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212 lines
5.1 KiB
212 lines
5.1 KiB
/*++
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Copyright (c) 2001 Microsoft Corporation
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Module Name:
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add2strt.h
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Abstract:
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Code for IP address-to-string translation routines.
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Author:
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Dave Thaler (dthaler) 3-28-2001
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Revision History:
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IPv6 conversion code originally by Rich Draves (richdr)
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--*/
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struct in6_addr {
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union {
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UCHAR Byte[16];
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USHORT Word[8];
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} u;
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};
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#define s6_bytes u.Byte
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#define s6_words u.Word
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struct in_addr {
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union {
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struct { UCHAR s_b1,s_b2,s_b3,s_b4; } S_un_b;
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struct { USHORT s_w1,s_w2; } S_un_w;
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ULONG S_addr;
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} S_un;
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};
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#define s_addr S_un.S_addr
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LPTSTR
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RtlIpv6AddressToStringT(
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IN const struct in6_addr *Addr,
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OUT LPTSTR S
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)
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/*++
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Routine Description:
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Generates an IPv6 string literal corresponding to the address Addr.
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The shortened canonical forms are used (RFC 1884 etc).
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The basic string representation consists of 8 hex numbers
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separated by colons, with a couple embellishments:
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- a string of zero numbers (at most one) is replaced
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with a double-colon.
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- the last 32 bits are represented in IPv4-style dotted-octet notation
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if the address is a v4-compatible or ISATAP address.
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For example,
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::
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::1
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::157.56.138.30
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::ffff:156.56.136.75
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ff01::
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ff02::2
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0:1:2:3:4:5:6:7
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Arguments:
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S - Receives a pointer to the buffer in which to place the
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string literal.
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Addr - Receives the IPv6 address.
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Return Value:
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Pointer to the null byte at the end of the string inserted.
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This can be used by the caller to easily append more information.
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--*/
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{
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int maxFirst, maxLast;
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int curFirst, curLast;
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int i;
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int endHex = 8;
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// Check for IPv6-compatible, IPv4-mapped, and IPv4-translated
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// addresses
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if ((Addr->s6_words[0] == 0) && (Addr->s6_words[1] == 0) &&
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(Addr->s6_words[2] == 0) && (Addr->s6_words[3] == 0) &&
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(Addr->s6_words[6] != 0)) {
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if ((Addr->s6_words[4] == 0) &&
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((Addr->s6_words[5] == 0) || (Addr->s6_words[5] == 0xffff)))
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{
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// compatible or mapped
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S += _stprintf(S, _T("::%hs%u.%u.%u.%u"),
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Addr->s6_words[5] == 0 ? "" : "ffff:",
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Addr->s6_bytes[12], Addr->s6_bytes[13],
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Addr->s6_bytes[14], Addr->s6_bytes[15]);
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return S;
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}
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else if ((Addr->s6_words[4] == 0xffff) && (Addr->s6_words[5] == 0)) {
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// translated
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S += _stprintf(S, _T("::ffff:0:%u.%u.%u.%u"),
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Addr->s6_bytes[12], Addr->s6_bytes[13],
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Addr->s6_bytes[14], Addr->s6_bytes[15]);
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return S;
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}
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}
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// Find largest contiguous substring of zeroes
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// A substring is [First, Last), so it's empty if First == Last.
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maxFirst = maxLast = 0;
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curFirst = curLast = 0;
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// ISATAP EUI64 starts with 00005EFE (or 02005EFE)...
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if (((Addr->s6_words[4] & 0xfffd) == 0) && (Addr->s6_words[5] == 0xfe5e)) {
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endHex = 6;
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}
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for (i = 0; i < endHex; i++) {
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if (Addr->s6_words[i] == 0) {
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// Extend current substring
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curLast = i+1;
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// Check if current is now largest
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if (curLast - curFirst > maxLast - maxFirst) {
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maxFirst = curFirst;
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maxLast = curLast;
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}
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}
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else {
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// Start a new substring
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curFirst = curLast = i+1;
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}
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}
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// Ignore a substring of length 1.
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if (maxLast - maxFirst <= 1)
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maxFirst = maxLast = 0;
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// Write colon-separated words.
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// A double-colon takes the place of the longest string of zeroes.
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// All zeroes is just "::".
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for (i = 0; i < endHex; i++) {
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// Skip over string of zeroes
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if ((maxFirst <= i) && (i < maxLast)) {
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S += _stprintf(S, _T("::"));
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i = maxLast-1;
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continue;
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}
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// Need colon separator if not at beginning
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if ((i != 0) && (i != maxLast))
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S += _stprintf(S, _T(":"));
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S += _stprintf(S, _T("%x"), RtlUshortByteSwap(Addr->s6_words[i]));
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}
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if (endHex < 8) {
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S += _stprintf(S, _T(":%u.%u.%u.%u"),
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Addr->s6_bytes[12], Addr->s6_bytes[13],
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Addr->s6_bytes[14], Addr->s6_bytes[15]);
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}
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return S;
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}
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LPTSTR
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RtlIpv4AddressToStringT(
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IN const struct in_addr *Addr,
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OUT LPTSTR S
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)
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/*++
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Routine Description:
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Generates an IPv4 string literal corresponding to the address Addr.
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Arguments:
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S - Receives a pointer to the buffer in which to place the
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string literal.
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Addr - Receives the IPv4 address.
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Return Value:
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Pointer to the null byte at the end of the string inserted.
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This can be used by the caller to easily append more information.
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--*/
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{
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S += _stprintf(S, _T("%u.%u.%u.%u"),
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( Addr->s_addr >> 0 ) & 0xFF,
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( Addr->s_addr >> 8 ) & 0xFF,
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( Addr->s_addr >> 16 ) & 0xFF,
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( Addr->s_addr >> 24 ) & 0xFF );
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return S;
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}
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