mirror of
https://github.com/KolibriOS/kolibrios.git
synced 2024-12-04 22:32:05 +03:00
ace23ebbe2
git-svn-id: svn://kolibrios.org@6433 a494cfbc-eb01-0410-851d-a64ba20cac60
189 lines
5.2 KiB
C
189 lines
5.2 KiB
C
#ifndef _XOPEN_SOURCE
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#define _XOPEN_SOURCE 700
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#endif
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#include <stdio.h>
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#include <string.h>
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//#include <errno.h>
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//#include <limits.h>
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#include <math.h>
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#include "test.h"
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#define DISABLE_SLOW_TESTS
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#define TEST(r, f, x, m) ( \
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((r) = (f)) == (x) || \
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(t_error("%s failed (" m ")\n", #f, r, x), 0) )
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#define TEST_S(s, x, m) ( \
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!strcmp((s),(x)) || \
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(t_error("[%s] != [%s] (%s)\n", s, x, m), 0) )
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static const struct {
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const char *fmt;
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int i;
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const char *expect;
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} int_tests[] = {
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/* width, precision, alignment */
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{ "%04d", 12, "0012" },
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{ "%.3d", 12, "012" },
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{ "%3d", 12, " 12" },
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{ "%-3d", 12, "12 " },
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{ "%+3d", 12, "+12" },
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{ "%+-5d", 12, "+12 " },
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{ "%+- 5d", 12, "+12 " },
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{ "%- 5d", 12, " 12 " },
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{ "% d", 12, " 12" },
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{ "%0-5d", 12, "12 " },
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{ "%-05d", 12, "12 " },
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/* ...explicit precision of 0 shall be no characters. */
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{ "%.0d", 0, "" },
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{ "%.0o", 0, "" },
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{ "%#.0d", 0, "" },
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{ "%#.0o", 0, "" },
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{ "%#.0x", 0, "" },
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/* ...but it still has to honor width and flags. */
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{ "%2.0u", 0, " " },
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{ "%02.0u", 0, " " },
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{ "%2.0d", 0, " " },
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{ "%02.0d", 0, " " },
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{ "% .0d", 0, " " },
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{ "%+.0d", 0, "+" },
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/* hex: test alt form and case */
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{ "%x", 63, "3f" },
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{ "%#x", 63, "0x3f" },
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{ "%X", 63, "3F" },
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/* octal: test alt form */
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{ "%o", 15, "17" },
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{ "%#o", 15, "017" },
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{ NULL, 0.0, NULL }
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};
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static const struct {
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const char *fmt;
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double f;
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const char *expect;
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} fp_tests[] = {
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/* basic form, handling of exponent/precision for 0 */
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{ "%a", 0.0, "0x0p+0" },
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{ "%e", 0.0, "0.000000e+00" },
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{ "%f", 0.0, "0.000000" },
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{ "%g", 0.0, "0" },
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{ "%#g", 0.0, "0.00000" },
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{ "%la", 0.0, "0x0p+0" },
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{ "%le", 0.0, "0.000000e+00" },
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{ "%lf", 0.0, "0.000000" },
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{ "%lg", 0.0, "0" },
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{ "%#lg", 0.0, "0.00000" },
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/* rounding */
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{ "%f", 1.1, "1.100000" },
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{ "%f", 1.2, "1.200000" },
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{ "%f", 1.3, "1.300000" },
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{ "%f", 1.4, "1.400000" },
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{ "%f", 1.5, "1.500000" },
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{ "%.4f", 1.06125, "1.0613" }, /* input is not representible exactly as double */
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{ "%.4f", 1.03125, "1.0312" }, /* 0x1.08p0 */
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{ "%.2f", 1.375, "1.38" },
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{ "%.1f", 1.375, "1.4" },
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{ "%.1lf", 1.375, "1.4" },
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{ "%.15f", 1.1, "1.100000000000000" },
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{ "%.16f", 1.1, "1.1000000000000001" },
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{ "%.17f", 1.1, "1.10000000000000009" },
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{ "%.2e", 1500001.0, "1.50e+06" },
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{ "%.2e", 1505000.0, "1.50e+06" },
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{ "%.2e", 1505000.00000095367431640625, "1.51e+06" },
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{ "%.2e", 1505001.0, "1.51e+06" },
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{ "%.2e", 1506000.0, "1.51e+06" },
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/* correctness in DBL_DIG places */
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{ "%.15g", 1.23456789012345, "1.23456789012345" },
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/* correct choice of notation for %g */
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{ "%g", 0.0001, "0.0001" },
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{ "%g", 0.00001, "1e-05" },
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{ "%g", 123456, "123456" },
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{ "%g", 1234567, "1.23457e+06" },
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{ "%.7g", 1234567, "1234567" },
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{ "%.7g", 12345678, "1.234568e+07" },
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{ "%.8g", 0.1, "0.1" },
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{ "%.9g", 0.1, "0.1" },
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{ "%.10g", 0.1, "0.1" },
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{ "%.11g", 0.1, "0.1" },
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/* pi in double precision, printed to a few extra places */
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{ "%.15f", M_PI, "3.141592653589793" },
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{ "%.18f", M_PI, "3.141592653589793116" },
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/* exact conversion of large integers */
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{ "%.0f", 340282366920938463463374607431768211456.0,
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"340282366920938463463374607431768211456" },
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{ NULL, 0.0, NULL }
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};
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int main(void)
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{
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int i, j, k;
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char b[2000];
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TEST(i, snprintf(0, 0, "%d", 123456), 6, "length returned %d != %d");
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TEST(i, snprintf(0, 0, "%.4s", "hello"), 4, "length returned %d != %d");
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TEST(i, snprintf(b, 0, "%.0s", "goodbye"), 0, "length returned %d != %d");
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strcpy(b, "xxxxxxxx");
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TEST(i, snprintf(b, 4, "%d", 123456), 6, "length returned %d != %d");
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TEST_S(b, "123", "incorrect output");
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TEST(i, b[5], 'x', "buffer overrun");
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/* Perform ascii arithmetic to test printing tiny doubles */
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TEST(i, snprintf(b, sizeof b, "%.1022f", 0x1p-1021), 1024, "%d != %d");
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b[1] = '0';
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for (i=0; i<1021; i++) {
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for (k=0, j=1023; j>0; j--) {
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if (b[j]<'5') b[j]+=b[j]-'0'+k, k=0;
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else b[j]+=b[j]-'0'-10+k, k=1;
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}
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}
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TEST(i, b[1], '1', "'%c' != '%c'");
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for (j=2; b[j]=='0'; j++);
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TEST(i, j, 1024, "%d != %d");
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#ifndef DISABLE_SLOW_TESTS
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errno = 0;
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TEST(i, snprintf(NULL, 0, "%.*u", 2147483647, 0), 2147483647, "cannot print max length %d");
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TEST(i, snprintf(NULL, 0, "%.*u ", 2147483647, 0), -1, "integer overflow %d");
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TEST(i, errno, EOVERFLOW, "after overflow: %d != %d");
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#endif
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for (j=0; int_tests[j].fmt; j++) {
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i = snprintf(b, sizeof b, int_tests[j].fmt, int_tests[j].i);
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if (i != strlen(int_tests[j].expect)) {
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t_error("snprintf(b, sizeof b, \"%s\", %d) returned %d wanted %d\n",
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int_tests[j].fmt, int_tests[j].i, i, strlen(int_tests[j].expect));
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}
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if (strcmp(b, int_tests[j].expect) != 0)
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t_error("bad integer conversion fmt[%s]: got \"%s\", want \"%s\"\n", int_tests[j].fmt, b, int_tests[j].expect);
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}
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for (j=0; fp_tests[j].fmt; j++) {
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i = snprintf(b, sizeof b, fp_tests[j].fmt, fp_tests[j].f);
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if (i != strlen(fp_tests[j].expect)) {
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t_error("snprintf(b, sizeof b, \"%s\", %f) returned %d wanted %d\n",
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fp_tests[j].fmt, fp_tests[j].f, i, strlen(fp_tests[j].expect));
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}
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if (strcmp(b, fp_tests[j].expect) != 0)
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t_error("bad floating-point conversion: got \"%s\", want \"%s\"\n", b, fp_tests[j].expect);
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}
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TEST(i, snprintf(0, 0, "%.4a", 1.0), 11, "%d != %d");
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printf("%s finished\n", __FILE__);
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return t_status;
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}
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