root/branch/david_guillaume/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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#include "trame.h"
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300 | gudavid2 | ||
typedef struct position{
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float Lat;
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float Long;
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} position;
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1 | jalaffon | ||
//Trames de tests ? modifier si n?cessaire.
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300 | gudavid2 | char *trames[]= {"$GPGSV,3,2,10,15,03,077,,18,04,041,42,19,85,271,,20,08,214,*7C",
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1 | jalaffon | "$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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316 | gudavid2 | //Fonction ? modifier !!!!!
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147 | gudavid2 | int trame_cmp(char *trame, char *type){
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130 | gudavid2 | int test=1;
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int i;
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138 | gudavid2 | for(i=0;i<5;i++){
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130 | gudavid2 | if(trame[i+1]!=type[i]){
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test=0;
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}
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}
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return test;
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}
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147 | gudavid2 | ||
int decode_int(char c){
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int res;
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if((c>=48)&&(c<=58)){
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res=c-48;
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}
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else{
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res=-1;
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}
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return res;
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}
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154 | gudavid2 | ||
int decode_nombre(char *ch,int n){
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int r=0;
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int i;
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for(i=0;i<n;i++){
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r=10*r+decode_int(ch[i]);
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}
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return r;
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}
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171 | gudavid2 | ||
float decode_latitude(char *trame){
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int i;
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char minute[5];
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float degreLat;
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float minLat;
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float resDecodeLat;
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for(i=0;i<4;i++){
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minute[i]=trame[i+22];
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}
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degreLat=10*decode_int(trame[17])+decode_int(trame[18]);
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minLat=10*decode_int(trame[19])+decode_int(trame[20])+0.0001*decode_nombre(minute,4);
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resDecodeLat=degreLat+minLat/60;
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return resDecodeLat;
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}
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274 | gudavid2 | ||
float decode_longitude(char *trame){
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int i;
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char minute[5];
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float degreLong;
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float minLong;
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float resDecodeLong;
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for(i=0;i<4;i++){
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minute[i]=trame[i+35];
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}
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degreLong=100*decode_int(trame[29])+10*decode_int(trame[30])+decode_int(trame[31]);
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minLong=10*decode_int(trame[32])+decode_int(trame[33])+0.0001*decode_nombre(minute,4);
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resDecodeLong=degreLong+minLong/60;
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return resDecodeLong;
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}
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277 | gudavid2 | ||
300 | gudavid2 | position decode_position(char *trame){
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position p;
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277 | gudavid2 | ||
300 | gudavid2 | p.Lat=decode_latitude(trame);
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p.Long=decode_longitude(trame);
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277 | gudavid2 | ||
300 | gudavid2 | return p ;
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}
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277 | gudavid2 | ||
300 | gudavid2 | position decode_trame(char *trame){
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position pos;
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pos.Lat=0;
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pos.Long=0;
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277 | gudavid2 | ||
300 | gudavid2 | if(trame_cmp(trame,"GPGGA")==1){
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pos=decode_position(trame);
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}
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277 | gudavid2 | ||
300 | gudavid2 | return pos;
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277 | gudavid2 | }
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300 | gudavid2 | ||
316 | gudavid2 | float calcul_distance(position p1,position p2){
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float x,y,d;
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x=sin(abs(p1.Long-p2.Long))*6370;
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y=sin(abs(p1.Lat-p2.Lat))*6370;
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d=sqrt(x*x+y*y);
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return d;
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}
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306 | gudavid2 | void traitement(char * trame){
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static int cpt=0;
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cpt++;
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if (trame_cmp(trame,"GPGGA")==1){
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printf("> %s\n",trame);
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printf("> > latitude : %.16f degre\n",decode_trame(trame).Lat);
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printf("> > longitude : %.16f degre\n\n\n",decode_trame(trame).Long);
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}
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}
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1 | jalaffon | ||
//Ajouter vos tests unitaires dans cette fonction.
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void tests_unitaires(void){
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if (5!=5){
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printf ("Erreur Test unitaire basique.\n");
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exit(-1);
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147 | gudavid2 | }
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130 | gudavid2 | ||
if(trame_cmp("$GPGGA suite chaine","GPGGA")!=1){
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138 | gudavid2 | printf("Erreur test unitaire trame_cmp\n");
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exit(-1);
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}
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if(trame_cmp("$GPRMC suite chaine","GPGGA")!=0){
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printf("Erreur test unitaire trame_cmp\n");
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exit(-1);
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}
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if(trame_cmp("$GPRMC suite chaine","GPRMC")!=1){
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printf("Erreur test unitaire trame_cmp\n");
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exit(-1);
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}
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if(trame_cmp("$APRMC suite chaine","GPGGA")!=0){
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printf("Erreur test unitaire trame_cmp\n");
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exit(-1);
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147 | gudavid2 | }
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154 | gudavid2 | test_decode_int();
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171 | gudavid2 | test_decode_nombre();
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274 | gudavid2 | test_decode_latitude();
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277 | gudavid2 | test_decode_longitude();
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300 | gudavid2 | test_decode_position();
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316 | gudavid2 | test_decode_trame();
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test_calcul_distance();
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1 | jalaffon | }
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147 | gudavid2 | ||
void test_decode_int(void){
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if(decode_int('0')!=0){
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printf("Erreur test unitaire decode-int10\n");
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exit(-1);
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}
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if(decode_int('1')!=1){
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printf("Erreur test unitaire decode-int11\n");
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exit(-1);
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}
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if(decode_int('2')!=2){
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printf("Erreur test unitaire decode-int12\n");
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exit(-1);
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}
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if(decode_int('3')!=3){
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printf("Erreur test unitaire decode-int13\n");
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exit(-1);
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}
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if(decode_int('4')!=4){
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printf("Erreur test unitaire decode-int14\n");
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exit(-1);
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}
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if(decode_int('5')!=5){
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printf("Erreur test unitaire decode-int15\n");
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exit(-1);
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}
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if(decode_int('6')!=6){
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printf("Erreur test unitaire decode-int16\n");
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exit(-1);
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}
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if(decode_int('7')!=7){
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printf("Erreur test unitaire decode-int17\n");
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exit(-1);
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}
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if(decode_int('8')!=8){
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printf("Erreur test unitaire decode-int18\n");
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exit(-1);
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}
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if(decode_int('9')!=9){
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printf("Erreur test unitaire decode-int19\n");
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exit(-1);
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}
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if(decode_int('A')!=-1){
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printf("Erreur test unitaire decode-int2\n");
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exit(-1);
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}
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if(decode_int('Z')!=-1){
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printf("Erreur test unitaire decode-int3\n");
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exit(-1);
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}
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}
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154 | gudavid2 | ||
void test_decode_nombre(void){
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char t[5];
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t[0]='1';t[1]='2';t[2]='3';t[3]='4';
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if(decode_nombre(t,1)!=1){
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printf("Erreur test unitaire decode-nombre1\n");
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exit(-1);
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}
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if(decode_nombre(t,4)!=1234){
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printf("Erreur test unitaire decode-nombre2\n");
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exit(-1);
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}
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}
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171 | gudavid2 | ||
void test_decode_latitude(void){
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if(decode_latitude("$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D")!=45.75){
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printf("Erreur test unitaire decode_latitude\n");
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exit(-1);
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}
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}
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274 | gudavid2 | ||
void test_decode_longitude(void){
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276 | gudavid2 | if(decode_longitude("$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D")!=3.1100599765777588){
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274 | gudavid2 | printf("Erreur test unitaire decode_longitude\n");
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exit(-1);
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}
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}
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277 | gudavid2 | ||
void test_decode_position(void){
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300 | gudavid2 | if(decode_position("$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D").Long!=3.1100599765777588){
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277 | gudavid2 | printf("Erreur test unitaire decode_position1\n");
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exit(-1);
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}
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300 | gudavid2 | if(decode_position("$GPGGA,141914.00,4545.0000,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D").Lat!=45.75){
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277 | gudavid2 | printf("Erreur test unitaire decode_position2\n");
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exit(-1);
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}
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300 | gudavid2 | if(decode_position("$GPGGA,141914.00,4545.0000,N,12412.6012,E,1,05,3.4,499.3,M,,M,,*7D").Long!=124.21002197265625){
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277 | gudavid2 | printf("Erreur test unitaire decode_position3\n");
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exit(-1);
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}
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300 | gudavid2 | if(decode_position("$GPGGA,141914.00,2734.0060,N,00306.6036,E,1,05,3.4,499.3,M,,M,,*7D").Lat!=27.566766738891602){
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277 | gudavid2 | printf("Erreur test unitaire decode_position4\n");
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exit(-1);
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}
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}
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300 | gudavid2 | ||
void test_decode_trame(void){
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if(decode_trame(trames[0]).Lat!=0){
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printf("Erreur test decode trame1\n");
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exit(-1);
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}
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if(decode_trame(trames[0]).Long!=0){
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printf("Erreur test decode trame2\n");
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exit(-1);
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}
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if(decode_trame(trames[4]).Lat!=45.75){
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printf("Erreur test decode trame3\n");
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exit(-1);
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}
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if(decode_trame(trames[4]).Long!=3.1100599765777588){
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printf("Erreur test decode trame4\n");
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exit(-1);
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}
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}
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316 | gudavid2 | ||
void test_calcul_distance(void){
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position pa, pb;
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pa.Lat=48.85341;
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pa.Long=2.3488;
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pb.Lat=43.296482;
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pb.Long=5.36978;
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printf("%f\n\n\n",calcul_distance(pa,pb));
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}
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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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tests_unitaires();
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// 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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}
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