crypto updates
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boot.php
3
boot.php
@ -619,9 +619,6 @@ function sys_boot() {
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define( 'DEFAULT_NOTIFY_ICON', '/images/hz-white-32.png' );
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}
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if(! defined('CRYPTO_ALGORITHM')) {
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define( 'CRYPTO_ALGORITHM', 'aes256cbc' );
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}
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/*
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* Try to open the database;
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@ -55,6 +55,7 @@ function AES256CBC_decrypt($data,$key,$iv) {
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return openssl_decrypt($data,'aes-256-cbc',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function AES128CBC_encrypt($data,$key,$iv) {
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$key = substr($key,0,16);
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$iv = substr($iv,0,16);
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@ -67,18 +68,33 @@ function AES128CBC_decrypt($data,$key,$iv) {
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return openssl_decrypt($data,'aes-128-cbc',str_pad($key,16,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function STD_encrypt($data,$key,$iv) {
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function AES256CTR_encrypt($data,$key,$iv) {
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$key = substr($key,0,32);
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$iv = substr($iv,0,16);
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return openssl_encrypt($data,'aes-256-cbc',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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return openssl_encrypt($data,'aes-256-ctr',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function STD_decrypt($data,$key,$iv) {
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function AES256CTR_decrypt($data,$key,$iv) {
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$key = substr($key,0,32);
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$iv = substr($iv,0,16);
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return openssl_decrypt($data,'aes-256-cbc',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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return openssl_decrypt($data,'aes-256-ctr',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function CAMELLIA256CFB_encrypt($data,$key,$iv) {
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$key = substr($key,0,32);
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$iv = substr($iv,0,16);
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return openssl_encrypt($data,'camellia-256-cfb',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function CAMELLIA256CFB_decrypt($data,$key,$iv) {
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$key = substr($key,0,32);
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$iv = substr($iv,0,16);
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return openssl_decrypt($data,'camellia-256-cfb',str_pad($key,32,"\0"),OPENSSL_RAW_DATA,str_pad($iv,16,"\0"));
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}
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function CAST5CBC_encrypt($data,$key,$iv) {
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$key = substr($key,0,16);
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$iv = substr($iv,0,8);
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@ -91,6 +107,20 @@ function CAST5CBC_decrypt($data,$key,$iv) {
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return openssl_decrypt($data,'cast5-cbc',str_pad($key,16,"\0"),OPENSSL_RAW_DATA,str_pad($iv,8,"\0"));
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}
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function CAST5CFB_encrypt($data,$key,$iv) {
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$key = substr($key,0,16);
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$iv = substr($iv,0,8);
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return openssl_encrypt($data,'cast5-cfb',str_pad($key,16,"\0"),OPENSSL_RAW_DATA,str_pad($iv,8,"\0"));
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}
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function CAST5CFB_decrypt($data,$key,$iv) {
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$key = substr($key,0,16);
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$iv = substr($iv,0,8);
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return openssl_decrypt($data,'cast5-cfb',str_pad($key,16,"\0"),OPENSSL_RAW_DATA,str_pad($iv,8,"\0"));
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}
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function crypto_encapsulate($data,$pubkey,$alg='aes256cbc') {
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$fn = strtoupper($alg) . '_encrypt';
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@ -142,17 +172,13 @@ function other_encapsulate($data,$pubkey,$alg) {
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function crypto_methods() {
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if(\Zotlabs\Lib\System::get_server_role() !== 'pro')
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return [ 'aes256cbc' ];
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// 'std' is the new project standard which is aes256cbc but transmits/receives 256-byte key and iv.
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// aes256cbc is provided for compatibility with earlier zot implementations which assume 32-byte key and 16-byte iv.
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// other_encapsulate() now produces these longer keys/ivs by default so that it is difficult to guess a
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// particular implementation or choice of underlying implementations based on the key/iv length.
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// The actual methods are responsible for deriving the actual key/iv from the provided parameters;
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// possibly by truncation or segmentation - though many other methods could be used.
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$r = [ 'std', 'aes256cbc', 'aes128cbc', 'cast5cbc' ];
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$r = [ 'aes256ctr', 'camellia256cfb', 'cast5cfb', 'aes256cbc', 'aes128cbc', 'cast5cbc' ];
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call_hooks('crypto_methods',$r);
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return $r;
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@ -165,9 +165,6 @@ function zot_build_packet($channel, $type = 'notify', $recipients = null, $remot
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function zot_best_algorithm($methods) {
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if(\Zotlabs\Lib\System::get_server_role() !== 'pro')
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return 'aes256cbc';
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$x = [ 'methods' => $methods, 'result' => '' ];
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call_hooks('zot_best_algorithm',$x);
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if($x['result'])
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