1 /*
2 * Copyright (c) 2022-2024 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 #include "ethernet_management.h"
17
18 #include <regex>
19 #include <thread>
20 #include <pthread.h>
21 #include <unistd.h>
22 #include <sys/ioctl.h>
23 #include <vector>
24
25 #include "net_manager_constants.h"
26 #include "netmgr_ext_log_wrapper.h"
27 #include "netsys_controller.h"
28 #include "securec.h"
29
30 namespace OHOS {
31 namespace NetManagerStandard {
32 const std::string IFACE_MATCH = "eth\\d";
33 constexpr const char *IFACE_LINK_UP = "up";
34 constexpr const char *IFACE_RUNNING = "running";
35 constexpr int SLEEP_TIME_S = 2;
36 constexpr uint32_t INDEX_ONE = 1;
37 constexpr uint32_t INDEX_TWO = 2;
38 constexpr uint32_t INDEX_THREE = 3;
39 constexpr uint32_t INDEX_FOUR = 4;
40 constexpr uint32_t INDEX_FIVE = 5;
41 constexpr uint32_t BUFFER_SIZE = 64;
OnDhcpSuccess(EthernetDhcpCallback::DhcpResult & dhcpResult)42 int32_t EthernetManagement::EhternetDhcpNotifyCallback::OnDhcpSuccess(EthernetDhcpCallback::DhcpResult &dhcpResult)
43 {
44 ethernetManagement_.UpdateDevInterfaceLinkInfo(dhcpResult);
45 return 0;
46 }
47
OnInterfaceAddressUpdated(const std::string &,const std::string &,int,int)48 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceAddressUpdated(const std::string &,
49 const std::string &, int, int)
50 {
51 return 0;
52 }
53
OnInterfaceAddressRemoved(const std::string &,const std::string &,int,int)54 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceAddressRemoved(const std::string &,
55 const std::string &, int, int)
56 {
57 return 0;
58 }
59
OnInterfaceAdded(const std::string & iface)60 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceAdded(const std::string &iface)
61 {
62 std::regex re(IFACE_MATCH);
63 if (std::regex_search(iface, re)) {
64 ethernetManagement_.DevInterfaceAdd(iface);
65 if (NetsysController::GetInstance().SetInterfaceUp(iface) != ERR_NONE) {
66 NETMGR_EXT_LOG_E("Iface[%{public}s] added set up fail!", iface.c_str());
67 }
68 }
69 return 0;
70 }
71
OnInterfaceRemoved(const std::string & iface)72 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceRemoved(const std::string &iface)
73 {
74 std::regex re(IFACE_MATCH);
75 if (std::regex_search(iface, re)) {
76 ethernetManagement_.DevInterfaceRemove(iface);
77 if (NetsysController::GetInstance().SetInterfaceDown(iface) != ERR_NONE) {
78 NETMGR_EXT_LOG_E("Iface[%{public}s] added set down fail!", iface.c_str());
79 }
80 }
81 return 0;
82 }
83
OnInterfaceChanged(const std::string &,bool)84 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceChanged(const std::string &, bool)
85 {
86 return 0;
87 }
88
OnInterfaceLinkStateChanged(const std::string & ifName,bool up)89 int32_t EthernetManagement::DevInterfaceStateCallback::OnInterfaceLinkStateChanged(const std::string &ifName, bool up)
90 {
91 auto startTime = std::chrono::steady_clock::now();
92 std::regex re(IFACE_MATCH);
93 if (std::regex_search(ifName, re)) {
94 ethernetManagement_.UpdateInterfaceState(ifName, up);
95 }
96 auto endTime = std::chrono::steady_clock::now();
97 auto durationNs = std::chrono::duration_cast<std::chrono::nanoseconds>(endTime - startTime);
98 NETMGR_EXT_LOG_I("OnInterfaceLinkStateChanged iface[%{public}s] up[%{public}d], cost=%{public}lld",
99 ifName.c_str(), up, durationNs.count());
100 return 0;
101 }
102
OnRouteChanged(bool,const std::string &,const std::string &,const std::string &)103 int32_t EthernetManagement::DevInterfaceStateCallback::OnRouteChanged(bool, const std::string &, const std::string &,
104 const std::string &)
105 {
106 return 0;
107 }
108
OnDhcpSuccess(NetsysControllerCallback::DhcpResult & dhcpResult)109 int32_t EthernetManagement::DevInterfaceStateCallback::OnDhcpSuccess(NetsysControllerCallback::DhcpResult &dhcpResult)
110 {
111 return 0;
112 }
113
OnBandwidthReachedLimit(const std::string & limitName,const std::string & iface)114 int32_t EthernetManagement::DevInterfaceStateCallback::OnBandwidthReachedLimit(const std::string &limitName,
115 const std::string &iface)
116 {
117 return 0;
118 }
119
GetInstance()120 EthernetManagement &EthernetManagement::GetInstance()
121 {
122 static EthernetManagement gInstance;
123 return gInstance;
124 }
125
EthernetManagement()126 EthernetManagement::EthernetManagement()
127 {
128 ethDhcpController_ = std::make_unique<EthernetDhcpController>();
129 ethDhcpNotifyCallback_ = new (std::nothrow) EhternetDhcpNotifyCallback(*this);
130 if (ethDhcpNotifyCallback_ != nullptr) {
131 ethDhcpController_->RegisterDhcpCallback(ethDhcpNotifyCallback_);
132 }
133
134 ethDevInterfaceStateCallback_ = new (std::nothrow) DevInterfaceStateCallback(*this);
135 ethConfiguration_ = std::make_unique<EthernetConfiguration>();
136 ethConfiguration_->ReadSystemConfiguration(devCaps_, devCfgs_);
137 ethLanManageMent_ = std::make_unique<EthernetLanManagement>();
138 }
139
140 EthernetManagement::~EthernetManagement() = default;
141
UpdateInterfaceState(const std::string & dev,bool up)142 void EthernetManagement::UpdateInterfaceState(const std::string &dev, bool up)
143 {
144 NETMGR_EXT_LOG_D("EthernetManagement UpdateInterfaceState dev[%{public}s] up[%{public}d]", dev.c_str(), up);
145 std::unique_lock<std::mutex> lock(mutex_);
146 auto fit = devs_.find(dev);
147 if (fit == devs_.end()) {
148 return;
149 }
150 sptr<DevInterfaceState> devState = fit->second;
151 if (devState == nullptr) {
152 NETMGR_EXT_LOG_E("devState is nullptr");
153 return;
154 }
155 devState->SetLinkUp(up);
156 IPSetMode mode = devState->GetIPSetMode();
157 bool dhcpReqState = devState->GetDhcpReqState();
158 NETMGR_EXT_LOG_D("EthernetManagement UpdateInterfaceState mode[%{public}d] dhcpReqState[%{public}d]",
159 static_cast<int32_t>(mode), dhcpReqState);
160 if (up) {
161 if (!devState->IsLanIface()) {
162 devState->RemoteUpdateNetSupplierInfo();
163 }
164 if ((mode == DHCP || mode == LAN_DHCP) && !dhcpReqState) {
165 StartDhcpClient(dev, devState);
166 } else {
167 if (devState->IsLanIface()) {
168 ethLanManageMent_->UpdateLanLinkInfo(devState);
169 } else {
170 devState->RemoteUpdateNetLinkInfo();
171 }
172 }
173 } else {
174 if ((mode == DHCP || mode == LAN_DHCP) && dhcpReqState) {
175 StopDhcpClient(dev, devState);
176 }
177 if (devState->IsLanIface()) {
178 ethLanManageMent_->ReleaseLanNetLink(devState);
179 } else {
180 devState->RemoteUpdateNetSupplierInfo();
181 }
182 netLinkConfigs_[dev] = nullptr;
183 }
184 }
185
GetMacAddress(std::vector<MacAddressInfo> & macAddrList)186 int32_t EthernetManagement::GetMacAddress(std::vector<MacAddressInfo> &macAddrList)
187 {
188 std::regex re(IFACE_MATCH);
189 std::vector<std::string> ifaceLists = NetsysController::GetInstance().InterfaceGetList();
190 if (ifaceLists.empty()) {
191 NETMGR_EXT_LOG_E("EthernetManagement iface list is empty");
192 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
193 }
194 for (const auto &iface : ifaceLists) {
195 if (std::regex_search(iface, re)) {
196 MacAddressInfo macAddressInfo;
197 auto spMacAddr = GetMacAddr(iface);
198 if (spMacAddr.c_str() == nullptr) {
199 NETMGR_EXT_LOG_E("The iface[%{public}s] device does not find MAC address", iface.c_str());
200 continue;
201 }
202 macAddressInfo.iface_ = iface;
203 macAddressInfo.macAddress_ = spMacAddr;
204 macAddrList.push_back(macAddressInfo);
205 }
206 }
207 if (macAddrList.size() == 0) {
208 NETMGR_EXT_LOG_E("EthernetManagement mac address list is empty");
209 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
210 }
211 return NETMANAGER_EXT_SUCCESS;
212 }
213
GetMacAddr(const std::string & iface)214 std::string EthernetManagement::GetMacAddr(const std::string &iface)
215 {
216 std::string macAddr;
217
218 int fd = socket(AF_INET, SOCK_DGRAM | SOCK_CLOEXEC, 0);
219 struct ifreq ifr = {};
220 strncpy_s(ifr.ifr_name, IFNAMSIZ, iface.c_str(), iface.length());
221
222 if (ioctl(fd, SIOCGIFHWADDR, &ifr) != -1) {
223 macAddr = HwAddrToStr(ifr.ifr_hwaddr.sa_data);
224 }
225 close(fd);
226 return macAddr;
227 }
228
HwAddrToStr(char * hwaddr)229 std::string EthernetManagement::HwAddrToStr(char *hwaddr)
230 {
231 char buf[BUFFER_SIZE] = {'\0'};
232 if (hwaddr == nullptr) {
233 NETMGR_EXT_LOG_E("hwaddr is nullptr");
234 return "";
235 }
236 errno_t result =
237 sprintf_s(buf, sizeof(buf), "%02x:%02x:%02x:%02x:%02x:%02x", hwaddr[0], hwaddr[INDEX_ONE],
238 hwaddr[INDEX_TWO], hwaddr[INDEX_THREE], hwaddr[INDEX_FOUR],
239 hwaddr[INDEX_FIVE]);
240 if (result < 0) {
241 NETMGR_EXT_LOG_E("[hwAddrToStr] result error : [%{public}d]", result);
242 return "";
243 }
244 return std::string(buf);
245 }
246
UpdateDevInterfaceCfg(const std::string & iface,sptr<InterfaceConfiguration> cfg)247 int32_t EthernetManagement::UpdateDevInterfaceCfg(const std::string &iface, sptr<InterfaceConfiguration> cfg)
248 {
249 if (cfg == nullptr) {
250 NETMGR_EXT_LOG_E("cfg is nullptr");
251 return NETMANAGER_EXT_ERR_LOCAL_PTR_NULL;
252 }
253 std::unique_lock<std::mutex> lock(mutex_);
254 auto fit = devs_.find(iface);
255 if (fit == devs_.end() || fit->second == nullptr) {
256 NETMGR_EXT_LOG_E("The iface[%{public}s] device or device information does not exist", iface.c_str());
257 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
258 }
259 if (!fit->second->GetLinkUp()) {
260 NETMGR_EXT_LOG_E("The iface[%{public}s] device is unlink", iface.c_str());
261 return ETHERNET_ERR_DEVICE_NOT_LINK;
262 }
263 if (!ModeInputCheck(fit->second->GetIfcfg()->mode_, cfg->mode_)) {
264 NETMGR_EXT_LOG_E("The iface[%{public}s] device can not exchange between WAN and LAN", iface.c_str());
265 return NETMANAGER_ERR_INVALID_PARAMETER;
266 }
267 if (!ethConfiguration_->WriteUserConfiguration(iface, cfg)) {
268 NETMGR_EXT_LOG_E("EthernetManagement write user configurations error!");
269 return ETHERNET_ERR_USER_CONIFGURATION_WRITE_FAIL;
270 }
271 if (fit->second->GetIfcfg()->mode_ != cfg->mode_) {
272 if (cfg->mode_ == DHCP || cfg->mode_ == LAN_DHCP) {
273 StartDhcpClient(iface, fit->second);
274 } else {
275 StopDhcpClient(iface, fit->second);
276 netLinkConfigs_[iface] = nullptr;
277 }
278 } else if (cfg->mode_ == DHCP) {
279 fit->second->UpdateNetHttpProxy(cfg->httpProxy_);
280 }
281 if (fit->second->IsLanIface()) {
282 ethLanManageMent_->GetOldLinkInfo(fit->second);
283 fit->second->SetLancfg(cfg);
284 ethLanManageMent_->UpdateLanLinkInfo(fit->second);
285 } else {
286 fit->second->SetIfcfg(cfg);
287 }
288 devCfgs_[iface] = cfg;
289 return NETMANAGER_EXT_SUCCESS;
290 }
291
UpdateDevInterfaceLinkInfo(EthernetDhcpCallback::DhcpResult & dhcpResult)292 int32_t EthernetManagement::UpdateDevInterfaceLinkInfo(EthernetDhcpCallback::DhcpResult &dhcpResult)
293 {
294 NETMGR_EXT_LOG_D("EthernetManagement::UpdateDevInterfaceLinkInfo");
295 std::lock_guard<std::mutex> locker(mutex_);
296 auto fit = devs_.find(dhcpResult.iface);
297 if (fit == devs_.end() || fit->second == nullptr) {
298 NETMGR_EXT_LOG_E("The iface[%{public}s] device or device information does not exist", dhcpResult.iface.c_str());
299 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
300 }
301 if (!fit->second->GetLinkUp()) {
302 NETMGR_EXT_LOG_E("The iface[%{public}s] The device is not turned on", dhcpResult.iface.c_str());
303 return ETHERNET_ERR_DEVICE_NOT_LINK;
304 }
305
306 IPSetMode mode = fit->second->GetIPSetMode();
307 if (mode == IPSetMode::STATIC || mode == IPSetMode::LAN_STATIC) {
308 NETMGR_EXT_LOG_E("The iface[%{public}s] set mode is STATIC now", dhcpResult.iface.c_str());
309 return ETHERNET_ERR_DEVICE_NOT_LINK;
310 }
311
312 auto &config = netLinkConfigs_[dhcpResult.iface];
313 if (config == nullptr) {
314 config = new (std::nothrow) StaticConfiguration();
315 if (config == nullptr) {
316 NETMGR_EXT_LOG_E("Iface:%{public}s's link info config is nullptr", dhcpResult.iface.c_str());
317 }
318 }
319
320 if (!ethConfiguration_->ConvertToConfiguration(dhcpResult, config)) {
321 NETMGR_EXT_LOG_E("EthernetManagement dhcp convert to configurations error!");
322 return ETHERNET_ERR_CONVERT_CONFIGURATINO_FAIL;
323 }
324 if (fit->second->IsLanIface()) {
325 ethLanManageMent_->GetOldLinkInfo(fit->second);
326 fit->second->UpdateLanLinkInfo(config);
327 ethLanManageMent_->UpdateLanLinkInfo(fit->second);
328 } else {
329 fit->second->UpdateLinkInfo(config);
330 fit->second->RemoteUpdateNetLinkInfo();
331 }
332 return NETMANAGER_EXT_SUCCESS;
333 }
334
GetDevInterfaceCfg(const std::string & iface,sptr<InterfaceConfiguration> & ifaceConfig)335 int32_t EthernetManagement::GetDevInterfaceCfg(const std::string &iface, sptr<InterfaceConfiguration> &ifaceConfig)
336 {
337 std::unique_lock<std::mutex> lock(mutex_);
338 auto fit = devs_.find(iface);
339 if (fit == devs_.end() || fit->second == nullptr) {
340 NETMGR_EXT_LOG_E("The iface[%{public}s] device does not exist", iface.c_str());
341 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
342 }
343 if (!fit->second->GetLinkUp()) {
344 ifaceConfig = fit->second->GetIfcfg();
345 return NETMANAGER_EXT_SUCCESS;
346 }
347 auto temp = ethConfiguration_->MakeInterfaceConfiguration(fit->second->GetIfcfg(), fit->second->GetLinkInfo());
348 if (temp == nullptr) {
349 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
350 }
351 *ifaceConfig = *temp;
352 return NETMANAGER_EXT_SUCCESS;
353 }
354
IsIfaceActive(const std::string & iface,int32_t & activeStatus)355 int32_t EthernetManagement::IsIfaceActive(const std::string &iface, int32_t &activeStatus)
356 {
357 std::unique_lock<std::mutex> lock(mutex_);
358 auto fit = devs_.find(iface);
359 if (fit == devs_.end() || fit->second == nullptr) {
360 NETMGR_EXT_LOG_E("The iface[%{public}s] device does not exist", iface.c_str());
361 return ETHERNET_ERR_DEVICE_INFORMATION_NOT_EXIST;
362 }
363 activeStatus = static_cast<int32_t>(fit->second->GetLinkUp());
364 return NETMANAGER_EXT_SUCCESS;
365 }
366
GetAllActiveIfaces(std::vector<std::string> & activeIfaces)367 int32_t EthernetManagement::GetAllActiveIfaces(std::vector<std::string> &activeIfaces)
368 {
369 std::unique_lock<std::mutex> lock(mutex_);
370 for (auto it = devs_.begin(); it != devs_.end(); ++it) {
371 if (it->second->GetLinkUp()) {
372 activeIfaces.push_back(it->first);
373 }
374 }
375 return NETMANAGER_EXT_SUCCESS;
376 }
377
ResetFactory()378 int32_t EthernetManagement::ResetFactory()
379 {
380 if (!ethConfiguration_->ClearAllUserConfiguration()) {
381 NETMGR_EXT_LOG_E("Failed to ResetFactory!");
382 return ETHERNET_ERR_USER_CONIFGURATION_CLEAR_FAIL;
383 }
384 NETMGR_EXT_LOG_I("Success to ResetFactory!");
385 return NETMANAGER_EXT_SUCCESS;
386 }
387
Init()388 void EthernetManagement::Init()
389 {
390 static const unsigned int SLEEP_TIME = 4;
391 std::this_thread::sleep_for(std::chrono::seconds(SLEEP_TIME));
392 if (ethDevInterfaceStateCallback_ != nullptr) {
393 NetsysController::GetInstance().RegisterCallback(ethDevInterfaceStateCallback_);
394 }
395 std::regex re(IFACE_MATCH);
396 std::vector<std::string> ifaces = NetsysController::GetInstance().InterfaceGetList();
397 if (ifaces.empty()) {
398 NETMGR_EXT_LOG_E("EthernetManagement link list is empty");
399 return;
400 }
401 NETMGR_EXT_LOG_D("EthernetManagement devs size[%{public}zd]", ifaces.size());
402 if (!ethConfiguration_->ReadUserConfiguration(devCfgs_)) {
403 NETMGR_EXT_LOG_E("EthernetManagement read user configurations error! ");
404 return;
405 }
406 for (const auto &devName : ifaces) {
407 NETMGR_EXT_LOG_D("EthernetManagement devName[%{public}s]", devName.c_str());
408 if (!std::regex_search(devName, re)) {
409 continue;
410 }
411 DevInterfaceAdd(devName);
412 }
413 std::thread t(&EthernetManagement::StartSetDevUpThd, &EthernetManagement::GetInstance());
414 std::string threadName = "SetDevUpThd";
415 pthread_setname_np(t.native_handle(), threadName.c_str());
416 t.detach();
417 NETMGR_EXT_LOG_D("EthernetManagement devs_ size[%{public}zd", devs_.size());
418 }
419
StartSetDevUpThd()420 void EthernetManagement::StartSetDevUpThd()
421 {
422 NETMGR_EXT_LOG_D("EthernetManagement StartSetDevUpThd in.");
423 std::map<std::string, sptr<DevInterfaceState>> tempDevMap;
424 {
425 std::unique_lock<std::mutex> lock(mutex_);
426 tempDevMap = devs_;
427 }
428
429 for (auto &dev : tempDevMap) {
430 std::string devName = dev.first;
431 if (IsIfaceLinkUp(devName)) {
432 continue;
433 }
434 while (true) {
435 if (NetsysController::GetInstance().SetInterfaceUp(devName) != ERR_NONE) {
436 sleep(SLEEP_TIME_S);
437 continue;
438 }
439 break;
440 }
441 }
442 }
443
IsIfaceLinkUp(const std::string & iface)444 bool EthernetManagement::IsIfaceLinkUp(const std::string &iface)
445 {
446 OHOS::nmd::InterfaceConfigurationParcel config;
447 config.ifName = iface;
448 if (NetsysController::GetInstance().GetInterfaceConfig(config) != ERR_NONE) {
449 return false;
450 }
451 if (std::find(config.flags.begin(), config.flags.end(), IFACE_LINK_UP) == config.flags.end() ||
452 std::find(config.flags.begin(), config.flags.end(), IFACE_RUNNING) == config.flags.end()) {
453 return false;
454 }
455 UpdateInterfaceState(iface, true);
456 return true;
457 }
458
StartDhcpClient(const std::string & dev,sptr<DevInterfaceState> & devState)459 void EthernetManagement::StartDhcpClient(const std::string &dev, sptr<DevInterfaceState> &devState)
460 {
461 NETMGR_EXT_LOG_D("EthernetManagement StartDhcpClient[%{public}s]", dev.c_str());
462 ethDhcpController_->StartClient(dev, true);
463 devState->SetDhcpReqState(true);
464 }
465
StopDhcpClient(const std::string & dev,sptr<DevInterfaceState> & devState)466 void EthernetManagement::StopDhcpClient(const std::string &dev, sptr<DevInterfaceState> &devState)
467 {
468 NETMGR_EXT_LOG_D("EthernetManagement StopDhcpClient[%{public}s]", dev.c_str());
469 ethDhcpController_->StopClient(dev, true);
470 devState->SetDhcpReqState(false);
471 }
472
DevInterfaceAdd(const std::string & devName)473 void EthernetManagement::DevInterfaceAdd(const std::string &devName)
474 {
475 NETMGR_EXT_LOG_D("Interface name:[%{public}s] add.", devName.c_str());
476 std::unique_lock<std::mutex> lock(mutex_);
477 auto fitDev = devs_.find(devName);
478 if (fitDev != devs_.end()) {
479 NETMGR_EXT_LOG_E("Interface name:[%{public}s] has added.", devName.c_str());
480 return;
481 }
482 sptr<DevInterfaceState> devState = new (std::nothrow) DevInterfaceState();
483 if (devState == nullptr) {
484 NETMGR_EXT_LOG_E("devState is nullptr");
485 return;
486 }
487 ethConfiguration_->ReadSystemConfiguration(devCaps_, devCfgs_);
488 devs_.insert(std::make_pair(devName, devState));
489 devState->SetDevName(devName);
490 auto fitCfg = devCfgs_.find(devName);
491 if (fitCfg != devCfgs_.end()) {
492 if (fitCfg->second->mode_ == LAN_STATIC || fitCfg->second->mode_ == LAN_DHCP) {
493 NETMGR_EXT_LOG_D("Lan Interface name:[%{public}s] add, mode [%{public}d]",
494 devName.c_str(), fitCfg->second->mode_);
495 devState->SetLancfg(fitCfg->second);
496 ethLanManageMent_->UpdateLanLinkInfo(devState);
497 return;
498 }
499 devState->RemoteRegisterNetSupplier();
500 devState->SetIfcfg(fitCfg->second);
501 } else {
502 sptr<InterfaceConfiguration> ifCfg = new (std::nothrow) InterfaceConfiguration();
503 if (ifCfg == nullptr) {
504 NETMGR_EXT_LOG_E("ifCfg is nullptr");
505 return;
506 }
507 ifCfg->mode_ = DHCP;
508 devState->RemoteRegisterNetSupplier();
509 devState->SetIfcfg(ifCfg);
510 }
511 auto fitCap = devCaps_.find(devName);
512 if (fitCap != devCaps_.end()) {
513 devState->SetNetCaps(fitCap->second);
514 }
515 }
516
DevInterfaceRemove(const std::string & devName)517 void EthernetManagement::DevInterfaceRemove(const std::string &devName)
518 {
519 NETMGR_EXT_LOG_D("Interface name:[%{public}s] remove.", devName.c_str());
520 std::unique_lock<std::mutex> lock(mutex_);
521 auto fitDev = devs_.find(devName);
522 if (fitDev != devs_.end()) {
523 if (fitDev->second != nullptr) {
524 fitDev->second->RemoteUnregisterNetSupplier();
525 }
526 devs_.erase(fitDev);
527 }
528 }
529
GetDumpInfo(std::string & info)530 void EthernetManagement::GetDumpInfo(std::string &info)
531 {
532 std::for_each(devs_.begin(), devs_.end(), [&info](const auto &dev) { dev.second->GetDumpInfo(info); });
533 }
534
ModeInputCheck(IPSetMode origin,IPSetMode input)535 bool EthernetManagement::ModeInputCheck(IPSetMode origin, IPSetMode input)
536 {
537 if (origin == STATIC || origin == DHCP) {
538 if (input == LAN_STATIC || input == LAN_DHCP) {
539 return false;
540 }
541 } else if (origin == LAN_STATIC || origin == LAN_DHCP) {
542 if (input == STATIC || input == DHCP) {
543 return false;
544 }
545 }
546 return true;
547 }
548 } // namespace NetManagerStandard
549 } // namespace OHOS
550