CCS PCM C Compiler, Version 4.106, 47914 03-4-13 15:28Filename: C:\Users\Honza\Documents\pic\tomas\main.lstROM used: 1258 words (15%)Largest free fragment is 2048RAM used: 23 (6%) at main() level48 (13%) worst caseStack: 6 worst case (5 in main + 1 for interrupts)*0000: MOVLW 030001: MOVWF 0A0002: GOTO 38E0003: NOP0004: MOVWF 7F0005: SWAPF 03,W0006: CLRF 030007: MOVWF 210008: MOVF 0A,W0009: MOVWF 20000A: CLRF 0A000B: MOVF 04,W000C: MOVWF 22000D: MOVF 77,W000E: MOVWF 23000F: MOVF 78,W0010: MOVWF 240011: MOVF 79,W0012: MOVWF 250013: MOVF 7A,W0014: MOVWF 260015: BCF 03.70016: BCF 03.50017: BTFSS 0B.40018: GOTO 01B0019: BTFSC 0B.1001A: GOTO 02C001B: MOVF 22,W001C: MOVWF 04001D: MOVF 23,W001E: MOVWF 77001F: MOVF 24,W0020: MOVWF 780021: MOVF 25,W0022: MOVWF 790023: MOVF 26,W0024: MOVWF 7A0025: MOVF 20,W0026: MOVWF 0A0027: SWAPF 21,W0028: MOVWF 030029: SWAPF 7F,F002A: SWAPF 7F,W002B: RETFIE002C: BCF 0A.3002D: BCF 0A.4002E: GOTO 037.................... #include "C:\Users\Honza\Documents\pic\tomas\main.h".................... #include <16F887.h>.................... //////// Standard Header file for the PIC16F887 device ////////////////.................... #device PIC16F887.................... #list........................................ #device adc=8........................................ #FUSES NOWDT //No Watch Dog Timer.................... #FUSES INTRC //Internal RC Osc.................... #FUSES NOPUT //No Power Up Timer.................... #FUSES MCLR //Master Clear pin enabled.................... #FUSES NOPROTECT //Code not protected from reading.................... #FUSES NOCPD //No EE protection.................... #FUSES NOBROWNOUT //No brownout reset.................... #FUSES IESO //Internal External Switch Over mode enabled.................... #FUSES FCMEN //Fail-safe clock monitor enabled.................... #FUSES NOLVP //No low voltage prgming, B3(PIC16) or B5(PIC18) used for I/O.................... #FUSES NODEBUG //No Debug mode for ICD.................... #FUSES NOWRT //Program memory not write protected.................... #FUSES BORV40 //Brownout reset at 4.0V........................................ #use delay(clock=8000000)*006C: MOVLW 3F006D: MOVWF 04006E: BCF 03.7006F: MOVF 00,W0070: BTFSC 03.20071: GOTO 07F0072: MOVLW 020073: MOVWF 780074: CLRF 770075: DECFSZ 77,F0076: GOTO 0750077: DECFSZ 78,F0078: GOTO 0740079: MOVLW 97007A: MOVWF 77007B: DECFSZ 77,F007C: GOTO 07B007D: DECFSZ 00,F007E: GOTO 072007F: RETURN................................................................................ #define LCD_RS PIN_C7 // rizeni registru LCD displeje <lcd.c>.................... #define LCD_E PIN_B7 // enable LCD displeje <lcd.c>.................... #define LCD_D0 PIN_B6 // data LCD <lcd.c>.................... #define LCD_D1 PIN_B5.................... #define LCD_D2 PIN_B4.................... #define LCD_D3 PIN_D4.................... #include "LCD.C" //pro LCD.................... // LCD modul pro ovladani dvouradkoveho LCD modulu se standardnim Hitachi radicem.................... // (c)miho 2002,2005.................... //.................... // Historie:.................... //.................... // 0.00 Uvodni verze se snadnou definici portu LCD displeje.................... // 0.01 Oprava portu (zapomenute stare identifikatory).................... // 0.02 Doplnena moznost pripojeni datoveho portu LCD na libovolne porty.................... // 0.03 Doplnena procedura lcd_clr pro smazani displeje.................... //.................... //.................... // Funkce:.................... //.................... // lcd_init() inicializuje LCD displej a porty, nutno volat jako prvni.................... //.................... // lcd_putc(c) zapis snaku do lcd displeje, zpracovava nasledujici ridici znaky.................... // \f = \x0C - nova stranka - smazani displeje.................... // \n = \x0A - odradkovani (prechod na druhou radku).................... // \b = \x08 - backspace - posunuti kurzoru o 1 pozici zpet.................... // \r = \x0D - goto home to position 1,1.................... // \0 .. \7 - definovatelne znaky v pozicich 0 az 7 v CGRAM.................... // \20 .. \27 - alternativne zapsane znaky (oktalove) v pozicich 0 az 7 CGRAM.................... // Pozor na to, ze funkce printf konci tisk pokud narazi na \0 (konec retezce).................... //.................... // lcd_gotoxy(x,y) presune kurzor na uvedenou adresu.................... // nekontroluje parametry.................... //.................... // lcd_cursor_on zapne kurzor.................... // lcd_cursor_off vypne kurzor.................... //.................... // lcd_clr smaze displej.................... //.................... // lcd_define_char(Index, Def) Makro, ktere definuje znaky od pozice Index obsahem definicniho.................... // retezce Def. Kazdych 8 znaku retezce Def definuje dalsi znak v CGRAM..................... // Kapacita CGRAM je celkem 8 znaku s indexem 0 az 7..................... // Na konci se provede lcd_gotoxy(1,1)..................... // Na konci teto knihovny je priklad pouziti definovanych znaku.................... //.................... //.................... // Definice portu: // Datovy port displeje pripojeny na 4 bity za sebou na jeden port.................... //.................... // #define LCD_RS PIN_B2 // rizeni registru LCD displeje.................... // #define LCD_E PIN_B1 // enable LCD displeje.................... // #define LCD_DATA_LSB PIN_C2 // pripojeni LSB bitu datoveho portu LCD displeje (celkem 4 bity vzestupne za sebou).................... //.................... //.................... // Alternativni definice: // Datovy port displeje pripojeny na libovolne 4 bitove porty (vede na kod delsi asi o 25 slov).................... //.................... // #define LCD_RS PIN_B2 // rizeni registru LCD displeje.................... // #define LCD_E PIN_B1 // enable LCD displeje.................... // #define LCD_D0 PIN_C2 // D0 - datove bity pripojene na libovolne porty.................... // #define LCD_D1 PIN_C3 // D1.................... // #define LCD_D2 PIN_C4 // D2.................... // #define LCD_D3 PIN_C5 // D3.................................................................................................... // Privatni sekce, cist jen v pripade, ze neco nefunguje.................................................................................................... #ifdef LCD_DATA_LSB.................... // Generovane defince portu pro ucely teto knihovny aby kod generoval spravne IO operace a soucasne.................... // bylo mozne jednoduse deklarovat pripojene piny LCD displeje pri pouziti teto knihovny. Problem spociva.................... // v tom, ze se musi spravne ridit smery portu a soucasne datovy port zabira jen 4 bity ze zadaneho portu.................... //.................... #define LCD_SHIFT (LCD_DATA_LSB&7) // pocet bitu posuvu datoveho kanalu v datovem portu.................... #define LCD_PORT (LCD_DATA_LSB>>3) // adresa LCD datoveho portu.................... #define LCD_TRIS (LCD_PORT+0x80) // adresa prislusneho TRIS registru.................... #define LCD_MASK (0xF<<LCD_SHIFT) // maska platnych bitu.................... //.................... #if LCD_SHIFT>4 // kontrola mezi.................... #error LCD data port LSB bit not in range 0..4.................... #endif.................... #endif............................................................ // Definice konstant pro LCD display.................... //.................... #define LCD_CURSOR_ON_ 0x0E // kurzor jako blikajici radka pod znakem.................... #define LCD_CURSOR_OFF_ 0x0C // zadny kurzor.................... #define LCD_LINE_2 0x40 // adresa 1. znaku 2. radky............................................................ // Definice rezimu LCD displeje.................... //.................... BYTE const LCD_INIT_STRING[4] =.................... {.................... 0x28, // intrfejs 4 bity, 2 radky, font 5x7.................... LCD_CURSOR_OFF_, // display on, kurzor off,.................... 0x01, // clear displeje.................... 0x06 // inkrement pozice kurzoru (posun kurzoru doprava).................... };............................................................ // Odesle nibble do displeje (posle data a klikne signalem e).................... //.................... void lcd_send_nibble( BYTE n ).................... {.................... #ifdef LCD_DATA_LSB.................... // data jsou za sebou na 4 bitech jednoho portu.................... *LCD_PORT = (*LCD_PORT & ~LCD_MASK) | ((n << LCD_SHIFT) & LCD_MASK); // nastav datove bity portu a ostatni zachovej.................... #else.................... // data jsou na libovolnych 4 bitech libovolnych portu.................... output_bit(LCD_D0,bit_test(n,0));0080: BTFSC 45.00081: GOTO 0840082: BCF 06.60083: GOTO 0850084: BSF 06.60085: BSF 03.50086: BCF 06.6.................... output_bit(LCD_D1,bit_test(n,1));0087: BCF 03.50088: BTFSC 45.10089: GOTO 08C008A: BCF 06.5008B: GOTO 08D008C: BSF 06.5008D: BSF 03.5008E: BCF 06.5.................... output_bit(LCD_D2,bit_test(n,2));008F: BCF 03.50090: BTFSC 45.20091: GOTO 0940092: BCF 06.40093: GOTO 0950094: BSF 06.40095: BSF 03.50096: BCF 06.4.................... output_bit(LCD_D3,bit_test(n,3));0097: BCF 03.50098: BTFSC 45.30099: GOTO 09C009A: BCF 08.4009B: GOTO 09D009C: BSF 08.4009D: BSF 03.5009E: BCF 08.4.................... #endif.................... output_bit(LCD_E,1); // vzestupna hrana009F: BCF 03.500A0: BSF 06.700A1: BSF 03.500A2: BCF 06.7.................... delay_us(1); // pockej alespon 450ns od e nebo alespon 195ns od dat00A3: GOTO 0A4.................... output_bit(LCD_E,0); // sestupna hrana (minimalni perioda e je 1us)00A4: BCF 03.500A5: BCF 06.700A6: BSF 03.500A7: BCF 06.7.................... }00A8: BCF 03.500A9: RETURN............................................................ // Odesle bajt do registru LCD.................... //.................... // Pokud je Adr=0 .. instrukcni registr.................... // Pokud je Adr=1 .. datovy registr.................... //.................... void lcd_send_byte( BOOLEAN Adr, BYTE n ).................... {.................... output_bit(LCD_RS,Adr); // vyber registr00AA: MOVF 43,F00AB: BTFSS 03.200AC: GOTO 0AF00AD: BCF 07.700AE: GOTO 0B000AF: BSF 07.700B0: BCF 27.700B1: MOVF 27,W00B2: BSF 03.500B3: MOVWF 07.................... swap(n);00B4: BCF 03.500B5: SWAPF 44,F.................... lcd_send_nibble(n); // posli horni pulku bajtu00B6: MOVF 44,W00B7: MOVWF 4500B8: CALL 080.................... swap(n);00B9: SWAPF 44,F.................... lcd_send_nibble(n); // posli spodni pulku bajtu00BA: MOVF 44,W00BB: MOVWF 4500BC: CALL 080.................... delay_us(40); // minimalni doba na provedeni prikazu00BD: MOVLW 1A00BE: MOVWF 7700BF: DECFSZ 77,F00C0: GOTO 0BF00C1: NOP.................... }00C2: RETURN............................................................ // Provede inicializaci LCD displeje, smaze obsah a nastavi mod displeje.................... //.................... // Tato procedura se musi volat pred pouzitim ostatnich lcd_ procedur.................... //.................... void lcd_init().................... {........................................ int i; // pocitadlo cyklu........................................ delay_ms(20); // spozdeni pro provedeni startu displeje po zapnuti napajeni00C3: MOVLW 1400C4: MOVWF 3F00C5: CALL 06C........................................ #ifdef LCD_DATA_LSB.................... // data jsou na 4 bitech za sebou, nastav smer pro vsechny dalsi prenosy.................... *LCD_TRIS = *LCD_TRIS & ~LCD_MASK; // nuluj odpovidajici bity tris registru datoveho portu LCD.................... #endif........................................ output_bit(LCD_RS,0); // nastav jako vystup a nastav klidovy stav00C6: BCF 07.700C7: BCF 27.700C8: MOVF 27,W00C9: BSF 03.500CA: MOVWF 07.................... output_bit(LCD_E, 0); // nastav jako vystup a nastav klidovy stav00CB: BCF 03.500CC: BCF 06.700CD: BSF 03.500CE: BCF 06.7........................................ for (i=0; i<3; i++) // nastav lcd do rezimu 8 bitu sbernice00CF: BCF 03.500D0: CLRF 3100D1: MOVF 31,W00D2: SUBLW 0200D3: BTFSS 03.000D4: GOTO 0DD.................... {.................... delay_ms(2); // muze byt rozdelany prenos dat (2x 4 bity) nebo pomaly povel00D5: MOVLW 0200D6: MOVWF 3F00D7: CALL 06C.................... lcd_send_nibble(3); // rezim 8 bitu00D8: MOVLW 0300D9: MOVWF 4500DA: CALL 080.................... }00DB: INCF 31,F00DC: GOTO 0D1........................................ delay_us(40); // cas na zpracovani00DD: MOVLW 1A00DE: MOVWF 7700DF: DECFSZ 77,F00E0: GOTO 0DF00E1: NOP.................... lcd_send_nibble(2); // nastav rezim 4 bitu (plati od nasledujiciho prenosu)00E2: MOVLW 0200E3: MOVWF 4500E4: CALL 080.................... delay_us(40); // cas na zpracovani00E5: MOVLW 1A00E6: MOVWF 7700E7: DECFSZ 77,F00E8: GOTO 0E700E9: NOP........................................ for (i=0;i<3;i++) // proved inicializaci (nastaveni modu, smazani apod)00EA: CLRF 3100EB: MOVF 31,W00EC: SUBLW 0200ED: BTFSS 03.000EE: GOTO 0FB.................... {.................... lcd_send_byte(0,LCD_INIT_STRING[i]);00EF: MOVF 31,W00F0: CALL 02F00F1: MOVWF 3200F2: CLRF 4300F3: MOVF 32,W00F4: MOVWF 4400F5: CALL 0AA.................... delay_ms(2);00F6: MOVLW 0200F7: MOVWF 3F00F8: CALL 06C.................... }00F9: INCF 31,F00FA: GOTO 0EB.................... }00FB: RETURN............................................................ // Proved presun kurzoru.................... //.................... // Pozice 1.1 je domu.................... //.................... void lcd_gotoxy( BYTE x, BYTE y).................... {........................................ BYTE Adr;........................................ Adr=x-1;00FC: MOVLW 0100FD: SUBWF 3F,W00FE: MOVWF 41.................... if(y==2)00FF: MOVF 40,W0100: SUBLW 020101: BTFSS 03.20102: GOTO 105.................... Adr+=LCD_LINE_2;0103: MOVLW 400104: ADDWF 41,F........................................ lcd_send_byte(0,0x80|Adr);0105: MOVF 41,W0106: IORLW 800107: MOVWF 420108: CLRF 430109: MOVF 42,W010A: MOVWF 44010B: CALL 0AA.................... }010C: RETURN............................................................ // Zapis znaku na displej, zpracovani ridicich znaku.................... //.................... void lcd_putc( char c).................... {........................................ switch (c).................... {010D: MOVF 3E,W010E: XORLW 0C010F: BTFSC 03.20110: GOTO 11B0111: XORLW 060112: BTFSC 03.20113: GOTO 1230114: XORLW 070115: BTFSC 03.20116: GOTO 1290117: XORLW 050118: BTFSC 03.20119: GOTO 12E011A: GOTO 133.................... case '\f' : lcd_send_byte(0,1); // smaz displej011B: CLRF 43011C: MOVLW 01011D: MOVWF 44011E: CALL 0AA.................... delay_ms(2);011F: MOVLW 020120: MOVWF 3F0121: CALL 06C.................... break;0122: GOTO 13F.................... case '\n' : lcd_gotoxy(1,2); break; // presun se na 1. znak 2. radky0123: MOVLW 010124: MOVWF 3F0125: MOVLW 020126: MOVWF 400127: CALL 0FC0128: GOTO 13F.................... case '\r' : lcd_gotoxy(1,1); break; // presun home0129: MOVLW 01012A: MOVWF 3F012B: MOVWF 40012C: CALL 0FC012D: GOTO 13F.................... case '\b' : lcd_send_byte(0,0x10); break; // posun kurzor o 1 zpet012E: CLRF 43012F: MOVLW 100130: MOVWF 440131: CALL 0AA0132: GOTO 13F.................... default : if (c<0x20) c&=0x7; // preklopeni definovatelnych znaku na rozsah 0 az 0x1F0133: MOVF 3E,W0134: SUBLW 1F0135: BTFSS 03.00136: GOTO 1390137: MOVLW 070138: ANDWF 3E,F.................... lcd_send_byte(1,c); break; // zapis znak0139: MOVLW 01013A: MOVWF 43013B: MOVF 3E,W013C: MOVWF 44013D: CALL 0AA013E: GOTO 13F.................... }.................... }013F: RETURN............................................................ // Zapni kurzor.................... //.................... void lcd_cursor_on().................... {.................... lcd_send_byte(0,LCD_CURSOR_ON_);.................... }............................................................ // Vypni kurzor.................... //.................... void lcd_cursor_off().................... {.................... lcd_send_byte(0,LCD_CURSOR_OFF_);.................... }............................................................ // Smaz displej.................... //.................... void lcd_clr().................... {.................... lcd_putc('\f');.................... }............................................................ // Definice vlastnich fontu.................... //.................... // Vlastnich definic muze byt jen 8 do pozic 0 az 7 pameti CGRAM radice lcd displeje.................... // Pro snadne definovani jsou pripraveny nasledujici definice a na konci souboru je uveden.................... // priklad pouziti definovanych znaku............................................................. // Pomocna procedura pro posilani ridicich dat do radice displeje.................... //.................... void lcd_putc2(int Data).................... {.................... lcd_send_byte(1,Data);.................... }............................................................ // Pomocne definice pro programovani obsahu CGRAM.................... //.................... #define lcd_define_start(Code) lcd_send_byte(0,0x40+(Code<<3)); delay_ms(2).................... #define lcd_define_def(String) printf(lcd_putc2,String);.................... #define lcd_define_end() lcd_send_byte(0,3); delay_ms(2)............................................................ // Vlastni vykonne makro pro definovani fontu do pozice Index CGRAM s definicnim retezcem Def.................... //.................... #define lcd_define_char(Index, Def) lcd_define_start(Index); lcd_define_def(Def); lcd_define_end();............................................................ // Pripravene definice fontu vybranych znaku.................... // V tabulce nesmi byt 00 (konec retezce v printf()), misto toho davame 80.................... //.................... #define LCD_CHAR_BAT100 "\x0E\x1F\x1F\x1F\x1F\x1F\x1F\x1F" /* symbol plne baterie */.................... #define LCD_CHAR_BAT50 "\x0E\x1F\x11\x11\x13\x17\x1F\x1F" /* symbol polovicni baterie */.................... #define LCD_CHAR_BAT0 "\x0E\x1F\x11\x11\x11\x11\x11\x1F" /* symbol vybite baterie */.................... #define LCD_CHAR_UP "\x80\x04\x0E\x15\x04\x04\x04\x80" /* symbol sipka nahoru */.................... #define LCD_CHAR_DOWN "\x80\x04\x04\x04\x15\x0E\x04\x80" /* symbol Sipka dolu */.................... #define LCD_CHAR_LUA "\x04\x0E\x11\x11\x1F\x11\x11\x80" /* A s carkou */.................... #define LCD_CHAR_LLA "\x01\x02\x0E\x01\x1F\x11\x0F\x80" /* a s carkou */.................... #define LCD_CHAR_HUC "\x0A\x0E\x11\x10\x10\x11\x0E\x80" /* C s hackem */.................... #define LCD_CHAR_HLC "\x0A\x04\x0E\x10\x10\x11\x0E\x80" /* c s hackem */.................... #define LCD_CHAR_HUD "\x0A\x1C\x12\x11\x11\x12\x1C\x80" /* D s hackem */.................... #define LCD_CHAR_HLD "\x05\x03\x0D\x13\x11\x11\x0F\x80" /* d s hackem */.................... #define LCD_CHAR_LUE "\x04\x1F\x10\x10\x1E\x10\x1F\x80" /* E s carkou */.................... #define LCD_CHAR_LLE "\x01\x02\x0E\x11\x1F\x10\x0E\x80" /* e s carkou */.................... #define LCD_CHAR_HUE "\x0A\x1F\x10\x1E\x10\x10\x1F\x80" /* E s hackem */.................... #define LCD_CHAR_HLE "\x0A\x04\x0E\x11\x1F\x10\x0E\x80" /* e s hackem */.................... #define LCD_CHAR_LUI "\x04\x0E\x04\x04\x04\x04\x0E\x80" /* I s carkou */.................... #define LCD_CHAR_LLI "\x02\x04\x80\x0C\x04\x04\x0E\x80" /* i s carkou */.................... #define LCD_CHAR_HUN "\x0A\x15\x11\x19\x15\x13\x11\x80" /* N s hackem */.................... #define LCD_CHAR_HLN "\x0A\x04\x16\x19\x11\x11\x11\x80" /* n s hackem */.................... #define LCD_CHAR_LUO "\x04\x0E\x11\x11\x11\x11\x0E\x80" /* O s carkou */.................... #define LCD_CHAR_LLO "\x02\x04\x0E\x11\x11\x11\x0E\x80" /* o s carkou */.................... #define LCD_CHAR_HUR "\x0A\x1E\x11\x1E\x14\x12\x11\x80" /* R s hackem */.................... #define LCD_CHAR_HLR "\x0A\x04\x16\x19\x10\x10\x10\x80" /* r s hackem */.................... #define LCD_CHAR_HUS "\x0A\x0F\x10\x0E\x01\x01\x1E\x80" /* S s hackem */.................... #define LCD_CHAR_HLS "\x0A\x04\x0E\x10\x0E\x01\x1E\x80" /* s s hackem */.................... #define LCD_CHAR_HUT "\x0A\x1F\x04\x04\x04\x04\x04\x80" /* T s hackem */.................... #define LCD_CHAR_HLT "\x0A\x0C\x1C\x08\x08\x09\x06\x80" /* t s hackem */.................... #define LCD_CHAR_LUU "\x02\x15\x11\x11\x11\x11\x0E\x80" /* U s carkou */.................... #define LCD_CHAR_LLU "\x02\x04\x11\x11\x11\x13\x0D\x80" /* u s carkou */.................... #define LCD_CHAR_CUU "\x06\x17\x11\x11\x11\x11\x0E\x80" /* U s krouzkem */.................... #define LCD_CHAR_CLU "\x06\x06\x11\x11\x11\x11\x0E\x80" /* u s krouzkem */.................... #define LCD_CHAR_LUY "\x02\x15\x11\x0A\x04\x04\x04\x80" /* Y s carkou */.................... #define LCD_CHAR_LLY "\x02\x04\x11\x11\x0F\x01\x0E\x80" /* y s carkou */.................... #define LCD_CHAR_HUZ "\x0A\x1F\x01\x02\x04\x08\x1F\x80" /* Z s hackem */.................... #define LCD_CHAR_HLZ "\x0A\x04\x1F\x02\x04\x08\x1F\x80" /* z s hackem */............................................................ // Priklad pouziti definovanych znaku.................... //.................... //.................... //void lcd_sample().................... //{.................... // lcd_define_char(0,LCD_CHAR_BAT50); // Priklad definice znaku baterie do pozice 0.................... // lcd_define_char(2,LCD_CHAR_HLE LCD_CHAR_LUI); // Priklad definice znaku e s hackem a I s carkou od pozice 2.................... // // vsimnete si, ze neni carka mezi retezci s definici (oba retezce definuji.................... // // jediny definicni retezec).................... // printf(lcd_putc,"\fZnaky:\20\22\23"); // priklad vypisu znaku z pozice 0, 2 a 3.................... // delay_ms(1000);.................... // lcd_define_char(0,LCD_CHAR_BAT0); // Predefinovani tvaru znaku v pozici 0.................... // delay_ms(1000);.................... //}............................................................ int1 value=0;........................................ #INT_EXT //preruseni od RB0.................... void EXT_isr(void).................... {........................................ value=~value;*0037: MOVLW 010038: XORWF 28,F........................................ }....................0039: BCF 0B.1003A: BCF 0A.3003B: BCF 0A.4003C: GOTO 01B.................... void main().................... {*038E: CLRF 04038F: BCF 03.70390: MOVLW 1F0391: ANDWF 03,F0392: MOVLW 710393: BSF 03.50394: MOVWF 0F0395: MOVF 0F,W0396: BCF 03.50397: BCF 28.00398: BSF 03.50399: BSF 03.6039A: MOVF 09,W039B: ANDLW C0039C: MOVWF 09039D: BCF 03.6039E: BCF 1F.4039F: BCF 1F.503A0: MOVLW 0003A1: BSF 03.603A2: MOVWF 0803A3: BCF 03.503A4: CLRF 0703A5: CLRF 0803A6: CLRF 09.................... double value1, value2;.................... enable_interrupts(INT_EXT); //povolení pøeruseni*03AA: BSF 0B.4.................... enable_interrupts(GLOBAL);03AB: MOVLW C003AC: IORWF 0B,F.................... ext_int_edge(H_TO_L);03AD: BSF 03.503AE: BCF 01.6.................... setup_adc_ports(PIN_A0); //piny pro A/D RA003AF: BSF 03.603B0: MOVF 09,W03B1: ANDLW C003B2: MOVWF 0903B3: BCF 03.603B4: BCF 1F.403B5: BCF 1F.503B6: MOVLW 2803B7: BSF 03.603B8: MOVWF 08.................... setup_adc_ports(PIN_A1); //piny pro A/D RA103B9: MOVF 09,W03BA: ANDLW C003BB: MOVWF 0903BC: BCF 03.603BD: BCF 1F.403BE: BCF 1F.503BF: MOVLW 2903C0: BSF 03.603C1: MOVWF 08.................... setup_adc(ADC_CLOCK_DIV_8);03C2: BCF 03.503C3: BCF 03.603C4: BSF 1F.603C5: BCF 1F.703C6: BSF 03.503C7: BCF 1F.703C8: BCF 03.503C9: BSF 1F.0.................................................................................................... setup_spi(SPI_SS_DISABLED);03CA: BCF 14.503CB: BCF 27.503CC: MOVF 27,W03CD: BSF 03.503CE: MOVWF 0703CF: BCF 03.503D0: BSF 27.403D1: MOVF 27,W03D2: BSF 03.503D3: MOVWF 0703D4: BCF 03.503D5: BCF 27.303D6: MOVF 27,W03D7: BSF 03.503D8: MOVWF 0703D9: MOVLW 0103DA: BCF 03.503DB: MOVWF 1403DC: MOVLW 0003DD: BSF 03.503DE: MOVWF 14.................... setup_timer_0(RTCC_INTERNAL|RTCC_DIV_1);03DF: MOVF 01,W03E0: ANDLW C703E1: IORLW 0803E2: MOVWF 01.................... setup_timer_1(T1_DISABLED);03E3: BCF 03.503E4: CLRF 10.................... setup_timer_2(T2_DISABLED,0,1);03E5: MOVLW 0003E6: MOVWF 7803E7: MOVWF 1203E8: MOVLW 0003E9: BSF 03.503EA: MOVWF 12.................... setup_ccp1(CCP_OFF);03EB: BCF 03.503EC: BSF 27.203ED: MOVF 27,W03EE: BSF 03.503EF: MOVWF 0703F0: BCF 03.503F1: CLRF 1703F2: BSF 03.503F3: CLRF 1B03F4: CLRF 1C03F5: MOVLW 0103F6: MOVWF 1D.................... setup_comparator(NC_NC_NC_NC);03F7: BCF 03.503F8: BSF 03.603F9: CLRF 0703FA: CLRF 0803FB: CLRF 09.................... setup_oscillator(OSC_8MHZ);03FC: MOVLW 7103FD: BSF 03.503FE: BCF 03.603FF: MOVWF 0F0400: MOVF 0F,W........................................ lcd_init(); //inicializuje LCD0401: BCF 03.50402: CALL 0C3........................................ LCD_gotoxy(1,1); //na LCD 1bunka 1øadek0403: MOVLW 010404: MOVWF 3F0405: MOVWF 400406: CALL 0FC.................... printf(lcd_putc,"Tomas Pavlicek");0407: MOVLW 3D0408: BSF 03.60409: MOVWF 0D040A: MOVLW 00040B: MOVWF 0F040C: BCF 03.6040D: CALL 140.................... LCD_gotoxy(1,2);040E: MOVLW 01040F: MOVWF 3F0410: MOVLW 020411: MOVWF 400412: CALL 0FC.................... printf(lcd_putc,"CVUT 2012/2013");0413: MOVLW 450414: BSF 03.60415: MOVWF 0D0416: MOVLW 000417: MOVWF 0F0418: BCF 03.60419: CALL 140.................... Delay_ms(1000);041A: MOVLW 04041B: MOVWF 31041C: MOVLW FA041D: MOVWF 3F041E: CALL 06C041F: DECFSZ 31,F0420: GOTO 41C........................................ while(true).................... {.................... lcd_init(); //inicializuje LCD0421: CALL 0C3.................... set_adc_channel(0); //nastavi AD na kanál 0 (RA0)0422: MOVLW 000423: MOVWF 780424: MOVF 1F,W0425: ANDLW C30426: IORWF 78,W0427: MOVWF 1F.................... read_adc(ADC_START_ONLY); // Spustime A/D prevod0428: BSF 1F.1.................... Delay_ms(1);0429: MOVLW 01042A: MOVWF 3F042B: CALL 06C.................... while(!adc_done()); // Cekame na dokonceni prevodu042C: BTFSC 1F.1042D: GOTO 42C.................... value1=read_adc(); // Precteme hodnotu z prevodniku042E: BSF 1F.1042F: BTFSC 1F.10430: GOTO 42F0431: MOVF 1E,W0432: CLRF 320433: MOVWF 310434: CALL 1860435: MOVF 7A,W0436: MOVWF 2C0437: MOVF 79,W0438: MOVWF 2B0439: MOVF 78,W043A: MOVWF 2A043B: MOVF 77,W043C: MOVWF 29.................... //Delay_ms(100);.................... set_adc_channel(1); //nastavi AD na kanál 1 (RA1)043D: MOVLW 04043E: MOVWF 78043F: MOVF 1F,W0440: ANDLW C30441: IORWF 78,W0442: MOVWF 1F.................... read_adc(ADC_START_ONLY); // Spustime A/D prevod0443: BSF 1F.1.................... Delay_ms(1);0444: MOVLW 010445: MOVWF 3F0446: CALL 06C.................... while(!adc_done()); // Cekame na dokonceni prevodu0447: BTFSC 1F.10448: GOTO 447.................... value2=read_adc(); // Precteme hodnotu z prevodniku0449: BSF 1F.1044A: BTFSC 1F.1044B: GOTO 44A044C: MOVF 1E,W044D: CLRF 32044E: MOVWF 31044F: CALL 1860450: MOVF 7A,W0451: MOVWF 300452: MOVF 79,W0453: MOVWF 2F0454: MOVF 78,W0455: MOVWF 2E0456: MOVF 77,W0457: MOVWF 2D............................................................ if(value==1)0458: BTFSS 28.00459: GOTO 49E.................... {.................... LCD_gotoxy(1,1); //na LCD 1bunka 1øadek045A: MOVLW 01045B: MOVWF 3F045C: MOVWF 40045D: CALL 0FC.................... printf(lcd_putc,"Napeti:%5.3f V", value1);;045E: MOVLW 4E045F: BSF 03.60460: MOVWF 0D0461: MOVLW 000462: MOVWF 0F0463: BCF 03.00464: MOVLW 070465: BCF 03.60466: MOVWF 310467: CALL 1A30468: MOVLW 040469: MOVWF 04046A: MOVF 2C,W046B: MOVWF 34046C: MOVF 2B,W046D: MOVWF 33046E: MOVF 2A,W046F: MOVWF 320470: MOVF 29,W0471: MOVWF 310472: MOVLW 030473: MOVWF 350474: CALL 2340475: MOVLW 200476: MOVWF 3E0477: CALL 10D0478: MOVLW 560479: MOVWF 3E047A: CALL 10D.................... LCD_gotoxy(1,2);047B: MOVLW 01047C: MOVWF 3F047D: MOVLW 02047E: MOVWF 40047F: CALL 0FC.................... printf(lcd_putc,"Proud:%5.3f I", value2);0480: MOVLW 560481: BSF 03.60482: MOVWF 0D0483: MOVLW 000484: MOVWF 0F0485: BCF 03.00486: MOVLW 060487: BCF 03.60488: MOVWF 310489: CALL 1A3048A: MOVLW 04048B: MOVWF 04048C: MOVF 30,W048D: MOVWF 34048E: MOVF 2F,W048F: MOVWF 330490: MOVF 2E,W0491: MOVWF 320492: MOVF 2D,W0493: MOVWF 310494: MOVLW 030495: MOVWF 350496: CALL 2340497: MOVLW 200498: MOVWF 3E0499: CALL 10D049A: MOVLW 49049B: MOVWF 3E049C: CALL 10D........................................ }.................... else049D: GOTO 4E1.................... {.................... LCD_gotoxy(1,1); //na LCD 1bunka 1øadek049E: MOVLW 01049F: MOVWF 3F04A0: MOVWF 4004A1: CALL 0FC.................... printf(lcd_putc,"Napeti:%5.3f V", value1);;04A2: MOVLW 5D04A3: BSF 03.604A4: MOVWF 0D04A5: MOVLW 0004A6: MOVWF 0F04A7: BCF 03.004A8: MOVLW 0704A9: BCF 03.604AA: MOVWF 3104AB: CALL 1A304AC: MOVLW 0404AD: MOVWF 0404AE: MOVF 2C,W04AF: MOVWF 3404B0: MOVF 2B,W04B1: MOVWF 3304B2: MOVF 2A,W04B3: MOVWF 3204B4: MOVF 29,W04B5: MOVWF 3104B6: MOVLW 0304B7: MOVWF 3504B8: CALL 23404B9: MOVLW 2004BA: MOVWF 3E04BB: CALL 10D04BC: MOVLW 5604BD: MOVWF 3E04BE: CALL 10D.................... LCD_gotoxy(1,2);04BF: MOVLW 0104C0: MOVWF 3F04C1: MOVLW 0204C2: MOVWF 4004C3: CALL 0FC.................... printf(lcd_putc,"Naboj:%5.3f I", value2);04C4: MOVLW 6504C5: BSF 03.604C6: MOVWF 0D04C7: MOVLW 0004C8: MOVWF 0F04C9: BCF 03.004CA: MOVLW 0604CB: BCF 03.604CC: MOVWF 3104CD: CALL 1A304CE: MOVLW 0404CF: MOVWF 0404D0: MOVF 30,W04D1: MOVWF 3404D2: MOVF 2F,W04D3: MOVWF 3304D4: MOVF 2E,W04D5: MOVWF 3204D6: MOVF 2D,W04D7: MOVWF 3104D8: MOVLW 0304D9: MOVWF 3504DA: CALL 23404DB: MOVLW 2004DC: MOVWF 3E04DD: CALL 10D04DE: MOVLW 4904DF: MOVWF 3E04E0: CALL 10D........................................ }.................... Delay_ms(500);04E1: MOVLW 0204E2: MOVWF 3104E3: MOVLW FA04E4: MOVWF 3F04E5: CALL 06C04E6: DECFSZ 31,F04E7: GOTO 4E3.................... }04E8: GOTO 421.................... }....................04E9: SLEEPConfiguration Fuses:Word 1: 2CF5 INTRC NOWDT NOPUT MCLR NOPROTECT NOCPD NOBROWNOUT IESO FCMEN NOLVP NODEBUGWord 2: 3FFF NOWRT BORV40