fc8dc48020
git-subtree-dir: third_party/abseil_cpp git-subtree-mainline:ffb2ae54be
git-subtree-split:768eb2ca28
361 lines
12 KiB
C++
361 lines
12 KiB
C++
// Copyright 2017 The Abseil Authors.
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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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// https://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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#include "absl/strings/ascii.h"
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#include <cctype>
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#include <clocale>
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#include <cstring>
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#include <string>
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#include "gtest/gtest.h"
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#include "absl/base/macros.h"
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#include "absl/base/port.h"
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namespace {
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TEST(AsciiIsFoo, All) {
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for (int i = 0; i < 256; i++) {
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if ((i >= 'a' && i <= 'z') || (i >= 'A' && i <= 'Z'))
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EXPECT_TRUE(absl::ascii_isalpha(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isalpha(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if ((i >= '0' && i <= '9'))
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EXPECT_TRUE(absl::ascii_isdigit(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isdigit(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (absl::ascii_isalpha(i) || absl::ascii_isdigit(i))
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EXPECT_TRUE(absl::ascii_isalnum(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isalnum(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i != '\0' && strchr(" \r\n\t\v\f", i))
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EXPECT_TRUE(absl::ascii_isspace(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isspace(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i >= 32 && i < 127)
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EXPECT_TRUE(absl::ascii_isprint(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isprint(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (absl::ascii_isprint(i) && !absl::ascii_isspace(i) &&
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!absl::ascii_isalnum(i))
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EXPECT_TRUE(absl::ascii_ispunct(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_ispunct(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i == ' ' || i == '\t')
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EXPECT_TRUE(absl::ascii_isblank(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isblank(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i < 32 || i == 127)
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EXPECT_TRUE(absl::ascii_iscntrl(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_iscntrl(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (absl::ascii_isdigit(i) || (i >= 'A' && i <= 'F') ||
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(i >= 'a' && i <= 'f'))
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EXPECT_TRUE(absl::ascii_isxdigit(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isxdigit(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i > 32 && i < 127)
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EXPECT_TRUE(absl::ascii_isgraph(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isgraph(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i >= 'A' && i <= 'Z')
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EXPECT_TRUE(absl::ascii_isupper(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_isupper(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 256; i++) {
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if (i >= 'a' && i <= 'z')
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EXPECT_TRUE(absl::ascii_islower(i)) << ": failed on " << i;
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else
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EXPECT_TRUE(!absl::ascii_islower(i)) << ": failed on " << i;
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}
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for (int i = 0; i < 128; i++) {
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EXPECT_TRUE(absl::ascii_isascii(i)) << ": failed on " << i;
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}
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for (int i = 128; i < 256; i++) {
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EXPECT_TRUE(!absl::ascii_isascii(i)) << ": failed on " << i;
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}
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// The official is* functions don't accept negative signed chars, but
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// our absl::ascii_is* functions do.
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for (int i = 0; i < 256; i++) {
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signed char sc = static_cast<signed char>(static_cast<unsigned char>(i));
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EXPECT_EQ(absl::ascii_isalpha(i), absl::ascii_isalpha(sc)) << i;
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EXPECT_EQ(absl::ascii_isdigit(i), absl::ascii_isdigit(sc)) << i;
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EXPECT_EQ(absl::ascii_isalnum(i), absl::ascii_isalnum(sc)) << i;
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EXPECT_EQ(absl::ascii_isspace(i), absl::ascii_isspace(sc)) << i;
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EXPECT_EQ(absl::ascii_ispunct(i), absl::ascii_ispunct(sc)) << i;
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EXPECT_EQ(absl::ascii_isblank(i), absl::ascii_isblank(sc)) << i;
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EXPECT_EQ(absl::ascii_iscntrl(i), absl::ascii_iscntrl(sc)) << i;
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EXPECT_EQ(absl::ascii_isxdigit(i), absl::ascii_isxdigit(sc)) << i;
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EXPECT_EQ(absl::ascii_isprint(i), absl::ascii_isprint(sc)) << i;
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EXPECT_EQ(absl::ascii_isgraph(i), absl::ascii_isgraph(sc)) << i;
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EXPECT_EQ(absl::ascii_isupper(i), absl::ascii_isupper(sc)) << i;
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EXPECT_EQ(absl::ascii_islower(i), absl::ascii_islower(sc)) << i;
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EXPECT_EQ(absl::ascii_isascii(i), absl::ascii_isascii(sc)) << i;
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}
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}
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// Checks that absl::ascii_isfoo returns the same value as isfoo in the C
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// locale.
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TEST(AsciiIsFoo, SameAsIsFoo) {
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#ifndef __ANDROID__
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// temporarily change locale to C. It should already be C, but just for safety
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const char* old_locale = setlocale(LC_CTYPE, "C");
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ASSERT_TRUE(old_locale != nullptr);
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#endif
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for (int i = 0; i < 256; i++) {
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EXPECT_EQ(isalpha(i) != 0, absl::ascii_isalpha(i)) << i;
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EXPECT_EQ(isdigit(i) != 0, absl::ascii_isdigit(i)) << i;
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EXPECT_EQ(isalnum(i) != 0, absl::ascii_isalnum(i)) << i;
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EXPECT_EQ(isspace(i) != 0, absl::ascii_isspace(i)) << i;
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EXPECT_EQ(ispunct(i) != 0, absl::ascii_ispunct(i)) << i;
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EXPECT_EQ(isblank(i) != 0, absl::ascii_isblank(i)) << i;
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EXPECT_EQ(iscntrl(i) != 0, absl::ascii_iscntrl(i)) << i;
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EXPECT_EQ(isxdigit(i) != 0, absl::ascii_isxdigit(i)) << i;
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EXPECT_EQ(isprint(i) != 0, absl::ascii_isprint(i)) << i;
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EXPECT_EQ(isgraph(i) != 0, absl::ascii_isgraph(i)) << i;
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EXPECT_EQ(isupper(i) != 0, absl::ascii_isupper(i)) << i;
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EXPECT_EQ(islower(i) != 0, absl::ascii_islower(i)) << i;
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EXPECT_EQ(isascii(i) != 0, absl::ascii_isascii(i)) << i;
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}
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#ifndef __ANDROID__
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// restore the old locale.
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ASSERT_TRUE(setlocale(LC_CTYPE, old_locale));
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#endif
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}
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TEST(AsciiToFoo, All) {
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#ifndef __ANDROID__
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// temporarily change locale to C. It should already be C, but just for safety
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const char* old_locale = setlocale(LC_CTYPE, "C");
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ASSERT_TRUE(old_locale != nullptr);
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#endif
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for (int i = 0; i < 256; i++) {
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if (absl::ascii_islower(i))
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EXPECT_EQ(absl::ascii_toupper(i), 'A' + (i - 'a')) << i;
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else
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EXPECT_EQ(absl::ascii_toupper(i), static_cast<char>(i)) << i;
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if (absl::ascii_isupper(i))
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EXPECT_EQ(absl::ascii_tolower(i), 'a' + (i - 'A')) << i;
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else
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EXPECT_EQ(absl::ascii_tolower(i), static_cast<char>(i)) << i;
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// These CHECKs only hold in a C locale.
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EXPECT_EQ(static_cast<char>(tolower(i)), absl::ascii_tolower(i)) << i;
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EXPECT_EQ(static_cast<char>(toupper(i)), absl::ascii_toupper(i)) << i;
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// The official to* functions don't accept negative signed chars, but
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// our absl::ascii_to* functions do.
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signed char sc = static_cast<signed char>(static_cast<unsigned char>(i));
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EXPECT_EQ(absl::ascii_tolower(i), absl::ascii_tolower(sc)) << i;
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EXPECT_EQ(absl::ascii_toupper(i), absl::ascii_toupper(sc)) << i;
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}
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#ifndef __ANDROID__
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// restore the old locale.
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ASSERT_TRUE(setlocale(LC_CTYPE, old_locale));
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#endif
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}
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TEST(AsciiStrTo, Lower) {
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const char buf[] = "ABCDEF";
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const std::string str("GHIJKL");
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const std::string str2("MNOPQR");
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const absl::string_view sp(str2);
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EXPECT_EQ("abcdef", absl::AsciiStrToLower(buf));
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EXPECT_EQ("ghijkl", absl::AsciiStrToLower(str));
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EXPECT_EQ("mnopqr", absl::AsciiStrToLower(sp));
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char mutable_buf[] = "Mutable";
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std::transform(mutable_buf, mutable_buf + strlen(mutable_buf),
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mutable_buf, absl::ascii_tolower);
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EXPECT_STREQ("mutable", mutable_buf);
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}
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TEST(AsciiStrTo, Upper) {
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const char buf[] = "abcdef";
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const std::string str("ghijkl");
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const std::string str2("mnopqr");
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const absl::string_view sp(str2);
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EXPECT_EQ("ABCDEF", absl::AsciiStrToUpper(buf));
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EXPECT_EQ("GHIJKL", absl::AsciiStrToUpper(str));
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EXPECT_EQ("MNOPQR", absl::AsciiStrToUpper(sp));
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char mutable_buf[] = "Mutable";
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std::transform(mutable_buf, mutable_buf + strlen(mutable_buf),
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mutable_buf, absl::ascii_toupper);
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EXPECT_STREQ("MUTABLE", mutable_buf);
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}
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TEST(StripLeadingAsciiWhitespace, FromStringView) {
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EXPECT_EQ(absl::string_view{},
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absl::StripLeadingAsciiWhitespace(absl::string_view{}));
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EXPECT_EQ("foo", absl::StripLeadingAsciiWhitespace({"foo"}));
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EXPECT_EQ("foo", absl::StripLeadingAsciiWhitespace({"\t \n\f\r\n\vfoo"}));
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EXPECT_EQ("foo foo\n ",
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absl::StripLeadingAsciiWhitespace({"\t \n\f\r\n\vfoo foo\n "}));
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EXPECT_EQ(absl::string_view{}, absl::StripLeadingAsciiWhitespace(
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{"\t \n\f\r\v\n\t \n\f\r\v\n"}));
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}
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TEST(StripLeadingAsciiWhitespace, InPlace) {
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std::string str;
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absl::StripLeadingAsciiWhitespace(&str);
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EXPECT_EQ("", str);
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str = "foo";
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absl::StripLeadingAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = "\t \n\f\r\n\vfoo";
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absl::StripLeadingAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = "\t \n\f\r\n\vfoo foo\n ";
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absl::StripLeadingAsciiWhitespace(&str);
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EXPECT_EQ("foo foo\n ", str);
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str = "\t \n\f\r\v\n\t \n\f\r\v\n";
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absl::StripLeadingAsciiWhitespace(&str);
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EXPECT_EQ(absl::string_view{}, str);
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}
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TEST(StripTrailingAsciiWhitespace, FromStringView) {
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EXPECT_EQ(absl::string_view{},
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absl::StripTrailingAsciiWhitespace(absl::string_view{}));
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EXPECT_EQ("foo", absl::StripTrailingAsciiWhitespace({"foo"}));
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EXPECT_EQ("foo", absl::StripTrailingAsciiWhitespace({"foo\t \n\f\r\n\v"}));
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EXPECT_EQ(" \nfoo foo",
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absl::StripTrailingAsciiWhitespace({" \nfoo foo\t \n\f\r\n\v"}));
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EXPECT_EQ(absl::string_view{}, absl::StripTrailingAsciiWhitespace(
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{"\t \n\f\r\v\n\t \n\f\r\v\n"}));
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}
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TEST(StripTrailingAsciiWhitespace, InPlace) {
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std::string str;
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absl::StripTrailingAsciiWhitespace(&str);
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EXPECT_EQ("", str);
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str = "foo";
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absl::StripTrailingAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = "foo\t \n\f\r\n\v";
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absl::StripTrailingAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = " \nfoo foo\t \n\f\r\n\v";
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absl::StripTrailingAsciiWhitespace(&str);
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EXPECT_EQ(" \nfoo foo", str);
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str = "\t \n\f\r\v\n\t \n\f\r\v\n";
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absl::StripTrailingAsciiWhitespace(&str);
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EXPECT_EQ(absl::string_view{}, str);
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}
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TEST(StripAsciiWhitespace, FromStringView) {
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EXPECT_EQ(absl::string_view{},
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absl::StripAsciiWhitespace(absl::string_view{}));
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EXPECT_EQ("foo", absl::StripAsciiWhitespace({"foo"}));
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EXPECT_EQ("foo",
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absl::StripAsciiWhitespace({"\t \n\f\r\n\vfoo\t \n\f\r\n\v"}));
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EXPECT_EQ("foo foo", absl::StripAsciiWhitespace(
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{"\t \n\f\r\n\vfoo foo\t \n\f\r\n\v"}));
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EXPECT_EQ(absl::string_view{},
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absl::StripAsciiWhitespace({"\t \n\f\r\v\n\t \n\f\r\v\n"}));
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}
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TEST(StripAsciiWhitespace, InPlace) {
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std::string str;
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absl::StripAsciiWhitespace(&str);
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EXPECT_EQ("", str);
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str = "foo";
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absl::StripAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = "\t \n\f\r\n\vfoo\t \n\f\r\n\v";
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absl::StripAsciiWhitespace(&str);
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EXPECT_EQ("foo", str);
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str = "\t \n\f\r\n\vfoo foo\t \n\f\r\n\v";
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absl::StripAsciiWhitespace(&str);
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EXPECT_EQ("foo foo", str);
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str = "\t \n\f\r\v\n\t \n\f\r\v\n";
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absl::StripAsciiWhitespace(&str);
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EXPECT_EQ(absl::string_view{}, str);
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}
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TEST(RemoveExtraAsciiWhitespace, InPlace) {
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const char* inputs[] = {"No extra space",
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" Leading whitespace",
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"Trailing whitespace ",
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" Leading and trailing ",
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" Whitespace \t in\v middle ",
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"'Eeeeep! \n Newlines!\n",
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"nospaces",
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"",
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"\n\t a\t\n\nb \t\n"};
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const char* outputs[] = {
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"No extra space",
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"Leading whitespace",
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"Trailing whitespace",
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"Leading and trailing",
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"Whitespace in middle",
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"'Eeeeep! Newlines!",
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"nospaces",
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"",
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"a\nb",
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};
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const int NUM_TESTS = ABSL_ARRAYSIZE(inputs);
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for (int i = 0; i < NUM_TESTS; i++) {
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std::string s(inputs[i]);
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absl::RemoveExtraAsciiWhitespace(&s);
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EXPECT_EQ(outputs[i], s);
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}
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}
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} // namespace
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