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3 ÝPf09ã@sldZddlmZddlZddlZdZefZy eefZWne k rJYnXye Z Wn$e k rxe Z e e kstt‚YnXdOdkrŒdd„Zndd„Zy ejZWnek rºd d „ZYnXd d „Zeed ƒrØdd„Zndd„ZdPdd„ZGdd„deƒZdZdZGdd„deƒZGdd„deƒZdd„ZdQdd „Zd!d"„Z d#d$„Z!d%d&„Z"d'd(„Z#d)d*„Z$d+d,„Z%d-d.„Z&d/d0„Z'd1d2„Z(d3d4„Z)Gd5d6„d6eƒZ*Gd7d8„d8e*ƒZ+Gd9d:„d:e*ƒZ,Gd;d<„d„d>e-e+ƒZ.Gd?d@„d@e.ƒZ/GdAdB„dBe-e,ƒZ0GdCdD„dDeƒZ1e1e._2GdEdF„dFeƒZ3GdGdH„dHe3e+ƒZ4GdIdJ„dJe4ƒZ5GdKdL„dLe3e,ƒZ6GdMdN„dNeƒZ7e7e4_2dS)Rz•A fast, lightweight IPv4/IPv6 manipulation library in Python. This library is used to create/poke/manipulate IPv4 and IPv6 addresses and networks. é)Úunicode_literalsNz1.0.17ócCs|S)N©)Úbytrrú/usr/lib/python3.6/ipaddress.pyÚ_compat_bytes_to_byte_valssrcCsdd„|DƒS)NcSsg|]}tjd|ƒd‘qS)s!Br)ÚstructÚunpack)Ú.0Úbrrrú #sz._compat_bytes_to_byte_vals..r)rrrrr"scCs<|dks t‚d}x&|D]}t|tƒs(t‚|d>|}qW|S)NÚbigré)ÚAssertionErrorÚ isinstanceÚ_compat_int_types)ZbytvalsÚ endianessÚresZbvrrrÚ_compat_int_from_byte_vals's   rcCsŽt|tƒst‚|dkst‚|dkrH|dks2|dkrr?)r@ÚstrictrrrÚ ip_network©s   rEcCsTyt|ƒSttfk r YnXyt|ƒSttfk rBYnXtd|ƒ‚dS)agTake an IP string/int and return an object of the correct type. Args: address: A string or integer, the IP address. Either IPv4 or IPv6 addresses may be supplied; integers less than 2**32 will be considered to be IPv4 by default. Returns: An IPv4Interface or IPv6Interface object. Raises: ValueError: if the string passed isn't either a v4 or a v6 address. Notes: The IPv?Interface classes describe an Address on a particular Network, so they're basically a combination of both the Address and Network classes. z2%r does not appear to be an IPv4 or IPv6 interfaceN)Ú IPv4Interfacer9r;Ú IPv6Interfacer?)r@rrrÚ ip_interfaceÍsrHc Cs4y t|ddƒStjtfk r.tdƒ‚YnXdS)a`Represent an address as 4 packed bytes in network (big-endian) order. Args: address: An integer representation of an IPv4 IP address. Returns: The integer address packed as 4 bytes in network (big-endian) order. Raises: ValueError: If the integer is negative or too large to be an IPv4 IP address. rr z&Address negative or too large for IPv4N)rrrÚ OverflowErrorr?)r@rrrÚv4_int_to_packedðs rJc Cs4y t|ddƒStjtfk r.tdƒ‚YnXdS)zõRepresent an address as 16 packed bytes in network (big-endian) order. Args: address: An integer representation of an IPv6 IP address. Returns: The integer address packed as 16 bytes in network (big-endian) order. rr z&Address negative or too large for IPv6N)rrrrIr?)r@rrrÚv6_int_to_packeds  rKcCs*t|ƒjdƒ}t|ƒdkr&td|ƒ‚|S)zAHelper to split the netmask and raise AddressValueError if neededú/rzOnly one '/' permitted in %r)Ú _compat_strÚsplitÚlenr9)r@ÚaddrrrrÚ_split_optional_netmasks  rQccsRt|ƒ}t|ƒ}}x.|D]&}|j|jdkr<||fV|}|}qW||fVdS)zÏFind a sequence of sorted deduplicated IPv#Address. Args: addresses: a list of IPv#Address objects. Yields: A tuple containing the first and last IP addresses in the sequence. r$N)ÚiterÚnextÚ_ip)Ú addressesÚitÚfirstÚlastÚiprrrÚ_find_address_ranges    rZcCs$|dkr |St|t||d@ƒƒS)zåCount the number of zero bits on the right hand side. Args: number: an integer. bits: maximum number of bits to count. Returns: The number of zero bits on the right hand side of the number. rr$)Úminr!)ZnumberÚbitsrrrÚ_count_righthand_zero_bits0s r]ccsæt|tƒot|tƒstdƒ‚|j|jkr8td||fƒ‚||krHtdƒ‚|jdkrXt}n|jdkrht}ntdƒ‚|j}|j}|j}x^||kràt t ||ƒt ||dƒdƒ}||||fƒ}|V|d|>7}|d|j kr„Pq„WdS) a¤Summarize a network range given the first and last IP addresses. Example: >>> list(summarize_address_range(IPv4Address('192.0.2.0'), ... IPv4Address('192.0.2.130'))) ... #doctest: +NORMALIZE_WHITESPACE [IPv4Network('192.0.2.0/25'), IPv4Network('192.0.2.128/31'), IPv4Network('192.0.2.130/32')] Args: first: the first IPv4Address or IPv6Address in the range. last: the last IPv4Address or IPv6Address in the range. Returns: An iterator of the summarized IPv(4|6) network objects. Raise: TypeError: If the first and last objects are not IP addresses. If the first and last objects are not the same version. ValueError: If the last object is not greater than the first. If the version of the first address is not 4 or 6. z1first and last must be IP addresses, not networksz%%s and %s are not of the same versionz*last IP address must be greater than firstrézunknown IP versionr$N) rÚ _BaseAddressÚ TypeErrorÚversionr?rBrCÚ_max_prefixlenrTr[r]r!Ú _ALL_ONES)rWrXrYZip_bitsZ first_intZlast_intZnbitsÚnetrrrÚsummarize_address_range@s0         reccs˜t|ƒ}i}xL|rX|jƒ}|jƒ}|j|ƒ}|dkr>|||<q||kr||=|j|ƒqWd}x4t|jƒƒD]$}|dk r†|j|jkr†ql|V|}qlWdS)auLoops through the addresses, collapsing concurrent netblocks. Example: ip1 = IPv4Network('192.0.2.0/26') ip2 = IPv4Network('192.0.2.64/26') ip3 = IPv4Network('192.0.2.128/26') ip4 = IPv4Network('192.0.2.192/26') _collapse_addresses_internal([ip1, ip2, ip3, ip4]) -> [IPv4Network('192.0.2.0/24')] This shouldn't be called directly; it is called via collapse_addresses([]). Args: addresses: A list of IPv4Network's or IPv6Network's Returns: A list of IPv4Network's or IPv6Network's depending on what we were passed. N)ÚlistÚpopÚsupernetÚgetÚappendÚsortedÚvaluesÚbroadcast_address)rUZto_mergeÚsubnetsrdrhZexistingrXrrrÚ_collapse_addresses_internalws$   roc Cs8g}g}g}xä|D]Ü}t|tƒrT|rH|dj|jkrHtd||dfƒ‚|j|ƒq|j|jkr¼|rˆ|dj|jkrˆtd||dfƒ‚y|j|jƒWqîtk r¸|j|j ƒYqîXq|rä|dj|jkrätd||dfƒ‚|j|ƒqWt t |ƒƒ}|�r,x&t |ƒD]\}}|j t||ƒƒ�qWt||ƒS) aËCollapse a list of IP objects. Example: collapse_addresses([IPv4Network('192.0.2.0/25'), IPv4Network('192.0.2.128/25')]) -> [IPv4Network('192.0.2.0/24')] Args: addresses: An iterator of IPv4Network or IPv6Network objects. Returns: An iterator of the collapsed IPv(4|6)Network objects. Raises: TypeError: If passed a list of mixed version objects. r$z%%s and %s are not of the same versionéÿÿÿÿrprprprprp)rr_Ú_versionr`rjÚ _prefixlenrbrYÚAttributeErrorÚnetwork_addressrkÚsetrZÚextendrero)rUZaddrsZipsZnetsrYrWrXrrrÚcollapse_addresses¨s4     rwcCs(t|tƒr|jƒSt|tƒr$|jƒStS)a2Return a key suitable for sorting between networks and addresses. Address and Network objects are not sortable by default; they're fundamentally different so the expression IPv4Address('192.0.2.0') <= IPv4Network('192.0.2.0/24') doesn't make any sense. There are some times however, where you may wish to have ipaddress sort these for you anyway. If you need to do this, you can use this function as the key= argument to sorted(). Args: obj: either a Network or Address object. Returns: appropriate key. )rÚ _BaseNetworkÚ_get_networks_keyr_Ú_get_address_keyr-)ÚobjrrrÚget_mixed_type_keyÞs   r|c@s˜eZdZdZfZedd„ƒZedd„ƒZedd„ƒZedd „ƒZ d d „Z d d „Z e dd„ƒZ e dd„ƒZe dd„ƒZe dd„ƒZe dd„ƒZdd„ZdS)Ú_IPAddressBasezThe mother class.cCs|jƒS)z:Return the longhand version of the IP address as a string.)Ú_explode_shorthand_ip_string)r*rrrÚexplodedýsz_IPAddressBase.explodedcCst|ƒS)z;Return the shorthand version of the IP address as a string.)rM)r*rrrÚ compressedsz_IPAddressBase.compressedcCs|jƒS)aIThe name of the reverse DNS pointer for the IP address, e.g.: >>> ipaddress.ip_address("127.0.0.1").reverse_pointer '1.0.0.127.in-addr.arpa' >>> ipaddress.ip_address("2001:db8::1").reverse_pointer '1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.8.b.d.0.1.0.0.2.ip6.arpa' )Ú_reverse_pointer)r*rrrÚreverse_pointers z_IPAddressBase.reverse_pointercCsdt|ƒf}t|ƒ‚dS)Nz%200s has no version specified)Útyper)r*Úmsgrrrrasz_IPAddressBase.versioncCsF|dkrd}t|||jfƒ‚||jkrBd}t|||j|jfƒ‚dS)Nrz-%d (< 0) is not permitted as an IPv%d addressz2%d (>= 2**%d) is not permitted as an IPv%d address)r9rqrcrb)r*r@r„rrrÚ_check_int_addresss  z!_IPAddressBase._check_int_addresscCs.t|ƒ}||kr*d}t|||||jfƒ‚dS)Nz~%r (len %d != %d) is not permitted as an IPv%d address. Did you pass in a bytes (str in Python 2) instead of a unicode object?)rOr9rq)r*r@Z expected_lenZ address_lenr„rrrÚ_check_packed_address s z$_IPAddressBase._check_packed_addresscCs|j|j|?AS)z¦Turn the prefix length into a bitwise netmask Args: prefixlen: An integer, the prefix length. Returns: An integer. )rc)ÚclsÚ prefixlenrrrÚ_ip_int_from_prefix+s z"_IPAddressBase._ip_int_from_prefixc Cs\t||jƒ}|j|}||?}d|>d}||krX|jd}t||dƒ}d}t||ƒ‚|S)aReturn prefix length from the bitwise netmask. Args: ip_int: An integer, the netmask in expanded bitwise format Returns: An integer, the prefix length. Raises: ValueError: If the input intermingles zeroes & ones r$rr z&Netmask pattern %r mixes zeroes & ones)r]rbrr?) r‡Úip_intZtrailing_zeroesrˆZ leading_onesZall_onesZbyteslenZdetailsr„rrrÚ_prefix_from_ip_int8s      z"_IPAddressBase._prefix_from_ip_intcCsd|}t|ƒ‚dS)Nz%r is not a valid netmask)r;)r‡Z netmask_strr„rrrÚ_report_invalid_netmaskQsz&_IPAddressBase._report_invalid_netmaskc Csjtjj|ƒs|j|ƒy t|ƒ}Wntk r@|j|ƒYnXd|koV|jknsf|j|ƒ|S)a Return prefix length from a numeric string Args: prefixlen_str: The string to be converted Returns: An integer, the prefix length. Raises: NetmaskValueError: If the input is not a valid netmask r)Ú_BaseV4Ú_DECIMAL_DIGITSÚ issupersetrŒÚintr?rb)r‡Z prefixlen_strrˆrrrÚ_prefix_from_prefix_stringVs    z)_IPAddressBase._prefix_from_prefix_stringcCs†y|j|ƒ}Wntk r,|j|ƒYnXy |j|ƒStk rLYnX||jN}y |j|ƒStk r€|j|ƒYnXdS)aTurn a netmask/hostmask string into a prefix length Args: ip_str: The netmask/hostmask to be converted Returns: An integer, the prefix length. Raises: NetmaskValueError: If the input is not a valid netmask/hostmask N)Ú_ip_int_from_stringr9rŒr‹r?rc)r‡Úip_strrŠrrrÚ_prefix_from_ip_stringos   z%_IPAddressBase._prefix_from_ip_stringcCs|jt|ƒffS)N)Ú __class__rM)r*rrrÚ __reduce__‘sz_IPAddressBase.__reduce__N)r5r6r7r:r8Úpropertyrr€r‚rar…r†Ú classmethodr‰r‹rŒr‘r”r–rrrrr}÷s        "r}c@sdeZdZdZfZdd„Zdd„Zdd„Zdd „Zd d „Z d d „Z dd„Z dd„Z dd„Z dd„ZdS)r_z€A generic IP object. This IP class contains the version independent methods which are used by single IP addresses. cCs|jS)N)rT)r*rrrÚ__int__Ÿsz_BaseAddress.__int__c Cs2y|j|jko|j|jkStk r,tSXdS)N)rTrqrsr-)r*r+rrrr,¢s   z_BaseAddress.__eq__cCs`t|tƒstSt|tƒs(td||fƒ‚|j|jkrDtd||fƒ‚|j|jkr\|j|jkSdS)Nz"%s and %s are not of the same typez%%s and %s are not of the same versionF)rr}r-r_r`rqrT)r*r+rrrr0©s       z_BaseAddress.__lt__cCs t|tƒstS|jt|ƒ|ƒS)N)rrr-r•r�)r*r+rrrÚ__add__¸s z_BaseAddress.__add__cCs t|tƒstS|jt|ƒ|ƒS)N)rrr-r•r�)r*r+rrrÚ__sub__½s z_BaseAddress.__sub__cCsd|jjt|ƒfS)Nz%s(%r))r•r5rM)r*rrrÚ__repr__Âsz_BaseAddress.__repr__cCst|j|jƒƒS)N)rMÚ_string_from_ip_intrT)r*rrrÚ__str__Åsz_BaseAddress.__str__cCsttt|jƒƒƒS)N)ÚhashÚhexr�rT)r*rrrÚ__hash__Èsz_BaseAddress.__hash__cCs |j|fS)N)rq)r*rrrrzËsz_BaseAddress._get_address_keycCs|j|jffS)N)r•rT)r*rrrr–Îsz_BaseAddress.__reduce__N)r5r6r7r:r8r™r,r0ršr›rœržr¡rzr–rrrrr_•sr_c@sXeZdZdZdd„Zdd„Zdd„Zdd „Zd d „Zd d „Z dd„Z dd„Z dd„Z dd„Z dd„Zedd„ƒZedd„ƒZedd„ƒZedd„ƒZed d!„ƒZed"d#„ƒZed$d%„ƒZed&d'„ƒZd(d)„Zd*d+„Zd,d-„ZdFd0d1„ZdGd2d3„Zed4d5„ƒZd6d7„Zd8d9„Zed:d;„ƒZ edd?„ƒZ"ed@dA„ƒZ#edBdC„ƒZ$edDdE„ƒZ%d/S)Hrxz~A generic IP network object. This IP class contains the version independent methods which are used by networks. cCs i|_dS)N)Ú_cache)r*r@rrrÚ__init__Úsz_BaseNetwork.__init__cCsd|jjt|ƒfS)Nz%s(%r))r•r5rM)r*rrrrœÝsz_BaseNetwork.__repr__cCsd|j|jfS)Nz%s/%d)rtrˆ)r*rrrržàsz_BaseNetwork.__str__ccs<t|jƒ}t|jƒ}x"t|d|ƒD]}|j|ƒVq$WdS)zŸGenerate Iterator over usable hosts in a network. This is like __iter__ except it doesn't return the network or broadcast addresses. r$N)r�rtrmr(Ú_address_class)r*ÚnetworkÚ broadcastÚxrrrÚhostsãs  z_BaseNetwork.hostsccs<t|jƒ}t|jƒ}x"t||dƒD]}|j|ƒVq$WdS)Nr$)r�rtrmr(r¤)r*r¥r¦r§rrrÚ__iter__ïs  z_BaseNetwork.__iter__cCslt|jƒ}t|jƒ}|dkr>|||kr0tdƒ‚|j||ƒS|d7}|||krZtdƒ‚|j||ƒSdS)Nrzaddress out of ranger$)r�rtrmÚ IndexErrorr¤)r*Únr¥r¦rrrÚ __getitem__õs    z_BaseNetwork.__getitem__cCsxt|tƒstSt|tƒs(td||fƒ‚|j|jkrDtd||fƒ‚|j|jkr\|j|jkS|j|jkrt|j|jkSdS)Nz"%s and %s are not of the same typez%%s and %s are not of the same versionF)rr}r-rxr`rqrtÚnetmask)r*r+rrrr0s         z_BaseNetwork.__lt__c CsFy,|j|jko,|j|jko,t|jƒt|jƒkStk r@tSXdS)N)rqrtr�r­rsr-)r*r+rrrr,s   z_BaseNetwork.__eq__cCstt|jƒt|jƒAƒS)N)rŸr�rtr­)r*rrrr¡sz_BaseNetwork.__hash__cCsL|j|jkrdSt|tƒrdSt|jƒt|jƒkoBt|jƒkSSdS)NF)rqrrxr�rtrTrm)r*r+rrrÚ __contains__s   z_BaseNetwork.__contains__cCs(|j|kp&|j|kp&|j|kp&|j|kS)z*Tell if self is partly contained in other.)rtrm)r*r+rrrÚoverlaps)s   z_BaseNetwork.overlapscCs<|jjdƒ}|dkr8|jt|jƒt|jƒBƒ}||jd<|S)Nrm)r¢rir¤r�rtÚhostmask)r*r§rrrrm0s    z_BaseNetwork.broadcast_addresscCs8|jjdƒ}|dkr4|jt|jƒ|jAƒ}||jd<|S)Nr°)r¢rir¤r�r­rc)r*r§rrrr°9s   z_BaseNetwork.hostmaskcCsd|j|jfS)Nz%s/%d)rtrr)r*rrrÚwith_prefixlenAsz_BaseNetwork.with_prefixlencCsd|j|jfS)Nz%s/%s)rtr­)r*rrrÚ with_netmaskEsz_BaseNetwork.with_netmaskcCsd|j|jfS)Nz%s/%s)rtr°)r*rrrÚ with_hostmaskIsz_BaseNetwork.with_hostmaskcCst|jƒt|jƒdS)z&Number of hosts in the current subnet.r$)r�rmrt)r*rrrÚ num_addressesMsz_BaseNetwork.num_addressescCsdt|ƒf}t|ƒ‚dS)Nz%%200s has no associated address class)rƒr)r*r„rrrr¤Rsz_BaseNetwork._address_classcCs|jS)N)rr)r*rrrrˆZsz_BaseNetwork.prefixlenccs|j|jkstd||fƒ‚t|tƒs2td|ƒ‚|j|ƒsLtd||fƒ‚||krXdS|jd|j|jfƒ}|j ƒ\}}xb||krÜ||krÜ|j|ƒrª|V|j ƒ\}}q||j|ƒrÈ|V|j ƒ\}}q|t d|||fƒ‚q|W||krî|Vn$||k�r|Vnt d|||fƒ‚dS)aºRemove an address from a larger block. For example: addr1 = ip_network('192.0.2.0/28') addr2 = ip_network('192.0.2.1/32') list(addr1.address_exclude(addr2)) = [IPv4Network('192.0.2.0/32'), IPv4Network('192.0.2.2/31'), IPv4Network('192.0.2.4/30'), IPv4Network('192.0.2.8/29')] or IPv6: addr1 = ip_network('2001:db8::1/32') addr2 = ip_network('2001:db8::1/128') list(addr1.address_exclude(addr2)) = [ip_network('2001:db8::1/128'), ip_network('2001:db8::2/127'), ip_network('2001:db8::4/126'), ip_network('2001:db8::8/125'), ... ip_network('2001:db8:8000::/33')] Args: other: An IPv4Network or IPv6Network object of the same type. Returns: An iterator of the IPv(4|6)Network objects which is self minus other. Raises: TypeError: If self and other are of differing address versions, or if other is not a network object. ValueError: If other is not completely contained by self. z%%s and %s are not of the same versionz%s is not a network objectz%s not contained in %sNz%s/%sz3Error performing exclusion: s1: %s s2: %s other: %s) rqr`rrxÚ subnet_ofr?r•rtrˆrnr)r*r+Ús1Ús2rrrÚaddress_exclude^s6$           z_BaseNetwork.address_excludecCs`|j|jkrtd||fƒ‚|j|jkr,dS|j|jkr other eg: IPv4Network('192.0.2.128/25') > IPv4Network('192.0.2.0/25') IPv6Network('2001:db8::2000/124') > IPv6Network('2001:db8::1000/124') Raises: TypeError if the IP versions are different. z"%s and %s are not of the same typer$rrprp)rqr`rtr­)r*r+rrrÚcompare_networks©s!      z_BaseNetwork.compare_networkscCs|j|j|jfS)zËNetwork-only key function. Returns an object that identifies this address' network and netmask. This function is a suitable "key" argument for sorted() and list.sort(). )rqrtr­)r*rrrryÙsz_BaseNetwork._get_networks_keyr$Nc csÖ|j|jkr|VdS|dk rJ||jkr0tdƒ‚|dkr@tdƒ‚||j}|dkrZtdƒ‚|j|}||jkr~td||fƒ‚t|jƒ}t|jƒd}t|jƒd|?}x(t|||ƒD]}|j||fƒ}|Vq¶WdS)aÓThe subnets which join to make the current subnet. In the case that self contains only one IP (self._prefixlen == 32 for IPv4 or self._prefixlen == 128 for IPv6), yield an iterator with just ourself. Args: prefixlen_diff: An integer, the amount the prefix length should be increased by. This should not be set if new_prefix is also set. new_prefix: The desired new prefix length. This must be a larger number (smaller prefix) than the existing prefix. This should not be set if prefixlen_diff is also set. Returns: An iterator of IPv(4|6) objects. Raises: ValueError: The prefixlen_diff is too small or too large. OR prefixlen_diff and new_prefix are both set or new_prefix is a smaller number than the current prefix (smaller number means a larger network) Nznew prefix must be longerr$z(cannot set prefixlen_diff and new_prefixrzprefix length diff must be > 0z0prefix length diff %d is invalid for netblock %s) rrrbr?r�rtrmr°r(r•) r*Úprefixlen_diffÚ new_prefixÚ new_prefixlenr%r&r'Znew_addrZcurrentrrrrnãs,       z_BaseNetwork.subnetscCsˆ|jdkr|S|dk rB||jkr(tdƒ‚|dkr8tdƒ‚|j|}|j|}|dkrftd|j|fƒ‚|jt|jƒt|jƒ|>@|fƒS)aËThe supernet containing the current network. Args: prefixlen_diff: An integer, the amount the prefix length of the network should be decreased by. For example, given a /24 network and a prefixlen_diff of 3, a supernet with a /21 netmask is returned. Returns: An IPv4 network object. Raises: ValueError: If self.prefixlen - prefixlen_diff < 0. I.e., you have a negative prefix length. OR If prefixlen_diff and new_prefix are both set or new_prefix is a larger number than the current prefix (larger number means a smaller network) rNznew prefix must be shorterr$z(cannot set prefixlen_diff and new_prefixz;current prefixlen is %d, cannot have a prefixlen_diff of %d)rrr?rˆr•r�rtr­)r*rºr»r¼rrrrhs     z_BaseNetwork.supernetcCs|jjo|jjS)z»Test if the address is reserved for multicast use. Returns: A boolean, True if the address is a multicast address. See RFC 2373 2.7 for details. )rtÚ is_multicastrm)r*rrrr½As z_BaseNetwork.is_multicastcCsP|j|jkrdSt|dƒr 255) not permitted)r?rŽr�rOr�)r‡Z octet_strr„Z octet_intrrrrÓýs       z_BaseV4._parse_octetcCsdjdd„t|ddƒDƒƒS)zÒTurns a 32-bit integer into dotted decimal notation. Args: ip_int: An integer, the IP address. Returns: The IP address as a string in dotted decimal notation. rÑcss0|](}tt|tƒr"tjd|ƒdn|ƒVqdS)s!BrN)rMrr>rr )r r rrrú -sz._BaseV4._string_from_ip_int..rr )Újoinr)r‡rŠrrrr�"s z_BaseV4._string_from_ip_intc sh|jdƒ}y‡fdd„tt|ƒDƒ}Wntk r:dSXt|ƒt|ƒkrPdS|d|dkrddSdS) zÙTest if the IP string is a hostmask (rather than a netmask). Args: ip_str: A string, the potential hostmask. Returns: A boolean, True if the IP string is a hostmask. rÑcsg|]}|ˆjkr|‘qSr)Ú_valid_mask_octets)r r§)r*rrr >sz(_BaseV4._is_hostmask..Frr$Trp)rNrÒr�r?rO)r*r“r\Úpartsr)r*rÚ _is_hostmask2s z_BaseV4._is_hostmaskcCs&t|ƒjdƒddd…}dj|ƒdS)z�Return the reverse DNS pointer name for the IPv4 address. This implements the method described in RFC1035 3.5. rÑNr$z .in-addr.arparp)rMrNrÚ)r*Zreverse_octetsrrrr�Gsz_BaseV4._reverse_pointercCs|jS)N)rb)r*rrrÚ max_prefixlenPsz_BaseV4.max_prefixlencCs|jS)N)rq)r*rrrraTsz_BaseV4.versionN)r5r6r7r:r8rqÚ IPV4LENGTHrcÚ frozensetrŽrÛrbrÎr~r˜rÐr’rÓr�rÝr�r—rÞrarrrrr�°s"    %  r�c@s|eZdZdZdZdd„Zedd„ƒZedd „ƒZed d „ƒZ ed d „ƒZ edd„ƒZ edd„ƒZ edd„ƒZ edd„ƒZdS)r<z/Represent and manipulate single IPv4 Addresses.rTÚ __weakref__cCsxt|tƒr|j|ƒ||_dSt|tƒrL|j|dƒt|ƒ}t|dƒ|_dSt|ƒ}d|krht d|ƒ‚|j |ƒ|_dS)a± Args: address: A string or integer representing the IP Additionally, an integer can be passed, so IPv4Address('192.0.2.1') == IPv4Address(3221225985). or, more generally IPv4Address(int(IPv4Address('192.0.2.1'))) == IPv4Address('192.0.2.1') Raises: AddressValueError: If ipaddress isn't a valid IPv4 address. Nrr rLzUnexpected '/' in %r) rrr…rTr>r†rrrMr9r’)r*r@ÚbvsÚaddr_strrrrr£_s      zIPv4Address.__init__cCs t|jƒS)z*The binary representation of this address.)rJrT)r*rrrÚpackedƒszIPv4Address.packedcCs ||jjkS)z°Test if the address is otherwise IETF reserved. Returns: A boolean, True if the address is within the reserved IPv4 Network range. )Ú _constantsÚ_reserved_network)r*rrrrÀˆs zIPv4Address.is_reservedcst‡fdd„ˆjjDƒƒS)z¶Test if this address is allocated for private networks. Returns: A boolean, True if the address is reserved per iana-ipv4-special-registry. c3s|]}ˆ|kVqdS)Nr)r rd)r*rrrÙœsz)IPv4Address.is_private..)ÚanyråÚ_private_networks)r*r)r*rr“s zIPv4Address.is_privatecCs||jjko|j S)N)råÚ_public_networkrÂ)r*rrrrÞs zIPv4Address.is_globalcCs ||jjkS)z­Test if the address is reserved for multicast use. Returns: A boolean, True if the address is multicast. See RFC 3171 for details. )råÚ_multicast_network)r*rrrr½¤s zIPv4Address.is_multicastcCs ||jjkS)z¤Test if the address is unspecified. Returns: A boolean, True if this is the unspecified address as defined in RFC 5735 3. )råÚ_unspecified_address)r*rrrrįs zIPv4Address.is_unspecifiedcCs ||jjkS)z�Test if the address is a loopback address. Returns: A boolean, True if the address is a loopback per RFC 3330. )råÚ_loopback_network)r*rrrrźszIPv4Address.is_loopbackcCs ||jjkS)z’Test if the address is reserved for link-local. Returns: A boolean, True if the address is link-local per RFC 3927. )råÚ_linklocal_network)r*rrrrÁÄszIPv4Address.is_link_localN)rTrá)r5r6r7r:r8r£r—rärÀrÂrÃr½rÄrÅrÁrrrrr<Ys$   r<c@sjeZdZdd„Zdd„Zdd„Zdd„Zd d „Zej Z e d d „ƒZ e d d„ƒZ e dd„ƒZ e dd„ƒZdS)rFcCsÞt|ttfƒr2tj||ƒt|jƒ|_|j|_ dSt|t ƒr–tj||dƒt |ƒdkrht |dƒ|_ n|j|_ t|dd�|_|jj |_ |jj|_dSt|ƒ}tj||dƒt|dd�|_|jj |_ |jj |_ |jj|_dS)Nrr$F)rD)rr>rr<r£rBrTr¥rbrrÚtuplerOr�r­r°rQ)r*r@rPrrrr£Ñs(        zIPv4Interface.__init__cCsd|j|jƒ|jjfS)Nz%s/%d)r�rTr¥rˆ)r*rrrržís zIPv4Interface.__str__c CsDtj||ƒ}| s|tkr|Sy |j|jkStk r>dSXdS)NF)r<r,r-r¥rs)r*r+Ú address_equalrrrr,ñs  zIPv4Interface.__eq__c Cs>tj||ƒ}|tkrtSy |j|jkStk r8dSXdS)NF)r<r0r-r¥rs)r*r+Ú address_lessrrrr0ýs  zIPv4Interface.__lt__cCs|j|jAt|jjƒAS)N)rTrrr�r¥rt)r*rrrr¡szIPv4Interface.__hash__cCs t|jƒS)N)r<rT)r*rrrrY szIPv4Interface.ipcCsd|j|jƒ|jfS)Nz%s/%s)r�rTrr)r*rrrr±s zIPv4Interface.with_prefixlencCsd|j|jƒ|jfS)Nz%s/%s)r�rTr­)r*rrrr²s zIPv4Interface.with_netmaskcCsd|j|jƒ|jfS)Nz%s/%s)r�rTr°)r*rrrr³s zIPv4Interface.with_hostmaskN)r5r6r7r£ržr,r0r¡r}r–r—rYr±r²r³rrrrrFÏs     rFc@s*eZdZdZeZddd„Zedd„ƒZdS) rBaeThis class represents and manipulates 32-bit IPv4 network + addresses.. Attributes: [examples for IPv4Network('192.0.2.0/27')] .network_address: IPv4Address('192.0.2.0') .hostmask: IPv4Address('0.0.0.31') .broadcast_address: IPv4Address('192.0.2.32') .netmask: IPv4Address('255.255.255.224') .prefixlen: 27 TcCs|tj||ƒt|ttfƒrr<rtrÐrbr­rrrîrOr�r?rQr’r©r¨)r*r@rDrÏrärPrrrr£0sB%           zIPv4Network.__init__cCs&|jtdƒko|jtdƒk o$|j S)z¹Test if this address is allocated for public networks. Returns: A boolean, True if the address is not reserved per iana-ipv4-special-registry. z 100.64.0.0/10)rtrBrmrÂ)r*rrrrÃ…s zIPv4Network.is_globalN)T) r5r6r7r:r<r¤r£r—rÃrrrrrB!s  UrBc@s”eZdZedƒZedƒZedƒZedƒZedƒedƒedƒedƒedƒedƒed ƒed ƒed ƒed ƒed ƒedƒedƒedƒgZedƒZ e dƒZ dS)Ú_IPv4Constantsz169.254.0.0/16z 127.0.0.0/8z 224.0.0.0/4z 100.64.0.0/10z 0.0.0.0/8z 10.0.0.0/8z 172.16.0.0/12z 192.0.0.0/29z192.0.0.170/31z 192.0.2.0/24z192.168.0.0/16z 198.18.0.0/15z198.51.100.0/24z203.0.113.0/24z 240.0.0.0/4z255.255.255.255/32z0.0.0.0N) r5r6r7rBrírìrêrérèrær<rërrrrrñ“s( rñc@sžeZdZdZfZdZdedZdZe dƒZ eZ iZ e dd„ƒZe d d „ƒZe d d „ƒZe d d„ƒZe ddd„ƒZdd„Zdd„Zedd„ƒZedd„ƒZdS)Ú_BaseV6zyBase IPv6 object. The following methods are used by IPv6 objects in both single IP addresses and networks. r^rr$rZ0123456789ABCDEFabcdefcCsJ||jkr@t|tƒr|}n |j|ƒ}t|j|ƒƒ}||f|j|<|j|S)aMake a (netmask, prefix_len) tuple from the given argument. Argument can be: - an integer (the prefix length) - a string representing the prefix length (e.g. "24") - a string representing the prefix netmask (e.g. "255.255.255.0") )rÎrrr‘r=r‰)r‡rÏrˆr­rrrrÐÊs   z_BaseV6._make_netmaskcCsâ|s tdƒ‚|jdƒ}d}t|ƒ|kr:d||f}t|ƒ‚d|dkr´yt|jƒƒj}Wn2tk rŠ}ztd||fƒ‚WYdd}~XnX|jd |d ?d @ƒ|jd |d @ƒ|jd}t|ƒ|krâd |d|f}t|ƒ‚d}x@tdt|ƒdƒD]*} || sú|dk �r d |}t|ƒ‚| }qúW|dk �rÊ|} t|ƒ|d} |d�sn| d8} | �rnd}t||ƒ‚|d�s–| d8} | �r–d}t||ƒ‚|j| | } | dk�r4d}t||jd|fƒ‚njt|ƒ|jk�rðd}t||j|fƒ‚|d�s d}t||ƒ‚|d�s$d}t||ƒ‚t|ƒ} d} d} ytd} x,t | ƒD] } | d K} | |j || ƒO} �qDW| d | K} x0t | dƒD] } | d K} | |j || ƒO} �q‚W| St k �rÜ}ztd||fƒ‚WYdd}~XnXdS)zùTurn an IPv6 ip_str into an integer. Args: ip_str: A string, the IPv6 ip_str. Returns: An int, the IPv6 address Raises: AddressValueError: if ip_str isn't a valid IPv6 Address. zAddress cannot be emptyú:rÕz At least %d parts expected in %rrÑr$z%s in %rNz%xriÿÿz!At most %d colons permitted in %rz At most one '::' permitted in %rrz0Leading ':' only permitted as part of '::' in %rz1Trailing ':' only permitted as part of '::' in %rz/Expected at most %d other parts with '::' in %rz,Exactly %d parts expected without '::' in %rrprprp) r9rNrOr<rgrTrjÚ _HEXTET_COUNTr(ÚrangeÚ _parse_hextetr?)r‡r“rÜZ _min_partsr„Zipv4_intrÔZ _max_partsZ skip_indexr Zparts_hiZparts_loZ parts_skippedrŠrrrr’Üs†    "              z_BaseV6._ip_int_from_stringcCs>|jj|ƒstd|ƒ‚t|ƒdkr4d}t||ƒ‚t|dƒS)a&Convert an IPv6 hextet string into an integer. Args: hextet_str: A string, the number to parse. Returns: The hextet as an integer. Raises: ValueError: if the input isn't strictly a hex number from [0..FFFF]. zOnly hex digits permitted in %rrz$At most 4 characters permitted in %rr)Ú _HEX_DIGITSr�r?rOr�)r‡Z hextet_strr„rrrröEs     z_BaseV6._parse_hextetc Cs¦d}d}d}d}xJt|ƒD]>\}}|dkrP|d7}|dkr>|}||krX|}|}qd}d}qW|dkr¢||}|t|ƒkr‚|dg7}dg|||…<|dkr¢dg|}|S) aäCompresses a list of hextets. Compresses a list of strings, replacing the longest continuous sequence of "0" in the list with "" and adding empty strings at the beginning or at the end of the string such that subsequently calling ":".join(hextets) will produce the compressed version of the IPv6 address. Args: hextets: A list of strings, the hextets to compress. Returns: A list of strings. r$rrØÚrprprprp)Ú enumeraterO) r‡ÚhextetsZbest_doublecolon_startZbest_doublecolon_lenZdoublecolon_startZdoublecolon_lenÚindexZhextetZbest_doublecolon_endrrrÚ_compress_hextets_s.   z_BaseV6._compress_hextetsNcsZ|dkrt|jƒ}||jkr$tdƒ‚d|‰‡fdd„tdddƒDƒ}|j|ƒ}d j|ƒS) a,Turns a 128-bit integer into hexadecimal notation. Args: ip_int: An integer, the IP address. Returns: A string, the hexadecimal representation of the address. Raises: ValueError: The address is bigger than 128 bits of all ones. NzIPv6 address is too largez%032xcs&g|]}dtˆ||d…dƒ‘qS)z%xrr)r�)r r§)Úhex_strrrr ¤sz/_BaseV6._string_from_ip_int..rrrró)r�rTrcr?rõrürÚ)r‡rŠrúr)rýrr��s   z_BaseV6._string_from_ip_intcsŒt|tƒrt|jƒ}nt|tƒr,t|jƒ}nt|ƒ}|j|ƒ}d|‰‡fdd„tdddƒDƒ}t|ttfƒr‚ddj |ƒ|j fSdj |ƒS) z¬Expand a shortened IPv6 address. Args: ip_str: A string, the IPv6 address. Returns: A string, the expanded IPv6 address. z%032xcsg|]}ˆ||d…‘qS)rr)r r§)rýrrr ¼sz8_BaseV6._explode_shorthand_ip_string..rrrz%s/%dró) rrCrMrtrGrYr’rõrxrÚrr)r*r“rŠrÜr)rýrr~©s     z$_BaseV6._explode_shorthand_ip_stringcCs&|jddd…jddƒ}dj|ƒdS)z�Return the reverse DNS pointer name for the IPv6 address. This implements the method described in RFC3596 2.5. Nr$rórørÑz .ip6.arparp)rÚreplacerÚ)r*Z reverse_charsrrrr�Ász_BaseV6._reverse_pointercCs|jS)N)rb)r*rrrrÞÊsz_BaseV6.max_prefixlencCs|jS)N)rq)r*rrrraÎsz_BaseV6.version)N)r5r6r7r:r8rqÚ IPV6LENGTHrcrôràr÷rbrÎr˜rÐr’rörür�r~r�r—rÞrarrrrrò¶s$   i  0  ròc@s¬eZdZdZdZdd„Zedd„ƒZedd „ƒZed d „ƒZ ed d „ƒZ edd„ƒZ edd„ƒZ edd„ƒZ edd„ƒZedd„ƒZedd„ƒZedd„ƒZedd„ƒZdS) r=z/Represent and manipulate single IPv6 Addresses.rTrácCsxt|tƒr|j|ƒ||_dSt|tƒrL|j|dƒt|ƒ}t|dƒ|_dSt|ƒ}d|krht d|ƒ‚|j |ƒ|_dS)aInstantiate a new IPv6 address object. Args: address: A string or integer representing the IP Additionally, an integer can be passed, so IPv6Address('2001:db8::') == IPv6Address(42540766411282592856903984951653826560) or, more generally IPv6Address(int(IPv6Address('2001:db8::'))) == IPv6Address('2001:db8::') Raises: AddressValueError: If address isn't a valid IPv6 address. Nrr rLzUnexpected '/' in %r) rrr…rTr>r†rrrMr9r’)r*r@rârãrrrr£Ùs      zIPv6Address.__init__cCs t|jƒS)z*The binary representation of this address.)rKrT)r*rrrräþszIPv6Address.packedcCs ||jjkS)z»Test if the address is reserved for multicast use. Returns: A boolean, True if the address is a multicast address. See RFC 2373 2.7 for details. )rårê)r*rrrr½s zIPv6Address.is_multicastcst‡fdd„ˆjjDƒƒS)zµTest if the address is otherwise IETF reserved. Returns: A boolean, True if the address is within one of the reserved IPv6 Network ranges. c3s|]}ˆ|kVqdS)Nr)r r§)r*rrrÙsz*IPv6Address.is_reserved..)rçråÚ_reserved_networks)r*r)r*rrÀs zIPv6Address.is_reservedcCs ||jjkS)z�Test if the address is reserved for link-local. Returns: A boolean, True if the address is reserved per RFC 4291. )rårí)r*rrrrÁszIPv6Address.is_link_localcCs ||jjkS)a`Test if the address is reserved for site-local. Note that the site-local address space has been deprecated by RFC 3879. Use is_private to test if this address is in the space of unique local addresses as defined by RFC 4193. Returns: A boolean, True if the address is reserved per RFC 3513 2.5.6. )råÚ_sitelocal_network)r*rrrÚ is_site_local#s zIPv6Address.is_site_localcst‡fdd„ˆjjDƒƒS)z¶Test if this address is allocated for private networks. Returns: A boolean, True if the address is reserved per iana-ipv6-special-registry. c3s|]}ˆ|kVqdS)Nr)r rd)r*rrrÙ:sz)IPv6Address.is_private..)rçrårè)r*r)r*rrÂ1s zIPv6Address.is_privatecCs|j S)z¹Test if this address is allocated for public networks. Returns: A boolean, true if the address is not reserved per iana-ipv6-special-registry. )rÂ)r*rrrrÃ<s zIPv6Address.is_globalcCs |jdkS)z¨Test if the address is unspecified. Returns: A boolean, True if this is the unspecified address as defined in RFC 2373 2.5.2. r)rT)r*rrrrÄGs zIPv6Address.is_unspecifiedcCs |jdkS)z±Test if the address is a loopback address. Returns: A boolean, True if the address is a loopback address as defined in RFC 2373 2.5.3. r$)rT)r*rrrrÅRs zIPv6Address.is_loopbackcCs |jd?dkrdSt|jd@ƒS)z¶Return the IPv4 mapped address. Returns: If the IPv6 address is a v4 mapped address, return the IPv4 mapped address. Return None otherwise. riÿÿNlÿÿ)rTr<)r*rrrÚ ipv4_mapped]s zIPv6Address.ipv4_mappedcCs4|jd?dkrdSt|jd?d@ƒt|jd@ƒfS)zÛTuple of embedded teredo IPs. Returns: Tuple of the (server, client) IPs or None if the address doesn't appear to be a teredo address (doesn't start with 2001::/32) é`i Nrlÿÿ)rTr<)r*rrrÚteredojs zIPv6Address.teredocCs$|jd?dkrdSt|jd?d@ƒS)zÎReturn the IPv4 6to4 embedded address. Returns: The IPv4 6to4-embedded address if present or None if the address doesn't appear to contain a 6to4 embedded address. épi NéPlÿÿ)rTr<)r*rrrÚ sixtofourys zIPv6Address.sixtofourN)rTrá)r5r6r7r:r8r£r—rär½rÀrÁrrÂrÃrÄrÅrrrrrrrr=Ós%   r=c@s‚eZdZdd„Zdd„Zdd„Zdd„Zd d „Zej Z e d d „ƒZ e d d„ƒZ e dd„ƒZ e dd„ƒZe dd„ƒZe dd„ƒZdS)rGcCsÞt|ttfƒr2tj||ƒt|jƒ|_|j|_ dSt|t ƒr–tj||dƒt |ƒdkrht |dƒ|_ n|j|_ t|dd�|_|jj |_ |jj|_dSt|ƒ}tj||dƒt|dd�|_|jj |_ |jj |_ |jj|_dS)Nrr$F)rD)rr>rr=r£rCrTr¥rbrrrîrOr�r­r°rQ)r*r@rPrrrr£‰s(        zIPv6Interface.__init__cCsd|j|jƒ|jjfS)Nz%s/%d)r�rTr¥rˆ)r*rrrrž¡s zIPv6Interface.__str__c CsDtj||ƒ}| s|tkr|Sy |j|jkStk r>dSXdS)NF)r=r,r-r¥rs)r*r+rïrrrr,¥s  zIPv6Interface.__eq__c Cs>tj||ƒ}|tkrtSy |j|jkStk r8dSXdS)NF)r=r0r-r¥rs)r*r+rðrrrr0±s  zIPv6Interface.__lt__cCs|j|jAt|jjƒAS)N)rTrrr�r¥rt)r*rrrr¡¼szIPv6Interface.__hash__cCs t|jƒS)N)r=rT)r*rrrrYÁszIPv6Interface.ipcCsd|j|jƒ|jfS)Nz%s/%s)r�rTrr)r*rrrr±Ås zIPv6Interface.with_prefixlencCsd|j|jƒ|jfS)Nz%s/%s)r�rTr­)r*rrrr²Ês zIPv6Interface.with_netmaskcCsd|j|jƒ|jfS)Nz%s/%s)r�rTr°)r*rrrr³Ïs zIPv6Interface.with_hostmaskcCs|jdko|jjS)Nr)rTr¥rÄ)r*rrrrÄÔszIPv6Interface.is_unspecifiedcCs|jdko|jjS)Nr$)rTr¥rÅ)r*rrrrÅØszIPv6Interface.is_loopbackN)r5r6r7r£ržr,r0r¡r}r–r—rYr±r²r³rÄrÅrrrrrG‡s       rGc@s2eZdZdZeZd dd„Zdd„Zedd„ƒZ d S) rCavThis class represents and manipulates 128-bit IPv6 networks. Attributes: [examples for IPv6('2001:db8::1000/124')] .network_address: IPv6Address('2001:db8::1000') .hostmask: IPv6Address('::f') .broadcast_address: IPv6Address('2001:db8::100f') .netmask: IPv6Address('ffff:ffff:ffff:ffff:ffff:ffff:ffff:fff0') .prefixlen: 124 TcCs|tj||ƒt|ttfƒrrr=rtrÐrbr­rrrîrOr�r?rQr’r©r¨)r*r@rDrÏrärPrrrr£ísB           zIPv6Network.__init__ccs@t|jƒ}t|jƒ}x&t|d|dƒD]}|j|ƒVq(WdS)z¢Generate Iterator over usable hosts in a network. This is like __iter__ except it doesn't return the Subnet-Router anycast address. r$N)r�rtrmr(r¤)r*r¥r¦r§rrrr¨< s  zIPv6Network.hostscCs|jjo|jjS)a`Test if the address is reserved for site-local. Note that the site-local address space has been deprecated by RFC 3879. Use is_private to test if this address is in the space of unique local addresses as defined by RFC 4193. Returns: A boolean, True if the address is reserved per RFC 3513 2.5.6. )rtrrm)r*rrrrH s zIPv6Network.is_site_localN)T) r5r6r7r:r=r¤r£r¨r—rrrrrrCÝs   O rCc@sÂeZdZedƒZedƒZedƒedƒedƒedƒedƒedƒed ƒed ƒed ƒedƒg Zed ƒed ƒedƒedƒedƒedƒedƒedƒedƒedƒedƒedƒedƒedƒedƒgZedƒZdS)Ú_IPv6Constantsz fe80::/10zff00::/8z::1/128z::/128z ::ffff:0:0/96z100::/64z 2001::/23z 2001:2::/48z 2001:db8::/32z 2001:10::/28zfc00::/7z::/8z100::/8z200::/7z400::/6z800::/5z1000::/4z4000::/3z6000::/3z8000::/3zA000::/3zC000::/3zE000::/4zF000::/5zF800::/6zFE00::/9z fec0::/10N) r5r6r7rCrírêrèrrrrrrr X s*         r r)r$)T)8r:Z __future__rr"rÚ __version__r�rZlongÚ NameErrorZunicoderMÚstrr>rrÚ from_bytesrrsrr¾r!r(Úobjectr)rßrÿr?r9r;rArErHrJrKrQrZr]rerorwr|r}r_rxr�r<rFrBrñråròr=rGrCr rrrrÚ s„        )$ $#716=a*vRr 5V{!