added Simple Serial Analyzer source and VS project.

This commit is contained in:
Marcus10110 2016-10-03 14:08:53 -07:00
parent 1c420ee1b8
commit 2770b314a8
12 changed files with 676 additions and 0 deletions

3
.gitmodules vendored Normal file
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[submodule "AnalyzerSDK"]
path = AnalyzerSDK
url = ../AnalyzerSDK.git

1
AnalyzerSDK Submodule

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Subproject commit 31af8aa1576c397c9b95eee92b1b7bc49e04e18e

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#include "SimpleSerialAnalyzer.h"
#include "SimpleSerialAnalyzerSettings.h"
#include <AnalyzerChannelData.h>
SimpleSerialAnalyzer::SimpleSerialAnalyzer()
: Analyzer(),
mSettings( new SimpleSerialAnalyzerSettings() ),
mSimulationInitilized( false )
{
SetAnalyzerSettings( mSettings.get() );
}
SimpleSerialAnalyzer::~SimpleSerialAnalyzer()
{
KillThread();
}
void SimpleSerialAnalyzer::WorkerThread()
{
mResults.reset( new SimpleSerialAnalyzerResults( this, mSettings.get() ) );
SetAnalyzerResults( mResults.get() );
mResults->AddChannelBubblesWillAppearOn( mSettings->mInputChannel );
mSampleRateHz = GetSampleRate();
mSerial = GetAnalyzerChannelData( mSettings->mInputChannel );
if( mSerial->GetBitState() == BIT_LOW )
mSerial->AdvanceToNextEdge();
U32 samples_per_bit = mSampleRateHz / mSettings->mBitRate;
U32 samples_to_first_center_of_first_data_bit = U32( 1.5 * double( mSampleRateHz ) / double( mSettings->mBitRate ) );
for( ; ; )
{
U8 data = 0;
U8 mask = 1 << 7;
mSerial->AdvanceToNextEdge(); //falling edge -- beginning of the start bit
U64 starting_sample = mSerial->GetSampleNumber();
mSerial->Advance( samples_to_first_center_of_first_data_bit );
for( U32 i=0; i<8; i++ )
{
//let's put a dot exactly where we sample this bit:
mResults->AddMarker( mSerial->GetSampleNumber(), AnalyzerResults::Dot, mSettings->mInputChannel );
if( mSerial->GetBitState() == BIT_HIGH )
data |= mask;
mSerial->Advance( samples_per_bit );
mask = mask >> 1;
}
//we have a byte to save.
Frame frame;
frame.mData1 = data;
frame.mFlags = 0;
frame.mStartingSampleInclusive = starting_sample;
frame.mEndingSampleInclusive = mSerial->GetSampleNumber();
mResults->AddFrame( frame );
mResults->CommitResults();
ReportProgress( frame.mEndingSampleInclusive );
}
}
bool SimpleSerialAnalyzer::NeedsRerun()
{
return false;
}
U32 SimpleSerialAnalyzer::GenerateSimulationData( U64 minimum_sample_index, U32 device_sample_rate, SimulationChannelDescriptor** simulation_channels )
{
if( mSimulationInitilized == false )
{
mSimulationDataGenerator.Initialize( GetSimulationSampleRate(), mSettings.get() );
mSimulationInitilized = true;
}
return mSimulationDataGenerator.GenerateSimulationData( minimum_sample_index, device_sample_rate, simulation_channels );
}
U32 SimpleSerialAnalyzer::GetMinimumSampleRateHz()
{
return mSettings->mBitRate * 4;
}
const char* SimpleSerialAnalyzer::GetAnalyzerName() const
{
return "Simple Serial";
}
const char* GetAnalyzerName()
{
return "Simple Serial";
}
Analyzer* CreateAnalyzer()
{
return new SimpleSerialAnalyzer();
}
void DestroyAnalyzer( Analyzer* analyzer )
{
delete analyzer;
}

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#ifndef SIMPLESERIAL_ANALYZER_H
#define SIMPLESERIAL_ANALYZER_H
#include <Analyzer.h>
#include "SimpleSerialAnalyzerResults.h"
#include "SimpleSerialSimulationDataGenerator.h"
class SimpleSerialAnalyzerSettings;
class ANALYZER_EXPORT SimpleSerialAnalyzer : public Analyzer
{
public:
SimpleSerialAnalyzer();
virtual ~SimpleSerialAnalyzer();
virtual void WorkerThread();
virtual U32 GenerateSimulationData( U64 newest_sample_requested, U32 sample_rate, SimulationChannelDescriptor** simulation_channels );
virtual U32 GetMinimumSampleRateHz();
virtual const char* GetAnalyzerName() const;
virtual bool NeedsRerun();
protected: //vars
std::auto_ptr< SimpleSerialAnalyzerSettings > mSettings;
std::auto_ptr< SimpleSerialAnalyzerResults > mResults;
AnalyzerChannelData* mSerial;
SimpleSerialSimulationDataGenerator mSimulationDataGenerator;
bool mSimulationInitilized;
//Serial analysis vars:
U32 mSampleRateHz;
U32 mStartOfStopBitOffset;
U32 mEndOfStopBitOffset;
};
extern "C" ANALYZER_EXPORT const char* __cdecl GetAnalyzerName();
extern "C" ANALYZER_EXPORT Analyzer* __cdecl CreateAnalyzer( );
extern "C" ANALYZER_EXPORT void __cdecl DestroyAnalyzer( Analyzer* analyzer );
#endif //SIMPLESERIAL_ANALYZER_H

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#include "SimpleSerialAnalyzerResults.h"
#include <AnalyzerHelpers.h>
#include "SimpleSerialAnalyzer.h"
#include "SimpleSerialAnalyzerSettings.h"
#include <iostream>
#include <fstream>
SimpleSerialAnalyzerResults::SimpleSerialAnalyzerResults( SimpleSerialAnalyzer* analyzer, SimpleSerialAnalyzerSettings* settings )
: AnalyzerResults(),
mSettings( settings ),
mAnalyzer( analyzer )
{
}
SimpleSerialAnalyzerResults::~SimpleSerialAnalyzerResults()
{
}
void SimpleSerialAnalyzerResults::GenerateBubbleText( U64 frame_index, Channel& channel, DisplayBase display_base )
{
ClearResultStrings();
Frame frame = GetFrame( frame_index );
char number_str[128];
AnalyzerHelpers::GetNumberString( frame.mData1, display_base, 8, number_str, 128 );
AddResultString( number_str );
}
void SimpleSerialAnalyzerResults::GenerateExportFile( const char* file, DisplayBase display_base, U32 export_type_user_id )
{
std::ofstream file_stream( file, std::ios::out );
U64 trigger_sample = mAnalyzer->GetTriggerSample();
U32 sample_rate = mAnalyzer->GetSampleRate();
file_stream << "Time [s],Value" << std::endl;
U64 num_frames = GetNumFrames();
for( U32 i=0; i < num_frames; i++ )
{
Frame frame = GetFrame( i );
char time_str[128];
AnalyzerHelpers::GetTimeString( frame.mStartingSampleInclusive, trigger_sample, sample_rate, time_str, 128 );
char number_str[128];
AnalyzerHelpers::GetNumberString( frame.mData1, display_base, 8, number_str, 128 );
file_stream << time_str << "," << number_str << std::endl;
if( UpdateExportProgressAndCheckForCancel( i, num_frames ) == true )
{
file_stream.close();
return;
}
}
file_stream.close();
}
void SimpleSerialAnalyzerResults::GenerateFrameTabularText( U64 frame_index, DisplayBase display_base )
{
Frame frame = GetFrame( frame_index );
ClearResultStrings();
char number_str[128];
AnalyzerHelpers::GetNumberString( frame.mData1, display_base, 8, number_str, 128 );
AddResultString( number_str );
}
void SimpleSerialAnalyzerResults::GeneratePacketTabularText( U64 packet_id, DisplayBase display_base )
{
ClearResultStrings();
AddResultString( "not supported" );
}
void SimpleSerialAnalyzerResults::GenerateTransactionTabularText( U64 transaction_id, DisplayBase display_base )
{
ClearResultStrings();
AddResultString( "not supported" );
}

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#ifndef SIMPLESERIAL_ANALYZER_RESULTS
#define SIMPLESERIAL_ANALYZER_RESULTS
#include <AnalyzerResults.h>
class SimpleSerialAnalyzer;
class SimpleSerialAnalyzerSettings;
class SimpleSerialAnalyzerResults : public AnalyzerResults
{
public:
SimpleSerialAnalyzerResults( SimpleSerialAnalyzer* analyzer, SimpleSerialAnalyzerSettings* settings );
virtual ~SimpleSerialAnalyzerResults();
virtual void GenerateBubbleText( U64 frame_index, Channel& channel, DisplayBase display_base );
virtual void GenerateExportFile( const char* file, DisplayBase display_base, U32 export_type_user_id );
virtual void GenerateFrameTabularText(U64 frame_index, DisplayBase display_base );
virtual void GeneratePacketTabularText( U64 packet_id, DisplayBase display_base );
virtual void GenerateTransactionTabularText( U64 transaction_id, DisplayBase display_base );
protected: //functions
protected: //vars
SimpleSerialAnalyzerSettings* mSettings;
SimpleSerialAnalyzer* mAnalyzer;
};
#endif //SIMPLESERIAL_ANALYZER_RESULTS

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#include "SimpleSerialAnalyzerSettings.h"
#include <AnalyzerHelpers.h>
SimpleSerialAnalyzerSettings::SimpleSerialAnalyzerSettings()
: mInputChannel( UNDEFINED_CHANNEL ),
mBitRate( 9600 )
{
mInputChannelInterface.reset( new AnalyzerSettingInterfaceChannel() );
mInputChannelInterface->SetTitleAndTooltip( "Serial", "Standard Simple Serial" );
mInputChannelInterface->SetChannel( mInputChannel );
mBitRateInterface.reset( new AnalyzerSettingInterfaceInteger() );
mBitRateInterface->SetTitleAndTooltip( "Bit Rate (Bits/S)", "Specify the bit rate in bits per second." );
mBitRateInterface->SetMax( 6000000 );
mBitRateInterface->SetMin( 1 );
mBitRateInterface->SetInteger( mBitRate );
AddInterface( mInputChannelInterface.get() );
AddInterface( mBitRateInterface.get() );
AddExportOption( 0, "Export as text/csv file" );
AddExportExtension( 0, "text", "txt" );
AddExportExtension( 0, "csv", "csv" );
ClearChannels();
AddChannel( mInputChannel, "Serial", false );
}
SimpleSerialAnalyzerSettings::~SimpleSerialAnalyzerSettings()
{
}
bool SimpleSerialAnalyzerSettings::SetSettingsFromInterfaces()
{
mInputChannel = mInputChannelInterface->GetChannel();
mBitRate = mBitRateInterface->GetInteger();
ClearChannels();
AddChannel( mInputChannel, "Simple Serial", true );
return true;
}
void SimpleSerialAnalyzerSettings::UpdateInterfacesFromSettings()
{
mInputChannelInterface->SetChannel( mInputChannel );
mBitRateInterface->SetInteger( mBitRate );
}
void SimpleSerialAnalyzerSettings::LoadSettings( const char* settings )
{
SimpleArchive text_archive;
text_archive.SetString( settings );
text_archive >> mInputChannel;
text_archive >> mBitRate;
ClearChannels();
AddChannel( mInputChannel, "Simple Serial", true );
UpdateInterfacesFromSettings();
}
const char* SimpleSerialAnalyzerSettings::SaveSettings()
{
SimpleArchive text_archive;
text_archive << mInputChannel;
text_archive << mBitRate;
return SetReturnString( text_archive.GetString() );
}

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#ifndef SIMPLESERIAL_ANALYZER_SETTINGS
#define SIMPLESERIAL_ANALYZER_SETTINGS
#include <AnalyzerSettings.h>
#include <AnalyzerTypes.h>
class SimpleSerialAnalyzerSettings : public AnalyzerSettings
{
public:
SimpleSerialAnalyzerSettings();
virtual ~SimpleSerialAnalyzerSettings();
virtual bool SetSettingsFromInterfaces();
void UpdateInterfacesFromSettings();
virtual void LoadSettings( const char* settings );
virtual const char* SaveSettings();
Channel mInputChannel;
U32 mBitRate;
protected:
std::auto_ptr< AnalyzerSettingInterfaceChannel > mInputChannelInterface;
std::auto_ptr< AnalyzerSettingInterfaceInteger > mBitRateInterface;
};
#endif //SIMPLESERIAL_ANALYZER_SETTINGS

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#include "SimpleSerialSimulationDataGenerator.h"
#include "SimpleSerialAnalyzerSettings.h"
#include <AnalyzerHelpers.h>
SimpleSerialSimulationDataGenerator::SimpleSerialSimulationDataGenerator()
: mSerialText( "My first analyzer, woo hoo!" ),
mStringIndex( 0 )
{
}
SimpleSerialSimulationDataGenerator::~SimpleSerialSimulationDataGenerator()
{
}
void SimpleSerialSimulationDataGenerator::Initialize( U32 simulation_sample_rate, SimpleSerialAnalyzerSettings* settings )
{
mSimulationSampleRateHz = simulation_sample_rate;
mSettings = settings;
mSerialSimulationData.SetChannel( mSettings->mInputChannel );
mSerialSimulationData.SetSampleRate( simulation_sample_rate );
mSerialSimulationData.SetInitialBitState( BIT_HIGH );
}
U32 SimpleSerialSimulationDataGenerator::GenerateSimulationData( U64 largest_sample_requested, U32 sample_rate, SimulationChannelDescriptor** simulation_channel )
{
U64 adjusted_largest_sample_requested = AnalyzerHelpers::AdjustSimulationTargetSample( largest_sample_requested, sample_rate, mSimulationSampleRateHz );
while( mSerialSimulationData.GetCurrentSampleNumber() < adjusted_largest_sample_requested )
{
CreateSerialByte();
}
*simulation_channel = &mSerialSimulationData;
return 1;
}
void SimpleSerialSimulationDataGenerator::CreateSerialByte()
{
U32 samples_per_bit = mSimulationSampleRateHz / mSettings->mBitRate;
U8 byte = mSerialText[ mStringIndex ];
mStringIndex++;
if( mStringIndex == mSerialText.size() )
mStringIndex = 0;
//we're currenty high
//let's move forward a little
mSerialSimulationData.Advance( samples_per_bit * 10 );
mSerialSimulationData.Transition(); //low-going edge for start bit
mSerialSimulationData.Advance( samples_per_bit ); //add start bit time
U8 mask = 0x1 << 7;
for( U32 i=0; i<8; i++ )
{
if( ( byte & mask ) != 0 )
mSerialSimulationData.TransitionIfNeeded( BIT_HIGH );
else
mSerialSimulationData.TransitionIfNeeded( BIT_LOW );
mSerialSimulationData.Advance( samples_per_bit );
mask = mask >> 1;
}
mSerialSimulationData.TransitionIfNeeded( BIT_HIGH ); //we need to end high
//lets pad the end a bit for the stop bit:
mSerialSimulationData.Advance( samples_per_bit );
}

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#ifndef SIMPLESERIAL_SIMULATION_DATA_GENERATOR
#define SIMPLESERIAL_SIMULATION_DATA_GENERATOR
#include <SimulationChannelDescriptor.h>
#include <string>
class SimpleSerialAnalyzerSettings;
class SimpleSerialSimulationDataGenerator
{
public:
SimpleSerialSimulationDataGenerator();
~SimpleSerialSimulationDataGenerator();
void Initialize( U32 simulation_sample_rate, SimpleSerialAnalyzerSettings* settings );
U32 GenerateSimulationData( U64 newest_sample_requested, U32 sample_rate, SimulationChannelDescriptor** simulation_channel );
protected:
SimpleSerialAnalyzerSettings* mSettings;
U32 mSimulationSampleRateHz;
protected:
void CreateSerialByte();
std::string mSerialText;
U32 mStringIndex;
SimulationChannelDescriptor mSerialSimulationData;
};
#endif //SIMPLESERIAL_SIMULATION_DATA_GENERATOR