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bd4731143d | ||
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1
.hgtags
1
.hgtags
@ -1 +1,2 @@
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b4caefc05db1ac8c142e4427a59d7771e3ae1d38 WORKS_1
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78b8b97f294d32c8d383ece023b32cd8076805f0 WORKS_2
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@ -7,6 +7,8 @@ P2.2 G
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P2.1 C
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P2.0 1
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P1.5 2
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P1.2 3
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P1.1 LED
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P1.0 T
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@ -7,6 +7,8 @@
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#include <stdlib.h>
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#include <msp430g2553.h>
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#include "PontCoopScheduler.h"
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@ -47,64 +47,59 @@ const tPin *NUMBERS[] = { NUMBER0, NUMBER1, NUMBER2, NUMBER3, NUMBER4,
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NUMBER5, NUMBER6, NUMBER7, NUMBER8, NUMBER9, ALL_PATTERN, H_PATTERN,
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I_PATTERN, EMPTY_PATTERN };
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const tPin DIGITS[] = { DIGIT_0, DIGIT_1, PINS_END };
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const tPin DIGITS[] = { DIGIT_0, DIGIT_1, DIGIT_2, PINS_END };
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uint8_t digitValues[2] = { EMPTY_ID, EMPTY_ID };
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uint8_t digitValues[] = { EMPTY_ID, EMPTY_ID, EMPTY_ID };
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void displayInit(void *handleArg) {
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for (tPin d = DIGIT_0; d <= DIGIT_1; d++) {
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for (tPin s = SEG_A; s <= SEG_F; s++) {
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gpioSetPin(s, LOW);
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}
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for (tPin d = DIGIT_2; d >= DIGIT_0; d--) {
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gpioSetPin(d, LOW);
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for (tPin s = SEG_A; s <= SEG_G; s++) {
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gpioSetPin(s, HIGH);
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ms_active_delay(INIT_CYCLE_DELAY);
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gpioSetPin(s, LOW);
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}
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gpioSetPin(SEG_G, HIGH);
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ms_active_delay(INIT_CYCLE_DELAY);
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gpioSetPin(SEG_G, LOW);
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gpioSetPin(d, HIGH);
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}
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}
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static void showNumber(uint8_t n) {
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const tPin *pattern = NUMBERS[ALL_ID];
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do {
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for (const tPin *pattern = NUMBERS[ALL_ID]; *pattern != PINS_END; pattern++) {
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gpioSetPin(*pattern, LOW);
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pattern++;
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} while (*pattern != PINS_END);
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pattern = NUMBERS[n];
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do {
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}
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for (const tPin *pattern = NUMBERS[n]; *pattern != PINS_END; pattern++) {
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gpioSetPin(*pattern, HIGH);
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pattern++;
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} while (*pattern != PINS_END);
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}
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}
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void displaySetValue(uint8_t v) {
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if (v >= 100) {
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digitValues[1] = H_ID;
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digitValues[0] = I_ID;
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} else {
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digitValues[1] = v / 10;
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digitValues[0] = v - digitValues[1] * 10;
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}
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uint32_t a,b,c,d;
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a = v;
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b = a / 100;
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c = (a - b * 100) / 10;
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d = a - c * 10 - b * 100;
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digitValues[2] = (b == 0) ? EMPTY_ID : (uint8_t)b;
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digitValues[1] = ((c == 0) && (b == 0)) ? EMPTY_ID : (uint8_t)c;
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digitValues[0] = (uint8_t)d;
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}
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void displayExec(void *handleArg) {
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static uint8_t activeDigit = 0;
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activeDigit++;
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if (activeDigit == 2) {
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if (activeDigit == 3) {
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activeDigit = 0;
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}
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const tPin *digit = DIGITS;
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do {
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for (const tPin *digit = DIGITS; *digit != PINS_END; digit++) {
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gpioSetPin(*digit, HIGH);
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digit++;
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} while (*digit != PINS_END);
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}
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digit = DIGITS + activeDigit;
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gpioSetPin(*digit, LOW);
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gpioSetPin(DIGITS[activeDigit], LOW);
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showNumber(digitValues[activeDigit]);
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}
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@ -16,11 +16,12 @@
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#include "button.h"
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#include "gpio.h"
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#include "PontCoopScheduler.h"
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#include "powerDown.h"
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const uint32_t EGG_TIMER_CYCLE = 1000;
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const uint32_t LED_CYCLE = 250;
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const uint32_t POWER_DOWN_DELAY = 120000;
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const uint32_t MY_POWER_DOWN_DELAY = 120000;
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const uint8_t COOKING_TIME = 120;
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uint8_t restCookingTime;
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@ -28,14 +29,8 @@ bool timerRunning;
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bool timerStarted;
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void eggTimerPowerDown(void *handleArg) {
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P1DIR = 0;
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P2DIR = 0;
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P1OUT = 0;
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P2OUT = 0;
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ADC10CTL0 = 0;
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LPM4;
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}
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void eggTimerStart(void *handleArg) {
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if (! timerStarted) {
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@ -62,7 +57,8 @@ void eggTimerExec(void *handleArg) {
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if (restCookingTime == 0) {
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// activate alarm
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schAdd(eggTimerAlarm, NULL, 0, LED_CYCLE);
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schAdd(eggTimerPowerDown, NULL, POWER_DOWN_DELAY, 0);
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schDel(powerDown, NULL);
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schAdd(powerDown, NULL, MY_POWER_DOWN_DELAY, 0);
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timerRunning = false;
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}
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}
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@ -18,7 +18,7 @@ extern const uint32_t EGG_TIMER_CYCLE;
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void eggTimerInit(void *handleArg);
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void eggTimerExec(void *handleArg);
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void eggTimerStart(void *handleArg);
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void eggTimerAlarm(void *handleArg);
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#endif /* EGGTIMER_H_ */
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10
src/gpio.c
10
src/gpio.c
@ -19,6 +19,13 @@ extern tPinCfg pinCfg[];
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void gpioInitPins() {
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P1OUT = 0;
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P1DIR = 0;
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P1REN = 0;
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P2OUT = 0;
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P2DIR = 0;
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P2REN = 0;
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for (tPin p = PINS_FIRST; p < PINS_END; p += 1) {
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tPinCfg pin = pinCfg[p];
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if (pin.portId == PORT1) {
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@ -26,6 +33,7 @@ void gpioInitPins() {
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P1DIR |= pin.bit;
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P1SEL &= ~pin.bit;
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P1SEL2 &= ~pin.bit;
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gpioSetPin(p, pin.defaultOut);
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} else if (pin.direction == PIN_IN) {
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P1DIR &= ~pin.bit;
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P1SEL &= ~pin.bit;
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@ -43,6 +51,7 @@ void gpioInitPins() {
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P2DIR |= pin.bit;
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P2SEL &= ~pin.bit;
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P2SEL2 &= ~pin.bit;
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gpioSetPin(p, pin.defaultOut);
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} else if (pin.direction == PIN_IN) {
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P2DIR &= ~pin.bit;
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P2SEL &= ~pin.bit;
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@ -56,7 +65,6 @@ void gpioInitPins() {
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P2OUT |= pin.bit;
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}
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}
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gpioSetPin(p, pin.defaultOut);
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}
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}
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@ -49,6 +49,7 @@ typedef enum {
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SEG_G,
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DIGIT_0,
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DIGIT_1,
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DIGIT_2,
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BUTTON_1,
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LED_1,
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PINS_END
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@ -18,6 +18,7 @@ tPinCfg pinCfg[PINS_END] = {
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{PORT2, BIT2, PIN_OUT, LOW}, //G
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{PORT2, BIT0, PIN_OUT, HIGH}, //0
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{PORT1, BIT5, PIN_OUT, HIGH}, //1
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{PORT1, BIT2, PIN_OUT, HIGH}, //2
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{PORT1, BIT0, PIN_IN_PULLUP, LOW}, // BUTTON_1
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{PORT1, BIT1, PIN_OUT, LOW}, //TESTPIN1
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{PORT1, BIT1, PIN_OUT, LOW}, // LED_1
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};
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13
src/main.c
13
src/main.c
@ -19,12 +19,17 @@
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#include "measure.h"
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#include "eggTimer.h"
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#include "button.h"
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#include "gpio.h"
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#include "powerDown.h"
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int main() {
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WDTCTL = WDTPW | WDTHOLD;
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__disable_interrupt();
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// highest possible system clock
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DCOCTL = DCO0 | DCO1 | DCO2;
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BCSCTL1 = XT2OFF | RSEL0 | RSEL1 | RSEL2 | RSEL3;
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@ -36,6 +41,8 @@ int main() {
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timeInit();
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schInit();
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schAdd(powerDown, NULL, 1800000, 0); // default thermometer power down timeout: 30min
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// interrupts are required for delay function in displayInit();
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__enable_interrupt();
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displayInit(NULL);
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@ -57,11 +64,7 @@ int main() {
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while (1) {
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schExec();
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// put it into the idle loop, it is not time critical
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// but should get as much time as possible to avoid
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// flicker
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//displayExec(NULL);
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//LPM3;
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}
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}
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23
src/powerDown.c
Normal file
23
src/powerDown.c
Normal file
@ -0,0 +1,23 @@
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/*
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* powerDown.c
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*
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* Created on: Sep 11, 2016
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* Author: wn
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*/
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#include <msp430g2553.h>
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void powerDown(void *handleArg) {
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P1OUT = 0;
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P1DIR = 0xff;
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P1REN = 0;
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P2OUT = 0;
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P2DIR = 0xff;
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P2REN = 0;
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ADC10CTL0 = 0;
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LPM4;
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while (1);
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}
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src/powerDown.h
Normal file
14
src/powerDown.h
Normal file
@ -0,0 +1,14 @@
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/*
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* powerDown.h
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*
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* Created on: Sep 11, 2016
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* Author: wn
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*/
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#ifndef POWERDOWN_H_
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#define POWERDOWN_H_
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void powerDown(void *handleArg);
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#endif /* POWERDOWN_H_ */
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@ -16,6 +16,7 @@
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volatile uint32_t timestamp;
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ISR(TIMER0_A0, TA0_ISR) {
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LPM3_EXIT;
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timestamp++;
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schUpdate();
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}
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