use std::cmp;
use std::io;
use std::io::prelude::*;
use std::mem;
use super::{GzBuilder, GzHeader};
use super::{FCOMMENT, FEXTRA, FHCRC, FNAME};
use crc::CrcReader;
use deflate;
use Compression;
fn copy(into: &mut [u8], from: &[u8], pos: &mut usize) -> usize {
let min = cmp::min(into.len(), from.len() - *pos);
for (slot, val) in into.iter_mut().zip(from[*pos..*pos + min].iter()) {
*slot = *val;
}
*pos += min;
return min;
}
pub(crate) fn corrupt() -> io::Error {
io::Error::new(
io::ErrorKind::InvalidInput,
"corrupt gzip stream does not have a matching checksum",
)
}
fn bad_header() -> io::Error {
io::Error::new(io::ErrorKind::InvalidInput, "invalid gzip header")
}
fn read_le_u16<R: Read>(r: &mut R) -> io::Result<u16> {
let mut b = [0; 2];
r.read_exact(&mut b)?;
Ok((b[0] as u16) | ((b[1] as u16) << 8))
}
pub(crate) fn read_gz_header<R: Read>(r: &mut R) -> io::Result<GzHeader> {
let mut crc_reader = CrcReader::new(r);
let mut header = [0; 10];
crc_reader.read_exact(&mut header)?;
let id1 = header[0];
let id2 = header[1];
if id1 != 0x1f || id2 != 0x8b {
return Err(bad_header());
}
let cm = header[2];
if cm != 8 {
return Err(bad_header());
}
let flg = header[3];
let mtime = ((header[4] as u32) << 0)
| ((header[5] as u32) << 8)
| ((header[6] as u32) << 16)
| ((header[7] as u32) << 24);
let _xfl = header[8];
let os = header[9];
let extra = if flg & FEXTRA != 0 {
let xlen = read_le_u16(&mut crc_reader)?;
let mut extra = vec![0; xlen as usize];
crc_reader.read_exact(&mut extra)?;
Some(extra)
} else {
None
};
let filename = if flg & FNAME != 0 {
let mut b = Vec::new();
for byte in crc_reader.by_ref().bytes() {
let byte = byte?;
if byte == 0 {
break;
}
b.push(byte);
}
Some(b)
} else {
None
};
let comment = if flg & FCOMMENT != 0 {
let mut b = Vec::new();
for byte in crc_reader.by_ref().bytes() {
let byte = byte?;
if byte == 0 {
break;
}
b.push(byte);
}
Some(b)
} else {
None
};
if flg & FHCRC != 0 {
let calced_crc = crc_reader.crc().sum() as u16;
let stored_crc = read_le_u16(&mut crc_reader)?;
if calced_crc != stored_crc {
return Err(corrupt());
}
}
Ok(GzHeader {
extra: extra,
filename: filename,
comment: comment,
operating_system: os,
mtime: mtime,
})
}
#[derive(Debug)]
pub struct GzEncoder<R> {
inner: deflate::bufread::DeflateEncoder<CrcReader<R>>,
header: Vec<u8>,
pos: usize,
eof: bool,
}
pub fn gz_encoder<R: BufRead>(header: Vec<u8>, r: R, lvl: Compression) -> GzEncoder<R> {
let crc = CrcReader::new(r);
GzEncoder {
inner: deflate::bufread::DeflateEncoder::new(crc, lvl),
header: header,
pos: 0,
eof: false,
}
}
impl<R: BufRead> GzEncoder<R> {
pub fn new(r: R, level: Compression) -> GzEncoder<R> {
GzBuilder::new().buf_read(r, level)
}
fn read_footer(&mut self, into: &mut [u8]) -> io::Result<usize> {
if self.pos == 8 {
return Ok(0);
}
let crc = self.inner.get_ref().crc();
let ref arr = [
(crc.sum() >> 0) as u8,
(crc.sum() >> 8) as u8,
(crc.sum() >> 16) as u8,
(crc.sum() >> 24) as u8,
(crc.amount() >> 0) as u8,
(crc.amount() >> 8) as u8,
(crc.amount() >> 16) as u8,
(crc.amount() >> 24) as u8,
];
Ok(copy(into, arr, &mut self.pos))
}
}
impl<R> GzEncoder<R> {
pub fn get_ref(&self) -> &R {
self.inner.get_ref().get_ref()
}
pub fn get_mut(&mut self) -> &mut R {
self.inner.get_mut().get_mut()
}
pub fn into_inner(self) -> R {
self.inner.into_inner().into_inner()
}
}
impl<R: BufRead> Read for GzEncoder<R> {
fn read(&mut self, mut into: &mut [u8]) -> io::Result<usize> {
let mut amt = 0;
if self.eof {
return self.read_footer(into);
} else if self.pos < self.header.len() {
amt += copy(into, &self.header, &mut self.pos);
if amt == into.len() {
return Ok(amt);
}
let tmp = into;
into = &mut tmp[amt..];
}
match self.inner.read(into)? {
0 => {
self.eof = true;
self.pos = 0;
self.read_footer(into)
}
n => Ok(amt + n),
}
}
}
impl<R: BufRead + Write> Write for GzEncoder<R> {
fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
self.get_mut().write(buf)
}
fn flush(&mut self) -> io::Result<()> {
self.get_mut().flush()
}
}
#[derive(Debug)]
pub struct GzDecoder<R> {
inner: CrcReader<deflate::bufread::DeflateDecoder<R>>,
header: Option<io::Result<GzHeader>>,
finished: bool,
}
impl<R: BufRead> GzDecoder<R> {
pub fn new(mut r: R) -> GzDecoder<R> {
let header = read_gz_header(&mut r);
let flate = deflate::bufread::DeflateDecoder::new(r);
GzDecoder {
inner: CrcReader::new(flate),
header: Some(header),
finished: false,
}
}
fn finish(&mut self) -> io::Result<()> {
if self.finished {
return Ok(());
}
let ref mut buf = [0u8; 8];
{
let mut len = 0;
while len < buf.len() {
match self.inner.get_mut().get_mut().read(&mut buf[len..])? {
0 => return Err(corrupt()),
n => len += n,
}
}
}
let crc = ((buf[0] as u32) << 0)
| ((buf[1] as u32) << 8)
| ((buf[2] as u32) << 16)
| ((buf[3] as u32) << 24);
let amt = ((buf[4] as u32) << 0)
| ((buf[5] as u32) << 8)
| ((buf[6] as u32) << 16)
| ((buf[7] as u32) << 24);
if crc != self.inner.crc().sum() {
return Err(corrupt());
}
if amt != self.inner.crc().amount() {
return Err(corrupt());
}
self.finished = true;
Ok(())
}
}
impl<R> GzDecoder<R> {
pub fn header(&self) -> Option<&GzHeader> {
self.header.as_ref().and_then(|h| h.as_ref().ok())
}
pub fn get_ref(&self) -> &R {
self.inner.get_ref().get_ref()
}
pub fn get_mut(&mut self) -> &mut R {
self.inner.get_mut().get_mut()
}
pub fn into_inner(self) -> R {
self.inner.into_inner().into_inner()
}
}
impl<R: BufRead> Read for GzDecoder<R> {
fn read(&mut self, into: &mut [u8]) -> io::Result<usize> {
match self.header {
None => return Ok(0), Some(Ok(_)) => {}
Some(Err(_)) => match self.header.take().unwrap() {
Ok(_) => panic!(),
Err(e) => return Err(e),
},
}
if into.is_empty() {
return Ok(0);
}
match self.inner.read(into)? {
0 => {
self.finish()?;
Ok(0)
}
n => Ok(n),
}
}
}
impl<R: BufRead + Write> Write for GzDecoder<R> {
fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
self.get_mut().write(buf)
}
fn flush(&mut self) -> io::Result<()> {
self.get_mut().flush()
}
}
#[derive(Debug)]
pub struct MultiGzDecoder<R> {
inner: CrcReader<deflate::bufread::DeflateDecoder<R>>,
header: io::Result<GzHeader>,
finished: bool,
}
impl<R: BufRead> MultiGzDecoder<R> {
pub fn new(mut r: R) -> MultiGzDecoder<R> {
let header = read_gz_header(&mut r);
let flate = deflate::bufread::DeflateDecoder::new(r);
MultiGzDecoder {
inner: CrcReader::new(flate),
header: header,
finished: false,
}
}
fn finish_member(&mut self) -> io::Result<usize> {
if self.finished {
return Ok(0);
}
let ref mut buf = [0u8; 8];
{
let mut len = 0;
while len < buf.len() {
match self.inner.get_mut().get_mut().read(&mut buf[len..])? {
0 => return Err(corrupt()),
n => len += n,
}
}
}
let crc = ((buf[0] as u32) << 0)
| ((buf[1] as u32) << 8)
| ((buf[2] as u32) << 16)
| ((buf[3] as u32) << 24);
let amt = ((buf[4] as u32) << 0)
| ((buf[5] as u32) << 8)
| ((buf[6] as u32) << 16)
| ((buf[7] as u32) << 24);
if crc != self.inner.crc().sum() as u32 {
return Err(corrupt());
}
if amt != self.inner.crc().amount() {
return Err(corrupt());
}
let remaining = match self.inner.get_mut().get_mut().fill_buf() {
Ok(b) => if b.is_empty() {
self.finished = true;
return Ok(0);
} else {
b.len()
},
Err(e) => return Err(e),
};
let next_header = read_gz_header(self.inner.get_mut().get_mut());
drop(mem::replace(&mut self.header, next_header));
self.inner.reset();
self.inner.get_mut().reset_data();
Ok(remaining)
}
}
impl<R> MultiGzDecoder<R> {
pub fn header(&self) -> Option<&GzHeader> {
self.header.as_ref().ok()
}
pub fn get_ref(&self) -> &R {
self.inner.get_ref().get_ref()
}
pub fn get_mut(&mut self) -> &mut R {
self.inner.get_mut().get_mut()
}
pub fn into_inner(self) -> R {
self.inner.into_inner().into_inner()
}
}
impl<R: BufRead> Read for MultiGzDecoder<R> {
fn read(&mut self, into: &mut [u8]) -> io::Result<usize> {
if let Err(ref mut e) = self.header {
let another_error = io::ErrorKind::Other.into();
return Err(mem::replace(e, another_error));
}
match self.inner.read(into)? {
0 => match self.finish_member() {
Ok(0) => Ok(0),
Ok(_) => self.read(into),
Err(e) => Err(e),
},
n => Ok(n),
}
}
}
impl<R: BufRead + Write> Write for MultiGzDecoder<R> {
fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
self.get_mut().write(buf)
}
fn flush(&mut self) -> io::Result<()> {
self.get_mut().flush()
}
}