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agla_v0_3
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d31d662ede |
27
README
27
README
@@ -1,9 +1,6 @@
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SUMP compatible logic analyzer for Arduino
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==========================================
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NOTE: NOTE: v0.09 switches the channels BACK to pins 8-13 for trigger reliability.
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Please report any issues. Uncomment USE_PORTD for pins 2-7.
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This Arduino sketch implements a SUMP protocol compatible with the standard
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SUMP client as well as the alternative client from here:
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http://www.lxtreme.nl/ols/
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@@ -15,34 +12,19 @@ crystal oscillator pins.
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Uncomment CHAN5 below if you want to use the LED pin as an input and have
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6 channels.
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On the Arduino Mega board 8 channels are supported and 7k of samples.
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Pins 22-29 (Port A) are used by default, you can change the 'CHANPIN' below
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if something else works better for you.
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NOTE:
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If you are using the original SUMP client, or using the alternative client
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without the device profiles, then you will get a "device not found" error.
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You must DISABLE the Arduino auto reset feature to use this logic analyzer
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code. There are various methods to do this, some boards have a jumper,
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others require you to cut a trace. You may also install a *precisely*
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120 Ohm resistor between the reset & 5V piins. Make sure it is really
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120 Ohm or you may damage your board. It is much easier to use the
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alternative SUMP client referenced above.
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The device profiles should be included with this code. Copy them to the
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'plugins' directory of the client. The location varies depending on the
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platform, but on the mac it is here by default:
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/Applications/LogicSniffer.app/Contents/Resources/Java/plugins
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120 Ohm or you may damage your board.
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To use this with the original or alternative SUMP clients,
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use these settings:
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Sampling rate: 1MHz (or lower)
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Channel Groups: 0 (zero) only
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Recording Size:
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ATmega168: 532 (or lower)
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ATmega328: 1024 (or lower)
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ATmega2560: 7168 (or lower)
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Recording Size: 1024 (or lower)
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Noise Filter: doesn't matter
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RLE: disabled (unchecked)
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@@ -51,8 +33,5 @@ below 1MHz. 1MHz works for a basic busy wait trigger that doesn't store
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until after the trigger fires.
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Please try it out and report back.
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This master branch now supports Arduino 1.0 only.
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Checkout branch logic_analyzer_v0_5 for Arduino 22 support.
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Release: v0.09 June 22, 2013.
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Release: v0.03 March 7, 2011.
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File diff suppressed because it is too large
Load Diff
@@ -7,7 +7,7 @@ device.description = Arduino Generic Logic Analyzer
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# The device interface, SERIAL only
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device.interface = SERIAL
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# The device's native clockspeed, in Hertz.
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device.clockspeed = 16000000
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device.clockspeed = 100000000
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# Whether or not double-data-rate is supported by the device (also known as the "demux"-mode).
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device.supports_ddr = false
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# Supported sample rates in Hertz, separated by comma's
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@@ -19,7 +19,7 @@ device.capturesizes = 64, 128, 256, 512, 1024
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# Whether or not the noise filter is supported
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device.feature.noisefilter = false
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# Whether or not Run-Length encoding is supported
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device.feature.rle = true
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device.feature.rle = false
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# Whether or not a testing mode is supported
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device.feature.testmode = false
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# Whether or not triggers are supported
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@@ -30,7 +30,7 @@ device.trigger.stages = 1
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device.trigger.complex = false
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# The total number of channels usable for capturing
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device.channel.count = 6
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device.channel.count = 5
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# The number of channels groups, together with the channel count determines the channels per group
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device.channel.groups = 1
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# Whether the capture size is limited by the enabled channel groups
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@@ -39,15 +39,13 @@ device.capturesize.bound = false
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device.channel.numberingschemes = DEFAULT
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# Is a delay after opening the port and device detection needed? (0 = no delay, >0 = delay in milliseconds)
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device.open.portdelay = 1500
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# The receive timeout for the device (in milliseconds, 100 = default, <=0 = no timeout)
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device.receive.timeout = 100
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device.open.portdelay = 500
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# Does the device need a high or low DTR-line to operate correctly? (high = true, low = false)
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device.open.portdtr = true
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# Which metadata keys correspond to this device profile? Value is a comma-separated list of (double quoted) names...
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device.metadata.keys = "AGLAv0"
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# In which order are samples sent back from the device? false = last sample first, true = first sample first
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device.samples.reverseOrder = true
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# In which order are samples sent back from the device? true = last sample first, false = first sample first
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device.samples.reverseOrder = false
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###EOF###
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@@ -1,53 +0,0 @@
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# Configuration for Arduino Mega Logic Analyzer profile
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# The short (single word) type of the device described in this profile
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device.type = AGLAM
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# A longer description of the device
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device.description = Arduino Mega Logic Analyzer
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# The device interface, SERIAL only
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device.interface = SERIAL
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# The device's native clockspeed, in Hertz.
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device.clockspeed = 16000000
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# Whether or not double-data-rate is supported by the device (also known as the "demux"-mode).
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device.supports_ddr = false
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# Supported sample rates in Hertz, separated by comma's
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device.samplerates = 10, 20, 50, 100, 200, 500, 1000, 2000, 5000, 10000, 20000, 50000, 100000, 200000, 500000, 1000000
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# What capture clocks are supported
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device.captureclock = INTERNAL
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# The supported capture sizes, in bytes
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device.capturesizes = 64, 128, 256, 512, 1024, 2048, 4096, 7168
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# Whether or not the noise filter is supported
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device.feature.noisefilter = false
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# Whether or not Run-Length encoding is supported
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device.feature.rle = false
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# Whether or not a testing mode is supported
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device.feature.testmode = false
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# Whether or not triggers are supported
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device.feature.triggers = true
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# The number of trigger stages
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device.trigger.stages = 1
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# Whether or not "complex" triggers are supported
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device.trigger.complex = false
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# The total number of channels usable for capturing
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device.channel.count = 8
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# The number of channels groups, together with the channel count determines the channels per group
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device.channel.groups = 1
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# Whether the capture size is limited by the enabled channel groups
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device.capturesize.bound = false
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# Which numbering does the device support
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device.channel.numberingschemes = DEFAULT
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# Is a delay after opening the port and device detection needed? (0 = no delay, >0 = delay in milliseconds)
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device.open.portdelay = 2000
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# The receive timeout for the device (in milliseconds, 100 = default, <=0 = no timeout)
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device.receive.timeout = 100
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# Does the device need a high or low DTR-line to operate correctly? (high = true, low = false)
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device.open.portdtr = true
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# Which metadata keys correspond to this device profile? Value is a comma-separated list of (double quoted) names...
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device.metadata.keys = "AGLAMv0"
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# In which order are samples sent back from the device? false = last sample first, true = first sample first
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device.samples.reverseOrder = true
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###EOF###
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