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160 lines
3.1 KiB
C++
160 lines
3.1 KiB
C++
//
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// Tape.cpp
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// Clock Signal
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//
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// Created by Thomas Harte on 18/01/2016.
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// Copyright © 2016 Thomas Harte. All rights reserved.
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//
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#include "Tape.hpp"
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#include "../../NumberTheory/Factors.hpp"
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using namespace Storage::Tape;
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// MARK: - Lifecycle
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TapePlayer::TapePlayer(unsigned int input_clock_rate) :
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TimedEventLoop(input_clock_rate)
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{}
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// MARK: - Seeking
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void Storage::Tape::Tape::seek(Time &seek_time) {
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Time next_time(0);
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reset();
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while(next_time <= seek_time) {
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get_next_pulse();
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next_time += pulse_.length;
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}
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}
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Storage::Time Tape::get_current_time() {
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Time time(0);
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uint64_t steps = get_offset();
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reset();
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while(steps--) {
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get_next_pulse();
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time += pulse_.length;
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}
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return time;
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}
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void Storage::Tape::Tape::reset() {
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offset_ = 0;
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virtual_reset();
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}
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Tape::Pulse Tape::get_next_pulse() {
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pulse_ = virtual_get_next_pulse();
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offset_++;
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return pulse_;
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}
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uint64_t Tape::get_offset() {
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return offset_;
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}
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void Tape::set_offset(uint64_t offset) {
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if(offset == offset_) return;
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if(offset < offset_) {
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reset();
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}
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offset -= offset_;
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while(offset--) get_next_pulse();
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}
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// MARK: - Player
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bool TapePlayer::is_sleeping() {
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return !tape_ || tape_->is_at_end();
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}
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void TapePlayer::set_tape(std::shared_ptr<Storage::Tape::Tape> tape) {
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tape_ = tape;
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reset_timer();
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get_next_pulse();
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update_sleep_observer();
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}
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std::shared_ptr<Storage::Tape::Tape> TapePlayer::get_tape() {
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return tape_;
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}
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bool TapePlayer::has_tape() {
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return (bool)tape_;
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}
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void TapePlayer::get_next_pulse() {
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// get the new pulse
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if(tape_) {
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current_pulse_ = tape_->get_next_pulse();
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if(tape_->is_at_end()) update_sleep_observer();
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} else {
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current_pulse_.length.length = 1;
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current_pulse_.length.clock_rate = 1;
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current_pulse_.type = Tape::Pulse::Zero;
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}
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set_next_event_time_interval(current_pulse_.length);
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}
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void TapePlayer::run_for(const Cycles cycles) {
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if(has_tape()) {
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TimedEventLoop::run_for(cycles);
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}
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}
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void TapePlayer::run_for_input_pulse() {
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jump_to_next_event();
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}
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void TapePlayer::process_next_event() {
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process_input_pulse(current_pulse_);
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get_next_pulse();
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}
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// MARK: - Binary Player
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BinaryTapePlayer::BinaryTapePlayer(unsigned int input_clock_rate) :
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TapePlayer(input_clock_rate)
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{}
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bool BinaryTapePlayer::is_sleeping() {
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return !motor_is_running_ || TapePlayer::is_sleeping();
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}
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void BinaryTapePlayer::set_motor_control(bool enabled) {
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if(motor_is_running_ != enabled) {
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motor_is_running_ = enabled;
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update_sleep_observer();
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}
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}
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bool BinaryTapePlayer::get_motor_control() const {
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return motor_is_running_;
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}
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void BinaryTapePlayer::set_tape_output(bool set) {
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// TODO
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}
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bool BinaryTapePlayer::get_input() const {
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return motor_is_running_ && input_level_;
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}
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void BinaryTapePlayer::run_for(const Cycles cycles) {
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if(motor_is_running_) TapePlayer::run_for(cycles);
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}
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void BinaryTapePlayer::set_delegate(Delegate *delegate) {
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delegate_ = delegate;
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}
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void BinaryTapePlayer::process_input_pulse(const Storage::Tape::Tape::Pulse &pulse) {
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bool new_input_level = pulse.type == Tape::Pulse::High;
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if(input_level_ != new_input_level) {
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input_level_ = new_input_level;
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if(delegate_) delegate_->tape_did_change_input(this);
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}
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}
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