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key_search: refactor thread code into key_search_nt() function and key_search_nt.cpp file.

This commit is contained in:
Henrik Hautakoski 2020-01-10 10:30:16 +01:00
parent 936378c69f
commit 7e37f1ef8b
4 changed files with 81 additions and 22 deletions

View file

@ -39,6 +39,7 @@ if (USE_THREADS)
if (Threads_FOUND)
# Add preprocessor flag
add_definitions( "-DHAVE_THREADS=1" )
set (PROGRAM_SOURCE ${PROGRAM_SOURCE} src/key_search_nt.cpp)
endif (Threads_FOUND)
endif (USE_THREADS)

View file

@ -1,30 +1,10 @@
#ifdef HAVE_THREADS
#include <mutex>
#endif /* HAVE_THREADS */
#include <iostream>
#include <string>
#include "ec.h"
#include "WIF.h"
#include "key_search_helpers.h"
#include "key_search.h"
#ifdef HAVE_THREADS
// Guards result output.
std::mutex search_mutex;
#endif /* HAVE_THREADS */
static void key_result(const std::string& word, const struct ec_keypair* pair) {
#ifdef HAVE_THREADS
// Guard output with mutex, so we don't get interrupted mid write.
const std::lock_guard<std::mutex> lock(search_mutex);
#endif /* HAVE_THREADS */
std::cout << "----" << std::endl;
std::cout << "Found: " << word << std::endl;
wif_print_key(pair);
}
bool key_search(struct ec_keypair* key, std::string& word, const strlist_t& word_list) {
std::string pubstr;
@ -50,7 +30,7 @@ void key_search_n(const strlist_t& word_list, size_t n) {
while (count < n) {
std::string word;
if (key_search(&pair, word, word_list)) {
key_result(word, &pair);
key_search_result(word, &pair);
count++;
}
}

View file

@ -31,4 +31,8 @@ bool key_search(struct ec_keypair* out, std::string& word, const strlist_t& word
void key_search_n(const strlist_t& word_list, size_t n);
#ifdef HAVE_THREADS
void key_search_nt(const strlist_t& word_list, size_t n, size_t n_threads = 0);
#endif /* HAVE_THREADS */
#endif /* KEY_SEARCH_H */

74
src/key_search_nt.cpp Normal file
View file

@ -0,0 +1,74 @@
#include <thread>
#include <mutex>
#include <vector>
#include "key_search_helpers.h"
#include "key_search.h"
// Max keys to search for,
unsigned int g_max;
// How many keys we have found so far.
unsigned int g_count;
// Mutex guard for g_count.
std::mutex g_count_mtx;
// Thread process.
static void thr_proc(const strlist_t& word_list) {
struct ec_keypair pair;
while (g_count < g_max) {
std::string word;
if (key_search(&pair, word, word_list)) {
// Guard output with mutex, so we don't get
// interrupted mid write and can write to g_count safely.
const std::lock_guard<std::mutex> lock(g_count_mtx);
// It is possible g_count was updated by another thread
// after we checked it in the while loop.
// So while we have the lock, we need to check it again.
if (g_count >= g_max) {
return;
}
// Update count and print result.
g_count++;
key_search_result(word, &pair);
}
}
}
void key_search_nt(const strlist_t& word_list, size_t n, size_t n_threads) {
std::vector<std::thread> t;
// Not enough threads passed in by caller.
if (n_threads < 2) {
// Just use linear function.
key_search_n(word_list, n);
return;
}
t.resize(n_threads - 1);
// Setup global variables for the threads.
g_max = n;
g_count = 0;
// Launch them.
for(int i = 0; i < t.size(); i++) {
t[i] = std::thread(thr_proc, word_list);
}
// Use main thread for 1 search
thr_proc(word_list);
// Wait for all threads to compelete.
for(int i = 0; i < t.size(); i++) {
t[i].join();
}
}