X-Git-Url: http://erislabs.net/gitweb/?a=blobdiff_plain;f=tests%2Ftest-snprintf-posix.h;h=f603133ad5d4e665c3932c284e0a56f66ebcd054;hb=e6bf8b0764b43ff4ce477b80187a3765b6d2135b;hp=b44467855efdc753bc5859fc91d7dc56f2209a4d;hpb=48e570fe66a8153d82ef3f51e496211d0c553ecd;p=gnulib.git
diff --git a/tests/test-snprintf-posix.h b/tests/test-snprintf-posix.h
index b44467855..f603133ad 100644
--- a/tests/test-snprintf-posix.h
+++ b/tests/test-snprintf-posix.h
@@ -1,10 +1,10 @@
/* Test of POSIX compatible vsnprintf() and snprintf() functions.
- Copyright (C) 2007 Free Software Foundation, Inc.
+ Copyright (C) 2007-2008 Free Software Foundation, Inc.
- This program is free software; you can redistribute it and/or modify
+ This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
- the Free Software Foundation; either version 2, or (at your option)
- any later version.
+ the Free Software Foundation; either version 3 of the License, or
+ (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
@@ -12,21 +12,40 @@
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
- along with this program; if not, write to the Free Software Foundation,
- Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. */
+ along with this program. If not, see . */
/* Written by Bruno Haible , 2007. */
-/* The Compaq (ex-DEC) C 6.4 compiler chokes on the expression 0.0 / 0.0. */
-#ifdef __DECC
-static double
-NaN ()
+#include "nan.h"
+
+/* The SGI MIPS floating-point format does not distinguish 0.0 and -0.0. */
+static int
+have_minus_zero ()
{
- static double zero = 0.0;
- return zero / zero;
+ static double plus_zero = 0.0;
+ double minus_zero = - plus_zero;
+ return memcmp (&plus_zero, &minus_zero, sizeof (double)) != 0;
}
+
+/* HP cc on HP-UX 10.20 has a bug with the constant expression -0.0.
+ So we use -zero instead. */
+double zerod = 0.0;
+
+/* HP cc on HP-UX 10.20 has a bug with the constant expression -0.0L.
+ So we use -zero instead. */
+long double zerol = 0.0L;
+
+/* Representation of an 80-bit 'long double' as an initializer for a sequence
+ of 'unsigned int' words. */
+#ifdef WORDS_BIGENDIAN
+# define LDBL80_WORDS(exponent,manthi,mantlo) \
+ { ((unsigned int) (exponent) << 16) | ((unsigned int) (manthi) >> 16), \
+ ((unsigned int) (manthi) << 16) | (unsigned int) (mantlo) >> 16), \
+ (unsigned int) (mantlo) << 16 \
+ }
#else
-# define NaN() (0.0 / 0.0)
+# define LDBL80_WORDS(exponent,manthi,mantlo) \
+ { mantlo, manthi, exponent }
#endif
static int
@@ -40,6 +59,27 @@ strmatch (const char *pattern, const char *string)
return 1;
}
+/* Test whether string[start_index..end_index-1] is a valid textual
+ representation of NaN. */
+static int
+strisnan (const char *string, size_t start_index, size_t end_index, int uppercase)
+{
+ if (start_index < end_index)
+ {
+ if (string[start_index] == '-')
+ start_index++;
+ if (start_index + 3 <= end_index
+ && memcmp (string + start_index, uppercase ? "NAN" : "nan", 3) == 0)
+ {
+ start_index += 3;
+ if (start_index == end_index
+ || (string[start_index] == '(' && string[end_index - 1] == ')'))
+ return 1;
+ }
+ }
+ return 0;
+}
+
static void
test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{
@@ -140,8 +180,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%a %d", -0.0, 33, 44, 55);
- ASSERT (strcmp (result, "-0x0p+0 33") == 0);
+ my_snprintf (result, sizeof (result), "%a %d", -zerod, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0x0p+0 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -164,8 +205,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%a %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%a %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -359,10 +402,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* FLAG_ZERO with NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%010a %d", NaN (), 33, 44, 55);
+ my_snprintf (result, sizeof (result), "%050a %d", NaNd (), 33, 44, 55);
/* "0000000nan 33" is not a valid result; see
*/
- ASSERT (strcmp (result, " nan 33") == 0);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -399,8 +444,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%La %d", -0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "-0x0p+0 33") == 0);
+ my_snprintf (result, sizeof (result), "%La %d", -zerol, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0x0p+0 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -423,10 +469,99 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%La %d", 0.0L / 0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%La %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
+#if CHECK_PRINTF_SAFE && ((defined __ia64 && LDBL_MANT_DIG == 64) || (defined __x86_64__ || defined __amd64__) || (defined __i386 || defined __i386__ || defined _I386 || defined _M_IX86 || defined _X86_))
+ { /* Quiet NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0xC3333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ {
+ /* Signalling NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ /* The isnanl function should recognize Pseudo-NaNs, Pseudo-Infinities,
+ Pseudo-Zeroes, Unnormalized Numbers, and Pseudo-Denormals, as defined in
+ Intel IA-64 Architecture Software Developer's Manual, Volume 1:
+ Application Architecture.
+ Table 5-2 "Floating-Point Register Encodings"
+ Figure 5-6 "Memory to Floating-Point Register Data Translation"
+ */
+ { /* Pseudo-NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x40000001, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Infinity. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Zero. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4004, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Unnormalized number. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4000, 0x63333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Denormal. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x0000, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%La %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#endif
{ /* Rounding near the decimal point. */
char result[100];
@@ -619,10 +754,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* FLAG_ZERO with NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%010La %d", 0.0L / 0.0L, 33, 44, 55);
+ my_snprintf (result, sizeof (result), "%050La %d", NaNl (), 33, 44, 55);
/* "0000000nan 33" is not a valid result; see
*/
- ASSERT (strcmp (result, " nan 33") == 0);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -752,8 +889,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%f %d", -0.0, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000 33") == 0);
+ my_snprintf (result, sizeof (result), "%f %d", -zerod, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -778,8 +916,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%f %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%f %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -787,7 +927,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%10f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, " 1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -796,7 +935,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%-10f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -805,7 +943,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%+f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "+1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -814,7 +951,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "% f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, " 1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -823,7 +959,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -832,7 +967,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.f %d", 1.75, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "2. 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -857,8 +991,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* FLAG_ZERO with NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015f %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050f %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -870,6 +1006,22 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
ASSERT (retval == strlen (result));
}
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2f %d", 999.951, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2f %d", 999.996, 33, 44, 55);
+ ASSERT (strcmp (result, "1000.00 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
{ /* A positive number. */
char result[100];
int retval =
@@ -994,8 +1146,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Lf %d", -0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000 33") == 0);
+ my_snprintf (result, sizeof (result), "%Lf %d", -zerol, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1018,19 +1171,106 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Lf %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%Lf %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#if CHECK_PRINTF_SAFE && ((defined __ia64 && LDBL_MANT_DIG == 64) || (defined __x86_64__ || defined __amd64__) || (defined __i386 || defined __i386__ || defined _I386 || defined _M_IX86 || defined _X86_))
+ { /* Quiet NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0xC3333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ {
+ /* Signalling NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ /* The isnanl function should recognize Pseudo-NaNs, Pseudo-Infinities,
+ Pseudo-Zeroes, Unnormalized Numbers, and Pseudo-Denormals, as defined in
+ Intel IA-64 Architecture Software Developer's Manual, Volume 1:
+ Application Architecture.
+ Table 5-2 "Floating-Point Register Encodings"
+ Figure 5-6 "Memory to Floating-Point Register Data Translation"
+ */
+ { /* Pseudo-NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x40000001, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Infinity. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
+ { /* Pseudo-Zero. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4004, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Unnormalized number. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4000, 0x63333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Denormal. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x0000, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lf %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#endif
{ /* Width. */
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%10Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, " 1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1039,7 +1279,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%-10Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1048,7 +1287,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%+Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "+1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1057,7 +1295,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "% Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, " 1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1066,7 +1303,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "1.750000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1075,7 +1311,6 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.Lf %d", 1.75L, 33, 44, 55);
- ASSERT (result != NULL);
ASSERT (strcmp (result, "2. 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1098,11 +1333,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* FLAG_ZERO with NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015Lf %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050Lf %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1114,6 +1350,22 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
ASSERT (retval == strlen (result));
}
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2Lf %d", 999.951L, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2Lf %d", 999.996L, 33, 44, 55);
+ ASSERT (strcmp (result, "1000.00 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
/* Test the support of the %F format directive. */
{ /* A positive number. */
@@ -1151,8 +1403,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%F %d", -0.0, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000 33") == 0);
+ my_snprintf (result, sizeof (result), "%F %d", -zerod, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1177,8 +1430,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%F %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, "NAN 33") == 0);
+ my_snprintf (result, sizeof (result), "%F %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 1)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1207,6 +1462,22 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
ASSERT (retval == strlen (result));
}
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2F %d", 999.951, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2F %d", 999.996, 33, 44, 55);
+ ASSERT (strcmp (result, "1000.00 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
{ /* A positive number. */
char result[100];
int retval =
@@ -1242,8 +1513,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%LF %d", -0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000 33") == 0);
+ my_snprintf (result, sizeof (result), "%LF %d", -zerol, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1266,11 +1538,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%LF %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, "NAN 33") == 0);
+ my_snprintf (result, sizeof (result), "%LF %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 1)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1299,13 +1572,30 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
ASSERT (retval == strlen (result));
}
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2LF %d", 999.951L, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.2LF %d", 999.996L, 33, 44, 55);
+ ASSERT (strcmp (result, "1000.00 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
/* Test the support of the %e format directive. */
{ /* A positive number. */
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%e %d", 12.75, 33, 44, 55);
- ASSERT (strcmp (result, "1.275000e+01 33") == 0);
+ ASSERT (strcmp (result, "1.275000e+01 33") == 0
+ || strcmp (result, "1.275000e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1313,7 +1603,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%e %d", 1234567.0, 33, 44, 55);
- ASSERT (strcmp (result, "1.234567e+06 33") == 0);
+ ASSERT (strcmp (result, "1.234567e+06 33") == 0
+ || strcmp (result, "1.234567e+006 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1401,7 +1692,15 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%e", data[k].value);
- ASSERT (strmatch (data[k].string, result));
+ const char *expected = data[k].string;
+ ASSERT (strcmp (result, expected) == 0
+ /* Some implementations produce exponents with 3 digits. */
+ || (strlen (result) == strlen (expected) + 1
+ && memcmp (result, expected, strlen (expected) - 2) == 0
+ && result[strlen (expected) - 2] == '0'
+ && strcmp (result + strlen (expected) - 1,
+ expected + strlen (expected) - 2)
+ == 0));
ASSERT (retval == strlen (result));
}
}
@@ -1410,7 +1709,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%e %d", -0.03125, 33, 44, 55);
- ASSERT (strcmp (result, "-3.125000e-02 33") == 0);
+ ASSERT (strcmp (result, "-3.125000e-02 33") == 0
+ || strcmp (result, "-3.125000e-002 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1418,15 +1718,18 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%e %d", 0.0, 33, 44, 55);
- ASSERT (strcmp (result, "0.000000e+00 33") == 0);
+ ASSERT (strcmp (result, "0.000000e+00 33") == 0
+ || strcmp (result, "0.000000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%e %d", -0.0, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000e+00 33") == 0);
+ my_snprintf (result, sizeof (result), "%e %d", -zerod, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000e+00 33") == 0
+ || strcmp (result, "-0.000000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1451,8 +1754,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%e %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%e %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1460,7 +1765,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%15e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, " 1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, " 1.750000e+00 33") == 0
+ || strcmp (result, " 1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1468,7 +1774,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%-15e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, "1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "1.750000e+00 33") == 0
+ || strcmp (result, "1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1476,7 +1783,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%+e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, "+1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "+1.750000e+00 33") == 0
+ || strcmp (result, "+1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1484,7 +1792,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "% e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, " 1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, " 1.750000e+00 33") == 0
+ || strcmp (result, " 1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1492,7 +1801,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, "1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "1.750000e+00 33") == 0
+ || strcmp (result, "1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1500,7 +1810,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.e %d", 1.75, 33, 44, 55);
- ASSERT (strcmp (result, "2.e+00 33") == 0);
+ ASSERT (strcmp (result, "2.e+00 33") == 0
+ || strcmp (result, "2.e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1508,7 +1819,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.e %d", 9.75, 33, 44, 55);
- ASSERT (strcmp (result, "1.e+01 33") == 0);
+ ASSERT (strcmp (result, "1.e+01 33") == 0
+ || strcmp (result, "1.e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1516,7 +1828,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%015e %d", 1234.0, 33, 44, 55);
- ASSERT (strcmp (result, "0001.234000e+03 33") == 0);
+ ASSERT (strcmp (result, "0001.234000e+03 33") == 0
+ || strcmp (result, "001.234000e+003 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1532,8 +1845,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* FLAG_ZERO with NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015e %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050e %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1541,7 +1856,26 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%.e %d", 1234.0, 33, 44, 55);
- ASSERT (strcmp (result, "1e+03 33") == 0);
+ ASSERT (strcmp (result, "1e+03 33") == 0
+ || strcmp (result, "1e+003 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4e %d", 999.951, 33, 44, 55);
+ ASSERT (strcmp (result, "9.9995e+02 33") == 0
+ || strcmp (result, "9.9995e+002 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4e %d", 999.996, 33, 44, 55);
+ ASSERT (strcmp (result, "1.0000e+03 33") == 0
+ || strcmp (result, "1.0000e+003 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1549,7 +1883,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Le %d", 12.75L, 33, 44, 55);
- ASSERT (strcmp (result, "1.275000e+01 33") == 0);
+ ASSERT (strcmp (result, "1.275000e+01 33") == 0
+ || strcmp (result, "1.275000e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1557,7 +1892,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Le %d", 1234567.0L, 33, 44, 55);
- ASSERT (strcmp (result, "1.234567e+06 33") == 0);
+ ASSERT (strcmp (result, "1.234567e+06 33") == 0
+ || strcmp (result, "1.234567e+006 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1645,7 +1981,15 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Le", data[k].value);
- ASSERT (strmatch (data[k].string, result));
+ const char *expected = data[k].string;
+ ASSERT (strcmp (result, expected) == 0
+ /* Some implementations produce exponents with 3 digits. */
+ || (strlen (result) == strlen (expected) + 1
+ && memcmp (result, expected, strlen (expected) - 2) == 0
+ && result[strlen (expected) - 2] == '0'
+ && strcmp (result + strlen (expected) - 1,
+ expected + strlen (expected) - 2)
+ == 0));
ASSERT (retval == strlen (result));
}
}
@@ -1654,7 +1998,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Le %d", -0.03125L, 33, 44, 55);
- ASSERT (strcmp (result, "-3.125000e-02 33") == 0);
+ ASSERT (strcmp (result, "-3.125000e-02 33") == 0
+ || strcmp (result, "-3.125000e-002 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1662,15 +2007,18 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Le %d", 0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "0.000000e+00 33") == 0);
+ ASSERT (strcmp (result, "0.000000e+00 33") == 0
+ || strcmp (result, "0.000000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Le %d", -0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "-0.000000e+00 33") == 0);
+ my_snprintf (result, sizeof (result), "%Le %d", -zerol, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0.000000e+00 33") == 0
+ || strcmp (result, "-0.000000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1693,19 +2041,108 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Le %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%Le %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
+#if CHECK_PRINTF_SAFE && ((defined __ia64 && LDBL_MANT_DIG == 64) || (defined __x86_64__ || defined __amd64__) || (defined __i386 || defined __i386__ || defined _I386 || defined _M_IX86 || defined _X86_))
+ { /* Quiet NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0xC3333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ {
+ /* Signalling NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ /* The isnanl function should recognize Pseudo-NaNs, Pseudo-Infinities,
+ Pseudo-Zeroes, Unnormalized Numbers, and Pseudo-Denormals, as defined in
+ Intel IA-64 Architecture Software Developer's Manual, Volume 1:
+ Application Architecture.
+ Table 5-2 "Floating-Point Register Encodings"
+ Figure 5-6 "Memory to Floating-Point Register Data Translation"
+ */
+ { /* Pseudo-NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x40000001, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Infinity. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Zero. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4004, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Unnormalized number. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4000, 0x63333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Denormal. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x0000, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Le %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#endif
{ /* Width. */
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%15Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, " 1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, " 1.750000e+00 33") == 0
+ || strcmp (result, " 1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1713,7 +2150,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%-15Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, "1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "1.750000e+00 33") == 0
+ || strcmp (result, "1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1721,7 +2159,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%+Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, "+1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "+1.750000e+00 33") == 0
+ || strcmp (result, "+1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1729,7 +2168,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "% Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, " 1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, " 1.750000e+00 33") == 0
+ || strcmp (result, " 1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1737,7 +2177,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, "1.750000e+00 33") == 0);
+ ASSERT (strcmp (result, "1.750000e+00 33") == 0
+ || strcmp (result, "1.750000e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1745,7 +2186,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.Le %d", 1.75L, 33, 44, 55);
- ASSERT (strcmp (result, "2.e+00 33") == 0);
+ ASSERT (strcmp (result, "2.e+00 33") == 0
+ || strcmp (result, "2.e+000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1753,7 +2195,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.Le %d", 9.75L, 33, 44, 55);
- ASSERT (strcmp (result, "1.e+01 33") == 0);
+ ASSERT (strcmp (result, "1.e+01 33") == 0
+ || strcmp (result, "1.e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1761,7 +2204,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%015Le %d", 1234.0L, 33, 44, 55);
- ASSERT (strcmp (result, "0001.234000e+03 33") == 0);
+ ASSERT (strcmp (result, "0001.234000e+03 33") == 0
+ || strcmp (result, "001.234000e+003 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1775,11 +2219,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* FLAG_ZERO with NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015Le %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050Le %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1787,7 +2232,26 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%.Le %d", 1234.0L, 33, 44, 55);
- ASSERT (strcmp (result, "1e+03 33") == 0);
+ ASSERT (strcmp (result, "1e+03 33") == 0
+ || strcmp (result, "1e+003 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4Le %d", 999.951L, 33, 44, 55);
+ ASSERT (strcmp (result, "9.9995e+02 33") == 0
+ || strcmp (result, "9.9995e+002 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4Le %d", 999.996L, 33, 44, 55);
+ ASSERT (strcmp (result, "1.0000e+03 33") == 0
+ || strcmp (result, "1.0000e+003 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1805,7 +2269,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%g %d", 1234567.0, 33, 44, 55);
- ASSERT (strcmp (result, "1.23457e+06 33") == 0);
+ ASSERT (strcmp (result, "1.23457e+06 33") == 0
+ || strcmp (result, "1.23457e+006 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1893,7 +2358,16 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%g", data[k].value);
- ASSERT (strmatch (data[k].string, result));
+ const char *expected = data[k].string;
+ ASSERT (strcmp (result, expected) == 0
+ /* Some implementations produce exponents with 3 digits. */
+ || (expected[strlen (expected) - 4] == 'e'
+ && strlen (result) == strlen (expected) + 1
+ && memcmp (result, expected, strlen (expected) - 2) == 0
+ && result[strlen (expected) - 2] == '0'
+ && strcmp (result + strlen (expected) - 1,
+ expected + strlen (expected) - 2)
+ == 0));
ASSERT (retval == strlen (result));
}
}
@@ -1917,8 +2391,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%g %d", -0.0, 33, 44, 55);
- ASSERT (strcmp (result, "-0 33") == 0);
+ my_snprintf (result, sizeof (result), "%g %d", -zerod, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -1943,8 +2418,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%g %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%g %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2000,7 +2477,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.g %d", 9.75, 33, 44, 55);
- ASSERT (strcmp (result, "1.e+01 33") == 0);
+ ASSERT (strcmp (result, "1.e+01 33") == 0
+ || strcmp (result, "1.e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2024,8 +2502,10 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* FLAG_ZERO with NaN. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015g %d", NaN (), 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050g %d", NaNd (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2033,7 +2513,24 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%.g %d", 1234.0, 33, 44, 55);
- ASSERT (strcmp (result, "1e+03 33") == 0);
+ ASSERT (strcmp (result, "1e+03 33") == 0
+ || strcmp (result, "1e+003 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.5g %d", 999.951, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.5g %d", 999.996, 33, 44, 55);
+ ASSERT (strcmp (result, "1000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2049,7 +2546,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Lg %d", 1234567.0L, 33, 44, 55);
- ASSERT (strcmp (result, "1.23457e+06 33") == 0);
+ ASSERT (strcmp (result, "1.23457e+06 33") == 0
+ || strcmp (result, "1.23457e+006 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2137,7 +2635,16 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%Lg", data[k].value);
- ASSERT (strmatch (data[k].string, result));
+ const char *expected = data[k].string;
+ ASSERT (strcmp (result, expected) == 0
+ /* Some implementations produce exponents with 3 digits. */
+ || (expected[strlen (expected) - 4] == 'e'
+ && strlen (result) == strlen (expected) + 1
+ && memcmp (result, expected, strlen (expected) - 2) == 0
+ && result[strlen (expected) - 2] == '0'
+ && strcmp (result + strlen (expected) - 1,
+ expected + strlen (expected) - 2)
+ == 0));
ASSERT (retval == strlen (result));
}
}
@@ -2161,8 +2668,9 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
{ /* Negative zero. */
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Lg %d", -0.0L, 33, 44, 55);
- ASSERT (strcmp (result, "-0 33") == 0);
+ my_snprintf (result, sizeof (result), "%Lg %d", -zerol, 33, 44, 55);
+ if (have_minus_zero ())
+ ASSERT (strcmp (result, "-0 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2185,13 +2693,101 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%Lg %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, "nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%Lg %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#if CHECK_PRINTF_SAFE && ((defined __ia64 && LDBL_MANT_DIG == 64) || (defined __x86_64__ || defined __amd64__) || (defined __i386 || defined __i386__ || defined _I386 || defined _M_IX86 || defined _X86_))
+ { /* Quiet NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0xC3333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ {
+ /* Signalling NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ /* The isnanl function should recognize Pseudo-NaNs, Pseudo-Infinities,
+ Pseudo-Zeroes, Unnormalized Numbers, and Pseudo-Denormals, as defined in
+ Intel IA-64 Architecture Software Developer's Manual, Volume 1:
+ Application Architecture.
+ Table 5-2 "Floating-Point Register Encodings"
+ Figure 5-6 "Memory to Floating-Point Register Data Translation"
+ */
+ { /* Pseudo-NaN. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x40000001, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Infinity. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0xFFFF, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
+ { /* Pseudo-Zero. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4004, 0x00000000, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Unnormalized number. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x4000, 0x63333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+ { /* Pseudo-Denormal. */
+ static union { unsigned int word[4]; long double value; } x =
+ { LDBL80_WORDS (0x0000, 0x83333333, 0x00000000) };
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%Lg %d", x.value, 33, 44, 55);
+ ASSERT (strlen (result) >= 3 + 3
+ && strisnan (result, 0, strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+#endif
{ /* Width. */
char result[100];
@@ -2245,7 +2841,8 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%#.Lg %d", 9.75L, 33, 44, 55);
- ASSERT (strcmp (result, "1.e+01 33") == 0);
+ ASSERT (strcmp (result, "1.e+01 33") == 0
+ || strcmp (result, "1.e+001 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2267,11 +2864,12 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
}
{ /* FLAG_ZERO with NaN. */
- static long double zero = 0.0L;
char result[100];
int retval =
- my_snprintf (result, sizeof (result), "%015Lg %d", zero / zero, 33, 44, 55);
- ASSERT (strcmp (result, " nan 33") == 0);
+ my_snprintf (result, sizeof (result), "%050Lg %d", NaNl (), 33, 44, 55);
+ ASSERT (strlen (result) == 50 + 3
+ && strisnan (result, strspn (result, " "), strlen (result) - 3, 0)
+ && strcmp (result + strlen (result) - 3, " 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2279,7 +2877,24 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
char result[100];
int retval =
my_snprintf (result, sizeof (result), "%.Lg %d", 1234.0L, 33, 44, 55);
- ASSERT (strcmp (result, "1e+03 33") == 0);
+ ASSERT (strcmp (result, "1e+03 33") == 0
+ || strcmp (result, "1e+003 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with no rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.5Lg %d", 999.951L, 33, 44, 55);
+ ASSERT (strcmp (result, "999.95 33") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ { /* Precision with rounding. */
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.5Lg %d", 999.996L, 33, 44, 55);
+ ASSERT (strcmp (result, "1000 33") == 0);
ASSERT (retval == strlen (result));
}
@@ -2314,4 +2929,127 @@ test_function (int (*my_snprintf) (char *, size_t, const char *, ...))
ASSERT (result[strlen (result) - 1] == '9');
ASSERT (retval == strlen (result));
}
+
+ /* Test the support of the left-adjust flag. */
+
+ {
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "a%*sc", -3, "b");
+ ASSERT (strcmp (result, "ab c") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "a%-*sc", 3, "b");
+ ASSERT (strcmp (result, "ab c") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[100];
+ int retval =
+ my_snprintf (result, sizeof (result), "a%-*sc", -3, "b");
+ ASSERT (strcmp (result, "ab c") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ /* Test the support of large precision. */
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4000d %d", 1234567, 99);
+ size_t i;
+ for (i = 0; i < 4000 - 7; i++)
+ ASSERT (result[i] == '0');
+ ASSERT (strcmp (result + 4000 - 7, "1234567 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.*d %d", 4000, 1234567, 99);
+ size_t i;
+ for (i = 0; i < 4000 - 7; i++)
+ ASSERT (result[i] == '0');
+ ASSERT (strcmp (result + 4000 - 7, "1234567 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4000d %d", -1234567, 99);
+ size_t i;
+ ASSERT (result[0] == '-');
+ for (i = 0; i < 4000 - 7; i++)
+ ASSERT (result[1 + i] == '0');
+ ASSERT (strcmp (result + 1 + 4000 - 7, "1234567 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4000u %d", 1234567, 99);
+ size_t i;
+ for (i = 0; i < 4000 - 7; i++)
+ ASSERT (result[i] == '0');
+ ASSERT (strcmp (result + 4000 - 7, "1234567 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4000o %d", 1234567, 99);
+ size_t i;
+ for (i = 0; i < 4000 - 7; i++)
+ ASSERT (result[i] == '0');
+ ASSERT (strcmp (result + 4000 - 7, "4553207 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%.4000x %d", 1234567, 99);
+ size_t i;
+ for (i = 0; i < 4000 - 6; i++)
+ ASSERT (result[i] == '0');
+ ASSERT (strcmp (result + 4000 - 6, "12d687 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char result[5000];
+ int retval =
+ my_snprintf (result, sizeof (result), "%#.4000x %d", 1234567, 99);
+ size_t i;
+ ASSERT (result[0] == '0');
+ ASSERT (result[1] == 'x');
+ for (i = 0; i < 4000 - 6; i++)
+ ASSERT (result[2 + i] == '0');
+ ASSERT (strcmp (result + 2 + 4000 - 6, "12d687 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
+
+ {
+ char input[5000];
+ char result[5000];
+ int retval;
+ size_t i;
+
+ for (i = 0; i < sizeof (input) - 1; i++)
+ input[i] = 'a' + ((1000000 / (i + 1)) % 26);
+ input[i] = '\0';
+ retval = my_snprintf (result, sizeof (result), "%.4000s %d", input, 99);
+ ASSERT (memcmp (result, input, 4000) == 0);
+ ASSERT (strcmp (result + 4000, " 99") == 0);
+ ASSERT (retval == strlen (result));
+ }
}