mirror of
https://github.com/JasonYANG170/logicanalyzer.git
synced 2024-11-23 20:16:29 +00:00
379 lines
14 KiB
C#
379 lines
14 KiB
C#
using Avalonia.Media;
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using LogicAnalyzer.Protocols;
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using System.Text;
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namespace SPIProtocolAnalyzer
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{
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public class SPIAnalyzer : ProtocolAnalyzerBase
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{
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private SimpleSegmentRenderer renderer = new SimpleSegmentRenderer();
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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 "SPI";
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}
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}
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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 = "Shift order",
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ListValues = new string[]{ "Right-to-Left", "Left-to-Right" },
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List
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},
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new ProtocolAnalyzerSetting
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{
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Caption ="CPOL",
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ListValues=new string[]{ "0", "1" },
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List
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},
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new ProtocolAnalyzerSetting
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{
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Caption ="CPHA",
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ListValues=new string[]{ "0", "1" },
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SettingType = ProtocolAnalyzerSetting.ProtocolAnalyzerSettingType.List
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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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static ProtocolAnalyzerSignal[] signals = new ProtocolAnalyzerSignal[]
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{
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new ProtocolAnalyzerSignal
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{
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Required = false,
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SignalName= "CS"
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},
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new ProtocolAnalyzerSignal
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{
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Required = true,
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SignalName = "CK"
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},
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new ProtocolAnalyzerSignal
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{
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Required = false,
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SignalName ="MISO"
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},
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new ProtocolAnalyzerSignal
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{
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Required = false,
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SignalName = "MOSI"
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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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string shiftOrder = SelectedSettings[0].Value.ToString();
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int cpol = int.Parse(SelectedSettings[1].Value.ToString());
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int cpha = int.Parse(SelectedSettings[2].Value.ToString());
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var csChannel = SelectedChannels.Where(c => c.SignalName == "CS").FirstOrDefault();
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var ckChannel = SelectedChannels.Where(c => c.SignalName == "CK").FirstOrDefault();
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var misoChannel = SelectedChannels.Where(c => c.SignalName == "MISO").FirstOrDefault();
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var mosiChannel = SelectedChannels.Where(c => c.SignalName == "MOSI").FirstOrDefault();
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var ranges = FindActiveRanges(csChannel, ckChannel.Samples.Length);
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List<ProtocolAnalyzedChannel> results = new List<ProtocolAnalyzedChannel>();
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results.Add(AnalyzeClock(ranges, ckChannel, cpol));
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results.AddRange(AnalyzeChannels(ranges, ckChannel, misoChannel, mosiChannel, shiftOrder, cpol, cpha));
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return results.ToArray();
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}
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private ProtocolAnalyzedChannel AnalyzeClock(IEnumerable<ActiveRange> ranges, ProtocolAnalyzerSelectedChannel ckChannel, int cpol)
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{
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List<ProtocolAnalyzerDataSegment> segments = new List<ProtocolAnalyzerDataSegment>();
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foreach (var range in ranges)
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{
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var clockRange = ckChannel.Samples.Skip(range.FirstSample).Take(range.Length).ToArray();
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if (clockRange[0] != cpol)
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{
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var errorEnd = FindSample(0, clockRange, cpol);
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if (errorEnd == -1)
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errorEnd = clockRange.Length;
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segments.Add(new ProtocolAnalyzerDataSegment { FirstSample = range.FirstSample, LastSample = errorEnd + range.FirstSample });
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}
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}
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var result = new ProtocolAnalyzedChannel(ckChannel.SignalName, ckChannel.ChannelIndex, renderer, segments.ToArray(), Colors.White, Color.FromArgb(90, Colors.Blue.R, Colors.Blue.G, Colors.Blue.B));
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return result;
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}
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private IEnumerable<ProtocolAnalyzedChannel> AnalyzeChannels(IEnumerable<ActiveRange> ranges, ProtocolAnalyzerSelectedChannel ckChannel, ProtocolAnalyzerSelectedChannel? misoChannel, ProtocolAnalyzerSelectedChannel? mosiChannel, string? shiftOrder, int cpol, int cpha)
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{
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List<ProtocolAnalyzedChannel> results = new List<ProtocolAnalyzedChannel>();
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if (misoChannel != null)
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results.Add(AnalyzeChannel(ranges, ckChannel, misoChannel, shiftOrder, cpol, cpha, Color.FromArgb(100, Colors.Red.R, Colors.Red.G, Colors.Red.B)));
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if (mosiChannel != null)
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results.Add(AnalyzeChannel(ranges, ckChannel, mosiChannel, shiftOrder, cpol, cpha, Color.FromArgb(100, Colors.Green.R, Colors.Green.G, Colors.Green.B)));
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return results;
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}
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private ProtocolAnalyzedChannel AnalyzeChannel(IEnumerable<ActiveRange> ranges, ProtocolAnalyzerSelectedChannel ckChannel, ProtocolAnalyzerSelectedChannel dataChannel, string? shiftOrder, int cpol, int cpha, Color channelColor)
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{
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List<ProtocolAnalyzerDataSegment> segments = new List<ProtocolAnalyzerDataSegment>();
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foreach (var range in ranges)
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{
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var clockRange = ckChannel.Samples.Skip(range.FirstSample).Take(range.Length).ToArray();
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var dataRange = dataChannel.Samples.Skip(range.FirstSample).Take(range.Length).ToArray();
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int firstClockSample = FindFirstSampleClock(clockRange, cpol, cpha);
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if (firstClockSample == -1)
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{
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ProtocolAnalyzerDataSegment segment = new ProtocolAnalyzerDataSegment { FirstSample = range.FirstSample, LastSample = range.LastSample, Value = "Frame error" };
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segments.Add(segment);
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continue;
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}
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else
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{
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int lastSample;
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int value = GetByte(firstClockSample, clockRange, dataRange, shiftOrder, cpha, out lastSample);
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while (value != -1)
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{
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string asciival = value >= 0x20 && value <= 0x7e ? Encoding.ASCII.GetString(new byte[] { (byte)value }) : "·";
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ProtocolAnalyzerDataSegment segment = new ProtocolAnalyzerDataSegment { FirstSample = range.FirstSample + firstClockSample, LastSample = range.FirstSample + lastSample, Value = $"0x{value.ToString("X2")} '{asciival}'" };
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segments.Add(segment);
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firstClockSample = FindSample(lastSample, clockRange, cpha == 0 ? 1 : 0);
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if (firstClockSample == -1)
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value = -1;
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else
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value = GetByte(lastSample, clockRange, dataRange, shiftOrder, cpha, out lastSample);
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}
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}
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}
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var result = new ProtocolAnalyzedChannel(dataChannel.SignalName, dataChannel.ChannelIndex, renderer, segments.ToArray(), Colors.White, channelColor);
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return result;
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}
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private int GetByte(int firstClockSample, byte[] clockRange, byte[] dataRange, string? shiftOrder, int cpha, out int lastSample)
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{
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lastSample = 0;
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byte[] values = new byte[8];
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int currentSample = firstClockSample;
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for (int buc = 0; buc < 8; buc++)
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{
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if (currentSample == -1)
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return -1;
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int edgeIndex = FindSample(currentSample, clockRange, cpha == 0 ? 1 : 0);
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if (edgeIndex == -1)
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return -1;
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values[buc] = dataRange[edgeIndex];
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currentSample = FindSample(edgeIndex, clockRange, cpha);
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}
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int value;
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if (shiftOrder == settings[0].ListValues[1])
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{
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value = values[0] |
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(values[1] << 1) |
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(values[2] << 2) |
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(values[3] << 3) |
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(values[4] << 4) |
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(values[5] << 5) |
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(values[6] << 6) |
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(values[7] << 7);
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}
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else
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{
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value = values[7] |
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(values[6] << 1) |
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(values[5] << 2) |
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(values[4] << 3) |
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(values[3] << 4) |
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(values[2] << 5) |
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(values[1] << 6) |
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(values[0] << 7);
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}
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lastSample = currentSample == -1 ? dataRange.Length - 1 : currentSample;
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return value;
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}
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private int FindFirstSampleClock(byte[] clockRange, int cpol, int cpha)
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{
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if (cpol == 0 && cpha == 0)
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{
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//Low-high
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int pos = FindSample(0, clockRange, 0);
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if (pos == -1)
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return -1;
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return FindSample(pos, clockRange, 1);
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}
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else if (cpol == 0 && cpha == 1)
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{
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//Low-high-low
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int pos = FindSample(0, clockRange, 0);
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if (pos == -1)
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return -1;
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pos = FindSample(pos, clockRange, 1);
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if (pos == -1)
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return -1;
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return FindSample(pos, clockRange, 0);
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}
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else if (cpol == 1 && cpha == 0)
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{
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//High-low-high
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int pos = FindSample(0, clockRange, 1);
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if (pos == -1)
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return -1;
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pos = FindSample(pos, clockRange, 0);
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if (pos == -1)
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return -1;
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return FindSample(pos, clockRange, 1);
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}
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else if (cpol == 1 && cpha == 1)
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{
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//High-low-high-low
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int pos = FindSample(0, clockRange, 1);
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if (pos == -1)
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return -1;
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pos = FindSample(pos, clockRange, 0);
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if (pos == -1)
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return -1;
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pos = FindSample(pos, clockRange, 1);
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if (pos == -1)
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return -1;
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return FindSample(pos, clockRange, 0);
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}
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return -1;
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}
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private int FindSample(int Start, byte[] Samples, int Value)
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{
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for (int i = Start; i < Samples.Length; i++)
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if (Samples[i] == Value)
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return i;
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return -1;
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}
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private IEnumerable<ActiveRange> FindActiveRanges(ProtocolAnalyzerSelectedChannel? csChannel, int length)
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{
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if (csChannel == null)
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return new ActiveRange[] { new ActiveRange { FirstSample = 0, LastSample = length - 1 } };
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List<ActiveRange> ranges = new List<ActiveRange>();
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ActiveRange? underConstruction = null;
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for (int buc = 0; buc < csChannel.Samples.Length; buc++)
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{
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if (csChannel.Samples[buc] == 0)
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{
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if (underConstruction == null)
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underConstruction = new ActiveRange { FirstSample = buc };
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else
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continue;
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}
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else
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{
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if (underConstruction == null)
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continue;
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underConstruction.LastSample = buc;
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ranges.Add(underConstruction);
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underConstruction = null;
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}
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}
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return ranges;
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}
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public override bool ValidateSettings(ProtocolAnalyzerSettingValue[] SelectedSettings, ProtocolAnalyzerSelectedChannel[] SelectedChannels)
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{
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var setOrder = SelectedSettings.Where(s => s.SettingIndex == 0).FirstOrDefault();
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if (setOrder == null || setOrder.Value is not string || !settings[0].ListValues.Contains(setOrder.Value.ToString()))
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return false;
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var setCPOL = SelectedSettings.Where(s => s.SettingIndex == 1).FirstOrDefault();
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if (setCPOL == null || setCPOL.Value is not string || !settings[1].ListValues.Contains(setCPOL.Value.ToString()))
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return false;
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var setCPHA = SelectedSettings.Where(s => s.SettingIndex == 2).FirstOrDefault();
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if (setCPHA == null || setCPHA.Value is not string || !settings[2].ListValues.Contains(setCPHA.Value.ToString()))
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return false;
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if (!SelectedChannels.Any(s => (s.SignalName == "MISO" || s.SignalName == "MOSI") && s.ChannelIndex > -1))
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return false;
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return true;
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}
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class ActiveRange
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{
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public int FirstSample { get; set; }
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public int LastSample { get; set; }
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public int Length { get { return LastSample - FirstSample + 1; } }
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}
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}
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} |