added named pipe
This commit is contained in:
parent
5389cf9df1
commit
4b66e957cc
2 changed files with 366 additions and 186 deletions
3
.gitignore
vendored
3
.gitignore
vendored
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@ -3,4 +3,5 @@ CMakeFiles/
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CMakeCache.txt
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Makefile
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*.bin
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qngmeter
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qngmeter
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*.json
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549
QNGmeter.cpp
549
QNGmeter.cpp
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@ -1,8 +1,16 @@
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#define _DEFAULT_SOURCE
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#ifdef _WIN32
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#include <Windows.h>
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#include <conio.h>
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#else
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#include <unistd.h>
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#include <fcntl.h>
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#include <sys/stat.h>
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#include <sys/select.h>
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#endif
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#include <sys/time.h>
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#include <iostream>
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#include <iomanip>
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#include <stdint.h>
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@ -11,12 +19,15 @@
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#include <omp.h>
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#include <queue>
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#include <deque>
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#include <vector>
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#include <string>
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#include <memory>
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#include <cmath>
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#include <mutex>
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#include <condition_variable>
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#include <deque>
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#include "BiasAndAC.h"
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#include "Monkey.h"
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#include "Serial.h"
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@ -41,9 +52,46 @@ using namespace std;
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}
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#endif
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#define _BSD_SOURCE
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#include <sys/time.h>
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template<typename T>
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class ThreadSafeQueue {
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private:
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mutable std::mutex mtx;
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std::deque<T> dataQueue;
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std::condition_variable dataCond;
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public:
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ThreadSafeQueue() {}
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void push(T newData) {
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std::lock_guard<std::mutex> lk(mtx);
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dataQueue.push_back(std::move(newData));
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dataCond.notify_one();
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}
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bool try_pop(T& value) {
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std::lock_guard<std::mutex> lk(mtx);
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if (dataQueue.empty()) {
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return false;
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}
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value = std::move(dataQueue.front());
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dataQueue.pop_front();
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return true;
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}
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std::unique_lock<std::mutex> wait_and_pop(T& value) {
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std::unique_lock<std::mutex> lk(mtx);
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dataCond.wait(lk, [this] { return !dataQueue.empty(); });
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value = std::move(dataQueue.front());
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dataQueue.pop_front();
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return lk;
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}
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bool empty() const {
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std::lock_guard<std::mutex> lk(mtx);
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return dataQueue.empty();
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}
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};
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int main()
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{
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// try this to resize terminal
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@ -90,7 +138,7 @@ int main()
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time(&timePrev);
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timePrev -= 8;
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queue<shared_ptr<vector<uint32_t> > > dataQueue;
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//queue<shared_ptr<vector<uint32_t> > > dataQueue;
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double bitsThroughputCount = 0;
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double prevBitsThroughputCount = 0;
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@ -119,278 +167,409 @@ int main()
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double meterScore = 0;
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bool meterFreeze = false;
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omp_set_nested(true);
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const char* fifoPath = "/tmp/QNGmeter";
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#ifdef __linux
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mkfifo(fifoPath, 0666); // Create FIFO if it doesn't exist
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int fifoFd = open(fifoPath, O_RDONLY | O_NONBLOCK);
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if (fifoFd == -1) {
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std::cerr << "Failed to open named pipe for reading." << std::endl;
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return 1;
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}
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#endif
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#pragma omp parallel sections num_threads(2)
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fd_set readfds;
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int maxfd = max(STDIN_FILENO, fifoFd) + 1;
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ThreadSafeQueue<std::string> dataQueue; // Use a thread-safe queue for shared data
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omp_set_nested(true); // Ensure nested parallelism is enabled
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#pragma omp parallel sections
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{
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#pragma omp section
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{
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// This section reads from stdin as binary data and enqueues it for testing
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const size_t blockSize = 2048; // Number of uint32_t values in a block
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const size_t bytesPerValue = sizeof(uint32_t);
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const size_t bufferSize = blockSize * bytesPerValue; // Total bytes per block
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char buffer[bufferSize]; // Temporary buffer to store bytes
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while (!cin.eof() && !doExit) {
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cin.read(buffer, bufferSize);
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size_t bytesRead = cin.gcount();
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fd_set readfds;
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int fifoFd = open ("/tmp/myfifo", O_RDONLY | O_NONBLOCK);
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if (fifoFd == -1)
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{
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perror ("Failed to open FIFO");
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exit (EXIT_FAILURE);
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}
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// Convert read bytes to uint32_t and store in a vector
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shared_ptr<vector<uint32_t>> newBuffer(new vector<uint32_t>());
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for (size_t i = 0; i < bytesRead; i += bytesPerValue) {
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if (i + bytesPerValue <= bytesRead) {
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// Ensure we have a full 4 bytes to read
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uint32_t value = 0;
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memcpy(&value, buffer + i, bytesPerValue);
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newBuffer->push_back(value);
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int maxfd = max (STDIN_FILENO, fifoFd) + 1;
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ThreadSafeQueue < std::string > dataQueue;
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while (!doExit)
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{
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FD_ZERO (&readfds);
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FD_SET (STDIN_FILENO, &readfds);
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FD_SET (fifoFd, &readfds);
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if (select (maxfd, &readfds, NULL, NULL, NULL) == -1)
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{
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perror ("select");
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exit (EXIT_FAILURE);
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}
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char buffer[4096];
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ssize_t bytesRead;
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if (FD_ISSET (STDIN_FILENO, &readfds))
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{
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bytesRead = read (STDIN_FILENO, buffer, sizeof (buffer));
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if (bytesRead > 0)
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{
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dataQueue.push (std::string (buffer, bytesRead));
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}
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}
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if (!newBuffer->empty()) {
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#pragma omp critical
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dataQueue.push(newBuffer);
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if (FD_ISSET (fifoFd, &readfds))
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{
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bytesRead = read (fifoFd, buffer, sizeof (buffer));
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if (bytesRead > 0)
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{
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dataQueue.push (std::string (buffer, bytesRead));
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}
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}
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}
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doExit = true; // Exit if stdin closes or reaches EOF
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}
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close (fifoFd);
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}
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#pragma omp section
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{
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// This section processes the enqueued data
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while (!doExit || !dataQueue.empty()) {
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shared_ptr<vector<uint32_t>> testBuffer = nullptr;
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#pragma omp critical
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std::string buffer; // This will hold the raw binary string data from the queue
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while (!doExit)
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{
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if (dataQueue.try_pop (buffer))
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{
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if (!dataQueue.empty()) {
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testBuffer = dataQueue.front();
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dataQueue.pop();
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}
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}
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if (testBuffer != nullptr) {
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// Parallel processing of the testBuffer
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#pragma omp parallel sections num_threads(4)
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// Assuming each uint32_t is stored in 4 bytes within the string
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// Convert the string buffer into a vector<uint32_t> for processing
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std::vector < uint32_t > values;
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const size_t numValues = buffer.size () / sizeof (uint32_t);
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for (size_t i = 0; i < numValues; ++i)
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{
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#pragma omp section
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{ for (uint32_t value : *testBuffer) biasAndAc.InsertWord32(value); }
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#pragma omp section
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{ for (uint32_t value : *testBuffer) oqso.InsertWord32(value); }
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#pragma omp section
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{ for (uint32_t value : *testBuffer) serial.InsertWord32(value); }
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#pragma omp section
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{ for (uint32_t value : *testBuffer) entropy.InsertWord32(value); }
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uint32_t value;
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memcpy (&value, buffer.data () + i * sizeof (uint32_t),
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sizeof (uint32_t));
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values.push_back (value);
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}
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// Now, values contains the uint32_t data extracted from buffer
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// Process the values as needed
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#pragma omp parallel sections num_threads(4)
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{
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#pragma omp section
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{
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for (uint32_t value:values)
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biasAndAc.InsertWord32 (value);
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}
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#pragma omp section
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{
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for (uint32_t value:values)
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oqso.InsertWord32 (value);
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}
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#pragma omp section
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{
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for (uint32_t value:values)
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serial.InsertWord32 (value);
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}
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#pragma omp section
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{
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for (uint32_t value:values)
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entropy.InsertWord32 (value);
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}
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}
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// Display results
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time(&timeNow);
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if (difftime(timeNow, timePrev) >= 10)
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time (&timeNow);
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if (difftime (timeNow, timePrev) >= 10)
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{
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// calc rates
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#ifdef _WIN32
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QueryPerformanceCounter(&nowCount);
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double newTimeInterval = ((double)nowCount.QuadPart - prevCount.QuadPart) / countFreq.QuadPart;
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prevCount = nowCount;
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#elif __linux
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gettimeofday(&stop, NULL);
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newTimeInterval = (stop.tv_sec - start.tv_sec); // sec
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newTimeInterval += (stop.tv_usec - start.tv_usec) /1000000.0; // us to sec
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start = stop;
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#elif MACOSX
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#endif
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#ifdef _WIN32
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QueryPerformanceCounter (&nowCount);
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double newTimeInterval =
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((double) nowCount.QuadPart -
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prevCount.QuadPart) / countFreq.QuadPart;
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prevCount = nowCount;
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#elif __linux
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gettimeofday (&stop, NULL);
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newTimeInterval = (stop.tv_sec - start.tv_sec); // sec
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newTimeInterval += (stop.tv_usec - start.tv_usec) / 1000000.0; // us to sec
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start = stop;
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#elif MACOSX
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#endif
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double newBitInterval;
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double newRate;
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#pragma omp critical
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#pragma omp critical
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{
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newBitInterval = (bitsThroughputCount - prevBitsThroughputCount);
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prevBitsThroughputCount = bitsThroughputCount;
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newBitInterval =
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(bitsThroughputCount - prevBitsThroughputCount);
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prevBitsThroughputCount = bitsThroughputCount;
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}
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newRate = newBitInterval / newTimeInterval;
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if (throughput == 0)
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throughput = newRate;
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throughput = newRate;
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else
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throughput = (2*throughput + newRate) / 3;
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throughput = (2 * throughput + newRate) / 3;
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double newBitsTestedRatio = (bitsTestedCount-prevBitsTestedCount) / newBitInterval;
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double newBitsTestedRatio =
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(bitsTestedCount - prevBitsTestedCount) / newBitInterval;
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prevBitsTestedCount = bitsTestedCount;
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bitsTestedRatio = (2*bitsTestedRatio + newBitsTestedRatio) / 3;
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bitsTestedRatio =
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(2 * bitsTestedRatio + newBitsTestedRatio) / 3;
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if (bitsTestedRatio > 1)
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bitsTestedRatio = 1;
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bitsTestedRatio = 1;
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// meta test and meter
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metaPs.clear();
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meterZs.clear();
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metaPs.clear ();
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meterZs.clear ();
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if (bitsTestedCount >= 65536)
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{
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// Autocorrelation KS test
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for (int i=0; i<32; i++)
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for (int i = 0; i < 32; i++)
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{
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metaPs.push_back(biasAndAc.AC.P_Chi2[i]);
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meterZs.push_back(biasAndAc.AC.cumulativeACZScore[i]);
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metaPs.push_back (biasAndAc.AC.P_Chi2[i]);
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meterZs.push_back (biasAndAc.AC.
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cumulativeACZScore[i]);
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}
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double AcKSP;
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double AcKSN;
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ks.KSUP(&AcKSP, &AcKSN, &metaPs[0], metaPs.size());
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ks.KSUP (&AcKSP, &AcKSN, &metaPs[0], metaPs.size ());
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// Combined KS test
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metaPs.push_back(AcKSP);
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metaPs.push_back (AcKSP);
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metaPs.push_back(biasAndAc.Bias.P_Chi2);
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meterZs.push_back(biasAndAc.Bias.cumulativeBiasZScore);
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metaPs.push_back (biasAndAc.Bias.P_Chi2);
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meterZs.push_back (biasAndAc.Bias.cumulativeBiasZScore);
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}
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if (bitsTestedCount >= 4194304)
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{
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metaPs.push_back(serial.P_Chi2);
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serialP = gamma.Gamma(128., serial.cumulativeSerialChi2);
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serialZ = ks.PtoZ(serialP);
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meterZs.push_back(serialZ);
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metaPs.push_back (serial.P_Chi2);
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serialP = gamma.Gamma (128., serial.cumulativeSerialChi2);
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serialZ = ks.PtoZ (serialP);
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meterZs.push_back (serialZ);
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metaPs.push_back(entropy.P_Chi2);
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meterZs.push_back(entropy.cumulativeZScore);
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metaPs.push_back (entropy.P_Chi2);
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meterZs.push_back (entropy.cumulativeZScore);
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}
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if (bitsTestedCount >= 10485775)
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{
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metaPs.push_back(oqso.P_Chi2);
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meterZs.push_back(oqso.cumulativeZScore);
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metaPs.push_back (oqso.P_Chi2);
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meterZs.push_back (oqso.cumulativeZScore);
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}
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if (bitsTestedCount >= 65536)
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{
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// This KS is combined AC KSP plus with other tests
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ks.KSUP(&KSP, &KSN, &metaPs[32], metaPs.size()-32);
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ks.KSUP (&KSP, &KSN, &metaPs[32], metaPs.size () - 32);
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meterFreeze = false;
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for (int i=0; i<meterZs.size(); i++)
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for (int i = 0; i < meterZs.size (); i++)
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{
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// freeze condition
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if (fabs(meterZs[i])>4.264897 || (metaPs[i]<0.00001 || metaPs[i]>0.99999))
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meterFlags[i] = -1;
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if (fabs (meterZs[i]) > 4.264897
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|| (metaPs[i] < 0.00001 || metaPs[i] > 0.99999))
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meterFlags[i] = -1;
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// unfreeze condition
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if (meterFlags[i] == -1)
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{
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if (fabs(meterZs[i])<2.326348 && (metaPs[i]>0.01 && metaPs[i]<0.99))
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meterFlags[i] = 0;
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if (fabs (meterZs[i]) < 2.326348
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&& (metaPs[i] > 0.01 && metaPs[i] < 0.99))
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meterFlags[i] = 0;
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}
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if (meterFlags[i] == -1)
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meterFreeze = true;
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meterFreeze = true;
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}
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// meter calc
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if (meterFreeze == false)
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meterScore = log(bitsTestedCount)/log(2.);
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meterScore = log (bitsTestedCount) / log (2.);
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}
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cout << endl;
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cout << " QNGmeter Console 1.0 Test Type z-score p[z<=x] p[chi2<=x] " << endl;
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cout << " +---------------------------+------------------------------------------------+" << endl;
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cout << " | | 1/0 Balance " << setiosflags(ios::fixed) << setprecision(3) << showpos << biasAndAc.Bias.cumulativeBiasZScore << " " << setprecision(4) << noshowpos << CStat::ZtoP(biasAndAc.Bias.cumulativeBiasZScore) << " " << biasAndAc.Bias.P_Chi2 << " |" << endl;
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cout << " | | Serial Test " << setiosflags(ios::fixed) << setprecision(3) << showpos << serialZ << " " << setprecision(4) << noshowpos << serialP << " " << serial.P_Chi2 << " |" << endl;
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cout << " | | OQSO Test " << setiosflags(ios::fixed) << setprecision(3) << showpos << oqso.cumulativeZScore << " " << setprecision(4) << noshowpos << CStat::ZtoP(oqso.cumulativeZScore) << " " << oqso.P_Chi2 << " |" << endl;
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cout << " | | Entropy Test " << setiosflags(ios::fixed) << setprecision(3) << showpos << entropy.cumulativeZScore << " " << setprecision(4) << noshowpos << CStat::ZtoP(entropy.cumulativeZScore) << " " << serial.P_Chi2 << " |" << endl;
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cout << " | | H: " << setiosflags(ios::fixed) << setprecision(9) << entropy.E << " |" << endl;
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cout << " | | |" << endl;
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cout <<
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" QNGmeter Console 1.0 Test Type z-score p[z<=x] p[chi2<=x] "
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<< endl;
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cout <<
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" +---------------------------+------------------------------------------------+"
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<< endl;
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cout << " | | 1/0 Balance "
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<< setiosflags (ios::
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fixed) << setprecision (3) << showpos <<
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biasAndAc.Bias.
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cumulativeBiasZScore << " " << setprecision (4) <<
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noshowpos << CStat::ZtoP (biasAndAc.Bias.
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cumulativeBiasZScore) << " " <<
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biasAndAc.Bias.P_Chi2 << " |" << endl;
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cout << " | | Serial Test "
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<< setiosflags (ios::
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fixed) << setprecision (3) << showpos <<
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serialZ << " " << setprecision (4) << noshowpos <<
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serialP << " " << serial.P_Chi2 << " |" << endl;
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cout << " | | OQSO Test "
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<< setiosflags (ios::
|
||||
fixed) << setprecision (3) << showpos <<
|
||||
oqso.
|
||||
cumulativeZScore << " " << setprecision (4) << noshowpos
|
||||
<< CStat::ZtoP (oqso.cumulativeZScore) << " " << oqso.
|
||||
P_Chi2 << " |" << endl;
|
||||
cout << " | | Entropy Test "
|
||||
<< setiosflags (ios::
|
||||
fixed) << setprecision (3) << showpos <<
|
||||
entropy.
|
||||
cumulativeZScore << " " << setprecision (4) << noshowpos
|
||||
<< CStat::ZtoP (entropy.
|
||||
cumulativeZScore) << " " << serial.
|
||||
P_Chi2 << " |" << endl;
|
||||
cout << " | | H: " <<
|
||||
setiosflags (ios::fixed) << setprecision (9) << entropy.
|
||||
E << " |" << endl;
|
||||
|
||||
for (int i=1; i<=32; i++)
|
||||
{
|
||||
switch(i)
|
||||
{
|
||||
case 2:
|
||||
cout << " | Start Time |";
|
||||
break;
|
||||
case 3:
|
||||
cout << " | " << sStartTime << " |";
|
||||
break;
|
||||
case 5:
|
||||
cout << " | Total Bits Tested |";
|
||||
break;
|
||||
case 6:
|
||||
cout << " | " << scientific << setw(9) << setprecision(2) << bitsTestedCount << fixed << " |";
|
||||
break;
|
||||
case 8:
|
||||
cout << " | Throughput |";
|
||||
break;
|
||||
case 9:
|
||||
cout << " | " << setiosflags(ios::fixed) << setw(4) << setprecision(1) << (double)(throughput/1000000.0) << " Mbps |";
|
||||
break;
|
||||
case 11:
|
||||
cout << " | Bits Tested Percent |";
|
||||
break;
|
||||
case 12:
|
||||
cout << " | " << setiosflags(ios::fixed) << setw(5) << setprecision(1) << (100*bitsTestedRatio) << "% |";
|
||||
break;
|
||||
case 18:
|
||||
cout << " | Meta KS+ Test |";
|
||||
break;
|
||||
case 19:
|
||||
cout << " | " << setiosflags(ios::fixed) << setw(5) << setprecision(3) << KSP << " |";
|
||||
break;
|
||||
case 22:
|
||||
cout << " | Meta KS- Test |";
|
||||
break;
|
||||
case 23:
|
||||
cout << " | " << setiosflags(ios::fixed) << setw(5) << setprecision(3) << KSN << " |";
|
||||
break;
|
||||
case 29:
|
||||
cout << " | QNGmeter Score |";
|
||||
break;
|
||||
case 30:
|
||||
cout << " | " << setiosflags(ios::fixed) << setw(4) << setprecision(1) << abs(meterScore) << ((meterScore<0)? "-" : (meterFreeze==false)? "+" : " ") << " |";
|
||||
break;
|
||||
default:
|
||||
cout << " | |";
|
||||
}
|
||||
cout << " " << setw(2) << i << "st AutoCorr " << setiosflags(ios::fixed) << setprecision(3) << showpos << biasAndAc.AC.cumulativeACZScore[i-1] << " " << setprecision(4) << noshowpos << CStat::ZtoP(biasAndAc.AC.cumulativeACZScore[i-1]) << " " << biasAndAc.AC.P_Chi2[i-1] << " |" << endl;
|
||||
}
|
||||
cout << " +---------------------------+------------------------------------------------+" << endl;
|
||||
cout <<
|
||||
" | | |"
|
||||
<< endl;
|
||||
|
||||
#ifdef _WIN32
|
||||
// put cursor in top corner
|
||||
COORD coord;
|
||||
coord.X = 0;
|
||||
coord.Y = 0;
|
||||
SetConsoleCursorPosition(GetStdHandle(STD_OUTPUT_HANDLE), coord);
|
||||
#elif __linux
|
||||
// clear screen
|
||||
// printf("\E[H");
|
||||
#elif MACOSX
|
||||
#endif
|
||||
for (int i = 1; i <= 32; i++)
|
||||
{
|
||||
switch (i)
|
||||
{
|
||||
case 2:
|
||||
cout << " | Start Time |";
|
||||
break;
|
||||
case 3:
|
||||
cout << " | " << sStartTime << " |";
|
||||
break;
|
||||
case 5:
|
||||
cout << " | Total Bits Tested |";
|
||||
break;
|
||||
case 6:
|
||||
cout << " | " << scientific << setw (9) <<
|
||||
setprecision (2) << bitsTestedCount << fixed <<
|
||||
" |";
|
||||
break;
|
||||
case 8:
|
||||
cout << " | Throughput |";
|
||||
break;
|
||||
case 9:
|
||||
cout << " | " << setiosflags (ios::
|
||||
fixed) << setw (4)
|
||||
<< setprecision (1) << (double) (throughput /
|
||||
1000000.0) <<
|
||||
" Mbps |";
|
||||
break;
|
||||
case 11:
|
||||
cout << " | Bits Tested Percent |";
|
||||
break;
|
||||
case 12:
|
||||
cout << " | " << setiosflags (ios::
|
||||
fixed) << setw (5)
|
||||
<< setprecision (1) << (100 *
|
||||
bitsTestedRatio) <<
|
||||
"% |";
|
||||
break;
|
||||
case 18:
|
||||
cout << " | Meta KS+ Test |";
|
||||
break;
|
||||
case 19:
|
||||
cout << " | " << setiosflags (ios::
|
||||
fixed) << setw (5)
|
||||
<< setprecision (3) << KSP << " |";
|
||||
break;
|
||||
case 22:
|
||||
cout << " | Meta KS- Test |";
|
||||
break;
|
||||
case 23:
|
||||
cout << " | " << setiosflags (ios::
|
||||
fixed) << setw (5)
|
||||
<< setprecision (3) << KSN << " |";
|
||||
break;
|
||||
case 29:
|
||||
cout << " | QNGmeter Score |";
|
||||
break;
|
||||
case 30:
|
||||
cout << " | " << setiosflags (ios::
|
||||
fixed) << setw (4)
|
||||
<< setprecision (1) << abs (meterScore) <<
|
||||
((meterScore < 0) ? "-" : (meterFreeze ==
|
||||
false) ? "+" : " ") <<
|
||||
" |";
|
||||
break;
|
||||
default:
|
||||
cout << " | |";
|
||||
}
|
||||
cout << " " << setw (2) << i << "st AutoCorr " <<
|
||||
setiosflags (ios::
|
||||
fixed) << setprecision (3) << showpos <<
|
||||
biasAndAc.AC.cumulativeACZScore[i -
|
||||
1] << " " <<
|
||||
setprecision (4) << noshowpos << CStat::ZtoP (biasAndAc.
|
||||
AC.
|
||||
cumulativeACZScore
|
||||
[i -
|
||||
1]) <<
|
||||
" " << biasAndAc.AC.P_Chi2[i - 1] << " |" << endl;
|
||||
}
|
||||
cout <<
|
||||
" +---------------------------+------------------------------------------------+"
|
||||
<< endl;
|
||||
|
||||
#ifdef _WIN32
|
||||
// put cursor in top corner
|
||||
COORD coord;
|
||||
coord.X = 0;
|
||||
coord.Y = 0;
|
||||
SetConsoleCursorPosition (GetStdHandle (STD_OUTPUT_HANDLE),
|
||||
coord);
|
||||
#elif __linux
|
||||
// clear screen
|
||||
// printf("\E[H");
|
||||
#elif MACOSX
|
||||
#endif
|
||||
|
||||
timePrev = timeNow;
|
||||
cout.flush();
|
||||
cout.flush ();
|
||||
buffer.clear ();
|
||||
}
|
||||
|
||||
|
||||
// End on an 'x' keypress
|
||||
#ifdef _WIN32
|
||||
if (kbhit())
|
||||
#ifdef _WIN32
|
||||
if (kbhit ())
|
||||
{
|
||||
char c = getch_ ();
|
||||
|
||||
if (tolower (c) == 'x')
|
||||
{
|
||||
char c = getch_();
|
||||
|
||||
if ( tolower(c) == 'x' )
|
||||
{
|
||||
doExit = true;
|
||||
break;
|
||||
}
|
||||
doExit = true;
|
||||
break;
|
||||
}
|
||||
#elif __linux
|
||||
// CRTL-C
|
||||
#elif MACOSX
|
||||
#endif
|
||||
}
|
||||
#elif __linux
|
||||
// CRTL-C
|
||||
#elif MACOSX
|
||||
#endif
|
||||
}
|
||||
else
|
||||
{
|
||||
// give this thread a break from tight loop - waiting for data
|
||||
usleep(1000);
|
||||
usleep (1000);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
#ifdef __linux
|
||||
close(fifoFd); // Close the FIFO file descriptor when done
|
||||
#endif
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue