Abseil Common Libraries (C++) (grcp 依赖)
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320 lines
12 KiB
320 lines
12 KiB
// Copyright 2021 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/cord_buffer.h" |
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#include <algorithm> |
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#include <climits> |
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#include <cstring> |
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#include <string> |
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#include <utility> |
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#include "gmock/gmock.h" |
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#include "gtest/gtest.h" |
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#include "absl/base/config.h" |
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#include "absl/strings/internal/cord_rep_flat.h" |
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#include "absl/strings/internal/cord_rep_test_util.h" |
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#include "absl/types/span.h" |
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using testing::Eq; |
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using testing::Ge; |
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using testing::Le; |
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using testing::Ne; |
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namespace absl { |
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ABSL_NAMESPACE_BEGIN |
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class CordBufferTestPeer { |
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public: |
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static cord_internal::CordRep* ConsumeValue(CordBuffer& buffer, |
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absl::string_view& short_value) { |
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return buffer.ConsumeValue(short_value); |
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} |
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}; |
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namespace { |
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using ::absl::cordrep_testing::CordToString; |
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constexpr size_t kInlinedSize = sizeof(CordBuffer) - 1; |
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constexpr size_t kDefaultLimit = CordBuffer::kDefaultLimit; |
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constexpr size_t kCustomLimit = CordBuffer::kCustomLimit; |
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constexpr size_t kMaxFlatSize = cord_internal::kMaxFlatSize; |
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constexpr size_t kMaxFlatLength = cord_internal::kMaxFlatLength; |
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constexpr size_t kFlatOverhead = cord_internal::kFlatOverhead; |
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constexpr size_t k8KiB = 8 << 10; |
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constexpr size_t k16KiB = 16 << 10; |
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constexpr size_t k64KiB = 64 << 10; |
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constexpr size_t k1MB = 1 << 20; |
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class CordBufferTest : public testing::TestWithParam<size_t> {}; |
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INSTANTIATE_TEST_SUITE_P(MediumSize, CordBufferTest, |
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testing::Values(1, kInlinedSize - 1, kInlinedSize, |
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kInlinedSize + 1, kDefaultLimit - 1, |
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kDefaultLimit)); |
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TEST_P(CordBufferTest, MaximumPayload) { |
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EXPECT_THAT(CordBuffer::MaximumPayload(), Eq(kMaxFlatLength)); |
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EXPECT_THAT(CordBuffer::MaximumPayload(512), Eq(512 - kFlatOverhead)); |
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EXPECT_THAT(CordBuffer::MaximumPayload(k64KiB), Eq(k64KiB - kFlatOverhead)); |
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EXPECT_THAT(CordBuffer::MaximumPayload(k1MB), Eq(k64KiB - kFlatOverhead)); |
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} |
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TEST(CordBufferTest, ConstructDefault) { |
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CordBuffer buffer; |
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EXPECT_THAT(buffer.capacity(), Eq(sizeof(CordBuffer) - 1)); |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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EXPECT_THAT(buffer.data(), Ne(nullptr)); |
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EXPECT_THAT(buffer.available().data(), Eq(buffer.data())); |
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EXPECT_THAT(buffer.available().size(), Eq(buffer.capacity())); |
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memset(buffer.data(), 0xCD, buffer.capacity()); |
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} |
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TEST(CordBufferTest, CreateSsoWithDefaultLimit) { |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(3); |
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EXPECT_THAT(buffer.capacity(), Ge(3)); |
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EXPECT_THAT(buffer.capacity(), Le(sizeof(CordBuffer))); |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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memset(buffer.data(), 0xCD, buffer.capacity()); |
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memcpy(buffer.data(), "Abc", 3); |
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buffer.SetLength(3); |
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EXPECT_THAT(buffer.length(), Eq(3)); |
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absl::string_view short_value; |
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EXPECT_THAT(CordBufferTestPeer::ConsumeValue(buffer, short_value), |
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Eq(nullptr)); |
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EXPECT_THAT(absl::string_view(buffer.data(), 3), Eq("Abc")); |
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EXPECT_THAT(short_value, Eq("Abc")); |
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} |
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TEST_P(CordBufferTest, Available) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(requested); |
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EXPECT_THAT(buffer.available().data(), Eq(buffer.data())); |
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EXPECT_THAT(buffer.available().size(), Eq(buffer.capacity())); |
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buffer.SetLength(2); |
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EXPECT_THAT(buffer.available().data(), Eq(buffer.data() + 2)); |
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EXPECT_THAT(buffer.available().size(), Eq(buffer.capacity() - 2)); |
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} |
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TEST_P(CordBufferTest, IncreaseLengthBy) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(requested); |
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buffer.IncreaseLengthBy(2); |
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EXPECT_THAT(buffer.length(), Eq(2)); |
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buffer.IncreaseLengthBy(5); |
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EXPECT_THAT(buffer.length(), Eq(7)); |
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} |
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TEST_P(CordBufferTest, AvailableUpTo) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(requested); |
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size_t expected_up_to = std::min<size_t>(3, buffer.capacity()); |
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EXPECT_THAT(buffer.available_up_to(3).data(), Eq(buffer.data())); |
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EXPECT_THAT(buffer.available_up_to(3).size(), Eq(expected_up_to)); |
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buffer.SetLength(2); |
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expected_up_to = std::min<size_t>(3, buffer.capacity() - 2); |
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EXPECT_THAT(buffer.available_up_to(3).data(), Eq(buffer.data() + 2)); |
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EXPECT_THAT(buffer.available_up_to(3).size(), Eq(expected_up_to)); |
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} |
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// Returns the maximum capacity for a given block_size and requested size. |
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size_t MaxCapacityFor(size_t block_size, size_t requested) { |
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requested = (std::min)(requested, cord_internal::kMaxLargeFlatSize); |
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// Maximum returned size is always capped at block_size - kFlatOverhead. |
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return block_size - kFlatOverhead; |
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} |
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TEST_P(CordBufferTest, CreateWithDefaultLimit) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(requested); |
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EXPECT_THAT(buffer.capacity(), Ge(requested)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(kMaxFlatSize, requested))); |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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memset(buffer.data(), 0xCD, buffer.capacity()); |
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std::string data(requested - 1, 'x'); |
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memcpy(buffer.data(), data.c_str(), requested); |
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buffer.SetLength(requested); |
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EXPECT_THAT(buffer.length(), Eq(requested)); |
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EXPECT_THAT(absl::string_view(buffer.data()), Eq(data)); |
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} |
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TEST(CordBufferTest, CreateWithDefaultLimitAskingFor2GB) { |
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constexpr size_t k2GiB = 1U << 31; |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(k2GiB); |
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// Expect to never be awarded more than a reasonable memory size, even in |
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// cases where a (debug) memory allocator may grant us somewhat more memory |
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// than `kDefaultLimit` which should be no more than `2 * kDefaultLimit` |
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EXPECT_THAT(buffer.capacity(), Le(2 * CordBuffer::kDefaultLimit)); |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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EXPECT_THAT(buffer.data(), Ne(nullptr)); |
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memset(buffer.data(), 0xCD, buffer.capacity()); |
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} |
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TEST_P(CordBufferTest, MoveConstruct) { |
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const size_t requested = GetParam(); |
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CordBuffer from = CordBuffer::CreateWithDefaultLimit(requested); |
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const size_t capacity = from.capacity(); |
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memcpy(from.data(), "Abc", 4); |
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from.SetLength(4); |
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CordBuffer to(std::move(from)); |
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EXPECT_THAT(to.capacity(), Eq(capacity)); |
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EXPECT_THAT(to.length(), Eq(4)); |
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EXPECT_THAT(absl::string_view(to.data()), Eq("Abc")); |
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EXPECT_THAT(from.length(), Eq(0)); // NOLINT |
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} |
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TEST_P(CordBufferTest, MoveAssign) { |
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const size_t requested = GetParam(); |
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CordBuffer from = CordBuffer::CreateWithDefaultLimit(requested); |
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const size_t capacity = from.capacity(); |
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memcpy(from.data(), "Abc", 4); |
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from.SetLength(4); |
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CordBuffer to; |
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to = std::move(from); |
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EXPECT_THAT(to.capacity(), Eq(capacity)); |
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EXPECT_THAT(to.length(), Eq(4)); |
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EXPECT_THAT(absl::string_view(to.data()), Eq("Abc")); |
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EXPECT_THAT(from.length(), Eq(0)); // NOLINT |
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} |
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TEST_P(CordBufferTest, ConsumeValue) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(requested); |
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memcpy(buffer.data(), "Abc", 4); |
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buffer.SetLength(3); |
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absl::string_view short_value; |
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if (cord_internal::CordRep* rep = |
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CordBufferTestPeer::ConsumeValue(buffer, short_value)) { |
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EXPECT_THAT(CordToString(rep), Eq("Abc")); |
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cord_internal::CordRep::Unref(rep); |
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} else { |
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EXPECT_THAT(short_value, Eq("Abc")); |
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} |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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} |
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TEST_P(CordBufferTest, CreateWithCustomLimitWithinDefaultLimit) { |
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const size_t requested = GetParam(); |
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CordBuffer buffer = |
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CordBuffer::CreateWithCustomLimit(kMaxFlatSize, requested); |
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EXPECT_THAT(buffer.capacity(), Ge(requested)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(kMaxFlatSize, requested))); |
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EXPECT_THAT(buffer.length(), Eq(0)); |
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memset(buffer.data(), 0xCD, buffer.capacity()); |
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std::string data(requested - 1, 'x'); |
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memcpy(buffer.data(), data.c_str(), requested); |
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buffer.SetLength(requested); |
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EXPECT_THAT(buffer.length(), Eq(requested)); |
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EXPECT_THAT(absl::string_view(buffer.data()), Eq(data)); |
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} |
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TEST(CordLargeBufferTest, CreateAtOrBelowDefaultLimit) { |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(k64KiB, kDefaultLimit); |
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EXPECT_THAT(buffer.capacity(), Ge(kDefaultLimit)); |
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EXPECT_THAT(buffer.capacity(), |
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Le(MaxCapacityFor(kMaxFlatSize, kDefaultLimit))); |
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buffer = CordBuffer::CreateWithCustomLimit(k64KiB, 3178); |
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EXPECT_THAT(buffer.capacity(), Ge(3178)); |
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} |
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TEST(CordLargeBufferTest, CreateWithCustomLimit) { |
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ASSERT_THAT((kMaxFlatSize & (kMaxFlatSize - 1)) == 0, "Must be power of 2"); |
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for (size_t size = kMaxFlatSize; size <= kCustomLimit; size *= 2) { |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(size, size); |
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size_t expected = size - kFlatOverhead; |
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ASSERT_THAT(buffer.capacity(), Ge(expected)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(size, expected))); |
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} |
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} |
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TEST(CordLargeBufferTest, CreateWithTooLargeLimit) { |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(k64KiB, k1MB); |
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ASSERT_THAT(buffer.capacity(), Ge(k64KiB - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(k64KiB, k1MB))); |
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} |
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TEST(CordLargeBufferTest, CreateWithHugeValueForOverFlowHardening) { |
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for (size_t dist_from_max = 0; dist_from_max <= 32; ++dist_from_max) { |
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size_t capacity = std::numeric_limits<size_t>::max() - dist_from_max; |
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CordBuffer buffer = CordBuffer::CreateWithDefaultLimit(capacity); |
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ASSERT_THAT(buffer.capacity(), Ge(kDefaultLimit)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(kMaxFlatSize, capacity))); |
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for (size_t limit = kMaxFlatSize; limit <= kCustomLimit; limit *= 2) { |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(limit, capacity); |
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ASSERT_THAT(buffer.capacity(), Ge(limit - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(limit, capacity))); |
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} |
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} |
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} |
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TEST(CordLargeBufferTest, CreateWithSmallLimit) { |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(512, 1024); |
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ASSERT_THAT(buffer.capacity(), Ge(512 - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(512, 1024))); |
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// Ask for precise block size, should return size - kOverhead |
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buffer = CordBuffer::CreateWithCustomLimit(512, 512); |
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ASSERT_THAT(buffer.capacity(), Ge(512 - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(512, 512))); |
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// Corner case: 511 < block_size, but 511 + kOverhead is above |
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buffer = CordBuffer::CreateWithCustomLimit(512, 511); |
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ASSERT_THAT(buffer.capacity(), Ge(512 - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(512, 511))); |
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// Corner case: 498 + kOverhead < block_size |
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buffer = CordBuffer::CreateWithCustomLimit(512, 498); |
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ASSERT_THAT(buffer.capacity(), Ge(512 - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(512, 498))); |
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} |
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TEST(CordLargeBufferTest, CreateWasteFull) { |
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// 15 KiB gets rounded down to next pow2 value. |
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const size_t requested = (15 << 10); |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(k16KiB, requested); |
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ASSERT_THAT(buffer.capacity(), Ge(k8KiB - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(k8KiB, requested))); |
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} |
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TEST(CordLargeBufferTest, CreateSmallSlop) { |
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const size_t requested = k16KiB - 2 * kFlatOverhead; |
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CordBuffer buffer = CordBuffer::CreateWithCustomLimit(k16KiB, requested); |
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ASSERT_THAT(buffer.capacity(), Ge(k16KiB - kFlatOverhead)); |
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EXPECT_THAT(buffer.capacity(), Le(MaxCapacityFor(k16KiB, requested))); |
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} |
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} // namespace |
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ABSL_NAMESPACE_END |
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} // namespace absl
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