/*
Ovladani domu rozvadec 2. n.p.
Syntaxe prikazu:
<Roleta/Svetlo><#patro><#mistnost><Nord/Jih/Vychod/Zapad/A/B><Up/Down>
R2aNU - roleta, 2. n.p., mistnost 10, sever, nahoru
S12A - svetlo, 1. n.p., mistnost 2, prostredni
Rozmisteni desek:
[CAN]
[IN J] [IN D]
[OUT A] [CPU]
[OUT F] [OUT B] [OUT E]
*/
#include "main.h"
#case
#define REVERS 3 // 2*256 ms = 0,75 s
#define GO 117 // 117*256 ms = 30 s
#define GO_ZALUZIE 6 // cca 1,5 s
#define RECEIVE 10 // cca 2,6 s
#define OR110NU PIN_A0 // t1 Zaluzie koupelna dole
#define OR110ND PIN_A1 // t2
#define OR207VU PIN_A2 // t3 Roleta klubovna
#define OR207VD PIN_A3 // t4
#define OR103VU PIN_A4 // t5 Roleta loznice
#define OR103VD PIN_A5 // t6
#define OR104JU PIN_A6 // t7 Roleta laborator jih
#define OR104JD PIN_A7 // t8
#define OS103J PIN_B0 // t1 Svetla loznice
#define OS105Z PIN_B1 // t2 Svetlo kuchyn nad lavici
#define OS110N PIN_B2 // t3 Svetlo koupelna dole zachod a sprhca
#define OS106A PIN_B3 // t4 Svetlo trucovna stred
#define OS107A PIN_B4 // t5 Svetlo satna
#define OS109A PIN_B5 // t6 Svetlo technologicka mistnost
#define OS205A PIN_B6 // t7 Svetlo puda
#define OS204A PIN_B7 // t8 Svetlo radiomistnost
//#define OS105C PIN_C2
//#define PIN_C3 31763
//#define PIN_C4 31764
//#define PIN_C5 31765
//#define PIN_C6 31766 //TX
//#define PIN_C7 31767 //RX
#define OR104VU PIN_F0 // t1 Roleta laborator vychod
#define OR104VD PIN_F1 // t2
#define OR202JU PIN_F2 // t3 Roleta Kaklik
#define OR202JD PIN_F3 // t4
#define OR204ZU PIN_F4 // t5 Roleta radiomistnost
#define OR204ZD PIN_F5 // t6
//#define O... PIN_F6 // t7
//#define O... PIN_F7 // t8
#define OS102A PIN_E0 // t1 Svetlo chodba
#define OS105A PIN_E1 // t2 Svetlo kuchyne stred
#define OS207A PIN_E2 // t3 Svetlo klubovna
#define OS104A PIN_E3 // t4 Svetlo laborator
#define OS202A PIN_E4 // t5 Svetlo Kaklik stred
#define OS209A PIN_E5 // t6 Svetlo Zizala koupelna
#define OS203A PIN_E6 // t7 Svetlo Kaklik koupelna
//#define O... PIN_E7 // t8
//#define I.... input(PIN_D0) // A
#define IS201AZ input(PIN_D1) // B Vypinac chodba 2.n.p. zapad u Kaklika
#define IS207AJ input(PIN_D2) // C Vypinac klubovna
#define IR207VD input(PIN_D3) // D Vypinac roleta klubovna dolu
#define IR207VU input(PIN_D4) // E Vypinac roleta klubovna nahoru
#define IS201AV input(PIN_D5) // F Vypinac chodba 2.n.p. vychod
#define IS209AJ input(PIN_D6) // G Vypinac koupelna Zizala
#define IS203AJ input(PIN_D7) // H Vypinac koupelna Kaklik
#define IS202AN input(PIN_J0) // A Vypinac svetlo Kaklik stred u dveri na chodbu
#define IR202ND input(PIN_J1) // B Vypinac roleta Kaklik dolu u dveri
#define IR202NU input(PIN_J2) // C Vypinac roleta Kaklik nahoru u dveri
#define IS205A input(PIN_J3) // D Vypinac svetlo puda
#define IS204AJ input(PIN_J4) // E Vypinac svetlo radiomistnost u dveri na chodbu
#define IR204ZD input(PIN_J5) // F Vypinac roleta radiomistnost dolu
#define IR204ZU input(PIN_J6) // G Vypinac roleta radiomistnost nahoru
//#define I.... input(PIN_J7) // H
int1 s201AV;
int1 s201AZ;
int1 s207AJ;
int1 s203AJ;
int1 s209AJ;
int1 r207VU;
int1 r207VD;
int1 s202AN;
int1 r202ND;
int1 r202NU;
int1 s205A;
int1 s204AJ;
int1 r204ZD;
int1 r204ZU;
#bit CREN = 0xFAB.4 // USART enable register
#define LED1 PIN_C0
#define LED2 PIN_C1
#define ON(port) output_low(port);
#define OFF(port) output_high(port);
typedef enum {GO_UP, GO_DOWN, REVERS_UP, REVERS_DOWN, STOP} state;
state r103V, r110N, r104V, r104J, r207V, r202J, r204Z; // Stavy rolet
int8 tr103V, tr110N, tr104V, tr104J, tr207V, tr202J, tr204Z; // Casovace rolet
int8 timer; // Casovac komunikace
#int_TIMER0
void TIMER0_isr(void)
{
if(tr103V>0) tr103V--;
if(tr110N>0) tr110N--;
if(tr104V>0) tr104V--;
if(tr104J>0) tr104J--;
if(tr207V>0) tr207V--;
if(tr202J>0) tr202J--;
if(tr204Z>0) tr204Z--;
if(timer>0) timer--;
output_toggle(LED2);
}
void up(state *status, int8 *timer) // Zmena stavu rolety smer nahoru
{
switch (*status)
{
case STOP:
case GO_DOWN:
*status=REVERS_UP;
*timer=REVERS;
break;
case REVERS_UP:
case GO_UP:
*status=STOP;
*timer=0;
break;
}
}
void down(state *status, int8 *timer) // Zmena stavu rolety smer dolu
{
switch (*status)
{
case STOP:
case GO_UP:
*status=REVERS_DOWN;
*timer=REVERS;
break;
case REVERS_DOWN:
case GO_DOWN:
*status=STOP;
*timer=0;
break;
}
}
#define run(x) { \
switch(r##x) \
{ \
case STOP: \
OFF(OR##x##U); \
OFF(OR##x##D); \
break; \
case GO_UP: \
OFF(OR##x##D); \
ON(OR##x##U); \
if(tr##x==0) {r##x=STOP;} \
break; \
case GO_DOWN: \
OFF(OR##x##U); \
ON(OR##x##D); \
if(tr##x==0) {r##x=STOP;} \
break; \
case REVERS_UP: \
OFF(OR##x##U); \
OFF(OR##x##D); \
if(tr##x==0) {r##x=GO_UP; tr##x=GO;} \
break; \
case REVERS_DOWN: \
OFF(OR##x##U); \
OFF(OR##x##D); \
if(tr##x==0) {r##x=GO_DOWN; tr##x=GO;} \
break; \
} \
}
void main()
{
char buf[10];
setup_adc_ports(NO_ANALOGS|VSS_VDD);
setup_adc(ADC_CLOCK_DIV_2);
setup_psp(PSP_DISABLED);
setup_spi(SPI_SS_DISABLED);
setup_wdt(WDT_OFF);
setup_timer_0(RTCC_INTERNAL|RTCC_DIV_1);
setup_timer_1(T1_DISABLED);
setup_timer_2(T2_DISABLED,0,1);
setup_timer_3(T3_DISABLED|T3_DIV_BY_1);
setup_ccp1(CCP_OFF);
setup_comparator(NC_NC_NC_NC);
setup_vref(FALSE);
output_a(0xFF); // Vsechno zhasni a zastav
output_b(0xFF);
output_f(0xFF);
output_e(0xFF);
r103V=STOP; // Rolety jsou zastaveny
r110N=STOP;
r104V=STOP;
r104J=STOP;
r207V=STOP;
r202J=STOP;
r204Z=STOP;
tr103V=0;
tr110N=0;
tr104V=0;
tr104J=0;
tr207V=0;
tr202J=0;
tr204Z=0;
{
int n;
for(n=0;n<10;n++)
{
output_low(LED1); // Indikace restartu (pockame na nabiti kondenzatoru ve vstupnich obvodech)
delay_ms(100);
output_high(LED1);
delay_ms(100);
restart_wdt();
}
}
s201AV=IS201AV; // Precteme vychozi stav vypinacu
s201AZ=IS201AZ;
s207AJ=IS207AJ;
s203AJ=IS203AJ;
s209AJ=IS209AJ;
r207VU=IR207VU;
r207VD=IR207VD;
s202AN=IS202AN;
r202ND=IR202ND;
r202NU=IR202NU;
s205A=IS205A;
s204AJ=IS204AJ;
r204ZD=IR204ZD;
r204ZU=IR204ZU;
CREN=0; CREN=1; // Reinitialise USART
enable_interrupts(INT_TIMER0);
enable_interrupts(GLOBAL);
while(TRUE)
{
if(kbhit()) // Chce po nas nekdo neco?
{
buf[0]=getc();
if((buf[0]=='S')||(buf[0]=='R')) // Jinym znakem nesmi zacinat prikaz
{
int8 n=0; // Ukazatel do prijimaciho bufferu
timer=RECEIVE; // Timeout pro prijem znaku
do
{
if(kbhit()) // Je dalsi znak?
{
n++;
buf[n]=getc();
}
} while ((buf[n]!='\r')&&(timer>0)&&(n<7));
if (timer==0) { CREN=0; CREN=1; } // Reinitialise USART
output_toggle(LED1); // Ukonceni prijimani prikazu
if((timer>0))
{
if((buf[0]=='S')&&(n>=4)) // Zmena stavu svetla
{
if(buf[1]=='1')
{
switch(buf[2])
{
case '2':
output_toggle(OS102A);
break;
case '3':
output_toggle(OS103J);
break;
case '4':
output_toggle(OS104A);
break;
case '5':
if(buf[3]=='A') {output_toggle(OS105A);}
if(buf[3]=='Z') {output_toggle(OS105Z);}
break;
case '6':
output_toggle(OS106A);
break;
case '7':
output_toggle(OS107A);
break;
case '8':
// output_toggle(OS108A);
break;
case '9':
output_toggle(OS109A);
break;
case 'a':
// output_toggle(OS110J);
output_toggle(OS110N);
break;
}
}
}
if((buf[0]=='R')&&(n>=5)) // Zmena stavu rolety
{
if(buf[1]=='1')
{
switch(buf[2])
{
case '3':
if(buf[4]=='U') {up(&r103V,&tr103V);} else {down(&r103V,&tr103V);}
break;
case '4':
if(buf[3]=='V') if((buf[4]=='U')) {up(&r104V,&tr104V);} else {down(&r104V,&tr104V);}
if(buf[3]=='J') if((buf[4]=='U')) {up(&r104J,&tr104J);} else {down(&r104J,&tr104J);}
break;
case 'a':
if((buf[4]=='U')) {up(&r110N,&tr110N);} else {down(&r110N,&tr110N);}
break;
}
}
}
}
}
}
run(103V); // Rizeni rolet za behu
// run(104V);
run(104J);
run(207V);
run(202J);
run(204Z);
switch(r110N) // Zaluzie ma specielni rizeni
{
case STOP:
OFF(OR110NU);
OFF(OR110ND);
break;
case GO_UP:
OFF(OR110ND);
ON(OR110NU);
if(tr110N==0) {r110N=STOP;}
break;
case GO_DOWN:
OFF(OR110NU);
ON(OR110ND);
if(tr110N==0) {r110N=STOP;}
break;
case REVERS_UP:
OFF(OR110NU);
OFF(OR110ND);
if(tr110N==0) {r110N=GO_UP; tr110N=GO_ZALUZIE;} // Nahoru pouze kratce na otevreni zaluzie
break;
case REVERS_DOWN:
OFF(OR110NU);
OFF(OR110ND);
if(tr110N==0) {r110N=GO_DOWN; tr110N=GO_ZALUZIE;} // Dolu take kratce pouze na zaklopeni zaluzie
break;
}
// mistni vypinace z 2. n.p.
if(s201AV!=IS201AV) {s201AV=IS201AV; output_toggle(OS102A); delay_ms(100); continue;}
if(s201AZ!=IS201AZ) {s201AZ=IS201AZ; output_toggle(OS102A); delay_ms(100); continue;}
if(s207AJ!=IS207AJ) {s207AJ=IS207AJ; output_toggle(OS207A); delay_ms(100); continue;}
if(s203AJ!=IS203AJ) {s203AJ=IS203AJ; output_toggle(OS203A); delay_ms(100); continue;}
if(s209AJ!=IS209AJ) {s209AJ=IS209AJ; output_toggle(OS209A); delay_ms(100); continue;}
if(s205A!=IS205A) {s205A=IS205A; output_toggle(OS205A); delay_ms(100); continue;}
if(s204AJ!=IS204AJ) {s204AJ=IS204AJ; output_toggle(OS204A); delay_ms(100); continue;}
if(s202AN!=IS202AN) {s202AN=IS202AN; output_toggle(OS202A); delay_ms(100); continue;}
if(r207VU!=IR207VU) {r207VU=IR207VU; up(&r207V,&tr207V); delay_ms(100); continue;}
if(r207VD!=IR207VD) {r207VD=IR207VD; down(&r207V,&tr207V); delay_ms(100); continue;}
if(r202NU!=IR202NU) {r202NU=IR202NU; up(&r202J,&tr202J); delay_ms(100); continue;}
if(r202ND!=IR202ND) {r202ND=IR202ND; down(&r202J,&tr202J); delay_ms(100); continue;}
if(r204ZU!=IR204ZU) {r204ZU=IR204ZU; up(&r204Z,&tr204Z); delay_ms(100); continue;}
if(r204ZD!=IR204ZD) {r204ZD=IR204ZD; down(&r204Z,&tr204Z); delay_ms(100); continue;}
restart_wdt();
}
}