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utils-cuda.cu
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#include "utils-cuda.h"
#include <cstdio>
#include <cstdlib>
#include <iostream>
#include <mutex>
#include <string>
#include <iostream>
unsigned char h_sbox[256] = {
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};
unsigned char h_rcon[11] = {
0x00, // not used
0x01, 0x02, 0x04, 0x08, 0x10,
0x20, 0x40, 0x80, 0x1B, 0x36
};
// Function to read key or IV from a file
void read_key_or_iv(unsigned char *data, size_t size, const char *filename) {
FILE *file = fopen(filename, "r");
if (file == NULL) {
fprintf(stderr, "Cannot open file: %s\n", filename);
exit(1);
}
for (size_t i = 0; i < size; i++) {
char buffer[3];
if (fread(buffer, 1, 2, file) != 2) {
fprintf(stderr, "Cannot read value from file: %s\n", filename);
exit(1);
}
buffer[2] = '\0'; // Null-terminate the buffer
data[i] = (unsigned char)strtol(buffer, NULL, 16); // Convert the buffer to a hexadecimal value
}
fclose(file);
}
void read_file_as_binary(unsigned char **data, size_t *size, const char *filename) {
FILE *file = fopen(filename, "rb");
if (file == NULL) {
fprintf(stderr, "Cannot open file: %s\n", filename);
exit(1);
}
// Determine the file size
fseek(file, 0, SEEK_END);
*size = ftell(file);
fseek(file, 0, SEEK_SET);
// Allocate the buffer
*data = new unsigned char[*size];
size_t bytesRead = fread(*data, 1, *size, file);
if (bytesRead != *size) {
fprintf(stderr, "Failed to read the entire file: %s\n", filename);
exit(1);
}
fclose(file);
}
// Add pinned memory allocation
void read_file_as_binary_v2(unsigned char **data, size_t *size, const char *filename) {
FILE *file = fopen(filename, "rb");
if (file == NULL) {
fprintf(stderr, "Cannot open file: %s\n", filename);
exit(1);
}
// Determine the file size
fseek(file, 0, SEEK_END);
*size = ftell(file);
fseek(file, 0, SEEK_SET);
// Allocate pinned memory for data
cudaMallocHost((void**)data, *size * sizeof(unsigned char));
// Read the file into data
if (fread(*data, 1, *size, file) != *size) {
fprintf(stderr, "Cannot read file: %s\n", filename);
exit(1);
}
fclose(file);
}
size_t preprocess(const char *filename, size_t chunkSize, unsigned char ***chunks, size_t **chunkSizes) {
// Read the file into a buffer
unsigned char *buffer;
size_t bufferSize;
read_file_as_binary_v2(&buffer, &bufferSize, filename);
// Calculate the number of chunks
size_t numChunks = (bufferSize + chunkSize - 1) / chunkSize;
// Allocate pinned memory for the chunks and their sizes
cudaMallocHost((void***)chunks, numChunks * sizeof(unsigned char*));
cudaMallocHost((void**)chunkSizes, numChunks * sizeof(size_t));
// Split the buffer into chunks
for (size_t i = 0; i < numChunks; i++) {
// Calculate the size of the current chunk
size_t currentChunkSize = (i < numChunks - 1) ? chunkSize : (bufferSize % chunkSize);
// Allocate pinned memory for the current chunk
cudaMallocHost((void**)&(*chunks)[i], currentChunkSize * sizeof(unsigned char));
printf("Chunk %zu address: %p\n", i, (*chunks)[i]); // Print the address of the current chunk
// Copy the data from the buffer to the current chunk
memcpy((*chunks)[i], buffer + i * chunkSize, currentChunkSize);
// Save the size of the current chunk
(*chunkSizes)[i] = currentChunkSize;
}
// Free the buffer
cudaFreeHost(buffer);
return numChunks;
}
void write_encrypted(const unsigned char *ciphertext, size_t size, const char *filename) {
FILE *file = fopen(filename, "wb");
if (file == NULL) {
fprintf(stderr, "Cannot open file: %s\n", filename);
exit(1);
}
if (fwrite(ciphertext, 1, size, file) != size) {
fprintf(stderr, "Error writing to file: %s\n", filename);
exit(1);
}
fclose(file);
}
void write_encrypted_v2(unsigned char* ciphertext, size_t size, const char* filename) {
FILE* file = fopen(filename, "ab");
if (file == NULL) {
printf("Error opening file: %s\n", filename);
return;
}
if (fwrite(ciphertext, 1, size, file) != size) {
fprintf(stderr, "Error writing to file: %s\n", filename);
exit(1);
}
fclose(file);
}
std::mutex fileMutex;
void write_encrypted_multithreading(const unsigned char *ciphertext, size_t size, const char *filename) {
std::lock_guard<std::mutex> lock(fileMutex);
// Open the file in append mode
FILE *file = fopen(filename, "ab");
if (file == NULL) {
fprintf(stderr, "Cannot open file: %s\n", filename);
exit(1);
}
// Write the data to the file
size_t written = fwrite(ciphertext, 1, size, file);
if (written != size) {
fprintf(stderr, "Failed to write to file: %s\n", filename);
exit(1);
}
fclose(file);
}
std::string getFileExtension(const std::string& filename) {
size_t pos = filename.rfind('.');
return (pos == std::string::npos) ? "" : filename.substr(pos);
}
void appendFileExtension(const std::string& filename, const std::string& extension) {
FILE* file = fopen(filename.c_str(), "ab");
if (file != NULL) {
fwrite(extension.c_str(), 1, extension.size() + 1, file); // +1 to include null terminator
fclose(file);
} else {
std::cerr << "Failed to open file: " << filename << std::endl;
}
}