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1 /*
2  * Copyright (c) 2023 Huawei Device Co., Ltd.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at
6  *
7  *     http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 
16 #ifdef HDI_WPA_INTERFACE_SUPPORT
17 #include "wifi_hdi_wpa_client.h"
18 
19 #include <codecvt>
20 #include <fstream>
21 #include <iostream>
22 #include <locale>
23 #include <securec.h>
24 #include <unistd.h>
25 
26 #include "wifi_hdi_wpa_sta_impl.h"
27 #include "wifi_hdi_wpa_callback.h"
28 #include "wifi_hdi_wpa_ap_impl.h"
29 #include "wifi_hdi_wpa_p2p_impl.h"
30 #include "wifi_hdi_util.h"
31 #include "wifi_common_util.h"
32 #include "wifi_common_def.h"
33 #include "hdi_struct_toolkit.h"
34 #include "wifi_hdi_wpa_proxy.h"
35 #include "define.h"
36 
37 #ifndef UT_TEST
38 #include "wifi_log.h"
39 #else
40 #define static
41 #define LOGI(...)
42 #define LOGE(...)
43 #endif
44 
45 #undef LOG_TAG
46 #define LOG_TAG "WifiHdiWpaClient"
47 
48 #define HOSTAPD_CFG_VALUE_ON 1
49 #define DEFAULT_HOSTAPD_CONF_PATH CONFIG_ROOR_DIR"/wpa_supplicant/hostapd.conf"
50 
51 namespace OHOS {
52 namespace Wifi {
53 #define MAX_IFACENAME_LEN 6
54 #define MAX_CMD_BUFFER_SIZE 1024
55 #define MAX_PASSWORD_LEN 32
56 constexpr int PMF_OPTIONAL = 1;
57 constexpr int PMF_REQUIRED = 2;
58 const int BUFFER_SIZE = 4096;
59 constexpr int WIFI_HDI_STR_MAC_LENGTH = 17;
60 constexpr int WIFI_HDI_MAX_STR_LENGTH = 512;
61 constexpr int WIFI_MAX_SCAN_COUNT = 256;
62 constexpr int P2P_SUPPLICANT_DISCONNECTED = 0;
63 constexpr int P2P_SUPPLICANT_CONNECTED = 1;
64 constexpr int SSID_ASSIC_WIDTH = 2;
65 constexpr int BAND_WIDTH_OFFSET = 16;
66 
StartWifi(const std::string & ifaceName,int instId)67 WifiErrorNo WifiHdiWpaClient::StartWifi(const std::string &ifaceName, int instId)
68 {
69     WifiEventCallback callback;
70     callback.onConnectChanged = [](int param1, int param2, const std::string &param3) {};
71     ReqRegisterStaEventCallback(callback, ifaceName.c_str(), instId);
72     LOGI("WifiHdiWpaClient StartWifi ifaceName:%{public}s instId:%{public}d", ifaceName.c_str(), instId);
73     return HdiWpaStaStart(ifaceName.c_str(), instId);
74 }
75 
StopWifi(int instId)76 WifiErrorNo WifiHdiWpaClient::StopWifi(int instId)
77 {
78     return HdiWpaStaStop(instId);
79 }
80 
ReqConnect(int networkId,const char * ifaceName)81 WifiErrorNo WifiHdiWpaClient::ReqConnect(int networkId, const char *ifaceName)
82 {
83     return HdiWpaStaConnect(networkId, ifaceName);
84 }
85 
ReqReconnect(const char * ifaceName)86 WifiErrorNo WifiHdiWpaClient::ReqReconnect(const char *ifaceName)
87 {
88     return HdiWpaStaReconnect(ifaceName);
89 }
90 
ReqReassociate(const char * ifaceName)91 WifiErrorNo WifiHdiWpaClient::ReqReassociate(const char *ifaceName)
92 {
93     return HdiWpaStaReassociate(ifaceName);
94 }
95 
ReqDisconnect(const char * ifaceName)96 WifiErrorNo WifiHdiWpaClient::ReqDisconnect(const char *ifaceName)
97 {
98     return HdiWpaStaDisconnect(ifaceName);
99 }
100 
GetStaCapabilities(unsigned int & capabilities)101 WifiErrorNo WifiHdiWpaClient::GetStaCapabilities(unsigned int &capabilities)
102 {
103     capabilities = 0;
104     return WIFI_HAL_OPT_OK;
105 }
106 
GetStaDeviceMacAddress(std::string & mac,const char * ifaceName)107 WifiErrorNo WifiHdiWpaClient::GetStaDeviceMacAddress(std::string &mac, const char *ifaceName)
108 {
109     char macAddr[HAL_BSSID_LENGTH + 1] = {0};
110     int macAddrLen = HAL_BSSID_LENGTH + 1;
111     WifiErrorNo err = HdiWpaStaGetDeviceMacAddress(macAddr, macAddrLen, ifaceName);
112     if (err == WIFI_HAL_OPT_OK) {
113         mac = std::string(macAddr);
114     }
115     return err;
116 }
117 
GetSupportFrequencies(int band,std::vector<int> & frequencies)118 WifiErrorNo WifiHdiWpaClient::GetSupportFrequencies(int band, std::vector<int> &frequencies)
119 {
120     return WIFI_HAL_OPT_NOT_SUPPORT;
121 }
122 
SetConnectMacAddr(const std::string & mac)123 WifiErrorNo WifiHdiWpaClient::SetConnectMacAddr(const std::string &mac)
124 {
125     return WIFI_HAL_OPT_NOT_SUPPORT;
126 }
127 
Scan(const WifiHalScanParam & scanParam)128 WifiErrorNo WifiHdiWpaClient::Scan(const WifiHalScanParam &scanParam)
129 {
130     return HdiWpaStaScan();
131 }
132 
QueryScanInfos(std::vector<InterScanInfo> & scanInfos)133 WifiErrorNo WifiHdiWpaClient::QueryScanInfos(std::vector<InterScanInfo> &scanInfos)
134 {
135     LOGI("WifiHdiWpaClient::%{public}s enter", __func__);
136     int size = HAL_GET_MAX_SCAN_INFO;
137     ScanInfo *results = HdiWpaStaGetScanInfos(&size, GetHdiStaIfaceName(INSTID_WLAN0));
138     if (results == NULL) {
139         return size == 0 ? WIFI_HAL_OPT_OK : WIFI_HAL_OPT_FAILED;
140     }
141     for (int i = 0; i < size; ++i) {
142         InterScanInfo tmp;
143         tmp.ssid = results[i].ssid;
144         tmp.bssid = results[i].bssid;
145         tmp.frequency = results[i].freq;
146         tmp.rssi = results[i].siglv;
147         tmp.timestamp = results[i].timestamp;
148         tmp.capabilities = results[i].flags;
149         tmp.channelWidth = (WifiChannelWidth)results[i].channelWidth;
150         tmp.centerFrequency0 = results[i].centerFrequency0;
151         tmp.centerFrequency1 = results[i].centerFrequency1;
152         tmp.isVhtInfoExist = results[i].isVhtInfoExist;
153         tmp.isHtInfoExist = results[i].isHtInfoExist;
154         tmp.isHeInfoExist = results[i].isHeInfoExist;
155         tmp.isErpExist = results[i].isErpExist;
156         tmp.maxRates = results[i].maxRates > results[i].extMaxRates ? results[i].maxRates : results[i].extMaxRates;
157         LOGI("WifiHdiWpaClient::QueryScanInfos ssid = %{public}s, ssid = %{public}s",
158             SsidAnonymize(results[i].ssid).c_str(), MacAnonymize(results[i].bssid).c_str());
159         for (int j = 0; j < results[i].ieSize; ++j) {
160             WifiInfoElem infoElemTmp;
161             int infoElemSize = results[i].infoElems[j].size;
162             infoElemTmp.id = results[i].infoElems[j].id;
163             for (int k = 0; k < infoElemSize; ++k) {
164                 infoElemTmp.content.emplace_back(results[i].infoElems[j].content[k]);
165             }
166             if (results[i].infoElems[j].content) {
167                 free(results[i].infoElems[j].content);
168             }
169             tmp.infoElems.emplace_back(infoElemTmp);
170         }
171         if (results[i].infoElems) {
172             free(results[i].infoElems);
173         }
174         tmp.isHiLinkNetwork = results[i].isHiLinkNetwork;
175         scanInfos.emplace_back(tmp);
176     }
177     free(results);
178     results = nullptr;
179     return WIFI_HAL_OPT_OK;
180 }
181 
ReqStartPnoScan(const WifiHalPnoScanParam & scanParam)182 WifiErrorNo WifiHdiWpaClient::ReqStartPnoScan(const WifiHalPnoScanParam &scanParam)
183 {
184     return WIFI_HAL_OPT_NOT_SUPPORT;
185 }
186 
ReqStopPnoScan(void)187 WifiErrorNo WifiHdiWpaClient::ReqStopPnoScan(void)
188 {
189     return WIFI_HAL_OPT_NOT_SUPPORT;
190 }
191 
RemoveDevice(int networkId,const char * ifaceName)192 WifiErrorNo WifiHdiWpaClient::RemoveDevice(int networkId, const char *ifaceName)
193 {
194     if (networkId < 0) {
195         return WIFI_HAL_OPT_INVALID_PARAM;
196     }
197 
198     return HdiWpaStaRemoveNetwork(networkId, ifaceName);
199 }
200 
ClearDeviceConfig(const char * ifaceName) const201 WifiErrorNo WifiHdiWpaClient::ClearDeviceConfig(const char *ifaceName) const
202 {
203     return HdiWpaStaRemoveNetwork(-1, ifaceName);
204 }
205 
GetNextNetworkId(int & networkId,const char * ifaceName)206 WifiErrorNo WifiHdiWpaClient::GetNextNetworkId(int &networkId, const char *ifaceName)
207 {
208     return HdiWpaStaAddNetwork(&networkId, ifaceName);
209 }
210 
ReqEnableNetwork(int networkId,const char * ifaceName)211 WifiErrorNo WifiHdiWpaClient::ReqEnableNetwork(int networkId, const char *ifaceName)
212 {
213     return HdiWpaStaEnableNetwork(networkId, ifaceName);
214 }
215 
ReqDisableNetwork(int networkId,const char * ifaceName)216 WifiErrorNo WifiHdiWpaClient::ReqDisableNetwork(int networkId, const char *ifaceName)
217 {
218     return HdiWpaStaDisableNetwork(networkId, ifaceName);
219 }
220 
SetWapiConfig(const WifiHalDeviceConfig & config,SetNetworkConfig * conf,int & num)221 void WifiHdiWpaClient::SetWapiConfig(const WifiHalDeviceConfig &config, SetNetworkConfig *conf, int &num)
222 {
223     LOGI("Enter SetWapiConfig, keyMgmt is %{public}s, pskType is %{public}d", config.keyMgmt.c_str(),
224         config.wapiPskType);
225     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_KEYMGMT, config.keyMgmt);
226     if (config.keyMgmt == KEY_MGMT_WAPI_PSK) {
227         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_WAPI_PSK_TYPE, config.wapiPskType);
228         num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WAPI_PSK, config.psk);
229     } else if (config.keyMgmt == KEY_MGMT_WAPI_CERT) {
230         num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WAPI_USER_CERT, config.wapiUserCertData);
231         num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WAPI_CA_CERT, config.wapiAsCertData);
232     }
233 }
234 
SetDeviceConfig(int networkId,const WifiHalDeviceConfig & config,const char * ifaceName)235 WifiErrorNo WifiHdiWpaClient::SetDeviceConfig(int networkId, const WifiHalDeviceConfig &config, const char *ifaceName)
236 {
237     if (CheckValidDeviceConfig(config) != WIFI_HAL_OPT_OK) {
238         LOGE("SetDeviceConfig, CheckValidDeviceConfig return error!");
239         return WIFI_HAL_OPT_FAILED;
240     }
241     SetNetworkConfig conf[DEVICE_CONFIG_END_POS];
242     if (memset_s(conf, sizeof(conf), 0, sizeof(conf)) != EOK) {
243         LOGE("SetDeviceConfig, memset_s return error!");
244         return WIFI_HAL_OPT_FAILED;
245     }
246     int num = 0;
247     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_SSID, config.ssid);
248     do {
249         if (config.keyMgmt.find(KEY_MGMT_WAPI) != std::string::npos) {
250             SetWapiConfig(config, conf, num);
251             break;
252         }
253         num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_PSK, config.psk);
254         if (config.keyMgmt.find(KEY_MGMT_SAE) != std::string::npos) {
255             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_SAE_PASSWD, config.psk);
256         }
257         if (config.keyMgmt == KEY_MGMT_NONE || config.keyMgmt == KEY_MGMT_WEP) {
258             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_KEYMGMT, KEY_MGMT_NONE);
259         } else {
260             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_KEYMGMT, config.keyMgmt);
261         }
262     } while (0);
263     EapMethod eapMethod = WifiEapConfig::Str2EapMethod(config.eapConfig.eap);
264     LOGI("%{public}s, eap:%{public}s, eapMethod:%{public}d, identity:%{private}s, num:%{public}d",
265         __func__, config.eapConfig.eap.c_str(), eapMethod, config.eapConfig.identity.c_str(), num);
266     switch (eapMethod) {
267         case EapMethod::EAP_PEAP:
268             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP, config.eapConfig.eap);
269             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_IDENTITY, config.eapConfig.identity);
270             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_PASSWORD, config.eapConfig.password);
271             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_CA_CERT, config.eapConfig.caCertPath);
272             if (config.eapConfig.phase2Method != static_cast<int>(Phase2Method::NONE)) {
273                 std::string strPhase2Method = WifiEapConfig::Phase2MethodToStr(config.eapConfig.eap,
274                     config.eapConfig.phase2Method);
275                 num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_PHASE2METHOD, strPhase2Method);
276             }
277             break;
278         case EapMethod::EAP_TLS:
279             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP, config.eapConfig.eap);
280             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_IDENTITY, config.eapConfig.identity);
281             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_CA_CERT, config.eapConfig.caCertPath);
282             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_CLIENT_CERT, config.eapConfig.clientCert);
283             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_PRIVATE_KEY, config.eapConfig.privateKey);
284             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_PASSWORD, config.eapConfig.password);
285             break;
286         case EapMethod::EAP_TTLS:
287             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP, config.eapConfig.eap);
288             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_IDENTITY, config.eapConfig.identity);
289             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_CA_CERT, config.eapConfig.caCertPath);
290             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_PASSWORD, config.eapConfig.password);
291             if (config.eapConfig.phase2Method != static_cast<int>(Phase2Method::NONE)) {
292                 std::string strPhase2Method = WifiEapConfig::Phase2MethodToStr(config.eapConfig.eap,
293                     config.eapConfig.phase2Method);
294                 num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP_PHASE2METHOD, strPhase2Method);
295             }
296             break;
297         case EapMethod::EAP_PWD:
298             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP, config.eapConfig.eap);
299             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_IDENTITY, config.eapConfig.identity);
300             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_PASSWORD, config.eapConfig.password);
301             break;
302         case EapMethod::EAP_SIM:
303         case EapMethod::EAP_AKA:
304         case EapMethod::EAP_AKA_PRIME:
305             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_EAP, config.eapConfig.eap);
306             num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_IDENTITY, config.eapConfig.identity);
307             break;
308         default:
309             LOGE("%{public}s, invalid eapMethod:%{public}d", __func__, eapMethod);
310             break;
311     }
312 
313     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_BSSID, config.bssid);
314     int i = 0;
315     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WEP_KEY_0, config.wepKeys[i++]);
316     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WEP_KEY_1, config.wepKeys[i++]);
317     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WEP_KEY_2, config.wepKeys[i++]);
318     num += PushDeviceConfigString(conf + num, DEVICE_CONFIG_WEP_KEY_3, config.wepKeys[i++]);
319     if (config.priority >= 0) {
320         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_PRIORITY, config.priority);
321     }
322     if (config.scanSsid == 1) {
323         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_SCAN_SSID, config.scanSsid);
324     }
325     if (config.wepKeyIdx >= 0) {
326         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_WEP_KEY_IDX, config.wepKeyIdx);
327     }
328     if (config.authAlgorithms > 0) {
329         num += PushDeviceConfigAuthAlgorithm(conf + num, DEVICE_CONFIG_AUTH_ALGORITHMS, config.authAlgorithms);
330     }
331     if (config.isRequirePmf) {
332         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_IEEE80211W, PMF_REQUIRED);
333     } else {
334         num += PushDeviceConfigInt(conf + num, DEVICE_CONFIG_IEEE80211W, PMF_OPTIONAL);
335     }
336     if (config.allowedProtocols > 0) {
337         std::string protocolsStr[] = {"WPA ", "RSN ", "WPA2 ", "OSEN ", "WAPI "};
338         num += PushDeviceConfigParseMask(conf + num, DEVICE_CONFIG_ALLOW_PROTOCOLS, config.allowedProtocols,
339                                          protocolsStr, sizeof(protocolsStr)/sizeof(protocolsStr[0]));
340     }
341     if (config.allowedPairwiseCiphers > 0) {
342         std::string pairwiseCipherStr[] = {"NONE ", "TKIP ", "CCMP ", "GCMP ", "CCMP-256 ", "GCMP-256 ", "SMS4 "};
343         num += PushDeviceConfigParseMask(conf + num, DEVICE_CONFIG_PAIRWISE_CIPHERS, config.allowedPairwiseCiphers,
344                                          pairwiseCipherStr, sizeof(pairwiseCipherStr)/sizeof(pairwiseCipherStr[0]));
345     }
346     if (config.allowedGroupCiphers > 0) {
347         std::string groupCipherStr[] = {"GTK_NOT_USED ", "TKIP ", "CCMP ", "GCMP ", "CCMP-256 ", "GCMP-256 ", "SMS4 "};
348         num += PushDeviceConfigParseMask(conf + num, DEVICE_CONFIG_GROUP_CIPHERS, config.allowedGroupCiphers,
349                                          groupCipherStr, sizeof(groupCipherStr)/sizeof(groupCipherStr[0]));
350     }
351     if (config.allowedGroupMgmtCiphers > 0) {
352         std::string groupMgmtCipherStr[] = {"AES-128-CMAC ", "BIP-GMAC-128 ", "BIP-GMAC-256 ", "BIP-CMAC-256 "};
353         num += PushDeviceConfigParseMask(conf + num, DEVICE_CONFIG_GROUP_MGMT_CIPHERS, config.allowedGroupMgmtCiphers,
354                                          groupMgmtCipherStr, sizeof(groupMgmtCipherStr)/sizeof(groupMgmtCipherStr[0]));
355     }
356     if (num == 0) {
357         return WIFI_HAL_OPT_OK;
358     }
359     return HdiWpaStaSetNetwork(networkId, conf, num, ifaceName);
360 }
361 
SetBssid(int networkId,const std::string & bssid,const char * ifaceName)362 WifiErrorNo WifiHdiWpaClient::SetBssid(int networkId, const std::string &bssid, const char *ifaceName)
363 {
364     SetNetworkConfig conf;
365     int num = PushDeviceConfigString(&conf, DEVICE_CONFIG_BSSID, bssid, false);
366     if (num == 0) {
367         LOGE("SetBssid, PushDeviceConfigString return error!");
368         return WIFI_HAL_OPT_OK;
369     }
370 
371     return HdiWpaStaSetNetwork(networkId, &conf, num, ifaceName);
372 }
373 
SaveDeviceConfig(const char * ifaceName)374 WifiErrorNo WifiHdiWpaClient::SaveDeviceConfig(const char *ifaceName)
375 {
376     return HdiWpaStaSaveConfig(ifaceName);
377 }
378 
ReqRegisterStaEventCallback(const WifiEventCallback & callback,const char * ifaceName,int instId)379 WifiErrorNo WifiHdiWpaClient::ReqRegisterStaEventCallback(
380     const WifiEventCallback &callback, const char *ifaceName, int instId)
381 {
382     struct IWpaCallback cWifiHdiWpaCallback;
383     if (memset_s(&cWifiHdiWpaCallback, sizeof(cWifiHdiWpaCallback), 0, sizeof(cWifiHdiWpaCallback)) != EOK) {
384         return WIFI_HAL_OPT_FAILED;
385     }
386 
387     if (callback.onConnectChanged != nullptr) {
388         cWifiHdiWpaCallback.OnEventDisconnected = OnEventDisconnected;
389         cWifiHdiWpaCallback.OnEventConnected = OnEventConnected;
390         cWifiHdiWpaCallback.OnEventBssidChanged = OnEventBssidChanged;
391         cWifiHdiWpaCallback.OnEventStateChanged = OnEventStateChanged;
392         cWifiHdiWpaCallback.OnEventTempDisabled = OnEventTempDisabled;
393         cWifiHdiWpaCallback.OnEventAssociateReject = OnEventAssociateReject;
394         cWifiHdiWpaCallback.OnEventWpsOverlap = OnEventWpsOverlap;
395         cWifiHdiWpaCallback.OnEventWpsTimeout = OnEventWpsTimeout;
396         cWifiHdiWpaCallback.OnEventAuthTimeout = OnEventAuthTimeout;
397         cWifiHdiWpaCallback.OnEventScanResult = OnEventScanResult;
398         cWifiHdiWpaCallback.OnEventStaNotify = OnEventStaNotify;
399     }
400 
401     return RegisterHdiWpaStaEventCallback(&cWifiHdiWpaCallback, ifaceName, instId);
402 }
403 
ReqStartWpsPbcMode(const WifiHalWpsConfig & config,const char * ifaceName)404 WifiErrorNo WifiHdiWpaClient::ReqStartWpsPbcMode(const WifiHalWpsConfig &config, const char *ifaceName)
405 {
406     WifiWpsParam param;
407     if (memset_s(&param, sizeof(param), 0, sizeof(param)) != EOK) {
408         return WIFI_HAL_OPT_FAILED;
409     }
410     param.anyFlag = config.anyFlag;
411     param.multiAp = config.multiAp;
412     if (strncpy_s(param.bssid, sizeof(param.bssid), config.bssid.c_str(), config.bssid.length()) != EOK) {
413         return WIFI_HAL_OPT_FAILED;
414     }
415     return HdiWpaStaStartWpsPbcMode(&param, ifaceName);
416 }
417 
ReqStartWpsPinMode(const WifiHalWpsConfig & config,int & pinCode,const char * ifaceName)418 WifiErrorNo WifiHdiWpaClient::ReqStartWpsPinMode(const WifiHalWpsConfig &config, int &pinCode, const char *ifaceName)
419 {
420     WifiWpsParam param;
421     if (memset_s(&param, sizeof(param), 0, sizeof(param)) != EOK) {
422         return WIFI_HAL_OPT_FAILED;
423     }
424     param.anyFlag = config.anyFlag;
425     param.multiAp = config.multiAp;
426     if (strncpy_s(param.bssid, sizeof(param.bssid), config.bssid.c_str(), config.bssid.length()) != EOK) {
427         return WIFI_HAL_OPT_FAILED;
428     }
429     if (!config.pinCode.empty()) {
430         if (strncpy_s(param.pinCode, sizeof(param.pinCode), config.pinCode.c_str(), config.pinCode.length()) != EOK) {
431             return WIFI_HAL_OPT_FAILED;
432         }
433     }
434     return HdiWpaStaStartWpsPinMode(&param, &pinCode, ifaceName);
435 }
436 
ReqStopWps(const char * ifaceName)437 WifiErrorNo WifiHdiWpaClient::ReqStopWps(const char *ifaceName)
438 {
439     return HdiStopWpsSta(ifaceName);
440 }
441 
ReqGetRoamingCapabilities(WifiHalRoamCapability & capability)442 WifiErrorNo WifiHdiWpaClient::ReqGetRoamingCapabilities(WifiHalRoamCapability &capability)
443 {
444     return WIFI_HAL_OPT_NOT_SUPPORT;
445 }
446 
ReqSetRoamConfig(const WifiHalRoamConfig & config)447 WifiErrorNo WifiHdiWpaClient::ReqSetRoamConfig(const WifiHalRoamConfig &config)
448 {
449     return WIFI_HAL_OPT_NOT_SUPPORT;
450 }
451 
ReqGetConnectSignalInfo(const std::string & endBssid,WifiHalWpaSignalInfo & info) const452 WifiErrorNo WifiHdiWpaClient::ReqGetConnectSignalInfo(const std::string &endBssid, WifiHalWpaSignalInfo &info) const
453 {
454     return WIFI_HAL_OPT_NOT_SUPPORT;
455 }
456 
ReqWpaAutoConnect(int enable,const char * ifaceName)457 WifiErrorNo WifiHdiWpaClient::ReqWpaAutoConnect(int enable, const char *ifaceName)
458 {
459     return HdiWpaStaAutoConnect(enable, ifaceName);
460 }
461 
ReqWpaBlocklistClear(const char * ifaceName)462 WifiErrorNo WifiHdiWpaClient::ReqWpaBlocklistClear(const char *ifaceName)
463 {
464     return HdiWpaStaBlocklistClear(ifaceName);
465 }
466 
ReqSetPowerSave(bool enable,const char * ifaceName)467 WifiErrorNo WifiHdiWpaClient::ReqSetPowerSave(bool enable, const char *ifaceName)
468 {
469     return HdiWpaStaSetPowerSave(enable, ifaceName);
470 }
471 
ReqWpaSetCountryCode(const std::string & countryCode,const char * ifaceName)472 WifiErrorNo WifiHdiWpaClient::ReqWpaSetCountryCode(const std::string &countryCode, const char *ifaceName)
473 {
474     return HdiWpaStaSetCountryCode(countryCode.c_str(), ifaceName);
475 }
476 
ReqWpaGetCountryCode(std::string & countryCode,const char * ifaceName)477 WifiErrorNo WifiHdiWpaClient::ReqWpaGetCountryCode(std::string &countryCode, const char *ifaceName)
478 {
479     char szCountryCode[HAL_COUNTRY_CODE_LENGTH + 1] = "";
480     if (WIFI_HAL_OPT_OK != HdiWpaStaGetCountryCode(szCountryCode, HAL_COUNTRY_CODE_LENGTH, ifaceName)) {
481         return WIFI_HAL_OPT_FAILED;
482     }
483     countryCode = szCountryCode;
484     return WIFI_HAL_OPT_OK;
485 }
486 
ReqWpaSetSuspendMode(bool mode,const char * ifaceName) const487 WifiErrorNo WifiHdiWpaClient::ReqWpaSetSuspendMode(bool mode, const char *ifaceName) const
488 {
489     return HdiWpaStaSetSuspendMode(mode, ifaceName);
490 }
491 
ReqWpaShellCmd(const std::string & ifName,const std::string & cmd)492 WifiErrorNo WifiHdiWpaClient::ReqWpaShellCmd(const std::string &ifName, const std::string &cmd)
493 {
494     char ifNameBuf[MAX_IFACENAME_LEN];
495     if (strncpy_s(ifNameBuf, sizeof(ifNameBuf), ifName.c_str(), ifName.length()) != EOK) {
496         LOGE("%{public}s: failed to copy", __func__);
497         return WIFI_HAL_OPT_FAILED;
498     }
499 
500     char cmdBuf[MAX_CMD_BUFFER_SIZE];
501     if (strncpy_s(cmdBuf, sizeof(cmdBuf), cmd.c_str(), cmd.length()) != EOK) {
502         LOGE("%{public}s: failed to copy", __func__);
503         return WIFI_HAL_OPT_FAILED;
504     }
505     return HdiWpaStaSetShellCmd(ifNameBuf, cmdBuf);
506 }
507 
ReqWpaGetPskPassphrase(const std::string & ifName,std::string & psk)508 WifiErrorNo WifiHdiWpaClient::ReqWpaGetPskPassphrase(const std::string &ifName, std::string &psk)
509 {
510     char ifNameBuf[MAX_IFACENAME_LEN];
511     char tmpPsk[MAX_CMD_BUFFER_SIZE] = {0};
512     uint32_t pskLen = MAX_PASSWORD_LEN;
513     if (strncpy_s(ifNameBuf, sizeof(ifNameBuf), ifName.c_str(), ifName.length()) != EOK) {
514         LOGE("%{public}s: failed to copy", __func__);
515         return WIFI_HAL_OPT_FAILED;
516     }
517 
518     if (HdiWpaStaGetPskPassphrase(ifNameBuf, tmpPsk, pskLen) != WIFI_HAL_OPT_OK) {
519         LOGE("%{public}s: GetPskPassphrase failed", __func__);
520         return WIFI_HAL_OPT_FAILED;
521     }
522     psk = tmpPsk;
523     return WIFI_HAL_OPT_OK;
524 }
525 
PushDeviceConfigString(SetNetworkConfig * pConfig,DeviceConfigType type,const std::string & msg,bool checkEmpty) const526 int WifiHdiWpaClient::PushDeviceConfigString(
527     SetNetworkConfig *pConfig, DeviceConfigType type, const std::string &msg, bool checkEmpty) const
528 {
529     if (!checkEmpty || msg.length() > 0) {
530         pConfig->cfgParam = type;
531         if (strncpy_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), msg.c_str(), msg.length()) != EOK) {
532             return 0;
533         }
534         return 1;
535     } else {
536         return 0;
537     }
538 }
539 
PushDeviceConfigInt(SetNetworkConfig * pConfig,DeviceConfigType type,int i) const540 int WifiHdiWpaClient::PushDeviceConfigInt(SetNetworkConfig *pConfig, DeviceConfigType type, int i) const
541 {
542     pConfig->cfgParam = type;
543     if (snprintf_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), sizeof(pConfig->cfgValue) - 1, "%d", i) < 0) {
544         return 0;
545     }
546     return 1;
547 }
548 
PushDeviceConfigAuthAlgorithm(SetNetworkConfig * pConfig,DeviceConfigType type,unsigned int alg) const549 int WifiHdiWpaClient::PushDeviceConfigAuthAlgorithm(
550     SetNetworkConfig *pConfig, DeviceConfigType type, unsigned int alg) const
551 {
552     pConfig->cfgParam = type;
553     if (alg & 0x1) {
554         if (strcat_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), "OPEN ") != EOK) {
555             return 0;
556         }
557     }
558     if (alg & 0x2) {
559         if (strcat_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), "OPEN SHARED ") != EOK) {
560             return 0;
561         }
562     }
563     if (alg & 0x4) {
564         if (strcat_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), "LEAP ") != EOK) {
565             return 0;
566         }
567     }
568     return 1;
569 }
570 
PushDeviceConfigParseMask(SetNetworkConfig * pConfig,DeviceConfigType type,unsigned int mask,const std::string parseStr[],int size) const571 int WifiHdiWpaClient::PushDeviceConfigParseMask(
572     SetNetworkConfig *pConfig, DeviceConfigType type,
573     unsigned int mask, const std::string parseStr[], int size) const
574 {
575     pConfig->cfgParam = type;
576     for (int i = 0; i < size; i++) {
577         if (mask & (0x1 << i)) {
578             if (strcat_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), parseStr[i].c_str()) != EOK) {
579                 return 0;
580             }
581         }
582     }
583     return 1;
584 }
585 
CheckValidDeviceConfig(const WifiHalDeviceConfig & config) const586 WifiErrorNo WifiHdiWpaClient::CheckValidDeviceConfig(const WifiHalDeviceConfig &config) const
587 {
588     if (config.psk.length() > 0) {
589         if (config.psk.length() < HAL_PSK_MIN_LENGTH || config.psk.length() > HAL_PSK_MAX_LENGTH) {
590             return WIFI_HAL_OPT_FAILED;
591         }
592     }
593     if (config.authAlgorithms >= HAL_AUTH_ALGORITHM_MAX) { /* max is 0111 */
594         return WIFI_HAL_OPT_FAILED;
595     }
596     return WIFI_HAL_OPT_OK;
597 }
598 
GetNetworkList(std::vector<WifiHalWpaNetworkInfo> & networkList,const char * ifaceName)599 WifiErrorNo WifiHdiWpaClient::GetNetworkList(std::vector<WifiHalWpaNetworkInfo> &networkList, const char *ifaceName)
600 {
601     HdiWifiWpaNetworkInfo *listNetwork = new HdiWifiWpaNetworkInfo[WIFI_MAX_SCAN_COUNT];
602     if (listNetwork == nullptr) {
603         LOGE("WifiHdiWpaClient::%{public}s alloc mem failed", __func__);
604         return WIFI_HAL_OPT_FAILED;
605     }
606     uint32_t size = WIFI_MAX_SCAN_COUNT;
607     if (WIFI_HAL_OPT_OK != HdiWpaListNetworks(listNetwork, &size, ifaceName)) {
608         if (listNetwork != nullptr) {
609             delete[] listNetwork;
610             listNetwork = nullptr;
611         }
612         LOGE("WifiHdiWpaClient::%{public}s failed", __func__);
613         return WIFI_HAL_OPT_FAILED;
614     }
615     for (uint32_t i = 0; i < size; i++) {
616         WifiHalWpaNetworkInfo networkInfo;
617         networkInfo.id = listNetwork[i].id;
618         char szssid[WIFI_HDI_MAX_STR_LENGTH +1] = {0};
619         for (uint32_t j = 0; j < listNetwork[i].ssidLen; j++) {
620             szssid[j] = listNetwork[i].ssid[j];
621         }
622         networkInfo.ssid = szssid;
623         char szBssid[WIFI_HDI_STR_MAC_LENGTH +1] = {0};
624         ConvertMacArr2String(listNetwork[i].bssid, listNetwork[i].bssidLen, szBssid, sizeof(szBssid));
625         networkInfo.bssid = szBssid;
626         char flags[WIFI_HDI_MAX_STR_LENGTH +1] = {0};
627         for (uint32_t j = 0; j < listNetwork[i].flagsLen;j++) {
628             flags[j] = listNetwork[i].flags[j];
629         }
630         networkInfo.flag = flags;
631         networkList.push_back(networkInfo);
632         FreeHdiWifiWpaNetworkInfo(&listNetwork[i]);
633     }
634     if (listNetwork != nullptr) {
635         delete[] listNetwork;
636         listNetwork = nullptr;
637     }
638     return WIFI_HAL_OPT_OK;
639 }
640 
GetDeviceConfig(WifiHalGetDeviceConfig & config,const char * ifaceName)641 WifiErrorNo WifiHdiWpaClient::GetDeviceConfig(WifiHalGetDeviceConfig &config, const char *ifaceName)
642 {
643     int32_t networkId = config.networkId;
644     char param[WIFI_HDI_MAX_STR_LENGTH +1] = {0};
645     if (memcpy_s(param, WIFI_HDI_MAX_STR_LENGTH, config.param.c_str(), config.param.length()) != EOK) {
646         LOGE("WifiHdiWpaClient::%{public}s memcpy_s failed", __func__);
647         return WIFI_HAL_OPT_FAILED;
648     }
649     char value[WIFI_HDI_MAX_STR_LENGTH +1] = {0};
650     uint32_t valueLen = WIFI_HDI_MAX_STR_LENGTH;
651     if (WIFI_HAL_OPT_OK != HdiWpaGetNetwork(networkId, param, value, valueLen, ifaceName)) {
652         LOGE("WifiHdiWpaClient::%{public}s failed", __func__);
653         return WIFI_HAL_OPT_FAILED;
654     }
655     config.value = value;
656     return WIFI_HAL_OPT_OK;
657 }
658 
StartAp(int id,const std::string & ifaceName)659 WifiErrorNo WifiHdiWpaClient::StartAp(int id, const std::string &ifaceName)
660 {
661     return HdiStartAp(ifaceName.c_str(), id);
662 }
663 
StopAp(int id)664 WifiErrorNo WifiHdiWpaClient::StopAp(int id)
665 {
666     return HdiStopAp(id);
667 }
668 
RegisterApEvent(IWifiApMonitorEventCallback callback,int id) const669 WifiErrorNo WifiHdiWpaClient::RegisterApEvent(IWifiApMonitorEventCallback callback, int id) const
670 {
671     IHostapdCallback cEventCallback;
672     if (memset_s(&cEventCallback, sizeof(cEventCallback), 0, sizeof(cEventCallback)) != EOK) {
673         return WIFI_HAL_OPT_FAILED;
674     }
675     if (callback.onStaJoinOrLeave != nullptr) {
676         cEventCallback.OnEventStaJoin = onEventStaJoin;
677         cEventCallback.OnEventApState = onEventApState;
678     }
679     return HdiRegisterApEventCallback(&cEventCallback);
680 }
681 
AppendStr(std::string & dst,const char * format,va_list args)682 void WifiHdiWpaClient::AppendStr(std::string &dst, const char* format, va_list args)
683 {
684     char space[MAX_CMD_BUFFER_SIZE] __attribute__((__uninitialized__));
685     va_list argsTmp;
686 
687     va_copy(argsTmp, args);
688     int result = vsnprintf_s(space, sizeof(space), sizeof(space) - 1, format, argsTmp);
689     va_end(argsTmp);
690     if (result >= 0) {
691         dst.append(space, result);
692         return;
693     }
694     if (result < 0) {
695         LOGE("AppendStr failed");
696         return;
697     }
698 }
699 
StringCombination(const char * fmt,...)700 std::string WifiHdiWpaClient::StringCombination(const char* fmt, ...)
701 {
702     va_list args;
703     va_start(args, fmt);
704     std::string result;
705     AppendStr(result, fmt, args);
706     va_end(args);
707     return result;
708 }
709 
ConvertToUtf8(const std::string ssid,std::vector<uint8_t> & ssidUtf8)710 void WifiHdiWpaClient::ConvertToUtf8(const std::string ssid, std::vector<uint8_t> &ssidUtf8)
711 {
712     std::wstring_convert<std::codecvt_utf8<wchar_t>> conv;
713     std::wstring wideStr = conv.from_bytes(ssid);
714     std::string utf8Str = conv.to_bytes(wideStr);
715     std::vector<uint8_t> utf8U8(utf8Str.begin(), utf8Str.end());
716     ssidUtf8 = utf8U8;
717 }
718 
GetSsidString(std::string & ssidString,std::vector<uint8_t> & ssidUtf8)719 void WifiHdiWpaClient::GetSsidString(std::string &ssidString, std::vector<uint8_t> &ssidUtf8)
720 {
721     std::stringstream ss;
722     ss << std::hex;
723     ss << std::setfill('0');
724     for (uint8_t b : ssidUtf8) {
725         ss << std::setw(SSID_ASSIC_WIDTH) << static_cast<unsigned int>(b);
726     }
727     ssidString = ss.str();
728 }
729 
GetEncryptionString(const HotspotConfig & config,std::string & encryptionString)730 bool WifiHdiWpaClient::GetEncryptionString(const HotspotConfig &config, std::string &encryptionString)
731 {
732     switch (config.GetSecurityType()) {
733         case KeyMgmt::WPA_PSK:
734             encryptionString = StringCombination(
735                 "wpa=3\n"
736                 "wpa_pairwise=TKIP CCMP\n"
737                 "wpa_passphrase=%s",
738                 config.GetPreSharedKey().c_str());
739             break;
740         case KeyMgmt::WPA2_PSK:
741             encryptionString = StringCombination(
742                 "wpa=2\n"
743                 "rsn_pairwise=CCMP\n"
744                 "wpa_passphrase=%s",
745                 config.GetPreSharedKey().c_str());
746             break;
747         default:
748             LOGE("unsupport security type");
749             encryptionString = "";
750             return false;
751     }
752     return true;
753 }
754 
GetChannelString(const HotspotConfig & config,std::string & channelString)755 void WifiHdiWpaClient::GetChannelString(const HotspotConfig &config, std::string &channelString)
756 {
757     uint32_t channel = (static_cast<uint32_t>(config.GetChannel()) |
758         (static_cast<uint32_t>(config.GetBandWidth()) << BAND_WIDTH_OFFSET));
759     LOGI("set ap channel mix info is %{public}u", channel);
760     channelString = StringCombination(
761         "channel=%u\n"
762         "op_class=0",
763         channel);
764 }
765 
GetModeString(const HotspotConfig & config,std::string & modeString)766 void WifiHdiWpaClient::GetModeString(const HotspotConfig &config, std::string &modeString)
767 {
768     /* configure hardware mode */
769     if (config.GetBand() == BandType::BAND_2GHZ) {
770         modeString = "hw_mode=g";
771     } else if (config.GetBand() == BandType::BAND_5GHZ) {
772         modeString = "hw_mode=a";
773     } else {
774         LOGE("unsupport band");
775         modeString = "";
776     }
777 }
778 
WriteConfigToFile(const std::string & fileContext)779 bool WifiHdiWpaClient::WriteConfigToFile(const std::string &fileContext)
780 {
781     std::string destPath = DEFAULT_HOSTAPD_CONF_PATH;
782     std::ofstream file;
783     file.open(destPath, std::ios::out);
784     if (!file.is_open()) {
785         LOGE("hostapd file open failed");
786         return false;
787     }
788     file << fileContext << std::endl;
789     file.close();
790     return true;
791 }
792 
SetSoftApConfig(const std::string & ifName,const HotspotConfig & config,int id)793 WifiErrorNo WifiHdiWpaClient::SetSoftApConfig(const std::string &ifName, const HotspotConfig &config, int id)
794 {
795     std::string ssid2String;
796     std::string encryptionString;
797     std::string channelString;
798     std::vector<uint8_t> ssidUtf8;
799     std::string modeString;
800     std::string fileContext;
801     ConvertToUtf8(config.GetSsid(), ssidUtf8);
802     GetSsidString(ssid2String, ssidUtf8);
803     if (!GetEncryptionString(config, encryptionString)) {
804         LOGE("set psk failed");
805         return WIFI_HAL_OPT_FAILED;
806     }
807     GetChannelString(config, channelString);
808     GetModeString(config, modeString);
809     fileContext = StringCombination(
810         "interface=%s\n"
811         "driver=nl80211\n"
812         "ctrl_interface=/data/service/el1/public/wifi/sockets/wpa\n"
813         "ssid2=%s\n"
814         "%s\n"
815         "ieee80211n=1\n"
816         "%s\n"
817         "ignore_broadcast_ssid=0\n"
818         "wowlan_triggers=any\n"
819         "%s\n",
820         ifName.c_str(), ssid2String.c_str(),
821         channelString.c_str(),
822         modeString.c_str(),
823         encryptionString.c_str());
824     if (!WriteConfigToFile(fileContext)) {
825         LOGE("write config failed");
826         return WIFI_HAL_OPT_FAILED;
827     }
828     return WIFI_HAL_OPT_OK;
829 }
830 
EnableAp(int id)831 WifiErrorNo WifiHdiWpaClient::EnableAp(int id)
832 {
833     if (HdiEnableAp(id) != WIFI_HAL_OPT_OK) {
834         return WIFI_HAL_OPT_FAILED;
835     }
836     return WIFI_HAL_OPT_OK;
837 }
838 
GetStationList(std::vector<std::string> & result,int id)839 WifiErrorNo WifiHdiWpaClient::GetStationList(std::vector<std::string> &result, int id)
840 {
841     char *staInfos = new (std::nothrow) char[BUFFER_SIZE]();
842     if (staInfos == nullptr) {
843         return WIFI_HAL_OPT_FAILED;
844     }
845     WifiErrorNo err = HdiGetStaInfos(staInfos, BUFFER_SIZE, id);
846     if (err != WIFI_HAL_OPT_OK) {
847         delete[] staInfos;
848         staInfos = nullptr;
849         return WIFI_HAL_OPT_FAILED;
850     }
851     std::string strStaInfo = std::string(staInfos);
852     SplitString(strStaInfo, ",", result);
853     delete[] staInfos;
854     staInfos = nullptr;
855     return WIFI_HAL_OPT_OK;
856 }
857 
AddBlockByMac(const std::string & mac,int id)858 WifiErrorNo WifiHdiWpaClient::AddBlockByMac(const std::string &mac, int id)
859 {
860     if (CheckMacIsValid(mac) != 0) {
861         return WIFI_HAL_OPT_INPUT_MAC_INVALID;
862     }
863     return HdiSetMacFilter(mac.c_str(), id);
864 }
865 
DelBlockByMac(const std::string & mac,int id)866 WifiErrorNo WifiHdiWpaClient::DelBlockByMac(const std::string &mac, int id)
867 {
868     if (CheckMacIsValid(mac) != 0) {
869         return WIFI_HAL_OPT_INPUT_MAC_INVALID;
870     }
871     return HdiDelMacFilter(mac.c_str(), id);
872 }
873 
RemoveStation(const std::string & mac,int id)874 WifiErrorNo WifiHdiWpaClient::RemoveStation(const std::string &mac, int id)
875 {
876     if (CheckMacIsValid(mac) != 0) {
877         return WIFI_HAL_OPT_INPUT_MAC_INVALID;
878     }
879     return HdiDisassociateSta(mac.c_str(), id);
880 }
881 
ReqDisconnectStaByMac(const std::string & mac,int id)882 WifiErrorNo WifiHdiWpaClient::ReqDisconnectStaByMac(const std::string &mac, int id)
883 {
884     if (CheckMacIsValid(mac) != 0) {
885         return WIFI_HAL_OPT_INPUT_MAC_INVALID;
886     }
887     return HdiDisassociateSta(mac.c_str(), id);
888 }
889 
ReqP2pStart(const std::string & ifaceName,const bool hasPersisentGroup)890 WifiErrorNo WifiHdiWpaClient::ReqP2pStart(const std::string &ifaceName, const bool hasPersisentGroup)
891 {
892     WifiErrorNo ret = HdiWpaP2pStart(ifaceName.c_str(), hasPersisentGroup);
893     if (ret == WIFI_HAL_OPT_OK) {
894         OnEventP2pStateChanged(P2P_SUPPLICANT_CONNECTED);
895     }
896     return ret;
897 }
898 
ReqP2pStop()899 WifiErrorNo WifiHdiWpaClient::ReqP2pStop()
900 {
901     WifiErrorNo ret = HdiWpaP2pStop();
902     if (ret == WIFI_HAL_OPT_OK) {
903         OnEventP2pStateChanged(P2P_SUPPLICANT_DISCONNECTED);
904     }
905     return ret;
906 }
907 
ReqP2pSetDeviceName(const std::string & name) const908 WifiErrorNo WifiHdiWpaClient::ReqP2pSetDeviceName(const std::string &name) const
909 {
910     return HdiP2pSetDeviceName(name.c_str());
911 }
912 
ReqP2pSetSsidPostfixName(const std::string & postfixName) const913 WifiErrorNo WifiHdiWpaClient::ReqP2pSetSsidPostfixName(const std::string &postfixName) const
914 {
915     return HdiP2pSetSsidPostfixName(postfixName.c_str());
916 }
917 
ReqP2pSetWpsDeviceType(const std::string & type) const918 WifiErrorNo WifiHdiWpaClient::ReqP2pSetWpsDeviceType(const std::string &type) const
919 {
920     return HdiP2pSetWpsDeviceType(type.c_str());
921 }
922 
ReqP2pSetWpsSecondaryDeviceType(const std::string & type) const923 WifiErrorNo WifiHdiWpaClient::ReqP2pSetWpsSecondaryDeviceType(const std::string &type) const
924 {
925     return HdiP2pSetWpsSecondaryDeviceType(type.c_str());
926 }
927 
ReqP2pSetWpsConfigMethods(const std::string & config) const928 WifiErrorNo WifiHdiWpaClient::ReqP2pSetWpsConfigMethods(const std::string &config) const
929 {
930     return HdiP2pSetWpsConfigMethods(config.c_str());
931 }
932 
ReqP2pGetDeviceAddress(std::string & deviceAddress) const933 WifiErrorNo WifiHdiWpaClient::ReqP2pGetDeviceAddress(std::string &deviceAddress) const
934 {
935     char address[HAL_P2P_DEV_ADDRESS_LEN] = {0};
936     WifiErrorNo ret = HdiP2pGetDeviceAddress(address, HAL_P2P_DEV_ADDRESS_LEN);
937     if (ret == WIFI_HAL_OPT_OK) {
938         deviceAddress = address;
939     }
940     return ret;
941 }
942 
ReqP2pFlush() const943 WifiErrorNo WifiHdiWpaClient::ReqP2pFlush() const
944 {
945     return HdiP2pFlush();
946 }
947 
ReqP2pFlushService() const948 WifiErrorNo WifiHdiWpaClient::ReqP2pFlushService() const
949 {
950     return HdiP2pFlushService();
951 }
952 
ReqP2pSaveConfig() const953 WifiErrorNo WifiHdiWpaClient::ReqP2pSaveConfig() const
954 {
955     return HdiP2pSaveConfig();
956 }
957 
ReqP2pRegisterCallback(const P2pHalCallback & callbacks) const958 WifiErrorNo WifiHdiWpaClient::ReqP2pRegisterCallback(const P2pHalCallback &callbacks) const
959 {
960     struct IWpaCallback cWifiHdiWpaCallback;
961     if (memset_s(&cWifiHdiWpaCallback, sizeof(cWifiHdiWpaCallback), 0, sizeof(cWifiHdiWpaCallback)) != EOK) {
962         return WIFI_HAL_OPT_FAILED;
963     }
964 
965     if (callbacks.onConnectSupplicant != nullptr) {
966         cWifiHdiWpaCallback.OnEventDeviceFound = OnEventDeviceFound;
967         cWifiHdiWpaCallback.OnEventDeviceLost = OnEventDeviceLost;
968         cWifiHdiWpaCallback.OnEventGoNegotiationRequest = OnEventGoNegotiationRequest;
969         cWifiHdiWpaCallback.OnEventGoNegotiationCompleted = OnEventGoNegotiationCompleted;
970         cWifiHdiWpaCallback.OnEventInvitationReceived = OnEventInvitationReceived;
971         cWifiHdiWpaCallback.OnEventInvitationResult = OnEventInvitationResult;
972         cWifiHdiWpaCallback.OnEventGroupFormationSuccess = OnEventGroupFormationSuccess;
973         cWifiHdiWpaCallback.OnEventGroupFormationFailure = OnEventGroupFormationFailure;
974         cWifiHdiWpaCallback.OnEventGroupStarted = OnEventGroupStarted;
975         cWifiHdiWpaCallback.OnEventGroupInfoStarted = OnEventGroupInfoStarted;
976         cWifiHdiWpaCallback.OnEventGroupRemoved = OnEventGroupRemoved;
977         cWifiHdiWpaCallback.OnEventProvisionDiscoveryCompleted = OnEventProvisionDiscoveryCompleted;
978         cWifiHdiWpaCallback.OnEventFindStopped = OnEventFindStopped;
979         cWifiHdiWpaCallback.OnEventServDiscReq = OnEventServDiscReq;
980         cWifiHdiWpaCallback.OnEventServDiscResp = OnEventServDiscResp;
981         cWifiHdiWpaCallback.OnEventStaConnectState = OnEventStaConnectState;
982         cWifiHdiWpaCallback.OnEventIfaceCreated = OnEventIfaceCreated;
983         cWifiHdiWpaCallback.OnEventStaNotify = OnEventStaNotify;
984     }
985 
986     return RegisterHdiWpaP2pEventCallback(&cWifiHdiWpaCallback);
987 }
988 
ReqP2pSetupWpsPbc(const std::string & groupInterface,const std::string & bssid) const989 WifiErrorNo WifiHdiWpaClient::ReqP2pSetupWpsPbc(const std::string &groupInterface, const std::string &bssid) const
990 {
991     return HdiP2pSetupWpsPbc(groupInterface.c_str(), bssid.c_str());
992 }
993 
ReqP2pSetupWpsPin(const std::string & groupInterface,const std::string & address,const std::string & pin,std::string & result) const994 WifiErrorNo WifiHdiWpaClient::ReqP2pSetupWpsPin(
995     const std::string &groupInterface, const std::string &address, const std::string &pin, std::string &result) const
996 {
997     if (!pin.empty() && pin.size() != HAL_PIN_CODE_LENGTH) {
998         return WIFI_HAL_OPT_INVALID_PARAM;
999     }
1000     char szPinCode[1024] = {0};
1001     WifiErrorNo ret = HdiP2pSetupWpsPin(groupInterface.c_str(), address.c_str(), pin.c_str(), szPinCode);
1002     if (ret == WIFI_HAL_OPT_OK) {
1003         result = szPinCode;
1004     }
1005     return ret;
1006 }
1007 
ReqP2pRemoveNetwork(int networkId) const1008 WifiErrorNo WifiHdiWpaClient::ReqP2pRemoveNetwork(int networkId) const
1009 {
1010     return HdiP2pRemoveNetwork(networkId);
1011 }
1012 
ReqP2pListNetworks(std::map<int,WifiP2pGroupInfo> & mapGroups) const1013 WifiErrorNo WifiHdiWpaClient::ReqP2pListNetworks(std::map<int, WifiP2pGroupInfo> &mapGroups) const
1014 {
1015     HdiP2pNetworkList infoList = {0};
1016     WifiErrorNo ret = HdiP2pListNetworks(&infoList);
1017     if (ret != WIFI_HAL_OPT_OK) {
1018         return ret;
1019     }
1020     if (infoList.infos == nullptr) {
1021         return ret;
1022     }
1023     LOGI("ReqP2pListNetworks size=%{public}d", infoList.infoNum);
1024     for (int i = 0; i < infoList.infoNum; ++i) {
1025         WifiP2pGroupInfo groupInfo;
1026         groupInfo.SetNetworkId(infoList.infos[i].id);
1027         groupInfo.SetGroupName((char *)infoList.infos[i].ssid);
1028 
1029         char address[18] = {0};
1030         ConvertMacArr2String(infoList.infos[i].bssid, ETH_ALEN, address, sizeof(address));
1031         WifiP2pDevice device;
1032         device.SetDeviceAddress(address);
1033         groupInfo.SetOwner(device);
1034         if (strstr((char *)infoList.infos[i].flags, "P2P-PERSISTENT") != nullptr) {
1035             groupInfo.SetIsPersistent(true);
1036         }
1037         mapGroups.insert(std::pair<int, WifiP2pGroupInfo>(infoList.infos[i].id, groupInfo));
1038         std::string ssid(reinterpret_cast<const char*>(infoList.infos[i].ssid));
1039         LOGI("ReqP2pListNetworks id=%{public}d ssid=%{public}s address=%{private}s",
1040             infoList.infos[i].id, SsidAnonymize(ssid).c_str(), address);
1041     }
1042     FreeHdiP2pNetworkList(&infoList);
1043     return ret;
1044 }
1045 
ReqP2pSetGroupMaxIdle(const std::string & groupInterface,size_t time) const1046 WifiErrorNo WifiHdiWpaClient::ReqP2pSetGroupMaxIdle(const std::string &groupInterface, size_t time) const
1047 {
1048     return HdiP2pSetGroupMaxIdle(groupInterface.c_str(), time);
1049 }
1050 
ReqP2pSetPowerSave(const std::string & groupInterface,bool enable) const1051 WifiErrorNo WifiHdiWpaClient::ReqP2pSetPowerSave(const std::string &groupInterface, bool enable) const
1052 {
1053     int flag = enable;
1054     return HdiP2pSetPowerSave(groupInterface.c_str(), flag);
1055 }
1056 
ReqP2pSetWfdEnable(bool enable) const1057 WifiErrorNo WifiHdiWpaClient::ReqP2pSetWfdEnable(bool enable) const
1058 {
1059     int flag = enable;
1060     return HdiP2pSetWfdEnable(flag);
1061 }
1062 
ReqP2pSetWfdDeviceConfig(const std::string & config) const1063 WifiErrorNo WifiHdiWpaClient::ReqP2pSetWfdDeviceConfig(const std::string &config) const
1064 {
1065     return HdiP2pSetWfdDeviceConfig(config.c_str());
1066 }
1067 
ReqP2pStartFind(size_t timeout) const1068 WifiErrorNo WifiHdiWpaClient::ReqP2pStartFind(size_t timeout) const
1069 {
1070     return HdiP2pStartFind(timeout);
1071 }
1072 
ReqP2pStopFind() const1073 WifiErrorNo WifiHdiWpaClient::ReqP2pStopFind() const
1074 {
1075     return HdiP2pStopFind();
1076 }
1077 
ReqP2pSetExtListen(bool enable,size_t period,size_t interval) const1078 WifiErrorNo WifiHdiWpaClient::ReqP2pSetExtListen(bool enable, size_t period, size_t interval) const
1079 {
1080     if (enable) {
1081         if (period < HAL_P2P_LISTEN_MIN_TIME || period > HAL_P2P_LISTEN_MAX_TIME ||
1082             interval < HAL_P2P_LISTEN_MIN_TIME || interval > HAL_P2P_LISTEN_MAX_TIME || period > interval) {
1083             return WIFI_HAL_OPT_INVALID_PARAM;
1084         }
1085     }
1086     int flag = enable;
1087     return HdiP2pSetExtListen(flag, period, interval);
1088 }
1089 
ReqP2pSetListenChannel(size_t channel,unsigned char regClass) const1090 WifiErrorNo WifiHdiWpaClient::ReqP2pSetListenChannel(size_t channel, unsigned char regClass) const
1091 {
1092     return HdiP2pSetListenChannel(channel, regClass);
1093 }
1094 
ReqP2pConnect(const WifiP2pConfigInternal & config,bool isJoinExistingGroup,std::string & pin) const1095 WifiErrorNo WifiHdiWpaClient::ReqP2pConnect(const WifiP2pConfigInternal &config, bool isJoinExistingGroup,
1096     std::string &pin) const
1097 {
1098     LOGI("ReqP2pConnect");
1099     P2pConnectInfo info = {0};
1100     info.mode = isJoinExistingGroup;
1101     info.persistent = config.GetNetId();
1102     if (isJoinExistingGroup) {
1103         info.goIntent = 0;
1104     } else {
1105         info.goIntent = config.GetGroupOwnerIntent();
1106     }
1107     if (info.goIntent < HAL_P2P_GO_INTENT_MIN_LENGTH || info.goIntent > HAL_P2P_GO_INTENT_MAX_LENGTH) {
1108         info.goIntent = HAL_P2P_GO_INTENT_DEFAULT_LENGTH;
1109     }
1110     std::string address = config.GetDeviceAddress();
1111     if (address.size() < HAL_BSSID_LENGTH) {
1112         LOGI("ReqP2pConnect Device Address is too short");
1113         return WIFI_HAL_OPT_INVALID_PARAM;
1114     }
1115     WpsMethod mode = config.GetWpsInfo().GetWpsMethod();
1116     if (mode == WpsMethod::WPS_METHOD_LABEL) {
1117         mode = WpsMethod::WPS_METHOD_KEYPAD;
1118     }
1119     info.provdisc = (int)mode;
1120     std::string pinCode = config.GetWpsInfo().GetPin();
1121     if (mode == WpsMethod::WPS_METHOD_PBC && !pinCode.empty()) {
1122         LOGI("ReqP2pConnect Expected empty pin for PBC.");
1123         return WIFI_HAL_OPT_INVALID_PARAM;
1124     }
1125     if (strncpy_s(info.peerDevAddr, sizeof(info.peerDevAddr), address.c_str(), address.length()) != EOK ||
1126         strncpy_s(info.pin, sizeof(info.pin), pinCode.c_str(), pinCode.length()) != EOK) {
1127         LOGI("ReqP2pConnect failed");
1128         return WIFI_HAL_OPT_FAILED;
1129     }
1130     char resPin[HAL_PIN_CODE_LENGTH + 1] = {0};
1131     WifiErrorNo ret = HdiP2pConnect(&info, resPin, HAL_PIN_CODE_LENGTH + 1);
1132     if (ret == WIFI_HAL_OPT_OK) {
1133         pin = resPin;
1134     }
1135     return ret;
1136 }
1137 
ReqP2pCancelConnect() const1138 WifiErrorNo WifiHdiWpaClient::ReqP2pCancelConnect() const
1139 {
1140     return HdiP2pCancelConnect();
1141 }
1142 
ReqP2pProvisionDiscovery(const WifiP2pConfigInternal & config) const1143 WifiErrorNo WifiHdiWpaClient::ReqP2pProvisionDiscovery(const WifiP2pConfigInternal &config) const
1144 {
1145     WpsMethod mode = config.GetWpsInfo().GetWpsMethod();
1146     if (mode == WpsMethod::WPS_METHOD_LABEL) {
1147         mode = WpsMethod::WPS_METHOD_DISPLAY;
1148     } else if (mode == WpsMethod::WPS_METHOD_DISPLAY) {
1149         mode = WpsMethod::WPS_METHOD_KEYPAD;
1150     } else if (mode == WpsMethod::WPS_METHOD_KEYPAD) {
1151         mode = WpsMethod::WPS_METHOD_DISPLAY;
1152     } else if (mode != WpsMethod::WPS_METHOD_PBC) {
1153         return WIFI_HAL_OPT_FAILED;
1154     }
1155     return HdiP2pProvisionDiscovery(config.GetDeviceAddress().c_str(), static_cast<int>(mode));
1156 }
1157 
ReqP2pAddGroup(bool isPersistent,int networkId,int freq) const1158 WifiErrorNo WifiHdiWpaClient::ReqP2pAddGroup(bool isPersistent, int networkId, int freq) const
1159 {
1160     int flag = isPersistent;
1161     return HdiP2pAddGroup(flag, networkId, freq);
1162 }
1163 
ReqP2pRemoveGroup(const std::string & groupInterface) const1164 WifiErrorNo WifiHdiWpaClient::ReqP2pRemoveGroup(const std::string &groupInterface) const
1165 {
1166     return HdiP2pRemoveGroup(groupInterface.c_str());
1167 }
1168 
ReqP2pInvite(const WifiP2pGroupInfo & group,const std::string & deviceAddr) const1169 WifiErrorNo WifiHdiWpaClient::ReqP2pInvite(const WifiP2pGroupInfo &group, const std::string &deviceAddr) const
1170 {
1171     return HdiP2pInvite(deviceAddr.c_str(), group.GetOwner().GetDeviceAddress().c_str(),
1172         group.GetInterface().c_str());
1173 }
1174 
ReqP2pReinvoke(int networkId,const std::string & deviceAddr) const1175 WifiErrorNo WifiHdiWpaClient::ReqP2pReinvoke(int networkId, const std::string &deviceAddr) const
1176 {
1177     LOGI("HdiP2pReinvoke networkId=%{public}d, bssid=%{public}s", networkId, MacAnonymize(deviceAddr).c_str());
1178     return HdiP2pReinvoke(networkId, deviceAddr.c_str());
1179 }
1180 
ReqP2pGetGroupCapability(const std::string & deviceAddress,uint32_t & cap) const1181 WifiErrorNo WifiHdiWpaClient::ReqP2pGetGroupCapability(const std::string &deviceAddress, uint32_t &cap) const
1182 {
1183     int capacity = 0;
1184     WifiErrorNo ret = HdiP2pGetGroupCapability(deviceAddress.c_str(), capacity);
1185     if (ret == WIFI_HAL_OPT_OK) {
1186         cap = capacity;
1187     }
1188     return ret;
1189 }
1190 
ReqP2pAddService(const WifiP2pServiceInfo & info) const1191 WifiErrorNo WifiHdiWpaClient::ReqP2pAddService(const WifiP2pServiceInfo &info) const
1192 {
1193     WifiErrorNo ret = WIFI_HAL_OPT_OK;
1194     HdiP2pServiceInfo servInfo = {0};
1195     std::vector<std::string> queryList = info.GetQueryList();
1196     for (auto iter = queryList.begin(); iter != queryList.end(); iter++) {
1197         std::vector<std::string> vec;
1198         SplitString(*iter, " ", vec);
1199         if (vec.size() < HAL_P2P_SERVICE_TYPE_MIN_SIZE) {
1200             return WIFI_HAL_OPT_FAILED;
1201         }
1202         if (memset_s(&servInfo, sizeof(servInfo), 0, sizeof(servInfo)) != EOK) {
1203             return WIFI_HAL_OPT_FAILED;
1204         }
1205         const std::string &tmp = vec[HAL_P2P_SERVICE_TYPE_2_POS];
1206         if (vec[0] == "upnp") {
1207             servInfo.mode = 0;
1208             servInfo.version = atoi(vec[1].c_str());
1209             if (strncpy_s((char *)servInfo.name, sizeof(servInfo.name), tmp.c_str(), tmp.length()) != EOK) {
1210                 return WIFI_HAL_OPT_FAILED;
1211             }
1212             ret = HdiP2pAddService(&servInfo);
1213         } else if (vec[0] == "bonjour") {
1214             servInfo.mode = 1;
1215             if (strncpy_s((char *)servInfo.query, sizeof(servInfo.query), vec[1].c_str(), vec[1].length()) != EOK ||
1216                 strncpy_s((char *)servInfo.resp, sizeof(servInfo.resp), tmp.c_str(), tmp.length()) != EOK) {
1217                 return WIFI_HAL_OPT_FAILED;
1218             }
1219             ret = HdiP2pAddService(&servInfo);
1220         } else {
1221             ret = WIFI_HAL_OPT_FAILED;
1222         }
1223         if (ret != WIFI_HAL_OPT_OK) {
1224             break;
1225         }
1226     }
1227     return ret;
1228 }
1229 
ReqP2pRemoveService(const WifiP2pServiceInfo & info) const1230 WifiErrorNo WifiHdiWpaClient::ReqP2pRemoveService(const WifiP2pServiceInfo &info) const
1231 {
1232     WifiErrorNo ret = WIFI_HAL_OPT_OK;
1233     HdiP2pServiceInfo servInfo = {0};
1234     std::vector<std::string> queryList = info.GetQueryList();
1235     for (auto iter = queryList.begin(); iter != queryList.end(); iter++) {
1236         std::vector<std::string> vec;
1237         SplitString(*iter, " ", vec);
1238         if (vec.size() < HAL_P2P_SERVICE_TYPE_MIN_SIZE) {
1239             return WIFI_HAL_OPT_FAILED;
1240         }
1241         if (memset_s(&servInfo, sizeof(servInfo), 0, sizeof(servInfo)) != EOK) {
1242             return WIFI_HAL_OPT_FAILED;
1243         }
1244         const std::string &tmp = vec[HAL_P2P_SERVICE_TYPE_2_POS];
1245         if (vec[0] == "upnp") {
1246             servInfo.mode = 0;
1247             servInfo.version = atoi(vec[1].c_str());
1248             if (strncpy_s((char *)servInfo.name, sizeof(servInfo.name), tmp.c_str(), tmp.length()) != EOK) {
1249                 return WIFI_HAL_OPT_FAILED;
1250             }
1251             ret = HdiP2pRemoveService(&servInfo);
1252         } else if (vec[0] == "bonjour") {
1253             servInfo.mode = 1;
1254             if (strncpy_s((char *)servInfo.query, sizeof(servInfo.query), vec[1].c_str(), vec[1].length()) != EOK) {
1255                 return WIFI_HAL_OPT_FAILED;
1256             }
1257             ret = HdiP2pRemoveService(&servInfo);
1258         } else {
1259             ret = WIFI_HAL_OPT_FAILED;
1260         }
1261         if (ret != WIFI_HAL_OPT_OK) {
1262             break;
1263         }
1264     }
1265     return ret;
1266 }
1267 
ReqP2pReqServiceDiscovery(const std::string & deviceAddress,const std::vector<unsigned char> & tlvs,std::string & reqID) const1268 WifiErrorNo WifiHdiWpaClient::ReqP2pReqServiceDiscovery(
1269     const std::string &deviceAddress, const std::vector<unsigned char> &tlvs, std::string &reqID) const
1270 {
1271     if (deviceAddress.size() != HAL_BSSID_LENGTH || tlvs.empty()) {
1272         return WIFI_HAL_OPT_INVALID_PARAM;
1273     }
1274     unsigned size = (tlvs.size() << 1) + 1;
1275     char *pTlvs = (char *)calloc(size, sizeof(char));
1276     if (pTlvs == nullptr || Val2HexChar(tlvs, pTlvs, size) < 0) {
1277         free(pTlvs);
1278         pTlvs = nullptr;
1279         return WIFI_HAL_OPT_FAILED;
1280     }
1281     struct HdiP2pReqService wpsParam = {0};
1282     wpsParam.bssid = (unsigned char *)deviceAddress.c_str();
1283     wpsParam.msg = (unsigned char *)pTlvs;
1284     char retBuf[HAL_P2P_TMP_BUFFER_SIZE_128] = {0};
1285     WifiErrorNo ret = HdiP2pReqServiceDiscovery(&wpsParam, retBuf, HAL_P2P_TMP_BUFFER_SIZE_128);
1286     if (ret == WIFI_HAL_OPT_OK) {
1287         reqID = retBuf;
1288     }
1289     free(pTlvs);
1290     pTlvs = nullptr;
1291     return ret;
1292 }
1293 
ReqP2pCancelServiceDiscovery(const std::string & id) const1294 WifiErrorNo WifiHdiWpaClient::ReqP2pCancelServiceDiscovery(const std::string &id) const
1295 {
1296     return HdiP2pCancelServiceDiscovery(id.c_str());
1297 }
1298 
ReqP2pSetRandomMac(bool enable) const1299 WifiErrorNo WifiHdiWpaClient::ReqP2pSetRandomMac(bool enable) const
1300 {
1301     return HdiP2pSetRandomMac(enable ? 1 : 0);
1302 }
1303 
ReqP2pSetMiracastType(int type) const1304 WifiErrorNo WifiHdiWpaClient::ReqP2pSetMiracastType(int type) const
1305 {
1306     return WIFI_HAL_OPT_FAILED;
1307 }
1308 
ReqSetPersistentReconnect(int mode) const1309 WifiErrorNo WifiHdiWpaClient::ReqSetPersistentReconnect(int mode) const
1310 {
1311     return HdiP2pSetPersistentReconnect(mode);
1312 }
1313 
ReqRespServiceDiscovery(const WifiP2pDevice & device,int frequency,int dialogToken,const std::vector<unsigned char> & tlvs) const1314 WifiErrorNo WifiHdiWpaClient::ReqRespServiceDiscovery(
1315     const WifiP2pDevice &device, int frequency, int dialogToken, const std::vector<unsigned char> &tlvs) const
1316 {
1317     if (tlvs.empty()) {
1318         return WIFI_HAL_OPT_INVALID_PARAM;
1319     }
1320     unsigned size = (tlvs.size() << 1) + 1;
1321     char *pTlvs = (char *)calloc(size, sizeof(char));
1322     if (pTlvs == nullptr || Val2HexChar(tlvs, pTlvs, size) < 0) {
1323         if (pTlvs != nullptr) {
1324             free(pTlvs);
1325             pTlvs = nullptr;
1326         }
1327         return WIFI_HAL_OPT_FAILED;
1328     }
1329     struct HdiP2pServDiscReqInfo wpsParam = {0};
1330     wpsParam.freq = frequency;
1331     wpsParam.dialogToken = dialogToken;
1332     wpsParam.mac = (unsigned char *)device.GetDeviceAddress().c_str();
1333     wpsParam.tlvs = (unsigned char *)pTlvs;
1334     WifiErrorNo ret = HdiP2pRespServerDiscovery(&wpsParam);
1335     free(pTlvs);
1336     pTlvs = nullptr;
1337     return ret;
1338 }
1339 
ReqSetServiceDiscoveryExternal(bool isExternalProcess) const1340 WifiErrorNo WifiHdiWpaClient::ReqSetServiceDiscoveryExternal(bool isExternalProcess) const
1341 {
1342     return HdiP2pSetServDiscExternal(isExternalProcess);
1343 }
1344 
ReqGetP2pPeer(const std::string & deviceAddress,WifiP2pDevice & device) const1345 WifiErrorNo WifiHdiWpaClient::ReqGetP2pPeer(const std::string &deviceAddress, WifiP2pDevice &device) const
1346 {
1347     HdiP2pDeviceInfo peerInfo;
1348     if (memset_s(&peerInfo, sizeof(peerInfo), 0, sizeof(peerInfo)) != EOK) {
1349         return WIFI_HAL_OPT_FAILED;
1350     }
1351     WifiErrorNo ret = HdiP2pGetPeer(deviceAddress.c_str(), &peerInfo);
1352     if (ret == WIFI_HAL_OPT_OK) {
1353         device.SetDeviceAddress((char *)peerInfo.p2pDeviceAddress);
1354         device.SetDeviceName((char *)peerInfo.deviceName);
1355         device.SetPrimaryDeviceType((char *)peerInfo.primaryDeviceType);
1356         device.SetWpsConfigMethod(peerInfo.configMethods);
1357         device.SetDeviceCapabilitys(peerInfo.deviceCapabilities);
1358         device.SetGroupCapabilitys(peerInfo.groupCapabilities);
1359         device.SetNetworkName((char *)peerInfo.operSsid);
1360     }
1361     FreeHdiP2pDeviceInfo(&peerInfo);
1362     return ret;
1363 }
1364 
ReqP2pGetSupportFrequencies(int band,std::vector<int> & frequencies) const1365 WifiErrorNo WifiHdiWpaClient::ReqP2pGetSupportFrequencies(int band, std::vector<int> &frequencies) const
1366 {
1367     return WIFI_HAL_OPT_FAILED;
1368 }
1369 
ReqP2pSetGroupConfig(int networkId,const HalP2pGroupConfig & config) const1370 WifiErrorNo WifiHdiWpaClient::ReqP2pSetGroupConfig(int networkId, const HalP2pGroupConfig &config) const
1371 {
1372     P2pGroupConfig conf[GROUP_CONFIG_END_POS];
1373     if (memset_s(conf, sizeof(conf), 0, sizeof(conf)) != EOK) {
1374         return WIFI_HAL_OPT_FAILED;
1375     }
1376     int num = 0;
1377     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_SSID, "\"" + config.ssid + "\"");
1378     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_BSSID, config.bssid);
1379     // If the PSK length is less than 8 or greater than 63, Do not set this psk field.
1380     if (config.psk.length() >= HAL_PSK_MIN_LENGTH && config.psk.length() < HAL_PSK_MAX_LENGTH) {
1381         std::string tmp = "\"" + config.psk + "\"";
1382         num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_PSK, tmp);
1383     } else if (config.psk.length() == HAL_PSK_MAX_LENGTH) {
1384         num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_PSK, config.psk);
1385     }
1386     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_PROTO, config.proto);
1387     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_KEY_MGMT, config.keyMgmt);
1388     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_PAIRWISE, config.pairwise);
1389     num += PushP2pGroupConfigString(conf + num, GROUP_CONFIG_AUTH_ALG, config.authAlg);
1390 
1391     num += PushP2pGroupConfigInt(conf + num, GROUP_CONFIG_MODE, config.mode);
1392     num += PushP2pGroupConfigInt(conf + num, GROUP_CONFIG_DISABLED, config.disabled);
1393     if (num == 0) {
1394         return WIFI_HAL_OPT_OK;
1395     }
1396     LOGI("WifiHdiWpaClient::%{public}s enter, mode=%{public}d", __func__, config.mode);
1397     return HdiP2pSetGroupConfig(networkId, conf, num);
1398 }
1399 
PushP2pGroupConfigString(P2pGroupConfig * pConfig,P2pGroupConfigType type,const std::string & str) const1400 int WifiHdiWpaClient::PushP2pGroupConfigString(
1401     P2pGroupConfig *pConfig, P2pGroupConfigType type, const std::string &str) const
1402 {
1403     if (str.length() > 0) {
1404         pConfig->cfgParam = type;
1405         if (strncpy_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), str.c_str(), str.length()) != EOK) {
1406             return 0;
1407         }
1408         return 1;
1409     } else {
1410         return 0;
1411     }
1412 }
1413 
PushP2pGroupConfigInt(P2pGroupConfig * pConfig,P2pGroupConfigType type,int i) const1414 int WifiHdiWpaClient::PushP2pGroupConfigInt(P2pGroupConfig *pConfig, P2pGroupConfigType type, int i) const
1415 {
1416     pConfig->cfgParam = type;
1417     if (snprintf_s(pConfig->cfgValue, sizeof(pConfig->cfgValue), sizeof(pConfig->cfgValue) - 1, "%d", i) < 0) {
1418         return 0;
1419     }
1420     return 1;
1421 }
1422 
ReqP2pGetGroupConfig(int networkId,HalP2pGroupConfig & config) const1423 WifiErrorNo WifiHdiWpaClient::ReqP2pGetGroupConfig(int networkId, HalP2pGroupConfig &config) const
1424 {
1425     char ssid[] = "ssid";
1426     char cfgValue[WIFI_P2P_GROUP_CONFIG_VALUE_LENGTH];
1427     if (HdiP2pGetGroupConfig(networkId, ssid, cfgValue) != 0) {
1428         return WIFI_HAL_OPT_FAILED;
1429     }
1430     config.ssid = cfgValue;
1431     return WIFI_HAL_OPT_OK;
1432 }
1433 
ReqP2pAddNetwork(int & networkId) const1434 WifiErrorNo WifiHdiWpaClient::ReqP2pAddNetwork(int &networkId) const
1435 {
1436     return HdiP2pAddNetwork(&networkId);
1437 }
1438 
ReqP2pHid2dConnect(const Hid2dConnectConfig & config) const1439 WifiErrorNo WifiHdiWpaClient::ReqP2pHid2dConnect(const Hid2dConnectConfig &config) const
1440 {
1441     Hid2dConnectInfo info;
1442     if (memset_s(&info, sizeof(info), 0, sizeof(info)) != EOK) {
1443         return WIFI_HAL_OPT_FAILED;
1444     }
1445     if (strncpy_s(info.ssid, sizeof(info.ssid), config.GetSsid().c_str(), config.GetSsid().length()) != EOK) {
1446         return WIFI_HAL_OPT_FAILED;
1447     }
1448     if (strncpy_s(info.bssid, sizeof(info.bssid), config.GetBssid().c_str(),
1449         config.GetBssid().length()) != EOK) {
1450         return WIFI_HAL_OPT_FAILED;
1451     }
1452     if (strncpy_s(info.passphrase, sizeof(info.passphrase),
1453         config.GetPreSharedKey().c_str(), config.GetPreSharedKey().length()) != EOK) {
1454         return WIFI_HAL_OPT_FAILED;
1455     }
1456     info.frequency = config.GetFrequency();
1457     if (config.GetDhcpMode() == DhcpMode::CONNECT_AP_DHCP ||
1458         config.GetDhcpMode() == DhcpMode::CONNECT_AP_NODHCP) {
1459         info.isLegacyGo = 1;
1460     } else {
1461         info.isLegacyGo = 0;
1462     }
1463     WifiErrorNo ret = HdiP2pHid2dConnect(&info);
1464     return ret;
1465 }
1466 
DeliverP2pData(int32_t cmdType,int32_t dataType,const std::string & carryData) const1467 WifiErrorNo WifiHdiWpaClient::DeliverP2pData(int32_t cmdType, int32_t dataType, const std::string& carryData) const
1468 {
1469     return HdiDeliverP2pData(cmdType, dataType, carryData.c_str());
1470 }
1471 
ReqRegisterNativeProcessCallback(const std::function<void (int)> & callback) const1472 WifiErrorNo WifiHdiWpaClient::ReqRegisterNativeProcessCallback(const std::function<void(int)> &callback) const
1473 {
1474     if (callback) {
1475         return HdiSetNativeProcessCallback(OnNativeProcessDeath);
1476     }
1477     return WIFI_HAL_OPT_FAILED;
1478 }
1479 }  // namespace Wifi
1480 }  // namespace OHOS
1481 #endif