mirror of
https://github.com/HamletDuFromage/aio-switch-updater.git
synced 2024-12-01 05:42:02 +00:00
209 lines
No EOL
8.5 KiB
C++
209 lines
No EOL
8.5 KiB
C++
#include "net_page.hpp"
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#include <arpa/inet.h>
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#include <switch.h>
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#include <filesystem>
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#include <fstream>
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#include <iomanip>
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#include <thread>
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#include <json.hpp>
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#include "constants.hpp"
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#include "fs.hpp"
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#include "main_frame.hpp"
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namespace i18n = brls::i18n;
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using namespace i18n::literals;
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using json = nlohmann::ordered_json;
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NetPage::NetPage() : AppletFrame(true, true)
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{
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this->setTitle("menus/net/title"_i18n);
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list = new brls::List();
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nifmInitialize(NifmServiceType_User);
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NifmNetworkProfileData profile;
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nifmGetCurrentNetworkProfile(&profile);
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nifmExit();
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int uuid = std::accumulate(profile.uuid.uuid, profile.uuid.uuid + 16, 0);
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std::string labelText;
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if (!uuid || !profile.ip_setting_data.mtu) {
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labelText = "Please connect to internet to use this feature.";
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label = new brls::Label(brls::LabelStyle::DESCRIPTION, labelText, true);
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list->addView(label);
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cancel = new brls::ListItem("menus/common/go_back"_i18n);
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cancel->getClickEvent()->subscribe([](brls::View* view) { brls::Application::pushView(new MainFrame()); });
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list->addView(cancel);
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}
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else {
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if (profile.ip_setting_data.ip_address_setting.is_automatic) {
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labelText = "IP Adress: Automatic";
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}
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else {
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labelText = fmt::format(
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"IP Adress: {}\nSubnet Mask: {}\nGateway: {}",
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ipToString(profile.ip_setting_data.ip_address_setting.current_addr.addr),
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ipToString(profile.ip_setting_data.ip_address_setting.subnet_mask.addr),
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ipToString(profile.ip_setting_data.ip_address_setting.gateway.addr));
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}
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labelText = fmt::format("{}\nLocal IP addr: {}\nMTU: {}", labelText, std::string(inet_ntoa({(in_addr_t)gethostid()})), std::to_string(unsigned(profile.ip_setting_data.mtu)));
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if (profile.ip_setting_data.dns_setting.is_automatic) {
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labelText = fmt::format("{}\nDNS: Automatic", labelText);
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}
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else {
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labelText = fmt::format(
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"{}\nPrimary DNS: {}\nSecondary DNS: {}",
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labelText,
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ipToString(profile.ip_setting_data.dns_setting.primary_dns_server.addr),
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ipToString(profile.ip_setting_data.dns_setting.secondary_dns_server.addr));
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}
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label = new brls::Label(brls::LabelStyle::DESCRIPTION, labelText, true);
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list->addView(label);
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//ip_addr
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//subnet_mask
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//gateway
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//dns1
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//dns2
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//mtu
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//ip_auto
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//dns_auto
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json profiles = fs::parseJsonFile(INTERNET_JSON);
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if (profiles.empty()) {
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profiles = json::array();
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}
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profiles.push_back(
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json::object({{"name", "lan-play"},
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{"ip_addr", fmt::format("10.13.{}.{}", std::rand() % 256, std::rand() % 253 + 2)},
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{"subnet_mask", "255.255.0.0"},
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{"gateway", "10.13.37.1"}}));
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profiles.push_back(
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json::object({{"name", "Automatic IP Address"},
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{"ip_auto", true}}));
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profiles.push_back(
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json::object({{"name", "Automatic DNS"},
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{"dns_auto", true}}));
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profiles.push_back(
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json::object({{"name", "90DNS (Europe)"},
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{"dns1", "163.172.141.219"},
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{"dns2", "207.246.121.77"}}));
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profiles.push_back(
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json::object({{"name", "90DNS (USA)"},
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{"dns1", "207.246.121.77"},
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{"dns2", "163.172.141.219"}}));
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profiles.push_back(
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json::object({{"name", "Google DNS"},
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{"dns1", "8.8.8.8"},
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{"dns2", "8.8.4.4"}}));
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profiles.push_back(
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json::object({{"name", "ACNH mtu"},
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{"mtu", 1500}}));
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for (const auto& p : profiles.items()) {
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json values = p.value();
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if (values.find("name") != values.end())
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listItem = new brls::ListItem(values["name"]);
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else
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listItem = new brls::ListItem("Unnamed");
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listItem->getClickEvent()->subscribe([this, values](brls::View* view) {
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brls::Dialog* dialog = new brls::Dialog(values.dump(0).substr(1, values.dump(0).size() - 2));
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brls::GenericEvent::Callback callbackOk = [this, dialog, values](brls::View* view) {
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nifmInitialize(NifmServiceType_Admin);
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NifmNetworkProfileData profile;
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nifmGetCurrentNetworkProfile(&profile);
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unsigned char buf[sizeof(struct in6_addr)];
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if (values.find("ip_addr") != values.end()) {
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if (inet_pton(AF_INET, std::string(values["ip_addr"]).c_str(), buf)) {
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profile.ip_setting_data.ip_address_setting.is_automatic = u8(0);
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stringToIp(std::string(values["ip_addr"]), profile.ip_setting_data.ip_address_setting.current_addr.addr);
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}
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}
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if (values.find("subnet_mask") != values.end()) {
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if (inet_pton(AF_INET, std::string(values["subnet_mask"]).c_str(), buf)) {
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stringToIp(std::string(values["subnet_mask"]), profile.ip_setting_data.ip_address_setting.subnet_mask.addr);
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}
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}
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if (values.find("gateway") != values.end()) {
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if (inet_pton(AF_INET, std::string(values["gateway"]).c_str(), buf)) {
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stringToIp(std::string(values["gateway"]), profile.ip_setting_data.ip_address_setting.gateway.addr);
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}
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}
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if (values.find("dns1") != values.end()) {
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if (inet_pton(AF_INET, std::string(values["dns1"]).c_str(), buf)) {
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profile.ip_setting_data.dns_setting.is_automatic = u8(0);
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stringToIp(std::string(values["dns1"]), profile.ip_setting_data.dns_setting.primary_dns_server.addr);
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}
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}
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if (values.find("dns2") != values.end()) {
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if (inet_pton(AF_INET, std::string(values["dns2"]).c_str(), buf)) {
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profile.ip_setting_data.dns_setting.is_automatic = u8(0);
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stringToIp(std::string(values["dns2"]), profile.ip_setting_data.dns_setting.secondary_dns_server.addr);
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}
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}
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if (values.find("mtu") != values.end()) {
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profile.ip_setting_data.mtu = u16(values["mtu"]);
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}
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if (values.find("ip_auto") != values.end()) {
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profile.ip_setting_data.ip_address_setting.is_automatic = u8(values["ip_auto"]);
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}
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if (values.find("dns_auto") != values.end()) {
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profile.ip_setting_data.dns_setting.is_automatic = u8(values["dns_auto"]);
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}
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nifmSetNetworkProfile(&profile, &profile.uuid);
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nifmSetWirelessCommunicationEnabled(true);
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nifmExit();
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std::this_thread::sleep_for(std::chrono::microseconds(2500000)); //Wait to avoid crashes when leaving too fast
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dialog->close();
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};
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brls::GenericEvent::Callback callbackNo = [dialog](brls::View* view) {
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dialog->close();
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};
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dialog->addButton("menus/common/confirm"_i18n, callbackOk);
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dialog->addButton("menus/common/cancel"_i18n, callbackNo);
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dialog->setCancelable(false);
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dialog->open();
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});
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list->addView(listItem);
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}
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}
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this->setContentView(list);
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}
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std::string NetPage::ipToString(u8* ip)
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{
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std::string res = "";
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for (size_t i = 0; i < 3; i++) {
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res += std::to_string(unsigned(ip[i]));
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res += ".";
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}
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res += std::to_string(unsigned(ip[4]));
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return res;
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}
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int NetPage::stringToIp(const std::string& ip, u8* out)
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{
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size_t start;
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size_t end = 0;
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int i = 0;
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while ((start = ip.find_first_not_of(".", end)) != std::string::npos) {
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end = ip.find(".", start);
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out[i] = u8(std::stoi(ip.substr(start, end - start)));
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i++;
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}
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return 0;
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} |