used pb_starmultiply for the first multiplication and added p, q, N
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@ -21,11 +21,12 @@
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#include "ntru_decrypt.h"
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#include "poly.h"
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#include "context.h"
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/*
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* Legend
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*
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* N : highest degree of the polynom
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* N : maximal degree of the polynom
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* q : "is given" (... mod q)
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* p : "is given" (... mod p)
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* f : private key
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@ -36,10 +37,15 @@
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* */
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// Require: N , q, p, secret key f , inverse polynomial Fp , and encrypted message e.
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int ntru_decrypt(char *encr_msg, pb_poly *private_key, ntru_context *context, char ** decr_msg){
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int ntru_decrypt(pb_poly *encr_msg, pb_poly *private_key, ntru_context *context, char ** decr_msg){
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// toDo q = ?, p = ?, fp = ?
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unsigned int q = *context->q;
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unsigned int p = *context->p;
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unsigned int N = *context->N;
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//toDO StarMultiply(f, e, a, N, q)
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pb_poly *a;
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pb_starmultiply(private_key, encr_msg, a, context, q);
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for(int i = 0, i < N, i++){
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if(a[i] < 0 ) {
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@ -25,6 +25,6 @@
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#include "poly.h"
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#include "context.h"
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int ntru_decrypt(char *encr_msg, pb_poly *private_key, ntru_context *context, char ** decr_msg);
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int ntru_decrypt(pb_poly *encr_msg, pb_poly *private_key, ntru_context *context, char ** decr_msg);
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#endif /* NTRU_DECRYPT */
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