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kaklik |
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//////// Header file for the PIC16F88
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#device PIC16F88
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#nolist
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//////// Program memory: 4096x14 Data RAM: 368 Stack: 8
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//////// I/O: 16 Analog Pins: 7
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//////// Data EEPROM: 256
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//////// C Scratch area: 77 ID Location: 2000
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// Fuses:
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// Oscilator: LP - oscilator LP
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// XT - oscilator XT
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// HS - oscilator HS
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// EC_IO - externi vstup, RA6/CLKO je IO port
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// INTRC - RC oscilator, RA6/CLKO je CLKO, RA7/CLKI je IO port port,
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// INTRC_IO - RC oscilator, RA6 i RA7 je IO port
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// RC - ext RC, RA6/CLKO je CLKO
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// RC_IO - ext RC, RA6 je IO port
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// Watch: NOWDT - neni watchog
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// WDT - je watchdog
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// PUT: NOPUT - neni power up timer
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// PUT - je power up timer
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// MCLR: MCLR - RA5/MCLR je MCLR
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// NOMCLR - RA5/MCLR je IO port
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// BOR: BROWNOUT - BOR povolen
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// NOBROWNOUT - BOR zakazan
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// LVP: LVP - RB3/PGM je PGM
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// NOLVP - RB3/PGM je IO port
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// CPD: CPD - je ochrana EEPROM
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// NOCPD - neni ochrana EEPROM
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// WRT WRT - zakaz zapisu do pameti programu
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// NOWRT - povolen zapis do pameti programu
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// DEBUG: DEBUG - RB6 a RB7 jsou ICD port
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// NODEBUG - RB6 a RB7 jsou IO port
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// CCPMX: CCPB0 - CCP/PWM na RB0
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// CCPB3 - CCP/PWM na RB3
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// CP: PROTECT - pamet programu je chranena
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// NOPROTECT - pamet programu neni chranena
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//
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////////////////////////////////////////////////////////////////// I/O
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// Discrete I/O Functions: SET_TRIS_x(), OUTPUT_x(), INPUT_x(),
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// PORT_B_PULLUPS(), INPUT(),
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// OUTPUT_LOW(), OUTPUT_HIGH(),
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// OUTPUT_FLOAT(), OUTPUT_BIT()
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// Constants used to identify pins in the above are:
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#define PIN_A0 40
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#define PIN_A1 41
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#define PIN_A2 42
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#define PIN_A3 43
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#define PIN_A4 44
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#define PIN_A5 45
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#define PIN_A6 46
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#define PIN_A7 47
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#define PIN_B0 48
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#define PIN_B1 49
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#define PIN_B2 50
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#define PIN_B3 51
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#define PIN_B4 52
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#define PIN_B5 53
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#define PIN_B6 54
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#define PIN_B7 55
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////////////////////////////////////////////////////////////////// Useful defines
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#define FALSE 0
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#define TRUE 1
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#define BYTE int
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#define BOOLEAN short int
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#define getc getch
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#define fgetc getch
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#define getchar getch
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#define putc putchar
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#define fputc putchar
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#define fgets gets
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#define fputs puts
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////////////////////////////////////////////////////////////////// Control
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// Control Functions: RESET_CPU(), SLEEP(), RESTART_CAUSE()
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// Constants returned from RESTART_CAUSE() are:
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#define WDT_FROM_SLEEP 0
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#define WDT_TIMEOUT 8
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#define MCLR_FROM_SLEEP 16
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#define NORMAL_POWER_UP 24
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////////////////////////////////////////////////////////////////// Timer 0
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// Timer 0 (AKA RTCC)Functions: SETUP_COUNTERS() or SETUP_TIMER0(),
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// SET_TIMER0() or SET_RTCC(),
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// GET_TIMER0() or GET_RTCC()
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// Constants used for SETUP_TIMER0() are:
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#define RTCC_INTERNAL 0
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#define RTCC_EXT_L_TO_H 32
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#define RTCC_EXT_H_TO_L 48
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#define RTCC_DIV_1 8
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#define RTCC_DIV_2 0
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#define RTCC_DIV_4 1
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#define RTCC_DIV_8 2
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#define RTCC_DIV_16 3
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#define RTCC_DIV_32 4
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#define RTCC_DIV_64 5
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#define RTCC_DIV_128 6
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#define RTCC_DIV_256 7
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#define RTCC_8_BIT 0
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// Constants used for SETUP_COUNTERS() are the above
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// constants for the 1st param and the following for
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// the 2nd param:
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////////////////////////////////////////////////////////////////// WDT
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// Watch Dog Timer Functions: SETUP_WDT() or SETUP_COUNTERS() (see above)
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// RESTART_WDT()
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//
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#define WDT_18MS 8
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#define WDT_36MS 9
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#define WDT_72MS 10
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#define WDT_144MS 11
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#define WDT_288MS 12
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#define WDT_576MS 13
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#define WDT_1152MS 14
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#define WDT_2304MS 15
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////////////////////////////////////////////////////////////////// Timer 1
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// Timer 1 Functions: SETUP_TIMER_1, GET_TIMER1, SET_TIMER1
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// Constants used for SETUP_TIMER_1() are:
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// (or (via |) together constants from each group)
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#define T1_DISABLED 0
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#define T1_INTERNAL 0x85
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#define T1_EXTERNAL 0x87
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#define T1_EXTERNAL_SYNC 0x83
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#define T1_CLK_OUT 8
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#define T1_DIV_BY_1 0
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#define T1_DIV_BY_2 0x10
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#define T1_DIV_BY_4 0x20
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#define T1_DIV_BY_8 0x30
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////////////////////////////////////////////////////////////////// Timer 2
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// Timer 2 Functions: SETUP_TIMER_2, GET_TIMER2, SET_TIMER2
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// Constants used for SETUP_TIMER_2() are:
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#define T2_DISABLED 0
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#define T2_DIV_BY_1 4
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#define T2_DIV_BY_4 5
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#define T2_DIV_BY_16 6
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////////////////////////////////////////////////////////////////// CCP
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// CCP Functions: SETUP_CCPx, SET_PWMx_DUTY
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// CCP Variables: CCP_x, CCP_x_LOW, CCP_x_HIGH
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// Constants used for SETUP_CCPx() are:
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#define CCP_OFF 0
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#define CCP_CAPTURE_FE 4
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#define CCP_CAPTURE_RE 5
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#define CCP_CAPTURE_DIV_4 6
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#define CCP_CAPTURE_DIV_16 7
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#define CCP_COMPARE_SET_ON_MATCH 8
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#define CCP_COMPARE_CLR_ON_MATCH 9
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#define CCP_COMPARE_INT 0xA
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#define CCP_COMPARE_RESET_TIMER 0xB
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#define CCP_PWM 0xC
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#define CCP_PWM_PLUS_1 0x1c
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#define CCP_PWM_PLUS_2 0x2c
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#define CCP_PWM_PLUS_3 0x3c
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long CCP_1;
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#byte CCP_1 = 0x15
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#byte CCP_1_LOW= 0x15
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#byte CCP_1_HIGH= 0x16
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////////////////////////////////////////////////////////////////// COMP
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// Comparator Variables: C1OUT, C2OUT
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// Constants used in setup_comparators() are:
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#define A0_A3_A1_A2 4
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#define A0_A2_A1_A2 3
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#define NC_NC_A1_A2 5
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#define NC_NC_NC_NC 7
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#define A0_VR_A1_VR 2
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#define A3_VR_A2_VR 10
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#define A0_A2_A1_A2_OUT_ON_A3_A4 6
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#define A3_A2_A1_A2 9
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//#bit C1OUT = 0x1f.6
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//#bit C2OUT = 0x1f.7
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////////////////////////////////////////////////////////////////// VREF
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// Constants used in setup_vref() are:
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#define VREF_LOW 0xa0
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#define VREF_HIGH 0x80
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#define VREF_A2 0x40
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////////////////////////////////////////////////////////////////// INT
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// Interrupt Functions: ENABLE_INTERRUPTS(), DISABLE_INTERRUPTS(),
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// EXT_INT_EDGE()
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//
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// Constants used in EXT_INT_EDGE() are:
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#define L_TO_H 0x40
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#define H_TO_L 0
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// Constants used in ENABLE/DISABLE_INTERRUPTS() are:
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#define GLOBAL 0x0BC0
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#define INT_RTCC 0x0B20
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#define INT_RB 0x0B08
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#define INT_EXT 0x0B10
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#define INT_TBE 0x8C10
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#define INT_RDA 0x8C20
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#define INT_TIMER1 0x8C01
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#define INT_TIMER2 0x8C02
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#define INT_CCP1 0x8C04
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#define INT_SSP 0x8C08
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#define INT_COMP 0x8D40
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#define INT_EEPROM 0x8D10
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#define INT_TIMER0 0x0B20
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#list
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