mirror of
https://github.com/JasonYANG170/logicanalyzer.git
synced 2024-11-23 20:16:29 +00:00
213 lines
8.1 KiB
C#
213 lines
8.1 KiB
C#
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using Avalonia.Controls;
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using Avalonia.Media;
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using LogicAnalyzer.Protocols;
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using System.Text;
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namespace SerialProtocolAnalyzer
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{
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public class SerialAnalyzer : ProtocolAnalyzerBase
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{
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private SimpleSegmentRenderer renderer = new SimpleSegmentRenderer();
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static ProtocolAnalyzerSetting[] settings = new ProtocolAnalyzerSetting[]
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{
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new ProtocolAnalyzerSetting
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{
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Caption = "Polarity",
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List,
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ListValues = new string[] { "Positive (TTL)", "Negative (RS232)" }
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},
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new ProtocolAnalyzerSetting
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{
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Caption = "Data bits",
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List,
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ListValues = new string[] { "8", "7" }
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},
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new ProtocolAnalyzerSetting
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{
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Caption = "Parity",
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List,
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ListValues = new string[] { "None", "Even", "Odd" }
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},
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new ProtocolAnalyzerSetting
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{
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Caption = "Stop bits",
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List,
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ListValues = new string[] { "1", "1.5", "2" }
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},
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new ProtocolAnalyzerSetting
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{
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Caption = "Bauds",
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.Integer,
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IntegerMinimumValue= 200,
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IntegerMaximumValue= 20000000,
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}
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};
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static ProtocolAnalyzerSignal[] signals = new ProtocolAnalyzerSignal[]
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{
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new ProtocolAnalyzerSignal{ SignalName = "RX", Required = false },
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new ProtocolAnalyzerSignal{ SignalName = "TX", Required = false },
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};
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public override string ProtocolName
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{
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get
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{
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return "Serial";
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}
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}
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public override ProtocolAnalyzerSetting[] Settings
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{
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get
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{
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return settings;
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}
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}
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public override ProtocolAnalyzerSignal[] Signals
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{
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get
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{
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return signals;
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}
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}
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public override ProtocolAnalyzedChannel[] Analyze(int SamplingRate, int TriggerSample, ProtocolAnalyzerSettingValue[] SelectedSettings, ProtocolAnalyzerSelectedChannel[] SelectedChannels)
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{
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double period = (double)SamplingRate / (double)(int)SelectedSettings[4].Value;
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if (period < 1)
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return new ProtocolAnalyzedChannel[0];
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int zero = SelectedSettings[0].Value.ToString() == settings[0].ListValues[0] ? 0 : 1;
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int dataBits = int.Parse(SelectedSettings[1].Value.ToString());
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string parity = SelectedSettings[2].Value.ToString();
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double stopBits = double.Parse(SelectedSettings[3].Value.ToString());
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List<ProtocolAnalyzedChannel> analyzed = new List<ProtocolAnalyzedChannel>();
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foreach(var channel in SelectedChannels)
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analyzed.Add(AnalyzeSerialData(dataBits, parity, stopBits, period, zero, channel));
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return analyzed.ToArray();
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}
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private ProtocolAnalyzedChannel AnalyzeSerialData(int dataBits, string? parity, double stopBits, double period, int zero, ProtocolAnalyzerSelectedChannel channel)
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{
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List<ProtocolAnalyzerDataSegment> segments = new List<ProtocolAnalyzerDataSegment>();
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int pos = 0;
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//Minimum samples needed for a byte, we skip the parity bits for the chance of getting a byte at the end
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//of the samples
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int samplesPerByte = (int)Math.Ceiling(period * (dataBits + (parity == "None" ? 0 : 1)));
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while (pos < channel.Samples.Length)
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{
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//Find idle
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while (pos < channel.Samples.Length && channel.Samples[pos] == zero)
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pos++;
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//Find start condition
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while (pos < channel.Samples.Length && channel.Samples[pos] != zero)
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pos++;
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//Not found? abort
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if (pos >= channel.Samples.Length)
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break;
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byte value = 0;
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byte val = 0;
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bool parityError = false;
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bool frameError = false;
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int oneCount = 0;
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int startPos = pos;
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//If there are not enough bits for a byte end the loop
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if (pos + samplesPerByte >= channel.Samples.Length)
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break;
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//Position our sampling "pointer" on the middle of the start bit
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double samplePos = pos + (period / 2) - 1; //
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for (int buc = 0; buc < dataBits; buc++)
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{
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samplePos += period;
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val = channel.Samples[(int)Math.Round(samplePos, 0)] == zero ? (byte)0 : (byte)1;
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value |= (byte)(val << buc);
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if (val == 1)
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oneCount++;
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}
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if (parity != "None")
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{
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samplePos += period;
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val = channel.Samples[(int)Math.Round(samplePos, 0)] == zero ? (byte)0 : (byte)1;
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if (val == 1)
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oneCount++;
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if((parity == "Even" && oneCount % 2 != 0) || (parity == "Odd" && oneCount % 2 == 0))
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parityError = true;
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}
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samplePos += period;
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if (samplePos >= channel.Samples.Length)
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break;
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val = channel.Samples[(int)Math.Round(samplePos, 0)] == zero ? (byte)0 : (byte)1;
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if(val != 1)
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frameError = true;
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if (stopBits != 1)
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{
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samplePos += stopBits == 2 ? period : period * 0.75f;
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if (samplePos >= channel.Samples.Length)
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break;
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val = channel.Samples[(int)Math.Round(samplePos, 0)] == zero ? (byte)0 : (byte)1;
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if (val != 1)
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frameError = true;
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}
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int endPos = (int)Math.Round(samplePos, 0);
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ProtocolAnalyzerDataSegment newSegment = new ProtocolAnalyzerDataSegment();
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newSegment.Value = "0x" + value.ToString("X2") + "-'" + Encoding.ASCII.GetString(new byte[] { value }) + "'";
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newSegment.FirstSample = startPos;
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newSegment.LastSample = endPos;
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string errors = "";
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if (parityError)
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errors += "P";
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if(frameError)
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errors += "F";
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if (errors != "")
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newSegment.Value += " <" + errors + ">";
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segments.Add(newSegment);
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pos = endPos;
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}
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ProtocolAnalyzedChannel aChannel = new ProtocolAnalyzedChannel(channel.SignalName, channel.ChannelIndex, renderer, segments.ToArray(), Colors.White, channel.SignalName == "TX" ? Color.FromUInt32(0x7f006400) : Color.FromUInt32(0x7f8b0000));
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return aChannel;
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}
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public override bool ValidateSettings(ProtocolAnalyzerSettingValue[] SelectedSettings, ProtocolAnalyzerSelectedChannel[] SelectedChannels)
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{
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if (SelectedSettings == null || SelectedSettings.Length == 0)
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return false;
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if (SelectedChannels == null || SelectedChannels.Length == 0)
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return false;
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foreach (var setting in SelectedSettings)
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if (setting.Value == null)
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return false;
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return true;
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}
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}
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}
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