Files
ARSV/hash_testing/old_testing/collizions_ascii.cpp
T
2026-08-14 01:53:25 +03:00

207 lines
5.9 KiB
C++

/*
Compare hash collision rates on random ASCII strings using only [a-zA-Z].
Output: collizions_ascii/{hash_name}.out, CSV, one row per input length and bit width.
Build example:
cc -O3 -I. -c src/joaat/hash.c -o joaat.o
cc -O3 -I. -c src/xxHash/xxhash.c -o xxhash.o
g++ -O3 -std=c++17 -I. -Isrc/cityhash/src collizions_ascii.cpp \
src/cityhash/src/city.cc joaat.o xxhash.o -o collizions_ascii_test
Run:
./collizions_ascii_test [runs=5] [samples=50000]
*/
#include <algorithm>
#include <cstdint>
#include <cstdlib>
#include <filesystem>
#include <fstream>
#include <iomanip>
#include <iostream>
#include <random>
#include <string>
#include <string_view>
#include <unordered_set>
#include <vector>
#include "src/cityhash/src/city.h"
#include "src/joaat/hash.h"
#include "src/xxHash/xxhash.h"
namespace fs = std::filesystem;
using HashFn = uint64_t (*)(const void *, size_t);
struct HashCase {
std::string_view name;
HashFn fn;
};
struct CollisionStats {
size_t collisions;
size_t unique;
};
static uint64_t hash_xxh32(const void *data, size_t len)
{
return XXH32(data, len, 0);
}
static uint64_t hash_xxh64(const void *data, size_t len)
{
return XXH64(data, len, 0);
}
static uint64_t hash_xxh3_64(const void *data, size_t len)
{
return XXH3_64bits(data, len);
}
static uint64_t hash_city32(const void *data, size_t len)
{
return CityHash32(static_cast<const char *>(data), len);
}
static uint64_t hash_city64(const void *data, size_t len)
{
return CityHash64(static_cast<const char *>(data), len);
}
static uint64_t hash_joaat(const void *data, size_t len)
{
return joaat_hash_bytes(data, len);
}
static uint64_t bit_mask(unsigned bits)
{
return bits >= 64 ? ~0ULL : ((1ULL << bits) - 1ULL);
}
static double median(std::vector<double> values)
{
const size_t mid = values.size() / 2;
std::nth_element(values.begin(), values.begin() + mid, values.end());
if (values.size() % 2 != 0) {
return values[mid];
}
const double hi = values[mid];
std::nth_element(values.begin(), values.begin() + mid - 1, values.end());
return (values[mid - 1] + hi) / 2.0;
}
static std::string random_ascii_string(size_t len, uint64_t seed)
{
static constexpr char alphabet[] = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ";
static constexpr size_t alphabet_size = sizeof(alphabet) - 1;
std::string data;
data.resize(len);
std::mt19937_64 rng(seed);
for (char &ch : data) {
ch = alphabet[rng() % alphabet_size];
}
return data;
}
static std::vector<uint64_t> random_hashes(HashFn fn, size_t len, size_t samples, uint64_t seed)
{
std::vector<uint64_t> hashes;
hashes.reserve(samples);
std::mt19937_64 seed_rng(seed);
for (size_t i = 0; i < samples; ++i) {
const std::string data = random_ascii_string(len, seed_rng());
hashes.push_back(fn(data.data(), data.size()));
}
return hashes;
}
static CollisionStats count_collisions(const std::vector<uint64_t> &hashes, unsigned bits)
{
std::unordered_set<uint64_t> seen;
seen.reserve(hashes.size() * 2);
const uint64_t mask = bit_mask(bits);
for (uint64_t hash : hashes) {
seen.insert(hash & mask);
}
return {hashes.size() - seen.size(), seen.size()};
}
int main(int argc, char **argv)
{
const int runs = argc > 1 ? std::max(1, std::atoi(argv[1])) : 5;
const size_t samples = argc > 2 ? std::max(1, std::atoi(argv[2])) : 50000;
const std::vector<size_t> lengths = {1, 4, 8, 16, 32, 64, 128, 256};
const std::vector<unsigned> bit_widths = {10, 12, 16, 20, 24, 32};
const std::vector<HashCase> hashes = {
{"xxh32", hash_xxh32},
{"xxh64", hash_xxh64},
{"xxh3_64", hash_xxh3_64},
{"city32", hash_city32},
{"city64", hash_city64},
{"joaat", hash_joaat},
};
const fs::path out_dir = fs::path(__FILE__).stem();
fs::create_directories(out_dir);
for (const HashCase &hash : hashes) {
const fs::path out_path = out_dir / (std::string(hash.name) + ".out");
std::ofstream out(out_path);
if (!out) {
std::cerr << "failed to open " << out_path << '\n';
return 1;
}
out << "hash,length,bits,samples,runs,alphabet,median_collisions,median_collision_rate,median_unique\n";
out << std::fixed << std::setprecision(8);
for (size_t len : lengths) {
std::vector<std::vector<uint64_t>> run_hashes;
run_hashes.reserve(runs);
for (int run = 0; run < runs; ++run) {
const uint64_t seed = 0x415253565f617363ULL ^ (len << 8) ^ run;
run_hashes.push_back(random_hashes(hash.fn, len, samples, seed));
}
for (unsigned bits : bit_widths) {
std::vector<double> collision_values;
std::vector<double> unique_values;
collision_values.reserve(runs);
unique_values.reserve(runs);
for (const auto &hashes_for_run : run_hashes) {
const CollisionStats stats = count_collisions(hashes_for_run, bits);
collision_values.push_back(static_cast<double>(stats.collisions));
unique_values.push_back(static_cast<double>(stats.unique));
}
const double median_collisions = median(collision_values);
const double median_unique = median(unique_values);
out << hash.name << ','
<< len << ','
<< bits << ','
<< samples << ','
<< runs << ','
<< "a-zA-Z" << ','
<< median_collisions << ','
<< (median_collisions / static_cast<double>(samples)) << ','
<< median_unique << '\n';
}
}
}
std::cerr << "wrote " << out_dir << "/*.out\n";
return 0;
}