mirror of
https://github.com/EmilHernvall/dnsguide.git
synced 2024-12-23 01:24:17 +07:00
551 lines
15 KiB
Rust
551 lines
15 KiB
Rust
use std::io::{Result, Read};
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use std::io::{Error, ErrorKind};
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use std::net::Ipv4Addr;
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use std::net::UdpSocket;
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pub struct BytePacketBuffer {
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pub buf: [u8; 512],
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pub pos: usize
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}
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impl BytePacketBuffer {
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pub fn new() -> BytePacketBuffer {
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BytePacketBuffer {
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buf: [0; 512],
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pos: 0
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}
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}
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fn pos(&self) -> usize {
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self.pos
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}
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fn step(&mut self, steps: usize) -> Result<()> {
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self.pos += steps;
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Ok(())
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}
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fn seek(&mut self, pos: usize) -> Result<()> {
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self.pos = pos;
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Ok(())
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}
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fn read(&mut self) -> Result<u8> {
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if self.pos >= 512 {
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return Err(Error::new(ErrorKind::InvalidInput, "End of buffer"));
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}
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let res = self.buf[self.pos];
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self.pos += 1;
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Ok(res)
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}
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fn get(&mut self, pos: usize) -> Result<u8> {
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if pos >= 512 {
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return Err(Error::new(ErrorKind::InvalidInput, "End of buffer"));
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}
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Ok(self.buf[pos])
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}
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fn get_range(&mut self, start: usize, len: usize) -> Result<&[u8]> {
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if start + len >= 512 {
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return Err(Error::new(ErrorKind::InvalidInput, "End of buffer"));
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}
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Ok(&self.buf[start..start+len as usize])
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}
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fn read_u16(&mut self) -> Result<u16>
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{
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let res = ((try!(self.read()) as u16) << 8) |
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(try!(self.read()) as u16);
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Ok(res)
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}
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fn read_u32(&mut self) -> Result<u32>
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{
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let res = ((try!(self.read()) as u32) << 24) |
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((try!(self.read()) as u32) << 16) |
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((try!(self.read()) as u32) << 8) |
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((try!(self.read()) as u32) << 0);
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Ok(res)
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}
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fn read_qname(&mut self, outstr: &mut String) -> Result<()>
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{
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let mut pos = self.pos();
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let mut jumped = false;
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let mut delim = "";
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loop {
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let len = try!(self.get(pos));
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// A two byte sequence, where the two highest bits of the first byte is
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// set, represents a offset relative to the start of the buffer. We
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// handle this by jumping to the offset, setting a flag to indicate
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// that we shouldn't update the shared buffer position once done.
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if (len & 0xC0) > 0 {
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// When a jump is performed, we only modify the shared buffer
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// position once, and avoid making the change later on.
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if !jumped {
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try!(self.seek(pos+2));
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}
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let b2 = try!(self.get(pos+1)) as u16;
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let offset = (((len as u16) ^ 0xC0) << 8) | b2;
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pos = offset as usize;
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jumped = true;
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continue;
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}
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pos += 1;
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// Names are terminated by an empty label of length 0
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if len == 0 {
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break;
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}
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outstr.push_str(delim);
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let str_buffer = try!(self.get_range(pos, len as usize));
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outstr.push_str(&String::from_utf8_lossy(str_buffer).to_lowercase());
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delim = ".";
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pos += len as usize;
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}
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if !jumped {
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try!(self.seek(pos));
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}
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Ok(())
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}
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fn write(&mut self, val: u8) -> Result<()> {
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if self.pos >= 512 {
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return Err(Error::new(ErrorKind::InvalidInput, "End of buffer"));
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}
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self.buf[self.pos] = val;
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self.pos += 1;
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Ok(())
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}
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fn write_u8(&mut self, val: u8) -> Result<()> {
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try!(self.write(val));
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Ok(())
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}
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fn write_u16(&mut self, val: u16) -> Result<()> {
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try!(self.write((val >> 8) as u8));
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try!(self.write((val & 0xFF) as u8));
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Ok(())
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}
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fn write_u32(&mut self, val: u32) -> Result<()> {
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try!(self.write(((val >> 24) & 0xFF) as u8));
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try!(self.write(((val >> 16) & 0xFF) as u8));
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try!(self.write(((val >> 8) & 0xFF) as u8));
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try!(self.write(((val >> 0) & 0xFF) as u8));
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Ok(())
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}
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fn write_qname(&mut self, qname: &str) -> Result<()> {
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let split_str = qname.split('.').collect::<Vec<&str>>();
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for label in split_str {
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let len = label.len();
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if len > 0x34 {
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return Err(Error::new(ErrorKind::InvalidInput, "Single label exceeds 63 characters of length"));
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}
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try!(self.write_u8(len as u8));
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for b in label.as_bytes() {
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try!(self.write_u8(*b));
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}
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}
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try!(self.write_u8(0));
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Ok(())
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}
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}
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#[derive(Copy,Clone,Debug,PartialEq,Eq)]
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pub enum ResultCode {
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NOERROR = 0,
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FORMERR = 1,
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SERVFAIL = 2,
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NXDOMAIN = 3,
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NOTIMP = 4,
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REFUSED = 5
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}
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impl ResultCode {
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pub fn from_num(num: u8) -> ResultCode {
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match num {
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1 => ResultCode::FORMERR,
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2 => ResultCode::SERVFAIL,
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3 => ResultCode::NXDOMAIN,
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4 => ResultCode::NOTIMP,
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5 => ResultCode::REFUSED,
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0 | _ => ResultCode::NOERROR
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}
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}
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}
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#[derive(Clone,Debug)]
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pub struct DnsHeader {
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pub id: u16, // 16 bits
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pub recursion_desired: bool, // 1 bit
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pub truncated_message: bool, // 1 bit
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pub authoritative_answer: bool, // 1 bit
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pub opcode: u8, // 4 bits
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pub response: bool, // 1 bit
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pub rescode: ResultCode, // 4 bits
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pub checking_disabled: bool, // 1 bit
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pub authed_data: bool, // 1 bit
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pub z: bool, // 1 bit
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pub recursion_available: bool, // 1 bit
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pub questions: u16, // 16 bits
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pub answers: u16, // 16 bits
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pub authoritative_entries: u16, // 16 bits
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pub resource_entries: u16 // 16 bits
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}
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impl DnsHeader {
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pub fn new() -> DnsHeader {
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DnsHeader { id: 0,
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recursion_desired: false,
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truncated_message: false,
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authoritative_answer: false,
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opcode: 0,
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response: false,
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rescode: ResultCode::NOERROR,
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checking_disabled: false,
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authed_data: false,
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z: false,
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recursion_available: false,
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questions: 0,
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answers: 0,
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authoritative_entries: 0,
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resource_entries: 0 }
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}
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pub fn read(&mut self, buffer: &mut BytePacketBuffer) -> Result<()> {
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self.id = try!(buffer.read_u16());
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let flags = try!(buffer.read_u16());
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let a = (flags >> 8) as u8;
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let b = (flags & 0xFF) as u8;
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self.recursion_desired = (a & (1 << 0)) > 0;
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self.truncated_message = (a & (1 << 1)) > 0;
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self.authoritative_answer = (a & (1 << 2)) > 0;
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self.opcode = (a >> 3) & 0x0F;
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self.response = (a & (1 << 7)) > 0;
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self.rescode = ResultCode::from_num(b & 0x0F);
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self.checking_disabled = (b & (1 << 4)) > 0;
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self.authed_data = (b & (1 << 5)) > 0;
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self.z = (b & (1 << 6)) > 0;
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self.recursion_available = (b & (1 << 7)) > 0;
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self.questions = try!(buffer.read_u16());
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self.answers = try!(buffer.read_u16());
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self.authoritative_entries = try!(buffer.read_u16());
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self.resource_entries = try!(buffer.read_u16());
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// Return the constant header size
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Ok(())
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}
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pub fn write(&self, buffer: &mut BytePacketBuffer) -> Result<()> {
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try!(buffer.write_u16(self.id));
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try!(buffer.write_u8( ((self.recursion_desired as u8)) |
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((self.truncated_message as u8) << 1) |
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((self.authoritative_answer as u8) << 2) |
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(self.opcode << 3) |
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((self.response as u8) << 7) as u8) );
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try!(buffer.write_u8( (self.rescode.clone() as u8) |
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((self.checking_disabled as u8) << 4) |
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((self.authed_data as u8) << 5) |
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((self.z as u8) << 6) |
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((self.recursion_available as u8) << 7) ));
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try!(buffer.write_u16(self.questions));
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try!(buffer.write_u16(self.answers));
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try!(buffer.write_u16(self.authoritative_entries));
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try!(buffer.write_u16(self.resource_entries));
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Ok(())
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}
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}
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#[derive(PartialEq,Eq,Debug,Clone,Hash,Copy)]
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pub enum QueryType {
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UNKNOWN(u16),
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A, // 1
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}
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impl QueryType {
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pub fn to_num(&self) -> u16 {
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match *self {
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QueryType::UNKNOWN(x) => x,
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QueryType::A => 1,
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}
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}
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pub fn from_num(num: u16) -> QueryType {
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match num {
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1 => QueryType::A,
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_ => QueryType::UNKNOWN(num)
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}
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}
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}
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#[derive(Debug,Clone,PartialEq,Eq)]
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pub struct DnsQuestion {
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pub name: String,
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pub qtype: QueryType
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}
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impl DnsQuestion {
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pub fn new(name: String, qtype: QueryType) -> DnsQuestion {
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DnsQuestion {
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name: name,
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qtype: qtype
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}
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}
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pub fn read(&mut self, buffer: &mut BytePacketBuffer) -> Result<()> {
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try!(buffer.read_qname(&mut self.name));
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self.qtype = QueryType::from_num(try!(buffer.read_u16())); // qtype
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let _ = try!(buffer.read_u16()); // class
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Ok(())
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}
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pub fn write(&self, buffer: &mut BytePacketBuffer) -> Result<()> {
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try!(buffer.write_qname(&self.name));
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let typenum = self.qtype.to_num();
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try!(buffer.write_u16(typenum));
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try!(buffer.write_u16(1));
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Ok(())
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}
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}
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#[derive(Debug,Clone,PartialEq,Eq,Hash,PartialOrd,Ord)]
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#[allow(dead_code)]
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pub enum DnsRecord {
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UNKNOWN {
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domain: String,
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qtype: u16,
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data_len: u16,
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ttl: u32
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}, // 0
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A {
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domain: String,
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addr: Ipv4Addr,
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ttl: u32
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}, // 1
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}
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impl DnsRecord {
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pub fn read(buffer: &mut BytePacketBuffer) -> Result<DnsRecord> {
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let mut domain = String::new();
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try!(buffer.read_qname(&mut domain));
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let qtype_num = try!(buffer.read_u16());
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let qtype = QueryType::from_num(qtype_num);
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let _ = try!(buffer.read_u16());
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let ttl = try!(buffer.read_u32());
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let data_len = try!(buffer.read_u16());
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match qtype {
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QueryType::A => {
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let raw_addr = try!(buffer.read_u32());
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let addr = Ipv4Addr::new(((raw_addr >> 24) & 0xFF) as u8,
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((raw_addr >> 16) & 0xFF) as u8,
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((raw_addr >> 8) & 0xFF) as u8,
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((raw_addr >> 0) & 0xFF) as u8);
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Ok(DnsRecord::A {
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domain: domain,
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addr: addr,
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ttl: ttl
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})
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},
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QueryType::UNKNOWN(_) => {
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try!(buffer.step(data_len as usize));
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Ok(DnsRecord::UNKNOWN {
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domain: domain,
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qtype: qtype_num,
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data_len: data_len,
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ttl: ttl
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})
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}
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}
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}
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pub fn write(&self, buffer: &mut BytePacketBuffer) -> Result<usize> {
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let start_pos = buffer.pos();
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match *self {
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DnsRecord::A { ref domain, ref addr, ttl } => {
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try!(buffer.write_qname(domain));
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try!(buffer.write_u16(QueryType::A.to_num()));
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try!(buffer.write_u16(1));
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try!(buffer.write_u32(ttl));
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try!(buffer.write_u16(4));
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let octets = addr.octets();
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try!(buffer.write_u8(octets[0]));
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try!(buffer.write_u8(octets[1]));
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try!(buffer.write_u8(octets[2]));
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try!(buffer.write_u8(octets[3]));
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},
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DnsRecord::UNKNOWN { .. } => {
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println!("Skipping record: {:?}", self);
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}
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}
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Ok(buffer.pos() - start_pos)
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}
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}
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#[derive(Clone, Debug)]
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pub struct DnsPacket {
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pub header: DnsHeader,
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pub questions: Vec<DnsQuestion>,
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pub answers: Vec<DnsRecord>,
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pub authorities: Vec<DnsRecord>,
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pub resources: Vec<DnsRecord>
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}
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impl DnsPacket {
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pub fn new() -> DnsPacket {
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DnsPacket {
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header: DnsHeader::new(),
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questions: Vec::new(),
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answers: Vec::new(),
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authorities: Vec::new(),
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resources: Vec::new()
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}
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}
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pub fn from_buffer(buffer: &mut BytePacketBuffer) -> Result<DnsPacket> {
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let mut result = DnsPacket::new();
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try!(result.header.read(buffer));
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for _ in 0..result.header.questions {
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let mut question = DnsQuestion::new("".to_string(),
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QueryType::UNKNOWN(0));
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try!(question.read(buffer));
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result.questions.push(question);
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}
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for _ in 0..result.header.answers {
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let rec = try!(DnsRecord::read(buffer));
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result.answers.push(rec);
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}
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for _ in 0..result.header.authoritative_entries {
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let rec = try!(DnsRecord::read(buffer));
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result.authorities.push(rec);
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}
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for _ in 0..result.header.resource_entries {
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let rec = try!(DnsRecord::read(buffer));
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result.resources.push(rec);
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}
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Ok(result)
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}
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pub fn write(&mut self, buffer: &mut BytePacketBuffer) -> Result<()>
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{
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self.header.questions = self.questions.len() as u16;
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self.header.answers = self.answers.len() as u16;
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self.header.authoritative_entries = self.authorities.len() as u16;
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self.header.resource_entries = self.resources.len() as u16;
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try!(self.header.write(buffer));
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for question in &self.questions {
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try!(question.write(buffer));
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}
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for rec in &self.answers {
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try!(rec.write(buffer));
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}
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for rec in &self.authorities {
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try!(rec.write(buffer));
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}
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for rec in &self.resources {
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try!(rec.write(buffer));
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}
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Ok(())
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}
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}
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fn main() {
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let qname = "www.yahoo.com";
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let qtype = QueryType::A;
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let server = ("8.8.8.8", 53);
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let socket = UdpSocket::bind(("0.0.0.0", 43210)).unwrap();
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let mut packet = DnsPacket::new();
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packet.header.id = 6666;
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packet.header.questions = 1;
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packet.header.recursion_desired = true;
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packet.questions.push(DnsQuestion::new(qname.to_string(), qtype));
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let mut req_buffer = BytePacketBuffer::new();
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packet.write(&mut req_buffer).unwrap();
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socket.send_to(&req_buffer.buf[0..req_buffer.pos], server).unwrap();
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let mut res_buffer = BytePacketBuffer::new();
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socket.recv_from(&mut res_buffer.buf).unwrap();
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let res_packet = DnsPacket::from_buffer(&mut res_buffer).unwrap();
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println!("{:?}", res_packet.header);
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for q in res_packet.questions {
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println!("{:?}", q);
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}
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for rec in res_packet.answers {
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println!("{:?}", rec);
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}
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for rec in res_packet.authorities {
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println!("{:?}", rec);
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}
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for rec in res_packet.resources {
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println!("{:?}", rec);
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}
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}
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