use std::io::{Read, Write};
use flate2::read::GzDecoder;
use flate2::write::GzEncoder;
use flate2::Compression;
use rusqlite::Error::UserFunctionError;
use crate::common::{register_compression, Encoder};
use crate::rusqlite::{Connection, Result};
pub fn register_gzip_functions(conn: &Connection) -> Result<()> {
register_compression::<GzipEncoder>(conn)
}
pub struct GzipEncoder;
impl Encoder for GzipEncoder {
fn enc_name() -> &'static str {
"gzip"
}
fn dec_name() -> &'static str {
"gzip_decode"
}
fn test_name() -> &'static str {
"gzip_test"
}
fn encode(data: &[u8], quality: Option<u32>) -> Result<Vec<u8>> {
let quality = if let Some(param) = quality {
if param > 9 {
return Err(UserFunctionError(
"The optional second argument to gzip() must be between 0 and 9".into(),
));
}
Compression::new(param)
} else {
Compression::default()
};
let mut encoder = GzEncoder::new(Vec::new(), quality);
encoder
.write_all(data)
.map_err(|e| UserFunctionError(e.into()))?;
encoder.finish().map_err(|e| UserFunctionError(e.into()))
}
fn decode(data: &[u8]) -> Result<Vec<u8>> {
let mut decompressed = Vec::new();
GzDecoder::new(data)
.read_to_end(&mut decompressed)
.map_err(|e| UserFunctionError(e.into()))?;
Ok(decompressed)
}
fn test(data: &[u8]) -> bool {
let mut buffer = [0u8; 1024];
let mut decoder = GzDecoder::new(data);
while let Ok(len) = decoder.read(&mut buffer) {
if len == 0 {
return true;
}
}
false
}
}