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authorRichard Henderson <rth@twiddle.net>2013-05-16 06:34:01 -0700
committerRichard Henderson <rth@twiddle.net>2013-05-16 06:34:01 -0700
commite6e49e59c1017f5fcf442ccbfa63b2a9627cb0c0 (patch)
tree17127e2789125bee11cd2ebf2fcc2ec443068892
parent105a07dfc0678d13556126e04b9548f87f7f5d95 (diff)
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De-stringify constants in math/atest-exp2.c.
-rw-r--r--ChangeLog12
-rw-r--r--math/atest-exp2.c74
2 files changed, 44 insertions, 42 deletions
diff --git a/ChangeLog b/ChangeLog
index e9450ef..0170f60 100644
--- a/ChangeLog
+++ b/ChangeLog
@@ -1,3 +1,15 @@
+2013-05-16 Richard Henderson <rth@redhat.com>
+
+ * math/atest-exp2.c (LIMB64): New macro.
+ (CONSTSZ): New macro.
+ (mp_exp1, mp_exp_m1, mp_log2): New variables.
+ (hexdig): Move ...
+ (print_mpn_fp): ... to function scope.
+ (read_mpn_hex): Remove.
+ (get_log2): Remove.
+ (exp2_mpn): Use mp_log2.
+ (main): Use mp_exp1.
+
2013-05-16 Joseph Myers <joseph@codesourcery.com>
* math/libm-test.inc: Remove comment about not testing "inexact"
diff --git a/math/atest-exp2.c b/math/atest-exp2.c
index 694237d..0a0cc54 100644
--- a/math/atest-exp2.c
+++ b/math/atest-exp2.c
@@ -34,19 +34,39 @@
#define SZ (FRAC / mpbpl + 1)
typedef mp_limb_t mp1[SZ], mp2[SZ * 2];
-/* This string has 101 hex digits. */
-static const char exp1[102] = "2" /* point */
-"b7e151628aed2a6abf7158809cf4f3c762e7160f38b4da56a7"
-"84d9045190cfef324e7738926cfbe5f4bf8d8d8c31d763da07";
-static const char exp_m1[102] = "0" /* point */
-"5e2d58d8b3bcdf1abadec7829054f90dda9805aab56c773330"
-"24b9d0a507daedb16400bf472b4215b8245b669d90d27a5aea";
+#if BITS_PER_MP_LIMB == 64
+# define LIMB64(L, H) 0x ## H ## L
+#elif BITS_PER_MP_LIMB == 32
+# define LIMB64(L, H) 0x ## L, 0x ## H
+#else
+# error
+#endif
+
+/* Once upon a time these constants were generated to 400 bits.
+ We only need FRAC bits (128) at present, but we retain 384 bits
+ in the text Just In Case. */
+#define CONSTSZ(INT, F1, F2, F3, F4, F5, F6, F7, F8, F9, Fa, Fb, Fc) \
+ LIMB64(F4, F3), LIMB64(F2, F1), INT
+
+static const mp1 mp_exp1 = {
+ CONSTSZ (2, b7e15162, 8aed2a6a, bf715880, 9cf4f3c7, 62e7160f, 38b4da56,
+ a784d904, 5190cfef, 324e7738, 926cfbe5, f4bf8d8d, 8c31d763)
+};
-static const char hexdig[] = "0123456789abcdef";
+static const mp1 mp_exp_m1 = {
+ CONSTSZ (0, 5e2d58d8, b3bcdf1a, badec782, 9054f90d, da9805aa, b56c7733,
+ 3024b9d0, a507daed, b16400bf, 472b4215, b8245b66, 9d90d27a)
+};
+
+static const mp1 mp_log2 = {
+ CONSTSZ (0, b17217f7, d1cf79ab, c9e3b398, 03f2f6af, 40f34326, 7298b62d,
+ 8a0d175b, 8baafa2b, e7b87620, 6debac98, 559552fb, 4afa1b10)
+};
static void
print_mpn_fp (const mp_limb_t *x, unsigned int dp, unsigned int base)
{
+ static const char hexdig[16] = "0123456789abcdef";
unsigned int i;
mp1 tx;
@@ -65,35 +85,6 @@ print_mpn_fp (const mp_limb_t *x, unsigned int dp, unsigned int base)
}
}
-static void
-read_mpn_hex(mp_limb_t *x, const char *str)
-{
- int i;
-
- memset (x, 0, sizeof (mp1));
- for (i = -1; i < 100 && i < FRAC / 4; ++i)
- x[(FRAC - i * 4 - 4) / mpbpl] |= ((mp_limb_t) (strchr (hexdig, str[i + 1])
- - hexdig)
- << (FRAC - i * 4 - 4) % mpbpl);
-}
-
-static mp_limb_t *
-get_log2(void)
-{
- static mp1 log2_m;
- static int log2_m_inited = 0;
- static const char log2[102] = "0" /* point */
- "b17217f7d1cf79abc9e3b39803f2f6af40f343267298b62d8a"
- "0d175b8baafa2be7b876206debac98559552fb4afa1b10ed2e";
-
- if (!log2_m_inited)
- {
- read_mpn_hex (log2_m, log2);
- log2_m_inited = 1;
- }
- return log2_m;
-}
-
/* Compute e^x. */
static void
exp_mpn (mp1 ex, mp1 x)
@@ -133,7 +124,7 @@ static void
exp2_mpn (mp1 ex, mp1 x)
{
mp2 tmp;
- mpn_mul_n (tmp, x, get_log2 (), SZ);
+ mpn_mul_n (tmp, x, mp_log2, SZ);
assert(tmp[SZ * 2 - 1] == 0);
exp_mpn (ex, tmp + FRAC / mpbpl);
}
@@ -220,11 +211,10 @@ main (void)
memset (x, 0, sizeof (mp1));
x[FRAC / mpbpl] = (mp_limb_t)1 << FRAC % mpbpl;
exp_mpn (ex, x);
- read_mpn_hex (e2, exp1);
- if (mpn_cmp (ex, e2, SZ) >= 0)
- mpn_sub_n (e3, ex, e2, SZ);
+ if (mpn_cmp (ex, mp_exp1, SZ) >= 0)
+ mpn_sub_n (e3, ex, mp_exp1, SZ);
else
- mpn_sub_n (e3, e2, ex, SZ);
+ mpn_sub_n (e3, mp_exp1, ex, SZ);
printf ("%d failures; %d errors; error rate %0.2f%%\n", failures, errors,
errors * 100.0 / (double) (1 << N2));