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359 lines
9.9 KiB
359 lines
9.9 KiB
/*
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* Displays voltage and current sensors for CubeSatSim
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*
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*/
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#include <fcntl.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <unistd.h>
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#include <string.h>
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#include <wiringPiI2C.h>
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#include <wiringPi.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#define PLUS_X 0
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#define PLUS_Y 1
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#define BAT 2
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#define BUS 3
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#define MINUS_X 4
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#define MINUS_Y 5
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#define PLUS_Z 6
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#define MINUS_Z 7
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#define OFF -1
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#define ON 1
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int test_i2c_bus(int bus);
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const char pythonCmd[] = "python3 /home/pi/CubeSatSim/python/voltcurrent.py ";
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char pythonStr[100], pythonConfigStr[100], busStr[10];
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int map[8] = { 0, 1, 2, 3, 4, 5, 6, 7 };
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FILE *sopen(const char *program);
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int main(int argc, char *argv[]) {
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if (argc > 1) {
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;
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}
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wiringPiSetup ();
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printf("\n");
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pinMode (2, INPUT);
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pullUpDnControl (2, PUD_UP);
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if (digitalRead(2) != HIGH)
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{
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printf("vB3 with TFB Present\n");
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map[BUS] = MINUS_Z;
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map[BAT] = BUS;
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map[PLUS_Z] = BAT;
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map[MINUS_Z] = PLUS_Z;
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snprintf(busStr, 10, "%d %d", test_i2c_bus(1), test_i2c_bus(0));
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printf("New Bus String: %s \n", busStr);
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/*
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if (access("/dev/i2c-0", W_OK | R_OK) >= 0) { // Test if I2C Bus 0 is present
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printf("/dev/i2c-0 is present\n\n");
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char result[128];
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char command[50] = "timeout 10 i2cdetect -y ";
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strcat (command, "0");
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// printf("Command: %s \n", command);
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FILE *i2cdetect = popen(command, "r");
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while (fgets(result, 128, i2cdetect) != NULL) {
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;
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// printf("result: %s", result);
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}
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int error = pclose(i2cdetect)/256;
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// printf("%s error: %d \n", &command, error);
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if (error != 0)
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{
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printf("ERROR: %s bus has a problem \n Check I2C wiring and pullup resistors \n", "0");
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strcpy(busStr,"1 -1");
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}
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else
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strcpy(busStr,"1 0");
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} else
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{
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printf("ERROR: %s bus has a problem \n Check software to see if enabled \n", "0");
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strcpy(busStr,"1 -1");
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}
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*/
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}
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else
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{
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pinMode (3, INPUT);
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pullUpDnControl (3, PUD_UP);
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if (digitalRead(3) != HIGH)
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{
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printf("vB4 Present\n");
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map[BAT] = BUS;
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map[BUS] = BAT;
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snprintf(busStr, 10, "%d %d", test_i2c_bus(1), test_i2c_bus(0));
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printf("New Bus String: %s \n", busStr);
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// strcpy(busStr,"1 0");
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}
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else
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{
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pinMode (26, INPUT);
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pullUpDnControl (26, PUD_UP);
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if (digitalRead(26) != HIGH)
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{
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printf("vB5 Present\n"); // Don't print normal board detection
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map[MINUS_X] = MINUS_Y;
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map[PLUS_Z] = MINUS_X;
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map[MINUS_Y] = PLUS_Z;
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snprintf(busStr, 10, "%d %d", test_i2c_bus(1), test_i2c_bus(3));
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printf("New Bus String: %s \n", busStr);
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/*
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if (test_i2c_b0) != OFF)
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strcpy(busStr,"1 ");
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else
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strcpy(busStr,"-1 ");
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// printf("Result: %d \n",test_i2c_bus(3));
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if (access("/dev/i2c-11", W_OK | R_OK) >= 0) { // Test if I2C Bus 11 is present
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printf("/dev/i2c-11 is present\n\n");
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/*
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char result[128];
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char command[50] = "timeout 10 i2cdetect -y ";
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strcat (command, "11");
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// printf("Command: %s \n", command);
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FILE *i2cdetect = popen(command, "r");
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while (fgets(result, 128, i2cdetect) != NULL) {
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;
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// printf("result: %s", result);
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}
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int error = pclose(i2cdetect)/256;
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// printf("%s error: %d \n", &command, error);
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if (error != 0)
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*
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if (test_i2c_bus(11) != OFF)
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{
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// printf("ERROR: %s bus has a problem \n Check I2C wiring and pullup resistors \n", "11");
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strcat(busStr,"-1");
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}
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else
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strcat(busStr,"11");
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* printf("Bus String: %s \n", busStr);
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} else {
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/* char result[128];
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char command[50] = "timeout 10 i2cdetect -y ";
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strcat (command, "3");
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// printf("Command: %s \n", command);
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FILE *i2cdetect = popen(command, "r");
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while (fgets(result, 128, i2cdetect) != NULL) {
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;
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// printf("result: %s", result);
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}
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int error = pclose(i2cdetect)/256;
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// printf("%s error: %d \n", &command, error);
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if (error != 0)
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{
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printf("ERROR: %s bus has a problem \n Check I2C wiring and pullup resistors \n", "3");
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strcpy(busStr,"1 -1");
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}
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else
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strcpy(busStr,"1 3");
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*
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if (test_i2c_bus(3) != OFF)
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{
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// printf("ERROR: %s bus has a problem \n Check I2C wiring and pullup resistors \n", "11");
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strcat(busStr,"-1");
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}
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else
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strcat(busStr,"3");
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printf("Bus String: %s \n", busStr);
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}
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*/
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}
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else
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{
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printf("VB3 Present\n");
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map[BUS] = MINUS_Z;
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map[BAT] = BUS;
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map[PLUS_Z] = BAT;
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map[MINUS_Z] = PLUS_Z;
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snprintf(busStr, 10, "%d %d", test_i2c_bus(1), test_i2c_bus(0));
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printf("New Bus String: %s \n", busStr);
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/*
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if (access("/dev/i2c-0", W_OK | R_OK) >= 0) { // Test if I2C Bus 0 is present
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printf("/dev/i2c-0 is present\n\n");
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char result[128];
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char command[50] = "timeout 10 i2cdetect -y ";
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strcat (command, "0");
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// printf("Command: %s \n", command);
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FILE *i2cdetect = popen(command, "r");
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while (fgets(result, 128, i2cdetect) != NULL) {
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;
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// printf("result: %s", result);
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}
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int error = pclose(i2cdetect)/256;
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// printf("%s error: %d \n", &command, error);
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if (error != 0)
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{
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printf("ERROR: %s bus has a problem \n Check I2C wiring and pullup resistors \n", "0");
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strcpy(busStr,"1 -1");
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}
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else
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strcpy(busStr,"1 0");
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} else
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{
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printf("ERROR: %s bus has a problem \n Check software to see if enabled \n", "0");
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strcpy(busStr,"1 -1");
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}
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*/
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}
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}
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}
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// Reading I2C voltage and current sensors
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// printf("Starting\n");
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strcpy(pythonStr, pythonCmd);
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strcat(pythonStr, busStr);
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strcat(pythonConfigStr, pythonStr);
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strcat(pythonConfigStr, " c");
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FILE *file1 = sopen(pythonConfigStr); // try new function
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fgets(cmdbuffer, 1000, file1);
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fprintf(stderr, "pythonStr result: %s\n", cmdbuffer);
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// FILE* file1 = popen(pythonConfigStr, "r");
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// char cmdbuffer[1000];
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// fgets(cmdbuffer, 1000, file1);
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// printf("pythonStr result: %s\n", cmdbuffer);
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sclose(file1);
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int count1;
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char *token;
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// FILE* file = popen(pythonStr, "r");
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// fgets(cmdbuffer, 1000, file);
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// printf("result: %s\n", cmdbuffer);
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// pclose(file);
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const char space[2] = " ";
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token = strtok(cmdbuffer, space);
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float voltage[9], current[9];
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memset(voltage, 0, sizeof(voltage));
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memset(current, 0, sizeof(current));
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for (count1 = 0; count1 < 8; count1++)
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{
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if (token != NULL)
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{
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voltage[count1] = atof(token);
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// #ifdef DEBUG_LOGGING
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// printf("voltage: %f ", voltage[count1]);
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// #endif
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token = strtok(NULL, space);
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if (token != NULL)
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{
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current[count1] = atof(token);
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if ((current[count1] < 0) && (current[count1] > -1))
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current[count1] *= (-1.0);
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// #ifdef DEBUG_LOGGING
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// printf("current: %f\n", current[count1]);
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// #endif
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token = strtok(NULL, space);
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}
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}
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}
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printf("\n");
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printf("+X | % 4.2f V % 5.0f mA \n", voltage[map[PLUS_X]], current[map[PLUS_X]]);
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printf("+Y | % 4.2f V % 5.0f mA \n", voltage[map[PLUS_Y]], current[map[PLUS_Y]]);
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printf("+Z | % 4.2f V % 5.0f mA \n", voltage[map[PLUS_Z]], current[map[PLUS_Z]]);
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printf("-X | % 4.2f V % 5.0f mA \n", voltage[map[MINUS_X]], current[map[MINUS_X]]);
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printf("-Y | % 4.2f V % 5.0f mA \n", voltage[map[MINUS_Y]], current[map[MINUS_Y]]);
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printf("-Z | % 4.2f V % 5.0f mA \n", voltage[map[MINUS_Z]], current[map[MINUS_Z]]);
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printf("Bat | % 4.2f V % 5.0f mA \n", voltage[map[BAT]], current[map[BAT]]);
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printf("Bus | % 4.2f V % 5.0f mA \n\n", voltage[map[BUS]], current[map[BUS]]);
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return 0;
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}
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int test_i2c_bus(int bus)
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{
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int output = bus; // return bus number if OK, otherwise return -1
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char busDev[20] = "/dev/i2c-";
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char busS[5];
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snprintf(busS, 5, "%d", bus);
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strcat (busDev, busS);
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printf("Bus Dev String: %s \n", busDev);
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if (access(busDev, W_OK | R_OK) >= 0) { // Test if I2C Bus is present
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// printf("bus is present\n\n");
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char result[128];
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const char command_start[] = "timeout 10 i2cdetect -y ";
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char command[50];
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strcpy (command, command_start);
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strcat (command, busS);
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// printf("Command: %s \n", command);
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FILE *i2cdetect = popen(command, "r");
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while (fgets(result, 128, i2cdetect) != NULL) {
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;
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// printf("result: %s", result);
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}
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int error = pclose(i2cdetect)/256;
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// printf("%s error: %d \n", &command, error);
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if (error != 0)
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{
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printf("ERROR: %d bus has a problem \n Check I2C wiring and pullup resistors \n", bus);
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output = -1;
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}
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} else
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{
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printf("ERROR: %d bus has a problem \n Check software to see if enabled \n", bus);
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output = -1;
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}
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return(output); // return bus number or -1 if there is a problem with the bus
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}
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// code by https://stackoverflow.com/questions/25161377/open-a-cmd-program-with-full-functionality-i-o/25177958#25177958
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FILE *sopen(const char *program)
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{
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int fds[2];
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pid_t pid;
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if (socketpair(AF_UNIX, SOCK_STREAM, 0, fds) < 0)
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return NULL;
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switch(pid=vfork()) {
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case -1: /* Error */
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close(fds[0]);
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close(fds[1]);
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return NULL;
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case 0: /* child */
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close(fds[0]);
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dup2(fds[1], 0);
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dup2(fds[1], 1);
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close(fds[1]);
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execl("/bin/sh", "sh", "-c", program, NULL);
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_exit(127);
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}
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/* parent */
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close(fds[1]);
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return fdopen(fds[0], "r+");
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}
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