29void initDistanceArray(DistanceArray &distanceArray,
const size_t size1,
const size_t size2)
31 const auto maxDistance(size1 + size2);
35 distanceArray.at(0, 0) = maxDistance;
37 for (
size_t i = 0;
i <= size1; ++
i) {
38 distanceArray.at(
i + 1, 1) =
i;
39 distanceArray.at(
i + 1, 0) = maxDistance;
41 for (
size_t i = 0;
i <= size2; ++
i) {
42 distanceArray.at(1,
i + 1) =
i;
43 distanceArray.at(0,
i + 1) = maxDistance;
49size_t performDamerauLevenshteinAlgorithm(
50 DistanceArray &distanceArray,
const char *
const str1,
const size_t size1,
const char *
const str2,
const size_t size2)
52 size_t dist1[std::numeric_limits<unsigned char>::max() + 1] = { 0 };
53 for (
size_t index1 = 1; index1 <= size1; ++index1) {
55 for (
size_t index2 = 1; index2 <= size2; ++index2) {
56 const size_t substitution((str1[index1 - 1] == str2[index2 - 1]) ? 0 : 1);
57 const size_t transposition1(dist1[
static_cast<unsigned char>(str2[index2 - 1])]);
58 const size_t transposition2(dist2);
64 distanceArray.at(index1, index2) + substitution,
65 distanceArray.at(index1 + 1, index2) + 1,
66 distanceArray.at(index1, index2 + 1) + 1,
67 distanceArray.at(transposition1, transposition2) + (index1 - transposition1 - 1) + 1 + (index2 - transposition2 - 1)
71 dist1[
static_cast<int>(str1[index1 - 1])] = index1;
73 return distanceArray.at(size1 + 1, size2 + 1);
77template <
typename DistanceArray>
78size_t performDamerauLevenshteinAlgorithmAllocatingOnHeap(
79 DistanceArray &distanceArray,
const char *
const str1,
const size_t size1,
const char *
const str2,
const size_t size2)
81 std::vector<size_t> buffer(distanceArray.totalSize());
82 distanceArray.buffer() = buffer.data();
83 initDistanceArray(distanceArray, size1, size2);
84 return performDamerauLevenshteinAlgorithm(distanceArray, str1, size1, str2, size2);
89template <
typename DistanceArray>
90size_t performDamerauLevenshteinAlgorithmAllocatingOnStack(
91 DistanceArray &distanceArray,
const char *
const str1,
const size_t size1,
const char *
const str2,
const size_t size2)
93 size_t buffer[128] = { 0 };
94 distanceArray.buffer() = buffer;
95 initDistanceArray(distanceArray, size1, size2);
96 return performDamerauLevenshteinAlgorithm(distanceArray, str1, size1, str2, size2);
123 if (distanceArray.totalSize() <= 128) {
124 return performDamerauLevenshteinAlgorithmAllocatingOnStack(distanceArray, str1, size1, str2, size2);
126 return performDamerauLevenshteinAlgorithmAllocatingOnHeap(distanceArray, str1, size1, str2, size2);
#define CPP_UTILITIES_WARNING_PUSH
Causes GCC/Clang to remember the state of the diagnostics.
#define CPP_UTILITIES_WARNING_POP
Causes GCC/Clang to restore the previous state of the diagnostics.
#define CPP_UTILITIES_WARNING_DISABLE(text)
Causes GCC/Clang to suppress the specified diagnostic.
The MultiArray class provides an N-dimensional array.
Contains all utilities provided by the c++utilities library.
auto makeNoneOwningMultiArray(DimensionSizes... dimensionSizes)
Constructs a new N-dimensional array using a caller-managed buffer as underlying container....
constexpr T min(T first, T second)
Returns the smallest of the given items.
CPP_UTILITIES_EXPORT std::size_t computeDamerauLevenshteinDistance(const char *str1, std::size_t size1, const char *str2, std::size_t size2)