275 lines
8.6 KiB
C++
275 lines
8.6 KiB
C++
#include "arena_allocator.hpp"
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#include "format.hpp"
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#include <cstdio>
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#include <iomanip>
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#include <nanobench.h>
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#include <sstream>
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#include <string>
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#if __cpp_lib_format >= 201907L
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#include <format>
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#define HAS_STD_FORMAT 1
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#else
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#define HAS_STD_FORMAT 0
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#endif
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// Test data for consistent benchmarks
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constexpr int TEST_INT = 42;
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constexpr double TEST_DOUBLE = 3.14159;
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const std::string TEST_STRING = "Hello World";
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// Benchmark simple string concatenation: "Hello " + "World" + "!"
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void benchmark_simple_concatenation() {
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std::cout << "\n=== Simple String Concatenation: 'Hello World!' ===\n";
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ankerl::nanobench::Bench bench;
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bench.title("Simple Concatenation").unit("op").warmup(100).epochs(1000);
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// Arena-based static_format
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bench.run("static_format", [&] {
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ArenaAllocator arena(64);
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auto result = static_format(arena, "Hello ", "World", "!");
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// Arena-based format
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bench.run("format", [&] {
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ArenaAllocator arena(64);
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auto result = format(arena, "Hello %s!", "World");
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// std::stringstream
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bench.run("std::stringstream", [&] {
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std::stringstream ss;
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ss << "Hello " << "World" << "!";
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auto result = ss.str();
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#if HAS_STD_FORMAT
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// std::format (C++20)
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bench.run("std::format", [&] {
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auto result = std::format("Hello {}!", "World");
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#endif
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// Raw snprintf with malloc
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bench.run("snprintf + malloc", [&] {
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char buffer[64];
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int len = std::snprintf(buffer, sizeof(buffer), "Hello %s!", "World");
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char *result = static_cast<char *>(std::malloc(len + 1));
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std::memcpy(result, buffer, len + 1);
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ankerl::nanobench::doNotOptimizeAway(result);
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std::free(result);
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});
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}
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// Benchmark mixed type formatting: "Count: 42, Rate: 3.14159"
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void benchmark_mixed_types() {
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std::cout << "\n=== Mixed Type Formatting: 'Count: 42, Rate: 3.14159' ===\n";
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ankerl::nanobench::Bench bench;
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bench.title("Mixed Types").unit("op").warmup(100).epochs(1000);
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// Arena-based static_format
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bench.run("static_format", [&] {
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ArenaAllocator arena(128);
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auto result =
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static_format(arena, "Count: ", TEST_INT, ", Rate: ", TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// Arena-based format
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bench.run("format", [&] {
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ArenaAllocator arena(128);
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auto result = format(arena, "Count: %d, Rate: %.5f", TEST_INT, TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// std::stringstream
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bench.run("std::stringstream", [&] {
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std::stringstream ss;
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ss << "Count: " << TEST_INT << ", Rate: " << std::fixed
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<< std::setprecision(5) << TEST_DOUBLE;
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auto result = ss.str();
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#if HAS_STD_FORMAT
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// std::format (C++20)
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bench.run("std::format", [&] {
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auto result = std::format("Count: {}, Rate: {:.5f}", TEST_INT, TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#endif
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// Raw snprintf with malloc
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bench.run("snprintf + malloc", [&] {
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char buffer[128];
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int len = std::snprintf(buffer, sizeof(buffer), "Count: %d, Rate: %.5f",
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TEST_INT, TEST_DOUBLE);
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char *result = static_cast<char *>(std::malloc(len + 1));
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std::memcpy(result, buffer, len + 1);
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ankerl::nanobench::doNotOptimizeAway(result);
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std::free(result);
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});
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}
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// Benchmark complex formatting with precision and alignment
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void benchmark_complex_formatting() {
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std::cout << "\n=== Complex Formatting: '%-10s %5d %8.2f' ===\n";
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ankerl::nanobench::Bench bench;
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bench.title("Complex Formatting").unit("op").warmup(100).epochs(1000);
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// Arena-based format (static_format doesn't support printf specifiers)
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bench.run("format", [&] {
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ArenaAllocator arena(128);
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auto result = format(arena, "%-10s %5d %8.2f", TEST_STRING.c_str(),
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TEST_INT, TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// std::stringstream
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bench.run("std::stringstream", [&] {
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std::stringstream ss;
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ss << std::left << std::setw(10) << TEST_STRING << " " << std::right
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<< std::setw(5) << TEST_INT << " " << std::setw(8) << std::fixed
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<< std::setprecision(2) << TEST_DOUBLE;
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auto result = ss.str();
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#if HAS_STD_FORMAT
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// std::format (C++20)
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bench.run("std::format", [&] {
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auto result = std::format("{:<10} {:>5} {:>8.2f}", TEST_STRING, TEST_INT,
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TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#endif
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// Raw snprintf with malloc
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bench.run("snprintf + malloc", [&] {
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char buffer[128];
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int len = std::snprintf(buffer, sizeof(buffer), "%-10s %5d %8.2f",
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TEST_STRING.c_str(), TEST_INT, TEST_DOUBLE);
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char *result = static_cast<char *>(std::malloc(len + 1));
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std::memcpy(result, buffer, len + 1);
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ankerl::nanobench::doNotOptimizeAway(result);
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std::free(result);
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});
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}
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// Benchmark error message formatting (common use case)
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void benchmark_error_messages() {
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std::cout << "\n=== Error Message Formatting: 'Error 404: File not found "
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"(line 123)' ===\n";
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ankerl::nanobench::Bench bench;
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bench.title("Error Messages").unit("op").warmup(100).epochs(1000);
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constexpr int error_code = 404;
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constexpr int line_number = 123;
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const std::string error_msg = "File not found";
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// Arena-based static_format (using string literals only)
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bench.run("static_format", [&] {
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ArenaAllocator arena(128);
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auto result = static_format(arena, "Error ", error_code, ": ",
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"File not found", " (line ", line_number, ")");
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// Arena-based format
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bench.run("format", [&] {
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ArenaAllocator arena(128);
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auto result = format(arena, "Error %d: %s (line %d)", error_code,
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error_msg.c_str(), line_number);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// std::stringstream
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bench.run("std::stringstream", [&] {
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std::stringstream ss;
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ss << "Error " << error_code << ": " << error_msg << " (line "
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<< line_number << ")";
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auto result = ss.str();
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#if HAS_STD_FORMAT
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// std::format (C++20)
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bench.run("std::format", [&] {
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auto result = std::format("Error {}: {} (line {})", error_code, error_msg,
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line_number);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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#endif
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}
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// Benchmark memory allocation overhead by testing arena reuse
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void benchmark_memory_reuse() {
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std::cout << "\n=== Memory Allocation Patterns ===\n";
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ankerl::nanobench::Bench bench;
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bench.title("Memory Patterns").unit("op").warmup(100).epochs(100);
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// Arena with fresh allocation each time (realistic usage)
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bench.run("fresh arena", [&] {
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ArenaAllocator arena(128);
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auto result = format(arena, "Test %d: %s %.2f", TEST_INT,
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TEST_STRING.c_str(), TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// Pre-allocated arena (reuse scenario)
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ArenaAllocator shared_arena(1024);
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bench.run("reused arena", [&] {
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auto result = format(shared_arena, "Test %d: %s %.2f", TEST_INT,
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TEST_STRING.c_str(), TEST_DOUBLE);
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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// Fresh std::string allocations
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bench.run("std::stringstream", [&] {
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std::stringstream ss;
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ss << "Test " << TEST_INT << ": " << TEST_STRING << " " << std::fixed
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<< std::setprecision(2) << TEST_DOUBLE;
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auto result = ss.str();
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ankerl::nanobench::doNotOptimizeAway(result);
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});
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}
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int main() {
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std::cout << "Format Function Benchmark Comparison\n";
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std::cout << "====================================\n";
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#if HAS_STD_FORMAT
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std::cout << "C++20 std::format: Available\n";
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#else
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std::cout << "C++20 std::format: Not available\n";
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#endif
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benchmark_simple_concatenation();
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benchmark_mixed_types();
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benchmark_complex_formatting();
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benchmark_error_messages();
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benchmark_memory_reuse();
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std::cout << "\n=== Summary ===\n";
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std::cout
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<< "* static_format: Best for simple concatenation with known types\n";
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std::cout
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<< "* format: Best for printf-style formatting with arena allocation\n";
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std::cout
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<< "* std::stringstream: Flexible but slower due to heap allocation\n";
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std::cout << "* std::format: Modern C++20 alternative (if available)\n";
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std::cout << "* snprintf + malloc: Low-level but requires manual memory "
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"management\n";
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return 0;
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}
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