crypto: implement Output Feedback (OFB) Mode for AES and DES (#13583)
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import crypto.aes
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import crypto.cipher
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fn test_aes_ofb() {
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key := '6368616e676520746869732070617373'.bytes()
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iv := '1234567890123456'.bytes()
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str := '73c86d43a9d700a253a96c85b0f6b03ac9792e0e757f869cca306bd3cba1c62b'
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mut src := str.bytes()
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aes_ofb_en(mut src, key, iv)
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assert src.hex() == '04380c1470ab2d8a0b3f9b4c1949b8aca120db226fa0a848236f9904f786dfc39bc433b5d3870d1cfdef36debdee5e6f39b0e8e9462b0151d61e822944181b51'
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dump(src.hex())
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mut plaintext := src.clone()
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aes_ofb_de(mut plaintext, key, iv)
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assert plaintext.bytestr() == str
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dump(plaintext.bytestr())
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println('test_aes_ofb ok')
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}
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fn aes_ofb_en(mut src []byte, key []byte, iv []byte) {
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block := aes.new_cipher(key)
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mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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fn aes_ofb_de(mut src []byte, key []byte, iv []byte) {
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block := aes.new_cipher(key)
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mut mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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import crypto.des
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import crypto.cipher
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const (
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key = '123456789012345678901234'.bytes()
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iv = 'abcdegfh'.bytes()
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str = '73c86d43a9d700a253a96c85b0f6b03ac9792e0e757f869cca306bd3cba1c62b'
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)
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fn test_triple_des_ofb() {
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mut src := str.bytes()
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triple_des_ofb_en(mut src, key, iv)
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assert src.hex() == '00d963619a67c84e46741a47e972e407121885af78b8ef64a9b835366e5314b8031940a9c33a4c0e1ce3b417c9fd04c3f99f31821ebfc9f8cb9e80cc50cfd91e'
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triple_des_ofb_de(mut src, key, iv)
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assert src.bytestr() == str
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println('test_triple_des_ofb ok')
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}
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fn test_des_ofb() {
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mut src := str.bytes()
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des_ofb_en(mut src, key[..8], iv)
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assert src.hex() == '2743e2164b860456c1313fb9b1196a70bb217dfad57be81cb10f368dd1ee13b06bb776eb52e0b4f6b1af32f44b8f094cfd3c0892021a2aa93f6a9e2139ba26f3'
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des_ofb_de(mut src, key[..8], iv)
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assert src.bytestr() == str
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println('test_des_ofb ok')
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}
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fn des_ofb_en(mut src []byte, key []byte, iv []byte) {
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block := des.new_cipher(key)
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mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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fn des_ofb_de(mut src []byte, key []byte, iv []byte) {
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block := des.new_cipher(key)
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mut mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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fn triple_des_ofb_en(mut src []byte, key []byte, iv []byte) {
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block := des.new_triple_des_cipher(key)
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mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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fn triple_des_ofb_de(mut src []byte, key []byte, iv []byte) {
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block := des.new_triple_des_cipher(key)
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mut mode := cipher.new_ofb(block, iv)
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mode.xor_key_stream(mut src, src.clone())
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}
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// The source code refers to the go standard library, which will be combined with AES in the future.
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//
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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//
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// OFB (Output Feedback) Mode.
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// See NIST SP 800-38A, pp 13-15
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module cipher
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import crypto.internal.subtle
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struct Ofb {
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mut:
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b Block
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next []byte
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out []byte
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out_used int
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}
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// new_ofb returns a Ofb that encrypts or decrypts using the block cipher b
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// in output feedback mode. The initialization vector iv's length must be equal
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// to b's block size.
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pub fn new_ofb(b Block, iv []byte) Ofb {
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block_size := b.block_size
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if iv.len != block_size {
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panic('cipher.new_ofb: IV length must be equal block size')
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}
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x := Ofb{
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b: b
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out: []byte{len: b.block_size}
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next: []byte{len: b.block_size}
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out_used: block_size
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}
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copy(x.next, iv)
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return x
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}
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pub fn (x &Ofb) xor_key_stream(mut dst_ []byte, src_ []byte) {
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unsafe {
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mut dst := *dst_
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mut src := src_
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if dst.len < src.len {
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panic('crypto.cipher.xor_key_stream: output smaller than input')
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}
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if subtle.inexact_overlap(dst[..src.len], src) {
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panic('crypto.cipher.xor_key_stream: invalid buffer overlap')
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}
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for src.len > 0 {
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if x.out_used == x.out.len {
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x.b.encrypt(mut x.out, x.next)
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x.out_used = 0
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}
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copy(x.next, x.out)
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n := xor_bytes(mut dst, src, x.out)
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dst = dst[n..]
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src = src[n..]
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x.out_used += n
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}
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}
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}
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