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				@@ -150,44 +150,43 @@ static void BN_int2bn(BIGNUM** a, short int i) 
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				 /** 
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				  * \brief Square Root for bignums. 
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				  * 
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				+ * An implementation of Dijkstra's Square Root Algorithm. 
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				+ * A Discipline of Programming, page 61 - Fifth Exercise. 
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				+ * 
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				  */ 
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				 int BN_sqrtmod(BIGNUM* dv, BIGNUM* rem, BIGNUM* a, BN_CTX* ctx) 
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				 { 
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				-  char *abn2dec; 
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				-  int g[100]; 
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				-  long al; 
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				-  long x = 0, r = 0; 
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				-  int i, j; 
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				-  int d; 
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				-  long y, yn; 
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				- 
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				-  abn2dec = BN_bn2dec(a); 
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				-  sscanf(abn2dec, "%ld", &al); 
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				- 
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				-  r = 0; 
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				-  x = 0; 
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				-  for (i=0; al > 0; i++) { 
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				-    g[i] = al%100; 
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				-    al /= 100; 
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				-  } 
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				- 
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				-  for (j=i-1; j>=0; j--) { 
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				-    r = r*100 + g[j]; 
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				-    y = 0; 
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				-    for (d=1; d!=10; d++) { 
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				-      yn = d*(20*x + d); 
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				-      if (yn <= r) y = yn; else break; 
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				+  BIGNUM *shift; 
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				+  BIGNUM *adj; 
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				+ 
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				+  shift = BN_new(); 
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				+  adj = BN_new(); 
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				+  BN_zero(dv); 
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				+  BN_copy(rem, a); 
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				+ 
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				+  /* hacking into internal sequence to skip some cycles. */ 
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				+  /* for  (BN_one(shift);     original */ 
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				+  for (bn_wexpand(shift, a->top+1), shift->top=a->top, shift->d[shift->top-1] = 1; 
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				+       BN_ucmp(shift, rem) != 1; 
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				+       /* BN_rshift(shift, shift, 2); */ 
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				+       BN_lshift1(shift, shift), BN_lshift1(shift, shift)); 
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				+ 
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				+ 
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				+  while (!BN_is_one(shift)) { 
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				+    /* BN_rshift(shift, shift, 2); */ 
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				+    BN_rshift1(shift, shift); 
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				+    BN_rshift1(shift, shift); 
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				+ 
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				+    BN_uadd(adj, dv, shift); 
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				+    BN_rshift1(dv, dv); 
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				+    if (BN_ucmp(rem, adj) != -1) { 
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				+      BN_uadd(dv, dv, shift); 
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				+      BN_usub(rem, rem, adj); 
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				     } 
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				-    r -= y; 
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				-    x = 10*x + d -1; 
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				   } 
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				-  sprintf(abn2dec, "%ld", r); 
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				-  BN_dec2bn(&rem, abn2dec); 
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				-  sprintf(abn2dec, "%ld", x); 
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				-  BN_dec2bn(&dv, abn2dec); 
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				-  OPENSSL_free(abn2dec); 
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				- 
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				+  BN_free(shift); 
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				+  BN_free(adj); 
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				   return BN_is_zero(rem); 
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				 } 
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