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agla_v0_13
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61
README
61
README
@@ -1,43 +1,28 @@
|
|||||||
SUMP compatible logic analyzer for Arduino
|
SUMP compatible logic analyzer for Arduino
|
||||||
==========================================
|
==========================================
|
||||||
|
|
||||||
NOTE: NOTE: v0.09 switches the channels BACK to pins 8-13 for trigger reliability.
|
|
||||||
Please report any issues. Uncomment USE_PORTD for pins 2-7.
|
|
||||||
|
|
||||||
This Arduino sketch implements a SUMP protocol compatible with the standard
|
This Arduino sketch implements a SUMP protocol compatible with the standard
|
||||||
SUMP client as well as the alternative client from here:
|
SUMP client as well as the alternative client from here:
|
||||||
http://www.lxtreme.nl/ols/
|
http://www.lxtreme.nl/ols/
|
||||||
|
|
||||||
|
The alternative client version is highly recommended. Download version
|
||||||
|
"ols-0.9.7" or newer for built-in device profiles.
|
||||||
|
|
||||||
This SUMP protocol compatible logic analyzer for the Arduino board supports
|
This SUMP protocol compatible logic analyzer for the Arduino board supports
|
||||||
5 channels consisting of digital pins 8-12, which are the first 5 bits (0-4)
|
5 channels consisting of digital pins 8-12, which are the first 5 bits (0-4)
|
||||||
of PORTB. Arduino pin 13 / bit 5 is the Arduino LED, bits 6 & 7 are the
|
of PORTB. Arduino pin 13 / bit 5 is the Arduino LED, bits 6 & 7 are the
|
||||||
crystal oscillator pins.
|
crystal oscillator pins.
|
||||||
|
|
||||||
Uncomment CHAN5 below if you want to use the LED pin as an input and have
|
Uncomment CHAN5 below if you want to use the LED pin as an input and have
|
||||||
6 channels.
|
6 channels.
|
||||||
|
|
||||||
On the Arduino Mega board 8 channels are supported and 7k of samples.
|
On the Arduino Mega board 8 channels are supported and 7k of samples.
|
||||||
Pins 22-29 (Port A) are used by default, you can change the 'CHANPIN' below
|
Pins 22-29 (Port A) are used by default.
|
||||||
if something else works better for you.
|
|
||||||
|
|
||||||
NOTE:
|
|
||||||
If you are using the original SUMP client, or using the alternative client
|
|
||||||
without the device profiles, then you will get a "device not found" error.
|
|
||||||
You must DISABLE the Arduino auto reset feature to use this logic analyzer
|
|
||||||
code. There are various methods to do this, some boards have a jumper,
|
|
||||||
others require you to cut a trace. You may also install a *precisely*
|
|
||||||
120 Ohm resistor between the reset & 5V piins. Make sure it is really
|
|
||||||
120 Ohm or you may damage your board. It is much easier to use the
|
|
||||||
alternative SUMP client referenced above.
|
|
||||||
|
|
||||||
The device profiles should be included with this code. Copy them to the
|
|
||||||
'plugins' directory of the client. The location varies depending on the
|
|
||||||
platform, but on the mac it is here by default:
|
|
||||||
/Applications/LogicSniffer.app/Contents/Resources/Java/plugins
|
|
||||||
|
|
||||||
To use this with the original or alternative SUMP clients,
|
To use this with the original or alternative SUMP clients,
|
||||||
use these settings:
|
use these settings:
|
||||||
|
|
||||||
Sampling rate: 1MHz (or lower)
|
Sampling rate: 4MHz (or lower) (no 2MHz on ATmega168)
|
||||||
Channel Groups: 0 (zero) only
|
Channel Groups: 0 (zero) only
|
||||||
Recording Size:
|
Recording Size:
|
||||||
ATmega168: 532 (or lower)
|
ATmega168: 532 (or lower)
|
||||||
@@ -51,8 +36,38 @@ below 1MHz. 1MHz works for a basic busy wait trigger that doesn't store
|
|||||||
until after the trigger fires.
|
until after the trigger fires.
|
||||||
Please try it out and report back.
|
Please try it out and report back.
|
||||||
|
|
||||||
This master branch now supports Arduino 1.0 only.
|
Older Notes
|
||||||
|
===========================================================================
|
||||||
|
NOTE: With v0.11 you can now sample at 4MHz & 2MHz rates in addition to the
|
||||||
|
previous 1MHz and lower rates. This is done via unrolled loops which
|
||||||
|
makes the source code huge and the binary takes much more of the flash.
|
||||||
|
v0.11 is just slightly to big for an ATmega168's flash. You can comment
|
||||||
|
out either captureInline2mhz() or captureInline4mhz() and it will fit.
|
||||||
|
[ The code automatically skips the 2MHz code now, this isn't needed. ]
|
||||||
|
|
||||||
|
NOTE: v0.09 switched the channels BACK to pins 8-13 for trigger reliability.
|
||||||
|
Please report any issues. Uncomment USE_PORTD for pins 2-7.
|
||||||
|
|
||||||
|
NOTE: The device profiles should be included with this code. Copy them to the
|
||||||
|
'plugins' directory of the client. The location varies depending on the
|
||||||
|
platform, but on the mac it is here by default:
|
||||||
|
/Applications/LogicSniffer.app/Contents/Resources/Java/plugins
|
||||||
|
[ These are included in ols-0.9.7 or newer so do not copy them. ]
|
||||||
|
|
||||||
|
NOTE: If you are using the original SUMP client, then you will get a
|
||||||
|
"device not found" error.
|
||||||
|
You must DISABLE the Arduino auto reset feature to use this logic analyzer
|
||||||
|
code. There are various methods to do this, some boards have a jumper,
|
||||||
|
others require you to cut a trace. You may also install a *precisely*
|
||||||
|
120 Ohm resistor between the reset & 5V piins. Make sure it is really
|
||||||
|
120 Ohm or you may damage your board. It is much easier to use the
|
||||||
|
alternative SUMP client referenced above.
|
||||||
|
[ This is not needed with ols-0.9.7 or newer. ]
|
||||||
|
[ DO NOT use this resistor unless absolutely necessary on old clients. ]
|
||||||
|
|
||||||
|
NOTE: This master branch now supports Arduino 1.0 only.
|
||||||
Checkout branch logic_analyzer_v0_5 for Arduino 22 support.
|
Checkout branch logic_analyzer_v0_5 for Arduino 22 support.
|
||||||
|
|
||||||
Release: v0.09 June 22, 2013.
|
|
||||||
|
Release: v0.13 February 7, 2015.
|
||||||
|
|
||||||
|
|||||||
@@ -2,7 +2,7 @@
|
|||||||
*
|
*
|
||||||
* SUMP Protocol Implementation for Arduino boards.
|
* SUMP Protocol Implementation for Arduino boards.
|
||||||
*
|
*
|
||||||
* Copyright (c) 2011,2012,2013 Andrew Gillham
|
* Copyright (c) 2011,2012,2013,2014,2015 Andrew Gillham
|
||||||
* All rights reserved.
|
* All rights reserved.
|
||||||
*
|
*
|
||||||
* Redistribution and use in source and binary forms, with or without
|
* Redistribution and use in source and binary forms, with or without
|
||||||
@@ -29,17 +29,7 @@
|
|||||||
*/
|
*/
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* NOTE: This is an ALPHA of support for an Ethernet attached Logic Analyzer.
|
* NOTE: v0.09 switched the channels BACK to pins 8-13 for trigger reliability.
|
||||||
* Tested with an Arduino Duemilanove and W5100 based Ethernet shield.
|
|
||||||
* It may work with other combinations, but I haven't tested it.
|
|
||||||
*
|
|
||||||
* USE: Configure the mac address (if you want) and the ip address (mandatory)
|
|
||||||
* for your network and upload it. In the OLS client select network
|
|
||||||
* instead of serial and use your ip address and port 1234.
|
|
||||||
* Click capture! You should get some data back from your Arduino.
|
|
||||||
*
|
|
||||||
*
|
|
||||||
* NOTE: v0.09 switches the channels BACK to pins 8-13 for trigger reliability.
|
|
||||||
* Please report any issues. Uncomment USE_PORTD for pins 2-7.
|
* Please report any issues. Uncomment USE_PORTD for pins 2-7.
|
||||||
*
|
*
|
||||||
* This Arduino sketch implements a SUMP protocol compatible with the standard
|
* This Arduino sketch implements a SUMP protocol compatible with the standard
|
||||||
@@ -54,26 +44,10 @@
|
|||||||
* Pins 22-29 (Port A) are used by default, you can change the 'CHANPIN' below
|
* Pins 22-29 (Port A) are used by default, you can change the 'CHANPIN' below
|
||||||
* if something else works better for you.
|
* if something else works better for you.
|
||||||
*
|
*
|
||||||
* NOTE:
|
|
||||||
* If you are using the original SUMP client, or using the alternative client
|
|
||||||
* without the device profiles, then you will get a "device not found" error.
|
|
||||||
* You must DISABLE the Arduino auto reset feature to use this logic analyzer
|
|
||||||
* code. There are various methods to do this, some boards have a jumper,
|
|
||||||
* others require you to cut a trace. You may also install a *precisely*
|
|
||||||
* 120 Ohm resistor between the reset & 5V piins. Make sure it is really
|
|
||||||
* 120 Ohm or you may damage your board.
|
|
||||||
* It is much easier to use the alternative SUMP client from here:
|
|
||||||
* http://www.lxtreme.nl/ols/
|
|
||||||
*
|
|
||||||
* The device profiles should be included with this code. Copy them to the
|
|
||||||
* 'plugins' directory of the client. The location varies depending on the
|
|
||||||
* platform, but on the mac it is here by default:
|
|
||||||
* /Applications/LogicSniffer.app/Contents/Resources/Java/plugins
|
|
||||||
*
|
|
||||||
* To use this with the original or alternative SUMP clients,
|
* To use this with the original or alternative SUMP clients,
|
||||||
* use these settings:
|
* use these settings:
|
||||||
*
|
*
|
||||||
* Sampling rate: 1MHz (or lower)
|
* Sampling rate: 4MHz (or lower) (no 2MHz on ATmega168)
|
||||||
* Channel Groups: 0 (zero) only
|
* Channel Groups: 0 (zero) only
|
||||||
* Recording Size:
|
* Recording Size:
|
||||||
* ATmega168: 532 (or lower)
|
* ATmega168: 532 (or lower)
|
||||||
@@ -88,12 +62,10 @@
|
|||||||
* until after the trigger fires.
|
* until after the trigger fires.
|
||||||
* Please try it out and report back.
|
* Please try it out and report back.
|
||||||
*
|
*
|
||||||
* Release: v0.09 June 22, 2013.
|
* Release: v0.13 February 7, 2015.
|
||||||
*
|
*
|
||||||
*/
|
*/
|
||||||
|
|
||||||
#include <SPI.h>
|
|
||||||
#include <Ethernet.h>
|
|
||||||
/*
|
/*
|
||||||
* Function prototypes so this can compile from the cli.
|
* Function prototypes so this can compile from the cli.
|
||||||
* You'll need the 'arduino-core' package and to check the paths in the
|
* You'll need the 'arduino-core' package and to check the paths in the
|
||||||
@@ -109,12 +81,14 @@ void blinkled(void);
|
|||||||
void get_metadata(void);
|
void get_metadata(void);
|
||||||
void debugprint(void);
|
void debugprint(void);
|
||||||
void debugdump(void);
|
void debugdump(void);
|
||||||
|
void prettydump(void);
|
||||||
|
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Should we use PORTD or PORTB? (default is PORTB)
|
* Should we use PORTD or PORTB? (default is PORTB)
|
||||||
* PORTD support with triggers seems to work but needs more testing.
|
* PORTD support with triggers seems to work but needs more testing.
|
||||||
*/
|
*/
|
||||||
#define USE_PORTD 1
|
//#define USE_PORTD 1
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Arduino device profile: ols.profile-agla.cfg
|
* Arduino device profile: ols.profile-agla.cfg
|
||||||
@@ -197,7 +171,7 @@ void debugdump(void);
|
|||||||
#define DEBUG_ENABLE DDRD = DDRD | B10000000
|
#define DEBUG_ENABLE DDRD = DDRD | B10000000
|
||||||
#define DEBUG_ON PORTD = B10000000
|
#define DEBUG_ON PORTD = B10000000
|
||||||
#define DEBUG_OFF PORTD = B00000000
|
#define DEBUG_OFF PORTD = B00000000
|
||||||
#endif
|
#endif /* USE_PORTD */
|
||||||
#define DEBUG
|
#define DEBUG
|
||||||
#ifdef DEBUG
|
#ifdef DEBUG
|
||||||
#define MAX_CAPTURE_SIZE DEBUG_CAPTURE_SIZE
|
#define MAX_CAPTURE_SIZE DEBUG_CAPTURE_SIZE
|
||||||
@@ -229,30 +203,10 @@ unsigned int delayTime = 0;
|
|||||||
unsigned long divider = 0;
|
unsigned long divider = 0;
|
||||||
boolean rleEnabled = 0;
|
boolean rleEnabled = 0;
|
||||||
|
|
||||||
/*
|
|
||||||
* Enter a MAC address and IP address for your Arduino.
|
|
||||||
*/
|
|
||||||
byte mac[] = {
|
|
||||||
0x40, 0x00, 0x01, 0x02, 0x03, 0x04 };
|
|
||||||
IPAddress ip(192,168,1,200);
|
|
||||||
|
|
||||||
// Initialize the Ethernet server library
|
|
||||||
// with the IP address and port you want to use
|
|
||||||
// (port 80 is default for HTTP):
|
|
||||||
EthernetServer server(1234);
|
|
||||||
EthernetClient client;
|
|
||||||
|
|
||||||
|
|
||||||
void setup()
|
void setup()
|
||||||
{
|
{
|
||||||
Serial.begin(115200);
|
Serial.begin(115200);
|
||||||
|
|
||||||
// start the Ethernet connection and the server:
|
|
||||||
Ethernet.begin(mac, ip);
|
|
||||||
server.begin();
|
|
||||||
Serial.print("server is at ");
|
|
||||||
Serial.println(Ethernet.localIP());
|
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* set debug pin (digital pin 8) to output right away so it settles.
|
* set debug pin (digital pin 8) to output right away so it settles.
|
||||||
* this gets toggled during sampling as a way to measure
|
* this gets toggled during sampling as a way to measure
|
||||||
@@ -262,42 +216,54 @@ void setup()
|
|||||||
DEBUG_ENABLE; /* debug measurement pin */
|
DEBUG_ENABLE; /* debug measurement pin */
|
||||||
|
|
||||||
pinMode(CHAN0, INPUT);
|
pinMode(CHAN0, INPUT);
|
||||||
digitalWrite(CHAN0, LOW);
|
|
||||||
pinMode(CHAN1, INPUT);
|
pinMode(CHAN1, INPUT);
|
||||||
digitalWrite(CHAN1, LOW);
|
|
||||||
pinMode(CHAN2, INPUT);
|
pinMode(CHAN2, INPUT);
|
||||||
digitalWrite(CHAN2, LOW);
|
|
||||||
pinMode(CHAN3, INPUT);
|
pinMode(CHAN3, INPUT);
|
||||||
digitalWrite(CHAN3, LOW);
|
|
||||||
pinMode(CHAN4, INPUT);
|
pinMode(CHAN4, INPUT);
|
||||||
digitalWrite(CHAN4, LOW);
|
|
||||||
#ifdef CHAN5
|
#ifdef CHAN5
|
||||||
pinMode(CHAN5, INPUT);
|
pinMode(CHAN5, INPUT);
|
||||||
digitalWrite(CHAN5, LOW);
|
|
||||||
#endif
|
#endif
|
||||||
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
||||||
pinMode(CHAN6, INPUT);
|
pinMode(CHAN6, INPUT);
|
||||||
digitalWrite(CHAN6, LOW);
|
|
||||||
pinMode(CHAN7, INPUT);
|
pinMode(CHAN7, INPUT);
|
||||||
digitalWrite(CHAN7, LOW);
|
|
||||||
#else
|
#else
|
||||||
#ifndef CHAN5
|
#ifndef CHAN5
|
||||||
pinMode(ledPin, OUTPUT);
|
pinMode(ledPin, OUTPUT);
|
||||||
#endif
|
#endif
|
||||||
#endif /* Mega */
|
#endif /* Mega */
|
||||||
|
|
||||||
|
#if 0
|
||||||
|
|
||||||
|
/*
|
||||||
|
* This sets up timer2 at 100KHz to toggle a pin. This is useful
|
||||||
|
* for debugging as it gives an internally precise signal source.
|
||||||
|
* This doesn't work on the Arduino Mega. Use on the Uno or older.
|
||||||
|
* We're using the same clock source for the timer & our sampling.
|
||||||
|
*/
|
||||||
|
|
||||||
|
/* Set OC2A (digital pin 11) to output so we can toggle it. */
|
||||||
|
pinMode(11, OUTPUT);
|
||||||
|
|
||||||
|
/* reset timer to zero */
|
||||||
|
TCNT2 = 0;
|
||||||
|
TCCR2A = 0;
|
||||||
|
TCCR2B = 0;
|
||||||
|
OCR2A = 0;
|
||||||
|
|
||||||
|
/* Set CTC mode and toggle on compare. */
|
||||||
|
TCCR2A = _BV (COM2A0) | _BV (WGM21);
|
||||||
|
/* 79 = 100KHz, 15 = 500KHz, 7 = 1MHz */
|
||||||
|
OCR2A = 79;
|
||||||
|
TCCR2B = _BV (CS20);
|
||||||
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
void loop()
|
void loop()
|
||||||
{
|
{
|
||||||
int i;
|
int i;
|
||||||
|
|
||||||
// listen for incoming clients
|
if (Serial.available() > 0) {
|
||||||
client = server.available();
|
cmdByte = Serial.read();
|
||||||
if (client) {
|
|
||||||
Serial.println("new client");
|
|
||||||
while (client.connected()) {
|
|
||||||
if (client.available()) {
|
|
||||||
cmdByte = client.read();
|
|
||||||
switch (cmdByte) {
|
switch (cmdByte) {
|
||||||
case SUMP_RESET:
|
case SUMP_RESET:
|
||||||
/*
|
/*
|
||||||
@@ -308,10 +274,10 @@ void loop()
|
|||||||
break;
|
break;
|
||||||
case SUMP_QUERY:
|
case SUMP_QUERY:
|
||||||
/* return the expected bytes. */
|
/* return the expected bytes. */
|
||||||
client.write('1');
|
Serial.write('1');
|
||||||
client.write('A');
|
Serial.write('A');
|
||||||
client.write('L');
|
Serial.write('L');
|
||||||
client.write('S');
|
Serial.write('S');
|
||||||
break;
|
break;
|
||||||
case SUMP_ARM:
|
case SUMP_ARM:
|
||||||
/*
|
/*
|
||||||
@@ -327,7 +293,18 @@ void loop()
|
|||||||
* so in that case (delayTime == 1 and triggers enabled) use
|
* so in that case (delayTime == 1 and triggers enabled) use
|
||||||
* captureMicro() instead of triggerMicro().
|
* captureMicro() instead of triggerMicro().
|
||||||
*/
|
*/
|
||||||
if (useMicro) {
|
|
||||||
|
if (divider == 24) {
|
||||||
|
/* 4.0MHz */
|
||||||
|
captureInline4mhz();
|
||||||
|
}
|
||||||
|
else if (divider == 49) {
|
||||||
|
/* 2.0MHz */
|
||||||
|
#if !defined(__AVR_ATmega168__)
|
||||||
|
captureInline2mhz();
|
||||||
|
#endif
|
||||||
|
}
|
||||||
|
else if (useMicro) {
|
||||||
if (trigger && (delayTime != 1)) {
|
if (trigger && (delayTime != 1)) {
|
||||||
triggerMicro();
|
triggerMicro();
|
||||||
}
|
}
|
||||||
@@ -418,6 +395,16 @@ void loop()
|
|||||||
/*
|
/*
|
||||||
* a couple of debug commands used during development.
|
* a couple of debug commands used during development.
|
||||||
*/
|
*/
|
||||||
|
case '?':
|
||||||
|
Serial.println("");
|
||||||
|
Serial.println("0 = clear cmd buffer");
|
||||||
|
Serial.println("1 = print cmd buffer");
|
||||||
|
Serial.println("2 = print data buffer");
|
||||||
|
Serial.println("3 = pretty print buffer");
|
||||||
|
Serial.println("4 = capture at 4MHz");
|
||||||
|
Serial.println("5 = capture at 1MHz");
|
||||||
|
Serial.println("6 = capture at 500KHz");
|
||||||
|
break;
|
||||||
case '0':
|
case '0':
|
||||||
/*
|
/*
|
||||||
* This resets the debug buffer pointer, effectively clearing the
|
* This resets the debug buffer pointer, effectively clearing the
|
||||||
@@ -440,21 +427,50 @@ void loop()
|
|||||||
break;
|
break;
|
||||||
case '2':
|
case '2':
|
||||||
/*
|
/*
|
||||||
* This dumps the sample data to the serial port. Used for debugging.
|
* This dumps the sample data to the serial port.
|
||||||
*/
|
*/
|
||||||
debugdump();
|
debugdump();
|
||||||
break;
|
break;
|
||||||
|
case '3':
|
||||||
|
/*
|
||||||
|
* Prints a visual representation of the data buffer.
|
||||||
|
*/
|
||||||
|
prettydump();
|
||||||
|
break;
|
||||||
|
case '4':
|
||||||
|
/*
|
||||||
|
* This runs a sample capture at 4MHz.
|
||||||
|
*/
|
||||||
|
captureInline4mhz();
|
||||||
|
Serial.println("");
|
||||||
|
Serial.println("4MHz capture done.");
|
||||||
|
break;
|
||||||
|
case '5':
|
||||||
|
/*
|
||||||
|
* This runs a sample capture at 1MHz.
|
||||||
|
* delayTime = 1ms for 1MHz sampling.
|
||||||
|
*/
|
||||||
|
delayTime = 1;
|
||||||
|
captureMicro();
|
||||||
|
Serial.println("");
|
||||||
|
Serial.println("1MHz capture done.");
|
||||||
|
break;
|
||||||
|
case '6':
|
||||||
|
/*
|
||||||
|
* This runs a sample capture at 500KHz.
|
||||||
|
* delayTime = 2ms for 500KHz.
|
||||||
|
*/
|
||||||
|
delayTime = 1;
|
||||||
|
captureMicro();
|
||||||
|
Serial.println("");
|
||||||
|
Serial.println("500KHz capture done.");
|
||||||
|
break;
|
||||||
#endif /* DEBUG */
|
#endif /* DEBUG */
|
||||||
default:
|
default:
|
||||||
/* ignore any unrecognized bytes. */
|
/* ignore any unrecognized bytes. */
|
||||||
break;
|
break;
|
||||||
} /* switch */
|
}
|
||||||
} /* if client.available() */
|
}
|
||||||
} /* while */
|
|
||||||
delay(1);
|
|
||||||
client.stop();
|
|
||||||
Serial.println("client disconnected?");
|
|
||||||
} /* if client */
|
|
||||||
}
|
}
|
||||||
|
|
||||||
void blinkled() {
|
void blinkled() {
|
||||||
@@ -473,10 +489,10 @@ void blinkled() {
|
|||||||
*/
|
*/
|
||||||
void getCmd() {
|
void getCmd() {
|
||||||
delay(10);
|
delay(10);
|
||||||
cmdBytes[0] = client.read();
|
cmdBytes[0] = Serial.read();
|
||||||
cmdBytes[1] = client.read();
|
cmdBytes[1] = Serial.read();
|
||||||
cmdBytes[2] = client.read();
|
cmdBytes[2] = Serial.read();
|
||||||
cmdBytes[3] = client.read();
|
cmdBytes[3] = Serial.read();
|
||||||
|
|
||||||
#ifdef DEBUG
|
#ifdef DEBUG
|
||||||
if (savecount < 120 ) {
|
if (savecount < 120 ) {
|
||||||
@@ -506,7 +522,7 @@ void getCmd() {
|
|||||||
*/
|
*/
|
||||||
|
|
||||||
void captureMicro() {
|
void captureMicro() {
|
||||||
int i;
|
unsigned int i;
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* basic trigger, wait until all trigger conditions are met on port.
|
* basic trigger, wait until all trigger conditions are met on port.
|
||||||
@@ -531,6 +547,7 @@ void captureMicro() {
|
|||||||
* Arduino digital pin 8 is being used here.
|
* Arduino digital pin 8 is being used here.
|
||||||
*/
|
*/
|
||||||
DEBUG_ENABLE;
|
DEBUG_ENABLE;
|
||||||
|
#ifdef DEBUG
|
||||||
DEBUG_ON;
|
DEBUG_ON;
|
||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
DEBUG_OFF;
|
DEBUG_OFF;
|
||||||
@@ -539,6 +556,7 @@ void captureMicro() {
|
|||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
DEBUG_OFF;
|
DEBUG_OFF;
|
||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
|
#endif
|
||||||
|
|
||||||
if (delayTime == 1) {
|
if (delayTime == 1) {
|
||||||
/*
|
/*
|
||||||
@@ -595,9 +613,9 @@ void captureMicro() {
|
|||||||
*/
|
*/
|
||||||
for (i = 0 ; i < readCount; i++) {
|
for (i = 0 ; i < readCount; i++) {
|
||||||
#ifdef USE_PORTD
|
#ifdef USE_PORTD
|
||||||
client.write(logicdata[i] >> 2);
|
Serial.write(logicdata[i] >> 2);
|
||||||
#else
|
#else
|
||||||
client.write(logicdata[i]);
|
Serial.write(logicdata[i]);
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -620,7 +638,7 @@ void captureMicro() {
|
|||||||
* this basic functionality.
|
* this basic functionality.
|
||||||
*/
|
*/
|
||||||
void captureMilli() {
|
void captureMilli() {
|
||||||
int i = 0;
|
unsigned int i = 0;
|
||||||
|
|
||||||
if (rleEnabled) {
|
if (rleEnabled) {
|
||||||
/*
|
/*
|
||||||
@@ -670,9 +688,9 @@ void captureMilli() {
|
|||||||
}
|
}
|
||||||
for (i = 0 ; i < readCount; i++) {
|
for (i = 0 ; i < readCount; i++) {
|
||||||
#ifdef USE_PORTD
|
#ifdef USE_PORTD
|
||||||
client.write(logicdata[i] >> 2);
|
Serial.write(logicdata[i] >> 2);
|
||||||
#else
|
#else
|
||||||
client.write(logicdata[i]);
|
Serial.write(logicdata[i]);
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -686,7 +704,7 @@ void captureMilli() {
|
|||||||
*
|
*
|
||||||
*/
|
*/
|
||||||
void triggerMicro() {
|
void triggerMicro() {
|
||||||
int i = 0;
|
unsigned int i = 0;
|
||||||
|
|
||||||
logicIndex = 0;
|
logicIndex = 0;
|
||||||
triggerIndex = 0;
|
triggerIndex = 0;
|
||||||
@@ -706,6 +724,7 @@ void triggerMicro() {
|
|||||||
* Arduino digital pin 8 is being used here.
|
* Arduino digital pin 8 is being used here.
|
||||||
*/
|
*/
|
||||||
DEBUG_ENABLE;
|
DEBUG_ENABLE;
|
||||||
|
#ifdef DEBUG
|
||||||
DEBUG_ON;
|
DEBUG_ON;
|
||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
DEBUG_OFF;
|
DEBUG_OFF;
|
||||||
@@ -714,6 +733,7 @@ void triggerMicro() {
|
|||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
DEBUG_OFF;
|
DEBUG_OFF;
|
||||||
delayMicroseconds(20);
|
delayMicroseconds(20);
|
||||||
|
#endif
|
||||||
|
|
||||||
if (delayTime == 1) {
|
if (delayTime == 1) {
|
||||||
/*
|
/*
|
||||||
@@ -862,9 +882,9 @@ void triggerMicro() {
|
|||||||
logicIndex = 0;
|
logicIndex = 0;
|
||||||
}
|
}
|
||||||
#ifdef USE_PORTD
|
#ifdef USE_PORTD
|
||||||
client.write(logicdata[logicIndex++] >> 2);
|
Serial.write(logicdata[logicIndex++] >> 2);
|
||||||
#else
|
#else
|
||||||
client.write(logicdata[logicIndex++]);
|
Serial.write(logicdata[logicIndex++]);
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -901,73 +921,73 @@ void setupDelay() {
|
|||||||
*/
|
*/
|
||||||
void get_metadata() {
|
void get_metadata() {
|
||||||
/* device name */
|
/* device name */
|
||||||
client.write((uint8_t)0x01);
|
Serial.write((uint8_t)0x01);
|
||||||
client.write('A');
|
Serial.write('A');
|
||||||
client.write('G');
|
Serial.write('G');
|
||||||
client.write('L');
|
Serial.write('L');
|
||||||
client.write('A');
|
Serial.write('A');
|
||||||
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
||||||
client.write('M');
|
Serial.write('M');
|
||||||
#endif /* Mega */
|
#endif /* Mega */
|
||||||
client.write('v');
|
Serial.write('v');
|
||||||
client.write('0');
|
Serial.write('0');
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
|
|
||||||
/* firmware version */
|
/* firmware version */
|
||||||
client.write((uint8_t)0x02);
|
Serial.write((uint8_t)0x02);
|
||||||
client.write('0');
|
Serial.write('0');
|
||||||
client.write('.');
|
Serial.write('.');
|
||||||
client.write('0');
|
Serial.write('1');
|
||||||
client.write('9');
|
Serial.write('3');
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
|
|
||||||
/* sample memory */
|
/* sample memory */
|
||||||
client.write((uint8_t)0x21);
|
Serial.write((uint8_t)0x21);
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
||||||
/* 7168 bytes */
|
/* 7168 bytes */
|
||||||
client.write((uint8_t)0x1C);
|
Serial.write((uint8_t)0x1C);
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
#elif defined(__AVR_ATmega328P__)
|
#elif defined(__AVR_ATmega328P__)
|
||||||
/* 1024 bytes */
|
/* 1024 bytes */
|
||||||
client.write((uint8_t)0x04);
|
Serial.write((uint8_t)0x04);
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
#else
|
#else
|
||||||
/* 532 bytes */
|
/* 532 bytes */
|
||||||
client.write((uint8_t)0x02);
|
Serial.write((uint8_t)0x02);
|
||||||
client.write((uint8_t)0x14);
|
Serial.write((uint8_t)0x14);
|
||||||
#endif /* Mega */
|
#endif /* Mega */
|
||||||
|
|
||||||
/* sample rate (1MHz) */
|
/* sample rate (4MHz) */
|
||||||
client.write((uint8_t)0x23);
|
Serial.write((uint8_t)0x23);
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
client.write((uint8_t)0x0F);
|
Serial.write((uint8_t)0x3D);
|
||||||
client.write((uint8_t)0x42);
|
Serial.write((uint8_t)0x09);
|
||||||
client.write((uint8_t)0x40);
|
Serial.write((uint8_t)0x00);
|
||||||
|
|
||||||
/* number of probes (6 by default on Arduino, 8 on Mega) */
|
/* number of probes (6 by default on Arduino, 8 on Mega) */
|
||||||
client.write((uint8_t)0x40);
|
Serial.write((uint8_t)0x40);
|
||||||
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
#if defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
|
||||||
client.write((uint8_t)0x08);
|
Serial.write((uint8_t)0x08);
|
||||||
#else
|
#else
|
||||||
#ifdef CHAN5
|
#ifdef CHAN5
|
||||||
client.write((uint8_t)0x06);
|
Serial.write((uint8_t)0x06);
|
||||||
#else
|
#else
|
||||||
client.write((uint8_t)0x05);
|
Serial.write((uint8_t)0x05);
|
||||||
#endif /* CHAN5 */
|
#endif /* CHAN5 */
|
||||||
#endif /* Mega */
|
#endif /* Mega */
|
||||||
|
|
||||||
/* protocol version (2) */
|
/* protocol version (2) */
|
||||||
client.write((uint8_t)0x41);
|
Serial.write((uint8_t)0x41);
|
||||||
client.write((uint8_t)0x02);
|
Serial.write((uint8_t)0x02);
|
||||||
|
|
||||||
/* end of data */
|
/* end of data */
|
||||||
client.write((uint8_t)0x00);
|
Serial.write((uint8_t)0x00);
|
||||||
}
|
}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* This is used by the '0' debug command to dump the contents of some
|
* This is used by the '1' debug command to dump the contents of some
|
||||||
* interesting variables and the debug buffer.
|
* interesting variables and the debug buffer.
|
||||||
*
|
*
|
||||||
*/
|
*/
|
||||||
@@ -976,36 +996,36 @@ void debugprint() {
|
|||||||
int i;
|
int i;
|
||||||
|
|
||||||
#if 0
|
#if 0
|
||||||
client.print("divider = ");
|
Serial.print("divider = ");
|
||||||
client.println(divider, DEC);
|
Serial.println(divider, DEC);
|
||||||
client.print("delayTime = ");
|
Serial.print("delayTime = ");
|
||||||
client.println(delayTime, DEC);
|
Serial.println(delayTime, DEC);
|
||||||
client.print("trigger_values = ");
|
Serial.print("trigger_values = ");
|
||||||
client.println(trigger_values, BIN);
|
Serial.println(trigger_values, BIN);
|
||||||
#endif
|
#endif
|
||||||
client.print("readCount = ");
|
Serial.print("readCount = ");
|
||||||
client.println(readCount, DEC);
|
Serial.println(readCount, DEC);
|
||||||
client.print("delayCount = ");
|
Serial.print("delayCount = ");
|
||||||
client.println(delayCount, DEC);
|
Serial.println(delayCount, DEC);
|
||||||
client.print("logicIndex = ");
|
Serial.print("logicIndex = ");
|
||||||
client.println(logicIndex, DEC);
|
Serial.println(logicIndex, DEC);
|
||||||
client.print("triggerIndex = ");
|
Serial.print("triggerIndex = ");
|
||||||
client.println(triggerIndex, DEC);
|
Serial.println(triggerIndex, DEC);
|
||||||
client.print("rleEnabled = ");
|
Serial.print("rleEnabled = ");
|
||||||
client.println(rleEnabled, DEC);
|
Serial.println(rleEnabled, DEC);
|
||||||
|
|
||||||
client.println("Bytes:");
|
Serial.println("Bytes:");
|
||||||
|
|
||||||
for (i = 0 ; i < savecount; i++) {
|
for (i = 0 ; i < savecount; i++) {
|
||||||
if (savebytes[i] == 0x20) {
|
if (savebytes[i] == 0x20) {
|
||||||
client.println();
|
Serial.println();
|
||||||
}
|
}
|
||||||
else {
|
else {
|
||||||
client.print(savebytes[i], HEX);
|
Serial.print(savebytes[i], HEX);
|
||||||
client.write(' ');
|
Serial.write(' ');
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
client.println("done...");
|
Serial.println("done...");
|
||||||
}
|
}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
@@ -1016,22 +1036,51 @@ void debugdump() {
|
|||||||
int i;
|
int i;
|
||||||
int j = 1;
|
int j = 1;
|
||||||
|
|
||||||
client.print("\r\n");
|
Serial.print("\r\n");
|
||||||
|
|
||||||
for (i = 0 ; i < MAX_CAPTURE_SIZE; i++) {
|
for (i = 0 ; i < MAX_CAPTURE_SIZE; i++) {
|
||||||
#ifdef USE_PORTD
|
#ifdef USE_PORTD
|
||||||
client.print(logicdata[i] >> 2, HEX);
|
Serial.print(logicdata[i] >> 2, HEX);
|
||||||
#else
|
#else
|
||||||
client.print(logicdata[i], HEX);
|
Serial.print(logicdata[i], HEX);
|
||||||
#endif
|
#endif
|
||||||
client.print(" ");
|
Serial.print(" ");
|
||||||
if (j == 32) {
|
if (j == 32) {
|
||||||
client.print("\r\n");
|
Serial.print("\r\n");
|
||||||
j = 0;
|
j = 0;
|
||||||
}
|
}
|
||||||
j++;
|
j++;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
/*
|
||||||
|
* This is used by the '3' debugs command to dump the first 64 bytes
|
||||||
|
* of the sample buffer.
|
||||||
|
* It prints the data in a graphical representation.
|
||||||
|
*/
|
||||||
|
void prettydump() {
|
||||||
|
int i;
|
||||||
|
byte j;
|
||||||
|
byte k;
|
||||||
|
|
||||||
|
Serial.print("\r\n");
|
||||||
|
|
||||||
|
for (i = 0 ; i < 64; i++) {
|
||||||
|
#ifdef USE_PORTD
|
||||||
|
k = logicdata[i] >> 2;
|
||||||
|
#else
|
||||||
|
k = logicdata[i];
|
||||||
|
#endif
|
||||||
|
for (j = 0; j < 8; j++) {
|
||||||
|
if (k & 0x01)
|
||||||
|
Serial.print("| ");
|
||||||
|
else
|
||||||
|
Serial.print(" |");
|
||||||
|
k = k >> 1;
|
||||||
|
}
|
||||||
|
Serial.print("\r\n");
|
||||||
|
}
|
||||||
|
}
|
||||||
#endif /* DEBUG */
|
#endif /* DEBUG */
|
||||||
|
|
||||||
|
|
||||||
@@ -1041,3 +1090,7 @@ void debugdump() {
|
|||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|||||||
14456
logic_analyzer_inline_2mhz.ino
Normal file
14456
logic_analyzer_inline_2mhz.ino
Normal file
File diff suppressed because it is too large
Load Diff
14456
logic_analyzer_inline_4mhz.ino
Normal file
14456
logic_analyzer_inline_4mhz.ino
Normal file
File diff suppressed because it is too large
Load Diff
@@ -11,7 +11,7 @@ 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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# 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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device.supports_ddr = false
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# Supported sample rates in Hertz, separated by comma's
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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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device.samplerates = 10, 20, 50, 100, 200, 500, 1000, 2000, 5000, 10000, 20000, 50000, 100000, 200000, 500000, 1000000, 2000000, 4000000
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# What capture clocks are supported
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# What capture clocks are supported
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device.captureclock = INTERNAL
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device.captureclock = INTERNAL
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# The supported capture sizes, in bytes
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# The supported capture sizes, in bytes
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@@ -39,7 +39,7 @@ device.capturesize.bound = false
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device.channel.numberingschemes = DEFAULT
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device.channel.numberingschemes = DEFAULT
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|
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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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# 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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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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# The receive timeout for the device (in milliseconds, 100 = default, <=0 = no timeout)
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||||||
device.receive.timeout = 100
|
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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# Does the device need a high or low DTR-line to operate correctly? (high = true, low = false)
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||||||
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|||||||
@@ -11,7 +11,7 @@ device.clockspeed = 16000000
|
|||||||
# Whether or not double-data-rate is supported by the device (also known as the "demux"-mode).
|
# Whether or not double-data-rate is supported by the device (also known as the "demux"-mode).
|
||||||
device.supports_ddr = false
|
device.supports_ddr = false
|
||||||
# Supported sample rates in Hertz, separated by comma's
|
# Supported sample rates in Hertz, separated by comma's
|
||||||
device.samplerates = 10, 20, 50, 100, 200, 500, 1000, 2000, 5000, 10000, 20000, 50000, 100000, 200000, 500000, 1000000
|
device.samplerates = 10, 20, 50, 100, 200, 500, 1000, 2000, 5000, 10000, 20000, 50000, 100000, 200000, 500000, 1000000, 2000000, 4000000
|
||||||
# What capture clocks are supported
|
# What capture clocks are supported
|
||||||
device.captureclock = INTERNAL
|
device.captureclock = INTERNAL
|
||||||
# The supported capture sizes, in bytes
|
# The supported capture sizes, in bytes
|
||||||
|
|||||||
Reference in New Issue
Block a user