229 lines
7.1 KiB
C++
229 lines
7.1 KiB
C++
#include <iostream>
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#include <fstream>
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#include <string>
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#include <vector>
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#include <utility>
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#include <sstream>
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#include <cstdlib>
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#include <ctime>
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#include <algorithm>
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#include <iomanip>
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struct Task {
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int pid;
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std::string filename;
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std::vector<std::pair<std::string, std::string>> program;
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int pc;
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int accu;
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int blocked;
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int start_tick;
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int end_tick;
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bool terminated;
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int slice_remaining;
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};
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std::vector<std::pair<std::string, std::string>> readFile(const std::string &filename) {
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std::vector<std::pair<std::string, std::string>> instructions;
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std::ifstream file(filename);
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if(!file.is_open()) {
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std::cerr << "Fehler: Datei " << filename << " konnte nicht geöffnet werden.\n";
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return instructions;
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}
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std::string line;
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while (std::getline(file, line)) {
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if (line.empty()) continue;
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std::istringstream iss(line);
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std::string command;
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std::string param;
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if (!(iss >> command)) {
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continue;
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}
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if (!(iss >> param)) {
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param = "";
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}
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instructions.push_back(std::make_pair(command, param));
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}
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return instructions;
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}
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int main(int argc, char* argv[]) {
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if (argc < 2) {
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std::cerr << "Verwendung: " << argv[0] << " <Zeitscheibenlänge>" << std::endl;
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return 1;
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}
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int time_slice = std::stoi(argv[1]);
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srand(time(0));
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std::vector<Task> tasks;
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int next_pid = 0;
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int current_tick = 0;
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// Initialen Task aus init erstellen
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auto init_program = readFile("init");
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if (init_program.empty()) {
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std::cerr << "Fehler: init konnte nicht gelesen werden." << std::endl;
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return 1;
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}
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Task init_task = {
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next_pid++,
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"init",
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init_program,
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0,
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0,
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0,
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0,
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-1,
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false,
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time_slice
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};
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tasks.push_back(init_task);
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// Header ausgeben
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std::cout << "Tick\tPID\tTask\tPC\tAccu\tInstr" << std::endl;
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int last_executed_index = -1;
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bool all_terminated = false;
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while (!all_terminated) {
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all_terminated = true;
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bool found_runnable = false;
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int start_index = (last_executed_index + 1) % tasks.size();
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int current_index = start_index;
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Task* current_task = nullptr;
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do {
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Task& task = tasks[current_index];
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if (!task.terminated && task.blocked == 0) {
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current_task = &task;
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found_runnable = true;
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last_executed_index = current_index;
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break;
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}
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current_index = (current_index + 1) % tasks.size();
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} while (current_index != start_index);
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if (found_runnable) {
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while (current_task->slice_remaining > 0 && !current_task->terminated && current_task->blocked == 0) {
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// Hole Befehl
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auto& instruction = current_task->program[current_task->pc];
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std::string command = instruction.first;
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std::string param = instruction.second;
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// Ausgabe des aktuellen Zustands
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std::cout << current_tick << "\t"
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<< current_task->pid << "\t"
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<< current_task->filename << "\t"
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<< current_task->pc << "\t"
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<< current_task->accu << "\t"
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<< command;
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if (!param.empty()) {
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std::cout << " " << param;
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}
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std::cout << std::endl;
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// Führe Befehl aus
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if (command == "LOAD") {
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current_task->accu = std::stoi(param);
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} else if (command == "ADD") {
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current_task->accu += std::stoi(param);
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} else if (command == "SUB") {
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current_task->accu -= std::stoi(param);
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} else if (command == "READ") {
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current_task->accu = rand() % 4096;
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current_task->blocked = 2;
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} else if (command == "EXE") {
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std::string filename = param;
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auto new_program = readFile(filename);
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if (!new_program.empty()) {
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Task new_task = {
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next_pid++,
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param,
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new_program,
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0,
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0,
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0,
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current_tick + 1,
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-1,
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false,
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time_slice
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};
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tasks.push_back(new_task);
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}
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} else if (command == "T") {
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current_task->terminated = true;
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current_task->end_tick = current_tick;
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}
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// PC erhöhen, außer bei Terminierung
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if (command != "T") {
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current_task->pc++;
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if (current_task->pc >= current_task->program.size()) {
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current_task->terminated = true;
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current_task->end_tick = current_tick;
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}
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}
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// Blockierungszeit für andere Tasks dekrementieren
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for (auto& task : tasks) {
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if (task.blocked > 0) {
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if (&task == current_task && command == "READ") {
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// Nicht dekrementieren
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} else {
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task.blocked--;
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}
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}
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}
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// Zeitscheibe verbrauchen
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current_task->slice_remaining--;
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current_tick++;
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// Bei Blockierung oder Terminierung Schleife verlassen
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if (current_task->blocked > 0 || current_task->terminated) {
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break;
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}
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}
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// Zeitscheibe zurücksetzen
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current_task->slice_remaining = time_slice;
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} else {
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// Kein lauffähiger Task (IDLE)
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std::cout << current_tick << "\tIDLE" << std::endl;
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for (auto& task : tasks) {
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if (task.blocked > 0) {
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task.blocked--;
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}
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}
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current_tick++;
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}
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// Prüfen, ob noch aktive Tasks existieren
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for (const auto& task : tasks) {
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if (!task.terminated) {
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all_terminated = false;
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break;
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}
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}
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}
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// Statistik ausgeben
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std::cout << "\nStatistik:" << std::endl;
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std::cout << "PID\tTask\tStart\tEnde\tVerweilzeit\tAccu" << std::endl;
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for (const auto& task : tasks) {
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int turnaround = task.end_tick - task.start_tick + 1;
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std::cout << task.pid << "\t"
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<< task.filename << "\t"
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<< task.start_tick << "\t"
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<< task.end_tick << "\t"
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<< turnaround << "\t\t"
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<< task.accu << std::endl;
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}
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return 0;
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}
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