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@ -20,7 +20,7 @@
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#include "Arduino.h"
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#include "kaleidoscope/simulator/interface/Simulator.h"
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#include "kaleidoscope/simulator/interface/Simulator_.h"
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#include "kaleidoscope/simulator/interface/ActionContainer_Impl.h"
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#include "kaleidoscope/simulator/interface/actions/Action_.h"
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#include "kaleidoscope/simulator/interface/aux/WallTimer.h"
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@ -86,7 +86,7 @@ void SimulatorStream_::reactOnLineEnd() {
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this->getOStream() << "\n";
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}
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ErrorStream::ErrorStream(const Simulator *simulator)
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ErrorStream::ErrorStream(const Simulator_ *simulator)
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: SimulatorStream_(simulator) {
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auto &out = this->getOStream();
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@ -119,7 +119,7 @@ void ErrorStream::reactOnLineStart() {
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this->getOStream() << "!!! ";
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}
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DebugStream::DebugStream(const Simulator *simulator)
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DebugStream::DebugStream(const Simulator_ *simulator)
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: SimulatorStream_(simulator) {
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if (this->mute()) {
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return;
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@ -155,7 +155,7 @@ void DebugStream::reactOnLineStart() {
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this->getOStream() << "***Debug: ";
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}
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LogStream::LogStream(const Simulator *simulator)
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LogStream::LogStream(const Simulator_ *simulator)
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: SimulatorStream_(simulator) {
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}
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@ -167,7 +167,7 @@ LogStream::~LogStream() {
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this->getOStream() << "\n";
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}
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HeaderStream::HeaderStream(const Simulator *simulator)
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HeaderStream::HeaderStream(const Simulator_ *simulator)
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: SimulatorStream_(simulator) {
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if (this->mute()) {
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return;
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@ -205,7 +205,7 @@ void HeaderStream::reactOnLineStart() {
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this->getOStream() << "### ";
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}
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Test::Test(Simulator *simulator, const char *name)
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Test::Test(Simulator_ *simulator, const char *name)
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: simulator_(simulator),
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name_(name),
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error_count_start_(simulator->getErrorCount()) {
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@ -222,10 +222,10 @@ Test::~Test() {
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}
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}
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Simulator::Simulator(std::ostream &out,
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bool debug,
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int cycle_duration,
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bool abort_on_first_error)
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Simulator_::Simulator_(std::ostream &out,
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bool debug,
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int cycle_duration,
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bool abort_on_first_error)
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: out_{&out},
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debug_{debug},
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@ -245,7 +245,7 @@ Simulator::Simulator(std::ostream &out,
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this->headerText();
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}
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Simulator::~Simulator() {
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Simulator_::~Simulator_() {
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this->footerText();
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if (!test_success_) {
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@ -254,24 +254,24 @@ Simulator::~Simulator() {
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}
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}
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void Simulator::pressKey(uint8_t row, uint8_t col) {
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void Simulator_::pressKey(uint8_t row, uint8_t col) {
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this->log() << "+ Activating key (" << (unsigned)row << ", " << (unsigned)col << ")";
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simulator_core_->pressKey(row, col);
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}
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void Simulator::releaseKey(uint8_t row, uint8_t col) {
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void Simulator_::releaseKey(uint8_t row, uint8_t col) {
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this->log() << "+ Releasing key (" << (unsigned)row << ", " << (unsigned)col << ")";
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simulator_core_->releaseKey(row, col);
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}
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void Simulator::tapKey(uint8_t row, uint8_t col) {
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void Simulator_::tapKey(uint8_t row, uint8_t col) {
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this->log() << "+- Tapping key (" << (unsigned)row << ", " << (unsigned)col << ")";
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simulator_core_->tapKey(row, col);
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}
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void Simulator::multiTapKeyInternal(int num_taps, uint8_t row, uint8_t col,
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int tap_interval_cycles,
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std::shared_ptr<Action_> after_tap_and_cycles_action) {
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void Simulator_::multiTapKeyInternal(int num_taps, uint8_t row, uint8_t col,
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int tap_interval_cycles,
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std::shared_ptr<Action_> after_tap_and_cycles_action) {
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if (after_tap_and_cycles_action) {
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after_tap_and_cycles_action->setSimulator(this);
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}
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@ -302,7 +302,7 @@ void Simulator::multiTapKeyInternal(int num_taps, uint8_t row, uint8_t col,
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}
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}
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void Simulator::clearAllKeys() {
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void Simulator_::clearAllKeys() {
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this->log() << "- Clearing all keys";
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uint8_t rows = 0, cols = 0;
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@ -316,7 +316,7 @@ void Simulator::clearAllKeys() {
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}
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}
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void Simulator::cycle(bool suppress_cycle_info_log) {
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void Simulator_::cycle(bool suppress_cycle_info_log) {
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if (!suppress_cycle_info_log) {
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this->log() << "Running single scan cycle";
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}
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@ -328,8 +328,8 @@ void Simulator::cycle(bool suppress_cycle_info_log) {
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}
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}
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void Simulator::cyclesInternal(int n,
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const std::vector<std::shared_ptr<Action_>> &cycle_action_list) {
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void Simulator_::cyclesInternal(int n,
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const std::vector<std::shared_ptr<Action_>> &cycle_action_list) {
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if (n == 0) {
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n = scan_cycles_default_count_;
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}
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@ -344,7 +344,7 @@ void Simulator::cyclesInternal(int n,
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this->log() << "";
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}
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void Simulator::advanceTimeBy(Simulator::TimeType delta_t) {
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void Simulator_::advanceTimeBy(Simulator_::TimeType delta_t) {
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this->checkCycleDurationSet();
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@ -353,13 +353,13 @@ void Simulator::advanceTimeBy(Simulator::TimeType delta_t) {
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this->skipTimeInternal(delta_t);
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}
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void Simulator::skipTimeInternal(Simulator::TimeType delta_t) {
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void Simulator_::skipTimeInternal(Simulator_::TimeType delta_t) {
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auto start_cycle = cycle_id_;
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auto start_time = time_;
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Simulator::TimeType elapsed_time = 0;
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Simulator_::TimeType elapsed_time = 0;
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while (elapsed_time < delta_t) {
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this->cycleInternal(true /* only_log_reports */);
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elapsed_time = time_ - start_time;
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@ -370,7 +370,7 @@ void Simulator::skipTimeInternal(Simulator::TimeType delta_t) {
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this->log() << "";
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}
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void Simulator::advanceTimeTo(TimeType time) {
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void Simulator_::advanceTimeTo(TimeType time) {
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if (time <= time_) {
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this->error() << "Failed cycling to time " << time << " ms. Target time is in the past.";
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return;
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@ -383,12 +383,12 @@ void Simulator::advanceTimeTo(TimeType time) {
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this->skipTimeInternal(delta_t);
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}
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void Simulator::init() {
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void Simulator_::init() {
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this->clearAllKeys();
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simulator_core_->init();
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}
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bool Simulator::checkStatus() {
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bool Simulator_::checkStatus() {
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if (!queued_report_actions_.empty()) {
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this->error() << "There are " << queued_report_actions_.size()
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@ -415,7 +415,7 @@ bool Simulator::checkStatus() {
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return false;
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}
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void Simulator::headerText() {
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void Simulator_::headerText() {
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// Foreground color yellow
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//
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@ -440,7 +440,7 @@ void Simulator::headerText() {
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this->getOStream() << "\x1B[0m";
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}
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void Simulator::footerText() {
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void Simulator_::footerText() {
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// Foreground color yellow
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//
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@ -471,7 +471,7 @@ void Simulator::footerText() {
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this->getOStream() << "\x1B[0m";
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}
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void Simulator::cycleInternal(bool only_log_reports) {
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void Simulator_::cycleInternal(bool only_log_reports) {
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++cycle_id_;
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n_reports_in_cycle_ = 0;
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@ -516,14 +516,14 @@ void Simulator::cycleInternal(bool only_log_reports) {
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}
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}
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void Simulator::checkCycleDurationSet() {
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void Simulator_::checkCycleDurationSet() {
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if (cycle_duration_ == 0) {
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this->error() << "Please set test.cycle_duration_ to a value in "
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"[ms] greater zero before using time based testing";
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}
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}
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void Simulator::assertNothingQueued() const {
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void Simulator_::assertNothingQueued() const {
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if (!queued_report_actions_.empty()) {
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this->error() << "Report actions are left in queue";
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}
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@ -533,14 +533,14 @@ void Simulator::assertNothingQueued() const {
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}
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}
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void Simulator::assertCondition(bool cond, const char *action_code) const {
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void Simulator_::assertCondition(bool cond, const char *action_code) const {
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if (!cond) {
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this->error() << "Action failed: " << action_code;
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}
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}
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void Simulator::runRealtime(TimeType duration,
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const std::function<void()> &cycle_function) {
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void Simulator_::runRealtime(TimeType duration,
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const std::function<void()> &cycle_function) {
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auto n_cycles = duration / cycle_duration_;
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aux::WallTimer timer;
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@ -591,12 +591,12 @@ class DataCollectorThread {
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uint16_t key_bitfield_[n_bytes_per_row] = {};
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std::mutex mutex_;
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friend class Simulator;
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friend class Simulator_;
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};
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void Simulator::runRemoteControlled(const std::function<void()> &cycle_callback,
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bool realtime
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) {
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void Simulator_::runRemoteControlled(const std::function<void()> &cycle_callback,
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bool realtime
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) {
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aux::WallTimer timer;
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DataCollectorThread dct;
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