esp-idf/components/wpa_supplicant/esp_supplicant/src/esp_wpa_main.c

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/*
* SPDX-FileCopyrightText: 2019-2021 Espressif Systems (Shanghai) CO LTD
*
* SPDX-License-Identifier: Apache-2.0
*/
#include "utils/includes.h"
#include "utils/common.h"
#include "rsn_supp/wpa.h"
#include "rsn_supp/wpa_i.h"
#include "common/eapol_common.h"
#include "common/ieee802_11_defs.h"
#include "rsn_supp/wpa_ie.h"
#include "ap/wpa_auth.h"
#include "ap/wpa_auth_i.h"
#include "ap/ap_config.h"
#include "ap/hostapd.h"
#include "esp_wpas_glue.h"
#include "esp_hostap.h"
#include "esp_system.h"
#include "crypto/crypto.h"
#include "crypto/sha1.h"
#include "crypto/aes_wrap.h"
#include "esp_wifi_driver.h"
#include "esp_private/wifi.h"
#include "esp_wpa3_i.h"
#include "esp_wpa2.h"
#include "esp_common_i.h"
void wpa_install_key(enum wpa_alg alg, u8 *addr, int key_idx, int set_tx,
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u8 *seq, size_t seq_len, u8 *key, size_t key_len, enum key_flag key_flag)
{
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esp_wifi_set_sta_key_internal(alg, addr, key_idx, set_tx, seq, seq_len, key, key_len, key_flag);
}
int wpa_get_key(uint8_t *ifx, int *alg, u8 *addr, int *key_idx,
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u8 *key, size_t key_len, enum key_flag key_flag)
{
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return esp_wifi_get_sta_key_internal(ifx, alg, addr, key_idx, key, key_len, key_flag);
}
/**
* eapol_sm_notify_eap_success - Notification of external EAP success trigger
* @sm: Pointer to EAPOL state machine allocated with eapol_sm_init()
* @success: %TRUE = set success, %FALSE = clear success
*
* Notify the EAPOL state machine that external event has forced EAP state to
* success (success = %TRUE). This can be cleared by setting success = %FALSE.
*
* This function is called to update EAP state when WPA-PSK key handshake has
* been completed successfully since WPA-PSK does not use EAP state machine.
*/
/* fix buf for tx for now */
#define WPA_TX_MSG_BUFF_MAXLEN 200
void wpa_sendto_wrapper(void *buffer, u16 len)
{
esp_wifi_internal_tx(0, buffer, len);
}
void wpa_deauthenticate(u8 reason_code)
{
esp_wifi_deauthenticate_internal(reason_code);
}
int wpa_config_profile(void)
{
if (esp_wifi_sta_prof_is_wpa_internal()) {
wpa_set_profile(WPA_PROTO_WPA, esp_wifi_sta_get_prof_authmode_internal());
} else if (esp_wifi_sta_prof_is_wpa2_internal() || esp_wifi_sta_prof_is_wpa3_internal()) {
wpa_set_profile(WPA_PROTO_RSN, esp_wifi_sta_get_prof_authmode_internal());
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} else if (esp_wifi_sta_prof_is_wapi_internal()) {
wpa_set_profile(WPA_PROTO_WAPI, esp_wifi_sta_get_prof_authmode_internal());
} else {
/* do nothing */
return -1;
}
return 0;
}
int wpa_config_bss(uint8_t *bssid)
{
int ret = 0;
struct wifi_ssid *ssid = esp_wifi_sta_get_prof_ssid_internal();
u8 mac[6];
esp_wifi_get_macaddr_internal(0, mac);
ret = wpa_set_bss((char *)mac, (char *)bssid, esp_wifi_sta_get_pairwise_cipher_internal(), esp_wifi_sta_get_group_cipher_internal(),
(char *)esp_wifi_sta_get_prof_password_internal(), ssid->ssid, ssid->len);
return ret;
}
void wpa_config_assoc_ie(u8 proto, u8 *assoc_buf, u32 assoc_wpa_ie_len)
{
if (proto == BIT(0)) {
esp_wifi_set_appie_internal(WIFI_APPIE_WPA, assoc_buf, assoc_wpa_ie_len, 1);
} else {
esp_wifi_set_appie_internal(WIFI_APPIE_RSN, assoc_buf, assoc_wpa_ie_len, 1);
}
}
void wpa_neg_complete(void)
{
esp_wifi_auth_done_internal();
}
bool wpa_attach(void)
{
bool ret = true;
ret = wpa_sm_init(NULL, wpa_sendto_wrapper,
wpa_config_assoc_ie, wpa_install_key, wpa_get_key, wpa_deauthenticate, wpa_neg_complete);
if(ret) {
ret = (esp_wifi_register_tx_cb_internal(eapol_txcb, WIFI_TXCB_EAPOL_ID) == ESP_OK);
}
esp_set_scan_ie();
esp_set_assoc_ie();
return ret;
}
uint8_t *wpa_ap_get_wpa_ie(uint8_t *ie_len)
{
struct hostapd_data *hapd = (struct hostapd_data *)esp_wifi_get_hostap_private_internal();
if (!hapd || !hapd->wpa_auth || !hapd->wpa_auth->wpa_ie) {
return NULL;
}
*ie_len = hapd->wpa_auth->wpa_ie_len;
return hapd->wpa_auth->wpa_ie;
}
bool wpa_ap_rx_eapol(void *hapd_data, void *sm_data, u8 *data, size_t data_len)
{
struct hostapd_data *hapd = (struct hostapd_data *)hapd_data;
struct wpa_state_machine *sm = (struct wpa_state_machine *)sm_data;
if (!hapd || !sm) {
return false;
}
wpa_receive(hapd->wpa_auth, sm, data, data_len);
return true;
}
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void wpa_ap_get_peer_spp_msg(void *sm_data, bool *spp_cap, bool *spp_req)
{
struct wpa_state_machine *sm = (struct wpa_state_machine *)sm_data;
if (!sm) {
return;
}
*spp_cap = sm->spp_sup.capable;
*spp_req = sm->spp_sup.require;
}
bool wpa_deattach(void)
{
esp_wifi_sta_wpa2_ent_disable();
wpa_sm_deinit();
return true;
}
int wpa_sta_connect(uint8_t *bssid)
{
/* use this API to set AP specific IEs during connection */
int ret = 0;
ret = wpa_config_profile();
if (ret == 0) {
ret = wpa_config_bss(bssid);
if (ret) {
wpa_printf(MSG_DEBUG, "Rejecting bss, validation failed");
return ret;
}
}
return 0;
}
void wpa_config_done(void)
{
/* used in future for setting scan and assoc IEs */
esp_set_assoc_ie();
}
int wpa_parse_wpa_ie_wrapper(const u8 *wpa_ie, size_t wpa_ie_len, wifi_wpa_ie_t *data)
{
struct wpa_ie_data ie;
int ret = 0;
ret = wpa_parse_wpa_ie(wpa_ie, wpa_ie_len, &ie);
data->proto = ie.proto;
data->pairwise_cipher = cipher_type_map_supp_to_public(ie.pairwise_cipher);
data->group_cipher = cipher_type_map_supp_to_public(ie.group_cipher);
data->key_mgmt = ie.key_mgmt;
data->capabilities = ie.capabilities;
data->pmkid = ie.pmkid;
data->mgmt_group_cipher = cipher_type_map_supp_to_public(ie.mgmt_group_cipher);
return ret;
}
static void wpa_sta_disconnected_cb(uint8_t reason_code)
{
switch (reason_code) {
case WIFI_REASON_UNSPECIFIED:
case WIFI_REASON_AUTH_EXPIRE:
case WIFI_REASON_NOT_AUTHED:
case WIFI_REASON_NOT_ASSOCED:
case WIFI_REASON_4WAY_HANDSHAKE_TIMEOUT:
case WIFI_REASON_INVALID_PMKID:
case WIFI_REASON_AUTH_FAIL:
case WIFI_REASON_ASSOC_FAIL:
case WIFI_REASON_CONNECTION_FAIL:
case WIFI_REASON_HANDSHAKE_TIMEOUT:
esp_wpa3_free_sae_data();
wpa_sta_clear_curr_pmksa();
break;
default:
break;
}
}
#ifndef ROAMING_SUPPORT
static inline int esp_supplicant_common_init(struct wpa_funcs *wpa_cb)
{
wpa_cb->wpa_sta_rx_mgmt = NULL;
wpa_cb->wpa_sta_profile_match = NULL;
return 0;
}
static inline void esp_supplicant_common_deinit(void)
{
}
#endif
int esp_supplicant_init(void)
{
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int ret = ESP_OK;
struct wpa_funcs *wpa_cb;
wpa_cb = (struct wpa_funcs *)os_zalloc(sizeof(struct wpa_funcs));
if (!wpa_cb) {
return ESP_ERR_NO_MEM;
}
wpa_cb->wpa_sta_init = wpa_attach;
wpa_cb->wpa_sta_deinit = wpa_deattach;
wpa_cb->wpa_sta_rx_eapol = wpa_sm_rx_eapol;
wpa_cb->wpa_sta_connect = wpa_sta_connect;
wpa_cb->wpa_sta_disconnected_cb = wpa_sta_disconnected_cb;
wpa_cb->wpa_sta_in_4way_handshake = wpa_sta_in_4way_handshake;
#ifdef CONFIG_ESP_WIFI_SOFTAP_SUPPORT
wpa_cb->wpa_ap_join = wpa_ap_join;
wpa_cb->wpa_ap_remove = wpa_ap_remove;
wpa_cb->wpa_ap_get_wpa_ie = wpa_ap_get_wpa_ie;
wpa_cb->wpa_ap_rx_eapol = wpa_ap_rx_eapol;
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wpa_cb->wpa_ap_get_peer_spp_msg = wpa_ap_get_peer_spp_msg;
wpa_cb->wpa_ap_init = hostap_init;
wpa_cb->wpa_ap_deinit = hostap_deinit;
#endif
wpa_cb->wpa_config_parse_string = wpa_config_parse_string;
wpa_cb->wpa_parse_wpa_ie = wpa_parse_wpa_ie_wrapper;
wpa_cb->wpa_config_bss = NULL;//wpa_config_bss;
wpa_cb->wpa_michael_mic_failure = wpa_michael_mic_failure;
wpa_cb->wpa_config_done = wpa_config_done;
esp_wifi_register_wpa3_cb(wpa_cb);
ret = esp_supplicant_common_init(wpa_cb);
if (ret != 0) {
return ret;
}
esp_wifi_register_wpa_cb_internal(wpa_cb);
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#if CONFIG_WPA_WAPI_PSK
ret = esp_wifi_internal_wapi_init();
#endif
return ret;
}
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int esp_supplicant_deinit(void)
{
esp_supplicant_common_deinit();
return esp_wifi_unregister_wpa_cb_internal();
}