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122 lines
3.9 KiB
V
122 lines
3.9 KiB
V
// [rfc1952](https://datatracker.ietf.org/doc/html/rfc1952) compliant
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// gzip compression/decompression
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module gzip
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import compress
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import hash.crc32
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// compresses an array of bytes using gzip and returns the compressed bytes in a new array
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// Example: compressed := gzip.compress(b)?
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pub fn compress(data []u8) ![]u8 {
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compressed := compress.compress(data, 0)!
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// header
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mut result := [
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u8(0x1f), // magic numbers (1F 8B)
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0x8b,
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0x08, // deflate
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0x00, // header flags
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0x00, // 4-byte timestamp, 0 = no timestamp (00 00 00 00)
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0x00,
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0x00,
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0x00,
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0x00, // extra flags
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0xff, // operating system id (0xff = unknown)
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] // 10 bytes
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result << compressed
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// trailer
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checksum := crc32.sum(data)
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length := data.len
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result << [
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u8(checksum >> 24),
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u8(checksum >> 16),
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u8(checksum >> 8),
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u8(checksum),
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u8(length >> 24),
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u8(length >> 16),
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u8(length >> 8),
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u8(length),
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] // 8 bytes
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return result
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}
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[params]
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pub struct DecompressParams {
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verify_header_checksum bool = true
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verify_length bool = true
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verify_checksum bool = true
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}
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// decompresses an array of bytes using zlib and returns the decompressed bytes in a new array
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// Example: decompressed := gzip.decompress(b)?
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pub fn decompress(data []u8, params DecompressParams) ![]u8 {
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if data.len < 18 {
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return error('data is too short, not gzip compressed?')
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} else if data[0] != 0x1f || data[1] != 0x8b {
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return error('wrong magic numbers, not gzip compressed?')
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} else if data[2] != 0x08 {
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return error('gzip data is not compressed with DEFLATE')
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}
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mut header_length := 10
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// parse flags, we ignore most of them, but we still need to parse them
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// correctly, so we dont accidently decompress something that belongs
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// to the header
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if data[4] & 0b1110_0000 > 0 { // reserved bits
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// rfc 1952 2.3.1.2 Compliance
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// A compliant decompressor must give an error indication if any
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// reserved bit is non-zero, since such a bit could indicate the
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// presence of a new field that would cause subsequent data to be
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// interpreted incorrectly.
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return error('reserved flags are set, unsupported field detected')
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}
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// if data[4] & 0b0000_0001 {} // FTEXT
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if data[4] & 0b0000_0100 > 0 { // FEXTRA, extra data
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xlen := data[header_length]
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header_length += xlen + 1
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}
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if data[4] & 0b0000_1000 > 0 { // FNAME, file name
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// filename is zero-terminated, so skip until we hit a zero byte
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for header_length < data.len && data[header_length] != 0x00 {
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header_length++
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}
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header_length++
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}
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if data[4] & 0b0001_0000 > 0 { // FCOMMENT
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// comment is zero-terminated, so skip until we hit a zero byte
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for header_length < data.len && data[header_length] != 0x00 {
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header_length++
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}
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header_length++
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}
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if data[4] & 0b0000_0010 > 0 { // FHCRC, flag header crc
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if header_length + 12 > data.len {
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return error('data too short')
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}
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checksum_header := crc32.sum(data[..header_length])
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checksum_header_expected := (u32(data[header_length]) << 24) | (u32(data[header_length + 1]) << 16) | (u32(data[
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header_length + 2]) << 8) | data[header_length + 3]
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if params.verify_header_checksum && checksum_header != checksum_header_expected {
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return error('header checksum verification failed')
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}
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header_length += 4
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}
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if header_length + 8 > data.len {
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return error('data too short')
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}
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decompressed := compress.decompress(data[header_length..data.len - 8], 0)!
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length_expected := (u32(data[data.len - 4]) << 24) | (u32(data[data.len - 3]) << 16) | (u32(data[data.len - 2]) << 8) | data[data.len - 1]
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if params.verify_length && decompressed.len != length_expected {
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return error('length verification failed, got $decompressed.len, expected $length_expected')
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}
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checksum := crc32.sum(decompressed)
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checksum_expected := (u32(data[data.len - 8]) << 24) | (u32(data[data.len - 7]) << 16) | (u32(data[data.len - 6]) << 8) | data[data.len - 5]
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if params.verify_checksum && checksum != checksum_expected {
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return error('checksum verification failed')
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}
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return decompressed
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}
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