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kakl |
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#include "main.h" |
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#case |
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kakl |
5 |
#define REVERS 2 // 2*256 ms = 0,5 s |
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#define GO 117 // 117*256 ms = 30 s |
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#define GO_ZALUZIE 5 // 5*256 ms = 1,25 s |
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kakl |
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#define RECEIVE 12 // 3 s |
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kakl |
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kakl |
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#define S105A PIN_A0 |
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kakl |
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#define R110NU PIN_A1 |
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#define R110ND PIN_A2 |
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kakl |
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#define S104A PIN_A3 |
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kakl |
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#define R104VU PIN_A4 |
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#define R104VD PIN_A5 |
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#define R104JU PIN_A6 |
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#define R104JD PIN_A7 |
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kakl |
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kakl |
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#define S103J PIN_B0 |
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#define R103VU PIN_B1 |
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#define R103VD PIN_B2 |
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kakl |
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#define S106A PIN_B3 |
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#define S107A PIN_B4 |
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#define S109A PIN_B5 |
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//#define OS101 PIN_C0 |
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//#define OS105B PIN_C1 |
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//#define OS105C PIN_C2 |
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//#define PIN_C3 31763 |
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//#define PIN_C4 31764 |
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//#define PIN_C5 31765 |
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//#define PIN_C6 31766 //TX |
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//#define PIN_C7 31767 //RX |
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kakl |
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//#define S101A PIN_F0 |
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#define S105Z PIN_F1 |
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#define S102A PIN_F2 |
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#define S110N PIN_F3 |
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#define S108A PIN_F4 |
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#define S201A PIN_F5 |
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#define S110J PIN_F6 |
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kakl |
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/* |
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#define PIN_E0 31776 |
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#define PIN_E1 31777 |
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#define PIN_E2 31778 |
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#define PIN_E3 31779 |
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#define PIN_E4 31780 |
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#define PIN_E5 31781 |
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#define PIN_E6 31782 |
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#define PIN_E7 31783 |
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#define PIN_F0 31784 |
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#define PIN_F1 31785 |
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#define PIN_F2 31786 |
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#define PIN_F3 31787 |
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#define PIN_F4 31788 |
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#define PIN_F5 31789 |
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#define PIN_F6 31790 |
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#define PIN_F7 31791 |
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#define PIN_G0 31792 |
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#define PIN_G1 31793 |
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#define PIN_G2 31794 |
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#define PIN_G3 31795 |
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#define PIN_G4 31796 |
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#define PIN_G5 31797 |
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#define PIN_H0 31800 |
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#define PIN_H1 31801 |
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#define PIN_H2 31802 |
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#define PIN_H3 31803 |
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#define PIN_H4 31804 |
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#define PIN_H5 31805 |
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#define PIN_H6 31806 |
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#define PIN_H7 31807 |
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#define PIN_J0 31808 |
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#define PIN_J1 31809 |
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#define PIN_J2 31810 |
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#define PIN_J3 31811 |
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#define PIN_J4 31812 |
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#define PIN_J5 31813 |
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#define PIN_J6 31814 |
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#define PIN_J7 31815 |
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*/ |
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kakl |
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#bit CREN = 0xFAB.4 // USART enable register |
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#define LED1 PIN_J7 |
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kakl |
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#define LED2 PIN_J6 |
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#define ON(port) output_low(port); |
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#define OFF(port) output_high(port); |
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kakl |
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typedef enum {GO_UP, GO_DOWN, REVERS_UP, REVERS_DOWN, STOP} state; |
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kakl |
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kakl |
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state r103V, r110N, r104V, r104J; // Stavy rolet |
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int8 tr103V, tr110N, tr104V, tr104J; // Casovace rolet |
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int8 timer; // Casovac komunikace |
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kakl |
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#int_TIMER0 |
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void TIMER0_isr(void) |
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{ |
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kakl |
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if(tr103V>0) tr103V--; |
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if(tr110N>0) tr110N--; |
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if(tr104V>0) tr104V--; |
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if(tr104J>0) tr104J--; |
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if(timer>0) timer--; |
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kakl |
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output_toggle(LED2); |
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} |
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void up(state *status, int8 *timer) // Zmena stavu rolety smer nahoru |
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{ |
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switch (*status) |
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{ |
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case STOP: |
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case GO_DOWN: |
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*status=REVERS_UP; |
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*timer=REVERS; |
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break; |
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case REVERS_UP: |
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case GO_UP: |
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*status=STOP; |
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*timer=0; |
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break; |
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} |
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} |
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void down(state *status, int8 *timer) // Zmena stavu rolety smer dolu |
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{ |
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switch (*status) |
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{ |
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case STOP: |
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case GO_UP: |
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*status=REVERS_DOWN; |
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*timer=REVERS; |
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break; |
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case REVERS_DOWN: |
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case GO_DOWN: |
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*status=STOP; |
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*timer=0; |
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break; |
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} |
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} |
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#define run(x) { \ |
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switch(r##x) \ |
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{ \ |
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case STOP: \ |
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OFF(R##x##U); \ |
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OFF(R##x##D); \ |
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break; \ |
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case GO_UP: \ |
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ON(R##x##U); \ |
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OFF(R##x##D); \ |
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if(tr##x==0) {r##x=STOP;} \ |
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break; \ |
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case GO_DOWN: \ |
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OFF(R##x##U); \ |
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ON(R##x##D); \ |
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if(tr##x==0) {r##x=STOP;} \ |
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break; \ |
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case REVERS_UP: \ |
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OFF(R##x##U); \ |
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OFF(R##x##D); \ |
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if(tr##x==0) {r##x=GO_UP; tr##x=GO;} \ |
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break; \ |
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case REVERS_DOWN: \ |
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OFF(R##x##U); \ |
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OFF(R##x##D); \ |
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if(tr##x==0) {r##x=GO_DOWN; tr##x=GO;} \ |
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break; \ |
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} \ |
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} |
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kakl |
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void main() |
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{ |
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kakl |
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char buf[10]; |
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kakl |
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kakl |
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setup_adc_ports(NO_ANALOGS|VSS_VDD); |
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setup_adc(ADC_CLOCK_DIV_2); |
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setup_psp(PSP_DISABLED); |
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setup_spi(SPI_SS_DISABLED); |
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setup_wdt(WDT_OFF); |
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setup_timer_0(RTCC_INTERNAL|RTCC_DIV_1); |
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setup_timer_1(T1_DISABLED); |
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setup_timer_2(T2_DISABLED,0,1); |
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setup_timer_3(T3_DISABLED|T3_DIV_BY_1); |
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setup_ccp1(CCP_OFF); |
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setup_comparator(NC_NC_NC_NC); |
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setup_vref(FALSE); |
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kakl |
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kakl |
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OFF(S105A); // Vsechno zhasni a zastav |
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OFF(R110NU); |
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OFF(R110ND); |
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OFF(S104A); |
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OFF(R104VU); |
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OFF(R104VD); |
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OFF(R104JU); |
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OFF(R104JD); |
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OFF(S103J); |
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OFF(R103VU); |
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OFF(R103VD); |
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OFF(S106A); |
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OFF(S107A); |
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OFF(S109A); |
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OFF(S105Z); |
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OFF(S102A); |
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OFF(S110N); |
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OFF(S108A); |
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OFF(S201A); |
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OFF(S110J); |
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kakl |
215 |
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kakl |
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r103V=STOP; // Rolety jsou zastaveny |
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r110N=STOP; |
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r104V=STOP; |
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r104J=STOP; |
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output_high(LED1); // Indikace restartu |
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delay_ms(100); |
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output_low(LED1); |
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delay_ms(30); |
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output_high(LED1); |
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restart_wdt(); |
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delay_ms(100); |
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output_low(LED1); |
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delay_ms(30); |
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output_high(LED1); |
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restart_wdt(); |
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kakl |
232 |
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kakl |
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enable_interrupts(INT_TIMER0); |
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enable_interrupts(GLOBAL); |
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kakl |
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CREN=0; CREN=1; // Reinitialise USART |
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kakl |
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while(TRUE) |
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{ |
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kakl |
240 |
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if(kbhit()) // Chce po nas nekdo neco? |
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kakl |
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{ |
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kakl |
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buf[0]=getc(); |
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if((buf[0]=='S')||(buf[0]=='R')) // Jinym znakem nesmi zacinat prikaz |
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kakl |
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{ |
1748 |
kakl |
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int8 n=0; // Ukazatel do prijimaciho bufferu |
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timer=RECEIVE; // Timeout pro prijem znaku |
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do |
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kakl |
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{ |
1748 |
kakl |
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if(kbhit()) // Je dalsi znak? |
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kakl |
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{ |
1748 |
kakl |
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n++; |
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buf[n]=getc(); |
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kakl |
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} |
1748 |
kakl |
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} while ((buf[n]!='\r')&&(timer>0)&&(n<7)); |
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if (timer==0) { CREN=0; CREN=1; } // Reinitialise USART |
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output_toggle(LED1); // Ukonceni prijimani prikazu |
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if((timer>0)) |
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kakl |
263 |
{ |
1748 |
kakl |
264 |
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if((buf[0]=='S')&&(n>=4)) // Zmena stavu svetla |
1747 |
kakl |
266 |
{ |
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kakl |
267 |
if(buf[1]=='1') |
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{ |
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switch(buf[2]) |
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{ |
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case '2': |
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output_toggle(S102A); |
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break; |
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case '3': |
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output_toggle(S103J); |
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break; |
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case '4': |
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output_toggle(S104A); |
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break; |
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case '5': |
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if(buf[3]=='A') {output_toggle(S105A);} |
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if(buf[3]=='Z') {output_toggle(S105Z);} |
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break; |
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case '6': |
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output_toggle(S106A); |
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break; |
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case '7': |
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output_toggle(S107A); |
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break; |
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case '8': |
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output_toggle(S108A); |
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break; |
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case '9': |
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output_toggle(S109A); |
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break; |
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case 'a': |
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output_toggle(S110J); |
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output_toggle(S110N); |
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break; |
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} |
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} |
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kakl |
302 |
} |
1748 |
kakl |
303 |
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if((buf[0]=='R')&&(n>=5)) // Zmena stavu rolety |
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{ |
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if(buf[1]=='1') |
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{ |
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switch(buf[2]) |
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{ |
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case '3': |
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if(buf[4]=='U') {up(&r103V,&tr103V);} else {down(&r103V,&tr103V);} |
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break; |
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case '4': |
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if(buf[3]=='V') if((buf[4]=='U')) {up(&r104V,&tr104V);} else {down(&r104V,&tr104V);} |
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if(buf[3]=='J') if((buf[4]=='U')) {up(&r104J,&tr104J);} else {down(&r104J,&tr104J);} |
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316 |
break; |
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case 'a': |
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318 |
if((buf[4]=='U')) {up(&r110N,&tr110N);} else {down(&r110N,&tr110N);} |
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break; |
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} |
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} |
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} |
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323 |
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1746 |
kakl |
324 |
} |
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} |
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} |
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kakl |
327 |
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328 |
run(103V); // Rizeni rolet za behu |
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run(104V); |
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330 |
run(104J); |
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kakl |
331 |
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1748 |
kakl |
332 |
switch(r110N) // Zaluzie ma specielni rizeni |
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333 |
{ |
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case STOP: |
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335 |
OFF(R110NU); |
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336 |
OFF(R110ND); |
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337 |
break; |
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338 |
case GO_UP: |
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339 |
ON(R110NU); |
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340 |
OFF(R110ND); |
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341 |
if(tr110N==0) {r110N=STOP;} |
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342 |
break; |
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case GO_DOWN: |
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344 |
OFF(R110NU); |
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ON(R110ND); |
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if(tr110N==0) {r110N=STOP;} |
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347 |
break; |
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348 |
case REVERS_UP: |
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349 |
OFF(R110NU); |
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350 |
OFF(R110ND); |
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351 |
if(tr110N==0) {r110N=GO_UP; tr110N=GO_ZALUZIE;} |
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352 |
break; |
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353 |
case REVERS_DOWN: |
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354 |
OFF(R110NU); |
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355 |
OFF(R110ND); |
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356 |
if(tr110N==0) {r110N=GO_DOWN; tr110N=GO_ZALUZIE;} |
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357 |
break; |
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} |
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kakl |
359 |
/* |
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360 |
switch(r110A) |
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361 |
{ |
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362 |
case GO_UP: |
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363 |
printf("U"); |
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364 |
break; |
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case GO_DOWN: |
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366 |
printf("D"); |
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367 |
break; |
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368 |
case REVERS_UP: |
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printf("R"); |
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370 |
break; |
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371 |
case REVERS_DOWN: |
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372 |
printf("E"); |
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373 |
break; |
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374 |
case STOP: |
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375 |
printf("S"); |
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376 |
break; |
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377 |
} |
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378 |
*/ |
1748 |
kakl |
379 |
restart_wdt(); |
1746 |
kakl |
380 |
} |
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381 |
} |