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483 lines
11 KiB
C++
483 lines
11 KiB
C++
/*************************************************************************/
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/* cp_loader_mod.cpp */
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/*************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* http://www.godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2016 Juan Linietsky, Ariel Manzur. */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/*************************************************************************/
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#include "cp_loader_mod.h"
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static bool tag_equal_to(const char *p_tag, const char *p_string) {
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return( p_tag[0]==p_string[0] &&
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p_tag[1]==p_string[1] &&
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p_tag[2]==p_string[2] &&
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p_tag[3]==p_string[3]);
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}
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/* ProTracker period table */
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uint16_t period_table[6*12] = {
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1712,1616,1524,1440,1356,1280,1208,1140,1076,1016,960,907,
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856,808,762,720,678,640,604,570,538,508,480,453,
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428,404,381,360,339,320,302,285,269,254,240,226,
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214,202,190,180,170,160,151,143,135,127,120,113,
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107,101,95,90,85,80,75,71,67,63,60,56,
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53,50,47,45,42,40,37,35,33,31,30,28
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};
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CPLoader::Error CPLoader_MOD::load_song(const char *p_file,CPSong *p_song,bool p_sampleset) {
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if (file->open(p_file,CPFileAccessWrapper::READ)) {
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//printf("Can't open file! %s\n",p_file);
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return FILE_CANNOT_OPEN;
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};
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/* FIRST OF ALL, one needs to read the .mod file format tag */
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file->seek( 1080 ); //located at 1080
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char format_tag[4];
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file->get_byte_array( (uint8_t*)format_tag, 4 );
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int channels=-1;
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/** THE PAIN!! - COMPARE TAGS */
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/* Classic 4-chan */
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if (tag_equal_to(format_tag,"M.K.") )
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channels=4;
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if (tag_equal_to(format_tag,"FLT4") )
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channels=4;
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if (tag_equal_to(format_tag,"M!K!") )
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channels=4;
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/* 8 Channel MODS */
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if (tag_equal_to(format_tag,"FLT8") )
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channels=2;
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if (tag_equal_to(format_tag,"CD81") )
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channels=2;
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/* Custom channel MODS */
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for (int i=1;i<=32;i++) {
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if (i<10) { // up to 9 channels mods
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/* Old Take Tracker */
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char old_take_tracker[4]={'T','D','Z',char('0'+i)};
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if (tag_equal_to(format_tag,old_take_tracker)) {
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channels=i;
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break;
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}
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/* Contemplates many XCHN Formats */
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char xchn[4]={char('0'+i),'C','H','N'};
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if (tag_equal_to(format_tag,xchn)) {
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channels=i;
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break;
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}
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}
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/* Fast Tracker */
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char fast_tracker[4]={char('0'+(i/10)),char('0'+(i%10)),'C','H'};
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if (tag_equal_to(format_tag,fast_tracker)) {
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channels=i;
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break;
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}
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}
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if (channels==-1) {
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file->close();
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return FILE_UNRECOGNIZED;
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}
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/** Load CPSong INFO */
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file->seek( 0 ); //go to begining of file
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file->set_endian_conversion( true );
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p_song->reset();
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p_song->set_instruments( false );
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char name[21];
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file->get_byte_array( (uint8_t*)name,20);
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name[20]=0;
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p_song->set_name(name);
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p_song->set_old_effects( true );
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p_song->set_linear_slides( false );
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p_song->set_compatible_gxx( true );
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CPSampleManager *sm=CPSampleManager::get_singleton();
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int instruments=31;
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for (int i=0;i<instruments;i++) {
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char sample_name[23];
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file->get_byte_array( (uint8_t*)sample_name,22);
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sample_name[22]=0;
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uint32_t sample_len=file->get_word();
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sample_len<<=1;
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uint8_t fine_nibble=file->get_byte()&0xF;
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//(int8_t)(fine_nibble & 7) - (int8_t)(fine_nibble & 8); //yesso's genius trick
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// boo, I can't use it :( but i leave it here because of how cool it is
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uint8_t linear_volume=file->get_byte(); //0 .. ?
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uint32_t loop_begin=file->get_word(); //0 .. ?
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loop_begin<<=1;
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uint32_t loop_end=file->get_word(); //0 .. ?
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loop_end<<=1;
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if (sample_len>0) {
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CPSample_ID sid=sm->create( false, false, sample_len );
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if (sid.is_null()) {
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file->close();
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return FILE_OUT_OF_MEMORY;
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}
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if (loop_end>2) {
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sm->set_loop_begin( sid, loop_begin );
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sm->set_loop_end( sid, loop_end+loop_begin );
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sm->set_loop_type( sid,CP_LOOP_FORWARD );
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}
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static const uint16_t fine_to_freq[16]={
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8363,8413,8463,8529,8581,8651,8723,8757,
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7895,7941,7985,8046,8107,8169,8232,8280
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};
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sm->set_c5_freq( sid, fine_to_freq[fine_nibble] );
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p_song->get_sample(i)->set_sample_data(sid);
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}
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p_song->get_sample(i)->set_name(sample_name);
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p_song->get_sample(i)->set_default_volume( linear_volume );
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}
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/* pan for MODs */
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for (int i=0;i<channels;i++)
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p_song->set_channel_pan( i, (((i&3)==1) || ((i&3)==2)) ? 0: 64);
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uint8_t order_count=file->get_byte();
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// uint8_t loop_to=file->get_byte();
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int pattern_count=0;
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for (int i=0;i<128;i++) {
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uint8_t order=file->get_byte();
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if (i<order_count) {
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p_song->set_order(i,order);
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/* Determine the amount of patterns */
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if ((order+1)>pattern_count)
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pattern_count=order+1;
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} else
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p_song->set_order( i, CP_ORDER_NONE );
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}
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if (instruments==31)
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file->get_dword(); // identiefier, now skip it
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for (int i=0;i<pattern_count;i++) {
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for(int line=0;line<64;line++) {
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for(int column=0;column<channels;column++) {
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uint32_t note_w=file->get_dword();
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CPNote note;
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note.instrument=(note_w>>12)&0xF;
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note.instrument|=(note_w>>24)&0xF0;
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if (note.instrument==0)
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note.instrument=CPNote::EMPTY;
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else
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note.instrument--;
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note.parameter=note_w&0xFF;
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int cmd=(note_w>>8)&0xF;
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uint32_t period=(note_w>>16)&0xFFF;
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if (period>0 && period<0xFFF) {
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//period>>=2;
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//period<<=1;
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for (int n=0; n<6*12; n++) {
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if (period >= period_table[n]) {
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if ((period!=period_table[n]) && (n))
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{
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uint32_t p1 = period_table[n-1];
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uint32_t p2 = period_table[n];
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if (p1 - period < (period - p2)) {
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note.note=n+36;
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break;
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}
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}
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note.note=n+1+36;
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break;
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}
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}
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if (note.note==CPNote::EMPTY)
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note.note=6*12+36;
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note.note--;
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}
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switch(cmd) {
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case 0x0: {
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if (note.parameter>0)
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note.command='J'-'A';
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} break;
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case 0x1: {
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note.command='F'-'A';
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} break;
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case 0x2: {
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note.command='E'-'A';
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} break;
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case 0x3: {
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note.command='G'-'A';
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} break;
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case 0x4: {
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note.command='H'-'A';
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} break;
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case 0x5: {
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note.command='L'-'A';
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} break;
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case 0x6: {
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note.command='K'-'A';
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} break;
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case 0x7: {
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note.command='R'-'A';
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} break;
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case 0x8: {
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note.command='X'-'A';
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} break;
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case 0x9: {
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note.command='O'-'A';
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} break;
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case 0xA: {
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note.command='D'-'A';
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} break;
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case 0xB: {
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note.command='B'-'A';
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} break;
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case 0xC: {
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note.volume=note.parameter;
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if (note.volume>64)
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note.volume=64;
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note.parameter=0;
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} break;
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case 0xD: {
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note.command='C'-'A';
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note.parameter=(note.parameter>>4)*10 + (note.parameter&0xF);
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} break;
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case 0xE: { //SPECIAL EFFECT!
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note.command='S'-'A';
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switch(note.parameter>>4) {
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case 0x1: {
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note.command='F'-'A';
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note.parameter=0xF0|(note.parameter&0xF);
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} break;
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case 0x2: {
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note.command='E'-'A';
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note.parameter=0xF0|(note.parameter&0xF);
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} break;
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case 0x4: {
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note.command='S'-'A';
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note.parameter=0x30|(note.parameter&0x3);
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} break;
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case 0x6: {
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note.command='S'-'A';
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note.parameter=0xB0|(note.parameter&0xF);
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} break;
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case 0x7: {
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note.command='S'-'A';
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note.parameter=0x40|(note.parameter&0x3);
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} break;
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case 0x8: {
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note.command='S'-'A'; // wow, it's the same!
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} break;
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case 0x9: {
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note.command='Q'-'A';
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note.parameter=(note.parameter&0xF);
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} break;
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case 0xA: {
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note.command='D'-'A';
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note.parameter=0xF|((note.parameter&0xF)<<4);
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} break;
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case 0xB: {
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note.command='D'-'A';
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note.parameter=0xF0|(note.parameter&0xF);
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} break;
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case 0xC:
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case 0xD: {
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note.command='S'-'A'; //wow, they are the same!
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} break;
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case 0xE: {
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note.command='S'-'A';
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note.parameter=0x60|(note.parameter&0xF);
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} break;
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default: {
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note.command=CPNote::EMPTY;
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note.parameter=0;
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} break;
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}
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} break;
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case 0xF: {
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if (note.parameter<32)
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note.command='A'-'A';
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else
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note.command='T'-'A';
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} break;
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}
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p_song->get_pattern(i)->set_note( column,line, note );
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}
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}
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}
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for (int i=0;i<instruments;i++) {
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CPSample_ID sid=p_song->get_sample(i)->get_sample_data();
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if (sid.is_null()) {
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continue; //empty sample, not stored?
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}
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sm->lock_data(sid);
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uint8_t *dataptr = (uint8_t*)sm->get_data(sid);
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int len=sm->get_size(sid);
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for (int s=0;s<len;s++) {
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uint8_t d=file->get_byte();
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//d-=128; //convert to signed
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int8_t*ds=(int8_t*)&d;
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dataptr[s]=*ds;
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}
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sm->unlock_data(sid);
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}
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file->close();
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return FILE_OK;
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}
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CPLoader_MOD::CPLoader_MOD(CPFileAccessWrapper *p_file) {
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file=p_file;
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}
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CPLoader_MOD::~CPLoader_MOD()
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{
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}
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