root/branch/CLEMENT/sp4a12/main.c @ 353
1 | jalaffon | #include <stdio.h>
|
|
#include <stdlib.h>
|
|||
#include <strings.h>
|
|||
173 | beclement2 | #include "trame.h"
|
|
#include <math.h>
|
|||
1 | jalaffon | ||
//Trames de tests ? modifier si n?cessaire.
|
|||
char * trames[]= {"$GPGSV,3,2,10,15,03,077,,18,04,041,42,19,85,271,,20,08,214,*7C",
|
|||
"$GPGSV,3,3,10,22,39,053,50,28,15,320,*7E",
|
|||
"$GPRMC,141914.00,A,4545.6424,N,00306.6036,E,0.4,99.4,010206,,*0C",
|
|||
"$GPGLL,4545.6424,N,00306.6036,E,141914.00,A*0E",
|
|||
"$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D",
|
|||
"$GPGSA,A,3,,03,,22,14,,01,,18,,,,3.9,3.4,1.9*39",
|
|||
"$GPVTG,99.4,T,,M,0.4,N,0.7,K*57",
|
|||
"$GPZDA,141914.00,01,02,2006,00,00*69",
|
|||
0};
|
|||
3 | jalaffon | ||
151 | beclement2 | int trame_cmp(char* trame,char* type){
|
|
int i=0; //Initialisation des variables
|
|||
162 | beclement2 | int verif = 1;
|
|
151 | beclement2 | int j;
|
|
while(type[i] != NULL){ //Calcul de la taille de la chaine type
|
|||
i++;
|
|||
}
|
|||
for(j=0; j<i; j++){ //On v?rifie que les premiers caract?res sont identiques
|
|||
if (trame[j+1] != type[j]){
|
|||
verif = 0;
|
|||
}
|
|||
162 | beclement2 | ||
151 | beclement2 | }
|
|
return verif; //On retourne, 1 c'est valid?, 0 c'est pas valid?.
|
|||
3 | jalaffon | }
|
|
1 | jalaffon | ||
//Fonction ? modifier !!!!!
|
|||
void traitement(char * trame)
|
|||
143 | beclement2 | {
|
|
static int cpt=0 ;
|
|||
162 | beclement2 | ||
if ((trame_cmp(trame, "GPGGA")) == 1){
|
|||
printf("> %s\n",trame);
|
|||
}
|
|||
143 | beclement2 | cpt++ ;
|
|
166 | beclement2 | }
|
|
173 | beclement2 | ||
166 | beclement2 | ||
173 | beclement2 | ||
166 | beclement2 | int decode_int(char c){ /* Fonction permettant de transformer un code ASCII en d?cimale */
|
|
int res;
|
|||
if (c < 48 || c > 57){ // Si on est pas entre 0 et 9 on retourne -1
|
|||
res = -1;
|
|||
}
|
|||
else {
|
|||
res = c-48; // Car 48 = code ascii de 0
|
|||
}
|
|||
return res;
|
|||
}
|
|||
173 | beclement2 | int test_decode_int(void){
|
|
166 | beclement2 | ||
char testchar = '2';
|
|||
int test = decode_int(testchar);
|
|||
173 | beclement2 | return test;
|
|
166 | beclement2 | ||
173 | beclement2 | }
|
|
int decode_nombre(char * ch, int n){
|
|||
int i;
|
|||
int finale;
|
|||
int temp;
|
|||
for(i=0; i<n; i++){
|
|||
finale = (pow(10, n-i-1)) * (decode_int(ch[i])) + temp;
|
|||
temp = finale;
|
|||
151 | beclement2 | }
|
|
173 | beclement2 | return finale;
|
|
}
|
|||
int test_decode_nombre(){
|
|||
188 | beclement2 | char testchar[] = "9876";
|
|
173 | beclement2 | int test = decode_nombre(testchar, 3);
|
|
return test;
|
|||
}
|
|||
210 | beclement2 | float conv_lat(char * latitude){
|
|
float val = decode_nombre(latitude,4);
|
|||
float res = 0;
|
|||
for (int i = 5; i < 9;i++){
|
|||
val += (decode_int(latitude[i]))*pow(10,-i+4);
|
|||
}
|
|||
res = (int)(val/100);
|
|||
res += (val - res*100)/60;
|
|||
return res;}
|
|||
188 | beclement2 | ||
210 | beclement2 | float conv_long(char * longitude){
|
|
float val = decode_nombre(longitude,5);
|
|||
float res = 0;
|
|||
for (int i = 6; i < 10;i++){
|
|||
val += (decode_int(longitude[i]))*pow(10,-i+5);
|
|||
188 | beclement2 | }
|
|
210 | beclement2 | res = (int)(val/100);
|
|
res += (val - res*100)/60;
|
|||
return res;}
|
|||
188 | beclement2 | ||
210 | beclement2 | float conversion(char * chaine){
|
|
int cpt = 0;
|
|||
while (chaine[cpt]!='\0'){
|
|||
cpt++;
|
|||
188 | beclement2 | }
|
|
210 | beclement2 | if (cpt == 9){
|
|
return conv_lat(chaine);
|
|||
}
|
|||
else if(cpt==10){
|
|||
return conv_long(chaine);
|
|||
}
|
|||
else{
|
|||
return 1000.0;
|
|||
}
|
|||
188 | beclement2 | }
|
|
173 | beclement2 | //Ajouter vos tests unitaires dans cette fonction.
|
|
void tests_unitaires(void){
|
|||
if (5!=5){
|
|||
printf ("Erreur Test unitaire basique.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if (trame_cmp("$GPGGA suite chaine","GPGGA")!=1){
|
|||
printf ("Erreur Test unitaire trame_cmp.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if (trame_cmp("$GPRMC suite chaine","GPGGA")!=0){
|
|||
printf ("Erreur Test unitaire trame_cmp.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if (trame_cmp("$GPRMC... ", "GPRMC" )!=1){
|
|||
printf ("Erreur Test unitaire trame_cmp.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if (trame_cmp("$APRMC...", "GPGGA")!=0){
|
|||
printf ("Erreur Test unitaire trame_cmp.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if(test_decode_int() != 2){
|
|||
printf ("Erreur Test unitaire test_decode_int.\n");
|
|||
exit(-1);
|
|||
}
|
|||
210 | beclement2 | if (fabs(conv_lat("3723.2475")-37.387458)>= pow(10,-6)){ // On s'arrange pour avoir le m?me arrondis que code blocks.
|
|
printf ("Erreur Test unitaire conv_lat.\n");
|
|||
173 | beclement2 | exit(-1);
|
|
}
|
|||
210 | beclement2 | if (fabs(conversion("00306.6036")-3.11006)>= pow(10,-6)){ // On s'arrange pour avoir le m?me arrondis que code blocks.
|
|
printf ("Erreur Test unitaire conversion.\n");
|
|||
exit(-1);
|
|||
}
|
|||
if (fabs(conversion("3723.2475")-37.387458)>= pow(10,-6)){ // On s'arrange pour avoir le m?me arrondis que code blocks.
|
|||
printf ("Erreur Test unitaire conversion.\n");
|
|||
exit(-1);
|
|||
}
|
|||
173 | beclement2 | ||
1 | jalaffon | }
|
|
// Ne pas modifier cette fonction
|
|||
int main(int argc,char ** argv)
|
|||
210 | beclement2 | {
|
|
173 | beclement2 | ||
1 | jalaffon | tests_unitaires();
|
|
151 | beclement2 | ||
1 | jalaffon | ||
// Affichage des trames definies dans la table trames.
|
|||
printf ("Trames de tests tableau trames:\n");
|
|||
int i=0;
|
|||
while (trames[i])
|
|||
traitement(trames[i++]);
|
|||
if (!trame_init())
|
|||
exit(-1);
|
|||
// Affichage des trames du fichier gps.log
|
|||
char *trame;
|
|||
printf ("Trames de tests du fichier gps.log\n");
|
|||
while ((trame = trame_suivante()))
|
|||
151 | beclement2 | traitement(trame);
|
|
1 | jalaffon | ||
151 | beclement2 | ||
1 | jalaffon | return 0;
|
|
}
|