mirror of
https://github.com/fraillt/bitsery.git
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184 lines
6.0 KiB
C++
184 lines
6.0 KiB
C++
//MIT License
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//
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//Copyright (c) 2017 Mindaugas Vinkelis
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//
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//Permission is hereby granted, free of charge, to any person obtaining a copy
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//of this software and associated documentation files (the "Software"), to deal
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//in the Software without restriction, including without limitation the rights
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//to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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//copies of the Software, and to permit persons to whom the Software is
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//furnished to do so, subject to the following conditions:
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//
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//The above copyright notice and this permission notice shall be included in all
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//copies or substantial portions of the Software.
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//
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//THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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//IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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//FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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//AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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//LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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//OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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//SOFTWARE.
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#include <bitsery/adapter_writer.h>
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#include <bitsery/adapter_reader.h>
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#include <bitsery/ext/value_range.h>
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#include "serialization_test_utils.h"
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#include <gmock/gmock.h>
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using testing::Eq;
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using testing::ContainerEq;
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using bitsery::EndiannessType;
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using bitsery::DefaultConfig;
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constexpr EndiannessType getInverseEndianness(EndiannessType e) {
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return e == EndiannessType::LittleEndian
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? EndiannessType::BigEndian
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: EndiannessType::LittleEndian;
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}
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struct InverseEndiannessConfig:public DefaultConfig {
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static constexpr bitsery::EndiannessType NetworkEndianness = getInverseEndianness(DefaultConfig::NetworkEndianness);
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};
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struct IntegralTypes {
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int64_t a;
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uint32_t b;
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int16_t c;
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uint8_t d;
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int8_t e;
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};
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using InverseReader = bitsery::AdapterReader<InputAdapter, InverseEndiannessConfig>;
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TEST(DataEndianness, WhenWriteBytesThenBytesAreSwapped) {
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//fill initial values
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IntegralTypes src{};
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src.a = static_cast<int64_t>(0x1122334455667788);
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src.b = 0xBBCCDDEE;
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src.c = static_cast<int16_t>(0xCCDD);
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src.d = static_cast<uint8_t>(0xDD);
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src.e = static_cast<int8_t>(0xEE);
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//fill expected result after swap
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IntegralTypes resInv{};
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resInv.a = static_cast<int64_t>(0x8877665544332211);
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resInv.b = 0xEEDDCCBB;
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resInv.c = static_cast<int16_t>(0xDDCC);
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resInv.d = static_cast<uint8_t>(0xDD);
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resInv.e = static_cast<int8_t>(0xEE);
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//create and write to buffer
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Buffer buf{};
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Writer bw{buf};
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bw.writeBytes<8>(src.a);
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bw.writeBytes<4>(src.b);
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bw.writeBytes<2>(src.c);
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bw.writeBytes<1>(src.d);
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bw.writeBytes<1>(src.e);
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bw.flush();
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//read from buffer using inverse endianness config
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InverseReader br{InputAdapter{buf.begin(), bw.writtenBytesCount()}};
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IntegralTypes res{};
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br.readBytes<8>(res.a);
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br.readBytes<4>(res.b);
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br.readBytes<2>(res.c);
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br.readBytes<1>(res.d);
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br.readBytes<1>(res.e);
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//check results
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EXPECT_THAT(res.a, Eq(resInv.a));
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EXPECT_THAT(res.b, Eq(resInv.b));
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EXPECT_THAT(res.c, Eq(resInv.c));
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EXPECT_THAT(res.d, Eq(resInv.d));
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EXPECT_THAT(res.e, Eq(resInv.e));
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}
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TEST(DataEndianness, WhenWrite1ByteValuesThenEndiannessIsIgnored) {
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//fill initial values
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constexpr size_t SIZE = 4;
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uint8_t src[SIZE] = {0xAA, 0xBB, 0xCC, 0xDD};
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uint8_t res[SIZE] = {};
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//create and write to buffer
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Buffer buf{};
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Writer bw{buf};
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bw.writeBuffer<1>(src, SIZE);
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bw.flush();
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//read from buffer using inverse endianness config
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InverseReader br{InputAdapter{buf.begin(), bw.writtenBytesCount()}};
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br.readBuffer<1>(res, SIZE);
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//result is identical, because we write separate values, of size 1byte, that requires no swapping
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//check results
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EXPECT_THAT(res, ContainerEq(src));
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}
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TEST(DataEndianness, WhenWriteMoreThan1ByteValuesThenValuesAreSwapped) {
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//fill initial values
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constexpr size_t SIZE = 4;
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uint16_t src[SIZE] = {0xAA00, 0xBB11, 0xCC22, 0xDD33};
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uint16_t resInv[SIZE] = {0x00AA, 0x11BB, 0x22CC, 0x33DD};
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uint16_t res[SIZE] = {};
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//create and write to buffer
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Buffer buf{};
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Writer bw{buf};
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bw.writeBuffer<2>(src, SIZE);
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bw.flush();
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//read from buffer using inverse endianness config
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InverseReader br{InputAdapter{buf.begin(), bw.writtenBytesCount()}};
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br.readBuffer<2>(res, SIZE);
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//result is identical, because we write separate values, of size 1byte, that requires no swapping
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//check results
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EXPECT_THAT(res, ContainerEq(resInv));
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}
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template <typename T>
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constexpr size_t getBits(T v) {
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return bitsery::details::calcRequiredBits<T>({}, v);
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}
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struct IntegralUnsignedTypes {
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uint64_t a;
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uint32_t b;
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uint16_t c;
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uint8_t d;
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};
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TEST(DataEndianness, WhenValueTypeIs1ByteThenBitOperationsIsNotAffectedByEndianness) {
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//fill initial values
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constexpr IntegralUnsignedTypes src {
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0x0000334455667788,
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0x00CCDDEE,
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0x00DD,
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0x0F,
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};
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constexpr size_t aBITS = getBits(src.a) + 8;
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constexpr size_t bBITS = getBits(src.b) + 0;
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constexpr size_t cBITS = getBits(src.c) + 5;
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constexpr size_t dBITS = getBits(src.d) + 2;
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//create and write to buffer
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Buffer buf{};
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Writer bw{buf};
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bitsery::AdapterWriterBitPackingWrapper<Writer> bpw{bw};
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bpw.writeBits(src.a, aBITS);
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bpw.writeBits(src.b, bBITS);
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bpw.writeBits(src.c, cBITS);
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bpw.writeBits(src.d, dBITS);
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bpw.flush();
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//read from buffer using inverse endianness config
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InverseReader br{InputAdapter{buf.begin(), bpw.writtenBytesCount()}};
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bitsery::AdapterReaderBitPackingWrapper<InverseReader> bpr{br};
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IntegralUnsignedTypes res{};
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bpr.readBits(res.a, aBITS);
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bpr.readBits(res.b, bBITS);
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bpr.readBits(res.c, cBITS);
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bpr.readBits(res.d, dBITS);
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//check results
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EXPECT_THAT(res.a, Eq(src.a));
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EXPECT_THAT(res.b, Eq(src.b));
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EXPECT_THAT(res.c, Eq(src.c));
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EXPECT_THAT(res.d, Eq(src.d));
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}
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