2 |
* * |
* * |
3 |
* LinuxSampler - modular, streaming capable sampler * |
* LinuxSampler - modular, streaming capable sampler * |
4 |
* * |
* * |
5 |
* Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck * |
* Copyright (C) 2003-2004 by Benno Senoner and Christian Schoenebeck * |
6 |
* Copyright (C) 2005 Christian Schoenebeck * |
* Copyright (C) 2005-2008 Christian Schoenebeck * |
7 |
* * |
* * |
8 |
* This program is free software; you can redistribute it and/or modify * |
* This program is free software; you can redistribute it and/or modify * |
9 |
* it under the terms of the GNU General Public License as published by * |
* it under the terms of the GNU General Public License as published by * |
24 |
#include <getopt.h> |
#include <getopt.h> |
25 |
#include <signal.h> |
#include <signal.h> |
26 |
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|
27 |
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#if defined(WIN32) |
28 |
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// require at least Windows 2000 for the GlobalMemoryStatusEx() call |
29 |
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#define _WIN32_WINNT 0x0500 |
30 |
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#endif |
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|
32 |
#include "Sampler.h" |
#include "Sampler.h" |
33 |
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#include "common/global_private.h" |
34 |
#include "engines/EngineFactory.h" |
#include "engines/EngineFactory.h" |
35 |
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#include "plugins/InstrumentEditorFactory.h" |
36 |
#include "drivers/midi/MidiInputDeviceFactory.h" |
#include "drivers/midi/MidiInputDeviceFactory.h" |
37 |
#include "drivers/audio/AudioOutputDeviceFactory.h" |
#include "drivers/audio/AudioOutputDeviceFactory.h" |
38 |
#include "engines/gig/Profiler.h" |
#include "engines/gig/Profiler.h" |
39 |
#include "network/lscpserver.h" |
#include "network/lscpserver.h" |
40 |
#include "common/stacktrace.h" |
#include "common/stacktrace.h" |
41 |
#include "common/Features.h" |
#include "common/Features.h" |
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#include "common/atomic.h" |
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|
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using namespace LinuxSampler; |
using namespace LinuxSampler; |
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|
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Sampler* pSampler = NULL; |
Sampler* pSampler = NULL; |
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LSCPServer* pLSCPServer = NULL; |
LSCPServer* pLSCPServer = NULL; |
48 |
pthread_t main_thread; |
#if defined(WIN32) |
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// inet_aton seems missing under WIN32 |
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#ifndef INADDR_NONE |
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#define INADDR_NONE 0xffffffff |
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#endif |
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int inet_aton(const char *cp, struct in_addr *addr) |
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{ |
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addr->s_addr = inet_addr(cp); |
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return (addr->s_addr == INADDR_NONE) ? 0 : 1; |
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} |
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|
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#else |
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pid_t main_pid; |
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#endif |
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bool bPrintStatistics = false; |
bool bPrintStatistics = false; |
64 |
bool profile = false; |
bool profile = false; |
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bool tune = true; |
bool tune = true; |
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unsigned long int lscp_addr; |
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unsigned short int lscp_port; |
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|
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void parse_options(int argc, char **argv); |
void parse_options(int argc, char **argv); |
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void signal_handler(int signal); |
void signal_handler(int signal); |
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void kill_app(); |
void kill_app(); |
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static atomic_t running = ATOMIC_INIT(1); |
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|
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int main(int argc, char **argv) { |
int main(int argc, char **argv) { |
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|
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// initialize the stack trace mechanism with our binary file |
// initialize the stack trace mechanism with our binary file |
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StackTraceInit(argv[0], -1); |
StackTraceInit(argv[0], -1); |
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|
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main_thread = pthread_self(); |
#if defined(WIN32) |
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// some WIN32 memory info code which tries to determine the maximum lockable amount of memory (for debug purposes) |
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SYSTEM_INFO siSysInfo; |
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long physical_memory; |
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GetSystemInfo(&siSysInfo); |
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dmsg(1,("page size=%d\n", siSysInfo.dwPageSize)); |
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|
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MEMORYSTATUSEX statex; |
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statex.dwLength = sizeof (statex); |
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GlobalMemoryStatusEx (&statex); |
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dmsg(1, ("There are %*I64d total Kbytes of physical memory.\n", |
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8, statex.ullTotalPhys)); |
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dmsg(1, ("There are %*I64d free Kbytes of physical memory.\n", |
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8, statex.ullAvailPhys)); |
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physical_memory = statex.ullTotalPhys; |
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|
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HANDLE hProcess = GetCurrentProcess(); |
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|
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unsigned long MinimumWorkingSetSize, MaximumWorkingSetSize; |
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unsigned long DefaultMinimumWorkingSetSize, DefaultMaximumWorkingSetSize; |
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unsigned long RequestedMinimumWorkingSetSize, RequestedMaximumWorkingSetSize; |
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int res; |
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res = GetProcessWorkingSetSize(hProcess, &DefaultMinimumWorkingSetSize, &DefaultMaximumWorkingSetSize); |
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RequestedMaximumWorkingSetSize = physical_memory - 2*1024*1024; |
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RequestedMinimumWorkingSetSize = RequestedMaximumWorkingSetSize; |
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for(;;) { |
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dmsg(2,("TRYING VALUES RequestedMinimumWorkingSetSize=%d, RequestedMaximumWorkingSetSize=%d\n", RequestedMinimumWorkingSetSize, RequestedMaximumWorkingSetSize)); |
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res = SetProcessWorkingSetSize(hProcess, RequestedMinimumWorkingSetSize, RequestedMaximumWorkingSetSize); |
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dmsg(2,("AFTER SET: res = %d RequestedMinimumWorkingSetSize=%d, RequestedMaximumWorkingSetSize=%d\n", res,RequestedMinimumWorkingSetSize, RequestedMaximumWorkingSetSize)); |
111 |
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res = GetProcessWorkingSetSize(hProcess, &MinimumWorkingSetSize, &MaximumWorkingSetSize); |
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dmsg(2,("AFTER GET: res = %d MinimumWorkingSetSize=%d, MaximumWorkingSetSize=%d\n", res,MinimumWorkingSetSize, MaximumWorkingSetSize)); |
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115 |
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if( RequestedMinimumWorkingSetSize == MinimumWorkingSetSize ) { |
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dmsg(2,("RequestedMinimumWorkingSetSize == MinimumWorkingSetSize. OK !\n")); |
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break; |
118 |
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} |
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RequestedMinimumWorkingSetSize -= 10*1024*1024; |
121 |
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if(RequestedMinimumWorkingSetSize < DefaultMinimumWorkingSetSize) break; |
122 |
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} |
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dmsg(1,("AFTER GetProcessWorkingSetSize: res = %d MinimumWorkingSetSize=%d, MaximumWorkingSetSize=%d\n", res,MinimumWorkingSetSize, MaximumWorkingSetSize)); |
125 |
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#endif |
126 |
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|
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#if !defined(WIN32) |
128 |
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main_pid = getpid(); |
129 |
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#endif |
130 |
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131 |
// setting signal handler for catching SIGINT (thus e.g. <CTRL><C>) |
// setting signal handler for catching SIGINT (thus e.g. <CTRL><C>) |
132 |
signal(SIGINT, signal_handler); |
signal(SIGINT, signal_handler); |
133 |
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|
134 |
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#if defined(WIN32) |
135 |
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// FIXME: sigaction() not supported on WIN32, we ignore it for now |
136 |
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#else |
137 |
// register signal handler for all unusual signals |
// register signal handler for all unusual signals |
138 |
// (we will print the stack trace and exit) |
// (we will print the stack trace and exit) |
139 |
struct sigaction sact; |
struct sigaction sact; |
146 |
sigaction(SIGFPE, &sact, NULL); |
sigaction(SIGFPE, &sact, NULL); |
147 |
sigaction(SIGUSR1, &sact, NULL); |
sigaction(SIGUSR1, &sact, NULL); |
148 |
sigaction(SIGUSR2, &sact, NULL); |
sigaction(SIGUSR2, &sact, NULL); |
149 |
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#endif |
150 |
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|
151 |
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lscp_addr = htonl(LSCP_ADDR); |
152 |
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lscp_port = htons(LSCP_PORT); |
153 |
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|
154 |
// parse and assign command line options |
// parse and assign command line options |
155 |
parse_options(argc, argv); |
parse_options(argc, argv); |
156 |
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|
157 |
dmsg(1,("LinuxSampler %s\n", VERSION)); |
dmsg(1,("LinuxSampler %s\n", VERSION)); |
158 |
dmsg(1,("Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck\n")); |
dmsg(1,("Copyright (C) 2003,2004 by Benno Senoner and Christian Schoenebeck\n")); |
159 |
dmsg(1,("Copyright (C) 2005 Christian Schoenebeck\n")); |
dmsg(1,("Copyright (C) 2005-2007 Christian Schoenebeck\n")); |
160 |
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|
161 |
if (tune) |
if (tune) { |
162 |
{ |
// detect and print system / CPU specific features |
163 |
// detect and print system / CPU specific features |
Features::detect(); |
164 |
String sFeatures; |
dmsg(1,("Detected features: %s\n", Features::featuresAsString().c_str())); |
165 |
Features::detect(); |
// prevent slow denormal FPU modes |
166 |
#if ARCH_X86 |
Features::enableDenormalsAreZeroMode(); |
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if (Features::supportsMMX()) sFeatures += " MMX"; |
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if (Features::supportsSSE()) sFeatures += " SSE"; |
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#endif // ARCH_X86 |
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if (!sFeatures.size()) sFeatures = " None"; |
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dmsg(1,("Detected features:%s\n",sFeatures.c_str())); |
|
167 |
} |
} |
168 |
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|
169 |
// create LinuxSampler instance |
// create LinuxSampler instance |
171 |
pSampler = new Sampler; |
pSampler = new Sampler; |
172 |
dmsg(1,("OK\n")); |
dmsg(1,("OK\n")); |
173 |
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|
174 |
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dmsg(1,("Registered sampler engines: %s\n", EngineFactory::AvailableEngineTypesAsString().c_str())); |
175 |
dmsg(1,("Registered MIDI input drivers: %s\n", MidiInputDeviceFactory::AvailableDriversAsString().c_str())); |
dmsg(1,("Registered MIDI input drivers: %s\n", MidiInputDeviceFactory::AvailableDriversAsString().c_str())); |
176 |
dmsg(1,("Registered audio output drivers: %s\n", AudioOutputDeviceFactory::AvailableDriversAsString().c_str())); |
dmsg(1,("Registered audio output drivers: %s\n", AudioOutputDeviceFactory::AvailableDriversAsString().c_str())); |
177 |
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dmsg(1,("Registered instrument editors: %s\n", InstrumentEditorFactory::AvailableEditorsAsString().c_str())); |
178 |
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|
179 |
// start LSCP network server |
// start LSCP network server |
180 |
dmsg(1,("Starting LSCP network server (on TCP port %d)...", LSCP_PORT)); |
struct in_addr addr; |
181 |
pLSCPServer = new LSCPServer(pSampler); |
addr.s_addr = lscp_addr; |
182 |
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dmsg(1,("Starting LSCP network server (%s:%d)...", inet_ntoa(addr), ntohs(lscp_port))); |
183 |
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pLSCPServer = new LSCPServer(pSampler, lscp_addr, lscp_port); |
184 |
pLSCPServer->StartThread(); |
pLSCPServer->StartThread(); |
185 |
pLSCPServer->WaitUntilInitialized(); |
pLSCPServer->WaitUntilInitialized(); |
186 |
dmsg(1,("OK\n")); |
dmsg(1,("OK\n")); |
187 |
|
|
188 |
if (profile) |
if (profile) |
189 |
{ |
{ |
190 |
dmsg(1,("Calibrating profiler...")); |
dmsg(1,("Calibrating profiler...")); |
191 |
gig::Profiler::Calibrate(); |
LinuxSampler::gig::Profiler::Calibrate(); |
192 |
gig::Profiler::Reset(); |
LinuxSampler::gig::Profiler::Reset(); |
193 |
dmsg(1,("OK\n")); |
LinuxSampler::gig::Profiler::enable(); |
194 |
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dmsg(1,("OK\n")); |
195 |
} |
} |
196 |
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|
197 |
printf("LinuxSampler initialization completed.\n"); |
printf("LinuxSampler initialization completed. :-)\n\n"); |
198 |
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|
199 |
std::list<LSCPEvent::event_t> rtEvents; |
std::list<LSCPEvent::event_t> rtEvents; |
200 |
rtEvents.push_back(LSCPEvent::event_voice_count); |
rtEvents.push_back(LSCPEvent::event_voice_count); |
201 |
rtEvents.push_back(LSCPEvent::event_stream_count); |
rtEvents.push_back(LSCPEvent::event_stream_count); |
202 |
rtEvents.push_back(LSCPEvent::event_buffer_fill); |
rtEvents.push_back(LSCPEvent::event_buffer_fill); |
203 |
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rtEvents.push_back(LSCPEvent::event_total_voice_count); |
204 |
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|
205 |
while (true) { |
while (atomic_read(&running)) { |
206 |
if (bPrintStatistics) { |
if (bPrintStatistics) { |
207 |
std::set<Engine*> engines = EngineFactory::EngineInstances(); |
const std::set<Engine*>& engines = EngineFactory::EngineInstances(); |
208 |
std::set<Engine*>::iterator itEngine = engines.begin(); |
std::set<Engine*>::iterator itEngine = engines.begin(); |
209 |
for (int i = 0; itEngine != engines.end(); itEngine++, i++) { |
for (int i = 0; itEngine != engines.end(); itEngine++, i++) { |
210 |
Engine* pEngine = *itEngine; |
Engine* pEngine = *itEngine; |
215 |
fflush(stdout); |
fflush(stdout); |
216 |
} |
} |
217 |
} |
} |
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sleep(1); |
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if (profile) |
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{ |
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unsigned int samplingFreq = 48000; //FIXME: hardcoded for now |
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unsigned int bv = gig::Profiler::GetBogoVoices(samplingFreq); |
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if (bv != 0) |
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{ |
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printf(" BogoVoices: %i \r", bv); |
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fflush(stdout); |
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} |
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} |
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if (LSCPServer::EventSubscribers(rtEvents)) |
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{ |
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LSCPServer::LockRTNotify(); |
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std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels(); |
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std::map<uint,SamplerChannel*>::iterator iter = channels.begin(); |
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for (; iter != channels.end(); iter++) { |
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SamplerChannel* pSamplerChannel = iter->second; |
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EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel(); |
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if (!pEngineChannel) continue; |
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Engine* pEngine = pEngineChannel->GetEngine(); |
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if (!pEngine) continue; |
|
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LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_voice_count, iter->first, pEngine->VoiceCount())); |
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LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_stream_count, iter->first, pEngine->DiskStreamCount())); |
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LSCPServer::SendLSCPNotify(LSCPEvent(LSCPEvent::event_buffer_fill, iter->first, pEngine->DiskStreamBufferFillPercentage())); |
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} |
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LSCPServer::UnlockRTNotify(); |
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} |
|
218 |
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|
219 |
} |
sleep(1); |
220 |
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if (profile) |
221 |
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{ |
222 |
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unsigned int samplingFreq = 48000; //FIXME: hardcoded for now |
223 |
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unsigned int bv = LinuxSampler::gig::Profiler::GetBogoVoices(samplingFreq); |
224 |
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if (bv != 0) |
225 |
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{ |
226 |
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printf(" BogoVoices: %i \r", bv); |
227 |
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fflush(stdout); |
228 |
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} |
229 |
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} |
230 |
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|
231 |
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if (LSCPServer::EventSubscribers(rtEvents)) |
232 |
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{ |
233 |
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LSCPServer::LockRTNotify(); |
234 |
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std::map<uint,SamplerChannel*> channels = pSampler->GetSamplerChannels(); |
235 |
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std::map<uint,SamplerChannel*>::iterator iter = channels.begin(); |
236 |
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for (; iter != channels.end(); iter++) { |
237 |
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SamplerChannel* pSamplerChannel = iter->second; |
238 |
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EngineChannel* pEngineChannel = pSamplerChannel->GetEngineChannel(); |
239 |
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if (!pEngineChannel) continue; |
240 |
|
Engine* pEngine = pEngineChannel->GetEngine(); |
241 |
|
if (!pEngine) continue; |
242 |
|
pSampler->fireVoiceCountChanged(iter->first, pEngineChannel->GetVoiceCount()); |
243 |
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pSampler->fireStreamCountChanged(iter->first, pEngineChannel->GetDiskStreamCount()); |
244 |
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pSampler->fireBufferFillChanged(iter->first, pEngine->DiskStreamBufferFillPercentage()); |
245 |
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pSampler->fireTotalStreamCountChanged(pSampler->GetDiskStreamCount()); |
246 |
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pSampler->fireTotalVoiceCountChanged(pSampler->GetVoiceCount()); |
247 |
|
} |
248 |
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LSCPServer::UnlockRTNotify(); |
249 |
|
} |
250 |
|
} |
251 |
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if (pLSCPServer) pLSCPServer->StopThread(); |
252 |
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// the delete order here is important: the Sampler |
253 |
|
// destructor sends notifications to the lscpserver |
254 |
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if (pSampler) delete pSampler; |
255 |
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if (pLSCPServer) delete pLSCPServer; |
256 |
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printf("LinuxSampler stopped due to SIGINT.\n"); |
257 |
return EXIT_SUCCESS; |
return EXIT_SUCCESS; |
258 |
} |
} |
259 |
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|
260 |
void signal_handler(int iSignal) { |
void signal_handler(int iSignal) { |
261 |
switch (iSignal) { |
switch (iSignal) { |
262 |
case SIGINT: { |
case SIGINT: |
263 |
if (pthread_equal(pthread_self(), main_thread)) { |
atomic_set(&running, 0); |
|
if (pLSCPServer) { |
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pLSCPServer->StopThread(); |
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delete pLSCPServer; |
|
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} |
|
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if (pSampler) delete pSampler; |
|
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printf("LinuxSampler stopped due to SIGINT.\n"); |
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exit(EXIT_SUCCESS); |
|
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} |
|
264 |
return; |
return; |
265 |
} |
#if defined(WIN32) |
266 |
|
// FIXME: under WIN32 we ignore the signals below due to the missing sigaction call |
267 |
|
#else |
268 |
case SIGSEGV: |
case SIGSEGV: |
269 |
std::cerr << ">>> FATAL ERROR: Segmentation fault (SIGSEGV) occured! <<<\n" << std::flush; |
std::cerr << ">>> FATAL ERROR: Segmentation fault (SIGSEGV) occured! <<<\n" << std::flush; |
270 |
break; |
break; |
283 |
case SIGUSR2: |
case SIGUSR2: |
284 |
std::cerr << ">>> User defined signal 2 (SIGUSR2) received <<<\n" << std::flush; |
std::cerr << ">>> User defined signal 2 (SIGUSR2) received <<<\n" << std::flush; |
285 |
break; |
break; |
286 |
|
#endif |
287 |
default: { // this should never happen, as we register for the signals we want |
default: { // this should never happen, as we register for the signals we want |
288 |
std::cerr << ">>> FATAL ERROR: Unknown signal received! <<<\n" << std::flush; |
std::cerr << ">>> FATAL ERROR: Unknown signal received! <<<\n" << std::flush; |
289 |
break; |
break; |
298 |
} |
} |
299 |
|
|
300 |
void kill_app() { |
void kill_app() { |
301 |
kill(main_thread, SIGKILL); |
#if defined(WIN32) |
302 |
|
// FIXME: do we need to do anything at this point under WIN32 ? is exit(0) ok ? |
303 |
|
exit(0); |
304 |
|
#else |
305 |
|
kill(main_pid, SIGKILL); |
306 |
|
#endif |
307 |
} |
} |
308 |
|
|
309 |
void parse_options(int argc, char **argv) { |
void parse_options(int argc, char **argv) { |
316 |
{"profile",0,0,0}, |
{"profile",0,0,0}, |
317 |
{"no-tune",0,0,0}, |
{"no-tune",0,0,0}, |
318 |
{"statistics",0,0,0}, |
{"statistics",0,0,0}, |
319 |
|
{"instruments-db-location",1,0,0}, |
320 |
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{"create-instruments-db",1,0,0}, |
321 |
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{"lscp-addr",1,0,0}, |
322 |
|
{"lscp-port",1,0,0}, |
323 |
{0,0,0,0} |
{0,0,0,0} |
324 |
}; |
}; |
325 |
|
|
334 |
switch(option_index) { |
switch(option_index) { |
335 |
case 0: // --help |
case 0: // --help |
336 |
printf("usage: linuxsampler [OPTIONS]\n\n"); |
printf("usage: linuxsampler [OPTIONS]\n\n"); |
337 |
printf("--help prints this message\n"); |
printf("--help prints this message\n"); |
338 |
printf("--version prints version information\n"); |
printf("--version prints version information\n"); |
339 |
printf("--profile profile synthesis algorithms\n"); |
printf("--profile profile synthesis algorithms\n"); |
340 |
printf("--no-tune disable assembly optimization\n"); |
printf("--no-tune disable assembly optimization\n"); |
341 |
printf("--statistics prints periodically statistics\n"); |
printf("--statistics periodically prints statistics\n"); |
342 |
|
printf("--lscp-addr set LSCP address (default: any)\n"); |
343 |
|
printf("--lscp-port set LSCP port (default: 8888)\n"); |
344 |
|
printf("--create-instruments-db creates an instruments DB\n"); |
345 |
|
printf("--instruments-db-location specifies the instruments DB file\n"); |
346 |
exit(EXIT_SUCCESS); |
exit(EXIT_SUCCESS); |
347 |
break; |
break; |
348 |
case 1: // --version |
case 1: // --version |
350 |
exit(EXIT_SUCCESS); |
exit(EXIT_SUCCESS); |
351 |
break; |
break; |
352 |
case 2: // --profile |
case 2: // --profile |
353 |
profile = true; |
profile = true; |
354 |
break; |
break; |
355 |
case 3: // --no-tune |
case 3: // --no-tune |
356 |
tune = false; |
tune = false; |
357 |
break; |
break; |
358 |
case 4: // --statistics |
case 4: // --statistics |
359 |
bPrintStatistics = true; |
bPrintStatistics = true; |
360 |
break; |
break; |
361 |
|
case 5: // --instruments-db-location |
362 |
|
#if HAVE_SQLITE3 |
363 |
|
try { |
364 |
|
if (optarg) { |
365 |
|
struct stat statBuf; |
366 |
|
int res = stat(optarg, &statBuf); |
367 |
|
|
368 |
|
if (res) { |
369 |
|
std::stringstream ss; |
370 |
|
ss << "Failed to stat `" << optarg << "`: " << strerror(errno); |
371 |
|
throw Exception(ss.str()); |
372 |
|
} |
373 |
|
|
374 |
|
if (!S_ISREG(statBuf.st_mode)) { |
375 |
|
std::stringstream ss; |
376 |
|
ss << "`" << optarg << "` is not a regular file"; |
377 |
|
throw Exception(ss.str()); |
378 |
|
} |
379 |
|
|
380 |
|
InstrumentsDb::GetInstrumentsDb()->SetDbFile(String(optarg)); |
381 |
|
} |
382 |
|
} catch(Exception e) { |
383 |
|
std::cerr << "Could not open instruments DB file: " |
384 |
|
<< e.Message() << std::endl; |
385 |
|
exit(EXIT_FAILURE); |
386 |
|
} |
387 |
|
break; |
388 |
|
#else |
389 |
|
std::cerr << "LinuxSampler was not build with "; |
390 |
|
std::cerr << "instruments database support!\n"; |
391 |
|
exit(EXIT_FAILURE); |
392 |
|
break; |
393 |
|
#endif |
394 |
|
case 6: // --create-instruments-db |
395 |
|
#if HAVE_SQLITE3 |
396 |
|
try { |
397 |
|
if (optarg) { |
398 |
|
std::cout << "Creating instruments database..." << std::endl; |
399 |
|
InstrumentsDb::CreateInstrumentsDb(String(optarg)); |
400 |
|
std::cout << "Done" << std::endl; |
401 |
|
} |
402 |
|
} catch(Exception e) { |
403 |
|
std::cerr << e.Message() << std::endl; |
404 |
|
exit(EXIT_FAILURE); |
405 |
|
return; |
406 |
|
} |
407 |
|
|
408 |
|
exit(EXIT_SUCCESS); |
409 |
|
return; |
410 |
|
#else |
411 |
|
std::cerr << "Failed to create the database. LinuxSampler was "; |
412 |
|
std::cerr << "not build with instruments database support!\n"; |
413 |
|
exit(EXIT_FAILURE); |
414 |
|
return; |
415 |
|
#endif |
416 |
|
case 7: // --lscp-addr |
417 |
|
struct in_addr addr; |
418 |
|
if (inet_aton(optarg, &addr) == 0) |
419 |
|
printf("WARNING: Failed to parse lscp-addr argument, ignoring!\n"); |
420 |
|
else |
421 |
|
lscp_addr = addr.s_addr; |
422 |
|
break; |
423 |
|
case 8: // --lscp-port |
424 |
|
long unsigned int port = 0; |
425 |
|
if ((sscanf(optarg, "%u", &port) != 1) || (port == 0) || (port > 65535)) |
426 |
|
printf("WARNING: Failed to parse lscp-port argument, ignoring!\n"); |
427 |
|
else |
428 |
|
lscp_port = htons(port); |
429 |
|
break; |
430 |
} |
} |
431 |
} |
} |
432 |
} |
} |