456 lines
11 KiB
C++
456 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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/* https://godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2017 Juan Linietsky, Ariel Manzur. */
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/* Copyright (c) 2014-2017 Godot Engine contributors (cf. AUTHORS.md) */
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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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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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