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https://github.com/gillham/logic_analyzer.git
synced 2026-06-09 19:59:22 +03:00
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2 Commits
0.17.0
...
agla_leonardo
| Author | SHA1 | Date | |
|---|---|---|---|
| 7d333f16ba | |||
| c8e564f6f0 |
+52
-21
@@ -88,6 +88,11 @@ void debugdump(void);
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* PORTD support with triggers seems to work but needs more testing.
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*/
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//#define USE_PORTD 1
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#if defined(USE_PORTD)
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#define SHIFTBITS 2
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#elif defined(__AVR_ATmega32U4__)
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#define SHIFTBITS 1
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#endif
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/*
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* Arduino device profile: ols.profile-agla.cfg
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@@ -114,6 +119,15 @@ void debugdump(void);
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#define CHAN5 7
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#else
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#define CHANPIN PINB
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#if defined(__AVR_ATmega32U4__)
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#define CHAN0 SCK
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#define CHAN1 MOSI
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#define CHAN2 MISO
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#define CHAN3 8
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#define CHAN4 9
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#define CHAN5 10
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#define CHAN6 11
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#else
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#define CHAN0 8
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#define CHAN1 9
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#define CHAN2 10
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@@ -121,8 +135,9 @@ void debugdump(void);
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#define CHAN4 12
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/* Comment out CHAN5 if you don't want to use the LED pin for an input */
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#define CHAN5 13
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#endif /* AVR_ATmega32U4 */
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#endif /* USE_PORTD */
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#endif
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#endif /* Mega1280 or Mega2560 */
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#define ledPin 13
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/* XON/XOFF are not supported. */
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@@ -154,6 +169,9 @@ void debugdump(void);
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#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
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#define DEBUG_CAPTURE_SIZE 7168
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#define CAPTURE_SIZE 7168
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#elif defined(__AVR_ATmega32U4__)
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#define DEBUG_CAPTURE_SIZE 1536
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#define CAPTURE_SIZE 1536
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#elif defined(__AVR_ATmega328P__)
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#define DEBUG_CAPTURE_SIZE 1024
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#define CAPTURE_SIZE 1024
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@@ -205,6 +223,10 @@ boolean rleEnabled = 0;
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void setup()
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{
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Serial.begin(115200);
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while (!Serial) {
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; // wait for serial port to connect. Needed for Leonardo only
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}
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/*
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* set debug pin (digital pin 8) to output right away so it settles.
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@@ -222,14 +244,15 @@ void setup()
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#ifdef CHAN5
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pinMode(CHAN5, INPUT);
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#endif
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#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
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#ifdef CHAN6
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pinMode(CHAN6, INPUT);
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#endif
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#ifdef CHAN7
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pinMode(CHAN7, INPUT);
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#else
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#endif
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#ifndef CHAN5
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pinMode(ledPin, OUTPUT);
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#endif
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#endif /* Mega */
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#if 0
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@@ -321,8 +344,8 @@ void loop()
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* we can just use it directly as our trigger mask.
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*/
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getCmd();
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#ifdef USE_PORTD
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trigger = cmdBytes[0] << 2;
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#ifdef SHIFTBITS
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trigger = cmdBytes[0] << SHIFTBITS;
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#else
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trigger = cmdBytes[0];
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#endif
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@@ -333,8 +356,8 @@ void loop()
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* defines whether we're looking for it to be high or low.
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*/
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getCmd();
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#ifdef USE_PORTD
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trigger_values = cmdBytes[0] << 2;
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#ifdef SHIFTBITS
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trigger_values = cmdBytes[0] << SHIFTBITS;
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#else
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trigger_values = cmdBytes[0];
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#endif
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@@ -567,8 +590,8 @@ void captureMicro() {
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* is done for any triggers, this is effectively the 0/100 buffer split.
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*/
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for (i = 0 ; i < readCount; i++) {
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#ifdef USE_PORTD
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Serial.write(logicdata[i] >> 2);
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#ifdef SHIFTBITS
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Serial.write(logicdata[i] >> SHIFTBITS);
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#else
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Serial.write(logicdata[i]);
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#endif
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@@ -642,8 +665,8 @@ void captureMilli() {
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}
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}
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for (i = 0 ; i < readCount; i++) {
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#ifdef USE_PORTD
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Serial.write(logicdata[i] >> 2);
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#ifdef SHIFTBITS
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Serial.write(logicdata[i] >> SHIFTBITS);
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#else
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Serial.write(logicdata[i]);
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#endif
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@@ -836,8 +859,8 @@ void triggerMicro() {
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if (logicIndex >= readCount) {
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logicIndex = 0;
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}
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#ifdef USE_PORTD
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Serial.write(logicdata[logicIndex++] >> 2);
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#ifdef SHIFTBITS
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Serial.write(logicdata[logicIndex++] >> SHIFTBITS);
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#else
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Serial.write(logicdata[logicIndex++]);
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#endif
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@@ -883,6 +906,8 @@ void get_metadata() {
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Serial.write('A');
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#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
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Serial.write('M');
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#elif defined(__AVR_ATmega32U4__)
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Serial.write('L');
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#endif /* Mega */
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Serial.write('v');
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Serial.write('0');
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@@ -904,6 +929,10 @@ void get_metadata() {
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/* 7168 bytes */
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Serial.write((uint8_t)0x1C);
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Serial.write((uint8_t)0x00);
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#elif defined(__AVR_ATmega32U4__)
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/* 1024 bytes */
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Serial.write((uint8_t)0x04);
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Serial.write((uint8_t)0x00);
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#elif defined(__AVR_ATmega328P__)
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/* 1024 bytes */
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Serial.write((uint8_t)0x04);
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@@ -923,15 +952,15 @@ void get_metadata() {
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/* number of probes (6 by default on Arduino, 8 on Mega) */
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Serial.write((uint8_t)0x40);
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#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
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#ifdef CHAN7
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Serial.write((uint8_t)0x08);
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#else
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#ifdef CHAN5
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#elif CHAN6
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Serial.write((uint8_t)0x07);
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#elif CHAN5
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Serial.write((uint8_t)0x06);
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#else
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Serial.write((uint8_t)0x05);
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#endif /* CHAN5 */
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#endif /* Mega */
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#endif
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/* protocol version (2) */
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Serial.write((uint8_t)0x41);
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@@ -994,8 +1023,8 @@ void debugdump() {
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Serial.print("\r\n");
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for (i = 0 ; i < MAX_CAPTURE_SIZE; i++) {
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#ifdef USE_PORTD
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Serial.print(logicdata[i] >> 2, HEX);
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#ifdef SHIFTBITS
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Serial.print(logicdata[i] >> SHIFTBITS, HEX);
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#else
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Serial.print(logicdata[i], HEX);
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#endif
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@@ -1019,3 +1048,5 @@ void debugdump() {
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@@ -2,7 +2,7 @@
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*
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* SUMP Protocol Implementation for Arduino boards.
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*
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* Copyright (c) 2011,2012,2013 Andrew Gillham
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* Copyright (c) 2011,2012,2013,2014 Andrew Gillham
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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@@ -2,7 +2,7 @@
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*
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* SUMP Protocol Implementation for Arduino boards.
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*
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* Copyright (c) 2011,2012,2013 Andrew Gillham
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* Copyright (c) 2011,2012,2013,2014 Andrew Gillham
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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