root/branch/AMAR/sp4a12/main.c @ 572
1 | jalaffon | #include <stdio.h>
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#include <stdlib.h>
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#include <strings.h>
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294 | pdamar | #include "trame.h"
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#include <math.h>
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1 | jalaffon | ||
//Trames de tests ? modifier si n?cessaire.
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char * trames[]= {"$GPGSV,3,2,10,15,03,077,,18,04,041,42,19,85,271,,20,08,214,*7C",
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"$GPGSV,3,3,10,22,39,053,50,28,15,320,*7E",
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"$GPRMC,141914.00,A,4545.6424,N,00306.6036,E,0.4,99.4,010206,,*0C",
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"$GPGLL,4545.6424,N,00306.6036,E,141914.00,A*0E",
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"$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D",
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"$GPGSA,A,3,,03,,22,14,,01,,18,,,,3.9,3.4,1.9*39",
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"$GPVTG,99.4,T,,M,0.4,N,0.7,K*57",
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"$GPZDA,141914.00,01,02,2006,00,00*69",
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0};
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132 | pdamar | int trame_cmp(char*trame,char*type)
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{
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145 | pdamar | int i=0 , j=0, res=1; //initialisation des valeurs
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while(type[i]!='\0') //tant que treme n'a pas attent sa fin de caract?re
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132 | pdamar | {
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i++;
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}
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145 | pdamar | while(j<i)
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132 | pdamar | {
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if(trame[j+1]!=type[j])
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{
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res=0;
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}
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j++;
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}
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return res;
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}
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152 | pdamar | int decode_int(char c) // cette fonction me permet de retourner -1 tant que le caract?re n'est pas compris entre 0 et 9 ou autre
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{
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int r;
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if(c>=48 && c<=57)
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{
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r=c-48;
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}
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else
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{
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r=-1;
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}
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return r;
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}
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160 | pdamar | int decode_nombre(char*nb, int n)
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{
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int i , res=0;
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for(i=0; i<n ; i++)
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{
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res=res*10+decode_int(nb[i]);
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}
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return res;
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175 | pdamar | }
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294 | pdamar | float conv_lattitude(char* lat_sexa) // fonction convertissant la chaine de caract?re contenant la lattitude en nombre Limit? ? cette question
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{
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float lat_dec=0; //le flottant lattitude en d?ciamle
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float deg_lat = decode_nombre(lat_sexa,4); //
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int i;
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for (i=5;i<9;i++)
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{
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deg_lat += (decode_int(lat_sexa[i]))*pow(10,-i+4);
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}
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lat_dec = (int) (deg_lat/100);
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lat_dec += (deg_lat-lat_dec*100)/60;
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return lat_dec;
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}
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float conv_longitude (char* long_sexa)
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{
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303 | pdamar | float long_dec=0;
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float deg_long = decode_nombre(long_sexa,5);
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int i;
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for (i=6;i<10;i++)
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{
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deg_long += (decode_int(long_sexa[i]))*pow(10,-i+5);
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}
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long_dec = (int) (deg_long/100);
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long_dec += (deg_long-long_dec*100)/60;
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return long_dec;
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297 | pdamar | ||
303 | pdamar | }
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297 | pdamar | float conversion(char * chaine){ //Cette fonction convertie soit une latitude soit une longitude en degr?.
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int cpt = 0;
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while (chaine[cpt]!='\0'){
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cpt++;
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}
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if (cpt == 9){
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return conv_lattitude(chaine);
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}
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else if(cpt==10){
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return conv_longitude(chaine);
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}
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else{
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return 1000.0;
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}
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}
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303 | pdamar | ||
1 | jalaffon | void traitement(char * trame)
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129 | pdamar | {
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static int cpt=0;
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145 | pdamar | cpt++ ;
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152 | pdamar | if(trame_cmp(trame,"GPGGA")) //n'afficher que la trame GPGGA
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145 | pdamar | printf ("> %s\n",trame);
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303 | pdamar | }
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160 | pdamar | //Ajouter vos tests unitaires dans cette fonction.
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294 | pdamar | void test_conv_longitude(void){
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160 | pdamar | ||
303 | pdamar | if (fabs(conv_longitude("00306.6036")-3.11006)>= pow(10,-6)){
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294 | pdamar | printf ("Erreur Test unitaire conv_longitude.\n");
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exit(-1);
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}
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160 | pdamar | ||
294 | pdamar | }
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303 | pdamar | void test_conversion(void){
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if (fabs(conversion("00306.6036")-3.11006)>= pow(10,-6)){
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printf ("Erreur Test unitaire Conversion.\n");
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exit(-1);
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}
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if (fabs(conversion("3723.2475")-37.387458)>= pow(10,-6)){
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printf ("Erreur Test unitaire Conversion.\n");
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exit(-1);
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}
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}
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294 | pdamar | void test_conv_lattitude(void){
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if (fabs(conv_lattitude("3723.2475")-37.387458)>= pow(10,-6)){
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printf ("Erreur Test unitaire conv_latitude.\n");
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exit(-1);
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}
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}
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160 | pdamar | void test_decode_int(void) // test de d?code int
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152 | pdamar | {
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if(decode_int('0') != 0)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('1') != 1)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('2') != 2)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('3') != 3)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('4') != 4)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('5') != 5)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('6') != 6)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('7') != 7)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('8') != 8)
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{
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160 | pdamar | printf ("Erreur Test unitaire decode_int.\n");// test de d?code int
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152 | pdamar | exit(-1);
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}
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if(decode_int('9') != 9)
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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if(decode_int('L') != (-1))
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{
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printf ("Erreur Test unitaire decode_int.\n");
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exit(-1);
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}
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303 | pdamar | }
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void test_decode_nombre(void)
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{
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if (decode_nombre("1236",3)!=123){
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printf ("Erreur Test unitaire decode_nombre.\n");
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exit(-1);
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}
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152 | pdamar | }
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303 | pdamar | ||
152 | pdamar | void tests_unitaires(void){ // le test unitaire de la fonction trame_cmp
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145 | pdamar | if (5!=5){
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printf ("Erreur Test unitaire basique.\n");
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exit(-1);
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}
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if (trame_cmp("$GPGGA suite chaine","GPGGA")!=1){
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printf ("Erreur Test unitaire trame_cmp 1.\n");
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exit(-1);
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}
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if (trame_cmp("$GPRMC suite chaine","GPGGA")!=0){
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printf ("Erreur Test unitaire trame_cmp 2.\n");
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exit(-1);
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}
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if (trame_cmp("$GPRMC... ", "GPRMC" )!=1){
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printf ("Erreur Test unitaire trame_cmp 3.\n");
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exit(-1);
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}
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if (trame_cmp("$APRMC...", "GPGGA")!=0){
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printf ("Erreur Test unitaire trame_cmp4.\n");
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1 | jalaffon | exit(-1);
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152 | pdamar | }
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160 | pdamar | ||
303 | pdamar | test_decode_int();
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test_conv_lattitude();
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test_decode_nombre();
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test_conv_longitude();
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test_conversion();
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1 | jalaffon | ||
303 | pdamar | }
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1 | jalaffon | // Ne pas modifier cette fonction
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int main(int argc,char ** argv)
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{
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303 | pdamar | tests_unitaires ();
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1 | jalaffon | ||
// Affichage des trames definies dans la table trames.
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printf ("Trames de tests tableau trames:\n");
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int i=0;
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while (trames[i])
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traitement(trames[i++]);
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if (!trame_init())
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exit(-1);
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// Affichage des trames du fichier gps.log
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char *trame;
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printf ("Trames de tests du fichier gps.log\n");
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while ((trame = trame_suivante()))
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traitement(trame);
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return 0;
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303 | pdamar | }
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309 | pdamar | //....................................SEANCE 2....................................................//
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typedef struct { // Structure Position
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float latitude;
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float longitude;
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} Position;
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typedef struct { // Structure Zone
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Position rpos;
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float vitmax;
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} Zone;
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Zone zones[] = { //Pour nos tests on cree une zone.
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{{44.7887762, -3.012}, 50}, // Description de la premiere zone
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{{44.7891220, -3,013}, 70},
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};
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Position decode_trame(char * trame){ //On va decoder la trame et l'afficher
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if (trame_cmp(trame, "GPGGA")!= 1){ //On regarde si on est au bon format.
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printf("Cette trame n'est pas au bon format.");
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}
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else{ //Si c'est le cas on continue
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//On definit notre structure
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Position position_trame; //Initialisation.
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char latitude[10];
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char longitude[11];
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int n = 0;
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int i = 0;
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int j = 0;
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int k = 0;
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while (trame[i] != '\0'){ //On veut r?cup?rer les diff?rentes informations suivant le mod?le pr?cis de trame.
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if (trame[i] == ','){ //On rep?re les virgules
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n = n + 1;
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i = i + 1;
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}
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if (n == 2) { //Apr?s virgule 2 on a la latitude
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latitude[j] = trame[i]; //On r?cup?re la latitude
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j = j + 1;
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}
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if (n == 4) { //Apr?s virgule 4 on a la longitude
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longitude[k] = trame[i]; //On stocke caract?re par caract?re pour isoler la longitude afin de la convertir.
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k = k + 1;
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}
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i ++;
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}
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latitude[j] = '\0'; //On ferme bien la chaine
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longitude[k] = '\0';
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position_trame.latitude = conv_lattitude(latitude);
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position_trame.longitude = conv_longitude(longitude); //On stocke la latitude et la longitude convertie dans structure position.
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return position_trame;
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}
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}
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float calcule_distance(Position position_trame1, Position position_trame2){
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//On utilise la formule en connaissant le rayon de la terre.
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float x = (position_trame2.longitude - position_trame1.longitude) * cos( (position_trame1.latitude + position_trame2.latitude) / 2);
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float y = position_trame2.latitude - position_trame1.latitude;
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float z = sqrt(x*x + y*y);
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float k = 1.852 * 60;
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float d = k * z;
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return d;
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315 | pdamar | ||
309 | pdamar | }
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