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https://github.com/esp8266/Arduino.git
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* fix testing IPAddress validity (operator bool()) * +add new operator= * +cast to u32_t * + operator >>
225 lines
7.8 KiB
C++
225 lines
7.8 KiB
C++
/*
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IPAddress.h - Base class that provides IPAddress
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Copyright (c) 2011 Adrian McEwen. All right reserved.
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#ifndef IPAddress_h
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#define IPAddress_h
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#include <stdint.h>
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#include <WString.h>
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#include <Printable.h>
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#include <lwip/init.h>
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#include <lwip/ip_addr.h>
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#if LWIP_VERSION_MAJOR == 1
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// compatibility macros to make lwIP-v1 compiling lwIP-v2 API
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#define LWIP_IPV6_NUM_ADDRESSES 0
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#define ip_2_ip4(x) (x)
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#define ipv4_addr ip_addr
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#define IP_IS_V4_VAL(x) (1)
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#define IP_SET_TYPE_VAL(x,y) do { (void)0; } while (0)
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#define IP_ANY_TYPE (&ip_addr_any)
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#define IP4_ADDR_ANY IPADDR_ANY
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#define IP4_ADDR_ANY4 IPADDR_ANY
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#define IPADDR4_INIT(x) { x }
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#define CONST /* nothing: lwIP-v1 does not use const */
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#define ip4_addr_netcmp ip_addr_netcmp
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#define netif_dhcp_data(netif) ((netif)->dhcp)
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#else // lwIP-v2+
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#define CONST const
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#if !LWIP_IPV6
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struct ip_addr: ipv4_addr { };
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#endif // !LWIP_IPV6
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#endif // lwIP-v2+
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// A class to make it easier to handle and pass around IP addresses
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// IPv6 update:
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// IPAddress is now a decorator class for lwIP's ip_addr_t
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// fully backward compatible with legacy IPv4-only Arduino's
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// with unchanged footprint when IPv6 is disabled
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class IPAddress: public Printable {
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private:
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ip_addr_t _ip;
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// Access the raw byte array containing the address. Because this returns a pointer
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// to the internal structure rather than a copy of the address this function should only
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// be used when you know that the usage of the returned uint8_t* will be transient and not
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// stored.
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uint8_t* raw_address() {
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return reinterpret_cast<uint8_t*>(&v4());
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}
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const uint8_t* raw_address() const {
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return reinterpret_cast<const uint8_t*>(&v4());
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}
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void ctor32 (uint32_t);
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public:
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// Constructors
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IPAddress();
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IPAddress(const IPAddress& from);
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IPAddress(uint8_t first_octet, uint8_t second_octet, uint8_t third_octet, uint8_t fourth_octet);
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IPAddress(uint32_t address) { ctor32(address); }
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IPAddress(u32_t address) { ctor32(address); }
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IPAddress(int address) { ctor32(address); }
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IPAddress(const uint8_t *address);
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bool fromString(const char *address);
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bool fromString(const String &address) { return fromString(address.c_str()); }
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// Overloaded cast operator to allow IPAddress objects to be used where a pointer
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// to a four-byte uint8_t array is expected
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operator uint32_t() const { return isV4()? v4(): (uint32_t)0; }
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operator uint32_t() { return isV4()? v4(): (uint32_t)0; }
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operator u32_t() const { return isV4()? v4(): (u32_t)0; }
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operator u32_t() { return isV4()? v4(): (u32_t)0; }
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bool isSet () const;
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operator bool () const { return isSet(); } // <-
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operator bool () { return isSet(); } // <- both are needed
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// generic IPv4 wrapper to uint32-view like arduino loves to see it
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const u32_t& v4() const { return ip_2_ip4(&_ip)->addr; } // for raw_address(const)
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u32_t& v4() { return ip_2_ip4(&_ip)->addr; }
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bool operator==(const IPAddress& addr) const {
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return ip_addr_cmp(&_ip, &addr._ip);
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}
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bool operator!=(const IPAddress& addr) const {
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return !ip_addr_cmp(&_ip, &addr._ip);
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}
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bool operator==(uint32_t addr) const {
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return isV4() && v4() == addr;
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}
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bool operator==(u32_t addr) const {
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return isV4() && v4() == addr;
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}
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bool operator!=(uint32_t addr) const {
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return !(isV4() && v4() == addr);
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}
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bool operator!=(u32_t addr) const {
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return !(isV4() && v4() == addr);
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}
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bool operator==(const uint8_t* addr) const;
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int operator>>(int n) const {
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return isV4()? v4() >> n: 0;
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}
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// Overloaded index operator to allow getting and setting individual octets of the address
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uint8_t operator[](int index) const {
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return isV4()? *(raw_address() + index): 0;
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}
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uint8_t& operator[](int index) {
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setV4();
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return *(raw_address() + index);
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}
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// Overloaded copy operators to allow initialisation of IPAddress objects from other types
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IPAddress& operator=(const uint8_t *address);
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IPAddress& operator=(uint32_t address);
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virtual size_t printTo(Print& p) const;
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String toString() const;
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/*
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check if input string(arg) is a valid IPV4 address or not.
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return true on valid.
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return false on invalid.
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*/
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static bool isValid(const String& arg);
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static bool isValid(const char* arg);
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friend class EthernetClass;
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friend class UDP;
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friend class Client;
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friend class Server;
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friend class DhcpClass;
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friend class DNSClient;
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/*
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lwIP address compatibility
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*/
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IPAddress(const ipv4_addr& fw_addr) { setV4(); v4() = fw_addr.addr; }
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IPAddress(const ipv4_addr* fw_addr) { setV4(); v4() = fw_addr->addr; }
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IPAddress& operator=(const ipv4_addr& fw_addr) { setV4(); v4() = fw_addr.addr; return *this; }
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IPAddress& operator=(const ipv4_addr* fw_addr) { setV4(); v4() = fw_addr->addr; return *this; }
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operator ip_addr_t () const { return _ip; }
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operator const ip_addr_t*() const { return &_ip; }
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operator ip_addr_t*() { return &_ip; }
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bool isV4() const { return IP_IS_V4_VAL(_ip); }
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void setV4() { IP_SET_TYPE_VAL(_ip, IPADDR_TYPE_V4); }
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bool isLocal () const { return ip_addr_islinklocal(&_ip); }
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#if LWIP_IPV6
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IPAddress(const ip_addr_t& lwip_addr) { ip_addr_copy(_ip, lwip_addr); }
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IPAddress(const ip_addr_t* lwip_addr) { ip_addr_copy(_ip, *lwip_addr); }
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IPAddress& operator=(const ip_addr_t& lwip_addr) { ip_addr_copy(_ip, lwip_addr); return *this; }
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IPAddress& operator=(const ip_addr_t* lwip_addr) { ip_addr_copy(_ip, *lwip_addr); return *this; }
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uint16_t* raw6()
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{
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setV6();
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return reinterpret_cast<uint16_t*>(ip_2_ip6(&_ip));
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}
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const uint16_t* raw6() const
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{
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return isV6()? reinterpret_cast<const uint16_t*>(ip_2_ip6(&_ip)): nullptr;
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}
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// when not IPv6, ip_addr_t == ip4_addr_t so this one would be ambiguous
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// required otherwise
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operator const ip4_addr_t*() const { return isV4()? ip_2_ip4(&_ip): nullptr; }
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bool isV6() const { return IP_IS_V6_VAL(_ip); }
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void setV6() { IP_SET_TYPE_VAL(_ip, IPADDR_TYPE_V6); }
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protected:
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bool fromString6(const char *address);
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#else
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// allow portable code when IPv6 is not enabled
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uint16_t* raw6() { return nullptr; }
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const uint16_t* raw6() const { return nullptr; }
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bool isV6() const { return false; }
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void setV6() { }
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#endif
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protected:
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bool fromString4(const char *address);
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};
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extern CONST IPAddress INADDR_ANY;
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extern const IPAddress INADDR_NONE;
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#endif
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