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@@ -1,5 +1,6 @@
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#include "lib/aes.h"
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#include "lib/aes.h"
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#include "lib/md5.h"
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#include "lib/md5.h"
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+#include "lib/pbkdf2-sha1.h"
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#include <string.h>
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#include <string.h>
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#include <stdint.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <stdlib.h>
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@@ -16,19 +17,47 @@ static int8_t zero_iv[]={0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0};//this prog
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* https://crypto.stackexchange.com/questions/5421/using-cbc-with-a-fixed-iv-and-a-random-first-plaintext-block
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* https://crypto.stackexchange.com/questions/5421/using-cbc-with-a-fixed-iv-and-a-random-first-plaintext-block
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****/
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****/
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-char key[16];//generated from key_string by md5.
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-//TODO key derive function
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+char normal_key[16];//generated from key_string by md5. reserved for compatiblity
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+const int hmac_key_len=16;
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+const int cipher_key_len=16;
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+unsigned char hmac_key[hmac_key_len + 100]; //key for hmac
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+unsigned char cipher_key[cipher_key_len + 100]; //key for aes etc.
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-unordered_map<int, const char *> auth_mode_tostring = {{auth_none, "none"}, {auth_md5, "md5"}, {auth_crc32, "crc32"},{auth_simple,"simple"}};
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+unordered_map<int, const char *> auth_mode_tostring = {{auth_none, "none"}, {auth_md5, "md5"}, {auth_crc32, "crc32"},{auth_simple,"simple"},{auth_hmac_sha1,"hmac_sha1"},};
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//TODO HMAC-md5 ,HMAC-sha1
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//TODO HMAC-md5 ,HMAC-sha1
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-unordered_map<int, const char *> cipher_mode_tostring={{cipher_none,"none"},{cipher_aes128cbc,"aes128cbc"},{cipher_xor,"xor"}};
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+unordered_map<int, const char *> cipher_mode_tostring={{cipher_none,"none"},{cipher_aes128cbc,"aes128cbc"},{cipher_xor,"xor"},};
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//TODO aes-gcm
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//TODO aes-gcm
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auth_mode_t auth_mode=auth_md5;
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auth_mode_t auth_mode=auth_md5;
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cipher_mode_t cipher_mode=cipher_aes128cbc;
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cipher_mode_t cipher_mode=cipher_aes128cbc;
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+int is_hmac_used=0;
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+int my_init_keys(const char * user_passwd)
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+{
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+ char tmp[1000]="";
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+ int len=strlen(user_passwd);
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+
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+ strcat(tmp,user_passwd);
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+
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+ strcat(tmp,"key1");
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+
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+ md5((uint8_t*)tmp,strlen(tmp),(uint8_t*)normal_key);
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+
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+ PKCS5_PBKDF2_HMAC((uint8_t*)user_passwd,len,(uint8_t*)"hmac_key",strlen("hmac_key"),1000, hmac_key_len,hmac_key);
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+
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+ PKCS5_PBKDF2_HMAC((uint8_t*)user_passwd,len,(uint8_t*)"cipher_key",strlen("cipher_key"),1000,cipher_key_len,cipher_key);
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+
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+ if(auth_mode==auth_hmac_sha1)
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+ is_hmac_used=1;
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+
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+ //print_binary_chars(normal_key,16);
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+ //print_binary_chars((char *)hmac_key,16);
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+ //print_binary_chars((char *)cipher_key,16);
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+
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+ return 0;
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+}
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/*
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/*
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* this function comes from http://www.hackersdelight.org/hdcodetxt/crc.c.txt
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* this function comes from http://www.hackersdelight.org/hdcodetxt/crc.c.txt
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*/
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*/
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@@ -93,6 +122,35 @@ int auth_md5_cal(const char *data,char * output,int &len)
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return 0;
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return 0;
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}
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}
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+int auth_hmac_sha1_cal(const char *data,char * output,int &len)
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+{
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+ memcpy(output,data,len);//TODO inefficient code
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+ sha1_hmac(hmac_key, hmac_key_len, (const unsigned char *)data, len,(unsigned char *)(output+len));
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+ //md5((unsigned char *)output,len,(unsigned char *)(output+len));
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+ len+=20;
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+ return 0;
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+}
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+
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+int auth_hmac_sha1_verify(const char *data,int &len)
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+{
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+ if(len<20)
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+ {
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+ mylog(log_trace,"auth_hmac_sha1_verify len<20\n");
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+ return -1;
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+ }
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+ char res[20];
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+
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+ sha1_hmac(hmac_key, hmac_key_len, (const unsigned char *)data, len-20,(unsigned char *)(res));
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+
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+ if(memcmp(res,data+len-20,20)!=0)
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+ {
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+ mylog(log_trace,"auth_hmac_sha1 check failed\n");
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+ return -2;
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+ }
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+ len-=20;
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+ return 0;
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+}
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+
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int auth_crc32_cal(const char *data,char * output,int &len)
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int auth_crc32_cal(const char *data,char * output,int &len)
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{
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{
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memcpy(output,data,len);//TODO inefficient code
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memcpy(output,data,len);//TODO inefficient code
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@@ -278,7 +336,9 @@ int auth_cal(const char *data,char * output,int &len)
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case auth_md5:return auth_md5_cal(data, output, len);
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case auth_md5:return auth_md5_cal(data, output, len);
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case auth_simple:return auth_simple_cal(data, output, len);
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case auth_simple:return auth_simple_cal(data, output, len);
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case auth_none:return auth_none_cal(data, output, len);
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case auth_none:return auth_none_cal(data, output, len);
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- default: return auth_md5_cal(data,output,len);//default
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+ case auth_hmac_sha1:return auth_hmac_sha1_cal(data,output,len);
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+ //default: return auth_md5_cal(data,output,len);//default;
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+ default: assert(0==1);
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}
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}
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}
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}
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@@ -291,7 +351,9 @@ int auth_verify(const char *data,int &len)
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case auth_md5:return auth_md5_verify(data, len);
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case auth_md5:return auth_md5_verify(data, len);
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case auth_simple:return auth_simple_verify(data, len);
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case auth_simple:return auth_simple_verify(data, len);
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case auth_none:return auth_none_verify(data, len);
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case auth_none:return auth_none_verify(data, len);
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- default: return auth_md5_verify(data,len);//default
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+ case auth_hmac_sha1:return auth_hmac_sha1_verify(data,len);
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+ //default: return auth_md5_verify(data,len);//default
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+ default: assert(0==1);
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}
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}
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}
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}
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@@ -320,44 +382,63 @@ int cipher_decrypt(const char *data,char *output,int &len,char * key)
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}
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}
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+int encrypt_AE(const char *data,char *output,int &len /*,char * key*/)
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+{
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+ char buf[buf_len];
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+ char buf2[buf_len];
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+ memcpy(buf,data,len);
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+ if(cipher_encrypt(buf,buf2,len,(char *)cipher_key) !=0) {mylog(log_debug,"cipher_encrypt failed ");return -1;}
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+ if(auth_cal(buf2,output,len)!=0) {mylog(log_debug,"auth_cal failed ");return -1;}
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+
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+ //printf("%d %x %x\n",len,(int)(output[0]),(int)(output[1]));
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+ //print_binary_chars(output,len);
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+
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+ //use encrypt-then-MAC scheme
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+ return 0;
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+}
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+
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+int decrypt_AE(const char *data,char *output,int &len /*,char * key*/)
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+{
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+ //printf("%d %x %x\n",len,(int)(data[0]),(int)(data[1]));
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+ //print_binary_chars(data,len);
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+
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+ if(auth_verify(data,len)!=0) {mylog(log_debug,"auth_verify failed\n");return -1;}
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+ if(cipher_decrypt(data,output,len,(char *)cipher_key) !=0) {mylog(log_debug,"cipher_decrypt failed \n"); return -1;}
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+ return 0;
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+}
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-int my_encrypt(const char *data,char *output,int &len,char * key)
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+int my_encrypt(const char *data,char *output,int &len /*,char * key*/)
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{
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{
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if(len<0) {mylog(log_trace,"len<0");return -1;}
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if(len<0) {mylog(log_trace,"len<0");return -1;}
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if(len>max_data_len) {mylog(log_warn,"len>max_data_len");return -1;}
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if(len>max_data_len) {mylog(log_warn,"len>max_data_len");return -1;}
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+ if(is_hmac_used)
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+ return encrypt_AE(data,output,len);
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+
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+
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char buf[buf_len];
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char buf[buf_len];
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char buf2[buf_len];
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char buf2[buf_len];
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memcpy(buf,data,len);
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memcpy(buf,data,len);
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if(auth_cal(buf,buf2,len)!=0) {mylog(log_debug,"auth_cal failed ");return -1;}
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if(auth_cal(buf,buf2,len)!=0) {mylog(log_debug,"auth_cal failed ");return -1;}
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- if(cipher_encrypt(buf2,output,len,key) !=0) {mylog(log_debug,"cipher_encrypt failed ");return -1;}
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+ if(cipher_encrypt(buf2,output,len,normal_key) !=0) {mylog(log_debug,"cipher_encrypt failed ");return -1;}
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return 0;
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return 0;
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}
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}
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-int my_decrypt(const char *data,char *output,int &len,char * key)
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+int my_decrypt(const char *data,char *output,int &len /*,char * key*/)
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{
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{
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if(len<0) return -1;
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if(len<0) return -1;
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if(len>max_data_len) {mylog(log_warn,"len>max_data_len");return -1;}
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if(len>max_data_len) {mylog(log_warn,"len>max_data_len");return -1;}
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- if(cipher_decrypt(data,output,len,key) !=0) {mylog(log_debug,"cipher_decrypt failed \n"); return -1;}
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+ if(is_hmac_used)
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+ return decrypt_AE(data,output,len);
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+
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+ if(cipher_decrypt(data,output,len,normal_key) !=0) {mylog(log_debug,"cipher_decrypt failed \n"); return -1;}
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if(auth_verify(output,len)!=0) {mylog(log_debug,"auth_verify failed\n");return -1;}
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if(auth_verify(output,len)!=0) {mylog(log_debug,"auth_verify failed\n");return -1;}
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return 0;
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return 0;
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}
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}
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-int encrypt_AE(const char *data,char *output,int &len,char * key)
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-{
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- //TODO
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- //use encrypt-then-MAC scheme
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- return -1;
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-}
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-
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-int decrypt_AE(const char *data,char *output,int &len,char * key)
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-{
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- //TODO
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- return -1;
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-}
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int encrypt_AEAD(uint8_t *data,uint8_t *output,int &len,uint8_t * key,uint8_t *header,int hlen)
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int encrypt_AEAD(uint8_t *data,uint8_t *output,int &len,uint8_t * key,uint8_t *header,int hlen)
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{
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{
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