Merge branch 'unpad'
Chaos Ci / test (push) Successful in 2m57s
Chaos Ci / benchmark (push) Successful in 1m53s

This commit is contained in:
hashlag
2026-07-20 03:06:50 +03:00
3 changed files with 325 additions and 0 deletions
+6
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@@ -14,6 +14,12 @@ public:
Impl().Pad(begin, end);
}
template<typename InputIt>
auto ComputeUnpad(InputIt begin, InputIt end) const noexcept
{
return Impl().ComputeUnpad(begin, end);
}
protected:
Padder() = default;
+112
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@@ -1,9 +1,12 @@
#ifndef CHAOS_PADDING_PADDERPKCS7_HPP
#define CHAOS_PADDING_PADDERPKCS7_HPP
#include <climits>
#include <cstddef>
#include <cstdint>
#include <iterator>
#include <limits>
#include <type_traits>
#include "Padding/Padder.hpp"
#include "Service/ChaosException.hpp"
@@ -19,6 +22,7 @@ public:
{
auto dist = std::distance(begin, end);
// TODO: dist > 0
if (dist >= 0 && dist <= std::numeric_limits<uint8_t>::max())
{
for (OutputIt it = begin; it != end; ++it)
@@ -31,6 +35,114 @@ public:
throw Service::ChaosException("PadderPkcs7::Pad(): invalid range");
}
}
struct ComputeUnpadResult
{
bool IsOkay_;
uint8_t PadSize_;
};
template<typename InputIt>
static ComputeUnpadResult ComputeUnpad(InputIt begin, InputIt end) noexcept
{
if (begin == end)
{
return { .IsOkay_ = false, .PadSize_ = 0 };
}
const uint8_t padSize = *std::prev(end);
uint8_t isOkay = ~BlIsZero<uint8_t>(padSize);
size_t suffixSize = 0;
InputIt it = end;
while (it != begin && suffixSize < std::numeric_limits<uint8_t>::max())
{
--it;
++suffixSize;
isOkay &= (BlEq<uint8_t>(*it, padSize) |
BlGt<uint8_t, size_t>(suffixSize, padSize));
}
isOkay &= BlGe<uint8_t, size_t>(suffixSize, padSize);
return
{
.IsOkay_ = static_cast<bool>(isOkay),
.PadSize_ = BlSel<uint8_t>(isOkay, padSize, 0)
};
}
private:
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlMsb(InUInt in) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
constexpr uint8_t shift = (sizeof(InUInt) * CHAR_BIT) - 1;
return static_cast<OutUInt>(0) - (in >> shift);
}
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlLt(InUInt lhs, InUInt rhs) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
static_assert(sizeof(InUInt) <= sizeof(uint64_t));
const uint64_t lhsEx = lhs;
const uint64_t rhsEx = rhs;
return BlMsb<OutUInt>(lhsEx ^ ((lhsEx ^ rhsEx) | ((lhsEx - rhsEx) ^ lhsEx)));
}
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlIsZero(InUInt in) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
static_assert(sizeof(InUInt) <= sizeof(uint64_t));
const uint64_t inEx = in;
return BlMsb<OutUInt>(~inEx & (inEx - 1U));
}
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlEq(InUInt lhs, InUInt rhs) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
return BlIsZero<OutUInt, InUInt>(lhs ^ rhs);
}
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlGe(InUInt lhs, InUInt rhs) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
return ~BlLt<OutUInt>(lhs, rhs);
}
template<typename OutUInt, typename InUInt>
static constexpr OutUInt BlGt(InUInt lhs, InUInt rhs) noexcept
{
static_assert(std::is_unsigned_v<OutUInt> &&
std::is_unsigned_v<InUInt>);
return BlLt<OutUInt>(rhs, lhs);
}
template<typename UInt>
static constexpr UInt BlSel(UInt mask, UInt onTrue, UInt onFalse) noexcept
{
static_assert(std::is_unsigned_v<UInt>);
return (mask & onTrue) | (~mask & onFalse);
}
};
} // namespace Chaos::Padding
+207
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@@ -142,3 +142,210 @@ TEST(PadPkcs7Tests, PadThroughBaseTest)
ASSERT_EQ(expected, fact);
}
}
TEST(PadPkcs7Tests, UnpadTest)
{
{
std::array<uint8_t, 1> data = { 0x01 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(1, result.PadSize_);
}
{
std::array<uint8_t, 4> data = { 0xaa, 0xbb, 0x02, 0x02 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(2, result.PadSize_);
}
{
std::array<uint8_t, 10> data = { 0xaa, 0xbb, 0xcc, 0x07, 0x07,
0x07, 0x07, 0x07, 0x07, 0x07 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(7, result.PadSize_);
}
{
std::array<uint8_t, 10> data = { 0xa0, 0xa1, 0xa2, 0xa3, 0xa4, 0xa5,
0xa6, 0xa7, 0xa8, 0x01 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(1, result.PadSize_);
}
{
std::array<uint8_t, 10> data = { 0xa0, 0xa1, 0xa2, 0x07, 0x07, 0x07,
0x07, 0x07, 0x07, 0x07 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(7, result.PadSize_);
}
{
std::array<uint8_t, 10> data = { 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a,
0x0a, 0x0a, 0x0a, 0x0a };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(10, result.PadSize_);
}
{
std::array<uint8_t, 4> data = { 0x03, 0x03, 0x03, 0x03 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(3, result.PadSize_);
}
{
std::array<uint8_t, 200> data;
data.fill(0x41);
*std::prev(data.end()) = 1;
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(1, result.PadSize_);
}
{
std::array<uint8_t, 200> data;
data.fill(0x41);
std::fill(data.end() - 100, data.end(), 100);
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(100, result.PadSize_);
}
{
std::array<uint8_t, 255> data;
data.fill(255);
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(255, result.PadSize_);
}
{
std::array<uint8_t, 381> data;
data.fill(0x9a);
std::fill(data.end() - 255, data.end(), 255);
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(255, result.PadSize_);
}
}
TEST(PadPkcs7Tests, UnpadErrorTest)
{
{
std::array<uint8_t, 0> data = { };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 1> data = { 0x00 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 5> data = { 0xa0, 0xa1, 0xa2, 0xa3, 0xff };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 5> data = { 0xa0, 0xa1, 0xa2, 0xa3, 0x06 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 5> data = { 0xa0, 0xa1, 0xa2, 0xa3, 0x05 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 5> data = { 0xa0, 0xa1, 0x03, 0x02, 0x03 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 1> data = { 0xff };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
{
std::array<uint8_t, 2> data = { 0x03, 0x03 };
auto result = PadderPkcs7::ComputeUnpad(data.begin(), data.end());
ASSERT_FALSE(result.IsOkay_);
ASSERT_EQ(0, result.PadSize_);
}
}
template<typename Impl, typename OutputIt>
auto ComputeUnpadThroughBase(const Padder<Impl> & padder, OutputIt begin, OutputIt end)
{
return padder.ComputeUnpad(begin, end);
}
TEST(PadPkcs7Tests, ComputeUnpadThroughBaseTest)
{
{
std::array<uint8_t, 5> data = { 0x05, 0x05, 0x05, 0x05, 0x05 };
const PadderPkcs7 padder;
auto result = ComputeUnpadThroughBase(padder, data.begin(), data.end());
ASSERT_TRUE(result.IsOkay_);
ASSERT_EQ(5, result.PadSize_);
}
}