PIObject::deleteLater important fix
PIWaitEvent::sleep() method PITimer thread imp wait optimization, migrate to interruptable sleeps
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@@ -839,7 +839,7 @@ PIObject::Deleter::Deleter() {
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PRIVATE->thread.setSlot([this](){
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PIVector<PIObject*> oq;
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PRIVATE->thread.lock();
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while(PRIVATE->obj_queue.isEmpty()) PRIVATE->cond_var.wait(PRIVATE->thread.mutex());
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PRIVATE->cond_var.wait(PRIVATE->thread.mutex());
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oq.swap(PRIVATE->obj_queue);
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PRIVATE->thread.unlock();
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for (PIObject * o : oq) deleteObject(o);
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@@ -851,7 +851,9 @@ PIObject::Deleter::Deleter() {
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PIObject::Deleter::~Deleter() {
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//piCout << "~Deleter ...";
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PRIVATE->thread.stop();
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PRIVATE->thread.mutex().lock();
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PRIVATE->cond_var.notifyAll();
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PRIVATE->thread.mutex().unlock();
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PRIVATE->thread.waitForFinish();
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for (PIObject * o : PRIVATE->obj_queue) deleteObject(o);
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//piCout << "~Deleter ok";
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@@ -95,6 +95,27 @@ bool PIWaitEvent::wait(int fd, CheckRole role) {
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}
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bool PIWaitEvent::sleep(int us) {
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if (!isCreate()) return false;
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#ifdef WINDOWS
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DWORD ret = WaitForSingleObjectEx(event, us / 1000, TRUE);
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ResetEvent(event);
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return ret == WAIT_TIMEOUT;
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#else
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int nfds = pipe_fd[ReadEnd] + 1;
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FD_ZERO(&(fds[CheckRead]));
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FD_SET(pipe_fd[ReadEnd], &(fds[CheckRead]));
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timeval timeout;
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timeout.tv_sec = us / 1000000;
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timeout.tv_usec = us % 1000000;
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int ret = ::select(nfds, &(fds[CheckRead]), nullptr, nullptr, &timeout);
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int buf = 0;
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while (::read(pipe_fd[ReadEnd], &buf, sizeof(buf)) > 0);
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return ret == 0;
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#endif
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}
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void PIWaitEvent::interrupt() {
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if (!isCreate()) return;
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#ifdef WINDOWS
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@@ -31,7 +31,7 @@
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#endif
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class PIWaitEvent {
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class PIP_EXPORT PIWaitEvent {
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public:
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~PIWaitEvent();
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@@ -44,6 +44,7 @@ public:
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void create();
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void destroy();
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bool wait(int fd = -1, CheckRole role = CheckRead);
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bool sleep(int us); // return if sleep done
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void interrupt();
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bool isCreate() const;
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void * getEvent() const; // WINDOWS only
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@@ -485,7 +485,7 @@ void __PIThreadCollection::stoppedAuto() {
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auto_mutex.lock();
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auto_threads_.removeAll(t);
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auto_mutex.unlock();
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delete t;
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t->deleteLater();
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}
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@@ -19,6 +19,7 @@
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#include "pitimer.h"
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#include "piincludes_p.h"
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#include "piwaitevent_p.h"
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#ifdef PIP_TIMER_RT
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# include <csignal>
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#endif
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@@ -190,6 +191,7 @@ private:
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PIThread thread_;
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PISystemTime st_time, st_inc, st_wait, st_odt;
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PIWaitEvent event;
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};
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@@ -235,9 +237,10 @@ private:
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_PITimerImp_Thread::_PITimerImp_Thread() {
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thread_.setName("__S__PITimerImp_Thread::thread");
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wait_dt = 100;
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wait_dd = 200;
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wait_tick = 10;
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wait_dt = 1000;
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wait_dd = 2000;
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wait_tick = 1000;
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event.create();
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//piCout << "_PITimerImp_Thread" << this << ", thread& =" << &thread_;
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//piCout << "new _PITimerImp_Thread";
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}
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@@ -245,6 +248,7 @@ _PITimerImp_Thread::_PITimerImp_Thread() {
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_PITimerImp_Thread::~_PITimerImp_Thread() {
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stop(true);
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event.destroy();
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}
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@@ -275,6 +279,7 @@ bool _PITimerImp_Thread::startTimer(double interval_ms) {
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bool _PITimerImp_Thread::stopTimer(bool wait) {
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thread_.stop();
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event.interrupt();
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if (wait) return thread_.waitForFinish();
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// if (wait)
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// if (!thread_.waitForFinish(10))
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@@ -296,10 +301,12 @@ bool _PITimerImp_Thread::threadFunc() {
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dwt = st_time - PISystemTime::current(true);
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if (wth > 0) {
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if (dwt.toMilliseconds() > wth + 1.) {
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piMSleep(wth);
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event.sleep(wth * 1000);
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if (thread_.isStopping()) return false;
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return false;
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} else {
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dwt.sleep();
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event.sleep(dwt.toMicroseconds());
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if (thread_.isStopping()) return false;
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deferred_ = false;
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st_time = PISystemTime::current(true);
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}
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@@ -319,10 +326,12 @@ bool _PITimerImp_Thread::threadFunc() {
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if (wait_tick > 0) {
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if (st_wait.toMilliseconds() > wait_tick + 1.) {
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piMSleep(wait_tick);
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if (thread_.isStopping()) return false;
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return false;
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} else {
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//piCout << &thread_ << "sleep for" << st_wait;
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st_wait.sleep();
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event.sleep(st_wait.toMicroseconds());
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if (thread_.isStopping()) return false;
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}
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} else {
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if (st_wait.toMilliseconds() > 0.1)
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16
main.cpp
16
main.cpp
@@ -3,6 +3,7 @@
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#include "pibytearray.h"
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#include "pimathbase.h"
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#include "pijson.h"
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#include "piwaitevent_p.h"
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using namespace PICoutManipulators;
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@@ -88,6 +89,21 @@ void phase(const char * msg) {
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int main(int argc, char * argv[]) {
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piCout << "main";
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PITimer timer;
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timer.setSlot([](){
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static int cnt = 0;
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piCout << "tick" << ++cnt;
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});
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timer.start(500);
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piSleep(1.12);
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piCout << "end";
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PITimeMeasurer tm;
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timer.stop();
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double tm_ms = tm.elapsed_m();
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piCout << "stop took" << tm_ms;
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return 0;
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/*for (int i = 0; i < count; ++i)
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pipes[i].create();
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