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Move 198xx DiskCryptor to 200xx to not collide with Kerberos 5, etype 17, Pre-Auth
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17ab30b29f
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@ -380,11 +380,12 @@ KERNEL_FQ void m19800_comp (KERN_ATTR_TMPS_ESALT (krb5pa_17_tmp_t, krb5pa_17_t))
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aes128_set_encrypt_key (aes_ks, aes_key, s_te0, s_te1, s_te2, s_te3);
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u32 key_bytes[4];
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u32 out[4];
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aes128_encrypt_cbc (aes_ks, aes_iv, nfolded, out, s_te0, s_te1, s_te2, s_te3, s_te4);
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u32 key_bytes[4];
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key_bytes[0] = hc_swap32_S (out[0]);
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key_bytes[1] = hc_swap32_S (out[1]);
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key_bytes[2] = hc_swap32_S (out[2]);
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@ -471,6 +472,7 @@ KERNEL_FQ void m19800_comp (KERN_ATTR_TMPS_ESALT (krb5pa_17_tmp_t, krb5pa_17_t))
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// New c_1, join c_n with result of the decrypted c_n-1
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int last_block_iter;
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for (last_block_iter = 4; last_block_iter < 8; last_block_iter++)
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{
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if (last_word_position > last_block_iter + 4)
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@ -602,13 +604,14 @@ KERNEL_FQ void m19800_comp (KERN_ATTR_TMPS_ESALT (krb5pa_17_tmp_t, krb5pa_17_t))
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sha1_hmac_final (&sha1_hmac_ctx);
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// Compare checksum
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if(sha1_hmac_ctx.opad.h[0] == esalt_bufs[digests_offset].checksum[0]
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&& sha1_hmac_ctx.opad.h[1] == esalt_bufs[digests_offset].checksum[1]
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&& sha1_hmac_ctx.opad.h[2] == esalt_bufs[digests_offset].checksum[2])
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if ((sha1_hmac_ctx.opad.h[0] == esalt_bufs[digests_offset].checksum[0])
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&& (sha1_hmac_ctx.opad.h[1] == esalt_bufs[digests_offset].checksum[1])
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&& (sha1_hmac_ctx.opad.h[2] == esalt_bufs[digests_offset].checksum[2]))
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{
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if (atomic_inc (&hashes_shown[digests_offset]) == 0)
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{
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#define il_pos 0
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mark_hash (plains_buf, d_return_buf, salt_pos, digests_cnt, 0, digests_offset + 0, gid, il_pos, 0, 0);
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}
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}
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@ -197,6 +197,7 @@ KERNEL_FQ void m19900_loop (KERN_ATTR_TMPS_ESALT (krb5pa_18_tmp_t, krb5pa_18_t))
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/**
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* base
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*/
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const u64 gid = get_global_id (0);
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if ((gid * VECT_SIZE) >= gid_max) return;
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@ -384,11 +385,12 @@ KERNEL_FQ void m19900_comp (KERN_ATTR_TMPS_ESALT (krb5pa_18_tmp_t, krb5pa_18_t))
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aes256_set_encrypt_key (aes_ks, aes_key, s_te0, s_te1, s_te2, s_te3);
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u32 key_bytes[8];
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u32 out[4];
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aes256_encrypt_cbc (aes_ks, aes_iv, nfolded, out, s_te0, s_te1, s_te2, s_te3, s_te4);
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u32 key_bytes[8];
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key_bytes[0] = hc_swap32_S (out[0]);
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key_bytes[1] = hc_swap32_S (out[1]);
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key_bytes[2] = hc_swap32_S (out[2]);
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@ -499,6 +501,7 @@ KERNEL_FQ void m19900_comp (KERN_ATTR_TMPS_ESALT (krb5pa_18_tmp_t, krb5pa_18_t))
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// New c_1, join c_n with result of the decrypted c_n-1
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int last_block_iter;
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for (last_block_iter = 4; last_block_iter < 8; last_block_iter++)
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{
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if (last_word_position > last_block_iter + 4)
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@ -541,7 +544,7 @@ KERNEL_FQ void m19900_comp (KERN_ATTR_TMPS_ESALT (krb5pa_18_tmp_t, krb5pa_18_t))
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aes_iv[2] = 0;
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aes_iv[3] = 0;
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aes256_decrypt_cbc (aes_cts_decrypt_ks, enc_blocks, decrypted_block, aes_iv, s_td0, s_td1, s_td2, s_td3, s_td4);
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aes256_decrypt_cbc (aes_cts_decrypt_ks, enc_blocks + 0, decrypted_block, aes_iv, s_td0, s_td1, s_td2, s_td3, s_td4);
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w0[0] = hc_swap32_S (decrypted_block[0]);
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w0[1] = hc_swap32_S (decrypted_block[1]);
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@ -643,13 +646,14 @@ KERNEL_FQ void m19900_comp (KERN_ATTR_TMPS_ESALT (krb5pa_18_tmp_t, krb5pa_18_t))
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sha1_hmac_final (&sha1_hmac_ctx);
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// Compare checksum
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if(sha1_hmac_ctx.opad.h[0] == esalt_bufs[digests_offset].checksum[0]
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&& sha1_hmac_ctx.opad.h[1] == esalt_bufs[digests_offset].checksum[1]
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&& sha1_hmac_ctx.opad.h[2] == esalt_bufs[digests_offset].checksum[2])
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if ((sha1_hmac_ctx.opad.h[0] == esalt_bufs[digests_offset].checksum[0])
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&& (sha1_hmac_ctx.opad.h[1] == esalt_bufs[digests_offset].checksum[1])
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&& (sha1_hmac_ctx.opad.h[2] == esalt_bufs[digests_offset].checksum[2]))
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{
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if (atomic_inc (&hashes_shown[digests_offset]) == 0)
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{
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#define il_pos 0
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mark_hash (plains_buf, d_return_buf, salt_pos, digests_cnt, 0, digests_offset + 0, gid, il_pos, 0, 0);
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}
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}
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@ -91,7 +91,7 @@ DECLSPEC void hmac_sha512_run_V (u32x *w0, u32x *w1, u32x *w2, u32x *w3, u32x *w
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sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
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}
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KERNEL_FQ void m19811_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20011_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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/**
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* base
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@ -195,7 +195,7 @@ KERNEL_FQ void m19811_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19811_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20011_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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@ -321,7 +321,7 @@ KERNEL_FQ void m19811_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19811_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20011_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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const u64 lid = get_local_id (0);
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@ -91,7 +91,7 @@ DECLSPEC void hmac_sha512_run_V (u32x *w0, u32x *w1, u32x *w2, u32x *w3, u32x *w
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sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
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}
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KERNEL_FQ void m19812_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20012_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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/**
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* base
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@ -195,7 +195,7 @@ KERNEL_FQ void m19812_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19812_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20012_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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@ -321,7 +321,7 @@ KERNEL_FQ void m19812_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19812_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20012_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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const u64 lid = get_local_id (0);
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@ -91,7 +91,7 @@ DECLSPEC void hmac_sha512_run_V (u32x *w0, u32x *w1, u32x *w2, u32x *w3, u32x *w
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sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
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}
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KERNEL_FQ void m19813_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20013_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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/**
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* base
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@ -195,7 +195,7 @@ KERNEL_FQ void m19813_init (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19813_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20013_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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@ -321,7 +321,7 @@ KERNEL_FQ void m19813_loop (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcrypt
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}
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}
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KERNEL_FQ void m19813_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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KERNEL_FQ void m20013_comp (KERN_ATTR_TMPS_ESALT (pbkdf2_sha512_tmp_t, diskcryptor_esalt_t))
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{
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const u64 gid = get_global_id (0);
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const u64 lid = get_local_id (0);
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@ -21,6 +21,8 @@
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- Added hash-mode: QNX /etc/shadow (SHA512)
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- Added hash-mode: Kerberos 5 TGS-REP etype 17 (AES128-CTS-HMAC-SHA1-96)
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- Added hash-mode: Kerberos 5 TGS-REP etype 18 (AES256-CTS-HMAC-SHA1-96)
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- Added hash-mode: Kerberos 5 Pre-Auth etype 17 (AES128-CTS-HMAC-SHA1-96)
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- Added hash-mode: Kerberos 5 Pre-Auth etype 18 (AES256-CTS-HMAC-SHA1-96)
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- Added hash-mode: sha1(md5(md5($pass)))
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- Added hash-mode: sha1($salt1.$pass.$salt2)
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- Added hash-mode: Ruby on Rails Restful-Authentication
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@ -123,12 +123,15 @@ NVIDIA GPUs require "NVIDIA Driver" (418.56 or later)
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- NetNTLMv2
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- IPMI2 RAKP HMAC-SHA1
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- Kerberos 5 AS-REQ Pre-Auth etype 23
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- Kerberos 5 AS-REP etype 23
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- Kerberos 5 TGS-REP etype 23 (RC4-HMAC-MD5)
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- Kerberos 5 Pre-Auth etype 17/18 (AES128-CTS-HMAC-SHA1-96)
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- Kerberos 5 TGS-REP etype 17/18 (AES128-CTS-HMAC-SHA1-96)
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- DNSSEC (NSEC3)
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- CRAM-MD5
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- PostgreSQL CRAM (MD5)
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- MySQL CRAM (SHA1)
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- SIP digest authentication (MD5)
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- Kerberos 5 TGS-REP etype 23
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- TACACS+
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- JWT (JSON Web Token)
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- SMF (Simple Machines Forum) > v1.1
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@ -266,7 +269,6 @@ NVIDIA GPUs require "NVIDIA Driver" (418.56 or later)
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- Ethereum Wallet, SCRYPT
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- Ethereum Pre-Sale Wallet, PBKDF2-HMAC-SHA256
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- Ansible Vault
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- Kerberos 5 AS-REP etype 23
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- Plaintext
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##
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 AS-REQ Pre-Auth etype 23";
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static const char *HASH_NAME = "Kerberos 5, etype 23, AS-REQ Pre-Auth";
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static const u64 KERN_TYPE = 7500;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED;
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 TGS-REP etype 23 (RC4-HMAC-MD5)";
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static const char *HASH_NAME = "Kerberos 5, etype 23, TGS-REP";
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static const u64 KERN_TYPE = 13100;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED;
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 AS-REP etype 23";
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static const char *HASH_NAME = "Kerberos 5, etype 23, AS-REP";
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static const u64 KERN_TYPE = 18200;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED;
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 TGS-REP etype 17 (AES128-CTS-HMAC-SHA1-96)";
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static const char *HASH_NAME = "Kerberos 5, etype 17, TGS-REP";
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static const u64 KERN_TYPE = 19600;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 TGS-REP etype 18 (AES256-CTS-HMAC-SHA1-96)";
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static const char *HASH_NAME = "Kerberos 5, etype 18, TGS-REP";
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static const u64 KERN_TYPE = 19700;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 Pre-Auth etype 17 (AES128-CTS-HMAC-SHA1-96)";
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static const char *HASH_NAME = "Kerberos 5, etype 17, Pre-Auth";
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static const u64 KERN_TYPE = 19800;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED
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@ -17,7 +17,7 @@ static const u32 DGST_POS2 = 2;
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static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_NETWORK_PROTOCOL;
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static const char *HASH_NAME = "Kerberos 5 Pre-Auth etype 18 (AES256-CTS-HMAC-SHA1-96)";
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static const char *HASH_NAME = "Kerberos 5, etype 18, Pre-Auth";
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static const u64 KERN_TYPE = 19900;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_NOT_ITERATED
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_FDE;
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static const char *HASH_NAME = "DiskCryptor SHA512 + XTS 512 bit";
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static const u64 KERN_TYPE = 19811;
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static const u64 KERN_TYPE = 20011;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_USES_BITS_64
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| OPTI_TYPE_SLOW_HASH_SIMD_LOOP;
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@ -18,7 +18,7 @@ static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_FDE;
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static const char *HASH_NAME = "DiskCryptor SHA512 + XTS 1024 bit";
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static const u64 KERN_TYPE = 19812;
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static const u64 KERN_TYPE = 20012;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_USES_BITS_64
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| OPTI_TYPE_SLOW_HASH_SIMD_LOOP;
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@ -18,7 +18,7 @@ static const u32 DGST_POS3 = 3;
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static const u32 DGST_SIZE = DGST_SIZE_4_4;
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static const u32 HASH_CATEGORY = HASH_CATEGORY_FDE;
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static const char *HASH_NAME = "DiskCryptor SHA512 + XTS 1536 bit";
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static const u64 KERN_TYPE = 19813;
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static const u64 KERN_TYPE = 20013;
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static const u32 OPTI_TYPE = OPTI_TYPE_ZERO_BYTE
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| OPTI_TYPE_USES_BITS_64
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| OPTI_TYPE_SLOW_HASH_SIMD_LOOP;
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