Increase boundaries in EC_window_bits_for_scalar_size table.
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		@@ -64,10 +64,10 @@
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#define EC_window_bits_for_scalar_size(b) \
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		((b) >= 1500 ? 6 : \
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		 (b) >=  550 ? 5 : \
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		 (b) >=  200 ? 4 : \
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		 (b) >=   55 ? 3 : \
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		((b) >= 2000 ? 6 : \
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		 (b) >=  800 ? 5 : \
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		 (b) >=  300 ? 4 : \
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		 (b) >=   70 ? 3 : \
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		 (b) >=   20 ? 2 : \
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		  1)
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/* For window size 'w' (w >= 2), we compute the odd multiples
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@@ -126,17 +126,20 @@
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 *     w = 1  if   12 >= b
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 *
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 * Note that neither table tries to take into account memory usage
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 * (code locality etc.).  Actual timings with NIST curve P-192 and
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 * 192-bit scalars show that  w = 3  (instead of 4) is preferrable;
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 * and timings with NIST curve P-521 and 521-bit scalars show that
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 * w = 4  (instead of 5) is preferrable.  So we round up all the
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 * (allocation overhead, code locality etc.).  Actual timings with
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 * NIST curves P-192, P-224, and P-256 with scalars of 192, 224,
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 * and 256 bits, respectively, show that  w = 3  (instead of 4) is
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 * preferrable; timings with NIST curve P-384 and 384-bit scalars
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 * confirm that  w = 4  is optimal for this case; and timings with
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 * NIST curve P-521 and 521-bit scalars show that  w = 4  (instead
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 * of 5) is preferrable.  So we generously round up all the
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 * boundaries and use the following table:
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 *
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 *    w >= 6  if         b >= 1500
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 *     w = 5  if 1499 >= b >=  550
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 *     w = 4  if  549 >= b >=  200
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 *     w = 3  if  199 >= b >=   55
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 *     w = 2  if   54 >= b >=   20
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 *    w >= 6  if         b >= 2000
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 *     w = 5  if 1999 >= b >=  800
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 *     w = 4  if  799 >= b >=  300
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 *     w = 3  if  299 >= b >=   70
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 *     w = 2  if   69 >= b >=   20
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 *     w = 1  if   19 >= b
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 */
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@@ -282,7 +285,7 @@ int EC_POINTs_mul(const EC_GROUP *group, EC_POINT *r, const BIGNUM *scalar,
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			}
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		}
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#if 1 /* optional, maybe we should only do this if total_num > 1 */
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#if 1 /* optional; EC_window_bits_for_scalar_size assumes we do this step */
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	if (!EC_POINTs_make_affine(group, num_val, val, ctx)) goto err;
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#endif
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