465 lines
15 KiB
C
465 lines
15 KiB
C
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/*
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------------------------------------------------------------------------------
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Licensing information can be found at the end of the file.
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------------------------------------------------------------------------------
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mid.h - v0.1 - Midi playback library using the TinySoundFont library.
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Do this:
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#define MID_IMPLEMENTATION
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before you include this file in *one* C/C++ file to create the implementation.
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*/
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#ifndef mid_h
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#define mid_h
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#define _CRT_NONSTDC_NO_DEPRECATE
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#define _CRT_SECURE_NO_WARNINGS
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#include <stddef.h>
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typedef struct mid_t mid_t;
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typedef struct tsf tsf;
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mid_t* mid_create( void const* midi_data, size_t midi_size, void* memctx );
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void mid_destroy( mid_t* mid );
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int mid_render_short( mid_t* mid, short* sample_pairs, int sample_pairs_count, tsf* sound_font );
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int mid_render_float( mid_t* mid, float* sample_pairs, int sample_pairs_count, tsf* sound_font );
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void mid_skip_leading_silence( mid_t* mid, tsf* sound_font );
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#endif /* mid_h */
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#ifdef MID_ENABLE_RAW
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#ifndef mid_raw_h
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#define mid_raw_h
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#ifndef MID_U8
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#define MID_U8 unsigned char
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#endif
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#ifndef MID_U16
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#define MID_U16 unsigned short
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#endif
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#ifndef MID_U32
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#define MID_U32 unsigned int
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#endif
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#ifndef MID_U64
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#define MID_U64 unsigned long long
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#endif
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typedef struct mid_event_t
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{
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MID_U32 delay_us;
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MID_U8 channel;
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MID_U8 type;
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union
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{
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struct { MID_U8 program; } program_change;
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struct { MID_U8 note; MID_U8 velocity; } note_on;
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struct { MID_U8 note; } note_off;
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struct { MID_U8 key; MID_U8 key_pressure; } key_pressure;
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struct { MID_U16 value; } pitch_bend;
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struct { MID_U8 control, control_value; } control_change;
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struct { MID_U8 channel_pressure; } channel_pressure;
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} data;
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} mid_event_t;
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typedef struct mid_song_t
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{
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int event_count;
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mid_event_t* events;
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} mid_song_t;
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struct mid_t
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{
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void* memctx;
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mid_song_t song;
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int percussion_preset;
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MID_U64 playback_accumulated_time_us;
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int playback_sample_pos;
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int playback_event_pos;
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};
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int mid_init_raw( mid_t* mid, void const* raw_data, size_t raw_size );
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size_t mid_save_raw( mid_t* mid, void* data, size_t capacity );
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#endif /* MID_ENABLE_RAW */
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#endif /* mid_raw_h */
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/*
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----------------------
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IMPLEMENTATION
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----------------------
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*/
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#ifdef MID_IMPLEMENTATION
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#undef MID_IMPLEMENTATION
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#ifndef MID_U8
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#define MID_U8 unsigned char
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#endif
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#ifndef MID_U16
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#define MID_U16 unsigned short
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#endif
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#ifndef MID_U32
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#define MID_U32 unsigned int
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#endif
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#ifndef MID_U64
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#define MID_U64 unsigned long long
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#endif
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#ifndef MID_MALLOC
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#define _CRT_NONSTDC_NO_DEPRECATE
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#define _CRT_SECURE_NO_WARNINGS
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#include <stdlib.h>
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#if defined(_cplusplus)
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#define MID_MALLOC( ctx, size ) ( ::malloc( size ) )
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#define MID_FREE( ctx, ptr ) ( ::free( ptr ) )
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#else
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#define MID_MALLOC( ctx, size ) ( malloc( size ) )
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#define MID_FREE( ctx, ptr ) ( free( ptr ) )
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#endif
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#endif
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#include <assert.h>
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#define MID_LOG(...) (void) __VA_ARGS__
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#include <string.h>
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#pragma warning( push )
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#pragma warning( disable: 4242 )
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#pragma warning( disable: 4244 )
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#pragma warning( disable: 4365 )
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#pragma warning( disable: 4668 )
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#pragma warning( disable: 4701 )
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#pragma warning( disable: 4703 )
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#ifndef MID_NO_TSF_IMPLEMENTATION
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#define TSF_NO_STDIO
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#define TSF_IMPLEMENTATION
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#endif
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#include "3rd_tsf.h"
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#pragma warning( disable: 4201 )
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#ifndef MID_NO_TML_IMPLEMENTATION
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#define TML_NO_STDIO
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#define TML_IMPLEMENTATION
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#endif
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#include "3rd_tml.h"
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#pragma warning( pop )
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#ifndef MID_ENABLE_RAW
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typedef struct mid_event_t
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{
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MID_U32 delay_us;
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MID_U8 channel;
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MID_U8 type;
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union
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{
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struct { MID_U8 program; } program_change;
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struct { MID_U8 note; MID_U8 velocity; } note_on;
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struct { MID_U8 note; } note_off;
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struct { MID_U8 key; MID_U8 key_pressure; } key_pressure;
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struct { MID_U16 value; } pitch_bend;
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struct { MID_U8 control, control_value; } control_change;
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struct { MID_U8 channel_pressure; } channel_pressure;
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} data;
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} mid_event_t;
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typedef struct mid_song_t
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{
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int event_count;
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mid_event_t* events;
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} mid_song_t;
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struct mid_t
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{
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void* memctx;
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mid_song_t song;
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int percussion_preset;
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MID_U64 playback_accumulated_time_us;
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int playback_sample_pos;
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int playback_event_pos;
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};
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#endif /* MID_ENABLE_RAW */
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mid_t* mid_create( void const* midi_data, size_t midi_size, void* memctx )
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{
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tml_message* mid_file = tml_load_memory( midi_data, (int) midi_size );
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if( !mid_file ) return NULL;
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int count = 0;
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tml_message* iter = mid_file;
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while( iter )
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{
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if( iter->type == TML_PROGRAM_CHANGE || iter->type == TML_NOTE_ON || iter->type == TML_NOTE_OFF ||
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iter->type == TML_PITCH_BEND || iter->type == TML_CONTROL_CHANGE )
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{
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++count;
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}
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iter = iter->next;
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}
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mid_event_t* events = (mid_event_t*) malloc( sizeof( mid_event_t ) * count );
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int events_count = 0;
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unsigned int time = 0;
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tml_message* msg = mid_file;
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while( msg )
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{
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if( msg->type == TML_PROGRAM_CHANGE || msg->type == TML_NOTE_ON || msg->type == TML_NOTE_OFF ||
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msg->type == TML_PITCH_BEND || msg->type == TML_CONTROL_CHANGE )
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{
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mid_event_t* event = &events[ events_count++ ];
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event->delay_us = ( msg->time - time ) * 1000;
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time = msg->time;
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event->channel = msg->channel;
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event->type = msg->type;
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switch( msg->type )
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{
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case TML_PROGRAM_CHANGE:
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event->data.program_change.program = (MID_U8) msg->program;
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break;
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case TML_NOTE_ON: //play a note
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event->data.note_on.note = (MID_U8) msg->key;
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event->data.note_on.velocity = (MID_U8) msg->velocity;
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break;
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case TML_NOTE_OFF: //stop a note
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event->data.note_off.note = (MID_U8) msg->key;
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break;
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case TML_PITCH_BEND: //pitch wheel modification
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event->data.pitch_bend.value = (MID_U16) msg->pitch_bend;
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break;
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case TML_CONTROL_CHANGE: //MIDI controller messages
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event->data.control_change.control = (MID_U8) msg->control;
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event->data.control_change.control_value = (MID_U8) msg->control_value;
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break;
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}
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}
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msg = msg->next;
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}
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tml_free( mid_file );
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mid_t* mid = (mid_t*) MID_MALLOC( memctx, sizeof( mid_t ) );
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mid->memctx = memctx;
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mid->song.event_count = events_count;
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mid->song.events = events;
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mid->playback_accumulated_time_us = 0ull;
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mid->playback_sample_pos = 0;
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mid->playback_event_pos = 0;
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return mid;
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}
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void mid_destroy( mid_t* mid )
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{
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if( mid->song.events ) MID_FREE( mid->memctx, mid->song.events );
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MID_FREE( mid->memctx, mid );
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}
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int mid_init_raw( mid_t* mid, void const* raw_data, size_t raw_size )
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{
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int events_count = *(int*)raw_data;
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if( sizeof( mid_event_t ) * events_count != raw_size - sizeof( int ) ) return 0;
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mid->memctx = NULL;
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mid->song.event_count = events_count;
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mid->song.events = (mid_event_t*)( ( (int*)raw_data ) + 1 );
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mid->playback_accumulated_time_us = 0ull;
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mid->playback_sample_pos = 0;
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mid->playback_event_pos = 0;
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return 1;
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}
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size_t mid_save_raw( mid_t* mid, void* data, size_t capacity )
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{
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size_t size = sizeof( mid_event_t ) * mid->song.event_count + sizeof( int );
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if( data && capacity >= size )
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{
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*(int*)data = mid->song.event_count;
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memcpy( ( (int*)data ) + 1, mid->song.events, sizeof( mid_event_t ) * mid->song.event_count );
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}
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return size;
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}
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void mid_skip_leading_silence( mid_t* mid, tsf* sound_font )
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{
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(void) sound_font;
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for( ; ; )
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{
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MID_U64 next_event_delay_us = mid->song.events[ mid->playback_event_pos ].delay_us;
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MID_U64 playback_time_us = ( mid->playback_sample_pos * 1000000ull ) / 44100ull;
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MID_U64 next_event_time_us = mid->playback_accumulated_time_us + next_event_delay_us;
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assert( next_event_time_us >= playback_time_us );
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MID_U64 time_until_next_event = next_event_time_us - playback_time_us;
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int samples_until_next_event = (int)( ( time_until_next_event * 44100ull ) / 1000000ull );
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mid_event_t* event = &mid->song.events[ mid->playback_event_pos ];
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switch( event->type )
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{
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case TML_PROGRAM_CHANGE:
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tsf_channel_set_presetnumber( sound_font, event->channel, event->data.program_change.program, ( event->channel == 9 ) );
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break;
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case TML_NOTE_ON:
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return;
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case TML_NOTE_OFF: //stop a note
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tsf_channel_note_off( sound_font, event->channel, event->data.note_off.note );
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break;
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case TML_PITCH_BEND: //pitch wheel modification
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tsf_channel_set_pitchwheel( sound_font, event->channel, event->data.pitch_bend.value );
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break;
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case TML_CONTROL_CHANGE: //MIDI controller messages
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tsf_channel_midi_control( sound_font, event->channel, event->data.control_change.control, event->data.control_change.control_value );
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break;
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}
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mid->playback_sample_pos += samples_until_next_event;
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mid->playback_accumulated_time_us += next_event_delay_us;
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mid->playback_event_pos++;
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}
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}
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int mid_render_short( mid_t* mid, short* sample_pairs, int sample_pairs_count, tsf* sound_font )
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{
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int samples_rendered = 0;
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memset( sample_pairs, 0, sample_pairs_count * sizeof( short ) * 2 );
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while( samples_rendered < sample_pairs_count )
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{
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MID_U64 next_event_delay_us = mid->song.events[ mid->playback_event_pos ].delay_us;
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MID_U64 playback_time_us = ( mid->playback_sample_pos * 1000000ull ) / 44100ull;
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MID_U64 next_event_time_us = mid->playback_accumulated_time_us + next_event_delay_us;
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assert( next_event_time_us >= playback_time_us );
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MID_U64 time_until_next_event = next_event_time_us - playback_time_us;
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int samples_until_next_event = (int)( ( time_until_next_event * 44100ull ) / 1000000ull );
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int samples_to_render = samples_until_next_event;
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if( samples_to_render > sample_pairs_count - samples_rendered )
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{
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samples_to_render = sample_pairs_count - samples_rendered;
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tsf_render_short( sound_font, sample_pairs + samples_rendered * 2,
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samples_to_render, 1 );
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samples_rendered += samples_to_render;
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mid->playback_sample_pos += samples_to_render;
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return samples_rendered;
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}
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else
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{
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tsf_render_short( sound_font, sample_pairs + samples_rendered * 2,
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samples_to_render, 1 );
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samples_rendered += samples_to_render;
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mid->playback_sample_pos += samples_to_render;
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}
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mid->playback_accumulated_time_us += next_event_delay_us;
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mid_event_t* event = &mid->song.events[ mid->playback_event_pos++ ];
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switch( event->type )
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{
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case TML_PROGRAM_CHANGE:
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tsf_channel_set_presetnumber( sound_font, event->channel, event->data.program_change.program, ( event->channel == 9 ) );
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break;
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case TML_NOTE_ON:
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tsf_channel_note_on( sound_font, event->channel, event->data.note_on.note, event->data.note_on.velocity / 127.0f );
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break;
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case TML_NOTE_OFF: //stop a note
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tsf_channel_note_off( sound_font, event->channel, event->data.note_off.note );
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break;
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case TML_PITCH_BEND: //pitch wheel modification
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tsf_channel_set_pitchwheel( sound_font, event->channel, event->data.pitch_bend.value );
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break;
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case TML_CONTROL_CHANGE: //MIDI controller messages
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tsf_channel_midi_control( sound_font, event->channel, event->data.control_change.control, event->data.control_change.control_value );
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break;
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}
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}
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return samples_rendered;
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}
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#endif /* MID_IMPLEMENTATION */
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/*
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------------------------------------------------------------------------------
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This software is available under 2 licenses - you may choose the one you like.
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------------------------------------------------------------------------------
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ALTERNATIVE A - MIT License
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Copyright (c) 2016 Mattias Gustavsson
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Permission is hereby granted, free of charge, to any person obtaining a copy of
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this software and associated documentation files (the "Software"), to deal in
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the Software without restriction, including without limitation the rights to
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use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies
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of the Software, and to permit persons to whom the Software is furnished to do
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so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
|
||
|
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
|
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|
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
|
||
|
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
|
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|
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
|
||
|
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
|
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|
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
|
||
|
SOFTWARE.
|
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|
|
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|
------------------------------------------------------------------------------
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|
||
|
ALTERNATIVE B - Public Domain (www.unlicense.org)
|
||
|
|
||
|
This is free and unencumbered software released into the public domain.
|
||
|
|
||
|
Anyone is free to copy, modify, publish, use, compile, sell, or distribute this
|
||
|
software, either in source code form or as a compiled binary, for any purpose,
|
||
|
commercial or non-commercial, and by any means.
|
||
|
|
||
|
In jurisdictions that recognize copyright laws, the author or authors of this
|
||
|
software dedicate any and all copyright interest in the software to the public
|
||
|
domain. We make this dedication for the benefit of the public at large and to
|
||
|
the detriment of our heirs and successors. We intend this dedication to be an
|
||
|
overt act of relinquishment in perpetuity of all present and future rights to
|
||
|
this software under copyright law.
|
||
|
|
||
|
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
|
||
|
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
|
||
|
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
|
||
|
AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
|
||
|
ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
|
||
|
WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
|
||
|
|
||
|
------------------------------------------------------------------------------
|
||
|
*/
|