
1581 capela 952 if (iSamplerChannel < 0 || iMidiChannel < 0 || iMidiChannel > 16)
1582     return LSCP_FAILED;
1583 capela 107
1584 capela 952 if (iMidiChannel == LSCP_MIDI_CHANNEL_ALL)
1585     sprintf(szQuery, "SET CHANNEL MIDI_INPUT_CHANNEL %d ALL\r\n", iSamplerChannel);
1586     else
1587     sprintf(szQuery, "SET CHANNEL MIDI_INPUT_CHANNEL %d %d\r\n", iSamplerChannel, iMidiChannel);
1588     return lscp_client_query(pClient, szQuery);
1589 capela 107 }
1590    
1591    
1592     /**
1593 capela 975 * Setting MIDI instrument map:
1594     * SET CHANNEL MIDI_INSTRUMENT_MAP <sampler-channel> <midi-map>
1595     *
1596     * @param pClient Pointer to client instance structure.
1597     * @param iSamplerChannel Sampler channel number.
1598     * @param iMidiMap MIDI instrument map number, or either
1599     * @ref LSCP_MIDI_MAP_NONE or
1600     * @ref LSCP_MIDI_MAP_DEFAULT .
1601     *
1602     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1603     */
1604     lscp_status_t lscp_set_channel_midi_map ( lscp_client_t *pClient, int iSamplerChannel, int iMidiMap )
1605     {
1606     char szQuery[LSCP_BUFSIZ];
1607    
1608     if (iSamplerChannel < 0)
1609     return LSCP_FAILED;
1610    
1611     sprintf(szQuery, "SET CHANNEL MIDI_INSTRUMENT_MAP %d ", iSamplerChannel);
1612     if (iMidiMap == LSCP_MIDI_MAP_NONE)
1613     strcat(szQuery , "NONE");
1614     else
1615     if (iMidiMap == LSCP_MIDI_MAP_DEFAULT)
1616     strcat(szQuery , "DEFAULT");
1617     else
1618     sprintf(szQuery + strlen(szQuery), "%d", iMidiMap);
1619    
1620     strcat(szQuery, "\r\n");
1621    
1622     return lscp_client_query(pClient, szQuery);
1623     }
1624    
1625    
1626     /**
1627 capela 107 * Setting channel volume:
1628     * SET CHANNEL VOLUME <sampler-channel> <volume>
1629     *
1630     * @param pClient Pointer to client instance structure.
1631     * @param iSamplerChannel Sampler channel number.
1632     * @param fVolume Sampler channel volume as a positive floating point
1633     * number, where a value less than 1.0 for attenuation,
1634     * and greater than 1.0 for amplification.
1635     *
1636     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1637     */
1638     lscp_status_t lscp_set_channel_volume ( lscp_client_t *pClient, int iSamplerChannel, float fVolume )
1639     {
1640 capela 952 char szQuery[LSCP_BUFSIZ];
1641 capela 107
1642 capela 1019 if (iSamplerChannel < 0 || fVolume < 0.0f)
1643 capela 952 return LSCP_FAILED;
1644 capela 107
1645 capela 952 sprintf(szQuery, "SET CHANNEL VOLUME %d %g\r\n", iSamplerChannel, fVolume);
1646     return lscp_client_query(pClient, szQuery);
1647 capela 107 }
1648    
1649    
1650     /**
1651 capela 735 * Muting a sampler channel:
1652     * SET CHANNEL MUTE <sampler-channel> <mute>
1653     *
1654     * @param pClient Pointer to client instance structure.
1655     * @param iSamplerChannel Sampler channel number.
1656     * @param iMute Sampler channel mute state as a boolean value,
1657     * either 1 (one) to mute the channel or 0 (zero)
1658     * to unmute the channel.
1659     *
1660     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1661     */
1662     lscp_status_t lscp_set_channel_mute ( lscp_client_t *pClient, int iSamplerChannel, int iMute )
1663     {
1664 capela 952 char szQuery[LSCP_BUFSIZ];
1665 capela 735
1666 capela 952 if (iSamplerChannel < 0 || iMute < 0 || iMute > 1)
1667     return LSCP_FAILED;
1668 capela 735
1669 capela 952 sprintf(szQuery, "SET CHANNEL MUTE %d %d\r\n", iSamplerChannel, iMute);
1670     return lscp_client_query(pClient, szQuery);
1671 capela 735 }
1672    
1673    
1674     /**
1675     * Soloing a sampler channel:
1676     * SET CHANNEL SOLO <sampler-channel> <solo>
1677     *
1678     * @param pClient Pointer to client instance structure.
1679     * @param iSamplerChannel Sampler channel number.
1680     * @param iSolo Sampler channel solo state as a boolean value,
1681     * either 1 (one) to solo the channel or 0 (zero)
1682     * to unsolo the channel.
1683     *
1684     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1685     */
1686     lscp_status_t lscp_set_channel_solo ( lscp_client_t *pClient, int iSamplerChannel, int iSolo )
1687     {
1688 capela 952 char szQuery[LSCP_BUFSIZ];
1689 capela 735
1690 capela 952 if (iSamplerChannel < 0 || iSolo < 0 || iSolo > 1)
1691     return LSCP_FAILED;
1692 capela 735
1693 capela 952 sprintf(szQuery, "SET CHANNEL SOLO %d %d\r\n", iSamplerChannel, iSolo);
1694     return lscp_client_query(pClient, szQuery);
1695 capela 735 }
1696    
1697    
1698     /**
1699 capela 107 * Resetting a sampler channel:
1700     * RESET CHANNEL <sampler-channel>
1701     *
1702     * @param pClient Pointer to client instance structure.
1703     * @param iSamplerChannel Sampler channel number.
1704     *
1705     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1706     */
1707     lscp_status_t lscp_reset_channel ( lscp_client_t *pClient, int iSamplerChannel )
1708     {
1709 capela 952 char szQuery[LSCP_BUFSIZ];
1710 capela 107
1711 capela 952 if (iSamplerChannel < 0)
1712     return LSCP_FAILED;
1713 capela 107
1714 capela 952 sprintf(szQuery, "RESET CHANNEL %d\r\n", iSamplerChannel);
1715     return lscp_client_query(pClient, szQuery);
1716 capela 107 }
1717    
1718    
1719 capela 213 /**
1720     * Resetting the sampler:
1721     * RESET
1722     *
1723     * @param pClient Pointer to client instance structure.
1724     *
1725     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1726     */
1727     lscp_status_t lscp_reset_sampler ( lscp_client_t *pClient )
1728     {
1729 capela 994 // Do actual whole sampler reset...
1730 capela 952 return lscp_client_query(pClient, "RESET\r\n");
1731 capela 213 }
1732    
1733    
1734 capela 564 /**
1735     * Getting information about the server.
1736     * GET SERVER INFO
1737     *
1738     * @param pClient Pointer to client instance structure.
1739     *
1740     * @returns A pointer to a @ref lscp_server_info_t structure, with all the
1741     * information of the current connected server, or NULL in case of failure.
1742     */
1743     lscp_server_info_t *lscp_get_server_info ( lscp_client_t *pClient )
1744     {
1745 capela 952 lscp_server_info_t *pServerInfo;
1746     const char *pszResult;
1747     const char *pszSeps = ":";
1748     const char *pszCrlf = "\r\n";
1749     char *pszToken;
1750     char *pch;
1751 capela 564
1752 capela 975 if (pClient == NULL)
1753     return NULL;
1754    
1755 capela 952 // Lock this section up.
1756     lscp_mutex_lock(pClient->mutex);
1757 capela 564
1758 capela 952 pServerInfo = &(pClient->server_info);
1759     lscp_server_info_reset(pServerInfo);
1760 capela 564
1761 capela 952 if (lscp_client_call(pClient, "GET SERVER INFO\r\n", 1) == LSCP_OK) {
1762     pszResult = lscp_client_get_result(pClient);
1763     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
1764     while (pszToken) {
1765     if (strcasecmp(pszToken, "DESCRIPTION") == 0) {
1766     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1767     if (pszToken)
1768     lscp_unquote_dup(&(pServerInfo->description), &pszToken);
1769     }
1770     else if (strcasecmp(pszToken, "VERSION") == 0) {
1771     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1772     if (pszToken)
1773     lscp_unquote_dup(&(pServerInfo->version), &pszToken);
1774     }
1775 capela 977 else if (strcasecmp(pszToken, "PROTOCOL_VERSION") == 0) {
1776     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
1777     if (pszToken)
1778     lscp_unquote_dup(&(pServerInfo->protocol_version), &pszToken);
1779     }
1780 capela 952 pszToken = lscp_strtok(NULL, pszSeps, &(pch));
1781     }
1782     }
1783     else pServerInfo = NULL;
1784 capela 564
1785 capela 952 // Unlock this section down.
1786     lscp_mutex_unlock(pClient->mutex);
1787 capela 564
1788 capela 952 return pServerInfo;
1789 capela 564 }
1790    
1791    
1792 capela 946 /**
1793     * Current total number of active voices:
1794     * GET TOTAL_VOICE_COUNT
1795     *
1796     * @param pClient Pointer to client instance structure.
1797     *
1798     * @returns The total number of voices currently active,
1799     * -1 in case of failure.
1800     */
1801     int lscp_get_total_voice_count ( lscp_client_t *pClient )
1802     {
1803 capela 952 int iVoiceCount = -1;
1804 capela 946
1805 capela 975 if (pClient == NULL)
1806     return -1;
1807    
1808 capela 952 // Lock this section up.
1809     lscp_mutex_lock(pClient->mutex);
1810 capela 946
1811 capela 952 if (lscp_client_call(pClient, "GET TOTAL_VOICE_COUNT\r\n", 0) == LSCP_OK)
1812     iVoiceCount = atoi(lscp_client_get_result(pClient));
1813 capela 946
1814 capela 952 // Unlock this section down.
1815     lscp_mutex_unlock(pClient->mutex);
1816 capela 946
1817 capela 952 return iVoiceCount;
1818 capela 946 }
1819    
1820    
1821     /**
1822     * Maximum amount of active voices:
1823     * GET TOTAL_VOICE_COUNT_MAX
1824     *
1825     * @param pClient Pointer to client instance structure.
1826     *
1827     * @returns The maximum amount of voices currently active,
1828     * -1 in case of failure.
1829     */
1830     int lscp_get_total_voice_count_max ( lscp_client_t *pClient )
1831     {
1832 capela 952 int iVoiceCount = -1;
1833 capela 946
1834 capela 975 if (pClient == NULL)
1835     return -1;
1836    
1837 capela 952 // Lock this section up.
1838     lscp_mutex_lock(pClient->mutex);
1839 capela 946
1840 capela 952 if (lscp_client_call(pClient, "GET TOTAL_VOICE_COUNT_MAX\r\n", 0) == LSCP_OK)
1841     iVoiceCount = atoi(lscp_client_get_result(pClient));
1842 capela 946
1843 capela 952 // Unlock this section down.
1844     lscp_mutex_unlock(pClient->mutex);
1845 capela 946
1846 capela 952 return iVoiceCount;
1847 capela 946 }
1848    
1849    
1850     /**
1851 capela 1019 * Get global volume attenuation:
1852     * GET VOLUME
1853     *
1854     * @param pClient Pointer to client instance structure.
1855     *
1856     * @returns The global volume as positive floating point value usually in
1857     * the range between 0.0 and 1.0; in case of failure 0.0 is returned.
1858     */
1859     float lscp_get_volume ( lscp_client_t *pClient )
1860     {
1861     float fVolume = 0.0f;
1862    
1863     if (pClient == NULL)
1864     return 0.0f;
1865    
1866     // Lock this section up.
1867     lscp_mutex_lock(pClient->mutex);
1868    
1869     if (lscp_client_call(pClient, "GET VOLUME\r\n", 0) == LSCP_OK)
1870     fVolume = (float) atof(lscp_client_get_result(pClient));
1871    
1872     // Unlock this section down.
1873     lscp_mutex_unlock(pClient->mutex);
1874    
1875     return fVolume;
1876     }
1877    
1878    
1879     /**
1880     * Setting global volume attenuation:
1881     * SET VOLUME <volume>
1882     *
1883     * @param pClient Pointer to client instance structure.
1884     * @param fVolume Global volume parameter as positive floating point
1885     * value usually be in the range between 0.0 and 1.0,
1886     * that is for attenuating the overall volume.
1887     *
1888     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1889     */
1890     lscp_status_t lscp_set_volume ( lscp_client_t *pClient, float fVolume )
1891     {
1892     char szQuery[LSCP_BUFSIZ];
1893    
1894     if (fVolume < 0.0f)
1895     return LSCP_FAILED;
1896    
1897     sprintf(szQuery, "SET VOLUME %g\r\n", fVolume);
1898     return lscp_client_query(pClient, szQuery);
1899     }
1900    
1901    
1902     /**
1903     * Add an effect send to a sampler channel:
1904     * CREATE FX_SEND <sampler-channel> <midi-ctrl> [<name>]
1905     *
1906     * @param pClient Pointer to client instance structure.
1907     * @param iSamplerChannel Sampler channel number.
1908     * @param iMidiController MIDI controller used to alter the effect,
1909     * usually a number between 0 and 127.
1910     * @param pszName Optional name for the effect send entity,
1911     * does not have to be unique.
1912     *
1913     * @returns The new effect send number identifier, or -1 in case of failure.
1914     */
1915     int lscp_create_fxsend ( lscp_client_t *pClient, int iSamplerChannel, int iMidiController, const char *pszFxName )
1916     {
1917     int iFxSend = -1;
1918     char szQuery[LSCP_BUFSIZ];
1919    
1920     if (pClient == NULL)
1921     return -1;
1922     if (iSamplerChannel < 0 || iMidiController < 0 || iMidiController > 127)
1923     return -1;
1924    
1925     // Lock this section up.
1926     lscp_mutex_lock(pClient->mutex);
1927    
1928     sprintf(szQuery, "CREATE FX_SEND %d %d", iSamplerChannel, iMidiController);
1929    
1930     if (pszFxName)
1931     sprintf(szQuery + strlen(szQuery), " '%s'", pszFxName);
1932    
1933     strcat(szQuery, "\r\n");
1934    
1935     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
1936     iFxSend = atoi(lscp_client_get_result(pClient));
1937    
1938     // Unlock this section down.
1939     lscp_mutex_unlock(pClient->mutex);
1940    
1941     return iFxSend;
1942     }
1943    
1944    
1945     /**
1946     * Remove an effect send from a sampler channel:
1947     * DESTROY FX_SEND <sampler-channel> <fx-send-id>
1948     *
1949     * @param pClient Pointer to client instance structure.
1950     * @param iSamplerChannel Sampler channel number.
1951     * @param iFxSend Effect send number.
1952     *
1953     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
1954     */
1955     lscp_status_t lscp_destroy_fxsend ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend )
1956     {
1957     char szQuery[LSCP_BUFSIZ];
1958    
1959     if (iSamplerChannel < 0 || iFxSend < 0)
1960     return LSCP_FAILED;
1961    
1962     sprintf(szQuery, "DESTROY FX_SEND %d %d\r\n", iSamplerChannel, iFxSend);
1963    
1964     return lscp_client_query(pClient, szQuery);
1965     }
1966    
1967    
1968     /**
1969     * Get amount of effect sends on a sampler channel:
1970     * GET FX_SENDS <sampler-channel>
1971     *
1972     * @param pClient Pointer to client instance structure.
1973     * @param iSamplerChannel Sampler channel number.
1974     *
1975     * @returns The current total number of effect sends of the sampler channel
1976     * on success, -1 otherwise.
1977     */
1978     int lscp_get_fxsends ( lscp_client_t *pClient, int iSamplerChannel )
1979     {
1980     int iFxSends = -1;
1981     char szQuery[LSCP_BUFSIZ];
1982    
1983     if (pClient == NULL)
1984     return -1;
1985     if (iSamplerChannel < 0)
1986     return -1;
1987    
1988     // Lock this section up.
1989     lscp_mutex_lock(pClient->mutex);
1990    
1991     sprintf(szQuery, "GET FX_SENDS %d\r\n", iSamplerChannel);
1992    
1993     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
1994     iFxSends = atoi(lscp_client_get_result(pClient));
1995    
1996     // Unlock this section doen.
1997     lscp_mutex_unlock(pClient->mutex);
1998    
1999     return iFxSends;
2000     }
2001    
2002    
2003     /**
2004     * List all effect sends on a sampler channel:
2005     * LIST FX_SENDS <sampler-channel>
2006     *
2007     * @param pClient Pointer to client instance structure.
2008     * @param iSamplerChannel Sampler channel number.
2009     *
2010     * @returns An array of the effect sends identifiers as positive integers,
2011     * terminated with -1 on success, NULL otherwise.
2012     */
2013     int *lscp_list_fxsends ( lscp_client_t *pClient, int iSamplerChannel )
2014     {
2015     const char *pszSeps = ",";
2016     char szQuery[LSCP_BUFSIZ];
2017    
2018     if (pClient == NULL)
2019     return NULL;
2020    
2021     // Lock this section up.
2022     lscp_mutex_lock(pClient->mutex);
2023    
2024     if (pClient->fxsends) {
2025     lscp_isplit_destroy(pClient->fxsends);
2026     pClient->fxsends = NULL;
2027     }
2028    
2029     sprintf(szQuery, "LIST FX_SENDS %d\r\n", iSamplerChannel);
2030    
2031     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
2032     pClient->fxsends = lscp_isplit_create(lscp_client_get_result(pClient), pszSeps);
2033    
2034     // Unlock this section down.
2035     lscp_mutex_unlock(pClient->mutex);
2036    
2037     return pClient->fxsends;
2038     }
2039    
2040    
2041     /**
2042     * Getting effect send information
2043     * GET FX_SEND INFO <sampler-channel> <fx-send-id>
2044     *
2045     * @param pClient Pointer to client instance structure.
2046     * @param iSamplerChannel Sampler channel number.
2047     * @param iFxSend Effect send number.
2048     *
2049     * @returns A pointer to a @ref lscp_fxsend_info_t structure, with the
2050     * information of the given FX send, or NULL in case of failure.
2051     */
2052     lscp_fxsend_info_t *lscp_get_fxsend_info ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend )
2053     {
2054     lscp_fxsend_info_t *pFxSendInfo;
2055     char szQuery[LSCP_BUFSIZ];
2056     const char *pszResult;
2057     const char *pszSeps = ":";
2058     const char *pszCrlf = "\r\n";
2059     char *pszToken;
2060     char *pch;
2061    
2062     if (pClient == NULL)
2063     return NULL;
2064     if (iSamplerChannel < 0 || iFxSend < 0)
2065     return NULL;
2066    
2067     // Lock this section up.
2068     lscp_mutex_lock(pClient->mutex);
2069    
2070     pFxSendInfo = &(pClient->fxsend_info);
2071     lscp_fxsend_info_reset(pFxSendInfo);
2072    
2073     sprintf(szQuery, "GET FX_SEND INFO %d %d\r\n", iSamplerChannel, iFxSend);
2074     if (lscp_client_call(pClient, szQuery, 1) == LSCP_OK) {
2075     pszResult = lscp_client_get_result(pClient);
2076     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
2077     while (pszToken) {
2078     if (strcasecmp(pszToken, "NAME") == 0) {
2079     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2080     if (pszToken)
2081     lscp_unquote_dup(&(pFxSendInfo->name), &pszToken);
2082     }
2083     else if (strcasecmp(pszToken, "MIDI_CONTROLLER") == 0) {
2084     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2085     if (pszToken)
2086     pFxSendInfo->midi_controller = atoi(lscp_ltrim(pszToken));
2087     }
2088     else if (strcasecmp(pszToken, "AUDIO_OUTPUT_ROUTING") == 0) {
2089     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2090     if (pszToken) {
2091     if (pFxSendInfo->audio_routing)
2092 capela 1020 lscp_isplit_destroy(pFxSendInfo->audio_routing);
2093     pFxSendInfo->audio_routing = lscp_isplit_create(pszToken, ",");
2094 capela 1019 }
2095     }
2096 capela 1031 else if (strcasecmp(pszToken, "LEVEL") == 0) {
2097     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2098     if (pszToken)
2099     pFxSendInfo->level = (float) atof(lscp_ltrim(pszToken));
2100     }
2101 capela 1019 pszToken = lscp_strtok(NULL, pszSeps, &(pch));
2102     }
2103     }
2104     else pFxSendInfo = NULL;
2105    
2106     // Unlock this section up.
2107     lscp_mutex_unlock(pClient->mutex);
2108    
2109     return pFxSendInfo;
2110     }
2111    
2112 schoenebeck 1665 /**
2113     * Alter effect send's name:
2114     * @code
2115     * SET FX_SEND NAME <sampler-chan> <fx-send-id> <name>
2116     * @endcode
2117     *
2118     * @param pClient Pointer to client instance structure.
2119     * @param iSamplerChannel Sampler channel number.
2120     * @param iFxSend Effect send number.
2121     * @param pszFxName Effect send's new name.
2122     *
2123     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2124     */
2125     lscp_status_t lscp_set_fxsend_name ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend, const char *pszFxName )
2126     {
2127     char szQuery[LSCP_BUFSIZ];
2128 capela 1019
2129 schoenebeck 1665 if (!pClient || iSamplerChannel < 0 || iFxSend < 0 || !pszFxName)
2130     return LSCP_FAILED;
2131    
2132 schoenebeck 1666 snprintf(szQuery, LSCP_BUFSIZ, "SET FX_SEND NAME %d %d '%s'\r\n", iSamplerChannel, iFxSend, pszFxName);
2133 schoenebeck 1665 return lscp_client_query(pClient, szQuery);
2134     }
2135    
2136 capela 1019 /**
2137     * Alter effect send's audio routing:
2138     * SET FX_SEND AUDIO_OUTPUT_CHANNEL <sampler-chan> <fx-send-id>
2139     * <audio-src> <audio-dst>
2140     *
2141     * @param pClient Pointer to client instance structure.
2142     * @param iSamplerChannel Sampler channel number.
2143     * @param iFxSend Effect send number.
2144     * @param iAudioSrc Audio output device channel to be routed from.
2145     * @param iAudioDst Audio output device channel to be routed into.
2146     *
2147     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2148     */
2149     lscp_status_t lscp_set_fxsend_audio_channel ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend, int iAudioSrc, int iAudioDst )
2150     {
2151     char szQuery[LSCP_BUFSIZ];
2152    
2153     if (iSamplerChannel < 0 || iFxSend < 0 || iAudioSrc < 0 || iAudioDst < 0)
2154     return LSCP_FAILED;
2155    
2156     sprintf(szQuery, "SET FX_SEND AUDIO_OUTPUT_CHANNEL %d %d %d %d\r\n", iSamplerChannel, iFxSend, iAudioSrc, iAudioDst);
2157     return lscp_client_query(pClient, szQuery);
2158     }
2159    
2160    
2161     /**
2162 capela 1031 * Alter effect send's MIDI controller:
2163     * SET FX_SEND MIDI_CONTROLLER <sampler-chan> <fx-send-id> <midi-ctrl>
2164     *
2165     * @param pClient Pointer to client instance structure.
2166     * @param iSamplerChannel Sampler channel number.
2167     * @param iFxSend Effect send number.
2168     * @param iMidiController MIDI controller used to alter the effect,
2169     * usually a number between 0 and 127.
2170     *
2171     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2172     */
2173     lscp_status_t lscp_set_fxsend_midi_controller ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend, int iMidiController )
2174     {
2175     char szQuery[LSCP_BUFSIZ];
2176    
2177     if (iSamplerChannel < 0 || iFxSend < 0 || iMidiController < 0 || iMidiController > 127)
2178     return LSCP_FAILED;
2179    
2180 schoenebeck 1365 sprintf(szQuery, "SET FX_SEND MIDI_CONTROLLER %d %d %d\r\n", iSamplerChannel, iFxSend, iMidiController);
2181 capela 1031 return lscp_client_query(pClient, szQuery);
2182     }
2183    
2184    
2185     /**
2186     * Alter effect send's audio level:
2187     * SET FX_SEND LEVEL <sampler-chan> <fx-send-id> <level>
2188     *
2189     * @param pClient Pointer to client instance structure.
2190     * @param iSamplerChannel Sampler channel number.
2191     * @param iFxSend Effect send number.
2192     * @param fLevel Effect send volume level.
2193     *
2194     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2195     */
2196     lscp_status_t lscp_set_fxsend_level ( lscp_client_t *pClient, int iSamplerChannel, int iFxSend, float fLevel )
2197     {
2198     char szQuery[LSCP_BUFSIZ];
2199    
2200     if (iSamplerChannel < 0 || iFxSend < 0 || fLevel < 0.0f)
2201     return LSCP_FAILED;
2202    
2203 schoenebeck 1365 sprintf(szQuery, "SET FX_SEND LEVEL %d %d %f\r\n", iSamplerChannel, iFxSend, fLevel);
2204 capela 1031 return lscp_client_query(pClient, szQuery);
2205     }
2206    
2207    
2208     /**
2209 capela 975 * Create a new MIDI instrument map:
2210     * ADD MIDI_INSTRUMENT_MAP [<name>]
2211     *
2212     * @param pClient Pointer to client instance structure.
2213     * @param pszMapName MIDI instrument map name (optional)
2214     *
2215     * @returns The new MIDI instrument map number identifier,
2216     * or -1 in case of failure.
2217     */
2218     int lscp_add_midi_instrument_map ( lscp_client_t *pClient, const char *pszMapName )
2219     {
2220     int iMidiMap = -1;
2221     char szQuery[LSCP_BUFSIZ];
2222    
2223     if (pClient == NULL)
2224     return -1;
2225    
2226     // Lock this section up.
2227     lscp_mutex_lock(pClient->mutex);
2228    
2229     strcpy(szQuery, "ADD MIDI_INSTRUMENT_MAP");
2230    
2231     if (pszMapName)
2232     sprintf(szQuery + strlen(szQuery), " '%s'", pszMapName);
2233    
2234     strcat(szQuery, "\r\n");
2235    
2236     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
2237     iMidiMap = atoi(lscp_client_get_result(pClient));
2238    
2239     // Unlock this section down.
2240     lscp_mutex_unlock(pClient->mutex);
2241    
2242     return iMidiMap;
2243     }
2244    
2245    
2246     /**
2247     * Delete one particular or all MIDI instrument maps:
2248     * REMOVE MIDI_INSTRUMENT_MAP <midi-map>
2249     *
2250     * @param pClient Pointer to client instance structure.
2251     * @param iMidiMap MIDI instrument map number.
2252     *
2253     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2254     */
2255     lscp_status_t lscp_remove_midi_instrument_map ( lscp_client_t *pClient, int iMidiMap )
2256     {
2257     char szQuery[LSCP_BUFSIZ];
2258    
2259     if (iMidiMap < 0)
2260     return LSCP_FAILED;
2261    
2262     sprintf(szQuery, "REMOVE MIDI_INSTRUMENT_MAP %d\r\n", iMidiMap);
2263    
2264     return lscp_client_query(pClient, szQuery);
2265     }
2266    
2267    
2268     /**
2269     * Get amount of existing MIDI instrument maps:
2270     * GET MIDI_INSTRUMENT_MAPS
2271     *
2272     * @param pClient Pointer to client instance structure.
2273     *
2274     * @returns The current total number of MIDI instrument maps
2275     * on success, -1 otherwise.
2276     */
2277     int lscp_get_midi_instrument_maps ( lscp_client_t *pClient )
2278     {
2279     int iMidiMaps = -1;
2280    
2281     if (pClient == NULL)
2282     return -1;
2283    
2284     // Lock this section up.
2285     lscp_mutex_lock(pClient->mutex);
2286    
2287     if (lscp_client_call(pClient, "GET MIDI_INSTRUMENT_MAPS\r\n", 0) == LSCP_OK)
2288     iMidiMaps = atoi(lscp_client_get_result(pClient));
2289    
2290     // Unlock this section doen.
2291     lscp_mutex_unlock(pClient->mutex);
2292    
2293     return iMidiMaps;
2294     }
2295    
2296    
2297     /**
2298     * Getting all created MIDI instrument maps:
2299     * LIST MIDI_INSTRUMENT_MAPS
2300     *
2301     * @param pClient Pointer to client instance structure.
2302     *
2303     * @returns An array of the MIDI instrument map identifiers as positive
2304     * integers, terminated with -1 on success, NULL otherwise.
2305     */
2306     int *lscp_list_midi_instrument_maps ( lscp_client_t *pClient )
2307     {
2308     const char *pszSeps = ",";
2309    
2310     if (pClient == NULL)
2311     return NULL;
2312    
2313     // Lock this section up.
2314     lscp_mutex_lock(pClient->mutex);
2315    
2316     if (pClient->midi_maps) {
2317     lscp_isplit_destroy(pClient->midi_maps);
2318     pClient->midi_maps = NULL;
2319     }
2320    
2321     if (lscp_client_call(pClient, "LIST MIDI_INSTRUMENT_MAPS\r\n", 0) == LSCP_OK)
2322     pClient->midi_maps = lscp_isplit_create(lscp_client_get_result(pClient), pszSeps);
2323    
2324     // Unlock this section down.
2325     lscp_mutex_unlock(pClient->mutex);
2326    
2327     return pClient->midi_maps;
2328     }
2329    
2330    
2331     /**
2332     * Getting a MIDI instrument map name:
2333     * GET MIDI_INSTRUMENT_MAP INFO <midi-map>
2334     *
2335     * @param pClient Pointer to client instance structure.
2336     * @param iMidiMap MIDI instrument map number.
2337     *
2338     * @returns The MIDI instrument map name on success, NULL on failure.
2339     */
2340     const char *lscp_get_midi_instrument_map_name ( lscp_client_t *pClient, int iMidiMap )
2341     {
2342     char szQuery[LSCP_BUFSIZ];
2343     const char *pszResult;
2344     const char *pszSeps = ":";
2345     const char *pszCrlf = "\r\n";
2346     char *pszToken;
2347     char *pch;
2348    
2349     if (pClient == NULL)
2350     return NULL;
2351     if (iMidiMap < 0)
2352     return NULL;
2353    
2354     // Lock this section up.
2355     lscp_mutex_lock(pClient->mutex);
2356    
2357     if (pClient->midi_map_name) {
2358     free(pClient->midi_map_name);
2359     pClient->midi_map_name = NULL;
2360     }
2361    
2362     sprintf(szQuery, "GET MIDI_INSTRUMENT_MAP INFO %d\r\n", iMidiMap);
2363 capela 1019 if (lscp_client_call(pClient, szQuery, 1) == LSCP_OK) {
2364 capela 975 pszResult = lscp_client_get_result(pClient);
2365     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
2366     while (pszToken) {
2367     if (strcasecmp(pszToken, "NAME") == 0) {
2368     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2369     if (pszToken)
2370     lscp_unquote_dup(&(pClient->midi_map_name), &pszToken);
2371     }
2372     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
2373     }
2374     }
2375    
2376     // Unlock this section down.
2377     lscp_mutex_unlock(pClient->mutex);
2378    
2379     return pClient->midi_map_name;
2380     }
2381    
2382    
2383     /**
2384     * Renaming a MIDI instrument map:
2385     * SET MIDI_INSTRUMENT_MAP NAME <midi-map> <map-name>
2386     *
2387     * @param pClient Pointer to client instance structure.
2388     * @param iMidiMap MIDI instrument map number.
2389     * @param pszMapName MIDI instrument map name.
2390     *
2391     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2392     */
2393     lscp_status_t lscp_set_midi_instrument_map_name ( lscp_client_t *pClient, int iMidiMap, const char *pszMapName )
2394     {
2395     char szQuery[LSCP_BUFSIZ];
2396    
2397     if (iMidiMap < 0)
2398     return LSCP_FAILED;
2399     if (pszMapName == NULL)
2400     return LSCP_FAILED;
2401    
2402     sprintf(szQuery, "SET MIDI_INSTRUMENT_MAP NAME %d '%s'\r\n",
2403     iMidiMap, pszMapName);
2404    
2405     return lscp_client_query(pClient, szQuery);
2406     }
2407    
2408    
2409     /**
2410 capela 946 * Create or replace a MIDI instrumnet map entry:
2411 capela 975 * MAP MIDI_INSTRUMENT <midi-map> <midi-bank> <midi-prog>
2412     * <engine-name> <filename> <instr-index> <volume> [<load-mode> [<name>]}
2413 capela 946 *
2414     * @param pClient Pointer to client instance structure.
2415     * @param pMidiInstr MIDI instrument bank and program parameter key.
2416     * @param pszEngineName Engine name.
2417     * @param pszFileName Instrument file name.
2418     * @param iInstrIndex Instrument index number.
2419     * @param fVolume Reflects the master volume of the instrument as
2420     * a positive floating point number, where a value
2421     * less than 1.0 for attenuation, and greater than
2422     * 1.0 for amplification.
2423     * @param load_mode Instrument load life-time strategy, either
2424     * @ref LSCP_LOAD_DEFAULT, or
2425     * @ref LSCP_LOAD_ON_DEMAND, or
2426     * @ref LSCP_LOAD_ON_DEMAND_HOLD, or
2427     * @ref LSCP_LOAD_PERSISTENT.
2428 capela 975 * @param pszName Instrument custom name for the map entry (optional).
2429 capela 946 *
2430     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2431     */
2432     lscp_status_t lscp_map_midi_instrument ( lscp_client_t *pClient, lscp_midi_instrument_t *pMidiInstr, const char *pszEngineName, const char *pszFileName, int iInstrIndex, float fVolume, lscp_load_mode_t load_mode, const char *pszName )
2433     {
2434 capela 952 char szQuery[LSCP_BUFSIZ];
2435 capela 963
2436 capela 975 if (pMidiInstr->map < 0)
2437 capela 952 return LSCP_FAILED;
2438 capela 975 if (pMidiInstr->bank < 0 || pMidiInstr->bank > 16383)
2439 capela 952 return LSCP_FAILED;
2440 capela 975 if (pMidiInstr->prog < 0 || pMidiInstr->prog > 127)
2441 capela 952 return LSCP_FAILED;
2442     if (pszEngineName == NULL || pszFileName == NULL)
2443     return LSCP_FAILED;
2444 capela 963
2445 capela 952 if (fVolume < 0.0f)
2446     fVolume = 1.0f;
2447 capela 963
2448 capela 952 sprintf(szQuery, "MAP MIDI_INSTRUMENT %d %d %d %s '%s' %d %g",
2449 capela 975 pMidiInstr->map, pMidiInstr->bank, pMidiInstr->prog,
2450 capela 952 pszEngineName, pszFileName, iInstrIndex, fVolume);
2451 capela 963
2452 capela 952 switch (load_mode) {
2453     case LSCP_LOAD_PERSISTENT:
2454     strcat(szQuery, " PERSISTENT");
2455     break;
2456     case LSCP_LOAD_ON_DEMAND_HOLD:
2457     strcat(szQuery, " ON_DEMAND_HOLD");
2458     break;
2459     case LSCP_LOAD_ON_DEMAND:
2460 capela 963 strcat(szQuery, " ON_DEMAND");
2461 capela 952 break;
2462     case LSCP_LOAD_DEFAULT:
2463     default:
2464     break;
2465     }
2466 capela 963
2467 capela 952 if (pszName)
2468     sprintf(szQuery + strlen(szQuery), " '%s'", pszName);
2469 capela 963
2470 capela 952 strcat(szQuery, "\r\n");
2471 capela 963
2472 capela 952 return lscp_client_query(pClient, szQuery);
2473 capela 946 }
2474    
2475    
2476     /**
2477     * Remove an entry from the MIDI instrument map:
2478 capela 975 * UNMAP MIDI_INSTRUMENT <midi-map> <midi-bank> <midi-prog>
2479 capela 946 *
2480     * @param pClient Pointer to client instance structure.
2481     * @param pMidiInstr MIDI instrument bank and program parameter key.
2482     *
2483     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2484     */
2485     lscp_status_t lscp_unmap_midi_instrument ( lscp_client_t *pClient, lscp_midi_instrument_t *pMidiInstr )
2486     {
2487 capela 952 char szQuery[LSCP_BUFSIZ];
2488 capela 946
2489 capela 975 if (pMidiInstr->map < 0)
2490 capela 952 return LSCP_FAILED;
2491 capela 975 if (pMidiInstr->bank < 0 || pMidiInstr->bank > 16383)
2492 capela 952 return LSCP_FAILED;
2493 capela 975 if (pMidiInstr->prog < 0 || pMidiInstr->prog > 127)
2494 capela 952 return LSCP_FAILED;
2495 capela 946
2496 capela 952 sprintf(szQuery, "UNMAP MIDI_INSTRUMENT %d %d %d\r\n",
2497 capela 975 pMidiInstr->map, pMidiInstr->bank, pMidiInstr->prog);
2498 capela 946
2499 capela 952 return lscp_client_query(pClient, szQuery);
2500 capela 946 }
2501    
2502    
2503     /**
2504     * Get the total count of MIDI instrument map entries:
2505 capela 975 * GET MIDI_INSTRUMENTS ALL|<midi-map>
2506 capela 946 *
2507     * @param pClient Pointer to client instance structure.
2508 capela 975 * @param iMidiMap MIDI instrument map number, or @ref LSCP_MIDI_MAP_ALL .
2509 capela 946 *
2510     * @returns The current total number of MIDI instrument map entries
2511     * on success, -1 otherwise.
2512     */
2513 capela 975 int lscp_get_midi_instruments ( lscp_client_t *pClient, int iMidiMap )
2514 capela 946 {
2515 capela 952 int iInstruments = -1;
2516 capela 975 char szQuery[LSCP_BUFSIZ];
2517 capela 946
2518 capela 975 if (pClient == NULL)
2519     return -1;
2520    
2521 capela 952 // Lock this section up.
2522     lscp_mutex_lock(pClient->mutex);
2523 capela 946
2524 capela 975 strcpy(szQuery, "GET MIDI_INSTRUMENTS ");
2525    
2526     if (iMidiMap < 0)
2527     strcat(szQuery, "ALL");
2528     else
2529     sprintf(szQuery + strlen(szQuery), "%d", iMidiMap);
2530    
2531     strcat(szQuery, "\r\n");
2532    
2533     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
2534 capela 952 iInstruments = atoi(lscp_client_get_result(pClient));
2535 capela 946
2536 capela 952 // Unlock this section down.
2537     lscp_mutex_unlock(pClient->mutex);
2538 capela 946
2539 capela 952 return iInstruments;
2540 capela 946 }
2541    
2542    
2543     /**
2544 capela 948 * Getting indeces of all MIDI instrument map entries:
2545 capela 975 * LIST MIDI_INSTRUMENTS ALL|<midi-map>
2546 capela 948 *
2547     * @param pClient Pointer to client instance structure.
2548 capela 975 * @param iMidiMap MIDI instrument map number, or @ref LSCP_MIDI_MAP_ALL .
2549 capela 948 *
2550     * @returns An array of @ref lscp_midi_instrument_t, terminated with the
2551     * {-1,-1,-1} triplet, NULL otherwise.
2552     */
2553 capela 975 lscp_midi_instrument_t *lscp_list_midi_instruments ( lscp_client_t *pClient, int iMidiMap )
2554 capela 948 {
2555 capela 975 char szQuery[LSCP_BUFSIZ];
2556    
2557 capela 952 if (pClient == NULL)
2558     return NULL;
2559 capela 948
2560 capela 952 // Lock this section up.
2561     lscp_mutex_lock(pClient->mutex);
2562 capela 948
2563 capela 952 if (pClient->midi_instruments) {
2564     lscp_midi_instruments_destroy(pClient->midi_instruments);
2565     pClient->midi_instruments = NULL;
2566     }
2567 capela 948
2568 capela 975 strcpy(szQuery, "LIST MIDI_INSTRUMENTS ");
2569    
2570     if (iMidiMap < 0)
2571     strcat(szQuery, "ALL");
2572     else
2573     sprintf(szQuery + strlen(szQuery), "%d", iMidiMap);
2574    
2575     strcat(szQuery, "\r\n");
2576    
2577     if (lscp_client_call(pClient, szQuery, 0) == LSCP_OK)
2578 capela 952 pClient->midi_instruments = lscp_midi_instruments_create(lscp_client_get_result(pClient));
2579 capela 948
2580 capela 952 // Unlock this section down.
2581     lscp_mutex_unlock(pClient->mutex);
2582 capela 948
2583 capela 952 return pClient->midi_instruments;
2584 capela 948 }
2585    
2586    
2587     /**
2588 capela 946 * Getting information about a MIDI instrument map entry:
2589 capela 975 * GET MIDI_INSTRUMENT INFO <midi-map> <midi-bank> <midi-prog>
2590 capela 946 *
2591     * @param pClient Pointer to client instance structure.
2592     * @param pMidiInstr MIDI instrument bank and program parameter key.
2593     *
2594     * @returns A pointer to a @ref lscp_midi_instrument_info_t structure,
2595     * with all the information of the given MIDI instrument map entry,
2596     * or NULL in case of failure.
2597     */
2598     lscp_midi_instrument_info_t *lscp_get_midi_instrument_info ( lscp_client_t *pClient, lscp_midi_instrument_t *pMidiInstr )
2599     {
2600 capela 952 lscp_midi_instrument_info_t *pInstrInfo;
2601     char szQuery[LSCP_BUFSIZ];
2602     const char *pszResult;
2603     const char *pszSeps = ":";
2604     const char *pszCrlf = "\r\n";
2605     char *pszToken;
2606     char *pch;
2607 capela 963
2608 capela 975 if (pClient == NULL)
2609 capela 952 return NULL;
2610 capela 975 if (pMidiInstr->map < 0)
2611 capela 952 return NULL;
2612 capela 975 if (pMidiInstr->bank < 0 || pMidiInstr->bank > 16383)
2613 capela 952 return NULL;
2614 capela 975 if (pMidiInstr->prog < 0 || pMidiInstr->prog > 127)
2615     return NULL;
2616 capela 963
2617 capela 952 // Lock this section up.
2618     lscp_mutex_lock(pClient->mutex);
2619    
2620     pInstrInfo = &(pClient->midi_instrument_info);
2621     lscp_midi_instrument_info_reset(pInstrInfo);
2622 capela 963
2623 capela 952 sprintf(szQuery, "GET MIDI_INSTRUMENT INFO %d %d %d\r\n",
2624 capela 975 pMidiInstr->map, pMidiInstr->bank, pMidiInstr->prog);
2625 capela 952 if (lscp_client_call(pClient, szQuery, 1) == LSCP_OK) {
2626     pszResult = lscp_client_get_result(pClient);
2627     pszToken = lscp_strtok((char *) pszResult, pszSeps, &(pch));
2628     while (pszToken) {
2629     if (strcasecmp(pszToken, "NAME") == 0) {
2630     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2631     if (pszToken)
2632     lscp_unquote_dup(&(pInstrInfo->name), &pszToken);
2633     }
2634     else if (strcasecmp(pszToken, "ENGINE_NAME") == 0) {
2635     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2636     if (pszToken)
2637     lscp_unquote_dup(&(pInstrInfo->engine_name), &pszToken);
2638     }
2639     else if (strcasecmp(pszToken, "INSTRUMENT_FILE") == 0) {
2640     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2641     if (pszToken)
2642     lscp_unquote_dup(&(pInstrInfo->instrument_file), &pszToken);
2643     }
2644     else if (strcasecmp(pszToken, "INSTRUMENT_NR") == 0) {
2645     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2646     if (pszToken)
2647     pInstrInfo->instrument_nr = atoi(lscp_ltrim(pszToken));
2648     }
2649     else if (strcasecmp(pszToken, "INSTRUMENT_NAME") == 0) {
2650     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2651     if (pszToken)
2652     lscp_unquote_dup(&(pInstrInfo->instrument_name), &pszToken);
2653     }
2654     else if (strcasecmp(pszToken, "LOAD_MODE") == 0) {
2655     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2656     if (pszToken) {
2657     pszToken = lscp_ltrim(pszToken);
2658     if (strcasecmp(pszToken, "ON_DEMAND") == 0)
2659     pInstrInfo->load_mode = LSCP_LOAD_ON_DEMAND;
2660     else
2661     if (strcasecmp(pszToken, "ON_DEMAND_HOLD") == 0)
2662     pInstrInfo->load_mode = LSCP_LOAD_ON_DEMAND_HOLD;
2663     else
2664     if (strcasecmp(pszToken, "PERSISTENT") == 0)
2665     pInstrInfo->load_mode = LSCP_LOAD_PERSISTENT;
2666     else
2667     pInstrInfo->load_mode = LSCP_LOAD_DEFAULT;
2668     }
2669     }
2670     else if (strcasecmp(pszToken, "VOLUME") == 0) {
2671     pszToken = lscp_strtok(NULL, pszCrlf, &(pch));
2672     if (pszToken)
2673     pInstrInfo->volume = (float) atof(lscp_ltrim(pszToken));
2674     }
2675     pszToken = lscp_strtok(NULL, pszSeps, &(pch));
2676     }
2677     }
2678     else pInstrInfo = NULL;
2679 capela 963
2680 capela 952 // Unlock this section down.
2681     lscp_mutex_unlock(pClient->mutex);
2682 capela 963
2683 capela 952 return pInstrInfo;
2684 capela 946 }
2685    
2686    
2687     /**
2688     * Clear the MIDI instrumnet map:
2689 capela 975 * CLEAR MIDI_INSTRUMENTS ALL|<midi-map>
2690 capela 946 *
2691 capela 975 * @param pClient Pointer to client instance structure.
2692     * @param iMidiMap MIDI instrument map number, or @ref LSCP_MIDI_MAP_ALL .
2693 capela 946 *
2694     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2695     */
2696 capela 975 lscp_status_t lscp_clear_midi_instruments ( lscp_client_t *pClient, int iMidiMap )
2697 capela 946 {
2698 capela 975 char szQuery[LSCP_BUFSIZ];
2699    
2700     strcpy(szQuery, "CLEAR MIDI_INSTRUMENTS ");
2701    
2702     if (iMidiMap < 0)
2703     strcat(szQuery, "ALL");
2704     else
2705     sprintf(szQuery + strlen(szQuery), "%d", iMidiMap);
2706    
2707     strcat(szQuery, "\r\n");
2708    
2709     return lscp_client_query(pClient, szQuery);
2710 capela 946 }
2711    
2712 schoenebeck 1365 /**
2713 capela 1368 * Open an instrument editor application for the instrument
2714     * on the given sampler channel:
2715 capela 1412 * EDIT CHANNEL INSTRUMENT <sampler-channel>
2716 schoenebeck 1365 *
2717     * @param pClient Pointer to client instance structure.
2718     * @param iSamplerChannel Sampler Channel.
2719     *
2720     * @returns LSCP_OK on success, LSCP_FAILED otherwise.
2721     */
2722 capela 1412 lscp_status_t lscp_edit_channel_instrument ( lscp_client_t *pClient, int iSamplerChannel )
2723 schoenebeck 1365 {
2724     char szQuery[LSCP_BUFSIZ];
2725 capela 1368
2726     if (iSamplerChannel < 0)
2727     return LSCP_FAILED;
2728    
2729 capela 1412 sprintf(szQuery, "EDIT CHANNEL INSTRUMENT %d\r\n", iSamplerChannel);
2730 capela 1368
2731 schoenebeck 1365 return lscp_client_query(pClient, szQuery);
2732     }
2733 capela 946
2734 schoenebeck 1365
2735 capela 107 // end of client.c

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