138 lines
3.9 KiB
C
138 lines
3.9 KiB
C
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#include "pico/cyw43_arch.h"
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#include "Teleplot.h"
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// Si le fichier n'existe pas, créez-le à partir du modèle "wifi_settings.h.default"
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#include "wifi_settings.h"
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#define BEACON_MSG_LEN_MAX 500
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char teleplot_tampon[BEACON_MSG_LEN_MAX]="";
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struct udp_pcb* pcb;
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ip_addr_t addr;
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long teleplote_temps_ms;
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bool teleplot_temps_fige;
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int Teleplot_init(void){
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if (cyw43_arch_init()) {
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printf("failed to initialise\n");
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return 1;
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}
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cyw43_arch_enable_sta_mode();
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printf("Connecting to Wi-Fi...\n");
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if (cyw43_arch_wifi_connect_timeout_ms(MY_WIFI_SSID, MY_WIFI_PASSWORD, CYW43_AUTH_WPA2_AES_PSK, 30000)) {
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printf("failed to connect.\n");
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return 1;
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} else {
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printf("Connected.\n");
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}
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pcb = udp_new();
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ipaddr_aton(BEACON_TARGET, &addr);
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teleplot_temps_fige = false;
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return 0;
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}
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void teleplot_udp_send_string(char * message){
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static int counter = 0;
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struct pbuf *p = pbuf_alloc(PBUF_TRANSPORT, BEACON_MSG_LEN_MAX+1, PBUF_RAM);
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char *req = (char *)p->payload;
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memset(req, 0, BEACON_MSG_LEN_MAX+1);
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snprintf(req, BEACON_MSG_LEN_MAX, "%s", message);
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err_t er = udp_sendto(pcb, p, &addr, UDP_PORT);
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pbuf_free(p);
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if (er != ERR_OK) {
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printf("Failed to send UDP packet! error=%d", er);
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} else {
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//printf("Sent packet %d\n", counter);
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counter++;
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}
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// Note in practice for this simple UDP transmitter,
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// the end result for both background and poll is the same
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#if PICO_CYW43_ARCH_POLL
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// if you are using pico_cyw43_arch_poll, then you must poll periodically from your
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// main loop (not from a timer) to check for Wi-Fi driver or lwIP work that needs to be done.
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cyw43_arch_poll();
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#else
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// if you are not using pico_cyw43_arch_poll, then WiFI driver and lwIP work
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// is done via interrupt in the background. This sleep is just an example of some (blocking)
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// work you might be doing.
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// sleep_ms(BEACON_INTERVAL_MS);
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#endif
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}
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void Teleplot_send_string(){
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#ifdef WIFI_ENABLE
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teleplot_udp_send_string(teleplot_tampon);
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#else
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printf(teleplot_tampon);
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#endif
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}
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/// @brief Renvoi le temps en milliseconde, le temps réel ou le temps figé
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/// @param
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/// @return temps en millisecondes
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long Teleplot_get_temps(void){
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if(teleplot_temps_fige){
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return teleplote_temps_ms;
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}
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return (long) (time_us_64()/1000);
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}
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/// @brief Permet de "bloquer le temps" pour recevoir toutes les données datées à la même milliseconde
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/// Simplifie beaucoup le traitement des données en CSV lors d'un import dans un tableur.
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void Teleplot_fige_temps(void){
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teleplot_temps_fige = false;
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teleplote_temps_ms = Teleplot_get_temps();
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teleplot_temps_fige = true;
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}
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void Teleplot_relache_temps(void){
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teleplot_temps_fige = false;
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}
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void Teleplot_envoie_tampon(void){
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Teleplot_send_string(teleplot_tampon);
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teleplot_tampon[0]='\0'; // On "vide" le tampon
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}
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void Teleplot_ajout_ou_envoie_tampon(char * message){
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// Si le tampon ne peut pas accueillir le prochain message
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// On envoie et on vide le tampon
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if(strlen(message) + strlen(teleplot_tampon) > BEACON_MSG_LEN_MAX){
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Teleplot_envoie_tampon();
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}
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// On ajoute le message au tampon
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strcat(teleplot_tampon, message);
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}
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void Teleplot_add_variable_float_2decimal(char * nom_variable, float valeur){
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char tampon[100];
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#ifdef WIFI_ENABLE
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sprintf(tampon, "%s:%lu:%.2f\n", nom_variable, Teleplot_get_temps(), valeur);
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#else
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sprintf(tampon, ">%s:%lu:%.2f\n", nom_variable, Teleplot_get_temps(), valeur);
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#endif
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Teleplot_ajout_ou_envoie_tampon(tampon);
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}
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void Teleplot_add_variable_int(char * nom_variable, int valeur){
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char tampon[100];
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#ifdef WIFI_ENABLE
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sprintf(tampon, "%s:%lu:%d\n", nom_variable, Teleplot_get_temps(), valeur);
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#else
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sprintf(tampon, ">%s:%lu:%d\n", nom_variable, Teleplot_get_temps(), valeur);
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#endif
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Teleplot_ajout_ou_envoie_tampon(tampon);
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}
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