HelenOS sources
This source file includes following definitions.
- print_syntax
- nic_addr_format
- get_wifi_list
- get_wifi_by_index
- wifi_list
- wifi_connect
- wifi_disconnect
- wifi_scan
- main
#include <ieee80211_iface.h>
#include <inet/inetcfg.h>
#include <inet/dhcp.h>
#include <errno.h>
#include <stdio.h>
#include <stdlib.h>
#include <str.h>
#include <str_error.h>
#include <loc.h>
#define NAME  "wifi_supplicant"
#define enum_name(name_arr, i) \
        ((i < 0) ? "NA" : name_arr[i])
static const char *ieee80211_security_type_strs[] = {
        "OPEN", "WEP", "WPA", "WPA2"
};
static const char *ieee80211_security_alg_strs[] = {
        "WEP40", "WEP104", "CCMP", "TKIP"
};
static const char *ieee80211_security_auth_strs[] = {
        "PSK", "8021X"
};
static void print_syntax(void)
{
        printf("syntax:\n");
        printf("\t" NAME " [<cmd> [<args...>]]\n");
        printf("\t<cmd> is:\n");
        printf("\tlist - list wifi devices in <index>: <name> format\n");
        printf("\tscan <index> [-n] - output scan results (force scan "
            "immediately)\n");
        printf("\tconnect <index> <ssid_prefix> [<password>] - connect to "
            "network\n");
        printf("\tdisconnect <index> - disconnect from network\n");
}
static void nic_addr_format(nic_address_t *addr, char *out, size_t out_size)
{
        snprintf(out, out_size, "%02x:%02x:%02x:%02x:%02x:%02x",
            addr->address[0], addr->address[1], addr->address[2],
            addr->address[3], addr->address[4], addr->address[5]);
}
static errno_t get_wifi_list(service_id_t **wifis, size_t *count)
{
        category_id_t wifi_cat;
        errno_t rc = loc_category_get_id("ieee80211", &wifi_cat, 0);
        if (rc != EOK) {
                printf("Error resolving category 'ieee80211'.\n");
                return rc;
        }
        rc = loc_category_get_svcs(wifi_cat, wifis, count);
        if (rc != EOK) {
                printf("Error getting list of WIFIs.\n");
                return rc;
        }
        return EOK;
}
static async_sess_t *get_wifi_by_index(size_t i)
{
        service_id_t *wifis = NULL;
        size_t count;
        errno_t rc = get_wifi_list(&wifis, &count);
        if (rc != EOK) {
                printf("Error fetching wifi list.\n");
                return NULL;
        }
        if (i >= count) {
                printf("Invalid wifi index.\n");
                free(wifis);
                return NULL;
        }
        async_sess_t *sess =
            loc_service_connect(wifis[i], INTERFACE_DDF, 0);
        if (sess == NULL) {
                printf("Error connecting to service.\n");
                free(wifis);
                return NULL;
        }
        return sess;
}
static errno_t wifi_list(void)
{
        service_id_t *wifis = NULL;
        size_t count;
        errno_t rc = get_wifi_list(&wifis, &count);
        if (rc != EOK) {
                printf("Error fetching wifi list: %s\n", str_error(rc));
                return EINVAL;
        }
        printf("[Index]: [Service Name]\n");
        for (size_t i = 0; i < count; i++) {
                char *svc_name;
                rc = loc_service_get_name(wifis[i], &svc_name);
                if (rc != EOK) {
                        printf("Error getting service name: %s\n", str_error(rc));
                        free(wifis);
                        return rc;
                }
                printf("%zu: %s\n", i, svc_name);
                free(svc_name);
        }
        return EOK;
}
static errno_t wifi_connect(uint32_t index, char *ssid_start, char *password)
{
        assert(ssid_start);
        async_sess_t *sess = get_wifi_by_index(index);
        if (sess == NULL) {
                printf("Specified WIFI doesn't exist or cannot connect to "
                    "it.\n");
                return EINVAL;
        }
        errno_t rc = ieee80211_disconnect(sess);
        if (rc != EOK) {
                if (rc == EREFUSED)
                        printf("Device is not ready yet.\n");
                else
                        printf("Error when disconnecting device: %s\n",
                            str_error(rc));
                return rc;
        }
        rc = ieee80211_connect(sess, ssid_start, password);
        if (rc != EOK) {
                if (rc == EREFUSED)
                        printf("Device is not ready yet.\n");
                else if (rc == ETIMEOUT)
                        printf("Timeout when authenticating to network.\n");
                else if (rc == ENOENT)
                        printf("Given SSID not in scan results.\n");
                else
                        printf("Error when connecting to network: %s\n",
                            str_error(rc));
                return rc;
        }
        
        printf("Successfully connected to network!\n");
        return EOK;
}
static errno_t wifi_disconnect(uint32_t index)
{
        async_sess_t *sess = get_wifi_by_index(index);
        if (sess == NULL) {
                printf("Specified WIFI doesn't exist or cannot connect to "
                    "it.\n");
                return EINVAL;
        }
        errno_t rc = ieee80211_disconnect(sess);
        if (rc != EOK) {
                if (rc == EREFUSED)
                        printf("Device is not ready yet.\n");
                else if (rc == EINVAL)
                        printf("Not connected to any WiFi network.\n");
                else
                        printf("Error when disconnecting from network: %s\n",
                            str_error(rc));
                return rc;
        }
        printf("Successfully disconnected.\n");
        return EOK;
}
static errno_t wifi_scan(uint32_t index, bool now)
{
        async_sess_t *sess = get_wifi_by_index(index);
        if (sess == NULL) {
                printf("Specified WIFI doesn't exist or cannot connect to "
                    "it.\n");
                return EINVAL;
        }
        ieee80211_scan_results_t scan_results;
        errno_t rc = ieee80211_get_scan_results(sess, &scan_results, now);
        if (rc != EOK) {
                if (rc == EREFUSED)
                        printf("Device is not ready yet.\n");
                else
                        printf("Failed to fetch scan results: %s\n",
                            str_error(rc));
                return rc;
        }
        if (scan_results.length == 0)
                return EOK;
        printf("%16.16s %17s %4s %5s %5s %7s %7s\n",
            "SSID", "MAC", "CHAN", "TYPE", "AUTH", "UNI-ALG", "GRP-ALG");
        for (uint8_t i = 0; i < scan_results.length; i++) {
                ieee80211_scan_result_t result = scan_results.results[i];
                char mac_addr_hex[18];
                nic_addr_format(&result.bssid, mac_addr_hex, 18);
                printf("%16.16s %17s %4d %5s %5s %7s %7s\n",
                    result.ssid, mac_addr_hex,
                    result.channel,
                    enum_name(ieee80211_security_type_strs, result.security.type),
                    enum_name(ieee80211_security_auth_strs, result.security.auth),
                    enum_name(ieee80211_security_alg_strs, result.security.pair_alg),
                    enum_name(ieee80211_security_alg_strs, result.security.group_alg));
        }
        return EOK;
}
int main(int argc, char *argv[])
{
        errno_t rc = inetcfg_init();
        if (rc != EOK) {
                printf("%s: Failed connecting to inetcfg service: %s.\n",
                    NAME, str_error(rc));
                return 1;
        }
        rc = dhcp_init();
        if (rc != EOK) {
                printf("%s: Failed connecting to dhcp service: %s.\n",
                    NAME, str_error(rc));
                return 1;
        }
        if (argc == 2) {
                if (!str_cmp(argv[1], "list"))
                        return wifi_list();
        } else if (argc > 2) {
                uint32_t index;
                rc = str_uint32_t(argv[2], NULL, 10, false, &index);
                if (rc != EOK) {
                        printf("%s: Invalid argument.\n", NAME);
                        print_syntax();
                        return EINVAL;
                }
                if (!str_cmp(argv[1], "scan")) {
                        bool now = false;
                        if (argc > 3)
                                if (!str_cmp(argv[3], "-n"))
                                        now = true;
                        return wifi_scan(index, now);
                } else if (!str_cmp(argv[1], "connect")) {
                        char *pass = NULL;
                        if (argc > 3) {
                                if (argc > 4)
                                        pass = argv[4];
                                return wifi_connect(index, argv[3], pass);
                        }
                } else if (!str_cmp(argv[1], "disconnect"))
                        return wifi_disconnect(index);
        }
        print_syntax();
        return EOK;
}
HelenOS homepage, sources at GitHub