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106 lines
3.5 KiB
C++
106 lines
3.5 KiB
C++
//
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// MultiProducer.cpp
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// Clock Signal
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//
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// Created by Thomas Harte on 29/01/2018.
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// Copyright 2018 Thomas Harte. All rights reserved.
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//
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#include "MultiProducer.hpp"
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#include <condition_variable>
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#include <mutex>
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using namespace Analyser::Dynamic;
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// MARK: - MultiInterface
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template <typename MachineType>
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void MultiInterface<MachineType>::perform_parallel(const std::function<void(MachineType *)> &function) {
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// Apply a blunt force parallelisation of the machines; each run_for is dispatched
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// to a separate queue and this queue will block until all are done.
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volatile std::size_t outstanding_machines;
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std::condition_variable condition;
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std::mutex mutex;
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{
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std::lock_guard<decltype(machines_mutex_)> machines_lock(machines_mutex_);
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std::lock_guard<std::mutex> lock(mutex);
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outstanding_machines = machines_.size();
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for(std::size_t index = 0; index < machines_.size(); ++index) {
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const auto machine = ::Machine::get<MachineType>(*machines_[index].get());
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queues_[index].enqueue([&mutex, &condition, machine, function, &outstanding_machines]() {
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if(machine) function(machine);
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std::lock_guard<std::mutex> lock(mutex);
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outstanding_machines--;
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condition.notify_all();
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});
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}
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}
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std::unique_lock<std::mutex> lock(mutex);
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condition.wait(lock, [&outstanding_machines] { return !outstanding_machines; });
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}
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template <typename MachineType>
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void MultiInterface<MachineType>::perform_serial(const std::function<void(MachineType *)> &function) {
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std::lock_guard<decltype(machines_mutex_)> machines_lock(machines_mutex_);
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for(const auto &machine: machines_) {
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const auto typed_machine = ::Machine::get<MachineType>(*machine.get());
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if(typed_machine) function(typed_machine);
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}
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}
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// MARK: - MultiScanProducer
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void MultiScanProducer::set_scan_target(Outputs::Display::ScanTarget *scan_target) {
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scan_target_ = scan_target;
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std::lock_guard<decltype(machines_mutex_)> machines_lock(machines_mutex_);
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const auto machine = machines_.front()->scan_producer();
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if(machine) machine->set_scan_target(scan_target);
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}
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Outputs::Display::ScanStatus MultiScanProducer::get_scan_status() const {
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std::lock_guard<decltype(machines_mutex_)> machines_lock(machines_mutex_);
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const auto machine = machines_.front()->scan_producer();
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if(machine) return machine->get_scan_status();
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return Outputs::Display::ScanStatus();
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}
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void MultiScanProducer::did_change_machine_order() {
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if(scan_target_) scan_target_->will_change_owner();
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perform_serial([](MachineTypes::ScanProducer *machine) {
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machine->set_scan_target(nullptr);
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});
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std::lock_guard<decltype(machines_mutex_)> machines_lock(machines_mutex_);
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const auto machine = machines_.front()->scan_producer();
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if(machine) machine->set_scan_target(scan_target_);
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}
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// MARK: - MultiAudioProducer
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MultiAudioProducer::MultiAudioProducer(const std::vector<std::unique_ptr<::Machine::DynamicMachine>> &machines, std::recursive_mutex &machines_mutex) : MultiInterface(machines, machines_mutex) {
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speaker_ = MultiSpeaker::create(machines);
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}
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Outputs::Speaker::Speaker *MultiAudioProducer::get_speaker() {
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return speaker_;
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}
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void MultiAudioProducer::did_change_machine_order() {
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if(speaker_) {
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speaker_->set_new_front_machine(machines_.front().get());
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}
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}
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// MARK: - MultiTimedMachine
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void MultiTimedMachine::run_for(Time::Seconds duration) {
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perform_parallel([duration](::MachineTypes::TimedMachine *machine) {
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if(machine->get_confidence() >= 0.01f) machine->run_for(duration);
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});
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if(delegate_) delegate_->did_run_machines(this);
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}
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