mirror of
https://github.com/wpilibsuite/allwpilib
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231 lines
6.3 KiB
C++
231 lines
6.3 KiB
C++
// Copyright (c) FIRST and other WPILib contributors.
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// Open Source Software; you can modify and/or share it under the terms of
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// the WPILib BSD license file in the root directory of this project.
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#include "PCMSimGui.h"
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#include <glass/hardware/Pneumatic.h>
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#include <glass/other/DeviceTree.h>
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#include <cstdio>
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#include <memory>
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#include <vector>
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#include <hal/Ports.h>
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#include <hal/Value.h>
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#include <hal/simulation/CTREPCMData.h>
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#include "HALDataSource.h"
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#include "HALSimGui.h"
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#include "SimDeviceGui.h"
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using namespace halsimgui;
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namespace {
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HALSIMGUI_DATASOURCE_BOOLEAN_INDEXED(CTREPCMCompressorOn, "Compressor On");
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HALSIMGUI_DATASOURCE_BOOLEAN_INDEXED(CTREPCMClosedLoopEnabled, "Closed Loop");
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HALSIMGUI_DATASOURCE_BOOLEAN_INDEXED(CTREPCMPressureSwitch, "Pressure Switch");
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HALSIMGUI_DATASOURCE_DOUBLE_INDEXED(CTREPCMCompressorCurrent,
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"Compressor Current");
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HALSIMGUI_DATASOURCE_BOOLEAN_INDEXED2(CTREPCMSolenoidOutput, "Solenoid");
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class CompressorSimModel : public glass::CompressorModel {
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public:
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explicit CompressorSimModel(int32_t index)
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: m_index{index},
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m_running{index},
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m_enabled{index},
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m_pressureSwitch{index},
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m_current{index} {}
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void Update() override {}
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bool Exists() override { return HALSIM_GetCTREPCMInitialized(m_index); }
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glass::DataSource* GetRunningData() override { return &m_running; }
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glass::DataSource* GetEnabledData() override { return &m_enabled; }
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glass::DataSource* GetPressureSwitchData() override {
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return &m_pressureSwitch;
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}
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glass::DataSource* GetCurrentData() override { return &m_current; }
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void SetRunning(bool val) override {
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HALSIM_SetCTREPCMCompressorOn(m_index, val);
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}
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void SetEnabled(bool val) override {
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HALSIM_SetCTREPCMClosedLoopEnabled(m_index, val);
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}
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void SetPressureSwitch(bool val) override {
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HALSIM_SetCTREPCMPressureSwitch(m_index, val);
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}
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void SetCurrent(double val) override {
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HALSIM_SetCTREPCMCompressorCurrent(m_index, val);
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}
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private:
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int32_t m_index;
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CTREPCMCompressorOnSource m_running;
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CTREPCMClosedLoopEnabledSource m_enabled;
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CTREPCMPressureSwitchSource m_pressureSwitch;
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CTREPCMCompressorCurrentSource m_current;
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};
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class SolenoidSimModel : public glass::SolenoidModel {
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public:
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SolenoidSimModel(int32_t index, int32_t channel)
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: m_index{index}, m_channel{channel}, m_output{index, channel} {}
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void Update() override {}
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bool Exists() override { return HALSIM_GetCTREPCMInitialized(m_index); }
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glass::DataSource* GetOutputData() override { return &m_output; }
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void SetOutput(bool val) override {
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HALSIM_SetCTREPCMSolenoidOutput(m_index, m_channel, val);
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}
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private:
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int32_t m_index;
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int32_t m_channel;
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CTREPCMSolenoidOutputSource m_output;
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};
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class PCMSimModel : public glass::PneumaticControlModel {
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public:
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explicit PCMSimModel(int32_t index)
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: m_index{index},
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m_compressor{index},
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m_solenoids(HAL_GetNumCTRESolenoidChannels()) {}
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void Update() override;
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bool Exists() override { return true; }
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CompressorSimModel* GetCompressor() override { return &m_compressor; }
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void ForEachSolenoid(
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wpi::function_ref<void(glass::SolenoidModel& model, int index)> func)
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override;
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std::string_view GetName() override { return "PCM"; }
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int GetNumSolenoids() const { return m_solenoidInitCount; }
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private:
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int32_t m_index;
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CompressorSimModel m_compressor;
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std::vector<std::unique_ptr<SolenoidSimModel>> m_solenoids;
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int m_solenoidInitCount = 0;
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};
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class PCMsSimModel : public glass::PneumaticControlsModel {
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public:
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PCMsSimModel() : m_models(HAL_GetNumCTREPCMModules()) {}
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void Update() override;
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bool Exists() override { return true; }
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void ForEachPneumaticControl(
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wpi::function_ref<void(glass::PneumaticControlModel& model, int index)>
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func) override;
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private:
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std::vector<std::unique_ptr<PCMSimModel>> m_models;
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};
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} // namespace
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void PCMSimModel::Update() {
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int32_t numChannels = m_solenoids.size();
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m_solenoidInitCount = 0;
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for (int32_t i = 0; i < numChannels; ++i) {
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auto& model = m_solenoids[i];
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if (HALSIM_GetCTREPCMInitialized(m_index)) {
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if (!model) {
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model = std::make_unique<SolenoidSimModel>(m_index, i);
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}
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++m_solenoidInitCount;
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} else {
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model.reset();
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}
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}
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}
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void PCMSimModel::ForEachSolenoid(
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wpi::function_ref<void(glass::SolenoidModel& model, int index)> func) {
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if (m_solenoidInitCount == 0) {
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return;
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}
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int32_t numSolenoids = m_solenoids.size();
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for (int32_t i = 0; i < numSolenoids; ++i) {
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if (auto model = m_solenoids[i].get()) {
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func(*model, i);
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}
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}
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}
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void PCMsSimModel::Update() {
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for (int32_t i = 0, iend = static_cast<int32_t>(m_models.size()); i < iend;
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++i) {
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auto& model = m_models[i];
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if (HALSIM_GetCTREPCMInitialized(i)) {
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if (!model) {
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model = std::make_unique<PCMSimModel>(i);
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}
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model->Update();
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} else {
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model.reset();
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}
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}
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}
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void PCMsSimModel::ForEachPneumaticControl(
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wpi::function_ref<void(glass::PneumaticControlModel& model, int index)>
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func) {
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int32_t numCTREPCMs = m_models.size();
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for (int32_t i = 0; i < numCTREPCMs; ++i) {
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if (auto model = m_models[i].get()) {
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func(*model, i);
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}
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}
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}
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bool PCMSimGui::PCMsAnyInitialized() {
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static const int32_t num = HAL_GetNumCTREPCMModules();
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for (int32_t i = 0; i < num; ++i) {
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if (HALSIM_GetCTREPCMInitialized(i)) {
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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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bool PCMSimGui::PCMsAnySolenoids(glass::PneumaticControlsModel* model) {
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bool any = false;
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static_cast<PCMsSimModel*>(model)->ForEachPneumaticControl(
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[&](glass::PneumaticControlModel& CTREPCM, int) {
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if (static_cast<PCMSimModel*>(&CTREPCM)->GetNumSolenoids() > 0) {
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any = true;
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}
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});
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return any;
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}
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std::unique_ptr<glass::PneumaticControlsModel> PCMSimGui::GetPCMsModel() {
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return std::make_unique<PCMsSimModel>();
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}
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void PCMSimGui::Initialize() {
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HALSimGui::halProvider->RegisterModel(
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"CTREPCMs", PCMSimGui::PCMsAnyInitialized,
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[] { return std::make_unique<PCMsSimModel>(); });
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SimDeviceGui::GetDeviceTree().Add(
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HALSimGui::halProvider->GetModel("CTREPCMs"), [](glass::Model* model) {
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glass::DisplayCompressorsDevice(
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static_cast<PCMsSimModel*>(model),
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HALSimGui::halProvider->AreOutputsEnabled());
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});
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}
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