562 lines
19 KiB
Dart
562 lines
19 KiB
Dart
// import 'dart:convert';
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// import 'dart:developer' as developer;
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// import 'dart:ffi';
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// import 'dart:math';
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// import 'package:logging/logging.dart' as logging;
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// import 'package:vector_math/vector_math_64.dart';
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// import 'dart:io';
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// import 'tetrio_multiplayer_replay.dart';
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// class HandlingHandler{
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// double das;
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// double arr;
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// late double dasLeft; // frames
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// late double arrLeft; // frames
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// bool sdfActive = false;
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// bool activeLeft = false;
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// bool activeRight = false;
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// int direction = 0; // -1 - left, 1 - right, 0 - none
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// HandlingHandler(this.das, this.arr){
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// dasLeft = das;
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// arrLeft = arr;
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// }
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// @override
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// String toString(){
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// return "das: ${das}f; arr: ${arr}f";
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// }
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// int movementKeyPressed(bool left, bool right, double subframe){
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// if (left) {
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// activeLeft = left;
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// direction = -1;
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// }
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// if (right) {
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// activeRight = right;
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// direction = 1;
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// }
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// dasLeft = das - (1 - subframe);
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// return direction;
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// }
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// void movementKeyReleased(bool left, bool right, double subframe){
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// if (left) {
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// activeLeft = !left;
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// }
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// if (right) {
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// activeRight = !right;
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// }
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// if (activeLeft) {
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// direction = -1;
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// }
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// if (activeRight) {
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// direction = 1;
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// }
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// if (activeLeft && activeRight){
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// arrLeft = arr;
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// dasLeft = das;
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// direction = 0;
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// }
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// }
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// int processMovenent(double delta){
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// if (!activeLeft && !activeRight) return 0;
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// if (dasLeft > 0.0) {
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// dasLeft -= delta;
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// if (dasLeft < 0.0) {
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// arrLeft += dasLeft;
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// dasLeft = 0.0;
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// return direction;
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// }else{
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// return 0;
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// }
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// }else{
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// arrLeft -= delta;
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// if (arr == 0.0) return direction*10;
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// if (arrLeft < 0.0) {
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// arrLeft += arr;
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// return direction;
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// }else {
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// return 0;
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// }
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// }
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// }
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// }
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// class Board{
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// int width;
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// int height;
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// int bufferHeight;
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// late List<List<Tetromino>> board;
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// late int totalHeight;
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// Board(this.width, this.height, this.bufferHeight){
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// totalHeight = height+bufferHeight;
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// board = [for (var i = 0 ; i < totalHeight; i++) [for (var i = 0 ; i < width; i++) Tetromino.empty]];
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// }
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// @override
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// String toString() {
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// String result = "";
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// for (var row in board.reversed){
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// for (var cell in row) result += cell.name[0];
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// result += "\n";
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// }
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// return result;
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// }
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// bool isOccupied(Coords coords)
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// {
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// if (coords.x < 0 || coords.x >= width ||
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// coords.y < 0 || coords.y >= totalHeight ||
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// board[coords.y][coords.x] != Tetromino.empty) return true;
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// return false;
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// }
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// bool positionIsValid(Tetromino type, Coords coords, int r){
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// List<Coords> shape = shapes[type.index][r];
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// for (Coords mino in shape){
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// if (isOccupied(coords+mino)) return false;
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// }
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// return true;
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// }
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// bool wasATSpin(Tetromino type, Coords coords, int rot){
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// if (type != Tetromino.T) return false;
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// if (!(positionIsValid(type, Coords(coords.x+1, coords.y), rot) ||
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// positionIsValid(type, Coords(coords.x-1, coords.y), rot) ||
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// positionIsValid(type, Coords(coords.x, coords.y+1), rot) ||
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// positionIsValid(type, Coords(coords.x, coords.y-1), rot))
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// ){
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// return true;
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// }
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// return false;
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// }
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// void writeToBoard(Tetromino type, Coords coords, int rot) {
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// if (!positionIsValid(type, coords, rot)) throw Exception("Attempted to write $type to $coords in $rot rot");
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// List<Coords> shape = shapes[type.index][rot];
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// for (Coords mino in shape){
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// var finalCoords = coords+mino;
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// board[finalCoords.y][finalCoords.x] = type;
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// }
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// }
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// void writeGarbage(GarbageData data, [int? amt]){
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// List<List<Tetromino>> garbage = [for (int i = 0; i < (amt??data.amt!); i++) [for (int k = 0; k < width; k++) k == data.column! ? Tetromino.empty : Tetromino.garbage]];
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// board.insertAll(0, garbage);
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// board.removeRange(height-garbage.length, height);
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// }
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// List<int> clearFullLines(){
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// int linesCleared = 0;
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// int garbageLines = 0;
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// int difficultLineClear = 0;
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// for (int i = 0; i < board.length; i++){
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// if (board[i-linesCleared].every((element) => element != Tetromino.empty)){
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// if (board[i-linesCleared].any((element) => element == Tetromino.garbage)) garbageLines++;
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// board.removeAt(i-linesCleared);
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// List<Tetromino> emptyRow = [for (int t = 0; t < width; t++) Tetromino.empty];
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// board.add(emptyRow);
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// linesCleared += 1;
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// }
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// }
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// if (linesCleared >= 4) difficultLineClear = 1;
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// return [linesCleared, garbageLines, difficultLineClear];
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// }
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// }
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// class IncomingGarbage{
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// int? frameOfThreat; // will enter board after this frame, null if unconfirmed
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// GarbageData data;
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// IncomingGarbage(this.data);
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// @override
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// String toString(){
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// return "f$frameOfThreat: col${data.column} amt${data.amt}";
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// }
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// void confirm(int confirmationFrame, int garbageSpeed){
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// frameOfThreat = confirmationFrame+garbageSpeed;
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// }
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// }
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// class LineClearResult{
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// int linesCleared;
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// Tetromino piece;
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// bool spin;
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// int garbageCleared;
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// int column;
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// int attackProduced;
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// LineClearResult(this.linesCleared, this.piece, this.spin, this.garbageCleared, this.column, this.attackProduced);
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// }
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// class Stats{
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// int combo = -1;
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// int btb = -1;
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// int attackRecived = 0;
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// int attackTanked = 0;
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// LineClearResult processLineClear(List<int> clearFullLinesResult, Tetromino current, Coords pos, bool spinWasLastMove, bool tspin){
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// int attack = 0;
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// switch (clearFullLinesResult[0]){
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// case 0:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin']!;
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// }
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// break;
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// case 1:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin single']!;
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// }else{
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// if (combo == -1) attack = garbage['single']!;
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// else attack = comboTable[combo];
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// }
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// break;
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// case 2:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin double']!;
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// }else{
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// attack = garbage['double']!;
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// }
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// break;
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// case 3:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin triple']!;
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// }else{
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// attack = garbage['triple']!;
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// }
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// break;
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// case 4:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin quad']!;
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// }else{
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// attack = garbage['quad']!;
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// }
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// break;
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// case 5:
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// if (spinWasLastMove && tspin) {
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// attack = garbage['t-spin penta']!;
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// }else{
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// attack = garbage['penta']!;
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// }
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// break;
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// case _:
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// developer.log("${clearFullLinesResult[0]} lines cleared");
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// break;
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// }
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// if (clearFullLinesResult[0] > 0) combo++;
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// else combo = -1;
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// if (clearFullLinesResult[2] > 0) btb++;
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// else btb = -1;
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// return LineClearResult(clearFullLinesResult[0], Tetromino.empty, false, clearFullLinesResult[1], 0, attack);
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// }
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// }
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// class Simulation{
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// }
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// // That thing allows me to test my new staff i'm trying to implement
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// void main() async {
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// var replayJson = jsonDecode(File("/home/dan63047/Документы/replays/6550eecf2ffc5604e6224fc5.ttrm").readAsStringSync());
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// // frame 994: garbage lost
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// // frame 1550: T-spin failed
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// ReplayData replay = ReplayData.fromJson(replayJson);
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// TetrioRNG rng = TetrioRNG(replay.stats[0][0].seed);
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// List<Tetromino> queue = rng.shuffleList(tetrominoes.toList());
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// List<Event> events = readEventList(replay.rawJson);
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// DataFullOptions? settings;
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// HandlingHandler? handling;
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// //Map<KeyType, EventKeyPress> activeKeypresses = {};
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// int currentFrame = 0;
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// double subframesWent = 0;
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// events.removeAt(0); // get rig of Event.start
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// Event nextEvent = events.removeAt(0);
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// Stats stats = Stats();
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// Board board = Board(10, 20, 20);
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// KicksetBase kickset = SRSPlus();
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// List<IncomingGarbage> garbageQueue = [];
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// List<GarbageData> outcomingGarbage = [];
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// Tetromino? hold;
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// int rot = 0;
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// bool spinWasLastMove = false;
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// Coords coords = Coords(3, 21);
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// double lockDelay = 30; // frames
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// int lockResets = 15;
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// bool floored = false;
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// double gravityBucket = 1.0;
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// //developer.log("Seed is ${replay.stats[0][0].seed}, first bag is $queue");
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// Tetromino current = queue.removeAt(0);
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// //developer.log("Handling is ");
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// int sonicDrop(){
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// int height = coords.y;
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// while (board.positionIsValid(current, Coords(coords.x, height), rot)){
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// height -= 1;
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// }
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// height += 1;
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// return height;
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// }
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// Tetromino getNewOne(){
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// if (queue.length <= 1) {
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// List<Tetromino> nextPieces = rng.shuffleList(tetrominoes.toList());
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// queue.addAll(nextPieces);
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// }
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// //developer.log("Next queue is $queue");
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// rot = 0;
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// lockResets = 15;
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// lockDelay = 30;
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// floored = false;
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// gravityBucket = 1.0;
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// return queue.removeAt(0);
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// }
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// bool handleRotation(int r){
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// if (r == 0) return true;
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// int futureRotation = (rot + r) % 4;
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// List<Coords> tests = (current == Tetromino.I ? kickset.kickTableI : kickset.kickTable)[rot][r == -1 ? 0 : r];
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// for (Coords test in tests){
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// if (board.positionIsValid(current, coords+test, futureRotation)){
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// coords += test;
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// rot = futureRotation;
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// return true;
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// }
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// }
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// return false;
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// }
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// void handleHardDrop(){
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// board.writeToBoard(current, coords, rot);
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// bool tspin = board.wasATSpin(current, coords, rot);
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// LineClearResult lineClear = stats.processLineClear(board.clearFullLines(), current, coords, spinWasLastMove, tspin);
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// //if (lineClear.attackProduced > 0) outcomingGarbage.add(GarbageData());
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// //print("${lineClear.linesCleared} lines, ${lineClear.garbageCleared} garbage");
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// if (garbageQueue.isNotEmpty) {
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// if (lineClear.linesCleared > 0){
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// int garbageToDelete = lineClear.attackProduced;
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// for (IncomingGarbage garbage in garbageQueue){
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// if (garbage.data.amt! < garbageToDelete) {
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// garbageToDelete -= garbage.data.amt!;
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// lineClear.attackProduced = garbageToDelete;
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// garbage.data.amt = 0;
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// }else{
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// garbage.data.amt = garbage.data.amt! - garbageToDelete;
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// lineClear.attackProduced = 0;
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// break;
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// }
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// }
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// }else{
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// int needToTake = settings!.garbageCap!;
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// for (IncomingGarbage garbage in garbageQueue){
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// if ((garbage.frameOfThreat??99999999) > currentFrame) break;
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// if (garbage.data.amt! > needToTake) {
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// board.writeGarbage(garbage.data, needToTake);
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// garbage.data.amt = garbage.data.amt! - needToTake;
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// break;
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// } else {
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// board.writeGarbage(garbage.data);
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// needToTake -= garbage.data.amt!;
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// garbage.data.amt = 0;
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// }
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// }
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// }
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// garbageQueue.removeWhere((element) => element.data.amt == 0);
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// }
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// current = getNewOne();
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// coords = Coords(3, 21) + spawnPositionFixes[current.index];
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// print("${lineClear.linesCleared} lines, ${lineClear.attackProduced} atk, ${lineClear.spin}, combo ${stats.combo}, btb ${stats.btb}");
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// }
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// void handleGravity(double frames){
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// if (frames == 0) return;
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// gravityBucket += settings != null ?
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// (handling!.sdfActive ?
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// max(settings.g! * settings.handling!.sdf, 0.05 * settings.handling!.sdf) :
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// settings.g!
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// ) * frames
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// : 0;
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// int gravityImpact = 0;
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// if (gravityBucket >= 1.0){
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// gravityImpact = gravityBucket.truncate();
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// gravityBucket -= gravityBucket.truncate();
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// }
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// while (gravityImpact > 0){
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// if (board.positionIsValid(current, Coords(coords.x, coords.y-1), rot)) {coords.y -= 1; floored = false;}
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// else floored = true;
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// gravityImpact--;
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// }
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// if (floored) lockDelay -= frames;
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// if (lockDelay <= 0 && floored){
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// handleHardDrop();
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// }
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// }
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// void handleMovement(double frames){
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// if (frames == 0 || handling == null) return;
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// int movement = handling.processMovenent(frames);
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// while (movement.abs() > 0){
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// if (board.positionIsValid(current, Coords(movement.isNegative ? coords.x-1 : coords.x+1, coords.y), rot)) movement.isNegative ? coords.x-- : coords.x++;
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// movement.isNegative ? movement++ : movement--;
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// }
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// }
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// coords += spawnPositionFixes[current.index];
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// for (currentFrame; currentFrame <= replay.roundLengths[0]; currentFrame++){
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// handleMovement(1-subframesWent);
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// handleGravity(1-subframesWent);
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// subframesWent = 0;
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// if (settings?.handling?.sdf == 41) coords.y = sonicDrop();
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// //print(stats.combo);
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// if (currentFrame == nextEvent.frame){
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// while (currentFrame == nextEvent.frame){
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// //print("Processing $nextEvent");
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// switch (nextEvent.type){
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// case EventType.start:
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// developer.log("go");
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// break;
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// case EventType.full:
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// settings = (nextEvent as EventFull).data.options;
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// developer.log("SDF is ${settings?.handling?.sdf}, replay version is ${settings?.version}");
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// handling = HandlingHandler(settings!.handling!.das.toDouble(), settings.handling!.arr.toDouble());
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// lockDelay = settings.locktime!.toDouble();
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// lockResets = settings.lockresets!;
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// break;
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// case EventType.keydown:
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// nextEvent as EventKeyPress;
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// double subframesDiff = nextEvent.data.subframe - subframesWent;
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// subframesWent += subframesDiff;
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// handleMovement(subframesDiff);
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// handleGravity(subframesDiff);
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// //activeKeypresses[nextEvent.data.key] = nextEvent;
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// switch (nextEvent.data.key){
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// case KeyType.rotateCCW:
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// handleRotation(-1);
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// break;
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// case KeyType.rotateCW:
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// handleRotation(1);
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// break;
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// case KeyType.rotate180:
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// handleRotation(2);
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// break;
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// case KeyType.moveLeft:
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// case KeyType.moveRight:
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// int pontencialMovement = handling!.movementKeyPressed(nextEvent.data.key == KeyType.moveLeft, nextEvent.data.key == KeyType.moveRight, nextEvent.data.subframe);
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// if (board.positionIsValid(current, Coords(coords.x+pontencialMovement, coords.y), rot)) coords.x += pontencialMovement;
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// break;
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// case KeyType.softDrop:
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// handling!.sdfActive = true;
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// break;
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// case KeyType.hardDrop:
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// coords.y = sonicDrop();
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// print("$currentFrame: $current at $coords, garbage queue $garbageQueue\n$board");
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// handleHardDrop();
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// case KeyType.hold:
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// switch (hold){
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// case null:
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// hold = current;
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// current = getNewOne();
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// break;
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// case _:
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// Tetromino temp;
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// temp = hold;
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// hold = current;
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// current = temp;
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// rot = 0;
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// lockResets = 15;
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// lockDelay = 30;
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// gravityBucket = 1.0;
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// floored = false;
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// coords = Coords(3, 21) + spawnPositionFixes[current.index];
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// break;
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// }
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// break;
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// case KeyType.chat:
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// // TODO: Handle this case.
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// case KeyType.exit:
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// // TODO: Handle this case.
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// case KeyType.retry:
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// // TODO: Handle this case.
|
|
// default:
|
|
// developer.log(nextEvent.data.key.name);
|
|
// }
|
|
// if (nextEvent.data.key == KeyType.rotateCW && nextEvent.data.key == KeyType.rotateCW && nextEvent.data.key == KeyType.rotateCW){
|
|
// spinWasLastMove = true;
|
|
// }else{
|
|
// spinWasLastMove = false;
|
|
// }
|
|
// break;
|
|
// case EventType.keyup:
|
|
// nextEvent as EventKeyPress;
|
|
// double subframesDiff = nextEvent.data.subframe - subframesWent;
|
|
// subframesWent += subframesDiff;
|
|
// handleMovement(subframesDiff);
|
|
// handleGravity(subframesDiff);
|
|
// switch (nextEvent.data.key){
|
|
// case KeyType.moveLeft:
|
|
// case KeyType.moveRight:
|
|
// handling!.movementKeyReleased(nextEvent.data.key == KeyType.moveLeft, nextEvent.data.key == KeyType.moveRight, nextEvent.data.subframe);
|
|
// break;
|
|
// case KeyType.softDrop:
|
|
// handling?.sdfActive = false;
|
|
// break;
|
|
// case KeyType.rotateCCW:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.rotateCW:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.rotate180:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.hardDrop:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.hold:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.chat:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.exit:
|
|
// // TODO: Handle this case.
|
|
// case KeyType.retry:
|
|
// // TODO: Handle this case.
|
|
// }
|
|
// //activeKeypresses.remove(nextEvent.data.key);
|
|
// break;
|
|
// case EventType.end:
|
|
// currentFrame = replay.roundLengths[0]+1;
|
|
// break;
|
|
// case EventType.ige:
|
|
// nextEvent as EventIGE;
|
|
// switch (nextEvent.data.data.type){
|
|
// case "interaction":
|
|
// garbageQueue.add(IncomingGarbage((nextEvent.data.data as IGEdataInteraction).data));
|
|
// case "interaction_confirm":
|
|
// GarbageData data = (nextEvent.data.data as IGEdataInteraction).data;
|
|
// if(data.type != "targeted") garbageQueue.firstWhere((element) => element.data.iid == data.iid).confirm(currentFrame, settings!.garbageSpeed!);
|
|
// case "allow_targeting":
|
|
// case "target":
|
|
// default:
|
|
// developer.log("Unknown IGE type: ${nextEvent.data.type}", level: 900);
|
|
// break;
|
|
// }
|
|
// // garbage speed counts from interaction comfirm
|
|
// break;
|
|
// default:
|
|
// developer.log("Event wasn't processed: ${nextEvent}", level: 900);
|
|
// }
|
|
// try{
|
|
// nextEvent = events.removeAt(0);
|
|
// }
|
|
// catch (e){
|
|
// developer.log(e.toString());
|
|
// }
|
|
// }
|
|
// //developer.log("Next is: $nextEvent");
|
|
// }
|
|
// }
|
|
// exit(0);
|
|
// } |