midiout.cpp 2.8 KB

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  1. //*****************************************//
  2. // midiout.cpp
  3. // by Gary Scavone, 2003-2004.
  4. //
  5. // Simple program to test MIDI output.
  6. //
  7. //*****************************************//
  8. #include <iostream>
  9. #include <cstdlib>
  10. #include "RtMidi.h"
  11. // Platform-dependent sleep routines.
  12. #if defined(__WINDOWS_MM__)
  13. #include <windows.h>
  14. #define SLEEP( milliseconds ) Sleep( (DWORD) milliseconds )
  15. #else // Unix variants
  16. #include <unistd.h>
  17. #define SLEEP( milliseconds ) usleep( (unsigned long) (milliseconds * 1000.0) )
  18. #endif
  19. // This function should be embedded in a try/catch block in case of
  20. // an exception. It offers the user a choice of MIDI ports to open.
  21. // It returns false if there are no ports available.
  22. bool chooseMidiPort( RtMidiOut *rtmidi );
  23. int main( int argc, char *argv[] )
  24. {
  25. RtMidiOut *midiout = 0;
  26. std::vector<unsigned char> message;
  27. // RtMidiOut constructor
  28. try {
  29. midiout = new RtMidiOut();
  30. }
  31. catch ( RtError &error ) {
  32. error.printMessage();
  33. exit( EXIT_FAILURE );
  34. }
  35. // Call function to select port.
  36. try {
  37. if ( chooseMidiPort( midiout ) == false ) goto cleanup;
  38. }
  39. catch ( RtError &error ) {
  40. error.printMessage();
  41. goto cleanup;
  42. }
  43. // Send out a series of MIDI messages.
  44. // Program change: 192, 5
  45. message.push_back( 192 );
  46. message.push_back( 5 );
  47. midiout->sendMessage( &message );
  48. // Control Change: 176, 7, 100 (volume)
  49. message[0] = 176;
  50. message[1] = 7;
  51. message.push_back( 100 );
  52. midiout->sendMessage( &message );
  53. // Note On: 144, 64, 90
  54. message[0] = 144;
  55. message[1] = 64;
  56. message[2] = 90;
  57. midiout->sendMessage( &message );
  58. SLEEP( 500 );
  59. // Note Off: 128, 64, 40
  60. message[0] = 128;
  61. message[1] = 64;
  62. message[2] = 40;
  63. midiout->sendMessage( &message );
  64. // Sysex: 240, 67, 16, 4, 3, 2, 247
  65. message[0] = 240;
  66. message[1] = 67;
  67. message[2] = 4;
  68. message.push_back( 3 );
  69. message.push_back( 2 );
  70. message.push_back( 247 );
  71. midiout->sendMessage( &message );
  72. // Clean up
  73. cleanup:
  74. delete midiout;
  75. return 0;
  76. }
  77. bool chooseMidiPort( RtMidiOut *rtmidi )
  78. {
  79. std::cout << "\nWould you like to open a virtual output port? [y/N] ";
  80. std::string keyHit;
  81. std::getline( std::cin, keyHit );
  82. if ( keyHit == "y" ) {
  83. rtmidi->openVirtualPort();
  84. return true;
  85. }
  86. std::string portName;
  87. unsigned int i = 0, nPorts = rtmidi->getPortCount();
  88. if ( nPorts == 0 ) {
  89. std::cout << "No output ports available!" << std::endl;
  90. return false;
  91. }
  92. if ( nPorts == 1 ) {
  93. std::cout << "\nOpening " << rtmidi->getPortName() << std::endl;
  94. }
  95. else {
  96. for ( i=0; i<nPorts; i++ ) {
  97. portName = rtmidi->getPortName(i);
  98. std::cout << " Output port #" << i << ": " << portName << '\n';
  99. }
  100. do {
  101. std::cout << "\nChoose a port number: ";
  102. std::cin >> i;
  103. } while ( i >= nPorts );
  104. }
  105. std::cout << "\n";
  106. rtmidi->openPort( i );
  107. return true;
  108. }