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/Designs/Data_loggers/LuxmetrSD/SW/Arduino/luxmetr/build/luxmetr.cpp
0,0 → 1,263
/* I2C Light Sensor
 
The circuit:
* analog sensors on analog ins PC0, PC1, and PC2
* SD card attached to SPI bus as follows:
** MOSI/CMD - PB3
** MISO/DAT0 - PB4
** CLK - PB5
** CS/CD/DAT3 - PD4 (4)
 
I2C pins PC4, PC5
*/
 
#include <Wire.h>
#include <math.h>
#include <stdlib.h>
#include <SD.h>
 
#define chipSelect 10 //PB2
 
#define address 0x44 // A0 = L
 
#define LIGHT_ENABLE 1
#define LIGHT_DISABLE 0
 
#define LIGHT_ONETIME 0
#define LIGHT_CONTINUOUS 1
 
#define LIGHT_SENSE_VIS 0
#define LIGHT_SENSE_IR 1
 
#define LIGHT_INTERNAL_16 0b00000000
#define LIGHT_INTERNAL_12 0b00000100
#define LIGHT_INTERNAL_8 0b00001000
#define LIGHT_INTERNAL_4 0b00001100
#define LIGHT_EXTERNAL_ADC 0b00010000
#define LIGHT_EXTERNAL_TIMER 0b00010100
 
//#define LIGHT_AUTORANGE 0
 
#define LIGHT_RANGE1 0b00000000
#define LIGHT_RANGE2 0b00000001
#define LIGHT_RANGE3 0b00000010
#define LIGHT_RANGE4 0b00000011
 
#include "WProgram.h"
void setup();
void led_blink();
int set_light_sensor(int en, int mode, int light, int res, int range);
float get_light_measurement();
void loop();
char filename[13];
 
void setup()
{
int count=0;
 
Wire.begin(); // join i2c bus (address optional for master)
 
pinMode(3, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
pinMode(5, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
Serial.begin(9600); // Zmerena intenzita osvetleni se bude vypisovat na seriovou linku
Serial.print("Initializing SD card...");
// make sure that the default chip select pin is set to
// output, even if you don't use it:
pinMode(10, OUTPUT);
// see if the card is present and can be initialized:
if (!SD.begin(chipSelect)) {
Serial.println("Card failed, or not present");
// don't do anything more:
while(true);
}
Serial.println("card initialized.");
Serial.print("searching for files...");
do
{
sprintf(filename,"Lux%d.txt",count);
count++;
}
while(SD.exists(filename));
Serial.print("Using ");
Serial.println(filename);
}
 
void led_blink()
{
digitalWrite(3, LOW); // set the LED off
delay(20);
digitalWrite(3, HIGH); // set the LED on
}
 
/*int light_sensor_write( unsigned int data, unsigned int address)
{
}
*/
 
 
int set_light_sensor(int en, int mode, int light, int res, int range)
{
int command=0;
 
command = (command & 0b01111111) | (en << 7);
command = (command & 0b10111111) | (mode << 6);
command = (command & 0b11011111) | (light << 5);
command = (command & 0b11100011) | (res << 2);
command = (command & 0b11111100) | (range);
 
// Setup device
Wire.beginTransmission(address);
Wire.send(0x00); // sends address
Wire.send(command); // setup (eye light sensing; one time measurement; measurement range 1)
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.send(0x00); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// verify written command byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
if (command != Wire.receive())
{
Serial.println("Error in sensor setting");
return 4;
}
Wire.endTransmission(); // stop transmitting
return 0;
}
 
float get_light_measurement()
{
unsigned int ret=0;
unsigned int setting=0; // variable to storage readed settings
 
unsigned long int resolution; // parsed ADC bit resolution
unsigned int range; // parsed measurement range
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.send(0x01); // sends address of LSB reagister
Wire.endTransmission(); // stop transmitting
// Connect to device and request first byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret = Wire.receive();
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.send(0x02); // sends address of MSB register
Wire.endTransmission(); // stop transmitting
// Connect to device and request second byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret +=256 * Wire.receive();
Wire.endTransmission(); // stop transmitting
 
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.send(0x00); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// get sensor setting
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
setting = Wire.receive();
Wire.endTransmission(); // stop transmitting
switch (setting & 0b00011100) // determine ADC resolution
{
case LIGHT_INTERNAL_16:
resolution=65536;
break;
case LIGHT_INTERNAL_12:
resolution=4096;
break;
case LIGHT_INTERNAL_8:
resolution=256;
break;
case LIGHT_INTERNAL_4:
resolution=16;
break;
}
switch (setting & 0b00000011) // determine measurement range
{
case LIGHT_RANGE1:
range=1000;
break;
case LIGHT_RANGE2:
range=4000;
break;
case LIGHT_RANGE3:
range=16000;
break;
case LIGHT_RANGE4:
range=64000;
break;
}
return ((500000.0*range)/(510000.0*resolution)*ret); // calculate output value
}
 
void loop()
{
float luxVIS=0;
float luxIR=0;
float time;
 
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_VIS, LIGHT_INTERNAL_16, LIGHT_RANGE3); //setup sensor for visible measuring
led_blink(); // Delay for measurement
delay(500);
luxVIS=get_light_measurement();
 
time=millis()/1000.0;
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_IR, LIGHT_INTERNAL_16, LIGHT_RANGE3); // setup sensor for infrared measuring
led_blink(); // Delay for measurement
delay(500);
luxIR=get_light_measurement();
// open the file. note that only one file can be open at a time,
// so you have to close this one before opening another.
File dataFile = SD.open(filename, FILE_WRITE);
 
// if the file is available, write to it:
if (dataFile) {
dataFile.print("$LUX0.1 ");
dataFile.print(time,3);
dataFile.print(" ");
dataFile.print(luxVIS,3);
dataFile.print(" ");
dataFile.println(luxIR,3);
dataFile.close();
// print to the serial port too:
Serial.print("$LUX0.1 ");
Serial.print(time,3);
Serial.print(" ");
Serial.print(luxVIS,3);
Serial.print(" ");
Serial.println(luxIR,3);
}
// if the file isn't open, pop up an error:
else {
Serial.print("error opening ");
Serial.println(filename);
}
delay(2000);
}
 
 
/Designs/Data_loggers/LuxmetrSD/SW/Wiring/luxmetr/build/luxmetr.cpp
0,0 → 1,267
/* I2C Light Sensor
 
The circuit:
* SD card attached to SPI bus as follows:
** MOSI/CMD - PB3
** MISO/DAT0 - PB4
** CLK - PB5
** CS/CD/DAT3 - PD4
 
I2C pins PC4, PC5
*/
 
#include <Wire.h>
#include <math.h>
#include <stdlib.h>
#include <SD.h>
 
#define chipSelect 10 //PB2
 
#define address 0x44 // A0 = L
 
#define LIGHT_ENABLE 1
#define LIGHT_DISABLE 0
 
#define LIGHT_ONETIME 0
#define LIGHT_CONTINUOUS 1
 
#define LIGHT_SENSE_VIS 0
#define LIGHT_SENSE_IR 1
 
#define LIGHT_INTERNAL_16 0b00000000
#define LIGHT_INTERNAL_12 0b00000100
#define LIGHT_INTERNAL_8 0b00001000
#define LIGHT_INTERNAL_4 0b00001100
#define LIGHT_EXTERNAL_ADC 0b00010000
#define LIGHT_EXTERNAL_TIMER 0b00010100
 
//#define LIGHT_AUTORANGE 0
 
#define LIGHT_RANGE1 0b00000000
#define LIGHT_RANGE2 0b00000001
#define LIGHT_RANGE3 0b00000010
#define LIGHT_RANGE4 0b00000011
 
#include "WProgram.h"
void setup();
void led_blink();
int set_light_sensor(int en, int mode, int light, int res, int range);
float get_light_measurement();
void loop();
char filename[13];
 
void setup()
{
int count=0;
 
Wire.begin(); // join i2c bus (address optional for master)
 
pinMode(3, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
pinMode(5, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
Serial.begin(9600); // Zmerena intenzita osvetleni se bude vypisovat na seriovou linku
 
Serial.println("LABduino SD card logging luxmeter - (c) MLAB.cz, kaklik 2012");
Serial.print("Initializing SD card...");
// make sure that the default chip select pin is set to
// output, even if you don't use it:
pinMode(10, OUTPUT);
// see if the card is present and can be initialized:
if (!SD.begin(chipSelect)) {
Serial.println("Card failed, or not present");
// don't do anything more:
while(true);
}
Serial.println("card initialized.");
Serial.print("searching for files...");
do
{
sprintf(filename,"Lux%d.txt",count);
count++;
}
while(SD.exists(filename));
Serial.print("Using ");
Serial.println(filename);
}
 
void led_blink()
{
digitalWrite(3, HIGH); // set the LED on
delay(20);
digitalWrite(3, LOW); // set the LED off
// digitalWrite(3, LOW); // set the LED off
// delay(20);
// digitalWrite(3, HIGH); // set the LED on
}
 
/*int light_sensor_write( unsigned int data, unsigned int address)
{
}
*/
 
 
int set_light_sensor(int en, int mode, int light, int res, int range)
{
int command=0;
 
command = (command & 0b01111111) | (en << 7);
command = (command & 0b10111111) | (mode << 6);
command = (command & 0b11011111) | (light << 5);
command = (command & 0b11100011) | (res << 2);
command = (command & 0b11111100) | (range);
 
// Setup device
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address
Wire.write(byte(command)); // setup (eye light sensing; one time measurement; measurement range 1)
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// verify written command byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
if (command != Wire.read())
{
Serial.println("Error in sensor setting");
return 4;
}
Wire.endTransmission(); // stop transmitting
return 0;
}
 
float get_light_measurement()
{
unsigned int ret=0;
unsigned int setting=0; // variable to storage readed settings
 
unsigned long int resolution; // parsed ADC bit resolution
unsigned int range; // parsed measurement range
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(0x01); // sends address of LSB reagister
Wire.endTransmission(); // stop transmitting
// Connect to device and request first byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret = Wire.read();
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(0x02); // sends address of MSB register
Wire.endTransmission(); // stop transmitting
// Connect to device and request second byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret +=256 * Wire.read();
Wire.endTransmission(); // stop transmitting
 
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// get sensor setting
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
setting = Wire.read();
Wire.endTransmission(); // stop transmitting
switch (setting & 0b00011100) // determine ADC resolution
{
case LIGHT_INTERNAL_16:
resolution=65536;
break;
case LIGHT_INTERNAL_12:
resolution=4096;
break;
case LIGHT_INTERNAL_8:
resolution=256;
break;
case LIGHT_INTERNAL_4:
resolution=16;
break;
}
switch (setting & 0b00000011) // determine measurement range
{
case LIGHT_RANGE1:
range=1000;
break;
case LIGHT_RANGE2:
range=4000;
break;
case LIGHT_RANGE3:
range=16000;
break;
case LIGHT_RANGE4:
range=64000;
break;
}
return ((500000.0*range)/(510000.0*resolution)*ret); // calculate output value
}
 
void loop()
{
float luxVIS=0;
float luxIR=0;
float time;
 
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_VIS, LIGHT_INTERNAL_16, LIGHT_RANGE3); //setup sensor for visible measuring
led_blink(); // Delay for measurement
delay(500);
luxVIS=get_light_measurement();
 
time=millis()/1000.0;
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_IR, LIGHT_INTERNAL_16, LIGHT_RANGE3); // setup sensor for infrared measuring
led_blink(); // Delay for measurement
delay(500);
luxIR=get_light_measurement();
// open the file. note that only one file can be open at a time,
// so you have to close this one before opening another.
File dataFile = SD.open(filename, FILE_WRITE);
 
// if the file is available, write to it:
if (dataFile) {
dataFile.print("$LUX0.1 ");
dataFile.print(time,3);
dataFile.print(" ");
dataFile.print(luxVIS,3);
dataFile.print(" ");
dataFile.println(luxIR,3);
dataFile.close();
// print to the serial port too:
Serial.print("$LUX0.1 ");
Serial.print(time,3);
Serial.print(" ");
Serial.print(luxVIS,3);
Serial.print(" ");
Serial.println(luxIR,3);
}
// if the file isn't open, pop up an error:
else {
Serial.print("error opening ");
Serial.println(filename);
}
delay(2000);
}
 
 
/Designs/Data_loggers/LuxmetrSD/SW/Wiring/luxmetr/luxmetr.pde
0,0 → 1,260
/* I2C Light Sensor
 
The circuit:
* SD card attached to SPI bus as follows:
** MOSI/CMD - PB3
** MISO/DAT0 - PB4
** CLK - PB5
** CS/CD/DAT3 - PD4
 
I2C pins PC4, PC5
*/
 
#include <Wire.h>
#include <math.h>
#include <stdlib.h>
#include <SD.h>
 
#define chipSelect 10 //PB2
 
#define address 0x44 // A0 = L
 
#define LIGHT_ENABLE 1
#define LIGHT_DISABLE 0
 
#define LIGHT_ONETIME 0
#define LIGHT_CONTINUOUS 1
 
#define LIGHT_SENSE_VIS 0
#define LIGHT_SENSE_IR 1
 
#define LIGHT_INTERNAL_16 0b00000000
#define LIGHT_INTERNAL_12 0b00000100
#define LIGHT_INTERNAL_8 0b00001000
#define LIGHT_INTERNAL_4 0b00001100
#define LIGHT_EXTERNAL_ADC 0b00010000
#define LIGHT_EXTERNAL_TIMER 0b00010100
 
//#define LIGHT_AUTORANGE 0
 
#define LIGHT_RANGE1 0b00000000
#define LIGHT_RANGE2 0b00000001
#define LIGHT_RANGE3 0b00000010
#define LIGHT_RANGE4 0b00000011
 
char filename[13];
 
void setup()
{
int count=0;
 
Wire.begin(); // join i2c bus (address optional for master)
 
pinMode(3, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
pinMode(5, OUTPUT); // LED pro blikani, aby bylo videt, ze to neco dela
Serial.begin(9600); // Zmerena intenzita osvetleni se bude vypisovat na seriovou linku
 
Serial.println("LABduino SD card logging luxmeter - (c) MLAB.cz, kaklik 2012");
Serial.print("Initializing SD card...");
// make sure that the default chip select pin is set to
// output, even if you don't use it:
pinMode(10, OUTPUT);
// see if the card is present and can be initialized:
if (!SD.begin(chipSelect)) {
Serial.println("Card failed, or not present");
// don't do anything more:
while(true);
}
Serial.println("card initialized.");
Serial.print("searching for files...");
do
{
sprintf(filename,"Lux%d.txt",count);
count++;
}
while(SD.exists(filename));
Serial.print("Using ");
Serial.println(filename);
}
 
void led_blink()
{
digitalWrite(3, HIGH); // set the LED on
delay(20);
digitalWrite(3, LOW); // set the LED off
// digitalWrite(3, LOW); // set the LED off
// delay(20);
// digitalWrite(3, HIGH); // set the LED on
}
 
/*int light_sensor_write( unsigned int data, unsigned int address)
{
}
*/
 
 
int set_light_sensor(int en, int mode, int light, int res, int range)
{
int command=0;
 
command = (command & 0b01111111) | (en << 7);
command = (command & 0b10111111) | (mode << 6);
command = (command & 0b11011111) | (light << 5);
command = (command & 0b11100011) | (res << 2);
command = (command & 0b11111100) | (range);
 
// Setup device
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address
Wire.write(byte(command)); // setup (eye light sensing; one time measurement; measurement range 1)
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// verify written command byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
if (command != Wire.read())
{
Serial.println("Error in sensor setting");
return 4;
}
Wire.endTransmission(); // stop transmitting
return 0;
}
 
float get_light_measurement()
{
unsigned int ret=0;
unsigned int setting=0; // variable to storage readed settings
 
unsigned long int resolution; // parsed ADC bit resolution
unsigned int range; // parsed measurement range
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(0x01); // sends address of LSB reagister
Wire.endTransmission(); // stop transmitting
// Connect to device and request first byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret = Wire.read();
Wire.endTransmission(); // stop transmitting
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(0x02); // sends address of MSB register
Wire.endTransmission(); // stop transmitting
// Connect to device and request second byte
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
ret +=256 * Wire.read();
Wire.endTransmission(); // stop transmitting
 
 
// Connect to device and set register address
Wire.beginTransmission(address);
Wire.write(byte(0x00)); // sends address (command register)
Wire.endTransmission(); // stop transmitting
// get sensor setting
Wire.beginTransmission(address);
Wire.requestFrom(address, 1);
setting = Wire.read();
Wire.endTransmission(); // stop transmitting
switch (setting & 0b00011100) // determine ADC resolution
{
case LIGHT_INTERNAL_16:
resolution=65536;
break;
case LIGHT_INTERNAL_12:
resolution=4096;
break;
case LIGHT_INTERNAL_8:
resolution=256;
break;
case LIGHT_INTERNAL_4:
resolution=16;
break;
}
switch (setting & 0b00000011) // determine measurement range
{
case LIGHT_RANGE1:
range=1000;
break;
case LIGHT_RANGE2:
range=4000;
break;
case LIGHT_RANGE3:
range=16000;
break;
case LIGHT_RANGE4:
range=64000;
break;
}
return ((500000.0*range)/(510000.0*resolution)*ret); // calculate output value
}
 
void loop()
{
float luxVIS=0;
float luxIR=0;
float time;
 
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_VIS, LIGHT_INTERNAL_16, LIGHT_RANGE3); //setup sensor for visible measuring
led_blink(); // Delay for measurement
delay(500);
luxVIS=get_light_measurement();
 
time=millis()/1000.0;
set_light_sensor(LIGHT_ENABLE, LIGHT_ONETIME, LIGHT_SENSE_IR, LIGHT_INTERNAL_16, LIGHT_RANGE3); // setup sensor for infrared measuring
led_blink(); // Delay for measurement
delay(500);
luxIR=get_light_measurement();
// open the file. note that only one file can be open at a time,
// so you have to close this one before opening another.
File dataFile = SD.open(filename, FILE_WRITE);
 
// if the file is available, write to it:
if (dataFile) {
dataFile.print("$LUX0.1 ");
dataFile.print(time,3);
dataFile.print(" ");
dataFile.print(luxVIS,3);
dataFile.print(" ");
dataFile.println(luxIR,3);
dataFile.close();
// print to the serial port too:
Serial.print("$LUX0.1 ");
Serial.print(time,3);
Serial.print(" ");
Serial.print(luxVIS,3);
Serial.print(" ");
Serial.println(luxIR,3);
}
// if the file isn't open, pop up an error:
else {
Serial.print("error opening ");
Serial.println(filename);
}
delay(2000);
}
 
/Designs/Measuring_instruments/ABL01A/DOC/src/zprava.txt
0,0 → 1,14
LIS:
 
Jako uzavírací a vypouštìcí systém balónu je použit lis. Lis má za úkol secvaknout nohavici, která pøivádí nosný plyn do balónu a podélnì ji pøetavit. Tím dojde k uzavøení pøívodu plynu do balónu a zároveò k odpoutání balónu od uzavíracího systému. O odpoutání se postará nosný plyn, který vytvoøí dostateèný vztlak, jenž pøetrhne natavený materiál a uzavøený balón pak zaène stoupat.
Lis je tvoøen pohyblivou pøítlaènou plošinou a pevnou zarážkou s odporovým drátem. Pøítlaèná plošina je schopna posuvného pohybu po kolejnicích s pøírazem k pevné zarážce. O pøítlak se starají 2 pružiny umístìné na kolejnicích za plošinou, jak je vidìt na obrázku.
Pro snadnìjší rozevírání lisu a jeho spuštìní je použit naviják, který pøitahuje pøítlaènou plošinu. Po dostateèném rozevøení lisu, je naviják zajištìn páskou, která je vedena pøes rezistor. Lis je aktivován tak, že rezistor pøetaví pásku, zajišující naviják. Naviják se uvolní a pružiny sevøou lis.
Na pevné zarážce je natažen odporový dráty, který má za úkol pøetavit nohavici secvaknutou lisem. Aby nedošlo k pøíliš rychlému pøetavení nohavice, je pøes odporový drát pøetažen pauzovací papír. Pro lepší úèinnost systému je pauzovacím papírem potažena i pøítlaèná plošina. Pauzovací papír se postará o lepší rozložení tepla a zároveò brání pøilepení nohavice k lisu.
Pro správnou funkci lisu je dùležitá poloha, ve které dosedá pøítlaèná plošina k zarážce. Pøítlaèná plošina musí dosedat tak, aby její horní hrana byla v zákrytu s horní hranou odporového drátu. Pokud by plošina dosedala výše, došlo by sice k pøetavení, ale balón by se nedokázal vlastní silou odpoutat od systému, protože by byl stále držen lisem. Pokud by plošina dosedala níže, nedošlo by k správnému uzavøení a odpoutání balónu. Z tìchto dùvodù je nutné, aby plošina dosedala pøesnì na hranì odporového drátu a mohlo tak dojít k správnému uzavøení balónu a jeho následnému odpoutání. Správné dosednutí je znázornìno na obrázku.
 
 
BOX:
 
Box tvoøí krabice o rozmìrech 57x39x42 cm, zakoupená v IKEI a boènice a støecha z polykarbonátu. Výsledné uspoøádání pøipomíná psí boudu a bylo takto navrženo za úèelem snadného otevírání støechy.
Boènice mají tvar obdélníku, na kterém je posazen pøesahující rovnoramenný trojúhelník. Obdélníková èást je pøichycena ke krabici a na trojúhelníkové èásti je posazena støecha, která je tvoøena ze dvou desek. Tyto støešní desky, které se kvùli dešti navzájem trochu pøekrývají, jsou uvnitø boxu spojeny páskou. Pøi pøetavení pásky rezistorem, sjedou samovolnì støešní desky po boènicích na zem. Celý systém je znázornìn na obrázku.
Jiná možnost otevøení støechy, je použít panty. Tyto panty by držely støešní desky v zavøené poloze a po pøepálení pásky rezistorem, by se tyto desky vyklopily do stran, jak je znázornìno na obrázku. Pohyb, který by støešní desky musely vykonat, by byl zajištìn pružinami. Nejvhodnìjší øešení by bylo použít zkrutnou pružinu, u každého pantu.
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/Designs/Measuring_instruments/ABL01A/pdf/napln/test.pdf
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/Designs/Measuring_instruments/GM_counter/SW/HV_source/main.c
60,8 → 60,11
output_low(BEEP);
 
lcd_init();
 
lcd_putc("\fHVPS01A 2013 MLAB\n");
lcd_gotoxy(1,1);
lcd_putc("HVPS01A");
lcd_gotoxy(1,2);
lcd_putc(" MLAB.cz");
Delay_ms(1000);
lcd_putc("\f");
87,11 → 90,10
set_pwm2_duty(1023-plneni);
lcd_gotoxy(1,1);
printf(lcd_putc,"Actual: %lu V ",napeti);
printf(lcd_putc,"%lu",napeti);
lcd_gotoxy(1,2);
printf(lcd_putc,"Set: %lu V ",setpoint);
printf(lcd_putc,"Set:%lu"setpoint);
 
 
if(button_press==false ) // tlacitka se ctou znovu pouze pokud v redchozim cyklu nebyla zmacknuta.
{
if(!input(S1))
101,7 → 103,7
{
button_press=true;
sound_beep(100,700);
if(setpoint < 0xfa )setpoint+=5;
if(setpoint < (1023-5) )setpoint+=5;
}
}
 
123,7 → 125,7
{
button_press=true;
sound_beep(100,500);
if(setpoint < 0xff )setpoint++;
if(setpoint < 1023 )setpoint++;
}
}
 
/Designs/Measuring_instruments/GM_counter/SW/HV_source/main.hex
1,157 → 1,155
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:1001B000DB288910DC28891483168910000083123B
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:10026000330B332936294030B4003729B40101302B
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:100280009A2008003108073A031950290B3A03193C
:100290005529063A03195D29023A03196329682989
:1002A0000130B200B30030216E29B6010130B70031
:1002B0009A200230B20029206E290130B2000230AB
:1002C000B30030216E29B6011030B7009A206E2994
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;PIC16F887
;CRC=6BFD CREATED="10-II-13 16:50"
;CRC=39DC CREATED="23-V-13 16:45"
/Designs/Measuring_instruments/GM_counter/SW/HV_source/main.pjt
17,13 → 17,13
0=0000 %S 0 0 796 451 3 0
[Opened Files]
1=main.c
2=..\counter\main.c
3=
4=C:\Program Files\PICC\drivers\lcd.c
2=main.h
3=C:\Program Files (x86)\PICC\devices\16F887.h
4=C:\Program Files (x86)\PICC\drivers\lcd.c
5=
[Target Data]
OptionString=-p +FM
FileList=D:\MLAB\Designs\Measuring_instruments\GM_counter\SW\HV_source\main.c
FileList=Z:\home\kaklik\MLAB\Designs\Measuring_instruments\GM_counter\SW\HV_source\main.c
[Units]
Count=1
1=main (main)
/Designs/Measuring_instruments/GM_counter/SW/counter/main.bak
54,12 → 54,16
}
}
 
#define TRESHOLD_setup 1
#define INTERVAL_setup 0
 
 
void main()
{
unsigned int16 integration_time=60;
unsigned int16 time;
unsigned int16 last_timer; // promena pro praskani
unsigned int1 button_press,voltage_setup=0,time_setup=1; // semafor pro cteni tlacitek
unsigned int1 button_press,setup_mode=INTERVAL_setup; // semafor pro cteni tlacitek
unsigned int16 measurement_number=0;
 
setup_adc_ports(sAN0|VSS_VDD);
190,18 → 194,19
if(!input(S4))
{
button_press=true;
if(time_setup==TRUE)
switch (setup_mode)
{
sound_beep(100,400);
if(integration_time > 0x0001 ) integration_time--;
case INTERVAL_setup:
sound_beep(100,400);
if(integration_time > 0x0001 ) integration_time--;
 
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
break;
}
if(time_setup==TRUE)
{
}
}
212,8 → 217,7
{
button_press=true;
sound_beep(100,800);
voltage_setup=FALSE;
time_setup=TRUE;
setup_mode=INTERVAL_setup;
}
}
224,8 → 228,7
{
button_press=true;
sound_beep(100,800);
voltage_setup=TRUE;
time_setup=FALSE;
setup_mode=TRESHOLD_setup;
}
}
}
/Designs/Measuring_instruments/GM_counter/SW/counter/main.c
54,13 → 54,18
}
}
 
#define TRESHOLD_setup 1
#define INTERVAL_setup 0
 
 
void main()
{
unsigned int16 integration_time=60;
unsigned int16 time;
unsigned int16 last_timer; // promena pro praskani
unsigned int1 button_press,voltage_setup,time_setup; // semafor pro cteni tlacitek
unsigned int1 button_press,setup_mode=INTERVAL_setup; // semafor pro cteni tlacitek
unsigned int16 measurement_number=0;
unsigned int8 treshold=6;
 
setup_adc_ports(sAN0|VSS_VDD);
setup_adc(ADC_CLOCK_DIV_32);
82,7 → 87,7
output_low(BEEP);
 
setup_comparator(CP2_A0_VREF|CP2_OUT_ON_A5); // sets two comparators(A1 and VR and A2 as the output)
setup_vref(VREF_HIGH|6); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
enable_interrupts(INT_COMP); //enables the comparator interrupt
enable_interrupts(INT_RTCC);
enable_interrupts(INT_TIMER1);
120,9 → 125,8
}
lcd_gotoxy(1,2);
printf(lcd_putc,"T:%lu ",time);
lcd_gotoxy(9,2);
printf(lcd_putc,"I:%lu ", integration_time);
printf(lcd_putc,"T:%3lu I:%3lu U:%2u ",time,integration_time,treshold);
// printf(lcd_putc,"I:%4lu ", integration_time);
 
if(time == 0) // po uplynuti mereneho intervalu vypis na seriovku
{
143,10 → 147,17
if(!input(S1))
{
button_press=true;
if(time_setup==TRUE)
sound_beep(100,700);
switch (setup_mode)
{
sound_beep(100,700);
if(integration_time < 0xfffa ) integration_time+=5;
case INTERVAL_setup:
if(integration_time < 0xfffa ) integration_time+=5;
break;
case TRESHOLD_setup:
if(treshold < 0x0a ) treshold +=5;
setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
break;
}
}
}
157,15 → 168,20
if(!input(S2))
{
button_press=true;
if(time_setup==TRUE)
sound_beep(100,600);
switch (setup_mode)
{
sound_beep(100,600);
if(integration_time > 0x0005 ) integration_time-=5;
 
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
case INTERVAL_setup:
if(integration_time > 0x0005 ) integration_time-=5;
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
break;
case TRESHOLD_setup:
if(treshold > 0x05 ) treshold +=5;
setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
break;
}
}
}
176,10 → 192,17
if(!input(S3))
{
button_press=true;
if(time_setup==TRUE)
sound_beep(100,500);
switch (setup_mode)
{
sound_beep(100,500);
if(integration_time < 0xffff ) integration_time++;
case INTERVAL_setup:
if(integration_time < 0xffff ) integration_time++;
break;
 
case TRESHOLD_setup:
if(treshold < 0x0F ) treshold ++;
setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
break;
}
}
}
190,18 → 213,23
if(!input(S4))
{
button_press=true;
if(time_setup==TRUE)
sound_beep(100,400);
switch (setup_mode)
{
sound_beep(100,400);
if(integration_time > 0x0001 ) integration_time--;
case INTERVAL_setup:
if(integration_time > 0x0001 ) integration_time--;
 
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
time_overflow_count=0;
set_timer1(0);
overflow_count=0;
break;
case TRESHOLD_setup:
if(treshold > 0x01 ) treshold--;
setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
break;
}
if(time_setup==TRUE)
{
}
}
212,8 → 240,9
{
button_press=true;
sound_beep(100,800);
voltage_setup=FALSE;
time_setup=TRUE;
setup_mode=INTERVAL_setup;
lcd_gotoxy(16,1); // prepsani dat na displeje
printf(lcd_putc,"I");
}
}
224,8 → 253,9
{
button_press=true;
sound_beep(100,800);
voltage_setup=TRUE;
time_setup=FALSE;
setup_mode=TRESHOLD_setup;
lcd_gotoxy(16,1); // prepsani dat na displeje
printf(lcd_putc,"U");
}
}
}
/Designs/Measuring_instruments/GM_counter/SW/counter/main.cof
Cannot display: file marked as a binary type.
svn:mime-type = application/octet-stream
/Designs/Measuring_instruments/GM_counter/SW/counter/main.err
1,2 → 1,2
*** Error 79 "main.c" Line 240(0,1): Expect }
1 Errors, 0 Warnings.
Memory usage: ROM=37% RAM=10% - 15%
0 Errors, 0 Warnings.
/Designs/Measuring_instruments/GM_counter/SW/counter/main.esym
1,7 → 1,7
D G "__PCM__" 0 240 ""4.106""
D G "__DEVICE__" 0 240 "887"
D G "__DATE__" 0 240 ""22-5-13""
D G "__TIME__" 0 240 ""12:41:56"" "Standard Header file for the PIC16F887 device ////////////////"
D G "__PCM__" 0 270 ""4.106""
D G "__DEVICE__" 0 270 "887"
D G "__DATE__" 0 270 ""23-V-13""
D G "__TIME__" 0 270 ""16:19:42"" "Standard Header file for the PIC16F887 device ////////////////"
d G "PIN_A0" 2 20 "40"
d G "PIN_A1" 2 21 "41"
d G "PIN_A2" 2 22 "42"
338,29 → 338,39
V L "lenght" 0 46 "int8"
V L "frequency" 0 46 "int16"
V L "i" 0 48 "int8"
F G "MAIN" 0 57 "void()"
V L "integration_time" 0 59 "int16"
V L "time" 0 60 "int16"
V L "last_timer" 0 61 "int16" "promena pro praskani"
V L "button_press" 0 62 "int1"
V L "voltage_setup" 0 62 "int1"
V L "time_setup" 0 62 "int1" "semafor pro cteni tlacitek"
V L "measurement_number" 0 63 "int16"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
C L "MAIN" 0 84 1 "FUNCTION"
D G "TRESHOLD_setup" 0 57 "1"
D G "INTERVAL_setup" 0 58 "0"
F G "MAIN" 0 61 "void()"
V L "integration_time" 0 63 "int16"
V L "time" 0 64 "int16"
V L "last_timer" 0 65 "int16" "promena pro praskani"
V L "button_press" 0 66 "int1"
V L "setup_mode" 0 66 "int1"
C L "MAIN" 0 66 1 "FUNCTION"
V L "measurement_number" 0 67 "int16"
V L "treshold" 0 68 "int8"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
C L "MAIN" 0 66 1 "FUNCTION"
F B "reset_cpu" 0 0
F B "abs" 1 0
F B "sleep_ulpwu" 1 0
/Designs/Measuring_instruments/GM_counter/SW/counter/main.hex
17,342 → 17,365
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:10139000B4007A08B5000130C700C8008A11AB213B
:1013A0008A15903003178D0000308F00031006302F
:1013B0000313BA008A1198228A15413084002A0842
:1013C000BD002908BC002808BB002708BA008A1104
:1013D00029238A15943003178D0000308F000314E1
:1013E00005300313BA008A1198228A150130C7000C
:1013F0000230C8008A11AB218A155430C6008A1108
:10140000BD218A153A30C6008A11BD218A150230E5
:1014100084003308BB003208BA008A1194258A156B
:101420002030C6008A11BD218A154930C6008A11B4
:10143000BD218A153A30C6008A11BD218A150230B5
:1014400084003108BB003008BA008A1194258A153F
:101450002030C6008A11BD218A155530C6008A1178
:10146000BD218A153A30C6008A11BD218A15390876
:10147000BA001130BB008A110C2E8A152030C6002C
:101480008A11BD218A15B208031D9D2AB308031DC8
:101490009D2A8101AE01AD01E830BA000230BC00E6
:1014A000BC30BB008A1154268A15983003178D0072
:1014B00000308F00031008300313BA008A119D26F4
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:1014F0002030C6008A1130228A15413084002A0823
:10150000BD002908BC002808BB002708BA008A11C2
:101510004F2F8A15A13003178D0000308F00031460
:1015200004300313BA008A119D268A158F018E019B
:10153000AC01AB01B70A0319B80A3618EF2B2F1507
:101540002F088316870083120719E22A1430C70078
:101550008A11A4208A152F152F088316870083125D
:101560000719E22A36146430BA000230BC00BC30DD
:10157000BB008A1154268A150030B6180130003A93
:101580000319C62A013A0319D52AE22A3108FF3C79
:10159000031CD42A031DD02A3008F93C031CD42A8A
:1015A0000530B0070318B10AE22A3908093C031CC8
:1015B000DB2A0530B90739088038BA00831697004E
:1015C0008312E22AAF152F0883168700831287192A
:1015D0002B2B1430C7008A11A4208A15AF152F08B1
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:1015F0000230BC005830BB008A1154268A150030D6
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:1016900003194E2B013A0319572B622B300F532B92
:1016A000310F532B562BB00A0319B10A622B39089C
:1016B0000E3C0318B90A39088038BA00831697001F
:1016C0008312622B8316881483128818A32B14307C
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:08182000122C36101F29630091
:04400E00F52CFF3F4F
:00000001FF
;PIC16F887
;CRC=16D5 CREATED="22-5-13 12:34"
;CRC=1D13 CREATED="23-V-13 16:19"
/Designs/Measuring_instruments/GM_counter/SW/counter/main.lst
1,11 → 1,11
CCS PCM C Compiler, Version 4.106, 47914 22-5-13 12:34
CCS PCM C Compiler, Version 4.106, 47914 23-V-13 16:19
 
Filename: D:\Honza\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\main.lst
Filename: Z:\home\kaklik\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\main.lst
 
ROM used: 2825 words (34%)
ROM used: 3009 words (37%)
Largest free fragment is 2048
RAM used: 36 (10%) at main() level
55 (15%) worst case
RAM used: 37 (10%) at main() level
56 (15%) worst case
Stack: 6 worst case (5 in main + 1 for interrupts)
 
*
89,80 → 89,80
....................
.................... #use delay(clock=8000000)
*
00A9: MOVLW 46
00AA: MOVWF 04
00AB: BCF 03.7
00AC: MOVF 00,W
00AD: BTFSC 03.2
00AE: GOTO 0BC
00AF: MOVLW 02
00B0: MOVWF 78
00B1: CLRF 77
00B2: DECFSZ 77,F
00B3: GOTO 0B2
00B4: DECFSZ 78,F
00B5: GOTO 0B1
00B6: MOVLW 97
00B7: MOVWF 77
00B8: DECFSZ 77,F
00B9: GOTO 0B8
00BA: DECFSZ 00,F
00BB: GOTO 0AF
00BC: RETURN
00A4: MOVLW 47
00A5: MOVWF 04
00A6: BCF 03.7
00A7: MOVF 00,W
00A8: BTFSC 03.2
00A9: GOTO 0B7
00AA: MOVLW 02
00AB: MOVWF 78
00AC: CLRF 77
00AD: DECFSZ 77,F
00AE: GOTO 0AD
00AF: DECFSZ 78,F
00B0: GOTO 0AC
00B1: MOVLW 97
00B2: MOVWF 77
00B3: DECFSZ 77,F
00B4: GOTO 0B3
00B5: DECFSZ 00,F
00B6: GOTO 0AA
00B7: RETURN
*
05FC: MOVLW 08
05FD: SUBWF 40,F
05FE: BTFSS 03.0
05FF: GOTO 60C
0600: MOVLW 40
0601: MOVWF 04
0602: BCF 03.7
0603: BCF 03.0
0604: RRF 00,F
0605: MOVF 00,W
0606: BTFSC 03.2
0607: GOTO 60C
0608: GOTO 60A
0609: NOP
060A: DECFSZ 00,F
060B: GOTO 609
060C: RETURN
0643: MOVLW 08
0644: SUBWF 41,F
0645: BTFSS 03.0
0646: GOTO 653
0647: MOVLW 41
0648: MOVWF 04
0649: BCF 03.7
064A: BCF 03.0
064B: RRF 00,F
064C: MOVF 00,W
064D: BTFSC 03.2
064E: GOTO 653
064F: GOTO 651
0650: NOP
0651: DECFSZ 00,F
0652: GOTO 650
0653: RETURN
.................... #use rs232(baud=9600,parity=N,xmit=PIN_B7,rcv=PIN_B6,bits=8)
*
0235: BSF 03.5
0236: BCF 06.7
0237: BCF 03.5
0238: BCF 06.7
0239: MOVLW 08
023A: MOVWF 78
023B: GOTO 23C
023C: NOP
023D: BSF 78.7
023E: GOTO 24D
023F: BCF 78.7
0240: RRF 45,F
0241: BTFSC 03.0
0242: BSF 06.7
0243: BTFSS 03.0
0244: BCF 06.7
0245: BSF 78.6
0246: GOTO 24D
0247: BCF 78.6
0248: DECFSZ 78,F
0249: GOTO 240
024A: GOTO 24B
024B: NOP
024C: BSF 06.7
024D: MOVLW 3F
024E: MOVWF 04
024F: DECFSZ 04,F
0250: GOTO 24F
0251: NOP
0252: BTFSC 78.7
0253: GOTO 23F
0254: BTFSC 78.6
0255: GOTO 247
0256: RETURN
0230: BSF 03.5
0231: BCF 06.7
0232: BCF 03.5
0233: BCF 06.7
0234: MOVLW 08
0235: MOVWF 78
0236: GOTO 237
0237: NOP
0238: BSF 78.7
0239: GOTO 248
023A: BCF 78.7
023B: RRF 46,F
023C: BTFSC 03.0
023D: BSF 06.7
023E: BTFSS 03.0
023F: BCF 06.7
0240: BSF 78.6
0241: GOTO 248
0242: BCF 78.6
0243: DECFSZ 78,F
0244: GOTO 23B
0245: GOTO 246
0246: NOP
0247: BSF 06.7
0248: MOVLW 3F
0249: MOVWF 04
024A: DECFSZ 04,F
024B: GOTO 24A
024C: NOP
024D: BTFSC 78.7
024E: GOTO 23A
024F: BTFSC 78.6
0250: GOTO 242
0251: RETURN
....................
....................
....................
384,13 → 384,13
.................... #if (defined(LCD_DATA4) && defined(LCD_DATA5) && defined(LCD_DATA6) && defined(LCD_DATA7))
.................... output_float(LCD_DATA4);
*
0122: BSF 08.4
011D: BSF 08.4
.................... output_float(LCD_DATA5);
0123: BSF 08.5
011E: BSF 08.5
.................... output_float(LCD_DATA6);
0124: BSF 08.6
011F: BSF 08.6
.................... output_float(LCD_DATA7);
0125: BSF 08.7
0120: BSF 08.7
.................... #else
.................... lcdtris.data = 0xF;
.................... #endif
397,48 → 397,48
.................... #endif
....................
.................... lcd_output_rw(1);
0121: BCF 03.5
0122: BSF 09.2
0123: BSF 03.5
0124: BCF 09.2
.................... delay_cycles(1);
0125: NOP
.................... lcd_output_enable(1);
0126: BCF 03.5
0127: BSF 09.2
0127: BSF 09.0
0128: BSF 03.5
0129: BCF 09.2
0129: BCF 09.0
.................... delay_cycles(1);
012A: NOP
.................... lcd_output_enable(1);
.................... high = lcd_read_nibble();
012B: BCF 03.5
012C: BSF 09.0
012D: BSF 03.5
012E: BCF 09.0
.................... delay_cycles(1);
012F: NOP
.................... high = lcd_read_nibble();
0130: BCF 03.5
0131: CALL 0E9
0132: MOVF 78,W
0133: MOVWF 4D
012C: CALL 0E4
012D: MOVF 78,W
012E: MOVWF 4E
....................
.................... lcd_output_enable(0);
0134: BCF 09.0
012F: BCF 09.0
0130: BSF 03.5
0131: BCF 09.0
.................... delay_cycles(1);
0132: NOP
.................... lcd_output_enable(1);
0133: BCF 03.5
0134: BSF 09.0
0135: BSF 03.5
0136: BCF 09.0
.................... delay_cycles(1);
0137: NOP
.................... lcd_output_enable(1);
0138: BCF 03.5
0139: BSF 09.0
013A: BSF 03.5
013B: BCF 09.0
.................... delay_us(1);
013C: GOTO 13D
0137: GOTO 138
.................... low = lcd_read_nibble();
013D: BCF 03.5
013E: CALL 0E9
013F: MOVF 78,W
0140: MOVWF 4C
0138: BCF 03.5
0139: CALL 0E4
013A: MOVF 78,W
013B: MOVWF 4D
....................
.................... lcd_output_enable(0);
0141: BCF 09.0
0142: BSF 03.5
0143: BCF 09.0
013C: BCF 09.0
013D: BSF 03.5
013E: BCF 09.0
....................
.................... #if defined(__PCB__)
.................... set_tris_lcd(LCD_OUTPUT_MAP);
445,13 → 445,13
.................... #else
.................... #if (defined(LCD_DATA4) && defined(LCD_DATA5) && defined(LCD_DATA6) && defined(LCD_DATA7))
.................... output_drive(LCD_DATA4);
0144: BCF 08.4
013F: BCF 08.4
.................... output_drive(LCD_DATA5);
0145: BCF 08.5
0140: BCF 08.5
.................... output_drive(LCD_DATA6);
0146: BCF 08.6
0141: BCF 08.6
.................... output_drive(LCD_DATA7);
0147: BCF 08.7
0142: BCF 08.7
.................... #else
.................... lcdtris.data = 0x0;
.................... #endif
458,14 → 458,14
.................... #endif
....................
.................... return( (high<<4) | low);
0148: BCF 03.5
0149: SWAPF 4D,W
014A: MOVWF 77
014B: MOVLW F0
014C: ANDWF 77,F
014D: MOVF 77,W
014E: IORWF 4C,W
014F: MOVWF 78
0143: BCF 03.5
0144: SWAPF 4E,W
0145: MOVWF 77
0146: MOVLW F0
0147: ANDWF 77,F
0148: MOVF 77,W
0149: IORWF 4D,W
014A: MOVWF 78
.................... }
....................
.................... BYTE lcd_read_nibble(void)
472,68 → 472,68
.................... {
.................... #if (defined(LCD_DATA4) && defined(LCD_DATA5) && defined(LCD_DATA6) && defined(LCD_DATA7))
*
00E9: CLRF 4E
00E4: CLRF 4F
.................... BYTE n = 0x00;
....................
.................... /* Read the data port */
.................... n |= input(LCD_DATA4);
00EA: BSF 03.5
00EB: BSF 08.4
00EC: MOVLW 00
00ED: BCF 03.5
00EE: BTFSC 08.4
00EF: MOVLW 01
00F0: IORWF 4E,F
00E5: BSF 03.5
00E6: BSF 08.4
00E7: MOVLW 00
00E8: BCF 03.5
00E9: BTFSC 08.4
00EA: MOVLW 01
00EB: IORWF 4F,F
.................... n |= input(LCD_DATA5) << 1;
00F1: BSF 03.5
00F2: BSF 08.5
00F3: MOVLW 00
00F4: BCF 03.5
00F5: BTFSC 08.5
00F6: MOVLW 01
00F7: MOVWF 77
00F8: BCF 03.0
00F9: RLF 77,F
00FA: MOVF 77,W
00FB: IORWF 4E,F
00EC: BSF 03.5
00ED: BSF 08.5
00EE: MOVLW 00
00EF: BCF 03.5
00F0: BTFSC 08.5
00F1: MOVLW 01
00F2: MOVWF 77
00F3: BCF 03.0
00F4: RLF 77,F
00F5: MOVF 77,W
00F6: IORWF 4F,F
.................... n |= input(LCD_DATA6) << 2;
00FC: BSF 03.5
00FD: BSF 08.6
00FE: MOVLW 00
00FF: BCF 03.5
0100: BTFSC 08.6
0101: MOVLW 01
0102: MOVWF 77
0103: RLF 77,F
0104: RLF 77,F
0105: MOVLW FC
0106: ANDWF 77,F
0107: MOVF 77,W
0108: IORWF 4E,F
00F7: BSF 03.5
00F8: BSF 08.6
00F9: MOVLW 00
00FA: BCF 03.5
00FB: BTFSC 08.6
00FC: MOVLW 01
00FD: MOVWF 77
00FE: RLF 77,F
00FF: RLF 77,F
0100: MOVLW FC
0101: ANDWF 77,F
0102: MOVF 77,W
0103: IORWF 4F,F
.................... n |= input(LCD_DATA7) << 3;
0109: BSF 03.5
010A: BSF 08.7
010B: MOVLW 00
010C: BCF 03.5
010D: BTFSC 08.7
010E: MOVLW 01
010F: MOVWF 77
0110: RLF 77,F
0111: RLF 77,F
0112: RLF 77,F
0113: MOVLW F8
0114: ANDWF 77,F
0115: MOVF 77,W
0116: IORWF 4E,F
0104: BSF 03.5
0105: BSF 08.7
0106: MOVLW 00
0107: BCF 03.5
0108: BTFSC 08.7
0109: MOVLW 01
010A: MOVWF 77
010B: RLF 77,F
010C: RLF 77,F
010D: RLF 77,F
010E: MOVLW F8
010F: ANDWF 77,F
0110: MOVF 77,W
0111: IORWF 4F,F
....................
.................... return(n);
0117: MOVF 4E,W
0118: MOVWF 78
0112: MOVF 4F,W
0113: MOVWF 78
.................... #else
.................... return(lcd.data);
.................... #endif
.................... }
0119: RETURN
0114: RETURN
....................
.................... void lcd_send_nibble(BYTE n)
.................... {
541,62 → 541,62
.................... /* Write to the data port */
.................... output_bit(LCD_DATA4, bit_test(n, 0));
*
00BD: BTFSC 4D.0
00BE: GOTO 0C1
00BF: BCF 08.4
00C0: GOTO 0C2
00C1: BSF 08.4
00C2: BSF 03.5
00C3: BCF 08.4
00B8: BTFSC 4E.0
00B9: GOTO 0BC
00BA: BCF 08.4
00BB: GOTO 0BD
00BC: BSF 08.4
00BD: BSF 03.5
00BE: BCF 08.4
.................... output_bit(LCD_DATA5, bit_test(n, 1));
00C4: BCF 03.5
00C5: BTFSC 4D.1
00C6: GOTO 0C9
00C7: BCF 08.5
00C8: GOTO 0CA
00C9: BSF 08.5
00CA: BSF 03.5
00CB: BCF 08.5
00BF: BCF 03.5
00C0: BTFSC 4E.1
00C1: GOTO 0C4
00C2: BCF 08.5
00C3: GOTO 0C5
00C4: BSF 08.5
00C5: BSF 03.5
00C6: BCF 08.5
.................... output_bit(LCD_DATA6, bit_test(n, 2));
00CC: BCF 03.5
00CD: BTFSC 4D.2
00CE: GOTO 0D1
00CF: BCF 08.6
00D0: GOTO 0D2
00D1: BSF 08.6
00D2: BSF 03.5
00D3: BCF 08.6
00C7: BCF 03.5
00C8: BTFSC 4E.2
00C9: GOTO 0CC
00CA: BCF 08.6
00CB: GOTO 0CD
00CC: BSF 08.6
00CD: BSF 03.5
00CE: BCF 08.6
.................... output_bit(LCD_DATA7, bit_test(n, 3));
00D4: BCF 03.5
00D5: BTFSC 4D.3
00D6: GOTO 0D9
00D7: BCF 08.7
00D8: GOTO 0DA
00D9: BSF 08.7
00DA: BSF 03.5
00DB: BCF 08.7
00CF: BCF 03.5
00D0: BTFSC 4E.3
00D1: GOTO 0D4
00D2: BCF 08.7
00D3: GOTO 0D5
00D4: BSF 08.7
00D5: BSF 03.5
00D6: BCF 08.7
.................... #else
.................... lcdlat.data = n;
.................... #endif
....................
.................... delay_cycles(1);
00DC: NOP
00D7: NOP
.................... lcd_output_enable(1);
00DD: BCF 03.5
00DE: BSF 09.0
00DF: BSF 03.5
00E0: BCF 09.0
00D8: BCF 03.5
00D9: BSF 09.0
00DA: BSF 03.5
00DB: BCF 09.0
.................... delay_us(2);
00E1: GOTO 0E2
00E2: GOTO 0E3
00DC: GOTO 0DD
00DD: GOTO 0DE
.................... lcd_output_enable(0);
00E3: BCF 03.5
00E4: BCF 09.0
00E5: BSF 03.5
00E6: BCF 09.0
00DE: BCF 03.5
00DF: BCF 09.0
00E0: BSF 03.5
00E1: BCF 09.0
.................... }
00E7: BCF 03.5
00E8: RETURN
00E2: BCF 03.5
00E3: RETURN
....................
.................... void lcd_send_byte(BYTE address, BYTE n)
.................... {
605,67 → 605,67
.................... #else
.................... lcd_enable_tris();
*
011A: BSF 03.5
011B: BCF 09.0
0115: BSF 03.5
0116: BCF 09.0
.................... lcd_rs_tris();
011C: BCF 09.1
0117: BCF 09.1
.................... lcd_rw_tris();
011D: BCF 09.2
0118: BCF 09.2
.................... #endif
....................
.................... lcd_output_rs(0);
011E: BCF 03.5
011F: BCF 09.1
0120: BSF 03.5
0121: BCF 09.1
0119: BCF 03.5
011A: BCF 09.1
011B: BSF 03.5
011C: BCF 09.1
.................... while ( bit_test(lcd_read_byte(),7) ) ;
*
0150: MOVF 78,W
0151: MOVWF 4C
0152: BTFSS 4C.7
014B: MOVF 78,W
014C: MOVWF 4D
014D: BTFSS 4D.7
014E: GOTO 151
014F: BSF 03.5
0150: GOTO 11D
.................... lcd_output_rs(address);
0151: MOVF 4B,F
0152: BTFSS 03.2
0153: GOTO 156
0154: BSF 03.5
0155: GOTO 122
.................... lcd_output_rs(address);
0156: MOVF 4A,F
0157: BTFSS 03.2
0158: GOTO 15B
0159: BCF 09.1
015A: GOTO 15C
015B: BSF 09.1
0154: BCF 09.1
0155: GOTO 157
0156: BSF 09.1
0157: BSF 03.5
0158: BCF 09.1
.................... delay_cycles(1);
0159: NOP
.................... lcd_output_rw(0);
015A: BCF 03.5
015B: BCF 09.2
015C: BSF 03.5
015D: BCF 09.1
015D: BCF 09.2
.................... delay_cycles(1);
015E: NOP
.................... lcd_output_rw(0);
.................... lcd_output_enable(0);
015F: BCF 03.5
0160: BCF 09.2
0160: BCF 09.0
0161: BSF 03.5
0162: BCF 09.2
.................... delay_cycles(1);
0163: NOP
.................... lcd_output_enable(0);
0164: BCF 03.5
0165: BCF 09.0
0166: BSF 03.5
0167: BCF 09.0
0162: BCF 09.0
.................... lcd_send_nibble(n >> 4);
0168: BCF 03.5
0169: SWAPF 4B,W
016A: MOVWF 4C
016B: MOVLW 0F
016C: ANDWF 4C,F
016D: MOVF 4C,W
016E: MOVWF 4D
016F: CALL 0BD
0163: BCF 03.5
0164: SWAPF 4C,W
0165: MOVWF 4D
0166: MOVLW 0F
0167: ANDWF 4D,F
0168: MOVF 4D,W
0169: MOVWF 4E
016A: CALL 0B8
.................... lcd_send_nibble(n & 0xf);
0170: MOVF 4B,W
0171: ANDLW 0F
0172: MOVWF 4C
0173: MOVWF 4D
0174: CALL 0BD
016B: MOVF 4C,W
016C: ANDLW 0F
016D: MOVWF 4D
016E: MOVWF 4E
016F: CALL 0B8
.................... }
0175: RETURN
0170: RETURN
....................
.................... #if defined(LCD_EXTENDED_NEWLINE)
.................... unsigned int8 g_LcdX, g_LcdY;
680,95 → 680,95
.................... #else
.................... #if (defined(LCD_DATA4) && defined(LCD_DATA5) && defined(LCD_DATA6) && defined(LCD_DATA7))
.................... output_drive(LCD_DATA4);
0176: BSF 03.5
0177: BCF 08.4
0171: BSF 03.5
0172: BCF 08.4
.................... output_drive(LCD_DATA5);
0178: BCF 08.5
0173: BCF 08.5
.................... output_drive(LCD_DATA6);
0179: BCF 08.6
0174: BCF 08.6
.................... output_drive(LCD_DATA7);
017A: BCF 08.7
0175: BCF 08.7
.................... #else
.................... lcdtris.data = 0x0;
.................... #endif
.................... lcd_enable_tris();
017B: BCF 09.0
0176: BCF 09.0
.................... lcd_rs_tris();
017C: BCF 09.1
0177: BCF 09.1
.................... lcd_rw_tris();
017D: BCF 09.2
0178: BCF 09.2
.................... #endif
....................
.................... lcd_output_rs(0);
017E: BCF 03.5
017F: BCF 09.1
0180: BSF 03.5
0181: BCF 09.1
0179: BCF 03.5
017A: BCF 09.1
017B: BSF 03.5
017C: BCF 09.1
.................... lcd_output_rw(0);
0182: BCF 03.5
0183: BCF 09.2
0184: BSF 03.5
0185: BCF 09.2
017D: BCF 03.5
017E: BCF 09.2
017F: BSF 03.5
0180: BCF 09.2
.................... lcd_output_enable(0);
0186: BCF 03.5
0187: BCF 09.0
0188: BSF 03.5
0189: BCF 09.0
0181: BCF 03.5
0182: BCF 09.0
0183: BSF 03.5
0184: BCF 09.0
....................
.................... delay_ms(15);
018A: MOVLW 0F
018B: BCF 03.5
018C: MOVWF 46
018D: CALL 0A9
0185: MOVLW 0F
0186: BCF 03.5
0187: MOVWF 47
0188: CALL 0A4
.................... for(i=1;i<=3;++i)
018E: MOVLW 01
018F: MOVWF 39
0190: MOVF 39,W
0191: SUBLW 03
0192: BTFSS 03.0
0193: GOTO 19C
0189: MOVLW 01
018A: MOVWF 3A
018B: MOVF 3A,W
018C: SUBLW 03
018D: BTFSS 03.0
018E: GOTO 197
.................... {
.................... lcd_send_nibble(3);
0194: MOVLW 03
0195: MOVWF 4D
0196: CALL 0BD
018F: MOVLW 03
0190: MOVWF 4E
0191: CALL 0B8
.................... delay_ms(5);
0197: MOVLW 05
0198: MOVWF 46
0199: CALL 0A9
0192: MOVLW 05
0193: MOVWF 47
0194: CALL 0A4
.................... }
019A: INCF 39,F
019B: GOTO 190
0195: INCF 3A,F
0196: GOTO 18B
....................
.................... lcd_send_nibble(2);
019C: MOVLW 02
019D: MOVWF 4D
019E: CALL 0BD
0197: MOVLW 02
0198: MOVWF 4E
0199: CALL 0B8
.................... for(i=0;i<=3;++i)
019F: CLRF 39
01A0: MOVF 39,W
01A1: SUBLW 03
01A2: BTFSS 03.0
01A3: GOTO 1AD
019A: CLRF 3A
019B: MOVF 3A,W
019C: SUBLW 03
019D: BTFSS 03.0
019E: GOTO 1A8
.................... lcd_send_byte(0,LCD_INIT_STRING[i]);
01A4: MOVF 39,W
01A5: CALL 038
01A6: MOVWF 3A
01A7: CLRF 4A
01A8: MOVF 3A,W
01A9: MOVWF 4B
01AA: CALL 11A
019F: MOVF 3A,W
01A0: CALL 038
01A1: MOVWF 3B
01A2: CLRF 4B
01A3: MOVF 3B,W
01A4: MOVWF 4C
01A5: CALL 115
....................
.................... #if defined(LCD_EXTENDED_NEWLINE)
01AB: INCF 39,F
01AC: GOTO 1A0
01A6: INCF 3A,F
01A7: GOTO 19B
.................... g_LcdX = 0;
.................... g_LcdY = 0;
.................... #endif
.................... }
01AD: BSF 0A.3
01AE: BCF 0A.4
01AF: GOTO 0B3 (RETURN)
01A8: BSF 0A.3
01A9: BCF 0A.4
01AA: GOTO 0BA (RETURN)
....................
.................... void lcd_gotoxy(BYTE x, BYTE y)
.................... {
775,29 → 775,29
.................... BYTE address;
....................
.................... if(y!=1)
01B0: DECFSZ 47,W
01B1: GOTO 1B3
01B2: GOTO 1B6
01AB: DECFSZ 48,W
01AC: GOTO 1AE
01AD: GOTO 1B1
.................... address=LCD_LINE_TWO;
01B3: MOVLW 40
01B4: MOVWF 48
01AE: MOVLW 40
01AF: MOVWF 49
.................... else
01B5: GOTO 1B7
01B0: GOTO 1B2
.................... address=0;
01B6: CLRF 48
01B1: CLRF 49
....................
.................... address+=x-1;
01B7: MOVLW 01
01B8: SUBWF 46,W
01B9: ADDWF 48,F
01B2: MOVLW 01
01B3: SUBWF 47,W
01B4: ADDWF 49,F
.................... lcd_send_byte(0,0x80|address);
01BA: MOVF 48,W
01BB: IORLW 80
01BC: MOVWF 49
01BD: CLRF 4A
01BE: MOVF 49,W
01BF: MOVWF 4B
01C0: CALL 11A
01B5: MOVF 49,W
01B6: IORLW 80
01B7: MOVWF 4A
01B8: CLRF 4B
01B9: MOVF 4A,W
01BA: MOVWF 4C
01BB: CALL 115
....................
.................... #if defined(LCD_EXTENDED_NEWLINE)
.................... g_LcdX = x - 1;
804,48 → 804,48
.................... g_LcdY = y - 1;
.................... #endif
.................... }
01C1: RETURN
01BC: RETURN
....................
.................... void lcd_putc(char c)
.................... {
.................... switch (c)
.................... {
01C2: MOVF 45,W
01C3: XORLW 07
01C4: BTFSC 03.2
01C5: GOTO 1D0
01C6: XORLW 0B
01C7: BTFSC 03.2
01C8: GOTO 1D5
01C9: XORLW 06
01CA: BTFSC 03.2
01CB: GOTO 1DD
01CC: XORLW 02
01CD: BTFSC 03.2
01CE: GOTO 1E3
01CF: GOTO 1E8
01BD: MOVF 46,W
01BE: XORLW 07
01BF: BTFSC 03.2
01C0: GOTO 1CB
01C1: XORLW 0B
01C2: BTFSC 03.2
01C3: GOTO 1D0
01C4: XORLW 06
01C5: BTFSC 03.2
01C6: GOTO 1D8
01C7: XORLW 02
01C8: BTFSC 03.2
01C9: GOTO 1DE
01CA: GOTO 1E3
.................... case '\a' : lcd_gotoxy(1,1); break;
01D0: MOVLW 01
01D1: MOVWF 46
01D2: MOVWF 47
01D3: CALL 1B0
01D4: GOTO 1EE
01CB: MOVLW 01
01CC: MOVWF 47
01CD: MOVWF 48
01CE: CALL 1AB
01CF: GOTO 1E9
....................
.................... case '\f' : lcd_send_byte(0,1);
01D5: CLRF 4A
01D6: MOVLW 01
01D7: MOVWF 4B
01D8: CALL 11A
01D0: CLRF 4B
01D1: MOVLW 01
01D2: MOVWF 4C
01D3: CALL 115
.................... delay_ms(2);
01D9: MOVLW 02
01DA: MOVWF 46
01DB: CALL 0A9
01D4: MOVLW 02
01D5: MOVWF 47
01D6: CALL 0A4
.................... #if defined(LCD_EXTENDED_NEWLINE)
.................... g_LcdX = 0;
.................... g_LcdY = 0;
.................... #endif
.................... break;
01DC: GOTO 1EE
01D7: GOTO 1E9
....................
.................... #if defined(LCD_EXTENDED_NEWLINE)
.................... case '\r' : lcd_gotoxy(1, g_LcdY+1); break;
858,20 → 858,20
.................... break;
.................... #else
.................... case '\n' : lcd_gotoxy(1,2); break;
01DD: MOVLW 01
01DE: MOVWF 46
01DF: MOVLW 02
01E0: MOVWF 47
01E1: CALL 1B0
01E2: GOTO 1EE
01D8: MOVLW 01
01D9: MOVWF 47
01DA: MOVLW 02
01DB: MOVWF 48
01DC: CALL 1AB
01DD: GOTO 1E9
.................... #endif
....................
.................... case '\b' : lcd_send_byte(0,0x10); break;
01E3: CLRF 4A
01E4: MOVLW 10
01E5: MOVWF 4B
01E6: CALL 11A
01E7: GOTO 1EE
01DE: CLRF 4B
01DF: MOVLW 10
01E0: MOVWF 4C
01E1: CALL 115
01E2: GOTO 1E9
....................
.................... #if defined(LCD_EXTENDED_NEWLINE)
.................... default :
883,16 → 883,16
.................... break;
.................... #else
.................... default : lcd_send_byte(1,c); break;
01E8: MOVLW 01
01E9: MOVWF 4A
01EA: MOVF 45,W
01EB: MOVWF 4B
01EC: CALL 11A
01ED: GOTO 1EE
01E3: MOVLW 01
01E4: MOVWF 4B
01E5: MOVF 46,W
01E6: MOVWF 4C
01E7: CALL 115
01E8: GOTO 1E9
.................... #endif
.................... }
.................... }
01EE: RETURN
01E9: RETURN
....................
.................... char lcd_getc(BYTE x, BYTE y)
.................... {
961,50 → 961,54
....................
.................... for(i=0;i<=lenght;i++)
*
060D: CLRF 3C
060E: MOVF 3C,W
060F: SUBWF 39,W
0610: BTFSS 03.0
0611: GOTO 655
0654: CLRF 3D
0655: MOVF 3D,W
0656: SUBWF 3A,W
0657: BTFSS 03.0
0658: GOTO 69C
.................... {
.................... output_toggle(BEEP);
0612: BSF 03.5
0613: BCF 08.2
0614: MOVLW 04
0615: BCF 03.5
0616: XORWF 08,F
0659: BSF 03.5
065A: BCF 08.2
065B: MOVLW 04
065C: BCF 03.5
065D: XORWF 08,F
.................... delay_us(1/frequency);
0617: CLRF 3E
0618: MOVLW 01
0619: MOVWF 3D
061A: MOVF 3B,W
061B: MOVWF 40
061C: MOVF 3A,W
061D: MOVWF 3F
065E: CLRF 3F
065F: MOVLW 01
0660: MOVWF 3E
0661: MOVF 3C,W
0662: MOVWF 41
0663: MOVF 3B,W
0664: MOVWF 40
*
0642: MOVF 79,W
0643: MOVWF 3E
0644: MOVF 78,W
0645: MOVWF 3D
0646: MOVF 3E,W
0647: MOVWF 3F
0648: INCF 3F,F
0649: DECF 3F,F
064A: BTFSC 03.2
064B: GOTO 650
064C: MOVLW FF
064D: MOVWF 40
064E: CALL 5FC
064F: GOTO 649
0650: MOVF 3D,W
0651: MOVWF 40
0652: CALL 5FC
0689: MOVF 79,W
068A: MOVWF 3F
068B: MOVF 78,W
068C: MOVWF 3E
068D: MOVF 3F,W
068E: MOVWF 40
068F: INCF 40,F
0690: DECF 40,F
0691: BTFSC 03.2
0692: GOTO 697
0693: MOVLW FF
0694: MOVWF 41
0695: CALL 643
0696: GOTO 690
0697: MOVF 3E,W
0698: MOVWF 41
0699: CALL 643
.................... }
0653: INCF 3C,F
0654: GOTO 60E
069A: INCF 3D,F
069B: GOTO 655
.................... }
0655: RETURN
069C: RETURN
....................
.................... #define TRESHOLD_setup 1
.................... #define INTERVAL_setup 0
....................
....................
.................... void main()
.................... {
*
1046,1073 → 1050,1216
0825: CLRF 31
0826: MOVLW 3C
0827: MOVWF 30
0828: CLRF 38
0829: CLRF 37
0828: BCF 36.1
0829: CLRF 38
082A: CLRF 37
082B: MOVLW 06
082C: MOVWF 39
.................... unsigned int16 integration_time=60;
.................... unsigned int16 time;
.................... unsigned int16 last_timer; // promena pro praskani
.................... unsigned int1 button_press,voltage_setup,time_setup; // semafor pro cteni tlacitek
.................... unsigned int1 button_press,setup_mode=INTERVAL_setup; // semafor pro cteni tlacitek
.................... unsigned int16 measurement_number=0;
.................... unsigned int8 treshold=6;
....................
.................... setup_adc_ports(sAN0|VSS_VDD);
082A: BSF 03.5
082B: BSF 03.6
082C: MOVF 09,W
082D: ANDLW C0
082E: MOVWF 09
082F: BCF 03.6
0830: BCF 1F.4
0831: BCF 1F.5
0832: MOVLW 01
0833: BSF 03.6
0834: MOVWF 08
082D: BSF 03.5
082E: BSF 03.6
082F: MOVF 09,W
0830: ANDLW C0
0831: MOVWF 09
0832: BCF 03.6
0833: BCF 1F.4
0834: BCF 1F.5
0835: MOVLW 01
0836: BSF 03.6
0837: MOVWF 08
.................... setup_adc(ADC_CLOCK_DIV_32);
0835: BCF 03.5
0836: BCF 03.6
0837: BCF 1F.6
0838: BSF 1F.7
0839: BSF 03.5
083A: BSF 1F.7
083B: BCF 03.5
083C: BSF 1F.0
0838: BCF 03.5
0839: BCF 03.6
083A: BCF 1F.6
083B: BSF 1F.7
083C: BSF 03.5
083D: BSF 1F.7
083E: BCF 03.5
083F: BSF 1F.0
.................... setup_spi(SPI_SS_DISABLED);
083D: BCF 14.5
083E: BCF 2F.5
083F: MOVF 2F,W
0840: BSF 03.5
0841: MOVWF 07
0842: BCF 03.5
0843: BSF 2F.4
0844: MOVF 2F,W
0845: BSF 03.5
0846: MOVWF 07
0847: BCF 03.5
0848: BCF 2F.3
0849: MOVF 2F,W
084A: BSF 03.5
084B: MOVWF 07
084C: MOVLW 01
084D: BCF 03.5
084E: MOVWF 14
084F: MOVLW 00
0850: BSF 03.5
0840: BCF 14.5
0841: BCF 2F.5
0842: MOVF 2F,W
0843: BSF 03.5
0844: MOVWF 07
0845: BCF 03.5
0846: BSF 2F.4
0847: MOVF 2F,W
0848: BSF 03.5
0849: MOVWF 07
084A: BCF 03.5
084B: BCF 2F.3
084C: MOVF 2F,W
084D: BSF 03.5
084E: MOVWF 07
084F: MOVLW 01
0850: BCF 03.5
0851: MOVWF 14
0852: MOVLW 00
0853: BSF 03.5
0854: MOVWF 14
.................... setup_timer_0(RTCC_INTERNAL|RTCC_DIV_256);
0852: MOVF 01,W
0853: ANDLW C0
0854: IORLW 07
0855: MOVWF 01
0855: MOVF 01,W
0856: ANDLW C0
0857: IORLW 07
0858: MOVWF 01
.................... setup_timer_1(T1_EXTERNAL|T1_DIV_BY_1);
0856: MOVLW 07
0857: BCF 03.5
0858: MOVWF 10
0859: MOVLW 07
085A: BCF 03.5
085B: MOVWF 10
.................... setup_timer_2(T2_DISABLED,0,1);
0859: MOVLW 00
085A: MOVWF 78
085B: MOVWF 12
085C: MOVLW 00
085D: BSF 03.5
085D: MOVWF 78
085E: MOVWF 12
085F: MOVLW 00
0860: BSF 03.5
0861: MOVWF 12
.................... setup_ccp1(CCP_PWM);
085F: BCF 03.5
0860: BCF 2F.2
0861: MOVF 2F,W
0862: BSF 03.5
0863: MOVWF 07
0864: BCF 03.5
0865: BCF 07.2
0866: BSF 03.5
0867: BCF 09.6
0868: MOVLW 0C
0869: BCF 03.5
086A: MOVWF 17
086B: BSF 03.5
086C: CLRF 1B
086D: CLRF 1C
086E: MOVLW 01
086F: MOVWF 1D
0862: BCF 03.5
0863: BCF 2F.2
0864: MOVF 2F,W
0865: BSF 03.5
0866: MOVWF 07
0867: BCF 03.5
0868: BCF 07.2
0869: BSF 03.5
086A: BCF 09.6
086B: MOVLW 0C
086C: BCF 03.5
086D: MOVWF 17
086E: BSF 03.5
086F: CLRF 1B
0870: CLRF 1C
0871: MOVLW 01
0872: MOVWF 1D
.................... setup_ccp2(CCP_PWM);
0870: BCF 03.5
0871: BCF 2F.1
0872: MOVF 2F,W
0873: BSF 03.5
0874: MOVWF 07
0875: BCF 03.5
0876: BCF 07.1
0877: MOVLW 0C
0878: MOVWF 1D
0879: MOVLW 01
087A: MOVWF 00
0873: BCF 03.5
0874: BCF 2F.1
0875: MOVF 2F,W
0876: BSF 03.5
0877: MOVWF 07
0878: BCF 03.5
0879: BCF 07.1
087A: MOVLW 0C
087B: MOVWF 1D
087C: MOVLW 01
087D: MOVWF 00
.................... setup_oscillator(OSC_8MHZ);
087B: MOVLW 71
087C: BSF 03.5
087D: MOVWF 0F
087E: MOVF 0F,W
087E: MOVLW 71
087F: BSF 03.5
0880: MOVWF 0F
0881: MOVF 0F,W
....................
.................... set_pwm1_duty(0);
087F: BCF 03.5
0880: CLRF 15
0882: BCF 03.5
0883: CLRF 15
.................... set_pwm2_duty(0);
0881: CLRF 1B
0884: CLRF 1B
....................
.................... output_high(LED1);
0882: BCF 2F.6
0883: MOVF 2F,W
0884: BSF 03.5
0885: MOVWF 07
0886: BCF 03.5
0887: BSF 07.6
0885: BCF 2F.6
0886: MOVF 2F,W
0887: BSF 03.5
0888: MOVWF 07
0889: BCF 03.5
088A: BSF 07.6
.................... output_high(LED2);
0888: BCF 2F.5
0889: MOVF 2F,W
088A: BSF 03.5
088B: MOVWF 07
088C: BCF 03.5
088D: BSF 07.5
088B: BCF 2F.5
088C: MOVF 2F,W
088D: BSF 03.5
088E: MOVWF 07
088F: BCF 03.5
0890: BSF 07.5
.................... output_high(LED3);
088E: BCF 2F.4
088F: MOVF 2F,W
0890: BSF 03.5
0891: MOVWF 07
0892: BCF 03.5
0893: BSF 07.4
0891: BCF 2F.4
0892: MOVF 2F,W
0893: BSF 03.5
0894: MOVWF 07
0895: BCF 03.5
0896: BSF 07.4
.................... output_high(LED4);
0894: BSF 03.5
0895: BCF 08.3
0896: BCF 03.5
0897: BSF 08.3
0897: BSF 03.5
0898: BCF 08.3
0899: BCF 03.5
089A: BSF 08.3
.................... output_low(BEEP);
0898: BSF 03.5
0899: BCF 08.2
089A: BCF 03.5
089B: BCF 08.2
089B: BSF 03.5
089C: BCF 08.2
089D: BCF 03.5
089E: BCF 08.2
....................
.................... setup_comparator(CP2_A0_VREF|CP2_OUT_ON_A5); // sets two comparators(A1 and VR and A2 as the output)
089C: BSF 03.6
089D: CLRF 07
089E: MOVLW A4
089F: MOVWF 08
08A0: MOVLW 10
08A1: MOVWF 09
08A2: BSF 03.5
08A3: BCF 03.6
08A4: BCF 05.5
08A5: BSF 05.0
.................... setup_vref(VREF_HIGH|6); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
08A6: MOVLW 86
08A7: MOVWF 17
089F: BSF 03.6
08A0: CLRF 07
08A1: MOVLW A4
08A2: MOVWF 08
08A3: MOVLW 10
08A4: MOVWF 09
08A5: BSF 03.5
08A6: BCF 03.6
08A7: BCF 05.5
08A8: BSF 05.0
.................... setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
08A9: BCF 03.5
08AA: MOVF 39,W
08AB: IORLW 80
08AC: MOVWF 3A
08AD: BSF 03.5
08AE: MOVWF 17
.................... enable_interrupts(INT_COMP); //enables the comparator interrupt
08A8: BSF 0D.5
08AF: BSF 0D.5
.................... enable_interrupts(INT_RTCC);
08A9: BCF 03.5
08AA: BSF 0B.5
08B0: BCF 03.5
08B1: BSF 0B.5
.................... enable_interrupts(INT_TIMER1);
08AB: BSF 03.5
08AC: BSF 0C.0
08B2: BSF 03.5
08B3: BSF 0C.0
.................... enable_interrupts(INT_TIMER2);
08AD: BSF 0C.1
08B4: BSF 0C.1
.................... enable_interrupts(GLOBAL);
08AE: MOVLW C0
08AF: BCF 03.5
08B0: IORWF 0B,F
08B5: MOVLW C0
08B6: BCF 03.5
08B7: IORWF 0B,F
.................... lcd_init();
08B1: BCF 0A.3
08B2: GOTO 176
08B3: BSF 0A.3
08B8: BCF 0A.3
08B9: GOTO 171
08BA: BSF 0A.3
....................
.................... lcd_putc("\fGM counter V1.0 \n 2013 MLAB");
08B4: MOVLW 5A
08B5: BSF 03.6
08B6: MOVWF 0D
08B7: MOVLW 00
08B8: MOVWF 0F
08B9: BCF 0A.3
08BA: BCF 03.6
08BB: CALL 1EF
08BC: BSF 0A.3
08BB: MOVLW 5A
08BC: BSF 03.6
08BD: MOVWF 0D
08BE: MOVLW 00
08BF: MOVWF 0F
08C0: BCF 0A.3
08C1: BCF 03.6
08C2: CALL 1EA
08C3: BSF 0A.3
.................... printf("Geiger-Muller Counter V1.0 \r\n");
08BD: MOVLW 6A
08BE: BSF 03.6
08BF: MOVWF 0D
08C0: MOVLW 00
08C1: MOVWF 0F
08C2: BCF 0A.3
08C3: BCF 03.6
08C4: CALL 257
08C5: BSF 0A.3
08C4: MOVLW 6A
08C5: BSF 03.6
08C6: MOVWF 0D
08C7: MOVLW 00
08C8: MOVWF 0F
08C9: BCF 0A.3
08CA: BCF 03.6
08CB: CALL 252
08CC: BSF 0A.3
.................... printf("(c) 2013 MLAB and UST.cz \r\n");
08C6: MOVLW 79
08C7: BSF 03.6
08C8: MOVWF 0D
08C9: MOVLW 00
08CA: MOVWF 0F
08CB: BCF 0A.3
08CC: BCF 03.6
08CD: CALL 257
08CE: BSF 0A.3
08CD: MOVLW 79
08CE: BSF 03.6
08CF: MOVWF 0D
08D0: MOVLW 00
08D1: MOVWF 0F
08D2: BCF 0A.3
08D3: BCF 03.6
08D4: CALL 252
08D5: BSF 0A.3
.................... Delay_ms(1000);
08CF: MOVLW 04
08D0: MOVWF 39
08D1: MOVLW FA
08D2: MOVWF 46
08D3: BCF 0A.3
08D4: CALL 0A9
08D5: BSF 0A.3
08D6: DECFSZ 39,F
08D7: GOTO 0D1
08D6: MOVLW 04
08D7: MOVWF 3A
08D8: MOVLW FA
08D9: MOVWF 47
08DA: BCF 0A.3
08DB: CALL 0A4
08DC: BSF 0A.3
08DD: DECFSZ 3A,F
08DE: GOTO 0D8
....................
.................... lcd_putc("\f");
08D8: MOVLW 87
08D9: BSF 03.6
08DA: MOVWF 0D
08DB: MOVLW 00
08DC: MOVWF 0F
08DD: BCF 0A.3
08DE: BCF 03.6
08DF: CALL 1EF
08E0: BSF 0A.3
08DF: MOVLW 87
08E0: BSF 03.6
08E1: MOVWF 0D
08E2: MOVLW 00
08E3: MOVWF 0F
08E4: BCF 0A.3
08E5: BCF 03.6
08E6: CALL 1EA
08E7: BSF 0A.3
.................... printf("\r\n");
08E1: MOVLW 0D
08E2: MOVWF 45
08E3: BCF 0A.3
08E4: CALL 235
08E5: BSF 0A.3
08E6: MOVLW 0A
08E7: MOVWF 45
08E8: BCF 0A.3
08E9: CALL 235
08EA: BSF 0A.3
08E8: MOVLW 0D
08E9: MOVWF 46
08EA: BCF 0A.3
08EB: CALL 230
08EC: BSF 0A.3
08ED: MOVLW 0A
08EE: MOVWF 46
08EF: BCF 0A.3
08F0: CALL 230
08F1: BSF 0A.3
....................
.................... set_timer1(0);
08EB: CLRF 0F
08EC: CLRF 0E
08F2: CLRF 0F
08F3: CLRF 0E
....................
.................... lcd_gotoxy(1,1); // vypsani hodnoty count, abz byla na LCD hned od zapnuti
08ED: MOVLW 01
08EE: MOVWF 46
08EF: MOVWF 47
08F0: BCF 0A.3
08F1: CALL 1B0
08F2: BSF 0A.3
08F4: MOVLW 01
08F5: MOVWF 47
08F6: MOVWF 48
08F7: BCF 0A.3
08F8: CALL 1AB
08F9: BSF 0A.3
.................... printf(lcd_putc,"Count:%lu ",pulse_count);
08F3: MOVLW 88
08F4: BSF 03.6
08F5: MOVWF 0D
08F6: MOVLW 00
08F7: MOVWF 0F
08F8: BCF 03.0
08F9: MOVLW 06
08FA: BCF 03.6
08FB: MOVWF 39
08FC: BCF 0A.3
08FD: CALL 29D
08FE: BSF 0A.3
08FF: MOVLW 41
0900: MOVWF 04
0901: MOVF 2A,W
0902: MOVWF 3C
0903: MOVF 29,W
0904: MOVWF 3B
0905: MOVF 28,W
0906: MOVWF 3A
0907: MOVF 27,W
0908: MOVWF 39
0909: BCF 0A.3
090A: CALL 32E
090B: BSF 0A.3
090C: MOVLW 8C
090D: BSF 03.6
090E: MOVWF 0D
090F: MOVLW 00
0910: MOVWF 0F
0911: BSF 03.0
0912: MOVLW 05
0913: BCF 03.6
0914: MOVWF 39
0915: BCF 0A.3
0916: CALL 29D
0917: BSF 0A.3
08FA: MOVLW 88
08FB: BSF 03.6
08FC: MOVWF 0D
08FD: MOVLW 00
08FE: MOVWF 0F
08FF: BCF 03.0
0900: MOVLW 06
0901: BCF 03.6
0902: MOVWF 3A
0903: BCF 0A.3
0904: CALL 298
0905: BSF 0A.3
0906: MOVLW 41
0907: MOVWF 04
0908: MOVF 2A,W
0909: MOVWF 3D
090A: MOVF 29,W
090B: MOVWF 3C
090C: MOVF 28,W
090D: MOVWF 3B
090E: MOVF 27,W
090F: MOVWF 3A
0910: BCF 0A.3
0911: CALL 329
0912: BSF 0A.3
0913: MOVLW 8C
0914: BSF 03.6
0915: MOVWF 0D
0916: MOVLW 00
0917: MOVWF 0F
0918: BSF 03.0
0919: MOVLW 05
091A: BCF 03.6
091B: MOVWF 3A
091C: BCF 0A.3
091D: CALL 298
091E: BSF 0A.3
....................
.................... while(true)
.................... {
.................... pulse_count = get_timer1() + (0xffff * overflow_count); // compute pulse count
0918: MOVF 0F,W
0919: MOVWF 7A
091A: MOVF 0E,W
091B: MOVWF 77
091C: MOVF 0F,W
091D: SUBWF 7A,W
091E: BTFSS 03.2
091F: GOTO 118
0920: MOVF 77,W
0921: MOVWF 39
0922: MOVF 7A,W
0923: MOVWF 3A
0924: MOVLW FF
0925: MOVWF 3C
0926: MOVWF 3B
0927: MOVF 2C,W
0928: MOVWF 3E
0929: MOVF 2B,W
092A: MOVWF 3D
092B: BCF 0A.3
092C: GOTO 38A
092D: BSF 0A.3
092E: MOVF 79,W
092F: MOVWF 7A
0930: MOVF 78,W
0931: ADDWF 39,W
0932: MOVWF 27
0933: MOVF 3A,W
0934: MOVWF 28
0935: MOVF 7A,W
0936: BTFSC 03.0
0937: INCFSZ 7A,W
0938: ADDWF 28,F
0939: CLRF 29
093A: CLRF 2A
091F: MOVF 0F,W
0920: MOVWF 7A
0921: MOVF 0E,W
0922: MOVWF 77
0923: MOVF 0F,W
0924: SUBWF 7A,W
0925: BTFSS 03.2
0926: GOTO 11F
0927: MOVF 77,W
0928: MOVWF 3A
0929: MOVF 7A,W
092A: MOVWF 3B
092B: MOVLW FF
092C: MOVWF 3D
092D: MOVWF 3C
092E: MOVF 2C,W
092F: MOVWF 3F
0930: MOVF 2B,W
0931: MOVWF 3E
0932: BCF 0A.3
0933: GOTO 385
0934: BSF 0A.3
0935: MOVF 79,W
0936: MOVWF 7A
0937: MOVF 78,W
0938: ADDWF 3A,W
0939: MOVWF 27
093A: MOVF 3B,W
093B: MOVWF 28
093C: MOVF 7A,W
093D: BTFSC 03.0
093E: INCFSZ 7A,W
093F: ADDWF 28,F
0940: CLRF 29
0941: CLRF 2A
.................... time = integration_time + 1 - (time_overflow_count * 0.0327); // compute time interval
093B: MOVLW 01
093C: ADDWF 30,W
093D: MOVWF 39
093E: MOVF 31,W
093F: MOVWF 3A
0940: BTFSC 03.0
0941: INCF 3A,F
0942: MOVF 2E,W
0943: MOVWF 40
0944: MOVF 2D,W
0945: MOVWF 3F
0946: BCF 0A.3
0947: CALL 3A1
0948: BSF 0A.3
0949: MOVF 7A,W
094A: MOVWF 3E
094B: MOVF 79,W
094C: MOVWF 3D
094D: MOVF 78,W
094E: MOVWF 3C
094F: MOVF 77,W
0950: MOVWF 3B
0951: MOVLW 6F
0952: MOVWF 42
0953: MOVLW F0
0954: MOVWF 41
0955: MOVLW 05
0956: MOVWF 40
0957: MOVLW 7A
0958: MOVWF 3F
0959: BCF 0A.3
095A: GOTO 3BE
095B: BSF 0A.3
095C: MOVF 77,W
095D: MOVWF 3B
095E: MOVF 78,W
095F: MOVWF 3C
0960: MOVF 79,W
0961: MOVWF 3D
0962: MOVF 7A,W
0963: MOVWF 3E
0964: MOVF 3A,W
0965: MOVWF 40
0966: MOVF 39,W
0967: MOVWF 3F
0968: BCF 0A.3
0969: CALL 3A1
096A: BSF 0A.3
096B: BSF 03.1
096C: MOVF 7A,W
096D: MOVWF 42
096E: MOVF 79,W
096F: MOVWF 41
0970: MOVF 78,W
0971: MOVWF 40
0972: MOVF 77,W
0973: MOVWF 3F
0974: MOVF 3E,W
0975: MOVWF 46
0976: MOVF 3D,W
0977: MOVWF 45
0978: MOVF 3C,W
0979: MOVWF 44
097A: MOVF 3B,W
097B: MOVWF 43
097C: BCF 0A.3
097D: GOTO 435
097E: BSF 0A.3
097F: MOVF 7A,W
0980: MOVWF 42
0981: MOVF 79,W
0982: MOVWF 41
0983: MOVF 78,W
0984: MOVWF 40
0985: MOVF 77,W
0986: MOVWF 3F
0987: BCF 0A.3
0988: GOTO 578
0989: BSF 0A.3
098A: MOVF 79,W
098B: MOVWF 33
098C: MOVF 78,W
098D: MOVWF 32
0942: MOVLW 01
0943: ADDWF 30,W
0944: MOVWF 3A
0945: MOVF 31,W
0946: MOVWF 3B
0947: BTFSC 03.0
0948: INCF 3B,F
0949: MOVF 2E,W
094A: MOVWF 41
094B: MOVF 2D,W
094C: MOVWF 40
094D: BCF 0A.3
094E: CALL 39C
094F: BSF 0A.3
0950: MOVF 7A,W
0951: MOVWF 3F
0952: MOVF 79,W
0953: MOVWF 3E
0954: MOVF 78,W
0955: MOVWF 3D
0956: MOVF 77,W
0957: MOVWF 3C
0958: MOVLW 6F
0959: MOVWF 43
095A: MOVLW F0
095B: MOVWF 42
095C: MOVLW 05
095D: MOVWF 41
095E: MOVLW 7A
095F: MOVWF 40
0960: BCF 0A.3
0961: GOTO 3B9
0962: BSF 0A.3
0963: MOVF 77,W
0964: MOVWF 3C
0965: MOVF 78,W
0966: MOVWF 3D
0967: MOVF 79,W
0968: MOVWF 3E
0969: MOVF 7A,W
096A: MOVWF 3F
096B: MOVF 3B,W
096C: MOVWF 41
096D: MOVF 3A,W
096E: MOVWF 40
096F: BCF 0A.3
0970: CALL 39C
0971: BSF 0A.3
0972: BSF 03.1
0973: MOVF 7A,W
0974: MOVWF 43
0975: MOVF 79,W
0976: MOVWF 42
0977: MOVF 78,W
0978: MOVWF 41
0979: MOVF 77,W
097A: MOVWF 40
097B: MOVF 3F,W
097C: MOVWF 47
097D: MOVF 3E,W
097E: MOVWF 46
097F: MOVF 3D,W
0980: MOVWF 45
0981: MOVF 3C,W
0982: MOVWF 44
0983: BCF 0A.3
0984: GOTO 430
0985: BSF 0A.3
0986: MOVF 7A,W
0987: MOVWF 43
0988: MOVF 79,W
0989: MOVWF 42
098A: MOVF 78,W
098B: MOVWF 41
098C: MOVF 77,W
098D: MOVWF 40
098E: BCF 0A.3
098F: GOTO 573
0990: BSF 0A.3
0991: MOVF 79,W
0992: MOVWF 33
0993: MOVF 78,W
0994: MOVWF 32
....................
.................... if(get_timer1() != last_timer) // timer count increment detection
098E: MOVF 0F,W
098F: MOVWF 7A
0990: MOVF 0E,W
0991: MOVWF 77
0992: MOVF 0F,W
0993: SUBWF 7A,W
0994: BTFSS 03.2
0995: GOTO 18E
0996: MOVF 77,W
0997: MOVWF 39
0998: MOVF 7A,W
0999: MOVWF 3A
099A: MOVF 34,W
099B: SUBWF 39,W
099C: BTFSS 03.2
099D: GOTO 1A2
099E: MOVF 35,W
099F: SUBWF 3A,W
09A0: BTFSC 03.2
09A1: GOTO 1EF
0995: MOVF 0F,W
0996: MOVWF 7A
0997: MOVF 0E,W
0998: MOVWF 77
0999: MOVF 0F,W
099A: SUBWF 7A,W
099B: BTFSS 03.2
099C: GOTO 195
099D: MOVF 77,W
099E: MOVWF 3A
099F: MOVF 7A,W
09A0: MOVWF 3B
09A1: MOVF 34,W
09A2: SUBWF 3A,W
09A3: BTFSS 03.2
09A4: GOTO 1A9
09A5: MOVF 35,W
09A6: SUBWF 3B,W
09A7: BTFSC 03.2
09A8: GOTO 1F6
.................... {
.................... output_toggle(BEEP);
09A2: BSF 03.5
09A3: BCF 08.2
09A4: MOVLW 04
09A5: BCF 03.5
09A6: XORWF 08,F
09A9: BSF 03.5
09AA: BCF 08.2
09AB: MOVLW 04
09AC: BCF 03.5
09AD: XORWF 08,F
.................... delay_ms(1);
09A7: MOVLW 01
09A8: MOVWF 46
09A9: BCF 0A.3
09AA: CALL 0A9
09AB: BSF 0A.3
09AE: MOVLW 01
09AF: MOVWF 47
09B0: BCF 0A.3
09B1: CALL 0A4
09B2: BSF 0A.3
.................... output_toggle(BEEP);
09AC: BSF 03.5
09AD: BCF 08.2
09AE: MOVLW 04
09AF: BCF 03.5
09B0: XORWF 08,F
.................... output_toggle(LED3);
09B1: BCF 2F.4
09B2: MOVF 2F,W
09B3: BSF 03.5
09B4: MOVWF 07
09B5: MOVLW 10
09B4: BCF 08.2
09B5: MOVLW 04
09B6: BCF 03.5
09B7: XORWF 07,F
09B7: XORWF 08,F
.................... output_toggle(LED3);
09B8: BCF 2F.4
09B9: MOVF 2F,W
09BA: BSF 03.5
09BB: MOVWF 07
09BC: MOVLW 10
09BD: BCF 03.5
09BE: XORWF 07,F
.................... last_timer=get_timer1();
09B8: MOVF 0F,W
09B9: MOVWF 7A
09BA: MOVF 0E,W
09BB: MOVWF 77
09BC: MOVF 0F,W
09BD: SUBWF 7A,W
09BE: BTFSS 03.2
09BF: GOTO 1B8
09C0: MOVF 77,W
09C1: MOVWF 34
09C2: MOVF 7A,W
09C3: MOVWF 35
09BF: MOVF 0F,W
09C0: MOVWF 7A
09C1: MOVF 0E,W
09C2: MOVWF 77
09C3: MOVF 0F,W
09C4: SUBWF 7A,W
09C5: BTFSS 03.2
09C6: GOTO 1BF
09C7: MOVF 77,W
09C8: MOVWF 34
09C9: MOVF 7A,W
09CA: MOVWF 35
.................... lcd_gotoxy(1,1); // prepsani dat na displeje
09C4: MOVLW 01
09C5: MOVWF 46
09C6: MOVWF 47
09C7: BCF 0A.3
09C8: CALL 1B0
09C9: BSF 0A.3
09CB: MOVLW 01
09CC: MOVWF 47
09CD: MOVWF 48
09CE: BCF 0A.3
09CF: CALL 1AB
09D0: BSF 0A.3
.................... printf(lcd_putc,"Count:%lu ",pulse_count);
09CA: MOVLW 90
09CB: BSF 03.6
09CC: MOVWF 0D
09CD: MOVLW 00
09CE: MOVWF 0F
09CF: BCF 03.0
09D0: MOVLW 06
09D1: BCF 03.6
09D2: MOVWF 39
09D3: BCF 0A.3
09D4: CALL 29D
09D5: BSF 0A.3
09D6: MOVLW 41
09D7: MOVWF 04
09D8: MOVF 2A,W
09D9: MOVWF 3C
09DA: MOVF 29,W
09DB: MOVWF 3B
09DC: MOVF 28,W
09DD: MOVWF 3A
09DE: MOVF 27,W
09DF: MOVWF 39
09E0: BCF 0A.3
09E1: CALL 32E
09E2: BSF 0A.3
09E3: MOVLW 94
09E4: BSF 03.6
09E5: MOVWF 0D
09E6: MOVLW 00
09E7: MOVWF 0F
09E8: BSF 03.0
09E9: MOVLW 05
09EA: BCF 03.6
09EB: MOVWF 39
09EC: BCF 0A.3
09ED: CALL 29D
09EE: BSF 0A.3
09D1: MOVLW 90
09D2: BSF 03.6
09D3: MOVWF 0D
09D4: MOVLW 00
09D5: MOVWF 0F
09D6: BCF 03.0
09D7: MOVLW 06
09D8: BCF 03.6
09D9: MOVWF 3A
09DA: BCF 0A.3
09DB: CALL 298
09DC: BSF 0A.3
09DD: MOVLW 41
09DE: MOVWF 04
09DF: MOVF 2A,W
09E0: MOVWF 3D
09E1: MOVF 29,W
09E2: MOVWF 3C
09E3: MOVF 28,W
09E4: MOVWF 3B
09E5: MOVF 27,W
09E6: MOVWF 3A
09E7: BCF 0A.3
09E8: CALL 329
09E9: BSF 0A.3
09EA: MOVLW 94
09EB: BSF 03.6
09EC: MOVWF 0D
09ED: MOVLW 00
09EE: MOVWF 0F
09EF: BSF 03.0
09F0: MOVLW 05
09F1: BCF 03.6
09F2: MOVWF 3A
09F3: BCF 0A.3
09F4: CALL 298
09F5: BSF 0A.3
.................... }
....................
.................... lcd_gotoxy(1,2);
09EF: MOVLW 01
09F0: MOVWF 46
09F1: MOVLW 02
09F2: MOVWF 47
09F3: BCF 0A.3
09F4: CALL 1B0
09F5: BSF 0A.3
.................... printf(lcd_putc,"T:%lu ",time);
09F6: MOVLW 54
09F7: MOVWF 45
09F8: BCF 0A.3
09F9: CALL 1C2
09FA: BSF 0A.3
09FB: MOVLW 3A
09FC: MOVWF 45
09FD: BCF 0A.3
09FE: CALL 1C2
09FF: BSF 0A.3
0A00: MOVLW 10
0A01: MOVWF 04
0A02: MOVF 33,W
0A03: MOVWF 3A
0A04: MOVF 32,W
0A05: MOVWF 39
0A06: BCF 0A.3
0A07: CALL 599
0A08: BSF 0A.3
0A09: MOVLW 20
0A0A: MOVWF 45
0A0B: BCF 0A.3
0A0C: CALL 1C2
0A0D: BSF 0A.3
0A0E: MOVLW 20
0A0F: MOVWF 45
0A10: BCF 0A.3
0A11: CALL 1C2
0A12: BSF 0A.3
0A13: MOVLW 20
0A14: MOVWF 45
0A15: BCF 0A.3
0A16: CALL 1C2
0A17: BSF 0A.3
.................... lcd_gotoxy(9,2);
0A18: MOVLW 09
0A19: MOVWF 46
0A1A: MOVLW 02
0A1B: MOVWF 47
09F6: MOVLW 01
09F7: MOVWF 47
09F8: MOVLW 02
09F9: MOVWF 48
09FA: BCF 0A.3
09FB: CALL 1AB
09FC: BSF 0A.3
.................... printf(lcd_putc,"T:%3lu I:%3lu U:%2u ",time,integration_time,treshold);
09FD: MOVLW 54
09FE: MOVWF 46
09FF: BCF 0A.3
0A00: CALL 1BD
0A01: BSF 0A.3
0A02: MOVLW 3A
0A03: MOVWF 46
0A04: BCF 0A.3
0A05: CALL 1BD
0A06: BSF 0A.3
0A07: MOVLW 02
0A08: MOVWF 04
0A09: MOVF 33,W
0A0A: MOVWF 3B
0A0B: MOVF 32,W
0A0C: MOVWF 3A
0A0D: BCF 0A.3
0A0E: CALL 594
0A0F: BSF 0A.3
0A10: MOVLW 20
0A11: MOVWF 46
0A12: BCF 0A.3
0A13: CALL 1BD
0A14: BSF 0A.3
0A15: MOVLW 49
0A16: MOVWF 46
0A17: BCF 0A.3
0A18: CALL 1BD
0A19: BSF 0A.3
0A1A: MOVLW 3A
0A1B: MOVWF 46
0A1C: BCF 0A.3
0A1D: CALL 1B0
0A1D: CALL 1BD
0A1E: BSF 0A.3
.................... printf(lcd_putc,"I:%lu ", integration_time);
0A1F: MOVLW 49
0A20: MOVWF 45
0A21: BCF 0A.3
0A22: CALL 1C2
0A23: BSF 0A.3
0A24: MOVLW 3A
0A25: MOVWF 45
0A26: BCF 0A.3
0A27: CALL 1C2
0A28: BSF 0A.3
0A29: MOVLW 10
0A2A: MOVWF 04
0A2B: MOVF 31,W
0A2C: MOVWF 3A
0A2D: MOVF 30,W
0A2E: MOVWF 39
0A1F: MOVLW 02
0A20: MOVWF 04
0A21: MOVF 31,W
0A22: MOVWF 3B
0A23: MOVF 30,W
0A24: MOVWF 3A
0A25: BCF 0A.3
0A26: CALL 594
0A27: BSF 0A.3
0A28: MOVLW 20
0A29: MOVWF 46
0A2A: BCF 0A.3
0A2B: CALL 1BD
0A2C: BSF 0A.3
0A2D: MOVLW 55
0A2E: MOVWF 46
0A2F: BCF 0A.3
0A30: CALL 599
0A30: CALL 1BD
0A31: BSF 0A.3
0A32: MOVLW 9A
0A33: BSF 03.6
0A34: MOVWF 0D
0A35: MOVLW 00
0A36: MOVWF 0F
0A37: BSF 03.0
0A38: MOVLW 04
0A39: BCF 03.6
0A3A: MOVWF 39
0A32: MOVLW 3A
0A33: MOVWF 46
0A34: BCF 0A.3
0A35: CALL 1BD
0A36: BSF 0A.3
0A37: MOVF 39,W
0A38: MOVWF 3A
0A39: MOVLW 11
0A3A: MOVWF 3B
0A3B: BCF 0A.3
0A3C: CALL 29D
0A3C: GOTO 60C
0A3D: BSF 0A.3
0A3E: MOVLW 20
0A3F: MOVWF 46
0A40: BCF 0A.3
0A41: CALL 1BD
0A42: BSF 0A.3
.................... // printf(lcd_putc,"I:%4lu ", integration_time);
....................
.................... if(time == 0) // po uplynuti mereneho intervalu vypis na seriovku
0A3E: MOVF 32,F
0A3F: BTFSS 03.2
0A40: GOTO 298
0A41: MOVF 33,F
0A42: BTFSS 03.2
0A43: GOTO 298
0A43: MOVF 32,F
0A44: BTFSS 03.2
0A45: GOTO 29D
0A46: MOVF 33,F
0A47: BTFSS 03.2
0A48: GOTO 29D
.................... {
.................... set_timer0(0);
0A44: CLRF 01
0A49: CLRF 01
.................... time_overflow_count=0;
0A45: CLRF 2E
0A46: CLRF 2D
0A4A: CLRF 2E
0A4B: CLRF 2D
.................... sound_beep(1000,700);
0A47: MOVLW E8
0A48: MOVWF 39
0A49: MOVLW 02
0A4A: MOVWF 3B
0A4B: MOVLW BC
0A4C: MOVWF 3A
0A4D: BCF 0A.3
0A4E: CALL 60D
0A4F: BSF 0A.3
0A4C: MOVLW E8
0A4D: MOVWF 3A
0A4E: MOVLW 02
0A4F: MOVWF 3C
0A50: MOVLW BC
0A51: MOVWF 3B
0A52: BCF 0A.3
0A53: CALL 654
0A54: BSF 0A.3
.................... printf("$GMC1.0 %lu %lu %lu \r\n", measurement_number, integration_time, pulse_count);
0A50: MOVLW 9D
0A51: BSF 03.6
0A52: MOVWF 0D
0A53: MOVLW 00
0A54: MOVWF 0F
0A55: BCF 03.0
0A56: MOVLW 08
0A57: BCF 03.6
0A58: MOVWF 39
0A59: BCF 0A.3
0A5A: CALL 656
0A5B: BSF 0A.3
0A5C: MOVLW 10
0A5D: MOVWF 04
0A5E: MOVF 38,W
0A5F: MOVWF 3A
0A60: MOVF 37,W
0A61: MOVWF 39
0A62: BCF 0A.3
0A63: CALL 6A5
0A64: BSF 0A.3
0A65: MOVLW 20
0A66: MOVWF 45
0A55: MOVLW 98
0A56: BSF 03.6
0A57: MOVWF 0D
0A58: MOVLW 00
0A59: MOVWF 0F
0A5A: BCF 03.0
0A5B: MOVLW 08
0A5C: BCF 03.6
0A5D: MOVWF 3A
0A5E: BCF 0A.3
0A5F: CALL 69D
0A60: BSF 0A.3
0A61: MOVLW 10
0A62: MOVWF 04
0A63: MOVF 38,W
0A64: MOVWF 3B
0A65: MOVF 37,W
0A66: MOVWF 3A
0A67: BCF 0A.3
0A68: CALL 235
0A68: CALL 6EC
0A69: BSF 0A.3
0A6A: MOVLW 10
0A6B: MOVWF 04
0A6C: MOVF 31,W
0A6D: MOVWF 3A
0A6E: MOVF 30,W
0A6F: MOVWF 39
0A70: BCF 0A.3
0A71: CALL 6A5
0A72: BSF 0A.3
0A73: MOVLW 20
0A74: MOVWF 45
0A6A: MOVLW 20
0A6B: MOVWF 46
0A6C: BCF 0A.3
0A6D: CALL 230
0A6E: BSF 0A.3
0A6F: MOVLW 10
0A70: MOVWF 04
0A71: MOVF 31,W
0A72: MOVWF 3B
0A73: MOVF 30,W
0A74: MOVWF 3A
0A75: BCF 0A.3
0A76: CALL 235
0A76: CALL 6EC
0A77: BSF 0A.3
0A78: MOVLW 41
0A79: MOVWF 04
0A7A: MOVF 2A,W
0A7B: MOVWF 3C
0A7C: MOVF 29,W
0A7D: MOVWF 3B
0A7E: MOVF 28,W
0A7F: MOVWF 3A
0A80: MOVF 27,W
0A81: MOVWF 39
0A82: BCF 0A.3
0A83: GOTO 708
0A84: BSF 0A.3
0A85: MOVLW A6
0A86: BSF 03.6
0A87: MOVWF 0D
0A88: MOVLW 00
0A89: MOVWF 0F
0A8A: BSF 03.0
0A8B: MOVLW 04
0A8C: BCF 03.6
0A8D: MOVWF 39
0A8E: BCF 0A.3
0A8F: CALL 656
0A90: BSF 0A.3
0A78: MOVLW 20
0A79: MOVWF 46
0A7A: BCF 0A.3
0A7B: CALL 230
0A7C: BSF 0A.3
0A7D: MOVLW 41
0A7E: MOVWF 04
0A7F: MOVF 2A,W
0A80: MOVWF 3D
0A81: MOVF 29,W
0A82: MOVWF 3C
0A83: MOVF 28,W
0A84: MOVWF 3B
0A85: MOVF 27,W
0A86: MOVWF 3A
0A87: BCF 0A.3
0A88: GOTO 74F
0A89: BSF 0A.3
0A8A: MOVLW A1
0A8B: BSF 03.6
0A8C: MOVWF 0D
0A8D: MOVLW 00
0A8E: MOVWF 0F
0A8F: BSF 03.0
0A90: MOVLW 04
0A91: BCF 03.6
0A92: MOVWF 3A
0A93: BCF 0A.3
0A94: CALL 69D
0A95: BSF 0A.3
.................... set_timer1(0);
0A91: CLRF 0F
0A92: CLRF 0E
0A96: CLRF 0F
0A97: CLRF 0E
.................... overflow_count=0;
0A93: CLRF 2C
0A94: CLRF 2B
0A98: CLRF 2C
0A99: CLRF 2B
.................... measurement_number++;
0A95: INCF 37,F
0A96: BTFSC 03.2
0A97: INCF 38,F
0A9A: INCF 37,F
0A9B: BTFSC 03.2
0A9C: INCF 38,F
.................... }
....................
.................... if(button_press==false ) // tlacitka se ctou znovu pouze pokud v redchozim cyklu nebyla zmacknuta.
0A98: BTFSC 36.0
0A99: GOTO 37E
0A9D: BTFSC 36.0
0A9E: GOTO 3EF
.................... {
.................... if(!input(S1))
0A9A: BSF 2F.2
0A9B: MOVF 2F,W
0A9C: BSF 03.5
0A9D: MOVWF 07
0A9E: BCF 03.5
0A9F: BTFSC 07.2
0AA0: GOTO 2C7
0A9F: BSF 2F.2
0AA0: MOVF 2F,W
0AA1: BSF 03.5
0AA2: MOVWF 07
0AA3: BCF 03.5
0AA4: BTFSC 07.2
0AA5: GOTO 2E2
.................... {
.................... delay_ms(20);
0AA1: MOVLW 14
0AA2: MOVWF 46
0AA3: BCF 0A.3
0AA4: CALL 0A9
0AA5: BSF 0A.3
0AA6: MOVLW 14
0AA7: MOVWF 47
0AA8: BCF 0A.3
0AA9: CALL 0A4
0AAA: BSF 0A.3
.................... if(!input(S1))
0AA6: BSF 2F.2
0AA7: MOVF 2F,W
0AA8: BSF 03.5
0AA9: MOVWF 07
0AAA: BCF 03.5
0AAB: BTFSC 07.2
0AAC: GOTO 2C7
0AAB: BSF 2F.2
0AAC: MOVF 2F,W
0AAD: BSF 03.5
0AAE: MOVWF 07
0AAF: BCF 03.5
0AB0: BTFSC 07.2
0AB1: GOTO 2E2
.................... {
.................... button_press=true;
0AAD: BSF 36.0
.................... if(time_setup==TRUE)
0AAE: BTFSS 36.2
0AAF: GOTO 2C7
0AB2: BSF 36.0
.................... sound_beep(100,700);
0AB3: MOVLW 64
0AB4: MOVWF 3A
0AB5: MOVLW 02
0AB6: MOVWF 3C
0AB7: MOVLW BC
0AB8: MOVWF 3B
0AB9: BCF 0A.3
0ABA: CALL 654
0ABB: BSF 0A.3
.................... switch (setup_mode)
.................... {
.................... sound_beep(100,700);
0AB0: MOVLW 64
0AB1: MOVWF 39
0AB2: MOVLW 02
0AB3: MOVWF 3B
0AB4: MOVLW BC
0AB5: MOVWF 3A
0AB6: BCF 0A.3
0AB7: CALL 60D
0AB8: BSF 0A.3
.................... if(integration_time < 0xfffa ) integration_time+=5;
0AB9: MOVF 31,W
0ABA: SUBLW FF
0ABB: BTFSS 03.0
0ABC: GOTO 2C7
0ABD: BTFSS 03.2
0ABE: GOTO 2C3
0ABF: MOVF 30,W
0AC0: SUBLW F9
0AC1: BTFSS 03.0
0AC2: GOTO 2C7
0AC3: MOVLW 05
0AC4: ADDWF 30,F
0AC5: BTFSC 03.0
0AC6: INCF 31,F
0ABC: MOVLW 00
0ABD: BTFSC 36.1
0ABE: MOVLW 01
0ABF: XORLW 00
0AC0: BTFSC 03.2
0AC1: GOTO 2C6
0AC2: XORLW 01
0AC3: BTFSC 03.2
0AC4: GOTO 2D5
0AC5: GOTO 2E2
.................... case INTERVAL_setup:
.................... if(integration_time < 0xfffa ) integration_time+=5;
0AC6: MOVF 31,W
0AC7: SUBLW FF
0AC8: BTFSS 03.0
0AC9: GOTO 2D4
0ACA: BTFSS 03.2
0ACB: GOTO 2D0
0ACC: MOVF 30,W
0ACD: SUBLW F9
0ACE: BTFSS 03.0
0ACF: GOTO 2D4
0AD0: MOVLW 05
0AD1: ADDWF 30,F
0AD2: BTFSC 03.0
0AD3: INCF 31,F
.................... break;
0AD4: GOTO 2E2
....................
.................... case TRESHOLD_setup:
.................... if(treshold < 0x0a ) treshold +=5;
0AD5: MOVF 39,W
0AD6: SUBLW 09
0AD7: BTFSS 03.0
0AD8: GOTO 2DB
0AD9: MOVLW 05
0ADA: ADDWF 39,F
.................... setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
0ADB: MOVF 39,W
0ADC: IORLW 80
0ADD: MOVWF 3A
0ADE: BSF 03.5
0ADF: MOVWF 17
.................... break;
0AE0: BCF 03.5
0AE1: GOTO 2E2
.................... }
.................... }
.................... }
....................
.................... if(!input(S2))
0AC7: BSF 2F.3
0AC8: MOVF 2F,W
0AC9: BSF 03.5
0ACA: MOVWF 07
0ACB: BCF 03.5
0ACC: BTFSC 07.3
0ACD: GOTO 2FA
0AE2: BSF 2F.3
0AE3: MOVF 2F,W
0AE4: BSF 03.5
0AE5: MOVWF 07
0AE6: BCF 03.5
0AE7: BTFSC 07.3
0AE8: GOTO 32B
.................... {
.................... delay_ms(20);
0ACE: MOVLW 14
0ACF: MOVWF 46
0AD0: BCF 0A.3
0AD1: CALL 0A9
0AD2: BSF 0A.3
0AE9: MOVLW 14
0AEA: MOVWF 47
0AEB: BCF 0A.3
0AEC: CALL 0A4
0AED: BSF 0A.3
.................... if(!input(S2))
0AD3: BSF 2F.3
0AD4: MOVF 2F,W
0AD5: BSF 03.5
0AD6: MOVWF 07
0AD7: BCF 03.5
0AD8: BTFSC 07.3
0AD9: GOTO 2FA
0AEE: BSF 2F.3
0AEF: MOVF 2F,W
0AF0: BSF 03.5
0AF1: MOVWF 07
0AF2: BCF 03.5
0AF3: BTFSC 07.3
0AF4: GOTO 32B
.................... {
.................... button_press=true;
0ADA: BSF 36.0
.................... if(time_setup==TRUE)
0ADB: BTFSS 36.2
0ADC: GOTO 2FA
0AF5: BSF 36.0
.................... sound_beep(100,600);
0AF6: MOVLW 64
0AF7: MOVWF 3A
0AF8: MOVLW 02
0AF9: MOVWF 3C
0AFA: MOVLW 58
0AFB: MOVWF 3B
0AFC: BCF 0A.3
0AFD: CALL 654
0AFE: BSF 0A.3
.................... switch (setup_mode)
.................... {
.................... sound_beep(100,600);
0ADD: MOVLW 64
0ADE: MOVWF 39
0ADF: MOVLW 02
0AE0: MOVWF 3B
0AE1: MOVLW 58
0AE2: MOVWF 3A
0AE3: BCF 0A.3
0AE4: CALL 60D
0AE5: BSF 0A.3
.................... if(integration_time > 0x0005 ) integration_time-=5;
0AE6: MOVF 31,F
0AE7: BTFSS 03.2
0AE8: GOTO 2ED
0AE9: MOVF 30,W
0AEA: SUBLW 05
0AEB: BTFSC 03.0
0AEC: GOTO 2F3
0AED: MOVLW 05
0AEE: SUBWF 30,F
0AEF: MOVLW 00
0AF0: BTFSS 03.0
0AF1: MOVLW 01
0AF2: SUBWF 31,F
....................
.................... set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
0AF3: CLRF 01
.................... time_overflow_count=0;
0AF4: CLRF 2E
0AF5: CLRF 2D
.................... set_timer1(0);
0AF6: CLRF 0F
0AF7: CLRF 0E
.................... overflow_count=0;
0AF8: CLRF 2C
0AF9: CLRF 2B
0AFF: MOVLW 00
0B00: BTFSC 36.1
0B01: MOVLW 01
0B02: XORLW 00
0B03: BTFSC 03.2
0B04: GOTO 309
0B05: XORLW 01
0B06: BTFSC 03.2
0B07: GOTO 31E
0B08: GOTO 32B
.................... case INTERVAL_setup:
.................... if(integration_time > 0x0005 ) integration_time-=5;
0B09: MOVF 31,F
0B0A: BTFSS 03.2
0B0B: GOTO 310
0B0C: MOVF 30,W
0B0D: SUBLW 05
0B0E: BTFSC 03.0
0B0F: GOTO 316
0B10: MOVLW 05
0B11: SUBWF 30,F
0B12: MOVLW 00
0B13: BTFSS 03.0
0B14: MOVLW 01
0B15: SUBWF 31,F
.................... set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
0B16: CLRF 01
.................... time_overflow_count=0;
0B17: CLRF 2E
0B18: CLRF 2D
.................... set_timer1(0);
0B19: CLRF 0F
0B1A: CLRF 0E
.................... overflow_count=0;
0B1B: CLRF 2C
0B1C: CLRF 2B
.................... break;
0B1D: GOTO 32B
.................... case TRESHOLD_setup:
.................... if(treshold > 0x05 ) treshold +=5;
0B1E: MOVF 39,W
0B1F: SUBLW 05
0B20: BTFSC 03.0
0B21: GOTO 324
0B22: MOVLW 05
0B23: ADDWF 39,F
.................... setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
0B24: MOVF 39,W
0B25: IORLW 80
0B26: MOVWF 3A
0B27: BSF 03.5
0B28: MOVWF 17
.................... break;
0B29: BCF 03.5
0B2A: GOTO 32B
.................... }
.................... }
.................... }
....................
.................... if(!input(S3))
0AFA: BSF 03.5
0AFB: BSF 08.0
0AFC: BCF 03.5
0AFD: BTFSC 08.0
0AFE: GOTO 31D
0B2B: BSF 03.5
0B2C: BSF 08.0
0B2D: BCF 03.5
0B2E: BTFSC 08.0
0B2F: GOTO 362
.................... {
.................... delay_ms(20);
0AFF: MOVLW 14
0B00: MOVWF 46
0B01: BCF 0A.3
0B02: CALL 0A9
0B03: BSF 0A.3
0B30: MOVLW 14
0B31: MOVWF 47
0B32: BCF 0A.3
0B33: CALL 0A4
0B34: BSF 0A.3
.................... if(!input(S3))
0B04: BSF 03.5
0B05: BSF 08.0
0B06: BCF 03.5
0B07: BTFSC 08.0
0B08: GOTO 31D
0B35: BSF 03.5
0B36: BSF 08.0
0B37: BCF 03.5
0B38: BTFSC 08.0
0B39: GOTO 362
.................... {
.................... button_press=true;
0B09: BSF 36.0
.................... if(time_setup==TRUE)
0B0A: BTFSS 36.2
0B0B: GOTO 31D
0B3A: BSF 36.0
.................... sound_beep(100,500);
0B3B: MOVLW 64
0B3C: MOVWF 3A
0B3D: MOVLW 01
0B3E: MOVWF 3C
0B3F: MOVLW F4
0B40: MOVWF 3B
0B41: BCF 0A.3
0B42: CALL 654
0B43: BSF 0A.3
.................... switch (setup_mode)
.................... {
.................... sound_beep(100,500);
0B0C: MOVLW 64
0B0D: MOVWF 39
0B0E: MOVLW 01
0B0F: MOVWF 3B
0B10: MOVLW F4
0B11: MOVWF 3A
0B12: BCF 0A.3
0B13: CALL 60D
0B14: BSF 0A.3
.................... if(integration_time < 0xffff ) integration_time++;
0B15: INCFSZ 30,W
0B16: GOTO 31A
0B17: INCFSZ 31,W
0B18: GOTO 31A
0B19: GOTO 31D
0B1A: INCF 30,F
0B1B: BTFSC 03.2
0B1C: INCF 31,F
0B44: MOVLW 00
0B45: BTFSC 36.1
0B46: MOVLW 01
0B47: XORLW 00
0B48: BTFSC 03.2
0B49: GOTO 34E
0B4A: XORLW 01
0B4B: BTFSC 03.2
0B4C: GOTO 357
0B4D: GOTO 362
.................... case INTERVAL_setup:
.................... if(integration_time < 0xffff ) integration_time++;
0B4E: INCFSZ 30,W
0B4F: GOTO 353
0B50: INCFSZ 31,W
0B51: GOTO 353
0B52: GOTO 356
0B53: INCF 30,F
0B54: BTFSC 03.2
0B55: INCF 31,F
.................... break;
0B56: GOTO 362
....................
.................... case TRESHOLD_setup:
.................... if(treshold < 0x0F ) treshold ++;
0B57: MOVF 39,W
0B58: SUBLW 0E
0B59: BTFSC 03.0
0B5A: INCF 39,F
.................... setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
0B5B: MOVF 39,W
0B5C: IORLW 80
0B5D: MOVWF 3A
0B5E: BSF 03.5
0B5F: MOVWF 17
.................... break;
0B60: BCF 03.5
0B61: GOTO 362
.................... }
.................... }
.................... }
....................
.................... if(!input(S4))
0B1D: BSF 03.5
0B1E: BSF 08.1
0B1F: BCF 03.5
0B20: BTFSC 08.1
0B21: GOTO 34A
0B62: BSF 03.5
0B63: BSF 08.1
0B64: BCF 03.5
0B65: BTFSC 08.1
0B66: GOTO 3A3
.................... {
.................... delay_ms(20);
0B22: MOVLW 14
0B23: MOVWF 46
0B24: BCF 0A.3
0B25: CALL 0A9
0B26: BSF 0A.3
0B67: MOVLW 14
0B68: MOVWF 47
0B69: BCF 0A.3
0B6A: CALL 0A4
0B6B: BSF 0A.3
.................... if(!input(S4))
0B27: BSF 03.5
0B28: BSF 08.1
0B29: BCF 03.5
0B2A: BTFSC 08.1
0B2B: GOTO 34A
0B6C: BSF 03.5
0B6D: BSF 08.1
0B6E: BCF 03.5
0B6F: BTFSC 08.1
0B70: GOTO 3A3
.................... {
.................... button_press=true;
0B2C: BSF 36.0
.................... if(time_setup==TRUE)
0B2D: BTFSS 36.2
0B2E: GOTO 34A
0B71: BSF 36.0
.................... sound_beep(100,400);
0B72: MOVLW 64
0B73: MOVWF 3A
0B74: MOVLW 01
0B75: MOVWF 3C
0B76: MOVLW 90
0B77: MOVWF 3B
0B78: BCF 0A.3
0B79: CALL 654
0B7A: BSF 0A.3
.................... switch (setup_mode)
.................... {
.................... sound_beep(100,400);
0B2F: MOVLW 64
0B30: MOVWF 39
0B31: MOVLW 01
0B32: MOVWF 3B
0B33: MOVLW 90
0B34: MOVWF 3A
0B35: BCF 0A.3
0B36: CALL 60D
0B37: BSF 0A.3
.................... if(integration_time > 0x0001 ) integration_time--;
0B38: MOVF 31,F
0B39: BTFSS 03.2
0B3A: GOTO 33F
0B3B: MOVF 30,W
0B3C: SUBLW 01
0B3D: BTFSC 03.0
0B3E: GOTO 343
0B3F: MOVF 30,W
0B40: BTFSC 03.2
0B41: DECF 31,F
0B42: DECF 30,F
0B7B: MOVLW 00
0B7C: BTFSC 36.1
0B7D: MOVLW 01
0B7E: XORLW 00
0B7F: BTFSC 03.2
0B80: GOTO 385
0B81: XORLW 01
0B82: BTFSC 03.2
0B83: GOTO 398
0B84: GOTO 3A3
.................... case INTERVAL_setup:
....................
.................... if(integration_time > 0x0001 ) integration_time--;
0B85: MOVF 31,F
0B86: BTFSS 03.2
0B87: GOTO 38C
0B88: MOVF 30,W
0B89: SUBLW 01
0B8A: BTFSC 03.0
0B8B: GOTO 390
0B8C: MOVF 30,W
0B8D: BTFSC 03.2
0B8E: DECF 31,F
0B8F: DECF 30,F
....................
.................... set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
0B43: CLRF 01
.................... time_overflow_count=0;
0B44: CLRF 2E
0B45: CLRF 2D
.................... set_timer1(0);
0B46: CLRF 0F
0B47: CLRF 0E
.................... overflow_count=0;
0B48: CLRF 2C
0B49: CLRF 2B
.................... set_timer0(0); // vynulovani pocitadel, kdyz uzivatel sahne na tlacitka
0B90: CLRF 01
.................... time_overflow_count=0;
0B91: CLRF 2E
0B92: CLRF 2D
.................... set_timer1(0);
0B93: CLRF 0F
0B94: CLRF 0E
.................... overflow_count=0;
0B95: CLRF 2C
0B96: CLRF 2B
.................... break;
0B97: GOTO 3A3
.................... case TRESHOLD_setup:
.................... if(treshold > 0x01 ) treshold--;
0B98: MOVF 39,W
0B99: SUBLW 01
0B9A: BTFSS 03.0
0B9B: DECF 39,F
.................... setup_vref(VREF_HIGH|treshold); //sets 3.6(vdd *value/32 +vdd/4) if vdd is 5.0V
0B9C: MOVF 39,W
0B9D: IORLW 80
0B9E: MOVWF 3A
0B9F: BSF 03.5
0BA0: MOVWF 17
.................... break;
0BA1: BCF 03.5
0BA2: GOTO 3A3
.................... }
.................... }
.................... }
....................
.................... if(!input(S5)) // prepnuti na nastavovani casu
0B4A: BSF 03.5
0B4B: BSF 06.1
0B4C: BCF 03.5
0B4D: BTFSC 06.1
0B4E: GOTO 364
0BA3: BSF 03.5
0BA4: BSF 06.1
0BA5: BCF 03.5
0BA6: BTFSC 06.1
0BA7: GOTO 3C9
.................... {
.................... delay_ms(20);
0B4F: MOVLW 14
0B50: MOVWF 46
0B51: BCF 0A.3
0B52: CALL 0A9
0B53: BSF 0A.3
0BA8: MOVLW 14
0BA9: MOVWF 47
0BAA: BCF 0A.3
0BAB: CALL 0A4
0BAC: BSF 0A.3
.................... if(!input(S5))
0B54: BSF 03.5
0B55: BSF 06.1
0B56: BCF 03.5
0B57: BTFSC 06.1
0B58: GOTO 364
0BAD: BSF 03.5
0BAE: BSF 06.1
0BAF: BCF 03.5
0BB0: BTFSC 06.1
0BB1: GOTO 3C9
.................... {
.................... button_press=true;
0BB2: BSF 36.0
.................... sound_beep(100,800);
0B59: MOVLW 64
0B5A: MOVWF 39
0B5B: MOVLW 03
0B5C: MOVWF 3B
0B5D: MOVLW 20
0B5E: MOVWF 3A
0B5F: BCF 0A.3
0B60: CALL 60D
0B61: BSF 0A.3
.................... voltage_setup=FALSE;
0B62: BCF 36.1
.................... time_setup=TRUE;
0B63: BSF 36.2
0BB3: MOVLW 64
0BB4: MOVWF 3A
0BB5: MOVLW 03
0BB6: MOVWF 3C
0BB7: MOVLW 20
0BB8: MOVWF 3B
0BB9: BCF 0A.3
0BBA: CALL 654
0BBB: BSF 0A.3
.................... setup_mode=INTERVAL_setup;
0BBC: BCF 36.1
.................... lcd_gotoxy(16,1); // prepsani dat na displeje
0BBD: MOVLW 10
0BBE: MOVWF 47
0BBF: MOVLW 01
0BC0: MOVWF 48
0BC1: BCF 0A.3
0BC2: CALL 1AB
0BC3: BSF 0A.3
.................... printf(lcd_putc,"I");
0BC4: MOVLW 49
0BC5: MOVWF 46
0BC6: BCF 0A.3
0BC7: CALL 1BD
0BC8: BSF 0A.3
.................... }
.................... }
....................
.................... if(!input(S6)) // prepnuti na nastavovani napeti
0B64: BSF 03.5
0B65: BSF 06.2
0B66: BCF 03.5
0B67: BTFSC 06.2
0B68: GOTO 37E
0BC9: BSF 03.5
0BCA: BSF 06.2
0BCB: BCF 03.5
0BCC: BTFSC 06.2
0BCD: GOTO 3EF
.................... {
.................... delay_ms(20);
0B69: MOVLW 14
0B6A: MOVWF 46
0B6B: BCF 0A.3
0B6C: CALL 0A9
0B6D: BSF 0A.3
0BCE: MOVLW 14
0BCF: MOVWF 47
0BD0: BCF 0A.3
0BD1: CALL 0A4
0BD2: BSF 0A.3
.................... if(!input(S6))
0B6E: BSF 03.5
0B6F: BSF 06.2
0B70: BCF 03.5
0B71: BTFSC 06.2
0B72: GOTO 37E
0BD3: BSF 03.5
0BD4: BSF 06.2
0BD5: BCF 03.5
0BD6: BTFSC 06.2
0BD7: GOTO 3EF
.................... {
.................... button_press=true;
0BD8: BSF 36.0
.................... sound_beep(100,800);
0B73: MOVLW 64
0B74: MOVWF 39
0B75: MOVLW 03
0B76: MOVWF 3B
0B77: MOVLW 20
0B78: MOVWF 3A
0B79: BCF 0A.3
0B7A: CALL 60D
0B7B: BSF 0A.3
.................... voltage_setup=TRUE;
0B7C: BSF 36.1
.................... time_setup=FALSE;
0B7D: BCF 36.2
0BD9: MOVLW 64
0BDA: MOVWF 3A
0BDB: MOVLW 03
0BDC: MOVWF 3C
0BDD: MOVLW 20
0BDE: MOVWF 3B
0BDF: BCF 0A.3
0BE0: CALL 654
0BE1: BSF 0A.3
.................... setup_mode=TRESHOLD_setup;
0BE2: BSF 36.1
.................... lcd_gotoxy(16,1); // prepsani dat na displeje
0BE3: MOVLW 10
0BE4: MOVWF 47
0BE5: MOVLW 01
0BE6: MOVWF 48
0BE7: BCF 0A.3
0BE8: CALL 1AB
0BE9: BSF 0A.3
.................... printf(lcd_putc,"U");
0BEA: MOVLW 55
0BEB: MOVWF 46
0BEC: BCF 0A.3
0BED: CALL 1BD
0BEE: BSF 0A.3
.................... }
.................... }
.................... }
....................
.................... if ( input(S1) && input(S2) && input(S3) && input(S4) && input(S5) && input(S6)) // detekce pustenych tlacitek
0B7E: BSF 2F.2
0B7F: MOVF 2F,W
0B80: BSF 03.5
0B81: MOVWF 07
0B82: BCF 03.5
0B83: BTFSS 07.2
0B84: GOTO 3A1
0B85: BSF 2F.3
0B86: MOVF 2F,W
0B87: BSF 03.5
0B88: MOVWF 07
0B89: BCF 03.5
0B8A: BTFSS 07.3
0B8B: GOTO 3A1
0B8C: BSF 03.5
0B8D: BSF 08.0
0B8E: BCF 03.5
0B8F: BTFSS 08.0
0B90: GOTO 3A1
0B91: BSF 03.5
0B92: BSF 08.1
0B93: BCF 03.5
0B94: BTFSS 08.1
0B95: GOTO 3A1
0B96: BSF 03.5
0B97: BSF 06.1
0B98: BCF 03.5
0B99: BTFSS 06.1
0B9A: GOTO 3A1
0B9B: BSF 03.5
0B9C: BSF 06.2
0B9D: BCF 03.5
0B9E: BTFSS 06.2
0B9F: GOTO 3A1
0BEF: BSF 2F.2
0BF0: MOVF 2F,W
0BF1: BSF 03.5
0BF2: MOVWF 07
0BF3: BCF 03.5
0BF4: BTFSS 07.2
0BF5: GOTO 412
0BF6: BSF 2F.3
0BF7: MOVF 2F,W
0BF8: BSF 03.5
0BF9: MOVWF 07
0BFA: BCF 03.5
0BFB: BTFSS 07.3
0BFC: GOTO 412
0BFD: BSF 03.5
0BFE: BSF 08.0
0BFF: BCF 03.5
0C00: BTFSS 08.0
0C01: GOTO 412
0C02: BSF 03.5
0C03: BSF 08.1
0C04: BCF 03.5
0C05: BTFSS 08.1
0C06: GOTO 412
0C07: BSF 03.5
0C08: BSF 06.1
0C09: BCF 03.5
0C0A: BTFSS 06.1
0C0B: GOTO 412
0C0C: BSF 03.5
0C0D: BSF 06.2
0C0E: BCF 03.5
0C0F: BTFSS 06.2
0C10: GOTO 412
.................... {
.................... button_press=false;
0BA0: BCF 36.0
0C11: BCF 36.0
.................... }
.................... }
0BA1: GOTO 118
0C12: GOTO 11F
.................... }
0BA2: SLEEP
0C13: SLEEP
 
Configuration Fuses:
Word 1: 2CF5 INTRC NOWDT NOPUT MCLR NOPROTECT NOCPD NOBROWNOUT IESO FCMEN NOLVP NODEBUG
/Designs/Measuring_instruments/GM_counter/SW/counter/main.pjt
17,7 → 17,7
0=0000 %S 0 0 796 451 3 0
[Opened Files]
1=main.c
2=main.h
2=
3=C:\Program Files (x86)\PICC\devices\16F887.h
4=C:\Program Files (x86)\PICC\drivers\lcd.c
5=
/Designs/Measuring_instruments/GM_counter/SW/counter/main.sta
1,23 → 1,23
 
ROM used: 2825 (34%)
2979 (36%) including unused fragments
ROM used: 3009 (37%)
3092 (38%) including unused fragments
 
3 Average locations per line
12 Average locations per statement
 
RAM used: 36 (10%) at main() level
55 (15%) worst case
RAM used: 37 (10%) at main() level
56 (15%) worst case
 
Stack used: 6 worst case (out of 8 total available)
 
Lines Stmts % Files
----- ----- --- -----
235 140 61 main.c
269 158 64 main.c
21 0 0 main.h
423 0 0 C:\Program Files (x86)\PICC\devices\16F887.h
408 88 39 C:\Program Files (x86)\PICC\drivers\lcd.c
408 88 36 C:\Program Files (x86)\PICC\drivers\lcd.c
----- -----
1087 228 Total
1121 246 Total
 
Page ROM % RAM Vol Diff Functions:
---- --- --- --- --- ---- ----------
27,19 → 27,19
0 8 0 0 @const78
Inline 3 751 4.5 lcd_read_byte
0 49 2 2 254 3.7 lcd_read_nibble
0 44 2 1 391 2.4 lcd_send_nibble
0 44 1 1 391 2.4 lcd_send_nibble
0 92 3 3 402 3.6 lcd_send_byte
0 58 2 2 666 5.0 lcd_init
0 18 1 4 191 5.8 lcd_gotoxy
0 45 2 1 354 4.7 lcd_putc
0 45 1 1 354 4.7 lcd_putc
0 7 0 0 17 1.3 RTCC_isr
0 19 1 0 50 1.5 TIMER1_isr
0 73 3 7 166 4.5 sound_beep
0 73 2 7 170 4.1 sound_beep
Inline 5 @DIV1616
1 931 33 15 5088 10.6 MAIN
1 1044 35 16 6137 12.7 MAIN
0 16 1 0 @const124
0 70 2 3 @PSTRINGC7_96
0 15 1 0 @const126
0 15 0 0 @const126
0 70 2 3 @PSTRINGC7_64
0 14 0 0 @const128
0 1 0 0 @const129
53,31 → 53,32
0 323 11 16 @ADDFF
0 33 1 4 @SFTOI
0 8 0 0 @const152
0 99 4 9 @PRINTF_LU_96
0 5 0 0 @const156
0 12 0 0 @const157
0 99 3 9 @PRINTF_LU_96
0 21 1 3 @DIV88
0 55 2 2 @PRINTF_U_96
0 12 0 0 @const162
0 79 3 4 @PSTRINGCN7_64
0 99 4 9 @PRINTF_LU_64
0 99 3 9 @PRINTF_LU_64
0 94 3 12 @PRINTF_L32U_64
 
Program metrics:
Functions 11
Statements 228
Comments 188
Volume (V) 11427
Difficilty (D) 46.2
Effort to implement (E) 528005
Time to implement (T) 8 hours, 9 minutes
Statements 246
Comments 195
Volume (V) 12590
Difficilty (D) 48.1
Effort to implement (E) 605765
Time to implement (T) 9 hours, 21 minutes
Est Delivered Bugs (B) 2
Cyclomatic Complexity 33
Maintainability (MI) 91
Cyclomatic Complexity 41
Maintainability (MI) 95
 
Segment Used Free
----------- ---- ----
00000-00003 4 0
00004-00037 52 0
00038-007FF 1838 154
00800-00FFF 931 1117
00038-007FF 1909 83
00800-00FFF 1044 1004
01000-017FF 0 2048
01800-01FFF 0 2048
 
/Designs/Measuring_instruments/GM_counter/SW/counter/main.sym
1,7 → 1,7
004 @WRITE_PROGRAM_MEMORY8.P1
004-005 @READ_PROGRAM_MEMORY8.P2
015 CCP_1_LOW
015 CCP_1
015 CCP_1_LOW
016 CCP_1_HIGH
01B CCP_2_LOW
01B CCP_2
21,120 → 21,125
032-033 MAIN.time
034-035 MAIN.last_timer
036.0 MAIN.button_press
036.1 MAIN.voltage_setup
036.2 MAIN.time_setup
036.1 MAIN.setup_mode
037-038 MAIN.measurement_number
039-03C @PRINTF_L32U_64.P1
039 sound_beep.lenght
039 @PSTRINGCN7_96.P1
039 lcd_init.i
039 @PSTRINGCN7_64.P1
039-03A @PRINTF_LU_96.P2
039-03C @PRINTF_L32U_96.P3
039-03A @PRINTF_LU_64.P4
039 MAIN.@SCRATCH1
039 @PSTRINGC7_96.@SCRATCH1
039 @PSTRINGC7_64.@SCRATCH1
03A-03B sound_beep.frequency
03A lcd_init.@SCRATCH1
03A MAIN.@SCRATCH2
03A @PSTRINGC7_96.@SCRATCH2
03A @PSTRINGC7_64.@SCRATCH2
03A @PSTRINGCN7_96.@SCRATCH1
03A @PSTRINGCN7_64.@SCRATCH1
03B-03C @MUL1616.P1
03B-03E @MULFF.P2
03B MAIN.@SCRATCH3
03B @PSTRINGC7_96.@SCRATCH3
03B @PSTRINGC7_64.@SCRATCH3
03B @PSTRINGCN7_96.@SCRATCH2
03B @PRINTF_LU_96.@SCRATCH1
03B @PSTRINGCN7_64.@SCRATCH2
03B @PRINTF_LU_64.@SCRATCH1
03C sound_beep.i
03C MAIN.@SCRATCH4
03C @PSTRINGCN7_96.@SCRATCH3
03C @PRINTF_LU_96.@SCRATCH2
03C @PSTRINGCN7_64.@SCRATCH3
03C @PRINTF_LU_64.@SCRATCH2
03D-03E @DIV1616.P1
03D-03E @MUL1616.P2
03D sound_beep.@SCRATCH1
03D MAIN.@SCRATCH5
03D @PRINTF_L32U_96.@SCRATCH1
03D @PRINTF_LU_96.@SCRATCH3
03D @PRINTF_LU_64.@SCRATCH3
03D @PRINTF_L32U_64.@SCRATCH1
03E sound_beep.@SCRATCH2
03E MAIN.@SCRATCH6
03E @PRINTF_L32U_96.@SCRATCH2
03E @PRINTF_LU_96.@SCRATCH4
03E @PRINTF_LU_64.@SCRATCH4
03E @PRINTF_L32U_64.@SCRATCH2
03F-042 @ADDFF.P1
03F-040 @DIV1616.P2
03F-042 @MULFF.P3
03F-040 @ITOF.P4
03F-042 @SFTOI.P5
03F sound_beep.@SCRATCH3
03F @PRINTF_L32U_96.@SCRATCH3
03F @MUL1616.@SCRATCH1
03F @PRINTF_LU_96.@SCRATCH5
03F @PRINTF_LU_64.@SCRATCH5
03F @PRINTF_L32U_64.@SCRATCH3
040 @delay_us1.P1
040 @PRINTF_L32U_96.@SCRATCH4
040 @PRINTF_LU_96.@SCRATCH6
040 @PRINTF_LU_64.@SCRATCH6
040 @PRINTF_L32U_64.@SCRATCH4
041 @DIV1616.@SCRATCH1
041 @PRINTF_L32U_96.@SCRATCH5
041 @PRINTF_LU_96.@SCRATCH7
041 @PRINTF_LU_64.@SCRATCH7
041 @PRINTF_L32U_64.@SCRATCH5
042 @PRINTF_L32U_96.@SCRATCH6
042 @PRINTF_L32U_64.@SCRATCH6
043-046 @ADDFF.P1
043 @PRINTF_L32U_96.@SCRATCH7
043 @MULFF.@SCRATCH1
043 @PRINTF_L32U_64.@SCRATCH7
044 @PRINTF_L32U_96.@SCRATCH8
044 @MULFF.@SCRATCH2
044 @PRINTF_L32U_64.@SCRATCH8
045-048 @DIV3232.P1
045 @PUTCHAR_1_.P2
045 lcd_putc.c
045 @MULFF.@SCRATCH3
046 @delay_ms1.P1
046 lcd_gotoxy.x
046 @MULFF.@SCRATCH4
047 lcd_gotoxy.y
047 @MULFF.@SCRATCH5
047 @ADDFF.@SCRATCH1
048 lcd_gotoxy.address
048 @ADDFF.@SCRATCH2
049-04C @DIV3232.P1
049 lcd_gotoxy.@SCRATCH1
049 @ADDFF.@SCRATCH3
04A lcd_send_byte.address
04A @ADDFF.@SCRATCH4
04B lcd_send_byte.n
04B @ADDFF.@SCRATCH5
04C lcd_read_byte.low
04C lcd_send_byte.@SCRATCH1
04C @ADDFF.@SCRATCH6
04D lcd_send_nibble.n
04D lcd_read_byte.high
04D @DIV3232.@SCRATCH1
04D @ADDFF.@SCRATCH7
04E lcd_read_nibble.n
04E lcd_read_byte.@SCRATCH1
04E @DIV3232.@SCRATCH2
04E @ADDFF.@SCRATCH8
04F lcd_read_nibble.@SCRATCH1
04F @DIV3232.@SCRATCH3
050 @DIV3232.@SCRATCH4
051 @DIV3232.@SCRATCH5
039 MAIN.treshold
03A @PRINTF_U_96.P1
03A @PSTRINGCN7_64.P2
03A-03B @PRINTF_LU_96.P3
03A-03D @PRINTF_L32U_64.P4
03A-03B @PRINTF_LU_64.P5
03A sound_beep.lenght
03A @PSTRINGCN7_96.P1
03A-03D @PRINTF_L32U_96.P2
03A lcd_init.i
03A MAIN.@SCRATCH1
03A @PSTRINGC7_96.@SCRATCH1
03A @PSTRINGC7_64.@SCRATCH1
03B-03C sound_beep.frequency
03B @PRINTF_U_96.P1
03B lcd_init.@SCRATCH1
03B MAIN.@SCRATCH2
03B @PSTRINGC7_96.@SCRATCH2
03B @PSTRINGC7_64.@SCRATCH2
03B @PSTRINGCN7_96.@SCRATCH1
03B @PSTRINGCN7_64.@SCRATCH1
03C-03D @MUL1616.P1
03C-03F @MULFF.P2
03C @DIV88.P3
03C MAIN.@SCRATCH3
03C @PSTRINGC7_96.@SCRATCH3
03C @PSTRINGC7_64.@SCRATCH3
03C @PSTRINGCN7_96.@SCRATCH2
03C @PRINTF_LU_96.@SCRATCH1
03C @PSTRINGCN7_64.@SCRATCH2
03C @PRINTF_LU_64.@SCRATCH1
03D sound_beep.i
03D @DIV88.P1
03D MAIN.@SCRATCH4
03D @PSTRINGCN7_96.@SCRATCH3
03D @PRINTF_LU_96.@SCRATCH2
03D @PSTRINGCN7_64.@SCRATCH3
03D @PRINTF_LU_64.@SCRATCH2
03E-03F @MUL1616.P1
03E-03F @DIV1616.P2
03E sound_beep.@SCRATCH1
03E MAIN.@SCRATCH5
03E @PRINTF_L32U_96.@SCRATCH1
03E @PRINTF_LU_96.@SCRATCH3
03E @DIV88.@SCRATCH1
03E @PRINTF_LU_64.@SCRATCH3
03E @PRINTF_L32U_64.@SCRATCH1
03F sound_beep.@SCRATCH2
03F MAIN.@SCRATCH6
03F @PRINTF_L32U_96.@SCRATCH2
03F @PRINTF_LU_96.@SCRATCH4
03F @PRINTF_LU_64.@SCRATCH4
03F @PRINTF_L32U_64.@SCRATCH2
040-041 @DIV1616.P1
040-043 @MULFF.P2
040-043 @ADDFF.P3
040-041 @ITOF.P4
040-043 @SFTOI.P5
040 sound_beep.@SCRATCH3
040 @PRINTF_L32U_96.@SCRATCH3
040 @MUL1616.@SCRATCH1
040 @PRINTF_LU_96.@SCRATCH5
040 @PRINTF_LU_64.@SCRATCH5
040 @PRINTF_L32U_64.@SCRATCH3
041 @delay_us1.P1
041 @PRINTF_L32U_96.@SCRATCH4
041 @PRINTF_LU_96.@SCRATCH6
041 @PRINTF_LU_64.@SCRATCH6
041 @PRINTF_L32U_64.@SCRATCH4
042 @DIV1616.@SCRATCH1
042 @PRINTF_L32U_96.@SCRATCH5
042 @PRINTF_LU_96.@SCRATCH7
042 @PRINTF_LU_64.@SCRATCH7
042 @PRINTF_L32U_64.@SCRATCH5
043 @PRINTF_L32U_96.@SCRATCH6
043 @PRINTF_L32U_64.@SCRATCH6
044-047 @ADDFF.P1
044 @PRINTF_L32U_96.@SCRATCH7
044 @MULFF.@SCRATCH1
044 @PRINTF_L32U_64.@SCRATCH7
045 @PRINTF_L32U_96.@SCRATCH8
045 @MULFF.@SCRATCH2
045 @PRINTF_L32U_64.@SCRATCH8
046 @PUTCHAR_1_.P1
046-049 @DIV3232.P2
046 lcd_putc.c
046 @MULFF.@SCRATCH3
047 @delay_ms1.P1
047 lcd_gotoxy.x
047 @MULFF.@SCRATCH4
048 lcd_gotoxy.y
048 @MULFF.@SCRATCH5
048 @ADDFF.@SCRATCH1
049 lcd_gotoxy.address
049 @ADDFF.@SCRATCH2
04A-04D @DIV3232.P1
04A lcd_gotoxy.@SCRATCH1
04A @ADDFF.@SCRATCH3
04B lcd_send_byte.address
04B @ADDFF.@SCRATCH4
04C lcd_send_byte.n
04C @ADDFF.@SCRATCH5
04D lcd_read_byte.low
04D lcd_send_byte.@SCRATCH1
04D @ADDFF.@SCRATCH6
04E lcd_read_byte.high
04E lcd_send_nibble.n
04E @DIV3232.@SCRATCH1
04E @ADDFF.@SCRATCH7
04F lcd_read_nibble.n
04F lcd_read_byte.@SCRATCH1
04F @DIV3232.@SCRATCH2
04F @ADDFF.@SCRATCH8
050 lcd_read_nibble.@SCRATCH1
050 @DIV3232.@SCRATCH3
051 @DIV3232.@SCRATCH4
052 @DIV3232.@SCRATCH5
077 @SCRATCH
078 @SCRATCH
078 _RETURN_
178,44 → 183,45
FFF @INTERRUPT_AREA
 
ROM Allocation:
00A9 @delay_ms1
05FC @delay_us1
0235 @PUTCHAR_1_
00A4 @delay_ms1
0643 @delay_us1
0230 @PUTCHAR_1_
0038 LCD_INIT_STRING
0122 lcd_read_byte
00E9 lcd_read_nibble
00BD lcd_send_nibble
011A lcd_send_byte
0176 lcd_init
01B0 lcd_gotoxy
01C2 lcd_putc
011D lcd_read_byte
00E4 lcd_read_nibble
00B8 lcd_send_nibble
0115 lcd_send_byte
0171 lcd_init
01AB lcd_gotoxy
01BD lcd_putc
0040 RTCC_isr
0047 TIMER1_isr
060D sound_beep
061E @DIV1616
0654 sound_beep
0665 @DIV1616
0800 MAIN
005A @const124
01EF @PSTRINGC7_96
01EA @PSTRINGC7_96
006A @const126
0257 @PSTRINGC7_64
0252 @PSTRINGC7_64
0079 @const128
0087 @const129
0088 @const131
029D @PSTRINGCN7_96
02EC @DIV3232
032E @PRINTF_L32U_96
038A @MUL1616
03A1 @ITOF
03BE @MULFF
0435 @ADDFF
0578 @SFTOI
0298 @PSTRINGCN7_96
02E7 @DIV3232
0329 @PRINTF_L32U_96
0385 @MUL1616
039C @ITOF
03B9 @MULFF
0430 @ADDFF
0573 @SFTOI
0090 @const152
0599 @PRINTF_LU_96
0098 @const156
009D @const157
0656 @PSTRINGCN7_64
06A5 @PRINTF_LU_64
0708 @PRINTF_L32U_64
0594 @PRINTF_LU_96
05F7 @DIV88
060C @PRINTF_U_96
0098 @const162
069D @PSTRINGCN7_64
06EC @PRINTF_LU_64
074F @PRINTF_L32U_64
0800 @cinit
 
 
224,7 → 230,7
User Memory space:
 
Project Directory:
D:\Honza\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\
Z:\home\kaklik\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\
 
Project Files:
main.c
233,7 → 239,7
C:\Program Files (x86)\PICC\drivers\lcd.c
 
Units:
D:\Honza\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\main (main)
Z:\home\kaklik\MLAB\Designs\Measuring_instruments\GM_counter\SW\counter\main (main)
 
Compiler Settings:
Processor: PIC16F887
/Designs/Measuring_instruments/GM_counter/SW/counter/main.tre
1,5 → 1,5
ÀÄmain
ÃÄMAIN 1/931 Ram=15
ÃÄMAIN 1/1044 Ram=16
³ ÃÄ??0??
³ ÃÄlcd_init 0/58 Ram=2
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
743,7 → 743,69
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ÃÄ@PRINTF_LU_96 0/99 Ram=9
³ ³ ÀÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
818,42 → 880,8
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄ@PRINTF_LU_96 0/99 Ram=9
³ ³ ÀÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄ@PSTRINGCN7_96 0/79 Ram=4
³ ÃÄ@PRINTF_U_96 0/55 Ram=2
³ ³ ÃÄ@DIV88 0/21 Ram=3
³ ³ ÃÄlcd_putc 0/45 Ram=1
³ ³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
888,6 → 916,41
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@DIV88 0/21 Ram=3
³ ³ ÃÄlcd_putc 0/45 Ram=1
³ ³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
922,6 → 985,40
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄsound_beep 0/73 Ram=7
³ ³ ÃÄ@DIV1616 (Inline) Ram=5
³ ³ ÃÄ@delay_us1 0/17 Ram=1
967,10 → 1064,92
³ ³ ÃÄ@DIV1616 (Inline) Ram=5
³ ³ ÃÄ@delay_us1 0/17 Ram=1
³ ³ ÀÄ@delay_us1 0/17 Ram=1
³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_putc 0/45 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄ@delay_ms1 0/20 Ram=1
³ ³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄ@delay_ms1 0/20 Ram=1
³ ÀÄsound_beep 0/73 Ram=7
³ ÃÄ@DIV1616 (Inline) Ram=5
³ ÃÄ@delay_us1 0/17 Ram=1
³ ÀÄ@delay_us1 0/17 Ram=1
³ ÃÄsound_beep 0/73 Ram=7
³ ³ ÃÄ@DIV1616 (Inline) Ram=5
³ ³ ÃÄ@delay_us1 0/17 Ram=1
³ ³ ÀÄ@delay_us1 0/17 Ram=1
³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÀÄlcd_putc 0/45 Ram=1
³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄ@delay_ms1 0/20 Ram=1
³ ÃÄlcd_gotoxy 0/18 Ram=4
³ ³ ÀÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÃÄlcd_send_byte 0/92 Ram=3
³ ³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ³ ÀÄlcd_send_nibble 0/44 Ram=1
³ ÀÄlcd_send_byte 0/92 Ram=3
³ ÃÄlcd_read_byte (Inline) Ram=3
³ ³ ÃÄlcd_read_nibble 0/49 Ram=2
³ ³ ÀÄlcd_read_nibble 0/49 Ram=2
³ ÃÄlcd_send_nibble 0/44 Ram=1
³ ÀÄlcd_send_nibble 0/44 Ram=1
ÃÄRTCC_isr 0/7 Ram=0
ÀÄTIMER1_isr 0/19 Ram=0