mirror of https://github.com/fltk/fltk
158 lines
4.3 KiB
C++
158 lines
4.3 KiB
C++
//
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// Threading example program for the Fast Light Tool Kit (FLTK).
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//
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// Copyright 1998-2018 by Bill Spitzak and others.
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//
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// This library is free software. Distribution and use rights are outlined in
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// the file "COPYING" which should have been included with this file. If this
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// file is missing or damaged, see the license at:
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//
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// https://www.fltk.org/COPYING.php
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//
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// Please see the following page on how to report bugs and issues:
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//
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// https://www.fltk.org/bugs.php
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//
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#include <config.h>
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#if defined(HAVE_PTHREAD) || defined(_WIN32)
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# include <FL/Fl.H>
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# include <FL/Fl_Double_Window.H>
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# include <FL/Fl_Browser.H>
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# include <FL/Fl_Value_Output.H>
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# include <FL/fl_ask.H>
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# include "threads.h"
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# include <stdio.h>
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# include <math.h>
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Fl_Thread prime_thread;
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Fl_Browser *browser1, *browser2;
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Fl_Value_Output *value1, *value2;
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int start2 = 3;
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void magic_number_cb(void *p)
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{
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Fl_Value_Output *w = (Fl_Value_Output*)p;
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w->labelcolor(FL_RED);
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w->redraw_label();
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}
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extern "C" void* prime_func(void* p)
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{
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Fl_Browser* browser = (Fl_Browser*) p;
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Fl_Value_Output *value;
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int n;
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int step;
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char proud = 0;
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if (browser == browser2) {
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n = start2;
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start2 += 2;
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step = 12;
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value = value2;
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} else {
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n = 3;
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step = 2;
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value = value1;
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}
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// very simple prime number calculator !
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//
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// The return at the end of this function can never be reached and thus
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// will generate a warning with some compilers, however we need to have
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// a return statement or other compilers will complain there is no return
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// statement. To avoid warnings on all compilers, we fool the smart ones
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// into beleiving that there is a chance that we reach the end by testing
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// n>=0, knowing that logically, n will never be negative in this context.
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if (n>=0) for (;;) {
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int pp;
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int hn = (int)sqrt((double)n);
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for (pp=3; pp<=hn; pp+=2) if ( n%pp == 0 ) break;
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if (pp >= hn) {
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char s[128];
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sprintf(s, "%d", n);
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// Obtain a lock before we access the browser widget...
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Fl::lock();
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browser->add(s);
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browser->bottomline(browser->size());
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if (n > value->value()) value->value(n);
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n += step;
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// Release the lock...
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Fl::unlock();
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// Send a message to the main thread, at which point it will
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// process any pending redraws for our browser widget. The
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// message we pass here isn't used for anything, so we could also
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// just pass NULL.
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Fl::awake(p);
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if (n>10000 && !proud) {
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proud = 1;
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Fl::awake(magic_number_cb, value);
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}
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} else {
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// This should not be necessary since "n" and "step" are local variables,
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// however it appears that at least MacOS X has some threading issues
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// that cause semi-random corruption of the (stack) variables.
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Fl::lock();
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n += step;
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Fl::unlock();
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}
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}
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return 0L;
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}
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int main(int argc, char **argv)
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{
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Fl_Double_Window* w = new Fl_Double_Window(200, 200, "Single Thread");
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browser1 = new Fl_Browser(0, 0, 200, 175);
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w->resizable(browser1);
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value1 = new Fl_Value_Output(100, 175, 200, 25, "Max Prime:");
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w->end();
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w->show(argc, argv);
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w = new Fl_Double_Window(200, 200, "Six Threads");
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browser2 = new Fl_Browser(0, 0, 200, 175);
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w->resizable(browser2);
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value2 = new Fl_Value_Output(100, 175, 200, 25, "Max Prime:");
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w->end();
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w->show();
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browser1->add("Prime numbers:");
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browser2->add("Prime numbers:");
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// Enable multi-thread support by locking from the main
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// thread. Fl::wait() and Fl::run() call Fl::unlock() and
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// Fl::lock() as needed to release control to the child threads
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// when it is safe to do so...
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Fl::lock();
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// Start threads...
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// One thread displaying in one browser
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fl_create_thread(prime_thread, prime_func, browser1);
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// Several threads displaying in another browser
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fl_create_thread(prime_thread, prime_func, browser2);
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fl_create_thread(prime_thread, prime_func, browser2);
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fl_create_thread(prime_thread, prime_func, browser2);
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fl_create_thread(prime_thread, prime_func, browser2);
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fl_create_thread(prime_thread, prime_func, browser2);
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fl_create_thread(prime_thread, prime_func, browser2);
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Fl::run();
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return 0;
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}
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#else
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# include <FL/fl_ask.H>
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int main() {
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fl_alert("Sorry, threading not supported on this platform!");
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}
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#endif // HAVE_PTHREAD || _WIN32
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