508 lines
19 KiB
PHP
508 lines
19 KiB
PHP
<?php
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/**
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* Tests for IP validity functions. Ported from /t/inc/IP.t by avar.
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*/
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class IPTest extends MediaWikiTestCase {
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/**
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* not sure it should be tested with boolean false. hashar 20100924
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* @covers IP::isIPAddress
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*/
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public function testisIPAddress() {
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$this->assertFalse( IP::isIPAddress( false ), 'Boolean false is not an IP' );
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$this->assertFalse( IP::isIPAddress( true ), 'Boolean true is not an IP' );
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$this->assertFalse( IP::isIPAddress( "" ), 'Empty string is not an IP' );
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$this->assertFalse( IP::isIPAddress( 'abc' ), 'Garbage IP string' );
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$this->assertFalse( IP::isIPAddress( ':' ), 'Single ":" is not an IP' );
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$this->assertFalse( IP::isIPAddress( '2001:0DB8::A:1::1'), 'IPv6 with a double :: occurence' );
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$this->assertFalse( IP::isIPAddress( '2001:0DB8::A:1::'), 'IPv6 with a double :: occurence, last at end' );
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$this->assertFalse( IP::isIPAddress( '::2001:0DB8::5:1'), 'IPv6 with a double :: occurence, firt at beginning' );
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$this->assertFalse( IP::isIPAddress( '124.24.52' ), 'IPv4 not enough quads' );
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$this->assertFalse( IP::isIPAddress( '24.324.52.13' ), 'IPv4 out of range' );
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$this->assertFalse( IP::isIPAddress( '.24.52.13' ), 'IPv4 starts with period' );
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$this->assertFalse( IP::isIPAddress( 'fc:100:300' ), 'IPv6 with only 3 words' );
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$this->assertTrue( IP::isIPAddress( '::' ), 'RFC 4291 IPv6 Unspecified Address' );
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$this->assertTrue( IP::isIPAddress( '::1' ), 'RFC 4291 IPv6 Loopback Address' );
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$this->assertTrue( IP::isIPAddress( '74.24.52.13/20', 'IPv4 range' ) );
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$this->assertTrue( IP::isIPAddress( 'fc:100:a:d:1:e:ac:0/24' ), 'IPv6 range' );
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$this->assertTrue( IP::isIPAddress( 'fc::100:a:d:1:e:ac/96' ), 'IPv6 range with "::"' );
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$validIPs = array( 'fc:100::', 'fc:100:a:d:1:e:ac::', 'fc::100', '::fc:100:a:d:1:e:ac',
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'::fc', 'fc::100:a:d:1:e:ac', 'fc:100:a:d:1:e:ac:0', '124.24.52.13', '1.24.52.13' );
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foreach ( $validIPs as $ip ) {
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$this->assertTrue( IP::isIPAddress( $ip ), "$ip is a valid IP address" );
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}
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}
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/**
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* @covers IP::isIPv6
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*/
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public function testisIPv6() {
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$this->assertFalse( IP::isIPv6( ':fc:100::' ), 'IPv6 starting with lone ":"' );
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$this->assertFalse( IP::isIPv6( 'fc:100:::' ), 'IPv6 ending with a ":::"' );
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$this->assertFalse( IP::isIPv6( 'fc:300' ), 'IPv6 with only 2 words' );
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$this->assertFalse( IP::isIPv6( 'fc:100:300' ), 'IPv6 with only 3 words' );
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$this->assertTrue( IP::isIPv6( 'fc:100::' ) );
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$this->assertTrue( IP::isIPv6( 'fc:100:a::' ) );
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$this->assertTrue( IP::isIPv6( 'fc:100:a:d::' ) );
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$this->assertTrue( IP::isIPv6( 'fc:100:a:d:1::' ) );
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$this->assertTrue( IP::isIPv6( 'fc:100:a:d:1:e::' ) );
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$this->assertTrue( IP::isIPv6( 'fc:100:a:d:1:e:ac::' ) );
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$this->assertFalse( IP::isIPv6( 'fc:100:a:d:1:e:ac:0::' ), 'IPv6 with 8 words ending with "::"' );
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$this->assertFalse( IP::isIPv6( 'fc:100:a:d:1:e:ac:0:1::' ), 'IPv6 with 9 words ending with "::"' );
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$this->assertFalse( IP::isIPv6( ':::' ) );
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$this->assertFalse( IP::isIPv6( '::0:' ), 'IPv6 ending in a lone ":"' );
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$this->assertTrue( IP::isIPv6( '::' ), 'IPv6 zero address' );
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$this->assertTrue( IP::isIPv6( '::0' ) );
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$this->assertTrue( IP::isIPv6( '::fc' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100:a' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100:a:d' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100:a:d:1' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100:a:d:1:e' ) );
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$this->assertTrue( IP::isIPv6( '::fc:100:a:d:1:e:ac' ) );
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$this->assertFalse( IP::isIPv6( '::fc:100:a:d:1:e:ac:0' ), 'IPv6 with "::" and 8 words' );
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$this->assertFalse( IP::isIPv6( '::fc:100:a:d:1:e:ac:0:1' ), 'IPv6 with 9 words' );
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$this->assertFalse( IP::isIPv6( ':fc::100' ), 'IPv6 starting with lone ":"' );
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$this->assertFalse( IP::isIPv6( 'fc::100:' ), 'IPv6 ending with lone ":"' );
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$this->assertFalse( IP::isIPv6( 'fc:::100' ), 'IPv6 with ":::" in the middle' );
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$this->assertTrue( IP::isIPv6( 'fc::100' ), 'IPv6 with "::" and 2 words' );
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$this->assertTrue( IP::isIPv6( 'fc::100:a' ), 'IPv6 with "::" and 3 words' );
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$this->assertTrue( IP::isIPv6( 'fc::100:a:d', 'IPv6 with "::" and 4 words' ) );
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$this->assertTrue( IP::isIPv6( 'fc::100:a:d:1' ), 'IPv6 with "::" and 5 words' );
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$this->assertTrue( IP::isIPv6( 'fc::100:a:d:1:e' ), 'IPv6 with "::" and 6 words' );
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$this->assertTrue( IP::isIPv6( 'fc::100:a:d:1:e:ac' ), 'IPv6 with "::" and 7 words' );
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$this->assertTrue( IP::isIPv6( '2001::df'), 'IPv6 with "::" and 2 words' );
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$this->assertTrue( IP::isIPv6( '2001:5c0:1400:a::df'), 'IPv6 with "::" and 5 words' );
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$this->assertTrue( IP::isIPv6( '2001:5c0:1400:a::df:2'), 'IPv6 with "::" and 6 words' );
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$this->assertFalse( IP::isIPv6( 'fc::100:a:d:1:e:ac:0' ), 'IPv6 with "::" and 8 words' );
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$this->assertFalse( IP::isIPv6( 'fc::100:a:d:1:e:ac:0:1' ), 'IPv6 with 9 words' );
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$this->assertTrue( IP::isIPv6( 'fc:100:a:d:1:e:ac:0' ) );
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}
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/**
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* @covers IP::isIPv4
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*/
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public function testisIPv4() {
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$this->assertFalse( IP::isIPv4( false ), 'Boolean false is not an IP' );
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$this->assertFalse( IP::isIPv4( true ), 'Boolean true is not an IP' );
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$this->assertFalse( IP::isIPv4( "" ), 'Empty string is not an IP' );
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$this->assertFalse( IP::isIPv4( 'abc' ) );
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$this->assertFalse( IP::isIPv4( ':' ) );
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$this->assertFalse( IP::isIPv4( '124.24.52' ), 'IPv4 not enough quads' );
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$this->assertFalse( IP::isIPv4( '24.324.52.13' ), 'IPv4 out of range' );
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$this->assertFalse( IP::isIPv4( '.24.52.13' ), 'IPv4 starts with period' );
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$this->assertTrue( IP::isIPv4( '124.24.52.13' ) );
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$this->assertTrue( IP::isIPv4( '1.24.52.13' ) );
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$this->assertTrue( IP::isIPv4( '74.24.52.13/20', 'IPv4 range' ) );
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}
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/**
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* @covers IP::isValid
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*/
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public function testValidIPs() {
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foreach ( range( 0, 255 ) as $i ) {
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$a = sprintf( "%03d", $i );
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$b = sprintf( "%02d", $i );
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$c = sprintf( "%01d", $i );
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foreach ( array_unique( array( $a, $b, $c ) ) as $f ) {
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$ip = "$f.$f.$f.$f";
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$this->assertTrue( IP::isValid( $ip ) , "$ip is a valid IPv4 address" );
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}
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}
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foreach ( range( 0x0, 0xFFFF, 0xF ) as $i ) {
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$a = sprintf( "%04x", $i );
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$b = sprintf( "%03x", $i );
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$c = sprintf( "%02x", $i );
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foreach ( array_unique( array( $a, $b, $c ) ) as $f ) {
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$ip = "$f:$f:$f:$f:$f:$f:$f:$f";
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$this->assertTrue( IP::isValid( $ip ) , "$ip is a valid IPv6 address" );
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}
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}
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// test with some abbreviations
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$this->assertFalse( IP::isValid( ':fc:100::' ), 'IPv6 starting with lone ":"' );
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$this->assertFalse( IP::isValid( 'fc:100:::' ), 'IPv6 ending with a ":::"' );
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$this->assertFalse( IP::isValid( 'fc:300' ), 'IPv6 with only 2 words' );
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$this->assertFalse( IP::isValid( 'fc:100:300' ), 'IPv6 with only 3 words' );
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$this->assertTrue( IP::isValid( 'fc:100::' ) );
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$this->assertTrue( IP::isValid( 'fc:100:a:d:1:e::' ) );
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$this->assertTrue( IP::isValid( 'fc:100:a:d:1:e:ac::' ) );
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$this->assertTrue( IP::isValid( 'fc::100' ), 'IPv6 with "::" and 2 words' );
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$this->assertTrue( IP::isValid( 'fc::100:a' ), 'IPv6 with "::" and 3 words' );
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$this->assertTrue( IP::isValid( '2001::df'), 'IPv6 with "::" and 2 words' );
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$this->assertTrue( IP::isValid( '2001:5c0:1400:a::df'), 'IPv6 with "::" and 5 words' );
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$this->assertTrue( IP::isValid( '2001:5c0:1400:a::df:2'), 'IPv6 with "::" and 6 words' );
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$this->assertTrue( IP::isValid( 'fc::100:a:d:1' ), 'IPv6 with "::" and 5 words' );
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$this->assertTrue( IP::isValid( 'fc::100:a:d:1:e:ac' ), 'IPv6 with "::" and 7 words' );
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$this->assertFalse( IP::isValid( 'fc:100:a:d:1:e:ac:0::' ), 'IPv6 with 8 words ending with "::"' );
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$this->assertFalse( IP::isValid( 'fc:100:a:d:1:e:ac:0:1::' ), 'IPv6 with 9 words ending with "::"' );
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}
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/**
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* @covers IP::isValid
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*/
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public function testInvalidIPs() {
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// Out of range...
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foreach ( range( 256, 999 ) as $i ) {
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$a = sprintf( "%03d", $i );
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$b = sprintf( "%02d", $i );
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$c = sprintf( "%01d", $i );
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foreach ( array_unique( array( $a, $b, $c ) ) as $f ) {
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$ip = "$f.$f.$f.$f";
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$this->assertFalse( IP::isValid( $ip ), "$ip is not a valid IPv4 address" );
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}
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}
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foreach ( range( 'g', 'z' ) as $i ) {
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$a = sprintf( "%04s", $i );
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$b = sprintf( "%03s", $i );
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$c = sprintf( "%02s", $i );
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foreach ( array_unique( array( $a, $b, $c ) ) as $f ) {
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$ip = "$f:$f:$f:$f:$f:$f:$f:$f";
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$this->assertFalse( IP::isValid( $ip ) , "$ip is not a valid IPv6 address" );
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}
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}
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// Have CIDR
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$ipCIDRs = array(
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'212.35.31.121/32',
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'212.35.31.121/18',
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'212.35.31.121/24',
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'::ff:d:321:5/96',
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'ff::d3:321:5/116',
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'c:ff:12:1:ea:d:321:5/120',
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);
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foreach ( $ipCIDRs as $i ) {
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$this->assertFalse( IP::isValid( $i ),
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"$i is an invalid IP address because it is a block" );
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}
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// Incomplete/garbage
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$invalid = array(
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'www.xn--var-xla.net',
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'216.17.184.G',
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'216.17.184.1.',
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'216.17.184',
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'216.17.184.',
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'256.17.184.1'
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);
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foreach ( $invalid as $i ) {
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$this->assertFalse( IP::isValid( $i ), "$i is an invalid IP address" );
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}
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}
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/**
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* @covers IP::isValidBlock
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*/
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public function testValidBlocks() {
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$valid = array(
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'116.17.184.5/32',
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'0.17.184.5/30',
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'16.17.184.1/24',
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'30.242.52.14/1',
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'10.232.52.13/8',
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'30.242.52.14/0',
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'::e:f:2001/96',
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'::c:f:2001/128',
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'::10:f:2001/70',
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'::fe:f:2001/1',
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'::6d:f:2001/8',
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'::fe:f:2001/0',
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);
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foreach ( $valid as $i ) {
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$this->assertTrue( IP::isValidBlock( $i ), "$i is a valid IP block" );
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}
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}
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/**
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* @covers IP::isValidBlock
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*/
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public function testInvalidBlocks() {
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$invalid = array(
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'116.17.184.5/33',
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'0.17.184.5/130',
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'16.17.184.1/-1',
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'10.232.52.13/*',
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'7.232.52.13/ab',
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'11.232.52.13/',
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'::e:f:2001/129',
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'::c:f:2001/228',
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'::10:f:2001/-1',
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'::6d:f:2001/*',
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'::86:f:2001/ab',
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'::23:f:2001/',
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);
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foreach ( $invalid as $i ) {
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$this->assertFalse( IP::isValidBlock( $i ), "$i is not a valid IP block" );
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}
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}
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/**
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* Improve IP::sanitizeIP() code coverage
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* @todo Most probably incomplete
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*/
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public function testSanitizeIP() {
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$this->assertNull( IP::sanitizeIP('') );
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$this->assertNull( IP::sanitizeIP(' ') );
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}
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/**
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* test wrapper around ip2long which might return -1 or false depending on PHP version
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* @covers IP::toUnsigned
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*/
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public function testip2longWrapper() {
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// @todo FIXME: Add more tests ?
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$this->assertEquals( pow(2,32) - 1, IP::toUnsigned( '255.255.255.255' ));
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$i = 'IN.VA.LI.D';
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$this->assertFalse( IP::toUnSigned( $i ) );
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}
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/**
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* @covers IP::isPublic
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*/
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public function testPrivateIPs() {
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$private = array( 'fc00::3', 'fc00::ff', '::1', '10.0.0.1', '172.16.0.1', '192.168.0.1' );
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foreach ( $private as $p ) {
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$this->assertFalse( IP::isPublic( $p ), "$p is not a public IP address" );
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}
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$public = array( '2001:5c0:1000:a::133', 'fc::3', '00FC::' );
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foreach ( $public as $p ) {
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$this->assertTrue( IP::isPublic( $p ), "$p is a public IP address" );
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}
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}
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// Private wrapper used to test CIDR Parsing.
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private function assertFalseCIDR( $CIDR, $msg='' ) {
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$ff = array( false, false );
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$this->assertEquals( $ff, IP::parseCIDR( $CIDR ), $msg );
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}
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// Private wrapper to test network shifting using only dot notation
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private function assertNet( $expected, $CIDR ) {
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$parse = IP::parseCIDR( $CIDR );
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$this->assertEquals( $expected, long2ip( $parse[0] ), "network shifting $CIDR" );
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}
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/**
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* @covers IP::hexToQuad
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*/
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public function testHexToQuad() {
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$this->assertEquals( '0.0.0.1' , IP::hexToQuad( '00000001' ) );
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$this->assertEquals( '255.0.0.0' , IP::hexToQuad( 'FF000000' ) );
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$this->assertEquals( '255.255.255.255', IP::hexToQuad( 'FFFFFFFF' ) );
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$this->assertEquals( '10.188.222.255' , IP::hexToQuad( '0ABCDEFF' ) );
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// hex not left-padded...
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$this->assertEquals( '0.0.0.0' , IP::hexToQuad( '0' ) );
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$this->assertEquals( '0.0.0.1' , IP::hexToQuad( '1' ) );
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$this->assertEquals( '0.0.0.255' , IP::hexToQuad( 'FF' ) );
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$this->assertEquals( '0.0.255.0' , IP::hexToQuad( 'FF00' ) );
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}
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/**
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* @covers IP::hexToOctet
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*/
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public function testHexToOctet() {
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$this->assertEquals( '0:0:0:0:0:0:0:1',
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IP::hexToOctet( '00000000000000000000000000000001' ) );
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$this->assertEquals( '0:0:0:0:0:0:FF:3',
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IP::hexToOctet( '00000000000000000000000000FF0003' ) );
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$this->assertEquals( '0:0:0:0:0:0:FF00:6',
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IP::hexToOctet( '000000000000000000000000FF000006' ) );
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$this->assertEquals( '0:0:0:0:0:0:FCCF:FAFF',
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IP::hexToOctet( '000000000000000000000000FCCFFAFF' ) );
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$this->assertEquals( 'FFFF:FFFF:FFFF:FFFF:FFFF:FFFF:FFFF:FFFF',
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IP::hexToOctet( 'FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF' ) );
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// hex not left-padded...
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$this->assertEquals( '0:0:0:0:0:0:0:0' , IP::hexToOctet( '0' ) );
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$this->assertEquals( '0:0:0:0:0:0:0:1' , IP::hexToOctet( '1' ) );
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$this->assertEquals( '0:0:0:0:0:0:0:FF' , IP::hexToOctet( 'FF' ) );
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$this->assertEquals( '0:0:0:0:0:0:0:FFD0' , IP::hexToOctet( 'FFD0' ) );
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$this->assertEquals( '0:0:0:0:0:0:FA00:0' , IP::hexToOctet( 'FA000000' ) );
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$this->assertEquals( '0:0:0:0:0:0:FCCF:FAFF', IP::hexToOctet( 'FCCFFAFF' ) );
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}
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/*
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* IP::parseCIDR() returns an array containing a signed IP address
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* representing the network mask and the bit mask.
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* @covers IP::parseCIDR
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*/
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function testCIDRParsing() {
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$this->assertFalseCIDR( '192.0.2.0' , "missing mask" );
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$this->assertFalseCIDR( '192.0.2.0/', "missing bitmask" );
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// Verify if statement
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$this->assertFalseCIDR( '256.0.0.0/32', "invalid net" );
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$this->assertFalseCIDR( '192.0.2.0/AA', "mask not numeric" );
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$this->assertFalseCIDR( '192.0.2.0/-1', "mask < 0" );
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$this->assertFalseCIDR( '192.0.2.0/33', "mask > 32" );
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// Check internal logic
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# 0 mask always result in array(0,0)
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$this->assertEquals( array( 0, 0 ), IP::parseCIDR('192.0.0.2/0') );
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$this->assertEquals( array( 0, 0 ), IP::parseCIDR('0.0.0.0/0') );
|
|
$this->assertEquals( array( 0, 0 ), IP::parseCIDR('255.255.255.255/0') );
|
|
|
|
// @todo FIXME: Add more tests.
|
|
|
|
# This part test network shifting
|
|
$this->assertNet( '192.0.0.0' , '192.0.0.2/24' );
|
|
$this->assertNet( '192.168.5.0', '192.168.5.13/24');
|
|
$this->assertNet( '10.0.0.160' , '10.0.0.161/28' );
|
|
$this->assertNet( '10.0.0.0' , '10.0.0.3/28' );
|
|
$this->assertNet( '10.0.0.0' , '10.0.0.3/30' );
|
|
$this->assertNet( '10.0.0.4' , '10.0.0.4/30' );
|
|
$this->assertNet( '172.17.32.0', '172.17.35.48/21' );
|
|
$this->assertNet( '10.128.0.0' , '10.135.0.0/9' );
|
|
$this->assertNet( '134.0.0.0' , '134.0.5.1/8' );
|
|
}
|
|
|
|
|
|
/**
|
|
* @covers IP::canonicalize
|
|
*/
|
|
public function testIPCanonicalizeOnValidIp() {
|
|
$this->assertEquals( '192.0.2.152', IP::canonicalize( '192.0.2.152' ),
|
|
'Canonicalization of a valid IP returns it unchanged' );
|
|
}
|
|
|
|
/**
|
|
* @covers IP::canonicalize
|
|
*/
|
|
public function testIPCanonicalizeMappedAddress() {
|
|
$this->assertEquals(
|
|
'192.0.2.152',
|
|
IP::canonicalize( '::ffff:192.0.2.152' )
|
|
);
|
|
$this->assertEquals(
|
|
'192.0.2.152',
|
|
IP::canonicalize( '::192.0.2.152' )
|
|
);
|
|
}
|
|
|
|
/**
|
|
* Issues there are most probably from IP::toHex() or IP::parseRange()
|
|
* @covers IP::isInRange
|
|
* @dataProvider provideIPsAndRanges
|
|
*/
|
|
public function testIPIsInRange( $expected, $addr, $range, $message = '' ) {
|
|
$this->assertEquals(
|
|
$expected,
|
|
IP::isInRange( $addr, $range ),
|
|
$message
|
|
);
|
|
}
|
|
|
|
/** Provider for testIPIsInRange() */
|
|
function provideIPsAndRanges() {
|
|
# Format: (expected boolean, address, range, optional message)
|
|
return array(
|
|
# IPv4
|
|
array( true , '192.0.2.0' , '192.0.2.0/24', 'Network address' ),
|
|
array( true , '192.0.2.77' , '192.0.2.0/24', 'Simple address' ),
|
|
array( true , '192.0.2.255' , '192.0.2.0/24', 'Broadcast address' ),
|
|
|
|
array( false, '0.0.0.0' , '192.0.2.0/24' ),
|
|
array( false, '255.255.255' , '192.0.2.0/24' ),
|
|
|
|
# IPv6
|
|
array( false, '::1' , '2001:DB8::/32' ),
|
|
array( false, '::' , '2001:DB8::/32' ),
|
|
array( false, 'FE80::1', '2001:DB8::/32' ),
|
|
|
|
array( true , '2001:DB8::' , '2001:DB8::/32' ),
|
|
array( true , '2001:0DB8::' , '2001:DB8::/32' ),
|
|
array( true , '2001:DB8::1' , '2001:DB8::/32' ),
|
|
array( true , '2001:0DB8::1', '2001:DB8::/32' ),
|
|
array( true , '2001:0DB8:FFFF:FFFF:FFFF:FFFF:FFFF:FFFF',
|
|
'2001:DB8::/32' ),
|
|
|
|
array( false, '2001:0DB8:F::', '2001:DB8::/96' ),
|
|
);
|
|
}
|
|
|
|
/**
|
|
* Test for IP::splitHostAndPort().
|
|
* @dataProvider provideSplitHostAndPort
|
|
*/
|
|
function testSplitHostAndPort( $expected, $input, $description ) {
|
|
$this->assertEquals( $expected, IP::splitHostAndPort( $input ), $description );
|
|
}
|
|
|
|
/**
|
|
* Provider for IP::splitHostAndPort()
|
|
*/
|
|
function provideSplitHostAndPort() {
|
|
return array(
|
|
array( false, '[', 'Unclosed square bracket' ),
|
|
array( false, '[::', 'Unclosed square bracket 2' ),
|
|
array( array( '::', false ), '::', 'Bare IPv6 0' ),
|
|
array( array( '::1', false ), '::1', 'Bare IPv6 1' ),
|
|
array( array( '::', false ), '[::]', 'Bracketed IPv6 0' ),
|
|
array( array( '::1', false ), '[::1]', 'Bracketed IPv6 1' ),
|
|
array( array( '::1', 80 ), '[::1]:80', 'Bracketed IPv6 with port' ),
|
|
array( false, '::x', 'Double colon but no IPv6' ),
|
|
array( array( 'x', 80 ), 'x:80', 'Hostname and port' ),
|
|
array( false, 'x:x', 'Hostname and invalid port' ),
|
|
array( array( 'x', false ), 'x', 'Plain hostname' )
|
|
);
|
|
}
|
|
|
|
/**
|
|
* Test for IP::combineHostAndPort()
|
|
* @dataProvider provideCombineHostAndPort
|
|
*/
|
|
function testCombineHostAndPort( $expected, $input, $description ) {
|
|
list( $host, $port, $defaultPort ) = $input;
|
|
$this->assertEquals(
|
|
$expected,
|
|
IP::combineHostAndPort( $host, $port, $defaultPort ),
|
|
$description );
|
|
}
|
|
|
|
/**
|
|
* Provider for IP::combineHostAndPort()
|
|
*/
|
|
function provideCombineHostAndPort() {
|
|
return array(
|
|
array( '[::1]', array( '::1', 2, 2 ), 'IPv6 default port' ),
|
|
array( '[::1]:2', array( '::1', 2, 3 ), 'IPv6 non-default port' ),
|
|
array( 'x', array( 'x', 2, 2 ), 'Normal default port' ),
|
|
array( 'x:2', array( 'x', 2, 3 ), 'Normal non-default port' ),
|
|
);
|
|
}
|
|
|
|
/**
|
|
* Test for IP::sanitizeRange()
|
|
* @dataProvider provideIPCIDRs
|
|
*/
|
|
function testSanitizeRange( $input, $expected, $description ) {
|
|
$this->assertEquals( $expected, IP::sanitizeRange( $input ), $description );
|
|
}
|
|
|
|
/**
|
|
* Provider for IP::testSanitizeRange()
|
|
*/
|
|
function provideIPCIDRs() {
|
|
return array(
|
|
array( '35.56.31.252/16', '35.56.0.0/16', 'IPv4 range' ),
|
|
array( '135.16.21.252/24', '135.16.21.0/24', 'IPv4 range' ),
|
|
array( '5.36.71.252/32', '5.36.71.252/32', 'IPv4 silly range' ),
|
|
array( '5.36.71.252', '5.36.71.252', 'IPv4 non-range' ),
|
|
array( '0:1:2:3:4:c5:f6:7/96', '0:1:2:3:4:C5:0:0/96', 'IPv6 range' ),
|
|
array( '0:1:2:3:4:5:6:7/120', '0:1:2:3:4:5:6:0/120', 'IPv6 range' ),
|
|
array( '0:e1:2:3:4:5:e6:7/128', '0:E1:2:3:4:5:E6:7/128', 'IPv6 silly range' ),
|
|
array( '0:c1:A2:3:4:5:c6:7', '0:C1:A2:3:4:5:C6:7', 'IPv6 non range' ),
|
|
);
|
|
}
|
|
}
|