efaa461bd6
Change-Id: I81929355d245ba1e58b4a464ca6cf45915e0238e
336 lines
9.5 KiB
C++
336 lines
9.5 KiB
C++
/*
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* Copyright (C) 2014 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <gtest/gtest.h>
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#include <errno.h>
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#include <limits.h>
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#include <locale.h>
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#include <stdint.h>
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#include <wchar.h>
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TEST(wchar, sizeof_wchar_t) {
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EXPECT_EQ(4U, sizeof(wchar_t));
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EXPECT_EQ(4U, sizeof(wint_t));
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}
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TEST(wchar, mbrlen) {
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char bytes[] = { 'h', 'e', 'l', 'l', 'o', '\0' };
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EXPECT_EQ(0U, mbrlen(&bytes[0], 0, NULL));
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EXPECT_EQ(1U, mbrlen(&bytes[0], 1, NULL));
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EXPECT_EQ(1U, mbrlen(&bytes[4], 1, NULL));
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EXPECT_EQ(0U, mbrlen(&bytes[5], 1, NULL));
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}
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TEST(wchar, wctomb_wcrtomb) {
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// wctomb and wcrtomb behave differently when s == NULL.
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EXPECT_EQ(0, wctomb(NULL, L'h'));
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EXPECT_EQ(0, wctomb(NULL, L'\0'));
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EXPECT_EQ(1U, wcrtomb(NULL, L'\0', NULL));
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EXPECT_EQ(1U, wcrtomb(NULL, L'h', NULL));
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char bytes[MB_LEN_MAX];
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// wctomb and wcrtomb behave similarly for the null wide character.
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EXPECT_EQ(1, wctomb(bytes, L'\0'));
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EXPECT_EQ(1U, wcrtomb(bytes, L'\0', NULL));
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// ...and for regular characters.
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(1, wctomb(bytes, L'h'));
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EXPECT_EQ('h', bytes[0]);
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(1U, wcrtomb(bytes, L'h', NULL));
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EXPECT_EQ('h', bytes[0]);
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ASSERT_STREQ("C.UTF-8", setlocale(LC_CTYPE, "C.UTF-8"));
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uselocale(LC_GLOBAL_LOCALE);
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// 1-byte UTF-8.
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(1U, wcrtomb(bytes, L'h', NULL));
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EXPECT_EQ('h', bytes[0]);
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// 2-byte UTF-8.
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(2U, wcrtomb(bytes, 0x00a2, NULL));
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EXPECT_EQ('\xc2', bytes[0]);
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EXPECT_EQ('\xa2', bytes[1]);
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// 3-byte UTF-8.
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(3U, wcrtomb(bytes, 0x20ac, NULL));
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EXPECT_EQ('\xe2', bytes[0]);
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EXPECT_EQ('\x82', bytes[1]);
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EXPECT_EQ('\xac', bytes[2]);
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// 4-byte UTF-8.
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memset(bytes, 0, sizeof(bytes));
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EXPECT_EQ(4U, wcrtomb(bytes, 0x24b62, NULL));
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EXPECT_EQ('\xf0', bytes[0]);
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EXPECT_EQ('\xa4', bytes[1]);
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EXPECT_EQ('\xad', bytes[2]);
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EXPECT_EQ('\xa2', bytes[3]);
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// Invalid code point.
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EXPECT_EQ(static_cast<size_t>(-1), wcrtomb(bytes, 0xffffffff, NULL));
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EXPECT_EQ(EILSEQ, errno);
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}
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TEST(wchar, wcstombs_wcrtombs) {
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const wchar_t chars[] = { L'h', L'e', L'l', L'l', L'o', 0 };
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const wchar_t bad_chars[] = { L'h', L'i', static_cast<wchar_t>(0xffffffff), 0 };
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const wchar_t* src;
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char bytes[BUFSIZ];
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// Given a NULL destination, these functions count valid characters.
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EXPECT_EQ(5U, wcstombs(NULL, chars, 0));
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EXPECT_EQ(5U, wcstombs(NULL, chars, 4));
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EXPECT_EQ(5U, wcstombs(NULL, chars, 256));
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src = chars;
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EXPECT_EQ(5U, wcsrtombs(NULL, &src, 0, NULL));
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EXPECT_EQ(&chars[0], src);
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src = chars;
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EXPECT_EQ(5U, wcsrtombs(NULL, &src, 4, NULL));
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EXPECT_EQ(&chars[0], src);
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src = chars;
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EXPECT_EQ(5U, wcsrtombs(NULL, &src, 256, NULL));
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EXPECT_EQ(&chars[0], src);
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// An unrepresentable char just returns an error from wcstombs...
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errno = 0;
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EXPECT_EQ(static_cast<size_t>(-1), wcstombs(NULL, bad_chars, 0));
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EXPECT_EQ(EILSEQ, errno);
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errno = 0;
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EXPECT_EQ(static_cast<size_t>(-1), wcstombs(NULL, bad_chars, 256));
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EXPECT_EQ(EILSEQ, errno);
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// And wcsrtombs doesn't tell us where it got stuck because we didn't ask it
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// to actually convert anything...
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errno = 0;
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src = bad_chars;
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EXPECT_EQ(static_cast<size_t>(-1), wcsrtombs(NULL, &src, 0, NULL));
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EXPECT_EQ(&bad_chars[0], src);
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EXPECT_EQ(EILSEQ, errno);
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errno = 0;
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src = bad_chars;
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EXPECT_EQ(static_cast<size_t>(-1), wcsrtombs(NULL, &src, 256, NULL));
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EXPECT_EQ(&bad_chars[0], src);
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EXPECT_EQ(EILSEQ, errno);
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// Okay, now let's test actually converting something...
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memset(bytes, 'x', sizeof(bytes));
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EXPECT_EQ(0U, wcstombs(bytes, chars, 0));
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memset(bytes, 'x', sizeof(bytes));
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EXPECT_EQ(4U, wcstombs(bytes, chars, 4));
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bytes[5] = 0;
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EXPECT_STREQ("hellx", bytes);
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memset(bytes, 'x', sizeof(bytes));
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EXPECT_EQ(5U, wcstombs(bytes, chars, 256));
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EXPECT_STREQ("hello", bytes);
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memset(bytes, 'x', sizeof(bytes));
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EXPECT_EQ(5U, wcstombs(bytes, chars, 6));
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EXPECT_STREQ("hello", bytes);
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errno = 0;
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memset(bytes, 'x', sizeof(bytes));
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EXPECT_EQ(static_cast<size_t>(-1), wcstombs(bytes, bad_chars, 256));
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EXPECT_EQ(EILSEQ, errno);
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bytes[3] = 0;
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EXPECT_STREQ("hix", bytes);
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// wcsrtombs is a bit more informative...
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memset(bytes, 'x', sizeof(bytes));
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src = chars;
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EXPECT_EQ(0U, wcsrtombs(bytes, &src, 0, NULL));
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EXPECT_EQ(&chars[0], src); // No input consumed.
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EXPECT_EQ(EILSEQ, errno);
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memset(bytes, 'x', sizeof(bytes));
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src = chars;
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EXPECT_EQ(4U, wcsrtombs(bytes, &src, 4, NULL));
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EXPECT_EQ(&chars[4], src); // Some input consumed.
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EXPECT_EQ(EILSEQ, errno);
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bytes[5] = 0;
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EXPECT_STREQ("hellx", bytes);
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memset(bytes, 'x', sizeof(bytes));
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src = chars;
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EXPECT_EQ(5U, wcsrtombs(bytes, &src, 256, NULL));
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EXPECT_EQ(NULL, src); // All input consumed!
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EXPECT_EQ(EILSEQ, errno);
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EXPECT_STREQ("hello", bytes);
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memset(bytes, 'x', sizeof(bytes));
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src = chars;
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EXPECT_EQ(5U, wcsrtombs(bytes, &src, 6, NULL));
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EXPECT_EQ(NULL, src); // All input consumed.
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EXPECT_EQ(EILSEQ, errno);
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EXPECT_STREQ("hello", bytes);
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memset(bytes, 'x', sizeof(bytes));
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src = bad_chars;
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EXPECT_EQ(static_cast<size_t>(-1), wcsrtombs(bytes, &src, 256, NULL));
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EXPECT_EQ(&bad_chars[2], src);
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EXPECT_EQ(EILSEQ, errno);
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bytes[3] = 0;
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EXPECT_STREQ("hix", bytes);
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}
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TEST(wchar, limits) {
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ASSERT_LT(WCHAR_MIN, WCHAR_MAX);
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}
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TEST(wchar, wcsstr_wcswcs) {
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const wchar_t* haystack = L"matches hello world, not the second hello world";
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const wchar_t* empty_needle = L"";
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const wchar_t* good_needle = L"ll";
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const wchar_t* bad_needle = L"wort";
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ASSERT_EQ(haystack, wcsstr(haystack, empty_needle));
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ASSERT_EQ(&haystack[10], wcsstr(haystack, good_needle));
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ASSERT_EQ(NULL, wcsstr(haystack, bad_needle));
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ASSERT_EQ(haystack, wcswcs(haystack, empty_needle));
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ASSERT_EQ(&haystack[10], wcswcs(haystack, good_needle));
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ASSERT_EQ(NULL, wcswcs(haystack, bad_needle));
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}
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TEST(wchar, mbtowc) {
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wchar_t out[8];
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out[0] = 'x';
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ASSERT_EQ(0, mbtowc(out, "hello", 0));
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ASSERT_EQ('x', out[0]);
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ASSERT_EQ(0, mbtowc(out, "hello", 0));
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ASSERT_EQ(0, mbtowc(out, "", 0));
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ASSERT_EQ(1, mbtowc(out, "hello", 1));
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ASSERT_EQ(L'h', out[0]);
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ASSERT_EQ(0, mbtowc(NULL, "hello", 0));
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ASSERT_EQ(0, mbtowc(NULL, "", 0));
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ASSERT_EQ(1, mbtowc(NULL, "hello", 1));
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ASSERT_EQ(0, mbtowc(NULL, NULL, 0));
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}
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TEST(wchar, mbrtowc) {
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wchar_t out[8];
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out[0] = 'x';
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ASSERT_EQ(0U, mbrtowc(out, "hello", 0, NULL));
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ASSERT_EQ('x', out[0]);
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ASSERT_EQ(0U, mbrtowc(out, "hello", 0, NULL));
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ASSERT_EQ(0U, mbrtowc(out, "", 0, NULL));
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ASSERT_EQ(1U, mbrtowc(out, "hello", 1, NULL));
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ASSERT_EQ(L'h', out[0]);
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ASSERT_EQ(0U, mbrtowc(NULL, "hello", 0, NULL));
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ASSERT_EQ(0U, mbrtowc(NULL, "", 0, NULL));
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ASSERT_EQ(1U, mbrtowc(NULL, "hello", 1, NULL));
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ASSERT_EQ(0U, mbrtowc(NULL, NULL, 0, NULL));
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ASSERT_STREQ("C.UTF-8", setlocale(LC_CTYPE, "C.UTF-8"));
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uselocale(LC_GLOBAL_LOCALE);
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// 1-byte UTF-8.
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ASSERT_EQ(1U, mbrtowc(out, "abcdef", 6, NULL));
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ASSERT_EQ(L'a', out[0]);
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// 2-byte UTF-8.
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ASSERT_EQ(2U, mbrtowc(out, "\xc2\xa2" "cdef", 6, NULL));
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ASSERT_EQ(0x00a2, out[0]);
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// 3-byte UTF-8.
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ASSERT_EQ(3U, mbrtowc(out, "\xe2\x82\xac" "def", 6, NULL));
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ASSERT_EQ(0x20ac, out[0]);
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// 4-byte UTF-8.
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ASSERT_EQ(4U, mbrtowc(out, "\xf0\xa4\xad\xa2" "ef", 6, NULL));
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ASSERT_EQ(0x24b62, out[0]);
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#if __BIONIC__ // glibc allows this.
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// Illegal 5-byte UTF-8.
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ASSERT_EQ(static_cast<size_t>(-1), mbrtowc(out, "\xf8\xa1\xa2\xa3\xa4" "f", 6, NULL));
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ASSERT_EQ(EILSEQ, errno);
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#endif
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// Illegal over-long sequence.
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ASSERT_EQ(static_cast<size_t>(-1), mbrtowc(out, "\xf0\x82\x82\xac" "ef", 6, NULL));
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ASSERT_EQ(EILSEQ, errno);
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}
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TEST(wchar, wcstod) {
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ASSERT_DOUBLE_EQ(1.23, wcstod(L"1.23", NULL));
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}
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TEST(wchar, wcstof) {
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ASSERT_FLOAT_EQ(1.23f, wcstof(L"1.23", NULL));
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}
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TEST(wchar, wcstol) {
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ASSERT_EQ(123L, wcstol(L"123", NULL, 0));
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}
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TEST(wchar, wcstoll) {
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ASSERT_EQ(123LL, wcstol(L"123", NULL, 0));
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}
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TEST(wchar, wcstold) {
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ASSERT_DOUBLE_EQ(1.23L, wcstold(L"1.23", NULL));
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}
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TEST(wchar, wcstoul) {
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ASSERT_EQ(123UL, wcstoul(L"123", NULL, 0));
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}
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TEST(wchar, wcstoull) {
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ASSERT_EQ(123ULL, wcstoul(L"123", NULL, 0));
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}
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TEST(wchar, mbsnrtowcs) {
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wchar_t dst[128];
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const char* s = "hello, world!";
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const char* src;
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memset(dst, 0, sizeof(dst));
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src = s;
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ASSERT_EQ(0U, mbsnrtowcs(dst, &src, 0, 0, NULL));
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memset(dst, 0, sizeof(dst));
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src = s;
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ASSERT_EQ(2U, mbsnrtowcs(dst, &src, 2, 123, NULL)); // glibc chokes on SIZE_MAX here.
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ASSERT_EQ(L'h', dst[0]);
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ASSERT_EQ(L'e', dst[1]);
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ASSERT_EQ(&s[2], src);
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memset(dst, 0, sizeof(dst));
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src = s;
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ASSERT_EQ(3U, mbsnrtowcs(dst, &src, SIZE_MAX, 3, NULL));
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ASSERT_EQ(L'h', dst[0]);
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ASSERT_EQ(L'e', dst[1]);
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ASSERT_EQ(L'l', dst[2]);
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ASSERT_EQ(&s[3], src);
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}
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TEST(wchar, wcsftime) {
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setenv("TZ", "UTC", 1);
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struct tm t;
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memset(&t, 0, sizeof(tm));
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t.tm_year = 200;
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t.tm_mon = 2;
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t.tm_mday = 10;
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wchar_t buf[64];
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EXPECT_EQ(24U, wcsftime(buf, sizeof(buf), L"%c", &t));
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EXPECT_STREQ(L"Sun Mar 10 00:00:00 2100", buf);
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}
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